Large-Size Radiation-Resistant Fiber Optic Faceplate
The large-size radiation-resistant fiber faceplates developed by the company are mainly used in amorphous silicon flat-panel detectors, which can convert X-rays into digital signals. The products have light-guiding performance, coupling the scintillator layer with photosensitive devices such as amorphous silicon thin-film layers to generate high-resolution images with better contrast. They also absorb X-rays, protecting the photodetector from damage and preventing external noise from affecting image quality.
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Overview
The large-size radiation-resistant fiber faceplates developed by the company are mainly used in amorphous silicon flat-panel detectors, which can convert X-rays into digital signals. The products have light-guiding performance, coupling the scintillator layer with photosensitive devices such as amorphous silicon thin-film layers to generate high-resolution images with better contrast. They also absorb X-rays, protecting the photodetector from damage and preventing external noise from affecting image quality.
Specifications
| Parameter | Value |
|---|---|
| Fiber Size/Resolution | 6/83 (customizable)μm |
| Numerical Aperture | 1.0 |
| k) | 88 |
| Maximum Formats | Customizable |
| Stray Light Control | Yes |
| Lead Free | Yes |
| Phosphor Compatible | Yes |
| Clad ratio | 70/30 |
Applications
industrial flaw detection, medical imaging and other fields
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Supplier Information
CNBM Guangxin Technology Co., Ltd. was established in December 2018, controlled by China Building Materials Academy Co., Ltd., and affiliated to China National Building Material Group (CNBM). The company specializes in the R&D, production, sales and technical services of image light guide identification materials and optical fiber image transmission materials. It mainly develops five major directions: image light guide identification materials, optical fiber functional materials for image detection, special optical fiber functional materials for low-light-level night vision, microporous filtration functional materials and capillary arrays, and polymer optical fiber array functional materials. It has broken through the 0.12mm ultra-thin image light guide identification material technology, developed medical products, and provides key material support for fields such as low-light night vision, smart phones, smart security, and medical health.
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