Fiber Optic Image Inverter
A fiber-optic image inverter is made from a fiber faceplate blank by secondary heating and twisting. In addition to all the characteristics of optical fibers, because the input and output ends of each fiber are twisted 180° relative to each other around the axis of the device during the twisting process, it can invert the image by 180° to achieve image inversion, making it a key component for the miniaturization of low-light image intensifiers.
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Overview
A fiber-optic image inverter is made from a fiber faceplate blank by secondary heating and twisting. In addition to all the characteristics of optical fibers, because the input and output ends of each fiber are twisted 180° relative to each other around the axis of the device during the twisting process, it can invert the image by 180° to achieve image inversion, making it a key component for the miniaturization of low-light image intensifiers.
Specifications
| Parameter | Value |
|---|---|
| Single Fiber Diameter | Φ4~6μm (customized per user requirements) |
| Effective Aperture | Φ12~40mm |
| Thermal Expansion Coefficient (20~300 °C) | (60~90)×10-7/℃ |
| Vacuum Air Tightness | <10-12Pa•m3/s |
| Collimated Transmission Ratio | >70% |
| Diffuse Transmittance | >65% |
| Image Displacement | <50μm |
| Image Reversal | 180°±1° |
Datasheet
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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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