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SICK WT100L-F2141 Overview
Photoelectric proximtiy switch WT100L-F2141 energetic, Laser redlight, PNP, M8-3pin, incl. mounting bracket
SICK WT100L-F2141 Description
- Standardized miniature housing with integrated M3 threaded mounting holes
- Laser emitter LED, class 1
- Energetic proximity sensor
- Detection of the smallest of objects
- High optical operating reserve
- Simple, standardized mounting
Your benefits
| Features | |
| Dimensions (W x H x D):: | 11 mm x 31 mm x 20 mm |
| Sensing range max.: | 0 mm ... 450 mm 1) |
| Sensing range: | 0 mm ... 400 mm |
| Housing desig (light emission): | Slim |
| Light source: | Laser 2) |
| Type of light: | visible red light |
| Wave length: | 650 nm |
| Adjustment: | adjustable |
| Sensitivity adjustment: | Adjustable Potentiometer, 270 |
| Laser class: | 1 |
| Sensor/detection principle: | Photoelectric proximity sensor, energetic |
| Light spot (distance): | 2 mm (400 mm) |
| 1) Object with 90 % reflectance (referred to standard white DIN 5033) 2) Average service life 50,000 h at Ta = +25 C | |
| Mechanics/electronics | |
| Enclosure rating: | IP 65 |
| Supply voltage: | 10 V DC ... 30 V DC 1) |
| Residual ripple: | 10 % 2) |
| Power consumption: | ≤ 30 mA 3) |
| Switching output: | PNP, light/dark-switching, manually selectable, open collector |
| Output current Imax.: | 100 |
| Response time: | < 0.25 ms 4) |
| Switching frequency: | 2,000 With light/dark ratio 1:1 |
| Connection type: | Connector M8, 3-pin |
| Number of cores: | 3 |
| Circuit protection: | A B D 5) 6) 7) |
| Weight: | 10 g |
| Housing material: | ABS/PC/POM |
| Optics material: | PMMA |
| Ambient temperature, operation: | -10 C ... 50 C |
| Ambient temperature, storage: | -40 C ... 70 C |
| Items supplied: | Stainless steel mounting bracket (1.4301/304) BEF-W100-A |
| Signal voltage PNP HIGH / LOW: | UV - 1,8 V / ca. 0 V |
| 1) Limit values, operation in short-circuit protected network max. 8 A 2) 3) Without load 4) Signal transit time with resistive load 5) A = VS connections reverse-polarity protected 6) B = inputs and output reverse-polarity protected 7) D = outputs overcurrent and short-circuit protected | |
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