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Laser Displacement Sensors from KEYENCE

EX-V Series

Inductive Displacement Sensor
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Specifications

Best in Class Performance with the Specifications to Back it Up.



EX-V Sensor Head


EX-V Sensor Head Shapes
EX-V Digital Inductive Displacement Sensor
Type Cylindrical Threaded Cylindrical, threaded Thin profile
ø5.4 x 18 mm
ø0.21" x 0.71"
M10 x 18 mm
0.71"
M16 x 20 mm
0.79"
ø22 x 35 mm
ø0.87" x 1.38"
14x30x4.8 mm
0.55" x 1.18" x 0.19"
Model Sensor head EX-305V EX-110V EX-416V EX-422V EX-614V
Controller EX-V01 EX-V02 EX-V05 EX-V10 EX-V64
Measurement range 0 to 1 mm 0.04" 0 to 2 mm 0.08" 0 to 5 mm 0.20" 0 to 10 mm 0.39" 0 to 4 mm 0.16"
Digital output Linearity ± 0.3% of F.S
Resolution 0.4 µm 0.02Mil 0.4 µm 0.02Mil 1 µm 0.04Mil 2 µm 0.08Mil 1 µm 0.04Mil
Sampling rate 40000 samples max./sec. (1)
Display rate 20/sec.
Range-over alarm ±FFFF is displayed
Control input NPN open-collector or non-voltage contact(Timing input,Reset input,Auto-zero input,
Comparator output disable input,Synchronous input,External setting input)
Control output Tolerance setting Upper/lower 2-level setting x 4 patterns (selectable)
Signal NPN open-collector (HIGH, GO and LOW): 100 mA max. (40 V max.)
Response time 0.075 ms (at maximum speed)
Off-delay time 60 ms
Strobe output NPN open-collector: 100 mA max. (40 V max.), Residual voltage: 1 V max. (N.O.)
Alarm output NPN open-collector: 100 mA max. (40 V max.), Residual voltage: 1 V max. (N.C.)
Analog Output voltage ±5V
Voltage Impedance 100 Ω
Output Response time 0.075 ms (at maximum speed)
Power supply 24 VDC±10%, Ripple (P-P): 10% max.
Temperature fluctuation 0.07% of F.S./°C (2)
Ambient Sensor head -10 to +60°C (14 to 140°F), No condensation
temperature Controller 0 to 50°C (32 to 122°F), No condensation
Relative humidity 35 to 85%, No condensation
Vibration resistance 10 to 55 Hz, 1.5 mm double amplitude in X, Y and Z directions, 2 hours respectively
1. When the digital filter function is used, the sampling rate is 20000 sampling/sec. Note: The ripple of the analog output may be 1 mV or more due to common mode noise when observed with an oscilloscope or a high-speed A/D conversion board.
2. When the distance between the sensor head and the target is within 50% of the measuring range.

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