Description
The Banner Engineering QH23SP6RQ is a Q23 Series photoelectric receiver designed for through-beam sensing applications in industrial automation. It operates with a 10–30 VDC supply and provides a PNP output for reliable signal integration with control systems. This receiver supports precise object detection over extended distances when paired with a compatible emitter.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Banner Engineering |
| Category |
Sensors |
| Part Number |
QH23SP6RQ |
| Subcategory |
Photoelectric Sensors |
| Series |
Q23 Series |
| Sensor Type |
Photoelectric Receiver |
| Sensing Mode |
Through-Beam |
| Maximum Range |
8 m |
| Supply Voltage |
10–30 VDC |
| Output Type |
PNP |
| Input/Output |
Discrete |
| Connection Type |
6 in Pigtail Quick-Disconnect |
| Application |
Industrial Object Detection |
| Weight |
0.12 lb |
Information About QH23SP6RQ
The QH23SP6RQ is part of Banner Engineering’s Q23 Series, known for compact photoelectric sensors used in space-constrained industrial environments. It is designed as a dedicated receiver for through-beam sensing, allowing accurate detection across distances up to 8 meters. The sensor supports DC-powered operation and integrates easily into automation systems using a PNP output configuration. Its short pigtail with quick-disconnect capability simplifies installation and maintenance in machinery and conveyor applications.
Key Features:
- Q23 Series Receiver Design: Intended for use in through-beam photoelectric sensing systems.
- Extended Sensing Range: Supports detection distances up to 8 meters when paired with a compatible emitter.
- DC Powered Operation: Operates on a 10–30 VDC supply for industrial compatibility.
- PNP Output Configuration: Enables straightforward integration with PLC and control inputs.
- Compact Sensor Housing: Suitable for installations with limited mounting space.
- Quick-Disconnect Pigtail: Includes a 6-inch pigtail for fast and secure electrical connection.
The QH23SP6RQ delivers the reliability and precision required for through-beam photoelectric sensing in industrial automation applications.