IME Inductive Proximity Sensors - Sensors Incorporated Product Info.pdf · 2009-09 SICK | IME...
Transcript of IME Inductive Proximity Sensors - Sensors Incorporated Product Info.pdf · 2009-09 SICK | IME...
Engineered to ensure unmatched performance
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IME Inductive Proximity Sensors
2 I M E I N D U C T I v E P R Ox I M I T y S E N S O R S | S I C K 2 0 0 9 - 0 9
IME inductive sensors are used to detect metal targets in a variety of applications in the packaging, assembly, metal forming, automotive, and semiconductor industries. IME sensors provide more accuracy, better repeatability and a tighter hysteresis than common inductive sensors in the market. These improvements are due to ASIC (application-specific integrated circuit) technology, which eliminates production tolerances. The IME’s reduced sensitivity tolerance allows users to increase the distance between the sensor and the target, reducing the risk of mechanical damage. IME sensors are also more immune to high Radio Frequency Interference (RFI) signals, voltage and current spikes (burst, transients), and electrostatic discharge (ESD). In addition to their superior electrical characteristics, IME sensors offer exceptional mechanical performance. The robust IME sensor housings offer a higher tightening torque rating (up to 100 Nm) than the standard market sensors, which provides more rigid installation with locking nuts. Plus, IME sensors offer better shock and vibration resistance due to hot melt filling material, increasing the sensors’ life.
• Minimized production tolerances ensure higher accuracy and repeatability
• Superior tightening torque enables more rigid installation
• Highest resistance to shock and vibration due to a special filling material
• Fully encapsulated housing provides better resistance to humidity
• Higher immunity to electrical disturbances, including ESD and RFI, which reduces downtime
B E N E F I T S
The optimum solution for non-contact detection of metal targets
S I C K | I M E I N D U C T I v E P R Ox I M I T y S E N S O R S 32 0 0 9 - 0 9
I M E 12 — 04 B P S Z W 2 K
Inductive Short housing
Metric threaded barrel Cable length, 2 m
Economical Efficient Engineered
Cable material w = PUC u = PUR
Barrel diameterHousing material z = nickel plated brass
S = NO, O = NC
P = PNP, N = NPN
B = Shielded, N = Unshielded
Nominal sensing range
T E C h N I C A L I N F O R M AT I O N
• Threaded barrel housing: 8, 12, 18 and 30 mm
• Enclosure rating: IP 67• Electrical configuration: DC-3 wire
available as PNP (sourcing), NPN (sinking) with Normally Open (NO) and Normally Closed (NC) Output
• Housing material: Nickel-plated brass, PA6 cap
• Short circuit protection• Reverse polarity protection• Power up pulse suppression• Temperature rating: -25…75° C
(-13…168° F)• Continuous current (la): 200 mA• EMC: According to NE 60947-5-2
Housing
mounting
nominal Sensing range
Housing Length (mm)tightening
torque (nm)
Switching frequency
(Hz)thread
diameter x pitch (mm)
Single (1X)
double (2X)
Standard Short
cable connector cable connector
imE08 M8 x 1Shielded 1.5 2
52 50 43 415 4,000
Unshielded 2.5 4 5 4,000
imE12 M12 x 1Shielded 2 4
63 65 46 4412 2,000
Unshielded 4 8 12 2,000
imE18 M18 x 1Shielded 5 8
67 69 48 5040 1,000
Unshielded 8 12 40 1,000
imE30 M30 x 1.5Shielded 10 15
70 71 51 52100 500
Unshielded 15 20 100 500
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e Worldwide presence with subsidiaries in the following countries:
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Please find detailed addresses and additional representatives and agencies in all major industrial nations at www.sick.com
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