42EF-P8KBC-F4 | Allen-Bradley Dark Polarized Retroreflective Photoelectric Sensor
- Regular price
 - $832.00
 - Sale price
 - $832.00
 - Regular price
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Product Description P/N: 42EF-P8KBC-F4
Description
The Allen-Bradley 42EF-P8KBC-F4 is a dark polarized retroreflective photoelectric sensor designed for precise object detection in industrial automation. It utilizes a laser light source and supports both PNP and NPN outputs for flexible system integration.
Technical Specifications
| 
 Condition  | 
 New/Never Used Surplus  | 
|---|---|
| Brand | Allen-Bradley | 
| Category | 
 Sensors 
 | 
| Part Number | 42EF-P8KBC-F4 | 
| Subcategory | 
 Photoelectric Sensors 
 | 
| Sensor Type | Laser, Polarized Retroreflective | 
| Applications | Dark Target Detection, Reflective Surfaces | 
| Output Type | PNP/NPN | 
| Output Current | 100 mA | 
| Voltage | 24 VDC | 
| Connection Type | M12, 4-Pin Micro QD (Pigtail) | 
| Mounting Type | Front Through Hole | 
| Standards Compliance | CCC, CE, CSA, CUL, KC, UL | 
| Weight | 0.1300 lb | 
Information About 42EF-P8KBC-F4
Part of the RightSight 42EF series, the 42EF-P8KBC-F4 photoelectric sensor is tailored for polarized retroreflective applications, ensuring reliable object detection while ignoring shiny backgrounds. It operates on a 24 VDC supply voltage and delivers a 100 mA output, suitable for interfacing with most industrial control systems. The sensor is equipped with a 4-pin M12 Micro QD connector (pigtail-style), enabling secure and quick connections. Its PNP/NPN output configuration makes it adaptable for a wide range of input logic systems.
Key Features:
- 
Polarized Retroreflective Detection: Ignores background reflections for reliable sensing
 - 
Laser Sensor Technology: Ensures high precision and narrow beam detection
 - 
Dual Output (PNP/NPN): Enhances flexibility in wiring and control system integration
 - 
Quick-Disconnect Connectivity: M12 4-pin pigtail simplifies sensor replacement
 - 
Industrial Certifications: Compliant with UL, CE, KC, CSA, CCC for global use
 
The 42EF-P8KBC-F4 offers dependable performance in space-constrained or precision-driven applications.
Description
The Allen-Bradley 42EF-P8KBC-F4 is a dark polarized retroreflective photoelectric sensor designed for precise object detection in industrial automation. It utilizes a laser light source and supports both PNP and NPN outputs for flexible system integration.
Technical Specifications
| 
 Condition  | 
 New/Never Used Surplus  | 
|---|---|
| Brand | Allen-Bradley | 
| Category | 
 Sensors 
 | 
| Part Number | 42EF-P8KBC-F4 | 
| Subcategory | 
 Photoelectric Sensors 
 | 
| Sensor Type | Laser, Polarized Retroreflective | 
| Applications | Dark Target Detection, Reflective Surfaces | 
| Output Type | PNP/NPN | 
| Output Current | 100 mA | 
| Voltage | 24 VDC | 
| Connection Type | M12, 4-Pin Micro QD (Pigtail) | 
| Mounting Type | Front Through Hole | 
| Standards Compliance | CCC, CE, CSA, CUL, KC, UL | 
| Weight | 0.1300 lb | 
Information About 42EF-P8KBC-F4
Part of the RightSight 42EF series, the 42EF-P8KBC-F4 photoelectric sensor is tailored for polarized retroreflective applications, ensuring reliable object detection while ignoring shiny backgrounds. It operates on a 24 VDC supply voltage and delivers a 100 mA output, suitable for interfacing with most industrial control systems. The sensor is equipped with a 4-pin M12 Micro QD connector (pigtail-style), enabling secure and quick connections. Its PNP/NPN output configuration makes it adaptable for a wide range of input logic systems.
Key Features:
- 
Polarized Retroreflective Detection: Ignores background reflections for reliable sensing
 - 
Laser Sensor Technology: Ensures high precision and narrow beam detection
 - 
Dual Output (PNP/NPN): Enhances flexibility in wiring and control system integration
 - 
Quick-Disconnect Connectivity: M12 4-pin pigtail simplifies sensor replacement
 - 
Industrial Certifications: Compliant with UL, CE, KC, CSA, CCC for global use
 
The 42EF-P8KBC-F4 offers dependable performance in space-constrained or precision-driven applications.