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Subsidiary - ORTE
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Low light night vision technology
Night vision technology is a specialized technology for studying the generation, enhancement, conversion, transmission, storage, and processing of optical image information at night or under low illumination. It is a marginal subject developed on the basis of physics, electronics, electron optics, physiological optics, engineering optics, fiber optics, vacuum technology, semiconductor technology, and computer technology in recent decades, integrating optics-mechanics-electronics-computers, etc. A high-tech integrated technology.
DNA sequencer
A device for translating and reading DNA base sequences extracted from cells. The figure below is a schematic diagram of a DNA sequencer. The separated DNA pieces are combined with specific fluorescent markers and injected as pigments (labeled pigments) into the colloid of the swimming plate, and after electrophoresis, they will sink in the colloid. When the scanning line scans the DNA sheet, only the part with the marked pigment emits fluorescence due to the excitation by the laser. The fluorescence is detected by a photomultiplier tube through a spectroscopic filter, and the position of the fluorescent light is calculated by a computer, and the location of the specific fluorescent base can be distinguished. DNA sequencer is used in biological genetics research, research on genetic diseases, tumors, infectious diseases, diagnosis and treatment of geriatric diseases, translation and reading of genetic genes, etc.
X-ray Medical Diagnostic System
X-ray image diagnostic devices are often used in medical sites. Photomultiplier tubes are often used to monitor the exposure time of X-rays in X-ray devices. Recently, in the trend of filmization, special fluorescent plate reading device detectors have been used as a substitute for film.
X-ray medical inspection
The optical fiber panel is used as the substrate of the scintillation screen in the digital X-ray detector system, and the scintillation screen transmits the visible light converted from X-rays to the detection chip, which has the characteristics of reducing noise, protecting the sensor and improving contrast.
Application of Optical Fiber Panel in Fingerprint Device
In October 2014, the market research company HIS predicted that by 2020, the global fingerprint sensor market would grow nearly four times to nearly $1.7 billion. Most of the growth will come from Asia, especially China. In 2013, the global market for fingerprint sensors for mobile phones and tablets was only US$500 million, and it is reasonable to believe that many competitors are gearing up to enter this growing market. In fingerprint sensor, how to choose between optical sensor and capacitive sensor? How to achieve miniaturization, low cost, and high resolution? The use of fiber optic panels will solve this problem for you!
Viewing Angle Control Display
The low numerical aperture panel is coupled with the LCD display to control the viewing angle of the output picture.
Multi-angle observation application fiber optic panel
Images of different viewing angles are imaged at each input end of the multi-view fiber optic panel, and are decomposed into corresponding pixels by the tens of millions of optical fibers that make up the fiber optic panel, and the pixel information is transmitted to the fiber optic panel one by one through the total reflection of the optical fiber. At the other end, the pixels are combined and formed in the original arrangement on the exit plane. The images of different viewing angles are output in the same plane through the transmission of the multi-viewing fiber optic panel.
Dynamic Audio Display Button
The optical fiber panel is coupled with the LCD display to form a dynamic display keyboard, which can dynamically display changing graphics and animations in the keys, which overcomes the shortcomings of the single function of traditional mechanical keys.
X-ray industrial non-destructive testing
CCD CMOS image coupling element
The image at the large end of the light cone is shrunk and coupled to the CCD/CMOS, which can be used as the base component of the scintillator to absorb ray energy, improve the coupling efficiency, reduce the size of the CCD/CMOS, and protect the CCD/CMOS. Hongsheng can also realize large-area radiography detection through array combination of light cones.