Post on 12-Jun-2020
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MIPMarketing Innovative Products
1/20
14
2 MIP Edition 1/2014
Analog and Mixed Signal
M24SR64, Dynamic NFC/RFID Tag IC with
64-Kbit EEPROM, NFC Forum Type 4 Tag and
I2C Interface
6
ADS8319, 16-Bit, 500 Ksps, Serial Interface
microPOWER, Miniature SAR ADC
7
DRV411, Sensor Signal Conditioning IC for
Closed-Loop Magnetic Current Sensors
8
OPAx172, 36 V, Single-Supply, 10 MHz, Rail-to-
Rail Output, Operational Amplifier
9
Memory
MB85R4M2T, 4 Mbit FRAM with (Low Power
SRAM Compatible) Parallel Interface
24
IS25LQ512A/010A/020A, 512-Kbit, 1-Mbit,
and 2-Mbit Quad Serial Flash Memories with
Multi-I/O SPI
25
IS29LV032T/B, 32 Megabit (4096K x 8-Bit or
2048K x 16-Bit) Parallel Flash Memory, Top Or
Bottom Boot Sector Protected
26
e•MMC™ - THGBMxxxx, Cost Effective Mass
Storage Solution
27
TC58Bxxxx BeNAND, Cost Effective 24 nm SLC
NAND with Embedded ECC
28
Optoelectronics
ACNT-H313, New Class of 2.5 A Gate Drive
Optocoupler for High Power Systems
29
ACPL-336J/337J, Highly Integrated Smart
Gate Drive Optocouplers for Motor Drives and
Inverters
30
AFBR-1539Z/1634Z/1639Z/2634Z/2539Z, DC
to 50 Mbaud Versatile Link Transmitters and
Receivers in Vertical Housing
31
ASMB-BTE1/MTBO/MTB, PLCC-4 Tri-Colour
LEDs for Indoor Full Colour Displays
32
ASMS-FWGx, White 4014 Surface Mount LEDs 33
FOD8332, 2.5 A Output Current Smart Gate
Drive Optocoupler with Input LED Drive
34
CXM-XX, XNOVA COB LED Arrays 35
SFH 4710, IR OSLON Compact 36
SFH 4783, Infrared Dragon Dome LED 37
SOLERIQ S 13, Easily Setting New Standards in
Lighting
38
TLP182/183/292/293, Low Input Current
Transistor Photocouplers
39
TLP2395, TLP2398, Dual Polarity Input
Photocouplers for Industrial Designs
40
VOW3120, Widebody, High Isolation, 2.5 A IGBT
Driver
41
DSP & Microprocessors
QorIQ LS1 Family, ARM-Based Network
Processors with <3 W Consumption
10
MCU-Peripherals
ATA6614Q, 32 KB Flash Microcontroller with LIN
Transceiver, 5 V Regulator and Watchdog
11
ATSAMA5D3, New Cortex™-A5 Family of
Embedded MPUs
12
SAM D21 Series, ARM® Cortex™-M0+ Based
MCU Series
13
SAM R21, ARM Cortex-M0+ Based IEEE
802.15.4 Wireless MCUs
14
Kinetis EA Series, ARM® Cortex®-M0+
Microcontrollers for Automotive and Harsh
Environments
15
Kinetis K63/K64, Ethernet/USB ARM®
Cortex®-M4 120 MHz MCUs
16
Kinetis V Series, Kinetis KV1x ARM Cortex-M0+
MCU Family for BLDC Motor Control
17
S12ZVM, S12 MagniV for 3-Phase BLDC/PMSM
Motor Control
18
®
VersaClock® 5, VersaClock® 5 Programmable
Clock Generators
19
LPC4370, 32-bit ARM® Cortex™-M4 + 2 x M0
MCU; 282 KB SRAM; Ethernet; two HS USBs;
80 Msps 12-bit ADC
20
MB9BF56xK\L, FM4 Microcontroller with
48/64 Pins, 5 V Supply, Inverter, CAN and USB
21
STM32F0x2, 32-bit Microcontroller with
Crystal-less USB
22
TM4C1294, Tiva C Series Microcontroller 23
CONTENTS by Product Groups
3MIP Edition 1/2014
ANAL
OG &
MIX
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SIGN
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DSP
& M
PUM
CU &
PER
IPHE
RALS
MEM
ORY
OPTO
ELEC
TRON
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POW
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ISCR
. &
MOD
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POW
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Wired Communication
BCM5461, 10/100/1000BASE-T Gigabit Copper
Transceiver
58
BCM5482/82S, Dual-Port 10/100/1000BASE-T
Gigabit Ethernet Transceiver
59
BCM53125, 7-Port Integrated Gigabit Energy-
Efficient Ethernet Switch
60
®
IDT82V3910, IDT82V3911, SyncE SETS for
1 GbE, 10 GbE and 40 GbE
61
TJA1057GT, High-Speed CAN Transceiver 62
Wireless Communication
ACFF-1024, ISM Bandpass Filter
(2401...2482 MHz) for Wireless Applications
63
BCM20736, Bluetooth Smart SoC with Wireless
Charging
64
Smart WLAN Modules, WLAN Connectivity
Modules Compatible with Broadcom WICED
65
BLS7G3135L(S)-350P, LDMOS S-Band Radar
Power Transistor
66
PT501, Universal NFC Card Emulation and NFC
Peer-to-Peer Solution
67
SIM28M/68M, Ultra Compact Multi-GNSS
Positioning Modules
68
BlueNRG, Bluetooth® Low Energy Wireless
Network Processor
69
SPWF01SA/SC, Serial-to-WLAN 802.11 b/g/n
Intelligent Modules
70
Power Discretes & Modules
FDMC86xxxP Series, 150/100 V P-Channel
MOSFETs
42
FGHXXT120SMD, 1000/1200 V Field Stop
Trench IGBTs
43
Power Management
EN53xxQI/63xxQI/23x2QI, PowerSoC
Integrated Buck DC-DC Converters, High
Efficiency, High Accuracy
44
FAN2310/15, TinyBuck™ 10/15 A Integrated
Synchronous Buck Regulators
45
MC34904, System Basis Chip with LDO
Regulators and CAN
46
NCL30082/83, Dimmable Quasi-Resonant
Primary Side Current-Mode Controllers for LED
Lighting
47
NCP/NCV51190/198, 1.5 A DDR Memory
Termination Regulators
48
NCP1032, Integrated DC-DC Converter, PWM,
3.0 W
49
NCV47411, Adjustable Dual LDO, 3.3...20 V,
with Adjustable Current Limit and 3.3 V Logic
Compatible Enable Inputs
50
BQ27621, System-Side Impedance Track Fuel
Gauge with Dynamic Voltage Correlation
51
LMZ10500/501, SIMPLE SWITCHER® Nano
Module with 5.5 V Maximum Input Voltage
52
TPS92561, Phase Dimmable, Single Stage Boost
Controller for LED Lighting
53
SiP12109, 4 A, 4.5...15 V Input Synchronous
Buck Regulator
54
Sensor
AS0260, A True HD SOC Image Sensor 55
HVAC & Refrigeration Pressure Sensor 56
LPS25H, MEMS Pressure Sensor,
260...1260 hPa Absolute Digital Output
Barometer
57
4 MIP Edition 1/2014
CONTENTS by Manufacturer
EN53xxQI/63xxQI/23x2QI, PowerSoC Integrated Buck DC-DC Converters,
High Efficiency, High Accuracy ...................................................................................................... 44
ATA6614Q, 32 KB Flash Microcontroller with LIN Transceiver, 5 V Regulator and Watchdog 11
ATSAMA5D3, New Cortex™-A5 Family of Embedded MPUs ..................................................... 12
SAM D21 Series, ARM® Cortex™-M0+ Based MCU Series ......................................................... 13
SAM R21, ARM Cortex-M0+ Based IEEE 802.15.4 Wireless MCUs ............................................. 14
AS0260, A True HD SOC Image Sensor ......................................................................................... 55
VersaClock® 5, Programmable Clock Generators ......................................................................... 19
IDT82V3910, IDT82V3911, SyncE SETS for 1 GbE, 10 GbE and 40 GbE ..................................... 61
IS25LQ512A/010A/020A, 512-Kbit, 1-Mbit, and 2-Mbit Quad Serial Flash Memories
with Multi-I/O SPI ............................................................................................................................. 25
IS29LV032T/B, 32 Megabit (4096K x 8-Bit or 2048K x 16-Bit) Parallel Flash Memory,
Top Or Bottom Boot Sector Protected ........................................................................................... 26
CXM-XX, XNOVA COB LED Arrays ................................................................................................ 35
Smart WLAN Modules, WLAN Connectivity Modules Compatible with Broadcom WICED .. 65
ACNT-H313, New Class of 2.5 A Gate Drive Optocoupler for High Power Systems ................ 29
ACPL-336J/337J, Highly Integrated Smart Gate Drive Optocouplers for
Motor Drives and Inverters ............................................................................................................. 30
AFBR-1539Z/1634Z/1639Z/2634Z/2539Z, DC to 50 Mbaud Versatile Link Transmitters and
Receivers in Vertical Housing ......................................................................................................... 31
ASMB-BTE1/MTBO/MTB1, PLCC-4 Tri-Colour LEDs for Indoor Full Colour Displays .............. 32
ASMS-FWGx, White 4014 Surface Mount LEDs ........................................................................... 33
ACFF-1024, ISM Bandpass Filter (2401...2482 MHz) for Wireless Applications ........................ 63
BCM5461, 10/100/1000BASE-T Gigabit Copper Transceiver ....................................................... 58
BCM5482/82S, Dual-Port 10/100/1000BASE-T Gigabit Ethernet Transceiver............................ 59
BCM53125, 7-Port Integrated Gigabit Energy-Efficient Ethernet Switch .................................. 60
BCM20736, Bluetooth Smart SoC with Wireless Charging ......................................................... 64
®
FOD8332, 2.5 A Output Current Smart Gate Drive Optocoupler with Input LED Drive ........... 34
FDMC86xxxP Series, 150/100 V P-Channel MOSFETs ................................................................. 42
FGHXXT120SMD, 1000/1200 V Field Stop Trench IGBTs ............................................................. 43
AN2310/15, TinyBuck™ 10/15 A Integrated Synchronous Buck Regulators .............................. 45
QorIQ LS1 Family, ARM-Based Network Processors with <3 W Consumption ........................ 10
Kinetis EA Series, ARM® Cortex®-M0+ Microcontrollers for Automotive and Harsh
Environments ................................................................................................................................... 15
Kinetis K63/K64, Ethernet/USB ARM® Cortex®-M4 120 MHz MCUs ........................................... 16
Kinetis V Series, Kinetis KV1x ARM Cortex-M0+ MCU Family for BLDC Motor Control ......... 17
MC34904, System Basis Chip with LDO Regulators and CAN ................................................... 46
S12ZVM, S12 MagniV for 3-Phase BLDC/PMSM Motor Control ................................................. 18
MB85R4M2T, 4 Mbit FRAM with (Low Power SRAM Compatible) Parallel Interface .............. 24
5MIP Edition 1/2014
ANAL
OG &
MIX
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SIGN
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DSP
& M
PUM
CU &
PER
IPHE
RALS
MEM
ORY
OPTO
ELEC
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POW
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LPC4370, 32-bit ARM® Cortex™-M4 + 2 x M0 MCU; 282 KB SRAM; Ethernet;
two HS USBs; 80 Msps 12-bit ADC ................................................................................................ 20
TJA1057GT, High-Speed CAN Transceiver .................................................................................... 62
BLS7G3135L(S)-350P, LDMOS S-Band Radar Power Transistor ................................................. 66
PT501, Universal NFC Card Emulation and NFC Peer-to-Peer Solution .................................... 67
NCL30082/83, Dimmable Quasi-Resonant Primary Side Current-Mode Controllers
for LED Lighting................................................................................................................................ 47
NCP/NCV51190/198, 1.5 A DDR Memory Termination Regulators ............................................. 48
NCP1032, Integrated DC-DC Converter, PWM, 3.0 W .................................................................. 49
NCV47411, Adjustable Dual LDO, 3.3...20 V, with Adjustable Current Limit and 3.3 V
Logic Compatible Enable Inputs .................................................................................................... 50
SFH 4710, IR OSLON Compact ........................................................................................................ 36
SFH 4783, Infrared Dragon Dome LED .......................................................................................... 37
SOLERIQ S 13, Easily Setting New Standards in Lighting .......................................................... 38
HVAC & Refrigeration Pressure Sensor ........................................................................................ 56
SIM28M/68M, Ultra Compact Multi-GNSS Positioning Modules .............................................. 68
MB9BF56xK\L, FM4 Microcontroller with 48/64 Pins, 5 V Supply, Inverter, CAN and USB .... 21
NFC Forum Type 4 Tag and I2C Interface ......................................................................................... 6
STM32F0x2, 32-bit Microcontroller with Crystal-less USB ........................................................ 22
LPS25H, MEMS Pressure Sensor, 260...1260 hPa Absolute Digital Output Barometer ........... 57
BlueNRG, Bluetooth® Low Energy Wireless Network Processor ............................................... 69
M24SR64, Dynamic NFC/RFID Tag IC with 64-Kbit EEPROM,
SPWF01SA/SC, Serial-to-WLAN 802.11 b/g/n Intelligent Modules ............................................ 70
e•MMC™ - THGBMxxxx, Cost Effective Mass Storage Solution ............................................... 27
TC58Bxxxx BeNAND, Cost Effective 24 nm SLC NAND with Embedded ECC ......................... 28
TLP182/183/292/293, Low Input Current Transistor Photocouplers ........................................... 39
TLP2395, TLP2398, Dual Polarity Input Photocouplers for Industrial Designs ......................... 40
VOW3120, Widebody, High Isolation, 2.5 A IGBT Driver ............................................................. 41
SiP12109, 4 A, 4.5...15 V Input Synchronous Buck Regulator ..................................................... 54
ADS8319, 16-Bit, 500 Ksps, Serial Interface microPOWER, Miniature SAR ADC ....................... 7
DRV411, Sensor Signal Conditioning IC for Closed-Loop Magnetic Current Sensors ............... 8
OPAx172, 36 V, Single-Supply, 10 MHz, Rail-to-Rail Output, Operational Amplifier ................. 9
TM4C1294, Tiva C Series Microcontroller ..................................................................................... 23
BQ27621, System-Side Impedance Track Fuel Gauge with Dynamic Voltage Correlation ..... 51
LMZ10500/501, SIMPLE SWITCHER® Nano Module with 5.5 V
Maximum Input Voltage .................................................................................................................. 52
TPS92561, Phase Dimmable, Single Stage Boost Controller for LED Lighting......................... 53
6 MIP Edition 1/2014
100-up price
M24SR64-YDW6T/2
€ 0.80
100-up price
M24SR64-YMN6T/2
€ 0.80
M24SR64Dynamic NFC/RFID Tag IC with 64-Kbit EEPROM, NFC Forum Type 4 Tag and I2C Interface
The M24SR64-Y device is a dynamic
NFC/RFID tag that can be accessed
either from the I2C or the RF interface.
The RF and I2C host can read or write to
the same memory, which is why only
one host can communicate at a time
with the M24SR64-Y. The management
of the interface selection is controlled by
the M24SR64-Y device itself.
The RF interface is based on the ISO/
IEC 14443 Type A standard. The
M24SR64-Y is compatible with the NFC
Forum Type 4 Tag specifications and
supports all corresponding commands.
The I2C interface uses a two-wire serial
interface consisting of a bidirectional
data line and a clock line. The devices
carry a built-in 4-bit device type identifier
code in accordance with the I2C bus
definition. The device behaves as a slave
in the I2C protocol.
KEY FEATURES
• I2C interface:• Two-wire I2C serial interface
supports 1 MHz protocol• Single supply voltage: 2.7...5.5 V
• Contactless interface:• NFC Forum Type 4 Tag• ISO/IEC 14443 Type A• 106 Kbps data rate• Internal tuning capacitance: 25 pF
• Memory:• 8-Kbyte (64-Kbit) EEPROM• Support of NDEF data structure• Data retention: 200 years• Endurance: 1 million erase-write
cycles• Read up to 246 bytes in a single
command• Write up to 246 bytes in a single
command• 7 bytes unique identifier (UID)• 128 bits passwords protection
• Packages:• 8-lead small-outline package (SO-8)
ECOPACK®2• TSSOP-8 ECOPACK®2• UFDFPN-8 ECOPACK®2• WFDFDN-8 ECOPACK®2
• Digital pad:• GPO: configurable general purpose
output• RF disable: activation/deactivation
of RF commands
APPLICATION EXAMPLES
• Home automation• Home appliances• Consumer electronics• Healthcare• Printers• Smart meters
Supply voltagefor I2C interface
RF interfacebased on
ISO/EC 14443Type A
standard
I2C interface2.7 V-5.5 V
VCC
AC1
AC0
RFdisable
NFC I2Cinterface
Digital unit
Power Management
Unit
UID & systemarea
Usermemory
Analog Front-endbased on
ISO/IEC 14443Type A standard
Internal tuningcapacitanee
NFC ForumType4 Tagprotocol
GPO
SCL
SDA
GND
7MIP Edition 1/2014
ANAL
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MIX
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SIGN
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DSP
& M
PUM
CU &
PER
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MEM
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OPTO
ELEC
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MOD
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100-up price
ADS8319IBDGSR
€ 8.-
100-up price
ADS8319IBDGST
€ 8.90
100-up price
ADS8319IDRCR
€ 6.40
ADS831916-Bit, 500 Ksps, Serial Interface microPOWER, Miniature SAR ADC
The ADS8319 is a 16-bit, 500 ksps
analog-to-digital converter. It operates
with a 2.25...5.5 V external reference.
The device includes a capacitor based,
SAR A/D converter with inherent sample
and hold.
The device includes a 50 MHz SPI
compatible serial interface. The interface
is designed to support daisy chaining
or cascading of multiple devices. Also
a makes it easy to synchronize with the
digital host.
The ADS8319 unipolar single-ended
input range supports an input swing of
0 V to +VREF.
Device operation is optimized for very
low power operation, and the power
consumption directly scales with speed.
This feature makes it attractive for lower
speed applications.
It is available in 10-pin MSOP and SON
packages.
KEY FEATURES
• Precision SAR ADC performance• +/-1.5 LSB max. INL• +/-1.0 LSB max. DNL• Pseudo differential input
• Flexible digital voltage supply:
2.7...5.5 V• Excellent AC performance (10 kHz)
• SNR: 93.6 dB• THD: -106 dB• SFDR: 107 dB
• Pin compatible upgrade to
AD7683/5/6/8• Reduce system power consumption
without sacrificing performance• 18 mw @ 500 ksps with 5 V supply• Only 3.6 mW @ 100 ksps
• Full 16-bit precision SAR performance
for battery power or low voltage
applications• Easy upgrade for existing designs
• Improved performance when
upgrading from ADI devices
APPLICATION EXAMPLES
• Battery powered applications• Data acqusition systems• Instrumentation and process control• Automatic test equipment (ATE)
LINK
Product page:
www.ti.com/dis-ebv-2014mip1-
ads8319-pf-eu
+VA +VBD
SAR
CDAC
Conversion and I/OControl Logic
I/PShiftReg
O/PDrive
ADS8319
SDO
SDI
SCLK
IN+
IN-
REFIN
GND CONVST
COMP
ANAL
OG &
MIX
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8 MIP Edition 1/2014
100-up price
DRV411AIPWP
€ 1.65
1-up price
DRV411EVM
€ 135.-
100-up price
DRV411AIRGPT
€ 1.45
DRV411Sensor Signal Conditioning IC for Closed-Loop Magnetic Current Sensors
The DRV411 is designed to condition
InSb Hall elements for use in closed-
loop current-sensor modules. It provides
precision excitation circuitry for the
Hall element effectively eliminating
the offset and offset drift of the
element. This device also provides a
250 mA H-bridge for driving the sensor
compensation coil as well a precision
differential amplifier to generate the
output signal. The 250 mA drive
capability of the H-bridge roughly
doubles the current measurement range
compared to conventional single-ended
drive methods.
The Hall sensor front end circuit and the
differential amplifier employ proprietary
offset cancelling techniques. These
techniques, along with a highly accurate
voltage reference, significantly improve
the accuracy of the overall current-
sensor module. The output voltage is
pin-selectable to support a 2.5 V output
for use with a 5 V power supply, as
well as 1.65 V for 3.3 V sensors. For
optimum heat dissipation, the DRV411
is available in thermally enhanced
PowerPAD packages.
KEY FEATURES
• Optimized for symmetric Hall
elements (for example, AKM HW-322,
HW-302, or similar) • Spinning current hall sensor excitation
• Elimination of Hall sensor offset and
drift• Elimination of 1/f noise
• Extended current measurement range• H-Bridge drive capability: 250 mA
• Precision difference amplifier:• Offset and drift: 100 µV (max.),
2 µV/°C (max.)• System bandwidth: 200 kHz
• Precision reference:• Accuracy: 0.2% (max.)• Drift: 50 ppm/°C (max.)• Pin-selectable for 2.5 V, 1.65 V, and
ratiometric mode • Overrange and error flags• Supply voltage: 2.7...5.5 V• Packages: 4 × 4 mm2 QFN and
TSSOP-20 PowerPAD™• Temperature range: -40...+125 °C
APPLICATION EXAMPLES
• Closed-loop current sense modules
LINK
Product page:
www.ti.com/dis-ebv-2014mip1-drv411-
pf-eu
PrimaryWinding
DRV411
SensorExcitation
Ro
tati
on
Sw
itch
es Demodand
Filtering
Gain, Compensation,Excitation Control
GSEL1 GSEL2 ERROR GND ICOMP2 OR RSEL1 RSEL2
Cla
ss A
BP
re-D
rive
r
LinearH-BridgeDriver
DifferentialAmplifier
Ove
rran
ge
Voltage Reference2.5 V, 1.65 V,Ratiometric
VOUTREFIN
IAIN1IAIN2
RSHUNT
ICOMP1
VDD
REFOUT
CompensationWinding
HALL1
HALL4
IPRIM
Hal
l S
en
sor
Magnetic Core
9MIP Edition 1/2014
ANAL
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MIX
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DSP
& M
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CU &
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MEM
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POW
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ANAL
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ALS100-up price
OPA172ID
€ 0.80
OPAX17236 V, Single-Supply, 10 MHz, Rail-to-Rail Output, Operational Amplifier
The OPA172, OPA2172 and OPA4172
(OPAx172) are a family of 36 V, single-
supply, low-noise operational amplifiers
with the ability to operate on supplies
ranging from +4.5 V (±2.25 V) to +36 V
(±18 V). This latest addition of high
voltage CMOS operational amplifiers,
in conjunction with the OPAx171
and OPAx170 provide a family of
bandwidth, noise, and power options
to meet the needs of a wide variety of
applications. The OPAx172 are available
in micropackages and offer low offset,
drift, and quiescent current. These
devices also offer wide bandwidth, fast
slew rate, and high output current drive
capability. The single, dual, and quad
versions all have identical specifications
for maximum design flexibility.
Unlike most op amps, which are
specified at only one supply voltage,
the OPAx172 family is specified at
4.5...36 V. Input signals beyond the
supply rails do not cause phase reversal.
The input can operate 100 mV below the
negative rail and within 2 V of the top rail
during normal operation. Note that these
devices can operate with full rail-to-rail
input 100 mV beyond the top rail, but
with reduced performance within 2 V of
the top rail. The OPAx172 series of op
amps are specified over -40...+125 °C.
KEY FEATURES
• Wide supply range: 4.5...36 V,
±2.25...±18 V• Low offset voltage: ±0.2 mV• Low offset drift: ±0.3 µV/°C• Gain bandwidth: 10 MHz• Low input bias current: ±8 pA• low quiescent current: 1.6 mA per
amplifier• low noise: 6 nV/√Hz• EMI and RFI filtered inputs• Input range includes the negative
supply• Input range operates to positive
supply• Rail-to-rail output• High common-mode rejection: 120 dB
APPLICATION EXAMPLES
• Tracking amplifier in power modules• Transducer amplifiers, bridge
amplifiers• Temperature measurements• Strain gauge amplifiers• Precision integrators, test equipment
LINK
Product page:
www.ti.com/dis-ebv-2014mip1-opa172-
pf-eu
0.01
0.001
0.0001
0.00001
-80
-100
-120
-140
10 100 1K 10K
Frequency (Hz)
VOUT
=3.5 VRMS
BW=80kHz
G=+1 V/V, RL=10 k
G=+1 V/V, RL=2 k
G=+1 V/V, RL=600
G=-1 V/V, RL=10 k
G=-1 V/V, RL=2 k
G=-1 V/V, RL=600
Total H
armo
nic D
istortio
n+
No
ise (dB)
Tota
l Har
mo
nic
Dis
tort
ion
+N
ois
e (
%)
10 MIP Edition 1/2014
100-up price
PS1021ASE7HNA
€ 24.-
100-up price
PS1021ASE7KQA
€ 24.-
QORIQ LS1 FAMILYARM-Based Network Processors with <3 W Consumption
All 3 products in the QorIQ LS1 family
are pin-compatible, and engineered
to support a broad range of fan-less
networking applications, including
Internet of Things (IoT) gateways,
industrial automation and control and
networked storage devices.
The QorIQ LS1 family incorporates
several differentiating technologies,
and represents a breakthrough in SoC
design, allowing customers for the first
time to implement advanced capabilities
such as hardware-based virtualization
and Secure Boot and Trust Architecture,
together with enterprise-class reliability,
in a single chip that consumes less
than 3 watts (typical). ECC protection
technology is also included to support
high reliability “always on/always
available” applications, such as safety
or health monitoring equipment, as well
as industrial automation and process
control equipment. The LS1021A
family of products is the first sub-3 W
processor to offer ECC protection for
both the L1, L2 and all SRAM memories.
The level of integration achieved with
the LS1 family again sets the bar among
sub-3 W microprocessors, combining a
richer suite of high-speed, serial IO and
peripheral controllers than has ever been
offered before.
Freescale also offers a corresponding
power management IC (PMIC) for the
QorIQ LS1 devices. The MC34VR500
PMIC supplied by a single voltage
delivers all supply voltages, power
sequencing and fault detection needed
for a QorIQ LS1 design. It has 4
independent buck converters and 5 user
programmable LDOs and comes in a
8 x 8 mm² QFN package.
KEY FEATURES
• Dual high efficiency ARM Cortex-A7
cores with dual precision floating point
and NEON SimD modules• 512 KB coherent L2 cache• DDR controller supporting DDR3L and
DDR4 memory at up to 1600 Mtps• Three virtualized triple-speed Ethernet
controllers
• Dual PCIe 2,0 controllers• USB 3.0 with integrated PHY• SATA3, CAN, HDLC/TDM, SPI, I2C,
I2S, and ten UARTs• Freescale secure boot• Trust Architecture and ARM TrustZone
support, including tamper protection
and manufacturing protection
APPLICATION EXAMPLES
• Secure IoT gateways• Asset mangement• Secure NAS• Programmable logic control master• Access point/router• Point of sale station• ATM
LINK
Product page:
www.freescale.com/LS1021A
System Control
System Interfaces
Internal BootROM
Security Fuses
Security Monitor
Power Management
DMA
IFC Flash
QuadSPI Flash
1x SD/MMC
2x DUART, 6x LP UART
3x I2C/2x SPI
4x CAN, FlexTimer, PWM
4x I2S/ASRC/SPDIF
1x USB 3.0 w/PHY
1xUSB 2.0
LCD Controller
ARM CortexA7
ARM CortexA7
FPU FPUNeon Neon
32 KBD-Cache
32 KBD-Cache
32 KBI-Cache
32 KBI-Cache
512 KB Coherent L2
DDR3L/4Memory
Controller128 KBSRAM
4-Lane 6 GHz SERDES
Cache Coherent Interconnect (CCI 400)
uQ
E(H
DL
C, T
DM
, P6
)
Sec
uri
ty(X
oR
, CR
C)
Eth
ern
et
Eth
ern
et
Eth
ern
et
PL
Ie 2
.0
PL
Ie 2
.0
SA
T A
3.0
11MIP Edition 1/2014
ANAL
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100-up price
ATA6614Q-PLQW
€ 2.65
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ATA6614Q32 KB Flash Microcontroller with LIN Transceiver, 5 V Regulator and Watchdog
The Atmel® ATA6614Q is a system-
in-package (SiP) product, which is
particularly suited for complete LIN-bus
slave-node applications.
It consists of two ICs in one package
supporting highly integrated solutions for
in-vehicle LIN networks. The first chip
is the LIN system basis chip (LIN-SBC)
Atmel ATA6630, which has an integrated
LIN transceiver, a 5 V regulator (85 mA)
and a window watchdog. The second
chip is an automotive microcontroller
with advanced RISC architecture
and 32 Kbytes of Flash (Atmel
ATmega328P). All pins of the AVR
microcontroller and almost all pins of the
LIN system basis chip are bonded out to
provide customers the same flexibility
for their applications as they have when
using discrete parts.
The Atmel ATA6614Q is pin compatible
to the Atmel ATA6612C and ATA6613C.
KEY FEATURES
• Single-package fully-integrated
AVR 8-bit microcontroller with LIN
transceiver, linear low-drop 5 V ±2%
regulator (85 mA current capability)
and adjustable window watchdog• Boosting the voltage regulator
possible with an external NPN
transistor• Supply voltage up to 40 V• Operating voltage: 5...27 V• Very low current consumption:
• Typically 10 μA supply current
during sleep mode• Typically 35 μA supply current in
silent mode• Wake-up capability via LIN-bus, wake
pin, or Kl_15 pin• INH output to control an external
voltage regulator or to switch off the
master pull-up resistor• TXD time-out timer• Advanced RISC architecture
(up to 20 Mips at 20 MHz)• 32 Kbytes Flash memory for
application program
• 1 Kbyte EEPROM and 2 Kbytes
internal SRAM• Two 8-bit and one 16-bit timer/
counters• Six PWM channels• 8-channel 10-bit ADC• Programmable serial USART• SPI• 2-wire serial interface• Analog comparator• Six low-power modes• Internal calibrated oscillator• Excellent EMC performance• Case temperature range: -40...+125°C• QFN-48, 7 × 7 mm2 package
APPLICATION EXAMPLES
• All LIN network applications• Cars• Commercial vehicles• Agricultural and off-road vehicles• Medical instruments and tools• Elevators
LINK
Product page:
www.atmel.com/devices/ATA6614Q.
aspx
12 MIP Edition 1/2014
100-up price
ATSAMA5D31A-CFU
€ 7.15
1-up price
ATSAMA5D3-XPLD
€ 70.-
100-up price
ATSAMA5D36A-CU
€ 8.60
ATSAMA5D3New Cortex™-A5 Family of Embedded MPUs
The Atmel® SAMA5D3 is a high
performance, power-efficient embedded
MPU based on the ARM® Cortex™-A5
processor
The device allows full application
compatibility with the Cortex™-A8,
Cortex™-A9 and classic ARM
processors and is able to achieve
536 MHz with power consumption
levels below 0.5 mW in low power
mode. It features a floating point unit
for high-precision computing and
accelerated data processing. A high data
bandwidth architecture is also available.
It integrates advanced user interface
and connectivity peripherals as well as
security features.
The SAMA5D3 provides an internal
multi-layer bus architecture associated
with 39 DMA channels to sustain
the high bandwidth required by
the processor and the high speed
peripherals. The device offers support
for DDR2/LPDDR/LPDDR2 and MLC
NAND flash memory with 24-bit ECC.
SAMA5D3 allows high-end features
to be brought to power sensitive and
cost-sensitive applications. The family
contains five devices with different
embedded features.
KEY FEATURES
• <0.5 mW in low-power mode with
instant wake-up capability• <200 mW in RUN mode at 536 MHz
with all peripherals activated• <2 μA typical in back-up mode• Fully integrated MMU and FPU• 32-bit DRAM interface w/ DDR2,
LPDDR2, LPDDR memory support• MLC NAND with 24-bit ECC• Gigabit EMAC with IEEE1588• Up to 3 HS USB ports• LCD with overlays• Encryption engine and secure boot
APPLICATION EXAMPLES
• HMI and control panels• Imaging and gateways• Battery-operated applications
TOOLS
• ATSAMA5D3x-EK evaluation kits for
ach device• www.linux4sam.org
LINKS
SAMA5 Xplained page:
www.atmel.com/tools/ATSAMA5D3-
XPLD.aspx
SAMA5D31 SAMA5D33 SAMA5D34 SAMA5D35 SAMA5D36
LCD — 10/100 EMAC — — 10/100/1000
EMAC—
DUAL CAN — — ISI USB Secure Boot Crypto
13MIP Edition 1/2014
ANAL
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100-up price
ATSAMD21E16A-AU
€ 1.55
1-up price
ATSAMD21-XPRO
€ 35.-
100-up price
ATSAMD21J18A-MU
€ 2.50
SAM D21 SERIESARM® Cortex™-M0+ Based MCU Series
A rich set of peripherals, flexibility and
ease-of-use combined with low power
consumption make the Atmel SAM D21
ARM Cortex-M0+ based microcontroller
series ideal for a wide range of home
automation, consumer, metering and
industrial applications. The SAM D21
is designed for simple and intuitive
migration between SAM D devices with
identical peripheral modules, compatible
code and a linear address map.
SERCOM
SAM D devices feature multiple
instances of the serial communication
module (SERCOM). The SERCOM is
configurable to operate as I2C, SPI or
USART, giving developers extended
flexibility to mix serial interfaces
and greater freedom in PCB layout.
Each SERCOM instance can be
assigned to different I/O pins through
I/O multiplexing, further increasing
versatility.
Timers/Counters for Control
SAM D21 series have T/CCs, these are
timers/counters for control applications
like switch mode power supplies,
lighting and motor control. The T/CCs
support up to 96 MHz and 24-bit
resolution.
I2S
The inter-IC sound controller (I2S)
provides a bidirectional, synchronous
digital audio link with external audio
devices. Peripheral DMA channels,
separated for each serializer, allow a
continuous high bit rate data transfer
without processor intervention. The
SAM D devices with I2S have a built
in fractional PLL to support glitch free
audio streaming from USB to I2S.
DMA
Up to 12 DMA channels are available
in SAM D. The DMA supports data
transfers from 1 byte to 256 Kbytes
and has selectable transfer triggers and
priority levels. The DMA is connected to
the ADC, DAC, I2S, SERCOM, T/C and
the T/CC.
FS USB 2.0
Selected SAM D products feature full
speed USB device and embedded host.
In device mode, a SAM D device can
operate from the internal RC oscillator
giving you a minimum bill of materials
and PCB-area implementation. The USB
drivers are available from Atmel through
the Atmel Software Framework.
Peripheral Touch Controller
An embedded peripheral touch
controller (PTC) makes it easy to add
capacitive touch sensing to your project
with buttons, sliders, wheels and
proximity. Implementing one button
takes one channel, while wheels and
sliders take 3 channels to implement.
KEY FEATURES
• ARM Cortex-M0+ based MCU
running up to 48 MHz• Up to 256 KB embedded Flash and
32 KB SRAM• Low power consumption:
<70 µA/MHz
World-class tools• SAM D family Xplained Pro starter kits• Atmel Studio with compiler support
– free• Atmel Software Framework – free• Low-level drivers and stacks – free
APPLICATION EXAMPLES
• Home Automation• Consumer Appliances• Metering• Industrial Control
LINK
Product page:
www.atmel.com/products/
microcontrollers/arm/sam-d.aspx
14 MIP Edition 1/2014
1-up price
ATSAMR21-XPRO
€ 35.-
1-up price
SAMR21E16A-MU
€ 4.95
SAM R21ARM Cortex-M0+ Based IEEE 802.15.4 Wireless MCUs
The Atmel® SAM R21 series of low-
power microcontrollers combines the
32-bit ARM® Cortex®-M0+ processor
and an integrated ultra-low power
2.4 GHz ISM band transceiver.
These devices are available in 32- and
48-pin packages with up to 256 KB
Flash, and 32 KB of SRAM. They deliver
a maximum operating frequency of
48 MHz and reach 2.14 CoreMark/MHz.
SAM R21 devices are designed for
simple and intuitive migration with
identical peripheral modules, hex
compatible code, identical linear address
map, and pin compatible migration
paths between all devices in the product
series.
All devices include intelligent and flexible
peripherals, Atmel Event System for
inter-peripheral signaling, and support
for capacitive touch button, slider and
wheel user interfaces.
KEY FEATURES
• High performance:• 48 MHz operation• 2.14 CoreMark/MHz• Single-cycle IO access• 12-channel event system• 12-channel DMA
• Low power:• <70 µA/MHz• <3.5 µA RAM retention and RTC• Internal and external oscillators• On-the-fly clock switching and
prescaling• Robust peripheral set:
• Ultra-low power 2.4 GHz transceiver• Up to five serial communication
modules (SERCOM) configurable as
UART/USART, SPI or I2C• Up to three 16-bit timer/counters• Peripheral touch controller that
supports buttons, sliders,wheels
and proximity with up to
48 channels• Real time clock (RTC) and calendar
with leap year correction and 1 ppm
calibration• 12-bit, 300 kbps ADC• Full speed USB device and host
APPLICATION EXAMPLES
• Remote controls, touch interfaces• Identification and asset tracking• Smart lighting• Home automation• Smart energy• Industrial monitoring and control
TOOLS
The Atmel® SAM R21 Xplained
Pro evaluation kit provides easy
access to the features of the Atmel
ATSAMR21G18A and include an
on-board Embedded Debugger. It is
fully supported by the free Atmel Studio
integrated development platform.
CURRENT MEASUREMENT HEADER
TARGET USB
SW0 USER BUTTONRESET BUTTONDEBUG USB
POWER HEADERCORTEX DEBUG FOR
EXTERNAL DEBUGGER32.768 kHz CRYSTAL
EXTENSION HEADER 1
EXTENSION HEADER 3
EXTERNAL ANTENNACONNECTOR
ANTENNA SWITCH & BALUN
16 MHz CRYSTAL FOR RFCHIP ANTENNA
USER LED0
SAMR21 Xplained Pro Evaluation Kit
15MIP Edition 1/2014
ANAL
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TRK-KEA64
€ 37.25TRK-KEA8
€ 37.25TRK-KEA128
€ 37.25
KINETIS EA SERIESARM® Cortex®-M0+ Microcontrollers for Automotive and Harsh Environments
Freescale has introduced the new
Kinetis EA for automotive, the first of
a series of 32-bit ARM MCUs AEQ100
qualified for harsh environments. The
Kinetis EA series of MCUs provides
a cost-effective, automotive-grade,
scalable 32-bit portfolio with complete
ARM ecosystem. The development
environment for the Kinetis EA series of
MCUs is unmatched in the industry, with
comprehensive automotive reference
designs and a suite of easy-to-use tools
that support fast prototyping.
This series includes a set of analog,
communication, timing and control
peripherals with varying Flash memory
size and pin count. These scalable
devices are highly robust, and offer
an enhanced ESD/EMC performance
solution for cost-sensitive automotive
applications.
KEY FEATURES
• Voltage range: 2.7...5.5 V• Temperature range (ambient):
-40...+125 °C• ARM® Cortex®-M0+ core• Up to 128 KB embedded Flash• Up to 16 KB RAM• External OSC and internal ICS for
clock• System functions: LVD, WDG, CRC,
SWD, BITBAND, BME, LP modes• Communication interfaces: SPI, SCI,
I2C, CAN• Multiple timers: FTM, PWM, PIT,
PWT, RTC• 12-bit ADC and ACMP• Packages: 16-TSSOP, 24-QFN,
32-LQFP, 64-LQFP, 80-LQFP• Pin compatible within KEA family
APPLICATION EXAMPLES
• DC/BLDC motor control• Hospital beds• Battery management• Pump/fan control• LED lighting control• Generic sensor node• Infotainment gateway• Park assistance• Electronic park brake• TPMS• Motorcycle engine control• HVAC• Window lift, sun roof. door control• Seat, mirror, wiper control• Immobiliser
Memories and
Memory Interfaces
Flash
RAM
Analog Timers Communication
Interfaces
SPIx2
Clocks
Frequency-
Core
Serial wiredebug
interfaces
NVIC
x2ACMP
Human-MachineInterface (HMI)
System
Watchdog locked loop
referenceInternal
clocks
oscillatorInternal
UARTx3
® Cortex -M0+ARM
GPIOs
BME
PIT
RTC
Security
and Integrity
CRC
MSCANPWT
®
x2
x1
x1I C2FTMs
2x2ch 1x6ch
KBIx2
12-bit ADCx1
x1
x1
x1
16 MIP Edition 1/2014
100-up price
MK64FN1M0VMD12
€ 6.40
1-up price
FRDM-K64F
€ 24.95
KINETIS K63/K64Ethernet/USB ARM® Cortex®-M4 120 MHz MCUs
The Kinetis K series MCU portfolio
offers the broadest selection of pin,
peripheral- and software-compatible
MCU families based on the ARM®
Cortex®-M4 core. These families are
performance efficient and offer industry-
leading low power while providing
significant BOM savings through smart
on-chip integration. Optimized for
cost-sensitive applications requiring
processing efficiency and low-power,
the new Kinetis K63/K64 MCU families
support crystal-less USB design for
reduced system cost and board space.
The K63/K64 MCUs expands the
Kinetis K series with new low-power
ARM® Cortex®-M4 based MCUs while
keeping full software, hardware and
development tool compatibility. The
K63/K64 families offer up to 1 MB of
Flash memory and 256 KB SRAM.
Package options include 100 and 144
LQFP and 121 and 144 MAPBGA.
KEY FEATURES
• Cortex-M4 up to 120 MHz with FPU• Memory:
• up to 1 MB Flash,• up to 256 KB SRAM• up to 4 KB EEPROM (FlexMemory)
• Communications:• USB OTG FS/LS with PHY and USB
regulator• Ethernet with IEEE1588• CAN• Multiple serial ports
• Analog:• 2 x 16-bit ADC
• 2 x 12-bit DAC• 3 x analog comparators
• Timers:• 2 x 8-ch FTM (PWM)• 2 x 2-ch FTM (PWM, quadrature
decode)• Low power timer• RTC with independent VBAT supply
• Supply voltage: 1.71...3.6 V• Operating temperature range:
-40...+105 ˚C• Tamper protection• Crypto acceleration• Packages: 100-LQFP, 121-MAPBGA,
144-LQFP, 144-BGA
APPLICATION EXAMPLES
• Building control• Factory automation• Industrial drivers• IoT data concentrators• Medical monitoring
Core
Analog Timers HMICommunication Interfaces
Securityand
Integrity
System Memories ClocksARM® Cortex® -M4
100/120/150MHzDebug
Interfaces
InterruptController
CyclicRedundancyCheck (CRC)
RandomNumber
Generator
CryptographicAccelerationUnit (CAU)
H/W TamperDetection
Unit
Standard Optional
16-bit ADC
PGA
Analog Comparator
6-bit DAC
12-bit DAC
Voltage Reference
FlexTimer
CarrierModulator
Transmitter
ProgrammableDelay Block
PeriodicInterruptTimers
Low-PowerTimer
IndependentReal-Time
Clock (RTC)
EEE 1588Timer
I2C
UART(ISO 7816)
SPI
CAN
IEEE 1588Ethernet MAC
I2S
SecureDigital HostController
(SDHC)
USB On-the-Go(LS/FS)
USB On-the-Go(HS)
USB DeviceCharger Detect
(DCD)
USB VoltageRegulator
GPIO
XtrinsicLow-Power
Touch-SendingInterface
DSP
Floating-Point
Unit (FPU)
Internal andExternal Watchdog
MemoryProtection Unit (MPU)
DMA
Low-LeakageWake-Up
Unit
Program Flash(256 KB...1 MB)
FlexMemory(256...512 KB)(4...16 KB EE)
SerialProgramming
Interface(E-Port)
NAND FlashController
SRAM(64...256 KB)
ExternalBus INterface
(FlexBus)
Cache
DDR Controller
Phase-LockedLoop
Frequency-Locked Loop
Low/High-FrequencyOscillators
Internal Reference
Clocks
17MIP Edition 1/2014
ANAL
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1000-up price
MKV10Z32VLF7
€ 1.52
100-up price
TWR-KV10Z32
€ 85.-
KINETIS V SERIESKinetis KV1x ARM Cortex-M0+ MCU Family for BLDC Motor Control
The Kinetis KV1x MCU family is the
entry point into the V series - the first
Kinetis series specifically designed for
motor control. The highest performance
ARM Cortex-M0+ MCU in the
industry and advanced ADC and timing
peripherals, it provides a powerful,
cost-competitive solution for BLDC and
PMSM motor control applications.
Built upon the ARM® Cortex®-M0+ core
running at 75 MHz with hardware square
root and divide block, KV1x delivers
a significant increase in performance
in math-intensive applications versus
comparable MCUs, allowing it to target
BLDC as well as more computationally
demanding PMSM motors. Additional
features include dual ADCs sampling at
up to 1.2 Msps, multiple motor control
timers with fault-detect capability, and
up to 32 KB of Flash memory. The
KV1x is supported by a comprehensive
enablement suite from Freescale
and third-party resources, including
reference designs, software libraries and
motor configuration tools.
KEY FEATURES
• 75 MHz Cortex-M0+ core with
hardware DIV & SQRT block• Improves performance in math-
intensive applications (e.g.,
processing of sensorless field-
oriented control (FOC) algorithms)• 2x 16-bit ADCs with two capture
and hold circuits and up to 1.2 Msps
samples rate in 12-bit mode• simultaneous measurement of
current and voltage phase, reduced
jitter on input values improving
system accuracy• 1 x 6-channel and 2 x 2-channel
programmable FlexTimers• High-accuracy PWM generation
with integrated power factor
correction or speed sensor decoder
(incremental decoder/hall sensor)• 12-bit DAC and 2 x ACPMs (analog
comparators)• Overcurrent and overvoltage fault
detection, reduced BOM costs.
ADC and ACMP interconnect with
PWM and PDB (programmable
delay) blocks for real-time hardware
control.• Dual watchdogs• Compliance with IEC 60730 safety
regulation requirements
• Broad family scalability with hardware
and software compatibility• Easy migration to more
performance, memory and feature
integration within the Kinetis V
series
APPLICATION EXAMPLES
• Sensorless BLDC motor control• Entry-level sensorless PMSM motor
control• Compressors• Pumps• Appliances
LINK
Kinetis V page:
www.freescale.com/kinetis/vseries
CoreARM® Cortex Kinetis V
Series-M0+75 MHz
DebugInterfaces
HW Divide &Sq. Root
InterruptController
Cyclic RedundancyCheck (CRC)
Securityand Integrity
6-Ch. FlexTimer
2x2-Ch. FlexTimer
Low-Power Timer
Programmable Delay Block
Timers
1x12-bit DAC
2x ACMP
2x 16-bit ADC
Analog
1xSPI
2x UARTs
1x I2C
CommunicationInterfaces
GPIO
HMI
SystemInternal and
External Watchdogs
Inter-ModuleCrossbar
Program FlashUp to 32 KB
SRAMUp to 8 KB
Frequency-Locked Loop
Low/High-Frequency OscillatorsInternal
ReferenceClocks
4 Ch. DMA
Memory Clocks
18 MIP Edition 1/2014
100-up price
S912ZVML12F1MKH
€ 5.30
100-up price
S912ZVML12F1WKH
€ 6.10
S12ZVMS12 MagniV for 3-Phase BLDC/PMSM Motor Control
Want to move from DC motors to
Brushless DC? Do you struggle with
PCB space? Can you run field oriented
control (FOC) for a smooth and efficient
PMSM control performance? Want
software off-the-shelf to get your motor
spinning quickly? Flexibility to connect
to either LIN or CAN networks? And
use MATLAB for your model based
development flow?
The S12ZVM family is aimed at
delivering the smallest, most efficient
and scalable BLDC/PMSM motor control
solution for automotive applications.
A complete hardware and software
offering will help you develop a high-
performance and robust solution quickly.
Like the other products of the S12
MagniV portfolio it operates directly off
the 12 V automotive battery voltage. In
fact it can address any BLDC/PMSM
motor control applications supplied in
the 3.5...20 V range.
KEY FEATURES
• MCU with S12Z core @ 50 MHz
with all necessarity motor control
peripherals to drive 3 phase BLDC/
PMSM motors:• Dual ADC for synchronous V/I
measurements• Programmable trigger unit (PTU)• PWM modules (PMF)
• LDO generating internal 5 V as well as
11 V supply to the gate drive unit from
Vsup = 3.5...20 V• Gate drive unit (GDU) to control
the 6 MOSFETs• LIN PHY (L version)• or 2nd VREG for external CAN PHY
(C version) • Motor control library• Autosar OS
• RAppID Toolbox for Processor In
the Loop rapid prototyping• Project template to get up and
running fast
APPLICATION EXAMPLES
• Automotive pumps• Fans and blowers
LINKS
Product page:
www.freescale.com/magniv
Development tools page:
www.freescale.com/AutoMCDevKits
Ext. Osc BDM
PLL
Voltage Regulator
Temp Sense
Charge Pump
Gate DriverUnit
Current Sense(2x
Opamp)
LINPhysicalInterface
Core and Memories
Digital Peripherals
HV Analog 5V Analog
128 KB Flash
S12ZCore
8 KB RAM
PT
U 6-ch.PWM5+4-ch.
Dual 12-bit ADC
512 B EEPROM
KWU
RTI
Watchdog
SPI
SCI
SCI
4-ch. Timer
MSCAN
IRC
GP
IO
Product Name S12ZVML128 S12ZVMC128 S12ZVML64 S12ZVMC64 S12ZVML32
Connectivity LIN CAN LIN CAN LIN
Pin Count 64 64 64 64 64
Bus Speed
(MHz)
50 50 50 50 50
Flash (KB) 128 128 64 64 32
RAM (KB) 8 8 4 4 2
EEPROM
(Bytes)
512 512 512 512 512
LIN Ohy 1 0 1 0 1
Second VREG 0 1 0 1 0
GDU 3 LS,3 HS 3 LS,3 HS 3 LS,3 HS 3 LS,3 HS 3 LS,3 HS
MSCAN 1 1 1 1 0
SCI 2 2 2 2 2
SPI 1 1 1 1 1
ADC (Internal
Channel)
8 8 8 8 8
ADC (External
Channel)
4+5 4+5 4+5 4+5 4+5
Timer I/Os 6 PWM 4 IOC 6 PWM 4 IOC 6 PWM 4 IOC 6 PWM 4 IOC 6 PWM 4 IOC
19MIP Edition 1/2014
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100-up price
5P49V5901A000NLGI
€ 4.35
VERSACLOCK® 5Programmable Clock Generators
IDT introduces VersaClock® 5 with best-
in-class jitter performance at 50% lower
power. IDT's multi-output, low-power
timing solution features best-in-class
jitter performance and superior design
flexibility all while consuming half the
power of competing devices.
The 5P49V5901 is an eight-output
programmable clock generator capable
of generating independent frequencies
up to 350 MHz in various output
types – replacing up to eight crystals
to minimize board area and bill-of-
materials. With RMS phase jitter less
than 0.7 picoseconds over the full
12 kHz to 20 MHz integration range, the
new device meets the stringent noise
requirements of PCI Express Gen 1/2/3,
USB 3.0, and 1G/10G Ethernet.
The high-performance clock generator
operates at less than 100 mW core
power (50% lower than competing
devices), helping to ease system thermal
constraints and reduce operating power
expenses. Unlimited reprogramming is
possible via I2C, while four banks of one-
time programmable non-volatile memory
provides additional flexibility for multi-
project inventory consolidation or design
changes in field or production units. The
high level of integration, flexibility, and
performance enables system designers
to address a multitude of applications,
such as: consumer, networking,
computing, industrial, communications,
broadcast video, and medical. The
new product is fully supported by
IDT’s Timing Commander™ software
platform, allowing engineers to
configure and program their devices
with an intuitive, time-saving graphical
user interface (GUI). Pre-developed
configuration files are readily available
for the most common applications.
KEY FEATURES
• Capable of generating frequencies up
to 350 MHz• 4 universal output pairs – each output
pair can be configured as HCSL,
LVPECL, LVDS or two LVCMOS
outputs• One single-ended reference output
and 4 configurable output pairs• Buffered copy of reference input
eliminates additional crystal• Excellent phase jitter performance
(<0.7 ps RMS over 12 kHz - 20 MHz)
over wide range of frequencies
provides design flexibility
• Replaces up to 8 crystals for BOM,
board space and cost savings• Significantly less power eases thermal
constraints• In-system programming clock
generator via I2C or the IDT Timing
Commander software
APPLICATION EXAMPLES
• Consumer• Networking• Computing• Industrial• Communications• Broadcast video• Medical• PCIe Gen 1-2-3• 1G/10G Gigabit Ethernet• Ethernet switch• Router• FPGA clocking• USB 3.0
TOOLS
EVK-VC5-5901ALL
The VersaClock 5 evaluation kit was
designed to help the customer evaluate
the latest addition to the family of
programmable devices in IDT's timing
portfolio. When the board is connected
to a PC running IDT Timing Commander
Software through USB, the device
can be configured and programmed to
generate frequencies with best-in-class
performances.
®
20 MIP Edition 1/2014
100-up price
LPC4370FET100E
€ 4.05
100-up price
LPC4370FET256E
€ 5.60
LPC437032-bit ARM® Cortex™-M4 + 2 x M0 MCU; 282 KB SRAM; Ethernet; two HS USBs; 80 Msps 12-bit ADC
The LPC4370 are ARM Cortex-M4
based microcontrollers for embedded
applications, which also integrates two
ARM Cortex-M0 cores. Moreover, the
LPC4370 includes 282 KB of SRAM,
advanced configurable peripherals
such as the state configurable timer
(SCT) and the serial general purpose
I/O (SGPIO) interface, two high-speed
USB controllers, Ethernet, LCD, an
external memory controller, and multiple
digital and analog peripherals including
a high-speed 12-bit ADC. The LPC4370
operates at CPU frequencies of up to
204 MHz.
The ARM Cortex-M4 CPU incorporates
a 3-stage pipeline, uses a Harvard
architecture with separate local
instruction and data buses as well as a
third bus for peripherals, and includes
an internal prefetch unit that supports
speculative branching. The ARM
Cortex-M4 supports single-cycle digital
signal processing and SIMD instructions.
A hardware floating-point processor is
integrated in the core.
The LPC4370 includes an ARM
Cortex-M0 coprocessor and a
second ARM Cortex-M0 subsystem
for managing the SGPIO and SPI
peripherals. The ARM Cortex-M0 core
is an energy-efficient and easy-to-use
32-bit core which is code- and tool-
compatible with the Cortex-M4 core.
Both Cortex-M0 cores offer up to
204 MHz performance with a simple
instruction set and reduced code size.
KEY FEATURES
• 6 channel, 12 bit resolution, 80 MSPS
ADC• Cortex-M4 main processor and M0
coprocessor running up to 204 MHz• Cortex-M0 subsystem controlling the
SPI and SGPIO peripherals• 264 kB + 18 kB SRAM for code and
data • External Memory Controller• 10/100T Ethernet MAC with RMII and
MII interfaces• Support for IEEE 1588 time stamping• LCD controller with resolution of up to
1024H x 768V.• High-speed USB with on-chip high
speed PHY• Two CAN 2.0B controllers• PWM unit for three-phase motor
control• Quadrature Encoder Interface• Auxiliary 10 bit ADCs and DAC• Quad SPI Flash Interface• Unique ID for each device• Single 3.3V power supply• LBGA256 and TFBGA100 packages
APPLICATION EXAMPLES
• Test & Measurement• High Speed Data Logger• Smart Metering• Tool Machine Control
LINK
NXP ARM Cortex-M4 MCUs:
www.nxp.com/products/
microcontrollers/cortex_m4/
21MIP Edition 1/2014
ANAL
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100-up price
MB9BF566MPMC-G-JNE2
€ 4.25
100-up price
MB9BF568RPMC-G-JNE2
€ 5.30
MB9BF56XK\LFM4 Microcontroller with 48/64 Pins, 5 V Supply, Inverter, CAN and USB
The FM4 family of 32-bit, general-
purpose MCUs Based on the ARM®
Cortex™-M4F processor core, features
DSP and floating point unit (FPU)
functions. MB9BF56xK\L products are
available in 48-pin and 64-pin packages
with 256/384/512 Kbytes embedded
Flash and 32/48/64 Kbytes RAM. The
parts operate at clock frequencies of up
to 160 MHz, and support an operating
voltage range of 2.7...5.5 V. The internal,
trimmed RC oscillators function as an
independent clock source for the clock
supervisor and watchdog modules.
The devices also feature a two-stage
programmable low voltage detector
(LVD), a CRC hardware module, a
memory protection unit (MPU), and
programmable emergency stop input for
inverter control. A fast Flash memory
combined with a pre-fetch buffer
provides zero-wait-state operation up
to 160 MHz. The secure Flash memory
has an endurance of 100,000 write/
erase cycles with up to 20 years of data
retention.
The devices operate at 0.4 mA/MHz,
1.5 µA in RTC mode. The dedicated,
low-power chip design includes clock
and power gating. There are multiple
low-power options for finely grained
power-saving modes, and a dedicated
power domain for deep standby modes.
The devices include support for CAN
and USB 2.0. Motor-control features
include up to three multifunction timers
and respective number of quadrature
decoder units. The MCUs include up to
three high-speed, 12-bit A/D converters,
which can be triggered synchronously
and have a conversion time of 0.5 µs.
Other features include universal base
timers, a sub-clock option, and flexible,
multi-function serial interfaces.
KEY FEATURES
• Cortex-M4F based• 3.3 and 5.0 V support (single supply
voltage)• High performance, up to 160 MHz• FPU and DSP commands• Up to 512 Kbytes Flash, 64 Kbytes
RAM• High efficiency in run mode• Low power standby modes• Sophisticated inverter control• CAN, USB (function and host)• Functional safety hardware and
software library• Supported by dedicated solutions ‘FM
touch’, ‘FM inverter’, ‘FM connect’,
‘FM safety’
APPLICATION EXAMPLES
• White goods drives e.g. washing
machines• Industrial drives e.g. motors with
integrated inverter• 3-phase pumps• Compressors• Inverters• Industrial communication• CAN in Automation• Internet of things• USB
RC oscillator +/-2%
Clock Supervisor
Subclock (option)
Low voltage Detector 2ch
SWJ/TPIU/ETM Debug Ports
ARM Cortex-M4-CPU160 MHz (max.)
2.7...5.5. VMPU, FPU
Ta=-40°C...+105°C
MFS(UART/SPI/I2C)5*/6ch
USB FS Host+ Device
CAN (32 MSB)
OCUx6 ch
ADTx3 ch
Multi Function Timer 1-/2 ch
PPG 3*/6 ch
Base Timer8 ch
Dual TimerPackage: QFN48, LQFP48,
QFN64, LQFP64
MB9BF564K/L
MB9BF565K/L
MB9BF566K/L
FLASH256 K+32 K
FLASH384 K+32 K
FLASH251 K+32 K
Main CLK: 4 MHzSUB CLK: 32 kHzMain RC CLK: 4 MHzSub RC CLK: 100 kHz
SRAM32 K
SRAM48 K
SRAM64 K
12-bit DAC2 ch
8 ch*15 ch
12-bit ADC
12-bit ADC
ICU x 4 ch
FRTim x 3 ch
WaveformGenerator
QDU 1 ch
External IRQs15*/16 ch+NMI
DMA 8 ch
CRC
Hardware Watchdog
RTC y:m:h;m:s
ResourcePin Relocation
z
22 MIP Edition 1/2014
100-up price
STM32F071CBU6
€ 1.28
100-up price
STM32F072V8T6
€ 1.70
STM32F0X232-bit Microcontroller with Crystal-less USB
The STM32F0x2 microcontrollers
incorporate the high-performance ARM®
Cortex™-M0 32-bit RISC core operating
at a 48 MHz frequency, high-speed
embedded memories, and an extensive
range of enhanced peripherals and I/Os.
The microcontrollers operate in
the -40…+85 °C and -40…+105 °C
temperature ranges from a 2.0…3.6 V
power supply. A comprehensive set
of power-saving modes allows the
design of low-power applications. The
STM32F0x2 microcontrollers include
devices in six different packages ranging
from 48 pins to 100 pins with a die form
also available upon request. Depending
on the device chosen, different sets of
peripherals are included.
KEY FEATURES
• Memories:• 64 to 128 Kbytes of Flash memory• 16 Kbytes of SRAM with HW parity
checking• CRC calculation unit
• Reset and power management• Power-on/power down reset (POR/
PDR)• Programmable voltage detector (PVD)• Low power modes: sleep, stop,
standby• VBAT supply for RTC and backup
registers• Clock management:
• 4...32 MHz crystal oscillator• 32 kHz oscillator for RTC with
calibration• Internal 8 MHz RC with x6 PLL
option
• Internal 40 kHz RC oscillator• Internal 48 MHz oscillator with
automatic trimming based on
external synchronization• Up to 87 fast I/Os• 7-channel DMA controller• One 12-bit, 1.0 μs ADC (up to
16 channels)• One 12-bit D/A converter (with
2 channels)• Two fast low-power analog
comparators with programmable input
and output• Up to 24 capacitive sensing channels
for touchkey, linear and rotary touch
sensors• Calendar RTC with alarm and periodic
wakeup from stop/standby• 12 timers:
• One 16-bit advanced-control timer
for 6 channel PWM output
• One 32-bit and seven 16-bit timers,
with up to 4 IC/OC, OCN, usable for
IR control decoding or DAC control• Independent and system watchdog
timers• SysTick timer
• Communication interfaces:• Two I2C interfaces • Four USARTs• Two SPIs (18 Mbit/s)• CAN interface• USB 2.0 full-speed interface• HDMI CEC wakeup on header
reception• Serial wire debug (SWD)
• 96-bit unique ID• All packages ECOPACK®2
System
ARM Cortex-M0 CPU48 MHz Connectivity
Control
Analog
Power supply1.8 V regulatorPOR/PDR/PVD
Xtal oscillators32 kHz+4~32 MHz
Internal RC oscillators40 kHz+8 MHz
PLL
Clock control
Calendar RTC
SysTick timer
2x window watchdogs(independent and system)
37/51/87 I/Os
Touch-sensing controller
Cyclic redundancycheck (CRC)
Up to 128 Kbyte Flash memory
16-Kbyte SRAMHW parity checking
20-byte backup data
HDMI CEC
2x SPI(with I2S mode)
2xI2C(1x with fast-mode plus)
1xCAN
USB FS 2.0 (Xtal less)
4x USARTwith modern control
(2x with LIN, smartcard, IrDA)
1x16-bit motor controlPWM
Synchronized AC timer
1x32-bit timer5x 16-bit PWM timers
2x 16-bit basic timer
1-channel 12-bit DAC
1x12-bit ADC16channels/1 MSPS
2x analog comparator
Tempertaur sensor
AHB-Lite bus matrix
APB bus
5-channel DMA
Nested vectorinterrupt
controller (NVIC)
SW debug
23MIP Edition 1/2014
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100-up price
XM4C1294NCPDTI2
€ 8.60
TM4C1294Tiva C Series Microcontroller
The Tiva™ C series microcontrollers
feature integrated communication
peripherals along with other high-
performance analog and digital functions
to offer a strong foundation for many
different target uses, spanning from
human machine interface to networked
system management controllers. In
addition, Tiva™ C series microcontrollers
offer the advantages of ARM's widely
available development tools, system-
on-chip (SoC) infrastructure, and a large
user community. Additionally, these
microcontrollers use ARM's Thumb®-
compatible Thumb-2 instruction set
to reduce memory requirements
and, thereby, cost. Finally, the
TM4C1294NCPDT microcontroller is
code-compatible to all members of the
extensive Tiva™ C series, providing
flexibility to fit precise needs.
KEY FEATURES
Performance • ARM® Cortex™-M4F processor
core• 120 MHz operation; 150 DMips
performance• 1024 KB Flash memory• 256 KB single-cycle system SRAM• 6 KB of EEPROM
• Internal ROM loaded with
TivaWare™ for C series software• 8-/16-/32- bit dedicated external
peripheral interface (EPI) for
peripherals and memory
Security • Cyclical redundancy check (CRC)
hardware with 16-/32-bit Hash
function that supports four CRC
forms• Support for four tamper inputs and
configurable tamper event response
Communication interfaces• Eight universal asynchronous
receivers/transmitters (UARTs)• Four quad synchronous serial
interface (QSSI) modules with bi-,
quad- and advanced SSI support• Ten inter-integrated circuit (I2C)
modules with four transmission
speeds including high-speed mode• Two controller area network (CAN)
2.0 A/B controllers• 10/100 Ethernet MAC• Ethernet PHY with IEEE 1588 PTP
hardware support• Universal serial bus (USB) 2.0 OTG/
host/device with ULPI interface
option and link power management
(LPM) support
System Integration• ARM® PrimeCell® 32-channel
configurable micro direct memory
access (µDMA) controller• Eight 16/32-bit general-purpose
timer (GPTM) blocks• Two watchdog timers• Low-power battery-backed
hibernation module• 15 physical general-purpose input/
output (GPIO) blocks
Advanced motion control• One pulse width modulator (PWM)
module, with four PWM generator
blocks and a control block, for a
total of 8 PWM outputs• One quadrature encoder interface
(QEI) module
Analog Support• Two 12-bit analog-to-digital
converter (ADC) modules• Three independent integrated
analog comparators• 16 digital comparators
• One JTAG module with integrated
ARM serial wire debug (SWD)• 128-pin TQFP package
Operating range (ambient)• Industrial (-40...+85 °C) temperature
range• Extended (-40...+105 °C)
temperature range
APPLICATION EXAMPLES
• Network appliances, gateways &
adapters• Residential & commercial site
monitoring & control• Remote connectivity & monitoring• Security/access systems
LINK
Product page:
www.ti.com/dis-ebv-tm4c1294-pf-eu
24 MIP Edition 1/2014
100-up price
MB85R4M2TFN-G-ASE1
€ 7.35
MB85R4M2T4 Mbit FRAM with (Low Power SRAM Compatible) Parallel Interface
MB85R4M2T is a 4 Mbit FRAM
memory, with parallel interface. The
device is housed in a 44-pin TSOP
package, which is pin-compatible to
standard low-power SRAM.
With improved reliability specifications
like data retention (10 years at 85 ºC)
and endurance (10¹³ read/write cycles),
as well as a more efficient cell structure
than MB85R4001A, MB85R4M2T aims
to replace battery-backed SRAM in a
range of applications including industrial
automation, office equipment, security
systems and medical appliances.
FRAM (ferroelectric random access
memory) is a type of memory featuring
both non-volatility and random access.
While non-volatility permits data to be
retained even in the absence of power,
random access also allows faster
writes without the delay that is usually
inevitable with non-volatile memories.
Able to reliably store the most recent
changes to data in the event of power
outages or main power failure, FRAM
is the ideal solution for safeguarding
parameter information and logging data
in unstable environments.
Since FRAM is non-volatile, battery
deployment is rendered redundant,
with customers able to save as much
as 50% of the PCB mounting area by
removing the battery. Non-volatility
also cuts power consumption: while
SRAM requires a current for data
retention when the main power source
is removed – consuming roughly 15 µW/
second – FRAM requires zero power to
retain data. Battery deployment is also
associated with battery materials and
maintenance outlay. By eliminating the
battery, FRAM therefore helps to reduce
system costs.
Overall, the FRAM device plays a major
part in reducing the size, cost and power
consumption of the target application.
KEY FEATURES
• Bit configuration:
262,144 words × 16 bits• LB and UB data byte control:
available configuration of
524,288 words × 8 bits• Read/write endurance:
10¹³ times / 16 bits• Data retention: 10 years (+85 °C)• Operating power supply voltage:
1.8...3.6 V• Low power operation:
• Operating power supply current
20 mA (max)• Standby current 150 μA (max)• Sleep current 20 μA (max)
• Operating ambient temperature range:
-40...+85 °C• Package: 44-pin plastic TSOP (FPT-
44P-M34)• RoHS compliant
APPLICATION EXAMPLES
• Radiation resistant diagnostic
analyzing system• Flow meter / gas meter / water meter• Wind mills / solar inverter• Circuit breaker• Electronic motor drives / rotary
encoder• Programmable logic controller• Cash register / payment handheld• Industrial process monitoring• Industrial sensor application• Vending machine / game machine• Battery backed SRAM applications
LINK
Product page:
www.fujitsu.com/global/services/
microelectronics/product/memory/fram/
25MIP Edition 1/2014
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IS25LQ512A/010A/020A512-Kbit, 1-Mbit, and 2-Mbit Quad Serial Flash Memories with Multi-I/O SPI
The IS25LQ512A/010A/020A are
serial peripheral interface (SPI) Flash
memories, providing SPI, dual SPI, quad
SPI, and multi-input/output SPI. The
devices are designed to support a 33
MHz fclock rate in normal read mode,
and 80 MHz in fast read. The devices
use a single low voltage power supply,
ranging over 2.3...3.6 V, to perform
read, erase and program operations.
The devices can be programmed
in standard EPROM programmers.
The IS25LQ512A/010A/020A are
accessed through a 4-wire SPI
interface consisting of serial data input/
output (SlO), serial data output (SO),
serial clock (SCK), and chip enable
(CE#) pins. The devices support page
program mode, where 1...256 bytes
of data can be programmed into the
memory in one program operation.
The IS25LQ512A/010A are divided into
uniform 4-Kbyte sectors or uniform
32-Kbyte blocks. The IS25LQ020A is
divided into uniform 4-Kbyte sectors or
uniform 64-Kbyte blocks.
KEY FEATURES
• Single power supply operation:• Voltage range: 2.3...3.6 V
• Memory organization:• IS25LQ512A: 64K x 8 (512 Kbit)• IS25LQ010A: 128K x 8 (1 Mbit)• IS25LQ020A: 256K x 8 (2 Mbit)
• Cost effective sector/block
architecture:• 512 Kb: uniform 4 Kbyte sectors,
two uniform 32 Kbyte blocks• 1 Mb: uniform 4 Kbyte sectors, four
uniform 32 Kbyte blocks• 2 Mb: uniform 4 Kbyte sectors, four
uniform 64 Kbyte blocks
• Serial peripheral interface (SPI)
compatible:• Supports single-, dual- or quad-
output• Supports SPI Modes 0 and 3• Maximum 33 MHz clock rate for
normal read• Maximum 80 MHz clock rate for
fast read• Maximum 160 MHz clock rate
equivalent dual SPI• Maximum 320 MHz clock rate
equivalent quad SPI • Page program (up to 256 bytes)
operation:• Max 0.4 ms per page program
• Sector, block or chip erase operation:• Maximum 10 ms sector, block or
chip erase • Low power consumption:
• Typical 10 mA active read current• Typical 5 mA program/erase current
• Hardware write protection:• Protect and unprotect the device
from write operation by write
protect (WP#) pin • Software write protection:
• The block protect (BP2, BP1, BP0)
bits allow partial or entire memory
to be configured as read-only • Electronic signature:
• JEDEC-standard 1-byte
manufacturer ID and 2-byte
electronic signature • Industry-standard pin-out and package
APPLICATION EXAMPLES
• High Speed Data Storage• Digital Appliances• Embedded systems
Se
rial
Pe
rip
he
ral I
nte
rfac
eCE#
SCK
WP# (IO3)
SI (IO0)
SO (IO1)
HOLD#(IO2)
StatusRegister
Control Logic High Voltage Generator
I/O Buffers andData Latches
256 BytesPage Buffer
Y-Decoder
X-D
eco
de
r Memory Array
Address Latch&Counter
26 MIP Edition 1/2014
100-up price
IS29LV032T-90TLI
€ 1.55
100-up price
IS29LV032B-90TLI
€ 1.55
IS29LV032T/B32 Megabit (4096K x 8-Bit or 2048K x 16-Bit) Parallel Flash Memory, Top Or Bottom Boot Sector Protected
The IS29LV032T/B is a 32-Megabit,
electrically erasable, read/write non-
volatile Flash memory, organized
as 4,194,304 bytes or 2,097,152
words available in top or bottom boot
configurations.
Any word can be programmed typically
in 8 μs. The IS29LV032T/B features
3.0 V voltage read and write operation,
with access times as fast as 90 ns to
eliminate the need for WAIT states
in high-performance microprocessor
systems.
The IS29LV032T/B has separate output
enable (OE#), chip enable (CE#), and
write enable (WE#) controls, which
eliminate bus contention issues.
This device is designed to allow either
single sector or full chip erase operation,
where each sector can be individually
protected against program/erase
operations or temporarily unprotected
to erase or program. The device can
sustain a minimum of 100k program/
erase cycles on each sector.
KEY FEATURES
• Single power supply operation:• Full voltage range, 2.7...3.6 V read
and write operations • High performance:
• Access time 70 or 90 ns • Low power consumption:
• 9 mA typical active read current• 20 mA typical program/erase
current• Less than 1 μA current in standby or
automatic sleep mode • Flexible sector architecture:
• Eight 8-Kbyte sectors, sixty-three
64-Kbyte sectors• 8-Kbyte sectors for top or bottom
boot• Sector group protection:
• Hardware locking of sectors
to prevent program or erase
operations within individual
sectors. Additionally, temporary
sector unprotect allows code
changes in previously locked
sectors • Secured silicon sector
• Provides a 128-words area for code
or data that can be permanently
protected.• Once this sector is protected, it
is prohibited to program or erase
within the sector again. • High performance program/erase
speed• Word program time: 15 µs typical• Sector erase time: 100 ms typical• Chip erase time: 8 s typical
• Standard DATA# polling and toggle
bits feature• Erase suspend/resume modes:
• Read and program another sector
during erase suspend mode • Supports JEDEC common Flash
interface (CFI).• Low VCC write inhibit: <2.5 V• Minimum 100k program/erase
endurance cycles• RESET# hardware reset pin
• Hardware method to reset the
device to read mode • WP#/ACC input pin
• Write protect (WP#) function allows
protection of outermost two boot
sectors, regardless of sector protect
status• Acceleration (ACC) function
provides accelerated program times • Package options:
• 48-pin TSOP (type 1)• 48 ball 6 x 8 mm2 TFBGA (call sales)
• Industrial temperature range:
-40...+85 ˚C
APPLICATION EXAMPLES
• Factory Automation• Industrial Control• Transportation
IS29LV032T/B 21 16 or 8
A0 – A20
CE#
OE#
WE#
WP#/ACC
RESET#
BYTE#
DQ0 – DQ15 (A-1)
RY/BY#
27MIP Edition 1/2014
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100-up price
THGBMBG7D2KBAILH2L
€ 10.90
100-up price
THGBMBG9D8KBAIGH2L
€ 45.-
100-up price
THGBMBG6D1KBAILH2L
€ 7.45
e•MMC™ - THGBMXXXXCost Effective Mass Storage Solution
e•MMC™ is a family of advanced and
highly efficient NAND Flash memory
with an integrated controller and
enhanced memory management.
Based on an interface standardized by
JEDEC, Toshiba’s e•MMC™ offers
the optimal solution for applications
where higher data volume needs to
be stored in a cost efficient way. It is
fully compliant with the Multimedia
Card Association (MMCA) high speed
memory interface standard. Toshiba
e•MMC products support the JEDEC
compliant “enhanced user data area”,
also called “pseudo-SLC”.
For applications requiring a part of
the memory to perform with higher
write/erase cycles than MLC NAND,
e•MMC provides the option to build a
partition which offers “pseudo-SLC“
performance.
The normal MLC mode can be changed
to the more reliable “pseudo SLC” mode.
KEY FEATURES
• 4...64 Gbytes• 19 nm and new advanced A19 nm• Multi level cell architecture• Conforms to the latest JEDEC Version
4.5 and 5.0• Integrated memory management:• Error correction code• Bad block management• Wear-leveling • Garbage collection • Standard and extended temperature
range• FBGA package
APPLICATION EXAMPLES
• Embedded Firmware Storage• Network Switches• Video Surveillance Recording• Set-top boxes (STB)• Gaming• Rugged Computers• Medical Systems
LINK
e•MMC page:
www.toshiba-components.com/
memory/emmc.html
Density Item Name Technology JEDEC Standard
Temperature Package
4 GByteTHGBMBG5D1KBAIT A19 nm JEDEC 5.0 -25...+85°C 153FBGA 11x10
THGBMAG5A1JBAWR 19 nm JEDEC 4.5 -40...+85°C 153FBGA 11.5x13
8 GByteTHGBMBG6D1KBAIL A19 nm JEDEC 5.0 -25...+85°C 153FBGA 11.5x13
THGBMAG6A2JBAWR 19 nm JEDEC 4.5 -40...+85°C 153FBGA 11.5x13
16 GByteTHGBMBG7D2KBAIL A19 nm JEDEC 5.0 -25...+85°C 153FBGA 11.5x13
THGBMAG7B2JBAWM 19 nm JEDEC 4.5 -40...+85°C 169FBGA 12x16
32 GByteTHGBMBG8D4KBAIR A19 nm JEDEC 5.0 -25...+85°C 153FBGA 11.5x13
THGBMAG8B4JBAWM 19 nm JEDEC 4.5 -40...+85°C 169FBGA 12x16
64 GByte THGBMBG9D8KBAIG A19 nm JEDEC 5.0 -25...+85°C 153FBGA 11.5x13
Product / Features e•MMC™ Extended Temp. e•MMC™
Density 4...64 GByte 4...32 GByte
Technology A19 nm 19 nm
JEDEC Version 5.0 4.5
Temperature -25...+85°C -40...+85°C
Package FBGA
28 MIP Edition 1/2014
100-up price
TC58BVG1S3HBAI4YCL
€ 1.60
100-up price
TC58BVG2S0HBAI4YCL
€ 2.50
TC58BXXXX BENANDCost Effective 24 nm SLC NAND with Embedded ECC
Toshiba’s advanced Flash memory
technology offers SLC NAND providing
best in class endurance and data
retention for sensitive or frequently used
data in a system.
For long lasting products or systems
working with extremely high data
throughput between the host and the
memory, Toshiba SLC is the optimal
solution.
Toshiba’s new BENAND™ removes the
burden of error correction code (ECC)
from the host processor by offering
ECC embedded in the hardware while
keeping the same specification, high
reliability and performance as a raw SLC.
Using Toshiba BENAND™ it is possible
to utilize the latest 24 nm SLC NAND
Flash technology even if the existing
platform cannot support higher bit ECC.
KEY FEATURES
• 1...8 Gbit• SLC NAND with built in 8-bit H/W ECC• Same reliability and performance as
with raw SLC• Same hardware interface and package
as raw SLC• Leading edge 24 nm technology for
cost optimization• Long data retention or extreme write/
erase performance• Special small BGA 6.5 x 8 mm2
APPLICATION EXAMPLES
• TV• STB• Office equipment• Portable devices• Display units• Multimedia applications• POS system• Robot control• Toys
LINK
Product page:
www.toshiba-components.com/
memory/slc_products.html
Product/Features SLC NAND BENAND™ (SLC+ECC)
Density 1...128 Gbit 1...8 Gbit
Technology 24 nm
ECC (Error Correction Code) Required on Host Side Embedded on Memory Chip
Temperature -40...+85°C
0...+70°C
Package TSOP and BGA
BENAND™
Raw SLC NAND 24 nm
Raw SLC NAND 43 nm
Data read from the SLC isalready error corrected
Main CPU
HOST SYSTEM
Memory ControllerData read from the SLC is
not error corrected1 bit ECC
8 bitECC
29MIP Edition 1/2014
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100-up price
ACNT-H313-000E
€ 2.55
100-up price
ACNT-H313-500E
€ 2.60
ACNT-H313New Class of 2.5 A Gate Drive Optocoupler for High Power Systems
Industry’s highest insulation voltage
2.5 A gate drive optocoupler in compact
14.2 mm stretched SO-8 package
Avago Technologies have released
a new 2.5 A gate drive optocoupler
device, the ACNT-H313, designed
for high power systems. The device
features the industry’s highest rated
peak working voltage (VIORM) of 2,262 V
in a compact 14.2 mm stretched SO-8
package, enabling high voltage insulation
and protection in space-constrained
applications.
The ACNT-H313 is ideal for use in
driving IGBT and power MOSFET for
mid-voltage applications such as the
emerging 690 VAC motor drives, traction
drives, renewable energy inverters
and power supplies. Leveraging
Avago’s market-proven portfolio of
2.5 A gate drive optocouplers, the
ACNT-H313 is designed to address the
energy efficiency trend in high power
conversion. With high insulation voltage,
creepage and clearance, the device
enables end applications to use higher
voltage to achieve high output power,
which is more power efficient than the
traditional approach of using higher
current because of the power losses
from copper cabling.
KEY FEATURES
• 2.5 A maximum peak output current• VIORM = 2,262 VPEAK
• 14.2 mm creepage and clearance• Wide operating VCC range: 15...30 V• 40 kV/µs minimum high common
mode rejection (CMR)• Under-voltage lock-out (ULVO) with
hysteresis• Compact stretched SO-8 package
minimizing PCB board space and cost• Safety approvals: UL1577, CSA and
IEC/EN/DIN EN 60747-5-5
APPLICATION EXAMPLES
• 690 VAC applications• IGBT/MOSFET gate drive• AC and brushless DC motor drives• Renewable energy inverters• Industrial inverters• Switching power supplies
NC 1
ANODE 2
CATHODE 3
NC 4
8 VCC
7 VOUT
6 NC
5 VEE
30 MIP Edition 1/2014
100-up price
ACPL-337J-000E
€ 2.65
100-up price
ACPL-336J-000E
€ 2.58
ACPL-336J/337JHighly Integrated Smart Gate Drive Optocouplers for Motor Drives and Inverters
The ACPL-336J and ACPL-337J are
designed to significantly reduce system
costs and board space while improving
overall power efficiency and reliability.
They feature rail-to-rail outputs and are
capable of driving high power MOSFETs
or IGBTs directly.
The Avago ACPL-336J and ACPL-337J
are fully featured 2.5 A repectively
4.0 A smart gate drive optocoupler
devices capable of driving high power
MOSFETs or IGBTs directly. The
devices feature rail-to-rail output with
high current, integrated LED driver,
active Miller clamp, high desaturation
(DESAT) blanking current source, and
under-voltage lock-out (ULVO) feedback
control circuit, providing a complete
cost-effective gate drive solution for
motor control and power inverter
applications. The ACPL-336J and ACPL-
337J are available in a compact, surface-
mountable SO-16 package.
KEY FEATURES
• Rail-to-rail output with high current
eliminating output buffer stage and
improving power efficiency.• Integrated LED driver, active Miller
clamp and high DESAT blanking
current source reducing system costs
and board space.• Integrated short circuit protection
and FAULT & UVLO feedback control
circuit improving system reliability for
driving and protecting IGBT.• High reinforced insulation voltage of
VIORM = 1414 VPEAK for reliable fail-safe
protection in high voltage applications.• Wide creepage and clearance of
8.3 mm meeting stringent system
level safety regulation.• 50 kV/µs typical high CMR preventing
erroneous drive in noisy environment.• 250 ns maximum propagation delay
time.• Wide operating temperature range:
-40...+105 °C• Safety approval from CSA, UL and
IEC enabling fast system level safety
clearance and time to market.
APPLICATION EXAMPLES
• Industrial inverters• Industrial drives• Renewable energy inverters• Power supplies
VEE1
VIN+
VCC1
VLEDDRV
UVLO
FAULT
ANODE
CATHODE
Schematics of the ACPL-337J evaluation board
VEE2
VLED
DESAT
VE
VCC2
VOUT
VCLAMP
VEE2
16
15
14
13
12
11
10
9
1
2
3
4
5
6
7
8
ACPL-337J
R91
nm2
Q1a
Q1b
J1R10
3nm
7,8
VCC2
PBSS4041SPN
CQ3(T0247)
G nm
E
VE
VEE2
VE
VCC2
VEE2
D1 1 kV
BYV26E
VE
CON3
C6R5
100 pFSBD
BAT42W
Q22STN2540
PBSS4041SPNTA
TA
C5 +
C4 +
C4 +
35,6 14,2
nm
Gnd
C3 +
R1 R2
C1330 pF 330 pF
C2
R3
CON2
R4J2
Gnd
10 k
10 k
1 F
1 F
1 F
TA
1 F
R6 R7
R8
2 W 2 W
TA
150
150
10
47
1 k
0Rnm
nm
31MIP Edition 1/2014
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100-up price
AFBR-1639Z
€ 8.90
100-up price
AFBR-1539Z
€ 6.40
100-up price
AFBR-2634Z
€ 9.65
100-up price
AFBR-1634Z
€ 8.90
AFBR-1539Z/1634Z/1639Z/2634Z/2539ZDC to 50 Mbaud Versatile Link Transmitters and Receivers in Vertical Housing
The vertical mount package option for
the DC to 50 Mbaud Versatile Link active
components is the completion of the
new family of products. It allows mid
board mounting now also for the high
speed Versatile Link family featuring
TTL I/Os in a variety of industrial
applications. The horizontal package
allows accessing the fiber port level to
the board allowing mid board mounting
and with that high port densities on a
single board. This is useful especially
for control boards aggregating control
of e.g. many inverters in high power
electronics.
The transmitters AFBR-1634Z & AFBR-
1639Z integrate a 650nm LED source
and a driver IC offering digital TTL input
signals. Alternative the high power
AFBR-1539Z analog transmitter can be
used for up to 10MBd signaling rates.
The integrated receivers AFBR-2436Z
& AFBR-2539Z output a TTL signal and
feature Avago’s patented design for high
immunity to noise and electromagnetic
fields created by e.g. fast transients in
switching applications. The transmitters
and receivers can be operated at either
3.3V or 5V supply voltage.
The vertical Versatile Link housing
is compatible with Avago’s Versatile
Link family of products. The housing
is designed to efficiently couple into
1mm polymer optical fiber (POF) for
up to 50m links. For longer link lengths
200um PCS fiber can be used. Versatile
Link components can be interlocked
(N-plexed together) to minimize space
and to provide dual connections with
the duplex connectors. Various simplex
and duplex connectors as well as POF
cables are available for Versatile Link
components.
KEY FEATURES
• RoHS-compliant• Data transmission at signal rates from
DC up to 50MBd• Up to 50 meter distance with 1 mm
plastic optical fiber (POF)• Operating temperature range:
-40...+85 °C• Vertical package• Compatible with Avago’s Versatile
Link family of connectors for easy
termination of fiber
APPLICATION EXAMPLES
• Industrial control and factory automation• Serial field buses• Intra-system links; board-to-board,
rack-to-rack• Extension of RS-232 and RS-485• High voltage isolation• Elimination of ground loops• Reduces voltage transient
susceptibility
Link Speed
Type Logic VddExtended Temp. Range -40...85°C
Horizontal Vertical Tilted
DC to
5 MBd
Tx analog NA NA HFBR-1521ETZ HFBR-1531ETZ HFBR-1541ETZ
Rx digital inverted 5 V HFBR-2521ETZ HFBR-2531ETZ HFBR-2541ETZ
DC to
10MBd
Tx analog NA NA AFBR-1529Z AFBR-1539Z
DC to
50 MBd
Tx digital non-
inverted
3.3 V or
5 V
AFBR-1624Z AFBR-1634Z AFBR-1644Z
Rx digital non-
inverted
3.3 V or
5 V
AFBR-2624Z AFBR-2634Z AFBR-2644Z
Tx digital inverted 3.3 V or
5 V
AFBR-1629Z AFBR-1639Z
Rx digital inverted 3.3 V or
5 V
AFBR-2529Z AFBR-2539Z
160
MBd
Tx analog NA NA HFBR-1527ETZ
Rx analog non.
inverted
5 V HFBR-2526ETZ
32 MIP Edition 1/2014
100-up price
ASMB-MTB0-0A3A2
€ 0.12
100-up price
ASMB-BTE1-0B332
€ 0.20
100-up price
ASMB-MTB1-0A3A2
€ 0.12
ASMB-BTE1/MTBO/MTB1PLCC-4 Tri-Colour LEDs for Indoor Full Colour Displays
Avago Technologies has released a
family of tri-colour SMT LEDs in a
PLCC-4 package for indoor colour
displays.
A wide viewing angle of 115° together
with the built in reflector drives up
the intensity of light output making
these LEDs suitable for use in interior
electronics signs. The full black plastic
housing of the ASMB-BTE1-ZB332 LED
with a white inner reflector provides
good contrast without compromising
brightness.
The ASMB-MTB0-ZA3A2 part has
a black top surface also providing
good contrast and the ASMB-MTB1-
ZA3A2 is housed in a different pin out
configuration.
These LEDs are compatible with reflow
soldering processes. For easy pick-
and-place, the LEDs are shipped in
EIA-compliant tape and reel. Every reel
is shipped from a single intensity and
color bin except red color for better
uniformity.
KEY FEATURES
• PLCC-4 package (plastic leaded chip
carrier)• LED package with diffused silicone
encapsulation• High brightness using AlInGaP and
InGaN dice technologies• Typical viewing angle: 115°• Compatible with reflow soldering
process• JEDEC MSL3• Luminous intensity (typ.):
• Red: 540 lm• Green: 1600 lm• Blue: 350 lm
• Dominant wavelength (typ.)• Red: 625 nm• Green: 530 nm• Blue: 465 nm
• Operating temperature range:
-40...-110 C
APPLICATION EXAMPLES
• Indoor Full Color Displays• Panel backlighting• Variable Color Decoration
4
32
1PackageMarking
3.2
2.8
0.8
∅ 2.4
0.8
6
1.9
0.8
3.5
2.2
0.7 0.8
2.8
32
∅2.4
PackageMarking
3.2
0.7
41
0.8
6
1.9
0.8
3.5
0.7 0.8
2.2
33MIP Edition 1/2014
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100-up price
ASMS-FWG0-ZMPG6
€ 0.05
100-up price
ASMS-FWG0-ZNQ06
€ 0.05
ASMS-FWGXWhite 4014 Surface Mount LEDs
The Avago Technologies 4014 LEDs
offer an ideal solution when uniformity
and a smooth lighting appearance are
critical in luminaire designs.
The ASMS-FWG0 surface mount LEDs
use InGaN chip technology with superior
package design to enable them to
produce higher light output with better
flux performance.
They can be driven at high current
and are able to dissipate the heat
more efficiently resulting in better
performance with higher reliability.
These LEDs are able to operate
under a wide range of environmental
conditions making them ideal for various
applications including fluorescent
replacement, under cabinet lighting,
retail display lighting and panel lights.
KEY FEATURES
• Available in CCT 2700...6500 K per
ANSI• 1/8 ANSI bin for cool white and 1/16
ANSI bin for warm and neutral white• CRI >80• Moisture sensitivity level 3• High reliability with silicone
encapsulation• Rectangular QFN package design• Low package profile and large
emitting area for better uniformity in
linear lighting• Test according to IES LM-80 in
progress• Integrated Zener diode to achieve
Class 2 ESD sensitive
APPLICATION EXAMPLES
• Indoor lighting and luminaires• Office automation, home appliances,
industrial equipment• Front panel backlighting• Push button backlighting• Display backlighting• Scanner lighting• Refrigerator lighting• Retrofit lamps• Cove• Wall grazer• Under cabinet
34 MIP Edition 1/2014
100-up price
FOD8332
€ 1.65
FOD83322.5 A Output Current Smart Gate Drive Optocoupler with Input LED Drive
The FOD8332 is an advanced 2.5 A
output current IGBT/MOSFET drive
optocoupler. The device’s insulation
working voltage rating (VIORM) of 1414
V is 13% higher than the competition,
permitting the device to directly drive
1200 V IGBTs. Common mode transient
immunity (CMTI) is more than 100%
better than competitive solutions, while
dynamic power consumption per cycle
(ESW) during switching is 50% less than
the competition.
These high voltage parts allow systems
of a given power rating to operate at
higher voltages and lower currents
where the noise filtering becomes
less lossy resulting in higher efficiency
inverters. The FOD8332 integrates
critical protection features necessary for
preventing fault conditions that lead to
destructive thermal runaway of IGBTs.
It reduces design complexity as most
protection feature are built-in, eliminating
the need for the board designer to
specify additional components.
The device utilizes Fairchild’s proprietary
Optoplanar® coplanar technology
and optimized IC design to achieve
high insulation voltage and high noise
immunity, characterized by high
common mode rejection. The device
is housed in a wide body 16-pin small
outline plastic package which delivers
high isolation performance in a compact
package.
KEY FEATURES
• Input LED drive facilitates receiving
digitally encoded signals from PWM
output• Optically isolated fault-sensing
feedback• Active Miller camp to shut off IGBT
during high dv/dt without negative
supply voltage• High noise immunity characterized
by common mode rejection 35 kV/us
minimum, VCM = 1500 VPEAK
• 2.5 A peak output current driving
capability for medium power IGBT• P-channel MOSFETs at output stage
enable output voltage swing close to
supply rail (rail-to-rail output)• Wide supply voltage range: 15...30 V• UL1577, 4,243 VRMS for 1 minute• DIN-EN/IEC60747-5-5• 1414 VPEAK working insulation voltage• 8,000 VPEAK transient isolation voltage
rating• 8 mm creepage and clearance
distances
APPLICATION EXAMPLES
• Solar• UPS• Motor drives
LINKS
Application note:
www.fairchildsemi.com/an/AN/
AN-3009.pdf
Product page:
www.fairchildsemi.com/pf/FO/
FOD8332.html
GND
VCC
FAULT
GND
VLED1-
VLED1+
VLED1+
VLED1-
VE
VLED2+
DESAT
VDD
VSS
VO
VCLAMP
VSS
1
2
3
4
5
6
7
8
16
15
14
13
12
11
10
9
LED2
DESATUVLO
Shield
ShieldMillerClamp
Output IC
Faultic
Drive
r
35MIP Edition 1/2014
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100-up price
CXM-11-27-80-36-AA00-F2-3
€ 2.64
100-up price
CXM-27-27-80-36-AA00-0F1-3
€ 13.10
100-up price
CXM-6-35-80-36-AA00-F2-3
€ 0.95
CXM-XXXNOVA COB LED Arrays
XNOVA consists of a family of LED
chip-on-board (COB) arrays and emitter
products designed to provide best in
class, solid-state light sources. Available
in lumen packages from less than 350
to over 9000 lm, efficacies exceeding
100 Lm/W and CRIs with as high as
97 XNOVA provide lighting designers
and manufacturers with the choices
necessary to meet optimum performance
at the most cost effective price.
XNOVA 80CRI: spot, track and down
lighting: for retail, hospitality, office,
residential or replacement bulbs.
XNOVA 90CRI: delivering the high color
rendering while maintaining low energy
consumption
XNOVA 95CRI: specialty lighting: where
the highest color rendering is needed
All testing and binning for XNOVA
products is done at temperatures that
will be typical for the device in the
fixture. By testing this way, common
shifts in flux or color as a function
of temperature, most pronounced
between 25 ºC and nominal operating
temperatures will be already accounted
for prior to designing the light.
KEY FEATURES
• 350 lm to over 8000 lumen, 3000 K,
85 ºC• 120 Lm/W typical at 3000 K, 25 ºC• 135 Lm/W typical at 5000 K , 25 ºC• 2700 K, 3000 K, 3500 K, 4000 K and
5000 K
• Color quality options CRI 95, 90 and
80 min.• High temperature (85 ºC) binning• Most accurate color and light output• 2-step MacAdam ellipse chromaticity
binning available• 3-step MacAdam ellipse binning
standard
APPLICATION EXAMPLES
• Spot and track lighting• Shop and retail lighting• Directional with high color rendering• Hospitality and office space• Halogen/CDM replacements• PARs, BRs, MR-16’s, AR-111• Industrial high bay• Outdoor area and roadway• Architectural and landscape
XNOVA CXM-6 CXM-7 CXM-9 CXM-11 CXM-14 CXM-18 CXM-27
LES (mm) 6,4 7,5 9,0 10,8 13,5 17,5 26,5
Typical Current 120 mA 160 mA 240 mA 320 mA 480 mA 800 mA 1800 mA
Typical Power 4,2 W 5,6 W 8,4 W 11,2 W 17 W 29 W 63 W
Lumen Range 80 CRI
450-850
90 CRI
390-700
95 CRI
350-660
80 CRI
650-1,000
90 CRI
520-930
95 CRI
490-890
80 CRI
920-1,600
90 CRI
750-1,300
95 CRI
700-1,200
80 CRI
1,200-2,200
90 CRI
1,000-1,800
95 CRI
980-1,700
80 CRI
1,800-3,300
90 CRI
1,500-2,800
95 CRI
1,400-2,660
80 CRI
3,100-5,600
90 CRI
2,500-4,600
95 CRI
2,400-4,400
80 CRI
7,100-12,000
90 CRI
5,800-10,500
95 CRI
5,600-10,000
Application MR16
(350...450 lm
range) Low cost
Apps (Replace
35 W Halogen)
MR16
(450...550 ml
range) High
Efficiancy
(Energy Star)=
(Replace 50 W
Halogen)
800-1000 lm
PAR-Low Cost,
High Eff. (Energy
Star) (Replace
65 W Halogen)
1000-1200 lm
PAR-Low Cost,
High Eff. (Energy
Star) (Replaces
20 W CMH/
CDM)
1600-2000
lm PAR/track
light/downlight
(Replaces 35 W
CMH/CDM)
2000-4000 lm
CDM/track light/
downlight (50 W
CMH/CDM
5000 lm range
High bay/CDM/
outdoor light/
stage light (70 W
CMH/CDM)
36 MIP Edition 1/2014
100-up price
SFH4710
€ 1.05
SFH 4710IR OSLON Compact
The new infrared Oslon Compact SFH
4710 has been designed especially
for industrial applications. As a mid-
power LED with a typical output of
270 mW from an operating current of
500 mA, it is a welcome addition to
the product portfolio of Osram Opto
Semiconductors, occupying the output
range between Power TopLED and
Oslon Black.
The new IRED accommodates a small
powerful chip with an edge length
of 750 µm and half the footprint of
standard chips in the Oslon Black.
With package dimensions of 1.6 x 1.2
x 0.8 mm3 the Oslon Compact is not
much larger than the chip itself and
is therefore one of the smallest in its
output class. The high output, which
is achieved thanks to state-of-the art
thin-film chip technology, combined with
the small package, opens up numerous
new applications, particularly where
there is very little available space but
performance demands are high. And if
required, components can be packed
very close together to increase the
optical output with a high degree of
flexibility.
The infrared light emitting diode has an
emission angle of +/- 65° and does not
need internal optics or reflectors. Its light
can however be successfully injected
into narrow-angled external optics. With
external optics it is ideal for illumination
in surveillance applications and for
machine vision tasks such as pattern
recognition and 3D measurement
because the wavelength of 850 nm is
barely perceptible to the human eye but
can be very easily detected by camera
systems. Without external optics the
IRED perfectly covers the near-field
range of a few meters and is therefore
suitable for example for eye tracking and
gesture detection.
KEY FEATURES
• Component size: 1.6 x 1.2 x 0.8 mm3
• Beam angle: +/-65°• Optical output (typical): 270 mW• Operating current: 500 mA• Thermal resistance: <25 K/W• Wavelength: 850 nm
APPLICATION EXAMPLES
• Infrared illumination for cameras• Surveillance systems• Maschine vision systems• Gesture recognition systems• Eye tracking systems
37MIP Edition 1/2014
ANAL
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100-up price
SFH4783
€ 2.60
SFH 4783Infrared Dragon Dome LED
Security surveillance over large
distances is now possible thanks to the
infrared Dragon Dome LED from Osram
Opto Semiconductors.
The focused beam of this high-power
IRED achieves a range of more than
100 meters. It has a compact design and
does not need an external lens. With its
wavelength of 850 nm, this LED is ideal
as a light source for security surveillance
tasks such as CCTV (closed circuit
television).
The Dragon Dome (SFH 4783) is the
first high-power infrared LED that emits
its light within a narrow angle of +/- 12°.
From a current of 1 A is achieves a
total radiated power of 430 mW and
therefore a radiant intensity of 2.3 W/sr.
At this radiant intensity the beam of
light will have a usable range of more
than 100 meters, depending on the
sensitivity and field of view of the
camera. Radiant intensity is measured in
watts per steradian. It indicates the light
output within a solid angle segment. The
high total radiated power of the IRED
is thanks to state-of-the-art thin-film
technology which enables the light to
be extracted extremely efficiently from
the chip.
This high radiant intensity benefits all
applications that need strong focused
light to provide reliable illumination over
large distances. These include outdoor
CCTV surveillance systems at border
crossings and or at airports. With a
wavelength of 850 nm the emitted light
is well suited to camera sensors but is
barely perceptible to the human eye.
This means that surveillance can be very
discreet.
The narrow light beam is produced
by the deep metallic reflector and the
lens of the Dragon Dome. The SMT
(surface mount technology) package,
which is compatible with other Dragon
designs, is suitable for reflow soldering
processes and helps make handling
even easier and further reduces
production costs.
KEY FEATURES
• Component size: 11 x 6 x 5.7 mm3
• Wavelength: 850 nm• Total radiated power: 430 mW at 1 A• Radiant intensity: 2.3 W/sr at 1 A• Beam angle: ±12°
APPLICATION EXAMPLES
• Infrared illumination for cameras• Machine vision systems• Surveillance systems
38 MIP Edition 1/2014
100-up price
GWKAGHB1.EM-RTSP-40H3-T05
€ 3.65
100-up price
GWKAGHB1.CM-RQRT-27H3-T05
€ 4.-
SOLERIQ® S 13Easily Setting New Standards in Lighting
SOLERIQ S 13 is the latest addition to
OSRAM Opto Semiconductors’ state-
of-the-art easy to use SOLERIQ LED
family.
These new innovative LEDs offer
chip-on-board design, high luminous
efficacy and are specifically designed for
spotlight applications.
As a single component with the highest
luminous flux, and no SMT assembly
required, SOLERIQ S 13 is much easier
for lighting manufacturers to use. With
a light emitting surface (LES) of Ø 13.5
mm, it also enables Zhaga standard
designs – thus even further enhancing
ease of use and supporting LED
interchangeability.
SOLERIQ S 13 is available in a broad
range of color temperatures enabling
unlimited luminaire designs for
applications around the globe. This new
LED package delivers excellent color
consistency within a 3-step MacAdam
ellipse.
These properties make the SOLERIQ
S 13 a highly efficient, high-quality and
price-performance optimized solution,
especially in the world of indoor general
lighting
KEY FEATURES
• High luminous flux out of one single
LED package• Higher lm/$ compared to ceramic
based packages• Uniform illumination without multi
shadows due to uniform light emitting
surface• Package size of 18.0 x 18.0 x 1.55 mm3
• Light emitting surface (LES):
Ø 13.5 mm• Color consistency within 3-step
MacAdam• Easy-to-use metal core board• Easy mounting without SMD
soldering: gluing, screws or brackets• Easy to install with off-the-shelf
solderless connectors and lenses• Stable brightness over lifetime• Excellent color reproduction with CRI
min. 80 (typ. 85)• Full range of color temperatures:
2700...6500 K (white)• Low forward voltage for easy
certification of luminaires• Luminous flux: typ. 1625 lm @ 4000 K• Luminous efficacy: typ. 98 lm/W @
4000 K• Viewing angle at 50 % lv: 120°• High energy efficiency
APPLICATION EXAMPLES
SOLERIQ S are specifically designed
for applications requiring large flux
packages out of a compact area. The
SOLERIQ S 13 is perfectly suitable for
indoor general lighting and especially
spotlight solutions – in commercial
application fields, but also for residential
use.• Hospitality• Restaurants• Shops• Homes• Spotlights• Ambient lighting• Indoor general lighting
39MIP Edition 1/2014
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100-up price
TLP292
€ 0.10
100-up price
TLP183
€ 0.95
100-up price
TLP182
€ 0.10
TLP182/183/292/293Low Input Current Transistor Photocouplers
High current transfer ratio devices in
ultra-miniature packages drive down
power consumption. By employing
Toshiba’s high-output LEDs, the
photocouplers ensure high current
transfer ratios of up to 600% both at
conventional input currents of 5 mA and
at low 0.5 mA LED currents.
The photocouplers significantly
contribute to a reduction in power
consumption when using high voltages
such as 100 VAC, by reducing the LED
current at the photocoupler. TLP182
and TLP292 support AC input and
house two high-output LEDs, while
TLP183 and TLP293 support DC input
and house a single LED. TLP182 and
TLP183 are supplied in 4-pin SO-6
surface mount packaging with 2.54
mm pitch, that requires board mounting
dimensions of 7.0 x 3.7 mm2 and has
a height of 2.3 mm max.. TLP292 and
TLP293 are supplied in the smaller SO-4
package with 1.27 mm pitch, which
requires board mounting dimensions
of just 7.0 x 2.6 mm2 and has a height
of 2.3 mm max.. All the devices have
a guaranteed minimum creepage and
clearance distance of 5 mm, a minimum
breakdown voltage (BVs) of 3750 VRMS,
and they are rated for a wide operation
temperature range from -55...+125°C.
KEY FEATURES
• Smaller and thinner package produced
in high efficiency production lines• Guaranteed high CTR at low input
current
APPLICATION EXAMPLES
• Switching power supplies• Industrial devices (PLCs, inverters)• AC line detection for household
appliances
LINK
www.toshiba-components.com/
couplers/photocoupler_transistor.html
Characteristics TLP182 TLP183 TLP292 TLP293
Package 4-pin SO-6 SO-4
Input Type AC DC AC DC
Current transfer
ratio (%)
@IF=5 mA, VCE=5V 50...600 50...600 50...600 50...600
@IF=0.5 mA, VCE=5V 50...600 50...600 50...600 50...600
TOPR(°C) -55...+125 -55...+125 -55...+125 -55...+125
BVs (Vrms) 3750 3750 3750 3750
40 MIP Edition 1/2014
100-up price
TLP2395
€ 0.45
100-up price
TLP2398
€ 0.55
TLP2395, TLP2398Dual Polarity Input Photocouplers for Industrial Designs
Requirements to support both sink and
source logic inputs in modern PLC and
instrumentation systems means that
bridge circuitry is commonly employed
upstream from the photocouplers used
in high-speed digital interfaces. Now,
however, by combining two LEDs in
a reverse parallel configuration, the
TLP2395 and TLP2398 eliminate
the need for these bridge circuits.
As a modern PLC can have multiple
photocouplers - and, therefore, multiple
bridge circuits - the devices will
significantly reduce circuit size, power
consumption and cost.
Both the TLP2395 (logic buffer output)
and the TLP2398 (inverter output)
photocouplers will accommodate a wide
3...20 V power supply voltage range,
which helps to reduce the need for
DC-DC conversion circuitry. Each device
also offers guaranteed operation at
temperatures ranging over -40...+125 °C.
The two new couplers are supplied
in SO-6 surface mount packaging
that integrates two GaAlAs LEDs
coupled with a high-gain, high-
speed photodetector. Despite board
mounting dimensions of only 7.0 x
3.7 x 2.3 mm3, guaranteed minimum
creepage and clearance distance is
5 mm and guaranteed minimum input-
output withstand voltage is 3.5 kVRMS.
An internal Faraday shield ensures
common-mode transient immunity of
±20 kV/μs.
KEY FEATURES
• Threshold input current:
IFLH = 2.3 mA (max)• Supply current: ICC = 3 mA• Propagation delay time:
tpHL / tpLH= 250 ns (max)• Pulse width distortion:
[tpHL-tpLH]= 80 ns (max)• Propagation delay skew:
tpsk = 130 ns (max)
APPLICATION EXAMPLES
• Programmable logic controlers (PLC)• Industrial devices• Factory automation (FA) devices
LINK
www.toshiba-components.com/
couplers/index.html
Circuit with bridge
Bridge diodes are needed to rectify the current if the DC square wave reverses due to the type (sink or source) of the input device.
Both sink and source input are supported,allowing omission of the bridge circuit.
TLP2395/TLP2398High-speedphotocoupler
VCC
VCC
VOUT
VOUT
OR OR
Circuit with TLP2395/TLP2398
41MIP Edition 1/2014
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100-up price
VOW3120-X017T
€ 1.50
VOW3120Widebody, High Isolation, 2.5 A IGBT Driver
The VOW3120 features a minimum
10 mm clearance and external creepage
distance. In addition to its high isolation
distance, it provides high isolation
voltage ratings of VIORM = 1414 V and
VIOTM = 8000 V, ideal for applications
operating at higher working voltages
and/or with higher pollution degree
environments.
In addition to superior isolation,
employing reliable and time-tested
opto technology, the VOW3120
also incorporates state of the art
electrical performance. The noise
isolation capabilities of the VOW3120
are well exemplified by their typical
high common mode noise rejection
values of 50 kV/μs. The VOW3120’s
low current consumption of 2.5 mA
makes it a practical choice in power
design applications where low power
consumption and high efficiencies
are required. Combined with the
VOW3120’s wide supply voltage range,
this makes it possible in many cases
to eliminate the need for an additional
and cost intensive auxiliary power
supply reducing component count
APPLICATION EXAMPLES
• Solar inverter• Smart grid applications• Industrial motor drives• Welding inverters
LINK
www.vishay.com/
optocouplers/opto-driver
and overall solution cost. In terms
of switching speed, it boasts typical
delays of less than 250 ns and rise and
fall times of less than 100 ns, making
the device ideal for applications where
fast switching of IGBTs is required.
These features make the VOW3120 an
ideal solution for applications such as
commercial solar inverters, industrial
motor drivers, welding equipment, and
category IV smart grid devices. All of
these applications have challenging
isolation requirements, which are well
suited to robust isolation solutions such
as the VOW3120.
KEY FEATURES
• High creepage and clearance >10 mm• High transient isolation voltage,
VIOTM >8000 V• High repetitive isolation voltage,
VIORM >1414 V• High noise isolation decoupling
CMR >25 kV/us• 2.5 A output drive capability• 500 ns maximum propagation delay
1
2
3
4
8
7
6
5Shield
A
C
NC
NC
VO
NC
VCC
VEE
42 MIP Edition 1/2014
100-up price
FDMC86139P
€ 0.50
100-up price
FDMC86261P
€ 0.54
FDMC86XXXP SERIES150/100 V P-Channel MOSFETs
The FDMC86xxxP series of
P-channel PowerTrench® MOSFETs
reduce footprint while achieving
superior switching speed and power
consumption, targeting applications
like motor control circuits, active clamp
switches and load switches.
The series includes the FDMC86261P
150 V and the FDMC86139P 100 V
P-channel MOSFETs. When compared
to competitive devices, these P-channel
MOSFETs provide an improved
switching performance figure of merit
(FOM) 67% better than the best
competitor part. Additionally, conduction
losses are improved by 46% and
switching losses are improved by 38%.
This allows designers to shrink the
footprint and improve overall system
performance.
Devices in the series are packaged in a
3 x 3 mm3 MLP package, saving board
space. Additionally, the FDMC86xxxP
series addresses the customers need
for lower thermal characteristics,
dissipating less power for higher energy
efficiency. The devices also feature the
lowest RDS(ON) available in its footprint.
KEY FEATURES
• Very low RDS(ON) mid-voltage
P-channel silicon technology
optimized for low Qg• Optimized for fast switching
applications as well as load switch
applications• 100% UIL® tested• RoHS compliant
APPLICATION EXAMPLES
• Active clamp switch in isolated DC/DC
converters• Load switch• H-bridge (motor drive)
Part Number VDS (Max) RDS(on) (Max) Qg (Typ) VGS(th) (Min) ID Continuous @ TA=25°C ID Pulsed Vgs (Max)
FDMC86139P -100 V 67mΩ@VGS=-10.0 V 16nC@VGS=-10.0 V -2 V -4.4 A -30 A 25 V
FDMC86261P -150 V 160mΩ@VGS=-10.0 V 17nC@VGS=-10.0 V -2 V -2.7 A -20 A 25 V
43MIP Edition 1/2014
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100-up price
FGH25T120SMD_F155
€ 2.15
100-up price
FGH40T120SMD_F155
€ 2.85
100-up price
FGH15T120SMD_F155
€ 1.50
FGHXXT120SMD1000/1200 V Field Stop Trench IGBTs
This new 1200 V field stop IGBT series
minimizes conduction losses by having
a VCE(SAT) of 1.8 V, which is far lower than
that of the previous fast-switching NPT
IGBTs. These new devices have one of
the lowest VCE(SAT) ratings available in
the 1200 V fast-switching IGBT market.
The switching losses are low with an
EOFF value of under 30 µJ/A. All devices
contain a co-packed diode optimized for
fast switching.
Fairchild’s new 1200 V field stop trench
IGBT series helps customers drive
higher energy efficiencies and high
reliability in their designs, and helps
manufacturers address government
regulations and meet their end-
customers demand for increased
energy savings. The 1200 V field
stop trench IGBT series also allows
designers to operate devices at higher
switching frequencies than competitive
solutions, helping to reduce the size
and cost of the capacitors and inductive
components in the circuit. This results
in system designs with higher power
density, smaller size and lower bill of
material costs.
This IGBT series is 100% tested for
clamped inductive switching at current
levels of four times the rated current to
guarantee a larger safe operating area
(SOA). These products are available in
the smaller TO-247 package with 20 mm
lead-length, compared to the previous
family's TO-264 package, and offer a 15,
25, and 40 A current rating.
KEY FEATURES
• Optimized for high speed switching:• Low saturation voltage:
VCE(SAT) = 1.8 V @ rated IC
• High speed switching:
Low EOFF = 27 µJ/A• Co-packed diode optimized for high
speed switching • Designed for high reliability
applications:• Large SOA• 100% inductive load switching test
(ILM = 4 times IC rating)• Maximum junction temperature:
+175 ˚C• Easy parallel operation (positive
temp coefficient)• High input impedance• RoHS compliant
APPLICATION EXAMPLES
• Solar inverters• UPS• Welders• High power medical equipment• Power supply conditioning
FHG40T120SMD EonFGH40T120SMD Eoffbest competitor EonBest competitor Eoff
0 5 10 15 20 25 30 35
2000
1600
1200
800
400
0
En
erg
y L
oss
per
Sw
itch
ing
Cyc
le [
uJ
]
Switching Performance at 100°C, Rg=100
Collector Current [A]
Product ID BVCES[V] VCE(sat)[V] VF[V] IC@100°C [A] Eoff Typ.[uJ/A] Package
FGH40T100SMD 1000 1.9 3.4 40 28 TO247
FGH15T120SMD_F155 1200 1.9 3.2 15 25 TO247
FGH25T120SMD_F155 1200 1.9 3.2 25 25 TO247
FGH40T120SMD_F155 1200 1.9 3.2 40 25 TO247
FGH40T120SMD 1200 1.9 3.2 40 25 TO247
44 MIP Edition 1/2014
100-up price
EP5358HUI
€ 1.18
100-up price
EN6310QI
€ 1.65
100-up price
EN2342QI
€ 4.65
EN53XXQI/63XXQI/23X2QIPowerSoC Integrated Buck DC-DC Converters, High Efficiency, High Accuracy
Enpirion PowerSoC devices from Altera
provide an integrated power solution to
simplify designs for FPGAs and other
integrated digital components. PowerSoC
integrate inductors, switchers and
MOSFETs into a single package. They
provide an industry-leading combination
of high efficiency, small footprint, and
low noise performance in an integrated
product.
EN63xxQI Product Families
(3.3 and 5 V input)
The EN63xxQI product family is high
efficiency; high accuracy devices that
meet FPGA core voltage requirements.
They can also be used to support noise
sensitive transceiver and PLLs or any
other function that has a tight voltage
tolerance or requires low noise. Many of
the devices support soft start, sequencing
and can synchronize to an external
clock. The EN6310QI is the latest family
member offering a solution of up to 1 A.
The remainder of the family can provide
solutions up to 12 A.
EN53xxQI and EP53xxQI Product
Families (3.3 and 5 V input)
The EN53xx and EP53xx families are
a space-optimized family, which offer
high efficiency and support many of
the features of the EN63xx family. The
devices are ideal for FPGA auxiliary power
requirements, such as (VCCAUX, VCCBAT and
VCCPGM) as well as external I/O interfacing
such as DDR memory. A number of
devices, including the EN5319QI (1.5 A),
EN5329QI (2 A) and EN5339 (3 A), offer
pin compatibility to allow for scalability or
build options. The EP53xx family offers
solutions of 0.4...1.5 A, while the EN53xx
offer solutions of 1...9 A.
EN23x2QI Product Family (12 V input)
The EN23x2QI family is the solution
for customers using a 12 V input. The
family offers both high accuracy and
high efficiency in a compact solution
size, making them suitable to power all
aspects of an FPGA. Again the EN23x2
family offers support for sequencing
and clock synchronization. The EN23x2
family provides solutions of 4 and 15 A.
Higher currents can be achieved by
parallelization of the larger devices.
KEY FEATURES
• <15 VDC PowerSoCs DC-DC buck with
integrated inductor• 0.4...15 A currents• very small space on PCB, up to 7x
reduction compared to competition,
with fewer external components• High efficiency up to 97% with low
ripple
• High reliability• High thermal performance• Excellent noise and transient
performances• Lower time to market, lower cost• Long lifecycles
APPLICATION EXAMPLES
• Embedded industrial• Test and measurement• Optical networking• Computer and enterprise storage• Networking and telecommunication• Automotive
LINK
Power homepage:
www.altera.com/devices/power/power-
index.html
EN6337QI
EP5358H
EN5319QI
EP5358H
EP5388QI
1
2
2
2
2
1.1 V/1.5 V
3.3 V/ 0.28 A
1.5 V/0.83 A
2.5 V/0.37 A
Filter
1.8 V/0.5 A
VCC_FPGAVCC_HPS
VCCIO_FPGA_3.3VCCIO_HPS_3.3 VVCCPGMFLASH_IO, ETH_IO
VCCIO_FPGA_1.5DDR3_IO
VCCIO_FPGA_2.5 VVCCIO_HPS_2.5VCC_PD
VCC_HPS_PLLVCC_FPGA_PLLVCCAUXVCCBAT
VCC_ETH
Typical Cyclone V powerchain
45MIP Edition 1/2014
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100-up price
FAN2310MPX
€ 0.88
100-up price
FAN2315MPX
€ 0.97
FAN2310/15TinyBuck™ 10/15 A Integrated Synchronous Buck Regulators
The FAN2310 and FAN2315 TinyBuck™
are highly efficient integrated
synchronous buck regulators. The
regulators are capable of operating
with an input range of 4.5...15 V and
supporting up to 10 or 15 A load
currents. The FAN2310/15 utilize
Fairchild’s constant on-time control
architecture to provide excellent
transient response and to maintain a
relatively constant switching frequency.
The device utilizes pulse frequency
modulation (PFM) mode to maximize
light-load efficiency by reducing
switching frequency when the inductor
is operating in discontinuous conduction
mode at light loads.
Switching frequency and over-current
protection can be programmed to
provide a flexible solution for various
applications. Output over-voltage,
under-voltage, over-current, and thermal
shutdown protections help prevent
damage to the device during fault
conditions. After thermal shutdown is
activated, a hysteresis feature restarts
the device when normal operating
temperature is reached.
KEY FEATURES
• VIN range: 4.5...15 V• High efficiency: over 96% peak• Continuous output current: 10/15 A• PFM mode for light-load efficiency• Excellent line and load transient
response• Precision reference: ±1% over
temperature• Output voltage range: 0.6...5.5 V• Programmable frequency:
200 kHz...1.5 MHz• Programmable soft-start• Low shutdown current• Adjustable sourcing current limit• Internal boot diode• Thermal shutdown• Operating temperature range:
-40...+125 ˚C• Package: PQFN-34, 5.0 x 5.5 mm2
• Halogen and lead free, RoHS
compliant
APPLICATION EXAMPLES
• Servers and desktop computers• NVDC notebooks, netbooks• Game consoles• Telecommunications• Storage• Base stations
LINKS
FAN2310 product page:
www.fairchildsemi.com/pf/FA/FAN2310.
html
FAN2315 product page:
www.fairchildsemi.com/pf/FA/FAN2315.
html
VBIAS
=5 V VIN
=12 V
C102.2 FC9
0.1 F
ExtEN
C715 nF R
95
4.9
k
EN
PGOOD
SOFT START
FREQ
BOOT
SW
ILIM
FB
VCC PVCC VIN PVIN
AGND PGND
FAN2310
CIN3x10 CIN
0.1
C30.1
L10.72
R5 1.58 kR2 1.5 k
C40.1 k
VOUT
=1.2 VIOUT
=0-10 A
COUT
6x47
R310 k
R410 k
C5100 pF
R1110
46 MIP Edition 1/2014
100-up price
MC34904C3EK
€ 2.44
100-up price
MC34904C5EK
€ 2.44
MC34904System Basis Chip with LDO Regulators and CAN
Flexible, scalable 0.4 A, 4...28 V SBC
with multiple LDO regulators featuring
low 15 µA quiescent current, CAN high
speed transceiver and safety features.
The MC34904 is a member of the
system basis chip (SBC) family.
It combines several features and
enhances present modular designs. The
device works as an advanced power
management unit for the MCU with
additional integrated circuits such as
sensors and CAN transceivers. It has
a built-in enhanced high-speed CAN
interface (ISO 11898-2 and -5) with local
and bus failure diagnostics, protection
and fail-safe operation modes. It
includes up to four wake-up input pins
that can also be configured as output
drivers for flexibility.
Multiple low-power modes, low-current
consumption, safety features and a
family concept where pin compatibility
adds versatility to modular designs.
KEY FEATURES
• Bundles with Kinetis K, low end
Qorivva MPC56xx, and MCUs with
<2.5 W consumption (5 V, 0.5 A)• 5.5...28 V supply, with extended DC
low voltage down to 4.0 V• 5/3.3 V VDD (150 mA + opt. 300 mA),
and VAUX (ext. PNP), 5 V VCAN
• Robust CAN HS PHY (optional
LIN – up to 2)• Safety features:
• SAFE pin to drive external ICs in
MCU fail mode• Secured critical changes of state
machine w/ programmable fail safe
state• Advanced watchdog mechanisms
and secured SPI (parity checks,
8 clk count)
APPLICATION EXAMPLES
• Motor control (safety critical)• Robotics• Factory automation & single board
computers
LINK
Industrial analog:
www.freescale.com/analogindustrial
VBAUX VCAUX VSUP1 VAUX VE VB
VSUP2SAFEDBGGNDVSENSE
I/O-0
I/0-1CANHSPLITCANL
I/O-2
I/O-3
VDD
RSTINT
MOSISCLKMISO
CSMUX-OUT
5V-CAN
TXDRXD
VDD
MCU
A/D
SPI
*= Optional
(5.0 V/3.3 V)
Q1*Q2D1V
PWR
VPWR CAN
Bus
47MIP Edition 1/2014
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100-up price
NCL30083ADMR2G
€ 0.31
100-up price
NCL30082ADMR2G
€ 0.31
100-up price
NCL30083BDR2G
€ 0.31
100-up price
NCL30082B1DR2G
€ 0.31
NCL30082/83Dimmable Quasi-Resonant Primary Side Current-Mode Controllers for LED Lighting
The NCL30082/83 are PWM current
mode controllers targeting isolated
flyback and non-isolated constant
current topologies. The controllers
operate in a quasi-resonant mode to
provide high efficiency. Thanks to a
novel control method, the device is
able to precisely regulate a constant
LED current from the primary side.
This removes the need for secondary
side feedback circuitry, biasing and an
optocoupler.
The device is highly integrated with
a minimum number of external
components. A robust suite of safety
protection is built in to simplify the
design. This device is specifically
intended for very compact space
efficient designs. The NCL30083
supports step dimming by monitoring
the AC line and detecting when the
line has been toggled on-off-on by the
user to reduce the light intensity in
5 steps down to 5% dimming, while
the NCL30082 supports analog/PWM
dimming and thermal foldback.
KEY FEATURES
• Quasi-resonant peak current-mode
control operation• Primary side sensing (no optocoupler
needed)• Wide VCC range• Source 300, sink 500 mA totem pole
driver with 12 V gate clamp• Precise LED constant current
regulation ±1% typical• Line feed-forward for enhanced
regulation accuracy• 250 mV ±2% guaranteed voltage
reference for current regulation• Low start-up current (13 µA typ.)• Analog or digital dimming• Thermal fold-back• Wide temperature range:
-40...+125 °C• Pb-free, halide-free MSL1 product
• Robust protection features:• Over-voltage protection• LED open circuit protection• Over-temperature protection• secondary diode short protection• Output short circuit protection• Shorted current sense pin fault
detection• Brown-out• VCC under-voltage lockout
APPLICATION EXAMPLES
• Integral LED bulbs and downlights• LED light engines• Electronic control gear for LEDs
LINKS
NCL30083 product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCL30083
NCL30082 product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCL30082
Aux
+
+
+
1
2
3
4
8
7
6
5
0
48 MIP Edition 1/2014
100-up price
NCP51198PDR2G
€ 0.73
NCP/NCV51190/1981.5 A DDR Memory Termination Regulators
The NCP/NCV51190/198 are simple,
cost-effective, high-speed linear
regulators designed to generate the
VTT termination voltage rail for DDR-I,
DDR-II and DDR-III memory. The
regulators are capable of actively
sourcing or sinking up to ±1.5 A for
DDR-I, or up to ±0.5 A for DDR-II/- III
while regulating the output voltage to
within ±30 mV. The output termination
voltage is tightly regulated to track VTT
(=VDDQ/2) over the entire current range.
The NCP/NCV51190/198 incorporate
a high-speed differential amplifier to
provide ultra-fast response to line and
load transients. Other features include
extremely low initial offset voltage,
excellent load regulation, source/sink
soft-start and on-chip thermal shut-
down protection.
The NCP/NCV51190/198 feature the
power-saving suspend-to-RAM (STR)
function which will tri-state the regulator
output and lower the quiescent current
drawn when the /SS pin is pulled low.
The NCP/NCV51190 is available in a
DFN-8 package, the NCP/NCV51198 in
an SOIC-8 exposed pad package
KEY FEATURES
• Generate DDR memory termination
voltage (VTT)• For DDR-I, DDR-II, DDR-III source /
sink currents• Supports DDR-I to ±1.5 A, DDR-II to
±0.5 A (peak)• Integrated power MOSFETs with
thermal protection• Stable with 10 µF ceramic VTT
capacitor• High accuracy output voltage at full
load• Minimal external component count• Shutdown for standby or suspend to
RAM (STR) mode• Built-in soft start• NCV prefix for automotive and other
applications requiring unique site and
control change requirements; AEC-
Q100 qualified and PPAP capable• These are Pb-free devices
APPLICATION EXAMPLES
• Desktop PC’s, notebooks, and
workstations• Graphics card DDR memory
termination• Set top boxes, digital TV’s, printers• Embedded systems• Active bus termination
LINKS
NCP51198 product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCP51198
NCP51190 product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCP51190
/SS
GND
/SS
VTTS
VREF
VTT
PVCC
VCC
VDDQ
VTT
=750 mV
VDDQ
=1.5 V
VCC
=3.3 V
COUT
CIN
CREF
NCP51190
3
4
5
6
2
1
8
7VREF
=750 mV
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100-up price
NCP1032BMNTXG
€ 0.68
100-up price
NCP1032AMNTXG
€ 0.68
NCP1032Integrated DC-DC Converter, PWM, 3.0 W
The NCP1032x is a miniature high-
voltage monolithic switching converter
with on-chip power switch and startup
circuits.
It incorporates in a single IC all the active
power, control logic and protection
circuitry required to implement, with
minimal external components, several
switching regulator applications, such
as a secondary side bias supply or
a low power DC-DC converter. This
converter is ideally suited for 24 V, 48 V
telecom and medical isolated power
supplies applications. The NCP1032x
can be configured in any single-ended
topology such as forward or flyback
converter. The NCP1032x is targeted for
applications requiring up to 3 W.
The internal error amplifier allows the
NCP1032x to be easily configured for
secondary or primary side regulation
operation in isolated and non-isolated
configurations. The fixed frequency
oscillator is optimized for operation up
to 1 MHz and is capable of external
frequency synchronization, providing
additional design flexibility. In
addition, the NCP1032x incorporates
undervoltage and overvoltage line
detectors, programmable cycle-by-
cycle current limit, internal soft start
and thermal shutdown to protect the
controller under fault conditions.
KEY FEATURES
• On-chip 200 V power switch and
startup circuit• Internal startup regulator with auxiliary
winding override• Programmable oscillator frequency,
operation up to 1 MHz• External frequency synchronization
capability• Frequency fold-down under fault
conditions• Trimmed ± 1% internal reference• Programmable cycle by cycle current
limit• Line under- and over-voltage
protection• Over-temperature protection• Internal soft start• Active leading edge blanking circuit
APPLICATION EXAMPLES
• Stand-alone low power DC-DC
converters• Secondary side bias supply for
isolated DC-DC sonverters• Low power bias supply• Low power boost converter• Medical isolated power supplies• PoE (power over Ethernet)/PD. Refer
to Application Note AND8247.• Bias supply for telecom systems.
Refer to Application Note AND8119/D.
LINK
Product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCP1032
VIN
R3
R4
UV/OVVCC
CL
CC
CP
D1
D2 CVCC
COUT22 µF
VOUT
R1
R2
2.2 µF
RC
COMP
RCL
VFB
CCT
CT
GN
DV
DR
AIN
Cin2.2µF
50 MIP Edition 1/2014
100-up price
NCV47411PAAJR2G
€ 0.70
NCV47411Adjustable Dual LDO, 3.3...20 V, with Adjustable Current Limit and 3.3 V Logic Compatible Enable Inputs
The NCV47411 is a dual integrated
low dropout regulator with 100 mA
per channel designed for use in harsh
automotive environments. It includes
wide operating temperature and input
voltage ranges. The device is offered
with adjustable voltage version available
in 3% output voltage accuracy. It has
a high peak input voltage tolerance
and reverse input voltage protection.
It also provides overcurrent protection,
overtemperature protection and enable
for control of the state of the output
voltage of each channel. The integrated
current sense feature provides diagnosis
and system protection functionality. The
current limit of the device is adjustable
by resistor connected to CSO pin for
each channel. CSO pin output current
creates voltage drop across CSO resistor
which is proportional to output current
of each channel.
KEY FEATURES
• Enable input (3.3 V logic compatible
thresholds)• Adjustable current limit up to 150 mA• Adjustable output voltage: 3.3...20 V• 3% output voltage accuracy• Protection: current limitation, thermal
shutdown, reverse input voltage• Saves battery life - quiescent current
down to 10 µA max.• Current sense feature provides
diagnosis and system protection
functionality
APPLICATION EXAMPLES
• Audio and infotainment systems• Instrument clusters• Navigation• Satellite radios
LINK
Product page:
www.onsemi.com/PowerSolutions/
product.do?id=NCV47411
NCV47411
EN1
EN2
Vin**
ADJ1
CSO1
ADJ2
CSO2
GND
Vout1
Vout2
C in1 F
C CSO21 F
RCSO2
R22
R21
R11
R12RCSO1
C CSO11 F
C out110 F
C out210 F
C b1*
C b2*
51MIP Edition 1/2014
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100-up price
BQ27621YZFR-G1A
€ 1.15
100-up price
BQ27621YZFT-G1A
€ 1.35
BQ27621System-Side Impedance Track Fuel Gauge with Dynamic Voltage Correlation
The bq27621-G1 is an easy to configure
microcontroller peripheral that provides
system-side fuel gauging for single-cell
Li-Ion batteries. The device requires
minimal user configuration and system
microcontroller firmware development.
It uses the patented Impedance
Track™ algorithm with dynamic voltage
correlation for fuel gauging. This
patented process eliminates the need
for a sense resistor when calculating
remaining battery capacity (mAh), state-
of-charge (%), battery voltage (mV),
temperature (°C) and state of health (%).
Battery fuel gauging with the
bq27621-G1 requires connections only
to PACK+ (P+) and PACK– (P–) for a
removable battery pack or embedded
battery circuit. The tiny 9-pin 1.62 ×
1.58 mm2, 0.5 mm pitch YZF package is
ideal for space constrained applications.
KEY FEATURES
• Single series cell Li-Ion battery fuel
gauge:• Resides on system board• Supports embedded or removable
batteries• Powered directly from battery with
integrated LDO • Easy to configure fuel gauging
based on patented Impedance Track
technology:• Reports remaining capacity
and state of charge (SOC) with
smoothing filter• Automatically adjusts for battery
aging,self-discharge, temperature,
and rate changes• Battery state of health (aging)
estimation • Microcontroller peripheral supports:
• 400 kHz I2C serial interface• Configurable SOC interrupt, or
battery low digital output warning • Internal temperature sensor, or host
reported temperature
APPLICATION EXAMPLES
• Smart watches• Fitness monitors• MP3 players• Portable medical, Industrial• PDA and smartphones• Digital cameras• Internet appliances
LINK
Product page:
www.ti.com/dis-ebv-2014mip1-bq2761-
g1-pf-eu
bq27621
BAT
VDD
VSS
1.8 VLDO
0.47µF
Li-IonCell
ProtectionIC
PACKN
PACKP
T
I2C
BusADC
CPU
SCLSDA
GPOUTEN
Battery Pack
52 MIP Edition 1/2014
100-up price
LMZ10500SILT
€ 1.60
1-up price
LMZ10500SILEVM
€ 18.-
100-up price
LMZ10500SILR
€ 1.35
LMZ10500/501SIMPLE SWITCHER® Nano Module with 5.5 V Maximum Input Voltage
The LMZ10501 SIMPLE SWITCHER®
nano module is an easy-to-use step-
down DC/DC solution capable of driving
up to 1 A loads in space-constrained
applications. Only an input capacitor,
an output capacitor, a small VCON
filter capacitor, and two resistors are
required for basic operation. The nano
module comes in an 8-pin LLP footprint
package with an inductor. Internal
current limit based softstart function,
current overload protection, and thermal
shutdown are also provided.
KEY FEATURES
• Integrated inductor• Miniature form factor• 8-pin LLP footprint
• -40...+125 °C junction temperature
range• Adjustable output voltage• 2.0 MHz fixed PWM switching
frequency• Integrated compensation• Soft start function• Current limit protection• Thermal shutdown protection• Input voltage UVLO for power-up,
power-down, and brown-out
conditions• Only 5 external components: resistor
divider and 3 ceramic capacitors
APPLICATION EXAMPLES
• Wireless broadband• Modems
• VoIP• Barcode scanner• Multi-function printers• Patient monitoring equipment• Military/avionics• Handheld instrumentation
LINKS
Soldering information:
www.ti.com/lit/an/snoa401r/snoa401r.
SIMPLE SWITCHER family page:
www.ti.com/dis-ebv-2014mip1-
simpleswitcher-pf-eu
Product page:
www.ti.com/dis-ebv-2014mip1-
lmz10501-pf-eu
VREF
VCON
FB
EB
ReferenceVoltage
VO
UT
Inte
gra
ted
Ind
uct
or
LCurrent Sense
Current Comp
sGND PCND
MAIN Control
ERRORAMPLIFIER
+-
+- +
-
VIN
VIN
UVLO
UVLO
+
MOSFETCONTROL
LOGIC
Comp
OSCILLATOR
TSD
53MIP Edition 1/2014
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100-up price
TPS92561DGN
€ 1.20
1-up price
TPS92561EVM-001
€ 53.-
TPS92561Phase Dimmable, Single Stage Boost Controller for LED Lighting
The TPS92561 device is a boost
controller for LED lighting applications
utilizing high-voltage, low-current LEDs.
A boost converter approach to lighting
applications allows the creation of the
smallest volume converter possible and
enables high efficiencies beyond 90%.
The device incorporates a current sense
comparator with a fixed offset enabling a
simple hysteretic control scheme free of
the loop compensation issues typically
associated with a boost converter. The
integrated OVP and VCC regulator further
simplify the design procedure and
reduce external component count.
KEY FEATURES
• Simple hysteretic control• Compact solution and simple bill of
materials• Naturally dimmable triac and reverse
phase dimmers• Implements LED drive circuits capable
of high >90% efficiency, >0.9 power
factor, and <20% THD• Programmable output over-voltage
protection• Overtemperature shutdown• VCC undervoltage lockout• 8-pin VSSOP (MSOP) with
exposed pad
APPLICATION EXAMPLES
• Integrated LED luminaires and fixtures• LED lamps: A, PAR, BR, MR• LED downlights
LINK
Product page:
www.ti.com/dis-ebv-2014mip1-
tps92561-pf-eu
LED+
LED+
EMIFilter
TPS92561
Gate
SRC
VCC
SEN
VP
OVP
ADJ
GND(opt) TRIAC
Dimmer
54 MIP Edition 1/2014
100-up price
SiP12109DMP-T1-GE4
€ 0.50
SIP121094 A, 4.5...15 V Input Synchronous Buck Regulator
Vishay expands its microBUCK®
family of integrated synchronous buck
regulators with a new 4 A device
offering high programmable switching
frequencies of up to 1.5 MHz and a
wide input voltage range of 4.5...15 V.
The SiP12109 features integrated
high- and low-side power MOSFETs
in a space-saving 3 x 3 mm2 QFN-16
package. Typical applications include
point-of-load regulation and 5 V and
12 V rails in space-constrained telecom,
and industrial applications. Network
processors, DSPs, FPGAs, ASICs,
high-density storage cards, TVs, set-top
boxes, distributed power systems, and
servers.
The device's power-saving mode
enables efficiency up to 95% over the
entire load range, while its current-mode
constant on-time (CM-COT) architecture
delivers ultra-fast transient response
with minimum output capacitance and
tight ripple regulation at very light loads.
The SiP12109 offers a full protection
feature set, including output under-
voltage and over-voltage protection,
thermal shutdown, input under-voltage
lockout, internal soft start, and a power
good indicator. To simplify designs, the
regulator is stable with any capacitor
type and doesn't require an ESR
network for loop stability.
Vishay's free PowerCAD online
simulation tool provides designers with
a fast and convenient way to test and
optimize circuits utilizing the SiP12109
or any other product in the microBUCK
DC-DC family.
KEY FEATURES
• High programmable switching
frequencies up to 1.5 MHz• Wide input voltage range: 4.5...15 V• Space-saving 3 x 3 mm2 QFN-16
package• Adjustable output voltage down to
0.6 V with ±1% accuracy
• Efficiency to 95%• Power-saving mode• Current-mode constant on-time
(CM-COT) architecture• Ultra-fast transient response• No ripple injection required• High efficiency at light load• Stable with any capacitor type; no
external ESR network required• Programmable soft start• Output undervoltage and overvoltage
protection• Thermal shutdown• Input undervoltage lockout• Power good indicator• RoHS-compliant and halogen-free
APPLICATION EXAMPLES
• Industrial• Telecom• Network processors• DSPs• FPGAs• ASICs• High-density storage cards• TVs• Set-top boxes• Distributed power systems• Servers
VIN
VOUT
PGOOD
POWER GOOD
INPUT = 4.5 V to 15 V
ENABLE
PGND
AGND
EN BOOT
LX
COMP
RON
VFB
SS
VCC
55MIP Edition 1/2014
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100-up price
AS0260CSSC28SUKA0
€ 7.75
AS0260A True HD SOC Image Sensor
The AS0260 is a 1/6-inch, 2.0 Mp Full
HD CMOS digital image sensor with an
active-pixel array of 1920 H x 1080 V. It
includes sophisticated camera functions
such as auto exposure control, auto
white balance, black level control, flicker
avoidance, and defect correction. It is
designed for low light performance.
The AS0260 produces extraordinarily
clear, sharp digital pictures, making it
the perfect choice for a wide range of
applications, including gaming systems
in the consumer space and endoscopes
in the healthcare market. This system-
on-chip (SoC) comes integrated with an
advanced camera system. This camera
system features a microcontroller
(MCU), a sophisticated image flow
processor (IFP), MIPI and parallel output
ports. The microcontroller manages all
functions of the camera system and sets
key operation parameters for the sensor
core to optimize the quality of raw image
data entering the IFP.
The sensor core consists of an active
pixel array that has programmable timing
and control circuitry. It also includes
an analog signal chain with automatic
offset correction, programmable gain,
and a 10-bit analog-to-digital converter
(ADC). The SOC has superior low-
light performance that is particularly
suitable for PC camera applications. The
AS0260 features Aptina’s breakthrough
low-noise CMOS imaging technology
that achieves near-CCD image quality
(based on signal-to-noise ratio and
low-light sensitivity) while maintaining
the inherent size, cost, and integration
advantages of CMOS.
The Aptina AS0260 can be operated
in its default mode or programmed for
frame size, exposure, gain, and other
parameters. The default mode output
is a 1080 p image size at 30 frames
per second (fps). It outputs JPEG
compressed 8-bit data, using the parallel
output port.
KEY FEATURES
• True 1080 p HD video capture at
30 fps at full resolution• Superior low light performance• Ultra-low power operation• Adaptive weighted AE• AWB with 3CCM• Independently configurable gamma
correction• Global hue rotation• Perspective correction• Adaptive lens shading correction• Flicker detection and correction• Face detection• Multi-camera synchronization• 3D support• MJPEG compression• UVC interface• 2-lane MIPI and parallel interface
APPLICATION EXAMPLES
• 3D gaming• Notebook cameras• Endoscopes
LINK
Product page:
www.aptina.com/products/soc/
as0260css/
Sensor Core
Pixel Array(1920x1080)
Image Flow Processor (IFP) Output Interface
InterpolationLine Buffers
ScalerLine Buffers
Color Pipeline
Stats Engine
Internal Register Bus
Power-On Reset
Two-Wire Serial IF
System Control
Microcontroller Unit (MCU)
Microcontroller SRAMROM/OTPM
FIFOMIPI
Paralel
56 MIP Edition 1/2014
2HMP SERIESHVAC & Refrigeration Pressure Sensor
The Sensata Technologies 2HMP series
of customized pressure sensors is
targeting air conditioning, refrigeration
and industrial applications where long-
term reliability and accuracy is a must.
They can measure, with high accuracy
over temperature, pressure in the range
of 0 to 6.9 bar through 0 to 51.7 bar
The sensors are based in MEMS sensing
technology and can be manufactured
with several standard fittings: braze
tube or threaded 7/16-20 Flare, 7/16-20
Schrader deflator and 1/8-27 NPTF.
The design is hermetic with rugged seal
ideal for outdoor environments. Media
and electrical isolation protects against
thermal shock, electrical shock or
equipment damage.
Thanks to an outstanding EMC/ESD
performance; such sensors are ideal for
pumps and compressors controlled by
variable speed converters.
APPLICATION EXAMPLES
• Commercial refrigeration• Variable speed HVAC• Transport refrigeration• Chillers• Heat pumps• Variable refrigerant flow (VRF)
14HEX
96926.50
6.20ø
ø ø
ø ø
BRAZE IN FITTING
5553
24.3023.70
7/16-20 FLARE FITTING
24.3023.70
24.3023.70
5249
1/8-27 NPTF FITTING7/16-20 SCHRADER DEFLATOR FITTING
24.3023.70
15.75HEX
25.40HEX
5553
Technical Specifications
Pressure Ranges 0 to 100 psi through 0 to 750 psi,
0 to 1 MPa through 0 to 5 MPa
Performance Accuracy ± 1% F.S. typical over
-25 °C to 125 °C (-13 °F to 257 °F)
Operating Temperature -40 °C to 125 °C (-40 °F to 257 °F)
Storage Temperature -40 °C to 150 °C (-40 °F to 302 °F)
Proof Pressure 1000 psi, 6.9 MPa
Burst Pressure 3600 psi, 24.8 MPa
Cycle Life 1 million F.S. cycles
Vibration 11 g (50 to 2000 Hz)
Drop (any Axis) 1 m
Electrical Connection IP67 available
Wetted Materials 304L stainless steel
brass/copper
other materials available
KEY FEATURES
• Pressure range up to 51.7 bar• Pressure reference is absolute• Hermetic pressure port• Outstanding EMC/ESD performance• Integrated connector• 5 VDC power supply,• 0.5...4.5 V output, ratiometric• Electrically Isolated Housing
57MIP Edition 1/2014
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100-up price
LPS25H
€ 1.45
LPS25HMEMS Pressure Sensor, 260...1260 hPa Absolute Digital Output Barometer
The LPS25H is an ultra compact absolute
piezoresistive pressure sensor. It includes
a monolithic sensing element and an IC
interface able to take the information
from the sensing element and to provide
a digital signal to the external world. The
sensing element consists of a suspended
membrane realized inside a single
mono-silicon substrate. It is capable
to detect the absolute pressure and is
manufactured with a dedicated process
developed by ST.
The membrane is very small compared
to the traditionally built silicon
micromachined membranes. Membrane
breakage is prevented by an intrinsic
mechanical stopper.
The IC interface is manufactured using
a standard CMOS process that allows
a high level of integration to design
a dedicated circuit which is trimmed
to better match the sensing element
characteristics.
The LPS25H is available in a cavity holed
LGA package (HCLGA). It is guaranteed
to operate over a temperature range
extending over -30...+105 °C. The
package is holed to allow external
pressure to reach the sensing element.
KEY FEATURES
• 260...1260 hPa absolute pressure
range• High-resolution mode: 1 Pa RMS• Low power consumption:
• Low resolution mode: 4 μA• High resolution mode: 25 μA
• High overpressure capability:
20x full scale• Embedded temperature compensation• Embedded 24-bit ADC• Selectable ODR: 1...25 Hz• SPI and I2C interfaces• Embedded FIFO• Supply voltage: 1.7...3.6 V• High shock survivability: 10,000 g• Small and thin package
APPLICATION EXAMPLES
• Indoor and outdoor navigation• Altimeter and barometer for portable
devices• GPS applications• Sport watches• Weather stations
AM08736V2
p
I2C
SPI
Sensing element
Temperaturesensor
Voltage and current bias
Clock and timing
Qu
adra
tic
tem
pe
ratu
reC
om
pe
nsa
tio
n
AD
C+
dig
ital
filt
er
Lo
w n
ois
e
anal
og
fro
nt
en
d
MUX
32
Sam
ple
s F
IFO
Filt
er
(32
sam
ple
s av
era
ge
)
Sensor bias
58 MIP Edition 1/2014
100-up price
BCM5461A1KQMG
€ 5.15
100-up price
BCM5461A1KPF
€ 6.10
100-up price
BCM5461A1KFB
€ 5.05
BCM546110/100/1000BASE-T Gigabit Copper Transceiver
The BCM5461 consists of a triplespeed
1000BASE-T/100BASE-TX/10BASE-T
Gigabit Ethernet transceiver integrated
into a single monolithic CMOS chip.
The device performs all physical-layer
functions for 1000BASE-T, 100BASE-TX,
and 10BASE-T Ethernet on standard
category 5 UTP cable. 10BASE-T can
also run on standard category 3, 4, and
5 UTP. The BCM5461’s DSP-based
architecture and advanced power
management techniques combine to
achieve robust and low-power operation
over existing CAT 5 twisted-pair wiring.
The architecture not only meets
the requirements of 802.3, 802.3u,
and 802.3ab, but also maintains the
industry’s highest level of margin over
IEEE requirements for Echo, NEXT,
and FEXT. At less than 700 mW per
port, low power is a key factor in
implementing Gigabit small form factor
NICs and uplinks. For NIC applications,
support for wake-on-LAN enables
compliance with PCI 2.2 and PC99/
PC2000. Also, the BCM5461 has
extremely low EMI emissions, which
reduces the design constraints required
to meet EMI emissions specifications.
In addition to supporting the IEEE 802.3
standard Gigabit Media Independent
Interface (GMII), the BCM5461 also
supports the RGMII and RTBI interfaces.
RGMII is a reduced pin-count (12 versus
25) version of the GMII, and RTBI is a
reduced pin-count version of TBI utilizing
standard ASIC technology. The small
package, multiple MAC interfaces,
and streamlined power supply lowers
system cost and simplifies the system
and board level design
KEY FEATURES
• GMII, RGMII, RTBI, and MII MAC
Interface options• On-chip low-voltage regulators• Fully compliant with IEEE 802.3,
802.3u, and 802.3ab standards• 0.13 μ CMOS: low power and cost
• Less than 700 mW per port• Wake-on-LAN support• Advanced power management
• Trace matched output impedance• Line-side loopback• Low EMI emissions• Cable-plant diagnostic
• Cable-plant analyzer function
detects cable plant impairments• Link quality indication LED• Automatic detection and correction
of wiring pair swaps, pair skew, and
pair polarity• Automatic MDI/MDIX crossover at
all speeds • Robust CESD tolerance• Support for jumbo packets up to 9 KB• IEEE 1149.1 (JTAG) boundary scan• 128-pin MQFP, 117-pin BGA, and
100-pin FBGA packages
APPLICATION EXAMPLES
• Gigabit Ethernet Switches• Industrial Routers & Gateways• Voice/Video Over IP
BCM564524FE+2G
Switch
BCM5461R
J-4
5R
J-4
5
Transfo
rme
rTran
sform
er
BCM5461
BCM5248Octal
10/100 Mbps PHY
BCM5248Octal
10/100 Mbps PHY
BCM5248Octal
10/100 Mbps PHY
59MIP Edition 1/2014
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100-up price
BCM5482A2KFBG
€ 8.40
100-up price
BCM5482SA2KFBG
€ 10.35
BCM5482/82SDual-Port 10/100/1000BASE-T Gigabit Ethernet Transceiver
The BCM5482 is a dual triple-speed
1000BASE-T/100BASE-TX/10BASE-T
Gigabit Ethernet transceiver integrated
into a single monolithic CMOS chip.
The device performs all physical layer
functions for 1000BASE-T, 100BASE-TX,
and 10BASE-T Ethernet on standard
CAT-5 UTP cable. 10BASE-T can also
run on standard CAT-3, -4, and -5 UTP.
The BCM5482 also has a serial interface
for connection to serial MAC interfaces
and fiber modules. The device is a highly
integrated solution combining digital
adaptive equalizers, ADCs, phase-locked
loops, line drivers, encoders, decoders,
echo cancellers, crosstalk cancellers,
and all required support circuitry. Based
on Broadcom’s proven digital signal
processor technology, the BCM5482
is designed to be fully compliant with
RGMII and MII, allowing compatibility
with industry-standard Ethernet MACs
and switch controllers.
The BCM5482 includes a shared
SerDes/SGMII interface that can be
connected to an SGMII MAC or a
SerDes/fiber transceiver. The BCM5482
supports 100BASE-FX optical modules
through the SerDes/SGMII interface
pins. Media converter mode provides
SerDes-to-copper translation capability.
Designed for reliable operation over
worst-case CAT-5 cable conditions, the
BCM5482 automatically negotiates with
its link partner to determine the highest
possible operating speed. The device
detects and corrects most common
wiring problems. The digital nature of
the BCM5482 allows data to be brought
out for displaying cable diagnostics,
such as attenuation and return loss,
using available software
KEY FEATURES
• Line-side copper and fiber (1000SX/
LX and 100FX) interfaces• RGMII-to-SGMII support for
10/100/1000Base-T SFP modules• SerDes-to-copper translation for
media-converter applications• Automatic auto-sense mode
automatically configures for dual
medium applications• Integrated voltage regulators• Low EMI emissions• Super Isolate mode• Ethernet@WireSpeed™• Cable plant diagnostic• Robust CESD tolerance• Support for jumbo packets up to
10 KB• Detection and correction of pair swaps
(MDI crossover), pair skew, and pair
polarity• Trace matched output impedance• MAC-side and line-side loopback• Auto-negotiation with next page
support• 125 MHz clock generator and timing
recovery• JTAG support• Low-power, 1.2 V CMOS core• 2.5 V or 3.3 V CMOS I/O• Packages: 121-pin BGA
APPLICATION EXAMPLES
• IP telephone• Gigabit Ethernet uplinks• Fiber-to-copper media converters
GTXCLK2:1TXD[3:0]2:1TX_EN2:1
SCLK(1)2:1±SGOUT(1)2:1±SGIN(1)2:1±
RXD[3:0]2:1±RXC2:1RX_DV 2:1RX_DV2:1
LED2:12:1
MDC2:1MDIO2:1
MODES
Symbol Encoder
Serial/SGMII
DFE&Trellis
Decoder
XTALKCanceller
x3Echo Canceller
FFE
Timing&PhaseRecovery
ADCPGA
Auto-Negotiation
TRD1[3:0]2:1±
REGSUP2:1REGCNTL2:1
REGSEN2:1
Clock Generator
Bias Generator
Voltage Regulator
TX DAC
BaselineWander
Correction
Symbol Decoder/Aligner
LED Drivers
MII Registers MII ManagementControl
XTALIXTALO
RDAC
60 MIP Edition 1/2014
100-up price
BCM53125UKMMLG
€ 7.35
100-up price
BCM53125MKMMLG
€ 8.95
BCM531257-Port Integrated Gigabit Energy-Efficient Ethernet Switch
The BCM53125 is Broadcom's first
integrated multilayer switch to support
the IEEE 802.3az specification for
Energy Efficient Ethernet (EEE).
It is the optimal solution for small and
medium business designs that have
challenging low-power requirements.
Building upon industry-leading
65 nm RoboSwitch™ architecture,
the BCM53125 can lower the power
consumption by an additional 10% when
compared to the previous-generation
device. The BCM53125 solidifies
Broadcom’s leadership in Ethernet
switching technology by delivering an
optimized solution for the SMB desktop
switch, wireless router, and gateway
markets.
It can interconnect with other devices
for scalable, high-performance systems
through multiple interfaces including
RGMII, GMII, MII, and Turbo MII.
Requirements such as video and
Internet Protocol (IP) phone services are
driving the need for QoS and adherence
to industry standards.
The BCM53125 supports four selectable
QoS per port, SP and WRR and any
combination of SP and WRR scheduling,
port, MAC, IEEE 802.IP, and IPv4/
IPv6 DSCPbased QoS. The BCM53125
also supports IEEE 802.qat and IEEE
802.1aq. The BCM53125 delivers the
most comprehensive technologies
required by top tier service providers for
gateway applications. Protocols such
as IEEE 802.1Q-based VLAN with 4K
entries, port-based VLAN, VLAN double
tagging (Q-in-Q), and VLAN translation
are fully supported.
KEY FEATURES
• First Broadcom® IEEE 802.3az Energy
Efficient Ethernet™ (EEE)-compliant
switch• Integrated on-chip MCU to manage
low-power modes automatically• Power-saving green technology• Supports RGMII, MII, RvMII, TMII,
and GMII on uplink ports• Saves more than 70% power during
EEE mode compared to non-EEE
mode• Individual ports can automatically
detect when short cable lengths are
used to scale power appropriately• Unused ports can be intelligently
powered down to conserve power• Very low power consumed in active
mode (with full traffic on all ports)• Two additional Gigabit ports for
glueless connection to CPU, WLAN,
Cable, or DSL chipsets
APPLICATION EXAMPLES
• Embedded Computing• Industrial Networking• Small Office Connectivity
L2 Tables
L2 Processing
uC/RAM
CFP256 Rules
Packet Buffer
Memory Manager4 COS SP, WRR
GMAC GMAC
RGMII/MII/RvMIITMII/GMII
RGMII/MII/RvMIITMII/GMII
TMII-200 Mbps
TRD [3:0]
TRD [3:0]
TRD [3:0]
TRD [3:0]
TRD [3:0]
GMAC
GPHY GPHY GPHY GPHY GPHY
GMAC GMAC GMAC GMAC
61MIP Edition 1/2014
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100-up price
82V3911AUG
€ 36.-
100-up price
82V3910AUG
€ 49.-
IDT82V3910, IDT82V3911SyncE SETS for 1 GbE, 10 GbE and 40 GbE
The IDT82V3910, IDT82V3911 are
the industry’s first single-chip timing
solutions for all 1 G, 10 G and 40 G PHYs
and switches.
The synchronous equipment timing
source (SETS) functions are provided
by two independent digital PLLs, T0
and T4, each with embedded clock
synthesisers. The T0 digital PLL
meets the network synchronisation
requirements for frequency accuracy,
pull-in, hold-in, pullout, noise generation,
noise tolerance, transient response and
holdover performance. The T4 digital
PLL provides rate conversion functions.
IDT82V3910, IDT82V3911 integrate
two ultra-low jitter analog PLLs for jitter
attenuation functionality that eliminates
bill of material cost and layout space
needed for external analog PLLs.
The devices can directly time 10 G
and 40 G PHYs. Both the devices
provide outputs with jitter below 300 fs
RMS in the 10 kHz to 20 MHz range
and both support hitless reference
switching. The IDT82V3910 ensures
reliable system synchronisation in
SyncE and SONET/SDH networks
tolerant of transients, wander and other
network synchronisation impairments.
IDT82V3910 supports master/slave
architectures where the system
switches a redundant SETS without bit
errors if the active SETS fails.
KEY FEATURES
• Optimised for 1 OG-Base-R, 1
OG-Base-R, OC-192/STM-64 and 1
OG-Base-R applications• Supports ITU-T G.8261/G.8262
Synchronous Ethernet compliant
equipment and many others• Supports clock generation for
IEEE1588 applications• Generates SyncE interface clocks for
1 GE, 10 GE, 40 GE• Selectable digital PLL bandwidth from
0.5 mHz up to 35 Hz• Locks to wide range of clocks
including 1 pps clocks and 1 pps sync
input• Analog PLL supports 3 clock modes:
SONET, Ethernet, and Ethernet LAN
PHY
• Supports two crystal connections,
allowing each analog PLL two modes
of operation• CMOS clock inputs 2 kHz to
156.25 MHz, CMOS clock outputs
1 pps to 125 MHz• Differential clock inputs 2 kHz
to 625 MHz, diff. clock outputs
25...644.53125 MHz• Frame input 1 pps, 2 kHz, 4 kHz,
8 kHz, frame output 1 pps, 2 kHz,
8 kHz• IDT82V3910 offers composite clock
inputs and outputs
APPLICATION EXAMPLES
• SONET / SDH equipment• Synchronous Ethernet equipment• Core and access IP switches / routers• Gigabit and Terabit IP switches /
routers• Cellular and WLL base-station node
clocks• Broadband and multi-service access
equipment• Central office timing source and
distribution• DWDM cross-connect and
transmission equipment• IP core routers and access equipment
OTHER INFORMATION
• I2C microprocessor interface• IEEE 1149.1 JTAG boundary scan• Single 3.3 V operation with 5 V
tolerant CMOS I/Os• 1 mm ball pitch CABGA 196-pin
package, 15 x 15 mm2
• -40...+85 °C temperature range
®
62 MIP Edition 1/2014
100-up price
TJA1057GTJ
€ 0.31
TJA1057GTHigh-Speed CAN Transceiver
The TJA1057 is a high-speed CAN
transceiver that provides an interface
between a Controller Area Network
(CAN) protocol controller and the
physical two-wire CAN bus.
The transceiver is designed for high-
speed CAN applications, providing
the differential transmit and receive
capability to (a microcontroller with) a
CAN protocol controller.
The TJA1057 offers a feature set
optimized for 12 V automotive
applications, with significant
improvements, and excellent
electromagnetic compatibility (EMC)
performance. The TJA1057 also displays
ideal passive behavior to the CAN bus
when the supply voltage is off.
These features make the TJA1057 an
excellent choice for HS-CAN networks
that only require basic CAN functionality.
The TJA1057GT variant guarantees
additional timing parameters to ensure
robust communication at data rates
beyond 1 Mbps as used in, for example,
CAN FD networks.
KEY FEATURES
General• Fully ISO 11898-2 compliant• Optimized for use in 12 V automotive
systems• Excellent electromagnetic
compatibility (EMC) performance,
satisfying 'Hardware Requirements
for LIN, CAN and FlexRay Interfaces in
Automotive Applications’,
Version 1.3, May 2012• Compatible with 5 V and 3.3 V
microcontrollers• Loop delay symmetry guaranteed for
data rates up to 5 Mbps• Improved TXD to RXD propagation
delay of 210 ns
Predictable and fail-safe behavior• Functional behavior predictable under
all supply conditions• Transceiver disengages from bus
when not powered (zero load) or in
Silent mode
• Transmit data (TXD) dominant
time-out function• Undervoltage detection on pin VCC
• Internal biasing of TXD and S input
pins
Protection• High ESD handling capability on the
bus pins (6 kV IEC and HBM)• Bus pins protected against transients
in automotive environments• Thermally protected
APPLICATION EXAMPLES
• Automotive control network• CAN in Automation• Lift control network
TemperatureProtection
CANH7
6
3
1
8
4
2
TJA1057
CANL
SlopeControl
andDriver
Time Out
ModeControl
Driver
VCC
VCC
VCC
VCC
TXD
RXD
GND
S
63MIP Edition 1/2014
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100-up price
ACFF-1024-BLK
€ 1.70
ACFF-1024ISM Bandpass Filter (2401...2482 MHz) for Wireless Applications
Many interconnectivity devices contain
a multitude of different radios (LTE,
GSM, Wi-Fi, Blutooth, GPS) and all of
these radios need to coexist - i.e. not
interfere with each other. The Avago
Technologies ACFF-1024 ISM bandpass
filter is the perfect solution here.
The ACFF-1024 is a miniaturized
bandpass filter designed for use in the
2.4 GHz industrial, scientific and medical
(ISM) band. This device solves the
design problem of enabling concurrent
operation of WiFi and/or Bluetooth®
with other wireless standards - such
as 2.5 GHz WiMAX, PCS, and LTE
Bands 7 and 40 without performance
degradation due to adjacent radio
interference.
The ACFF-1024 is designed with Avago
Technologies’ innovative film bulk
acoustic resonator (FBAR) technology,
which makes possible ultra-small,
high-Q filters at a fraction of their usual
size.
KEY FEATURES
• 50 Ω input/output• No external matching required• Low insertion loss, high interference
rejection• Subminiature size: 1.1 x 1.4 mm2
footprint, 0.80 mm max. height• High power rating:+ 27 dBm abs. max.
TX power• Operating temperature: -40...+85°C• Rohs 6 compliant• Halogen free• TBBPA free
APPLICATION EXAMPLES
• Mobile phones, RF infrastructure,
automotive, WLAN routers • 802.11 b/g/n WLAN or Bluetooth
datacom in handsets, mobile and
portable communications devices.
-3.0
-2.5
-2.0
-1.5
-1.0
-0.5
0
24
00
24
10
24
20
24
30
24
40
24
50
24
60
24
70
24
80
Inse
rtio
n L
oss
(d
B)
Frequency (MHz)
64 MIP Edition 1/2014
100-up price
BCM20736S
€ 3.65
BCM20736Bluetooth Smart SoC with Wireless Charging
The BCM20736 Bluetooth Smart
SoC integrates key peripherals and
components that are commonly used
in sensors, medical devices, wearables,
and other devices in the Internet of
Things (IOT) domain to enable more
devices to deliver an enhanced user
experience at affordable price points.
With the addition of wireless charging,
the BCM20736 is first of its kind to
deliver a complete Bluetooth Smart
solution, including wireless charging, for
wearable devices. The rising popularity
of smartphones and Bluetooth Smart
Ready devices and associated Internet-
based applications is driving more
diverse form factors and use cases
in medicine, fitness, entertainment,
home and industrial automation, toys,
and wearables. As the smartphone
ecosystem evolves, it continues to
foster integrated connectivity between
peripherals and smart portable devices
to leverage smartphone capabilities and
take advantage of web-based ubiquitous
connectivity.
The BCM20736 was created to enable
a new generation of Bluetooth Smart
devices, with support for wireless
charging. With a smaller size, a higher
level of integration, and 65 nm CMOS
process technology, the BCM20736
delivers lower power consumption than
other Bluetooth 4.0 solutions for longer
battery life and a more satisfying user
experience.
KEY FEATURES
• Complies with Bluetooth Core
Specification version 4.0.• On-chip support for common
keyboard and mouse interfaces.• Powerful ARM® Cortex™ M3 32-bit
processor:• Supports advanced applications
at lower power than the 8-bit and
16-bit processors offered by most
competitive solutions.• Full support for wireless charging,
including onboard support for A4WP.
• Integrated programmable keyscan
matrix interface, with up to 8 × 20
key-scanning matrices.• Superior receiver sensitivity
maximizes the range and coverage for
Bluetooth peripherals.• Supports UART, SPI, and Broadcom
Serial Control interfaces.• On-chip, multichannel ADC for
measuring sensor inputs, battery
level, and more.• Onboard stack with several profiles
embedded into the ROM, no external
stack is required.
TOOLS
• BCM920732_BLE_KIT - Full featured
development board BCM20732 |
Supported by SDK 1.1 USB support
for PC dev. Integrated Eclipse based
IDE• BCM92073X_LE_KIT - Full featured
development board BCM20737 |
Supported by SDK 2.0 USB support
for PC dev. Integrated Eclipse based
IDE
APPLICATION EXAMPLES
• Wearable electronics• Wireless Human Interface • Smart Home
Antenna
BandpassFilter
24 MHzXTAL
VBAT/VDDIO
BCM20736S
UARTSPI/I2C
InfraredADCGPIOsPWM
32.768 kHzOscillator(optional)
EEPROM512 Kb I2C
BCM20736S
Bluetooth Low EnergySystem-on-Chip with
ARM® Cortex™ M3-basedMicroprocessor Core
65MIP Edition 1/2014
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100-up price
SN8200
€ 15.70
SMART WLAN MODULESWLAN Connectivity Modules Compatible with Broadcom WICED
Combined with Broadcom WICED
(Wireless Internet Connectivity for
Embedded Devices), Murata modules
are the solution to simplify the design
of Wi-Fi on embedded systems.
These solutions enable customers to
abstract from the RF design, allowing
time to market designs and reducing
the investment necessary for a full
RF design. Murata offers a complete
family of modules for customers
willing to make a development based
on Broadcom’s WICED platform.
In terms of hardware Murata offers
modules embedding the MCU for a
high integration solution, or the radio
only modules allowing customers to
have flexibility on the MCU selection.
Customer can also choose modules
integrating antenna or SiP solutions
with very small form factor and very
cost effective for high volume designs.
SN8xxx range of products on this family
are available in any quantities and meet
industrial specifications.
For the modules integrating the MCU,
Murata has available SNIC software.
This software version is based on the
WICED platform, but allows customers
to use the module as a black box
controlling it by simple commands
through a serial interface (UART or SPI).
It comes together with Murata’s EZ
Web Wizzard that is a tool to allow easy
customization of web server.
A full range of evaluation kits are
available to support customers during
the development. All the modules are
fully tested on production and there are
versions certified for FCC/IC and CE
compliant.
KEY FEATURES
• Broadcom BCM43362 radio +
STMicroelectronics STM32 MCU
embedded,• Low power
• IEEE802.11b/g/n supported• SPI or UART interface for devices
embedding MCU, SDIO for the radio
only solutions.• STA and SoftAP simulataneous
support• Integrated AES, TKIP in hardware,
WPA and WPA2 support• TCP/IP stack integrated• Built in DHCP, DNS• SN820X: 30.5 x 19.4 x 2.8 mm3
• SN8000: 24.0 x 11.4 x 2.0 mm3
• Type YD/ZD: 10.0 x 7.9 x 1.25 mm3
(max)• Type ZX: 7.0 x 6.0 x 1.2 mm3 (max)• Output power: +17...+18 dBm• Sensitivity: -96...-87 dBm• Operating temperature: -40...+85 °C• FCC/IC certified and CE compliant
versions available.
APPLICATION EXAMPLES
• Internet of Things• Home automation (thermostats,
alarms, sensors, light switches, smart
plugs, appliances control)• Health and fitness (weight scales,
patient monitoring, heart rate
monitors, blood pressure monitors)• Automation and logistics• Energy management devices• Wireless sensor networks.
LINK
Modules page:
www.murata.eu/modules
66 MIP Edition 1/2014
100-up price
BLS7G3135L-350P,11
€ 579.-
BLS7G3135L(S)-350PLDMOS S-Band Radar Power Transistor
With few exceptions, today’s generation
of radars employ a phased array or
active electronically steered array
(AESA) architecture to improve reliability
and accuracy, and to allow tracking
of multiple targets. This approach
replaces the single, high power tube and
mechanically rotated parabolic antenna
and its inherent single point of failure,
with a large array of transmit-receive
modules that employ high performance
ASICS and power transistors.
NXP has an extensive portfolio
of LDMOS (and soon to be GaN)
transistors supported by a strong
portfolio of SiGe:C based discretes and
ICs for L and S band radar systems.
The BLS7G3135L(S)-350P is a 350 W
LDMOS power transistor intended for
radar applications in the 3.1...3.5 GHz
range.
Combining the power density of
bipolar with the advantages of LDMOS
technology, the BLS7G3135L(S)-350P
significantly improves pulse droop
performance and thermal resistance for
S-band radar designs. NXP’s industry
leading LDMOS technology and leading
edge (beryllium-oxide free) packaging
solutions allow customers to produce
low cost amplifiers and pallets that
deliver best in class performance and
reliability.
KEY FEATURES
• Easy power control• Integrated ESD protection• High flexibility with respect to pulse
formats• Excellent ruggedness
• High efficiency• Excellent thermal stability• Designed for broadband operation
(3.1...3.5 GHz)• Internally matched for ease of use• Compliant to Directive 2002/95/EC,
regarding Restriction of Hazardous
Substances
APPLICATION EXAMPLES
• S-band power amplifiers• Radar applications in the 3.1...3.5 GHz
frequency range
67MIP Edition 1/2014
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100-up price
PT5010A0HN/C1,151
€ 1.30
PT501Universal NFC Card Emulation and NFC Peer-to-Peer Solution
The PT501 is a cost optimized and
universal solution to communicate
with an NFC phone in applications like
maintenance or for machine-to-machine
communication. The PT501 is a generic
13.56 MHz communication interface,
this transceiver IC can be operated in
two operating modes:
Card emulation mode supporting ISO/
IEC 14443-A and FeliCa compliant
protocol. In card emulation mode, the
PT501 transceiver IC is able to answer
to a reader/writer command either
according to the ISO/IEC 14443A/
MIFARE or FeliCa card interface
scheme.
Additionally, the PT501 transceiver IC
offers the possibility to communicate
directly to an NFCIP-1 device in the
NFC peer-to-peer passive target mode.
The NFCIP-1 mode offers different
communication mode and transfer
speeds up to 424 kbit/s according to
Ecma 340 and ISO/IEC 18092 NFCIP-1
standards.
Additionally, the PT501 transceiver IC
offers the possibility to communicate
directly to an NFCIP-1 device in the
NFC peer-to-peer passive target mode.
The NFCIP-1 mode offers different
communication modes and transfer
speeds up to 424 kbit/s according to
Ecma 340 and ISO/IEC 18092 NFCIP-1
standards.
KEY FEATURES
• Highly integrated analog circuitry to
demodulate and decode responses• Buffered output drivers for connecting
an antenna with the minimum number
of external components• Integrated RF level detector• Integrated data mode detector• ISO/IEC 14443A higher transfer speed
communication at 106 kbit/s• Contactless communication according
to the FeliCa scheme at 212 kbit/s and
424 kbit/s
• Integrated RF interface for NFC peer-
to-peer passive target NFCIP-1 up to
424 kbit/s• Additional power supply to directly
supply the smart card IC connected
via I2C• Supported host interfaces:
• SPI up to 10 Mbit/s• I2C-bus interface up to 400 kBd in
fast mode, up to 3400 kBd in high-
speed mode• RS232 serial UART up to
1228.8 kBd, with voltage levels
dependant on pin voltage supply• FIFO buffer handles 64 byte send and
receive• Flexible interrupt modes• Hard reset with low power function• Power-down mode per software• Programmable timer• 2.5...3.6 V power supply• CRC coprocessor• Programmable I/O pins• Internal self-test
APPLICATION EXAMPLES
• Contactless transactions• Mobile payment• Identification• Access control
HOST
ANTENNA FIFOBUFFER
ANALOGINTERFACE CONTACTLESSUART
SERIAL UARTSPI
I2C-BUS
REGISTER BANK
68 MIP Edition 1/2014
100-up price
SIM28
€ 5.90
100-up price
SIM68
€ 14.80
SIM28M/68MUltra Compact Multi-GNSS Positioning Modules
SIM28M (GPS) and SIM68M (GPS/
GLONASS/Galileo/QZSS) are ultra
compact GNSS modules in an SMT
type package with MTK’s high
sensitivity navigation engine, allowing
the customer to achieve the industry’s
highest level sensitivity, accuracy, and
time-to-first-fix (TTFF) with lowest
power consumption. With built-in
LNA, SIM28M and SIM68M can reach
total noise figures of 2.2 dB. They
can accelerate positioning by EASY™
and EPO™ advanced technologies.
Combined with excellent low-power
consumption characteristics, these
rich features are suitable for portable
applications such as personal trackers,
OBDs, PDAs and gaming devices.
The dimension of the modules is only
10.1 x 9.7 x 2.5 mm3, and they are
pin-to-pin compatible in 18-pin LCC
packaging which is suitable for easy
design and mass production.
KEY FEATURES
• Ultra compact size:
10.1 x 9.7 x 2.5 mm3
• Low power consumption:• Acquisition: 25 mA • Tracking: 18 mA• Backup: 14 uA
• High sensitivity (LNA integrated):• Tracking: -165 dBm• Reacquisition: -160 dBm• Cold start: -148 dBm
• Fast positioning: time-to-first-fix:• Cold start: 28 s• Warm start: 26 s• Cold start: 15 s with EASY™
technology• Warm start: 5 s with EASY™
technology• Cold start: 15 s with EPO ™
technology• SIM68M and SIM28M are pin-to-pin
compatible
APPLICATION EXAMPLES
• Navigation Systems• Assets tracking• Fleet management• Geographic Information Systems• Precise Time Reference
LINK
Product page:
http://wm.sim.com/producten.
aspx?id=1069
69MIP Edition 1/2014
ANAL
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SIGN
ALS
DSP
& M
PUM
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PER
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MEM
ORY
OPTO
ELEC
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POW
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. &
MOD
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.
100-up price
BLUENRGCSP
€ 1.25
100-up price
BLUENRGQTR
€ 1.30
BlueNRGBluetooth® Low Energy Wireless Network Processor
The BlueNRG is a single-mode
Bluetooth low energy master/slave
network processor, compliant with
the Bluetooth specification v4.0. It
integrates a 2.4 GHz RF transceiver and
a powerful Cortex-M0 microcontroller,
on which a complete power-optimized
stack for Bluetooth single mode protocol
runs, providing:• Full master and slave role support• GAP: central, peripheral, observer or
broadcaster roles• ATT/GATT: client and server• SM: privacy, authentication and
authorization• L2CAP• Link layer: AES-128 encryption and
decryption
An on-chip Flash memory allows
on-field Bluetooth low energy stack
upgrade. The BlueNRG is equipped
with Bluetooth low energy profiles
in C source code. The device allows
applications to meet of the tight
advisable peak current requirements
imposed with the use of standard coin
cell batteries. If the high efficiency
embedded DC-DC step-down converter
is used, the maximum input current is
only 15 mA at the highest output power
(+8 dBm). Even if the DC-DC converter
is not used, the maximum input current
is only 29 mA at the highest output
power, still preserving battery life.
Ultra low-power sleep modes and very
short transition time between operating
modes result in very low average current
consumption during real operating
conditions, providing very long battery
life. Two different external matching
networks are suggested: standard
mode (TX output power up to +5 dBm)
and high power mode (TX output
power up to +8 dBm). The external
host application processor, where the
application resides, is interfaced with
the BlueNRG through an application
controller interface protocol which is
based on a standard SPI interface.
KEY FEATURES
• Bluetooth low energy profiles provided
separately• Operating supply voltage: 2.0...3.6 V• 8.2 mA maximum TX current
(0 dBm, 3.0 V)• Down to 1.7 μA current consumption
with active BLE stack• Integrated linear regulator and DC-DC
step-down converter• Up to +8 dBm available output power
(at antenna connector)• Excellent RF link budget (up to 96 dB)• Accurate RSSI to allow power control• Full link controller and host security• AES security co-processor• 16 or 32 MHz crystal oscillator• 12 MHz ring oscillator• 32 kHz crystal oscillator• 32 kHz ring oscillator• Battery voltage monitor and
temperature sensor• Compliant with: ETSI EN 300 328, EN
300 440, FCC CFR47 Part 15, ARIB
STD-T66• Available in QFN32 (5 x 5 mm2)
and WLCSP34 (2.66 x 2.56 mm2)
packages• Operating temperature range:
-40...+85 °C
APPLICATION EXAMPLES
• Fitness & Healthcare• Remote control• Home Automation• Assisted living
SMPSFILT2SMPSFILT1
RF0RF1
SXTAL1
FXTAL1
SXTAL2
FXTAL2
VBAT1VBAT2
VDD1V2VDD1V8RESETN
SPI_IRQ
GPIO1 GNDGPIO2 GNDGPIO3 GNDGPIO4 GNDGPIO5 GND
Application Controller Interface
Clock Management
RF Transceiver
Power Management
SPI_MOSISPI_MISOSPI_CLKSPI_CS
Battery
BluetoothLow EnergyProcessor
& Memories
TemperatureSensor
Monitor
AESco-processor
16/32 MHzCrystal osc.
12 MHzRC osc.
32 kHzCrystal osc.
32 kHzRC osc.
Testmode
Operativemode
Test pin GND
Test mode
JTAG
GPIO
UART
VBAT3
NOSMPS
70 MIP Edition 1/2014
100-up price
SPWF01SA.11
€ 15.-
100-up price
SPWF01SC.11
€ 15.-
SPWF01SA/SCSerial-to-WLAN 802.11 b/g/n Intelligent Modules
The SPWF01SA and the SPWF01SC
intelligent Wi-Fi modules represent a
plug and play and standalone 802.11
b/g/n solution for an easy integration
of wireless internet connectivity
features into existing or new products.
Configured around a single-chip 802.11
transceiver with integrated PA and an
STM32 32-bit microcontroller with
extensive GPIO suite, the modules also
incorporate timing clocks and voltage
regulators.
The module is available either configured
with an embedded micro 2.45 GHz ISM
band antenna (SPWF01SA), or with an
U.FL connector for external antenna
connection (SPWF01SC). With low
power consumption and small form
factor, the modules are ideal for fixed
and mobile wireless applications, as
well as challenging battery operated
applications.
The SPWF01SA.11 and SPWF01SC.11
orderable parts are released with
an integrated fully featured TCP/IP
protocol stack with added web server
and additional application services
capabilities. The firmware package also
includes an AT command layer interface
for a friendly access to the stack
functionalities via the UART serial port.
KEY FEATURES
• 2.4 GHz IEEE 802.11 b/g/n transceiver• STM32 ARM Cortex-M3• 1.5 MB Flash memory• 64 KB RAM memory• 32 kHz crystal to support low power
modes• 16 GPIOs, JTAG and serial port
(UART, SPI, I2C) interfaces available• Small form factor: 26.92 x 15.24 x
2.35 mm3
• Up to +18 dBm output power• Single voltage supply (3.3 V typ.)• Multiple antenna options available:
integrated antenna or integrated U.FL
connector• Industrial operating temperature range• FCC/CE/IC certified• RoHS compliant• Surface mount PCB module
APPLICATION EXAMPLES
• Smart appliances• Industrial control and data acquisition• Home automation and security
systems• Wireless sensors• Cable replacement• Medical equipments• Machine to machine
3.3 V
Supply
STM32F103
CW1100b/g/n
Integrated PA
32 KHz 38 KHz
Flash 1 MBSPWF01Sx
Filt
er3 UART/
SPI/I2C
GPIOs
JTAG
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The Quintessence – The Knowledge Magazine from EBV Elektronik
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