Description
The SICK WT18-3P110 is a photoelectric sensor designed for reliable object detection in industrial automation environments. Operating on 10–30 VDC with a PNP output, this sensor provides fast switching performance and stable detection. It is commonly used in conveyor systems, packaging machinery, and material handling applications.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
SICK |
| Category |
Sensors & Switches |
| Part Number |
WT18-3P110 |
| Subcategory |
Photoelectric |
| Product Type |
Photoelectric sensor |
| Series |
W18-3 |
| Supply Voltage |
10–30 VDC |
| Current Consumption |
55 mA |
| Output Type |
PNP |
| Max Output Current |
100 mA |
| Switching Frequency |
700 Hz |
| Connection Type |
Cable, 4-wire |
| Cable Length |
2 m |
| Reference Number |
1025887 |
| Product Status |
Discontinued by manufacturer |
| Weight |
0.32 lbs |
Information About
The WT18-3P110 is part of SICK’s W18-3 series of photoelectric sensors engineered for compact and dependable sensing tasks. It features a rugged housing and integrated optics optimized for consistent detection across varying operating conditions. The sensor is compatible with standard DC-powered PLC and control systems and connects via a pre-wired 4-wire cable. Typical usage includes object presence detection, positioning tasks, and automation processes where fast response and reliability are required.
Key Features:
- Photoelectric sensing technology: Provides non-contact object detection for industrial automation.
- PNP switching output: Compatible with standard PLC sourcing inputs.
- High switching frequency: Operates up to 700 Hz for fast-moving processes.
- Wide DC operating range: Supports 10–30 VDC power supplies.
- Compact W18-3 design: Suitable for space-constrained installations.
- Pre-wired cable connection: Includes a 2 m, 4-wire cable for easy installation.
- Stable output performance: Supports up to 100 mA output current.
The WT18-3P110 delivers the reliability and precision required for accurate object detection in industrial photoelectric sensing applications.