Description
The SICK LBSR40900 is a bifurcated glass/stainless steel fiber-optic light guide designed for precise optical signal transmission in industrial sensing applications. It features a slotted sensing end optimized for accurate light emission and reception in confined detection areas. This light guide is commonly used with compatible SICK fiber-optic sensors in automation and inspection systems.
Technical Specifications
| Condition |
New/Never Used Surplus |
| Brand |
SICK |
| Category |
Industrial Sensors |
| Part Number |
LBSR40900 |
| Subcategory |
Fiber-Optic Light Guides |
| Fiber Type |
Glass fiber |
| Jacket Material |
Stainless steel |
| Light Guide Type |
Bifurcated |
| Slot Dimensions |
38.1 × 0.25 mm |
| Fiber Bundle Diameter |
4 mm |
| Fiber Length |
900 mm |
| Application |
Fiber-optic sensing |
| Installation Type |
Sensor-connected light guide |
| Operating Environment |
Industrial |
| Weight |
Approx. 0.2 kg |
Information About LBSR40900
The LBSR40900 is part of SICK’s LBS series of fiber-optic light guides engineered for reliable optical performance in demanding industrial environments. It utilizes a glass fiber core with stainless steel protection to ensure durability and resistance to mechanical stress. The bifurcated design allows efficient light transmission and reception through a single sensing point. With a defined slot geometry and controlled bundle diameter, it supports consistent and repeatable sensing results when paired with appropriate fiber-optic amplifiers.
Key Features:
- Bifurcated Fiber-Optic Design: Enables combined light emission and reception through a single guide.
- Glass Fiber Core: Provides stable and efficient optical signal transmission.
- Stainless Steel Sheathing: Enhances durability in harsh industrial environments.
- Slotted Sensing End: 38.1 × 0.25 mm slot supports precise object detection.
- 4 mm Fiber Bundle Diameter: Ensures controlled light output and reception.
- 900 mm Fiber Length: Allows flexible routing and installation.
The LBSR40900 delivers the reliability and precision required for fiber-optic sensing in industrial automation and inspection applications.