DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

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1 dc1989aaf DEMO MANUAL DC1989A-A DESCRIPTION LTM4676EY Dual 13A or Single 26A µModule Regulator with Digital Power System Management Demonstration circuit 1989A-A is a high efficiency, high density, µModule regulator with 4.5V to 16V input range. The output voltage is adjustable from 0.5V to 4V, and it can supply 50A maximum load current. The demo board has two LTM ® 4676 µModule regulators, and the LTM4676 is a dual 13A or single 26A step-down regulator with PMBus power system management. Please see LTM4676 data sheet for more detailed information DC1989A-A powers up to default settings and produces power based on configuration resistors without the need for any serial bus communication. This allows easy evalu- ation of the DC/DC converter. To fully explore the extensive power system management features of the part, download the GUI software LTpowerPlay™ onto your PC and use LTC’s I 2 C/SMBus/PMBus dongle DC1613A to connect to L, LT, LTC, LTM, Linear Technology, the Linear logo, Burst Mode, Dust Networks and Dust are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. the board. LTpowerPlay allows the user to reconfigure the part on the fly and store the configuration in EEPROM, view telemetry of voltage, current, temperature and fault status GUI Download The software can be downloaded from: http://www.linear.com/ltpowerplay For more details and instructions of LTpowerPlay, please refer to LTpowerPlay GUI for LTM4676 Quick Start Guide. Design files for this circuit board are available at http://www.linear.com/demo/DC1989A-A Figure 1. LTM4676/DC1989A-A Demo Circuit

Transcript of DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

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DEMO MANUAL DC1989A-A

Description

LTM4676EY Dual 13A or Single 26A µModule Regulator

with Digital Power System Management

Demonstration circuit 1989A-A is a high efficiency, high density, µModule regulator with 4.5V to 16V input range. The output voltage is adjustable from 0.5V to 4V, and it can supply 50A maximum load current. The demo board has two LTM®4676 µModule regulators, and the LTM4676 is a dual 13A or single 26A step-down regulator with PMBus power system management. Please see LTM4676 data sheet for more detailed information

DC1989A-A powers up to default settings and produces power based on configuration resistors without the need for any serial bus communication. This allows easy evalu- ation of the DC/DC converter. To fully explore the extensive power system management features of the part, download the GUI software LTpowerPlay™ onto your PC and use LTC’s I2C/SMBus/PMBus dongle DC1613A to connect to

L, LT, LTC, LTM, Linear Technology, the Linear logo, Burst Mode, Dust Networks and Dust are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners.

the board. LTpowerPlay allows the user to reconfigure the part on the fly and store the configuration in EEPROM, view telemetry of voltage, current, temperature and fault status

GUI Download

The software can be downloaded from:

http://www.linear.com/ltpowerplay

For more details and instructions of LTpowerPlay, please refer to LTpowerPlay GUI for LTM4676 Quick Start Guide.

Design files for this circuit board are available at http://www.linear.com/demo/DC1989A-A

Figure 1. LTM4676/DC1989A-A Demo Circuit

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Quick start proceDureDemonstration circuit 1989A-A is easy to set up to evalu-ate the performance of the LTM4676EY. Refer to Figure 2 for the proper measurement equipment setup and follow the procedure below.

1. With power off, connect the input power supply to VIN (4.5V to 16V) and GND (input return).

2. Connect the output load between VOUT0 and GND (Initial load: no load).

3. Connect the DVMs to the input and outputs. Set default switch position: SW1: ON; SW2: ON.

4. Turn on the input power supply and check for the proper output voltages. VOUT0 should be 1V ±1%.

5. Once the proper output voltages are established, ad-just the loads within the operating range and observe the output voltage regulation, ripple voltage and other parameters.

6. Connect the dongle and control the output voltages from the GUI. See “LTpowerPlay GUI for the LTM4676 Quick Start Guide” for details.

Note: When measuring the output or input voltage ripple, do not use the long ground lead on the oscilloscope probe. See Figure 3 for the proper scope probe technique. Short, stiff leads need to be soldered to the (+) and (–) terminals of an output capacitor. The probe’s ground ring needs to touch the (–) lead and the probe tip needs to touch the (+) lead.

Connecting a PC to DC1989A-A

You can use a PC to reconfigure the power management features of the LTM4676 such as: nominal VOUT, margin set points, OV/UV limits, temperature fault limits, sequenc-ing parameters, the fault log, fault responses, GPIOs and other functionality. The DC1613A dongle may be plugged when VIN is present.

performance summary Specifications are at TA = 25°C

PARAMETER CONDITION VALUE

Input Voltage Range 4.5V to 16V

Output Voltage, VOUT0 VIN = 4.5 to 16V, IOUT0 = 0A to 50A 0.5 to 4V, Default: 1V

Maximum Output Current, IOUT0 VIN = 4.5 to 16V, VOUT = 0.5V to 4V 50A

Typical Efficiency VIN = 12V, VOUT = 1V, IOUT = 50A 80.4%

Default Switching Frequency 350kHz

Table 1. LTM4676 Demo Cards for Up to 130A Point-of-Load Regulation

MAXIMUM OUTPUT CURRENT NUMBER OF OUTPUT VOLTAGESNUMBER OF LTM4676 µMODULE

REGULATORS ON THE BOARD DEMO BOARD NUMBER

13A, 13A 2 1 DC1811A

26A 1 1 DC2087A

50A 1 2 DC1989A-A

75A 1 3 DC1989A-B

100A 1 4 DC1989A-C

100A 1 1 (+ 3x LTM4620A) DC2106A-A

130A 1 1 (+ 3x LTM4630) DC2106A-B

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Quick start proceDure

Figure 2. Proper Measurement Equipment Setup

Figure 3. Measuring Output Voltage Ripple

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Quick start proceDure

Figure 4. Demo Setup with PC

Figure 5. Efficiency vs Load Current at VIN = 5V and VIN = 12V

Efficiency vs Load Current100

90

70

80

60

50

LOAD CURRENT (A)

EFFI

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0 10 40 5030205 15 453525

VIN = 5VVIN = 12V

VOUT0 = 1V

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Quick start proceDure

Figure 6. Output Voltage VOUT0 vs Load Current (VOUT0 RANGE = 0)

Figure 9. Current Sharing at VIN = 12V, VOUT0 = 1V (Based on the Current Readback)

Figure 7. Output Voltage Ripple at VIN = 12V, VOUT0 = 1V, IOUT0 = 50A

Figure 10. Total Current Readback vs Load Current at VIN = 12V, VOUT0 = 1V

Figure 8. Thermal Performance at VIN = 12V, VOUT0 = 1V, IOUT0 = 50A, TA = 23.8°C, Air Flow 200LFM

VOUT0 (20MHz BW) [50mV/DIV]

25A TO 50A LOAD STEP

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Quick start proceDure

LTpowerPlay Software GUI

LTpowerPlay is a powerful Windows based development environment that supports Linear Technology power sys-tem management ICs, including the LTM4676, LTC3880, LTC3883, LTC2974 and LTC2978. The software supports a variety of different tasks. You can use LTpowerPlay to evaluate Linear Technology ICs by connecting to a demo board system. LTpowerPlay can also be used in an offline mode (with no hardware present) in order to build a mul-tichip configuration file that can be saved and reloaded at a later time. LTpowerPlay provides unprecedented diagnostic and debug features. It becomes a valuable diagnostic tool during board bring-up to program or tweak the power management scheme in a system, or to diagnose power issues when bringing up rails. LTpowerPlay utilizes the DC1613A USB-to-SMBus controller to communicate with one of many potential targets, including the LTM4676, the

LTC3880 and the LTC3883’s demo system, or a customer board. The software also provides an automatic update feature to keep the software current with the latest set of device drivers and documentation. The LTpowerPlay software can be downloaded from:

http://linear.com/ltpowerplay

To access technical support documents for LTC Digital Power Products visit Help. View online help on the LTpowerPlay menu.

LTpowerPlay QUICK START PROCEDURE

The following procedure describes how to use LTpowerPlay to monitor and change the settings of LTM4676.

1. Download and install the LTPowerPlay GUI:

http://linear.com/ltpowerplay

Figure 11. LTpowerPlay Main Interface

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Quick start proceDure2. Launch the LTpowerPlay GUI.

a. The GUI should automatically identify the DC1989A-A. The system tree on the left hand side should look like this:

b. A green message box shows for a few seconds in the lower left hand corner, confirming that LTM4676 is communicating:

c. In the Toolbar, click the “R” (RAM to PC) icon to read the RAM from the LTM4676. This reads the configuration from the RAM of LTM4676 and loads it into the GUI.

d. If you want to change the output voltage to a different value, like 1.5V. In the Config tab, type in 1.5 in the VOUT_COMMAND box, like this:

Then, click the “W” (PC to RAM) icon to write these register values to the LTM4676. After finishing this step, you will see the output voltage will change to 1.5V.

If the write is successful, you will see the following message:

e. You can save the changes into the NVM. In the tool bar, click “RAM to NVM” button, as following

f. Save the demo board configuration to a (*.proj) file. Click the Save icon and save the file. Name it whatever you want.

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parts ListITEM QTY REFERENCE PART DESCRIPTION MANUFACTURER/PART NUMBER

Required Circuit Components

1 10 CIN1, CIN2, CIN4-CIN11 CAP., X5R, 10µF, 35V, 10%, 1210 AVX, 1210DD106KAT2A

2 1 CIN3 CAP., 150µF, 35V, ALUMINUM ELECTR., SUN ELECT., 35CE150AX

3 8 COUT1, COUT6, COUT7, COUT9, COUT12, COUT17, COUT18, COUT20

CAP., X5R, 100µF, 6.3V, 20% 1210 AVX, 12106D107KAT2A

4 1 C3 CAP., X5R, 220pF, 16V, 10%, 0603 AVX, 0603YD221KAT2A

5 6 COUT4, COUT5, COUT8, COUT15, COUT16, COUT19 CAP., 330µF, 6.3V, POSCAP, D3L SANYO, 6TPF330M9L

6 1 C7 CAP., X7R, 470pF, 16V, 10%, 0603 AVX, 0603YC471KAT2A

7 1 C4 CAP., X7R, 3.3nF, 16V, 10%, 0603 (3300pF) AVX, 0603YC332KAT2A

8 2 C5, C12 CAP., X5R, 10nF, 16V, 10%, 0603 (0.01µF) AVX, 0603YD103KAT2A

9 1 C21 CAP., X5R, 100nF, 16V, 10%, 0603 (0.1µF) AVX, 0603YD104KAT2A

10 1 C70 CAP., X5R, 1µF, 25V, 10%, 0805 AVX, 08053D105KAT2A

11 2 C65, C68 CAP., X5R, 1µF, 25V, 10%, 1206 AVX, 12063D105KAT2A

12 1 C67 CAP., X7R, 0.1µF, 25V, 10%, 1206 AVX, 12063C104KAT2A

13 1 C64 CAP., X5R, 4.7µF, 25V, 10%, 0603 MURATA, GRM188R61E475KE11D

14 1 C66 CAP., X5R, 0.22µF, 25V, 10%, 0805 AVX, 08053D224KAT2A

15 1 C69 CAP., X7R, 150pF, 25V, 10%, 0603 AVX, 06033C151KAT2A

16 2 D1, D2 LED GREEN S-GW TYPE SMD PANASONIC LN1371SGTRP

17 1 D3 LED RED S-TYPE GULL WING SMD PANASONIC LN1271RTR

18 1 J7 CONN HEADER 12POS 2MM STR DL PCB FCI 98414-G06-12ULF

19 1 J8 PIN HEADER 20 DUAL ROW RA (M) Mill Max 802-40-020-20-0001

20 1 J9 CONN SOCKET 20 DUAL ROW RA (F) Mill Max 803-43-020-20-001

21 2 J10, J11 CONN, BNC, 5 PINS CONNEX, 112404

22 1 Q1 MOSFET P-CH 20V 0.58A SOT-23 VISHAY TP0101K-T1-E3

23 2 Q2, Q3 MOSFET N-CH 60V 115mA SOT-23 FAIRCHILD 2N7002K

24 2 Q11, Q12 N-CHANNEL 30-V MOSFET, TO-252 VISHAY, SUD50N03-09P-E3

25 1 R20 RES., CHIP, 22.6k, 1%, 0603 VISHAY CRCW060322K6FKEA

26 25 R2, R4, R18, R25, R26, R120-R122, R30, R32, R47, R48, R50, R56, R58, R60, R72, R74, R85, R86, R89, R90, R92, R104, R119

RES., CHIP, 0Ω, 1%, 0603 VISHAY CRCW06030000Z0EA

27 4 R49, R51, R53, R54 RES., CHIP, 0Ω, 1%, 2010 VISHAY CRCW20100000Z0EA

28 16 R6, R7, R8, R9, R10, R11, R12, R15, R35, R36, R39, R64, R78, R97, R98, R116

RES., CHIP, 10k, 1%, 0603 VISHAY CRCW060310K0FKEA

29 1 R27 RES., CHIP, 51k, 1%, 0603 VISHAY CRCW060351K0FKEA

30 1 R14 RES., CHIP, 3.4k, 1%, 0603 VISHAY CRCW06033K40FKEA

31 2 R16, R41 RES., CHIP, 10Ω, 1%, 0603 VISHAY CRCW060310R0FKEA

32 1 R112 RES., CHIP, 100Ω, 1%, 0603 VISHAY CRCW0603100RFKEA

33 1 R113 RES., CHIP, 1.4k, 1%, 0603 VISHAY CRCW06031K40FKEA

34 1 R19 RES., CHIP, 787Ω, 1%, 0603 VISHAY CRCW0603787RFKEA

35 1 R40 RES., CHIP, 1.65k, 1%, 0603 VISHAY CRCW06031K65FKEA

36 1 R42 RES., CHIP, 1.65k, 1%, 0603 VISHAY CRCW06031K65FKEA

37 1 R80 RES., CHIP, 2.43k, 1%, 0603 VISHAY CRCW06032K43FKEA

38 2 R95, R96 RES., CHIP, 4.99k, 1%, 0603 VISHAY CRCW06034K99FKEA

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39 2 R99, R100 RES., CHIP, 200Ω, 1%, 0603 VISHAY CRCW0603200RFKEA

40 1 R101 RES., CHIP, 127Ω, 1%, 0603 VISHAY CRCW0603127RFKEA

41 1 R123 RES., CHIP, 1M, 1%, 0603 VISHAY CRCW06031M00FKEA

42 1 R105 RES., CHIP, 681k, 1%, 0603 VISHAY CRCW0603681KFKEA

43 1 R106 RES., CHIP, 3.3Ω, 1%, 0603 VISHAY CRCW06033R30FKEA

44 1 R107 RES., CHIP, 82.5Ω, 1%, 0603 VISHAY CRCW060382R5FKEA

45 2 R108, R118 RES., CHIP, 0.01Ω, 1%, 2010 VISHAY, WSL2010R0100FEA

46 1 R109 RES., CHIP, 100k, 1%, 0603 VISHAY CRCW0603100KFKEA

47 1 R110 TRIMMING POTENTIOMETER, 5k BOURNS, 3386P-1-502LF

48 2 R111, R115 RES., CHIP, 20k, 1%, 0603 VISHAY CRCW060320K0FKEA

49 1 R114 RES., CHIP, 154k, 1%, 0603 VISHAY CRCW0603154KFKEA

50 1 R117 RES., CHIP, 2, 1%, 0603 VISHAY CRCW06032R00FKEA

51 2 SW1, SW2 CONNECTOR, SUB MINIATURE SLIDE SWITCHES

C&K., JS202011CQN

52 2 U1, U2 IC, LTM4676EY LINEAR TECH. LTM4676EY

53 1 U5 IC, 24LC025T-E/OT SOT-23 6-LEAD MICROCHIP, 24LC025T-E/OT

54 1 U6 IC., LT1129CS8-5, S8 LINEAR TECH. LT1129CS8-5

55 1 U7 IC., LTC6992-1, S6-TSOT LINEAR TECH. LTC6992CS6-1

56 1 U8 IC., LT1803IS5, S5-TSOT LINEAR TECH. LT1803IS5

Additional Demo Board Circuit Components

1 0 CIN12-CIN15-CIN19 (OPT) CAP., OPTIONAL

2 0 C1, COUT2, C2, COUT3 (OPT) C6, C8, C9, COUT10, C10, COUT11, C11, COUT13, C13, C14, C15, C16, C17, C18, C19, C20, COUT4, COUT14, COUT24, COUT23, COUT26, COUT21, COUT22, COUT25, COUT27, COUT28, COUT29, COUT30, COUT31, COUT32, COUT35, COUT33, COUT36, COUT37, COUT38, COUT34

CAP., OPTIONAL

3 0 R1, R3, R5, R17, R34, R31, R33, R29, R38, R52, R55, R57, R59, R61, R28, R63, R71, R73, R75, R77, R88, R91, R93, R94, R102, R103, R13, R37, R62, R76, R79, R21, R22, R23, R24, R43, R44, R45, R46, R67, R66, R65, R68, R69, R68, R69, R70, R81, R82, R83, R84, R87

RES., OPTIONAL

4 0 U3 , U4 (OPT) OPTIONAL

Hardware: For Demo Board Only

1 23 E2-E24 TESTPOINT, TURRET, 0.062" MILL-MAX, 2308-2-00-80-00-00-07-0

2 2 JP1, JP2 HEADER, 1X3 PIN 0.079" SINGLE ROW SULLIN, NRPN031PAEN-RC

3 2 XJP1, XJP2 SHUNT, 0.079" CENTER SAMTEC, 2SN-KB-G

4 6 J1, J2, J3, J4, J5, J6 STUD, TESTPIN PEM KFH-032-10

5 12 J1, J2, J3, J4, J5, J6 (x2) NUT, BRASS 10-32 ANY #10-32M/S

6 6 J1, J2, J3, J4, J5, J6 RING, LUG #10 KEYSTONE #10

7 6 J1, J2, J3, J4, J5, J6 WASHER, TIN PLATED BRASS 10EXT

8 4 (STAND-OFF) STAND-OFF, NYLON 0.50" TALL KEYSTONE, 8833(SNAP ON)

9 1 FAB, PRINTED CIRCUIT BOARD DEMO CIRCUIT 1989A

parts List

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Page 11: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

11dc1989aaf

DEMO MANUAL DC1989A-A

schematic Diagram5 5

4 4

3 3

2 2

1 1

DD

CC

BB

AA

OPTIONAL JUMPER FOR SINGLE

OUTPUT CONFIGURATION

ON

OFF

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R45

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R27

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GNDB4

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AS

EL

G4

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CFG

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5

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CFG

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5

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GNDC7

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AD

6S

CL

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CFG

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SY

NC

E7

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SH

AR

E_C

LKH

7

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MP

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GNDJ4

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VO

SN

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D9

VO

SN

S0-

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INTV

CC

F9

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CC

G9

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GNDL4

GNDL5

GNDK4

SW

0B

10

DNCE11

VO

RB

0+D

10

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RB

0-E

10

GNDL6

GNDK7

GNDK8

GNDK9

DNCC10

SW1L10

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VIN

H0

B12

VIN

H0

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VIN

H0

A12

VIN

H0

A11

DNCK10

VIN

LF1

2

GNDM6

DNCH11

VINH1H12

VINH1J11

VINH1J12

VINH1K11

VIN

H0

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H0

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VIN

H0

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VIN

H0

C12

VIN

H0

C11

VIN

LF1

1

GNDM7

VINH1K12

VINH1L11

VINH1L12

VINH1M11

VINH1M12

SGNDG7

SGNDG8

GNDD7

CIN

910

uFC

IN9

10uF

P11

P11

Page 12: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

12dc1989aaf

DEMO MANUAL DC1989A-A

schematic Diagram5 5

4 4

3 3

2 2

1 1

DD

CC

BB

AA

1210

0.035 VIA

TESTPOINTS

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PT)

R58

0R58

0

Page 13: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

13dc1989aaf

DEMO MANUAL DC1989A-A

schematic Diagram5 5

4 4

3 3

2 2

1 1

DD

CC

BB

AA

1210

0.035 VIA

TESTPOINTS

1210

1210

1210

1210

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R73

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R75

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GNDA6

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VOUT1L3

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VOUT1M2

VOUT1M3

GNDA9

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GNDB4

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AS

EL

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GNDB7

GNDB8

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5

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7

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VINH1J11

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VINH1L11

VINH1L12

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VINH1M12

SGNDG7

SGNDG8

GNDD7

R71

OPTR71

OPT

C18

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C18

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PTC

IN16

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P21

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R82

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P20

P20

R77

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PTC

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R76

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R76

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P23

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R74

0R

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R84

(OPT

)

R84

(OPT

)

CO

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1O

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C20

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R79

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R83

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)

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)

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PT

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2O

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T32

OPT

R12

20

R12

20

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OPTC17

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R80

(OPT

)R

80(O

PT)

Page 14: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

14dc1989aaf

DEMO MANUAL DC1989A-A

schematic Diagram5 5

4 4

3 3

2 2

1 1

DD

CC

BB

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23

1

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AUXP E2

0

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R93

OPT

R93

OPT

R90 0R90 0

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R94

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R10

020

0R

100

200

R88

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R88

OPT

E11

GPI

O1B

E11

GPI

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R97

10K

R97

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E18

GPI

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D3

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R86

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R85

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E21

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RU

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E19

RU

N0

E19

RU

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R98

10K

R98

10K

R10

112

7R

101

127

R91

OPT

R91

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J9

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)

J9

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13

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4.99

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23

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1

Page 15: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

15dc1989aaf

DEMO MANUAL DC1989A-A

Information furnished by Linear Technology Corporation is believed to be accurate and reliable. However, no responsibility is assumed for its use. Linear Technology Corporation makes no representa-tion that the interconnection of its circuits as described herein will not infringe on existing patent rights.

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Page 16: DC1989A-A - LTM4676EY Dual 13A or Single 26A µModule ...

16dc1989aaf

DEMO MANUAL DC1989A-A

Linear Technology Corporation1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408) 432-1900 ● FAX: (408) 434-0507 ● www.linear.com LINEAR TECHNOLOGY CORPORATION 2013

LT 0813 • PRINTED IN USA

DEMONSTRATION BOARD IMPORTANT NOTICE

Linear Technology Corporation (LTC) provides the enclosed product(s) under the following AS IS conditions:

This demonstration board (DEMO BOARD) kit being sold or provided by Linear Technology is intended for use for ENGINEERING DEVELOPMENT OR EVALUATION PURPOSES ONLY and is not provided by LTC for commercial use. As such, the DEMO BOARD herein may not be complete in terms of required design-, marketing-, and/or manufacturing-related protective considerations, including but not limited to product safety measures typically found in finished commercial goods. As a prototype, this product does not fall within the scope of the European Union directive on electromagnetic compatibility and therefore may or may not meet the technical requirements of the directive, or other regulations.

If this evaluation kit does not meet the specifications recited in the DEMO BOARD manual the kit may be returned within 30 days from the date of delivery for a full refund. THE FOREGOING WARRANTY IS THE EXCLUSIVE WARRANTY MADE BY THE SELLER TO BUYER AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED, OR STATUTORY, INCLUDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE. EXCEPT TO THE EXTENT OF THIS INDEMNITY, NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES.

The user assumes all responsibility and liability for proper and safe handling of the goods. Further, the user releases LTC from all claims arising from the handling or use of the goods. Due to the open construction of the product, it is the user’s responsibility to take any and all appropriate precautions with regard to electrostatic discharge. Also be aware that the products herein may not be regulatory compliant or agency certified (FCC, UL, CE, etc.).

No License is granted under any patent right or other intellectual property whatsoever. LTC assumes no liability for applications assistance, customer product design, software performance, or infringement of patents or any other intellectual property rights of any kind.

LTC currently services a variety of customers for products around the world, and therefore this transaction is not exclusive.

Please read the DEMO BOARD manual prior to handling the product. Persons handling this product must have electronics training and observe good laboratory practice standards. Common sense is encouraged.

This notice contains important safety information about temperatures and voltages. For further safety concerns, please contact a LTC applica-tion engineer.

Mailing Address:

Linear Technology

1630 McCarthy Blvd.

Milpitas, CA 95035

Copyright © 2004, Linear Technology Corporation