Mounting bracket LK-G157 Keyence
Mounting bracket LK-G157 Keyence

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Keyence LK-G157

Manufacturer

Keyence

Country

Japan

Name

LK-G157

Type

Mounting bracket

Description

LASER

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On request

Price: On request

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Specifications LK-G157

Keyence High-Speed High-Accuracy CCD Laser Displacement Sensor

Features LK-G157

Sensor Head: Long Distance, Wide beam
Model LK-G157
Reference distance Diffused reflection: 150 mm, Specular reflection: 147.5 mm
Measuring range Diffused reflection: ±40 mm, Specular reflection: ±39 mm*1*2
Light source Type Red semiconductor laser
Wavelength 650 nm (visible light)
Laser Class Class II (FDA CDRH 21CFR Part 1040.10), Class 2 (IEC60825-1)
Output 0.95 mW
Spot diameter (at reference distance) Approx. 120 x 1,700 µm
Linearity ±0.05 % of F.S. (F.S.= ±40 mm)*3
Repeatability 0.5 µm*4*5
Sampling frequency 20 / 50 / 100 / 200 / 500 / 1000 µs (Selectable from 6 levels)
LED display Near the centre of the measurement: Green lights Within the measurement area: Orange lights Outside the measurement area: Orange flashing
Temperature characteristics 0.01 % of F.S./°C (F.S.= ±40 mm)
Environmental resistance Enclosure rating IP67 (IEC60529)
Ambient light Incandescent lamp or Fluorescent lamp: 5,000 lux max.
Ambient temperature 0 to +50 °C
Relative humidity 35 to 85 % RH (No condensation)
Vibration resistance 10 to 55 Hz, Double amplitude 1.5 mm, 2 hours in each of the X, Y, and Z directions
Material Aluminium die-cast
Weight Approx. 290 g (including the cable)
*1 The range is obtained by measuring KEYENCE's standard target (ceramic). *2 When the sampling rate is 20 µs, the range becomes -22 (NEAR side) to -40 mm (NEAR side) for diffuse reflection, and -22 (NEAR side) to -39 mm (NEAR side) for specular reflection. *3 The range is obtained by measuring KEYENCE's standard target (ceramic) with the Standard mode. *4 Consult your nearest KEYENCE representative for the Class IIIa type with increased repeatability. *5 The range is obtained by measuring KEYENCE's standard (SUS) with 4,096 times of averaging at the reference distance.