Plane array infrared detector chip of liquid crystal-base electronic speed controller imaging spectroscopy

A technology of infrared detection and electric adjustment, which is applied in the direction of electric radiation detectors, can solve the problems of large volume and mass, slow response, spectral image generation, long conversion time, etc., and achieves flexible spectral imaging methods, good environmental adaptability, Ease of use

Active Publication Date: 2013-01-02
HUAZHONG UNIV OF SCI & TECH
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Problems solved by technology

However, the existing problems are still: the spectral imaging device based on the wide-spectrum detection device still needs to be equipped with complex and precise feeding, driving or scanning mechanisms, which are large in size and mas

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  • Plane array infrared detector chip of liquid crystal-base electronic speed controller imaging spectroscopy
  • Plane array infrared detector chip of liquid crystal-base electronic speed controller imaging spectroscopy

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[0018] In order to make the objectives, technical solutions, and advantages of the present invention clearer, the following further describes the present invention in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, but not to limit the present invention.

[0019] Such as figure 1 As shown, the liquid crystal-based electronically modulated imaging spectrum area array infrared detection chip of the present invention includes a ceramic housing 17, a spectrum infrared imaging detection structure, and a metal heat sink 16.

[0020] The spectral infrared imaging detection framework is arranged in the ceramic housing 17, and includes a drive control and image preprocessing module 10, an area array uncooled infrared detector 11, and an electronically modulated imaging spectral liquid crystal module 13, which are arranged coaxially and sequentially.

[0021]...

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Abstract

The invention discloses a plane array infrared detector chip of a liquid crystal-base electronic speed controller imaging spectroscopy. The plane array infrared detector chip comprises a ceramic housing, a spectral infrared imaging detection framework and a metal radiating plate, wherein the spectral infrared imaging detection framework is arranged in the ceramic housing and comprises a drive control and image pre-processing module, a plane array uncooled infrared detector and an electronic speed controller imaging spectroscopy liquid crystal module; the drive control and image pre-processing module, the plane array uncooled infrared detector and the electronic speed controller imaging spectroscopy liquid crystal module are coaxially and orderly arranged; the electronic speed controller imaging spectroscopy liquid crystal module is used for receiving a target infrared incident light, and extracting a spectral infrared light in the infrared incident light through multi-stage secondary reflecting interference coherence and transmitting to the plane array uncooled infrared detector, and the plane array uncooled infrared detector is used for carrying out photoelectric conversion on the spectral infrared light to generate an electric response signal. The plane array infrared detector chip has the characteristics that the plane array infrared detector chip is compact in structure, rapid in imaging spectroscopy response, high in spectral imaging detection efficiency, easy to be coupled with other optical/photoelectric/mechanical structures, and good in environmental adaptability, and random spectrum cutting, gazing or skipping can be executed.

Description

technical field [0001] The invention belongs to the technical field of infrared imaging detection, and more specifically relates to a liquid crystal-based electric modulation imaging spectrum array infrared detection chip. Background technique [0002] In general, light-frequency electromagnetic radiation originating from the Earth, the sun, stars, interfering or deceptive light sources constitutes the target's background light field. The differences in materials, components, energy states, structures, shapes, activities, and living environments of natural or artificial material structures make them exhibit different spontaneous emission and reflection, scattering, or transmission properties of external electromagnetic radiation, but all There is intrinsically labelable characteristic spectral electromagnetic information. They generally appear in the electromagnetic form of nano / subnanometer spectral width, distributed in the ultraviolet, visible, infrared and THz spectral ...

Claims

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Application Information

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IPC IPC(8): G01J5/10
Inventor 张新宇佟庆康胜武罗俊桑红石张天序
Owner HUAZHONG UNIV OF SCI & TECH
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