Light intensity compressor

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Details

350331R, 350337, 350342, G02F 113

Patent

active

H00007374

ABSTRACT:
In a system for recording images having vastly differing light intensities over the face of the image, a light intensity compressor is provided that utilizes the properties of twisted nematic liquid crystals to compress the image intensity. A photoconductor or photodiode material that is responsive to the wavelength of radiation being recorded is placed adjacent a layer of twisted nematic liquid crystal material. An electric potential applied to a pair of electrodes that are disposed outside of the liquid crystal/photoconductor arrangement to provide an electric field in the vicinity of the liquid crystal material. The electrodes are substantially transparent to the form of radiation being recorded. A pair of crossed polarizers are provided on opposite sides of the liquid crystal. The front polarizer linearly polarizes the light, while the back polarizer cooperates with the front polarizer and the liquid crystal material to compress the intensity of a viewed scene. Light incident upon the intensity compressor activates the photoconductor in proportion to the intensity of the light, thereby varying the field applied to the liquid crystal. The increased field causes the liquid crystal to have less of a twisting effect on the incident linearly polarized light, which will cause an increased percentage of the light to be absorbed by the back polarizer. The intensity of an image may be compressed by forming an image on the light intensity compressor.

REFERENCES:
patent: 3944817 (1976-03-01), Hilsum et al.
patent: 4073571 (1978-02-01), Grinberg et al.
patent: 4191456 (1980-03-01), Honz et al.
patent: 4749257 (1988-06-01), Klausz
Haas et al., "Ultralow-Voltage Image Intensifiers", Applied Physics Letters, vol. 29, No. 10, Nov. 15, 1976.
Colburn et al., "Photoconductor-Thermoplastic Image Transducer", Optical Engineering, vol. 17, No. 4, Jul.-Aug. 1978.
Margerum et al., "Reversible Ultraviolet Imaging with Liquid Crystals", Applied Physics Letters, vol. 17, No. 2, Jul. 15, 1970.
Bleha et al., "Application of Liquid Crystal Light Value to Real Time Optical Data Processing", vol. 17, No. 4, Optical Engineering, Jul.-Aug. 1978.

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