Description
The Banner Engineering LR400VH is a remote sensor emitter designed to provide stable infrared scanning performance over distances up to 2.4 meters. It supports precise emitter-only operation within Banner LR400 sensing systems for controlled detection tasks.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
Banner Engineering |
| Category |
Sensors |
| Part Number |
LR400VH |
| Subcategory |
Photoelectric Sensors |
| Series |
LR400 |
| Sensor Type |
Remote Sensor Emitter |
| Sensing Technology |
Infrared |
| Max Sensing Range |
2.4 m |
| Housing Style |
Cylindrical Barrel |
| Barrel Diameter |
1 inch |
| Output Type |
Emitter Only |
| Mounting Type |
Barrel Mount |
| Application Type |
Scanner / Remote Emitter |
| Weight |
0.12 lbs |
Information About LR400VH
The LR400VH is part of the Banner Engineering LR400 Series, which is designed for modular photoelectric sensing systems using separate emitters and receivers. The unit features a compact 1-inch barrel-style housing that allows straightforward installation in space-limited industrial equipment. It functions as a dedicated remote emitter, supporting controlled infrared signal transmission for scanner-based detection configurations. The design supports consistent optical performance in automation and inspection systems where precise emitter placement is required.
Key Features
- Remote Emitter Design: Operates as an emitter-only device for use with compatible LR400 receivers and scanners.
- Infrared Scanning Technology: Provides stable infrared signal output for reliable optical detection paths.
- 2.4 Meter Operating Range: Supports medium-range sensing setups in industrial automation systems.
- Compact 1-Inch Barrel Housing: Simplifies mounting in tight mechanical layouts and enclosed assemblies.
- Series Compatibility: Designed specifically for integration within Banner Engineering LR400 sensing platforms.
- Lightweight Construction: Low mass reduces mechanical load and supports flexible mounting options.
The LR400VH delivers the reliability and precision required for controlled infrared emission in modular photoelectric sensing systems.