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181results about How to "Small pixel size" patented technology

Array substrate preparation method, array substrate, and organic light-emitting display device

The invention discloses an array substrate preparation method, an array substrate, and an organic light-emitting display device. The preparation method comprises the following steps: (1) sequentially forming a first metal layer, a first insulating material layer and a second metal layer, which cover a thin-film transistor region and a capacitor device region, on a substrate; and (2) etching the second metal layer, the first insulating material layer and the first metal layer with photoresist and a half-tone mask on the second metal layer, forming a source and a drain which are separated, a gate insulating layer and a bottom gate in the thin-film transistor region, and forming a second electrode, a first dielectric layer and a first electrode in the capacitor device region. Thus, the source, the drain, the gate insulating layer and the bottom gate of the thin-film transistor can be etched by one half-tone mask, the second electrode, the first dielectric layer and the first electrode of the capacitor device are formed at the same time, and the process is simplified. The array substrate of the invention has a dual-gate thin-film transistor and a capacitor device connected in parallel with two capacitors. The capacitor capacity is improved on the basis of increasing the driving force.
Owner:CHENGDU VISTAR OPTEOLECTRONICS CO LTD

Aspheric lens computer-generated holography interference detecting method based on liquid crystal spatial light modulator

InactiveCN104121867AOvercoming the problem of only measuring shallow aspheresSmall pixel sizeUsing optical meansOptical pathOptical measurements
The invention discloses an aspheric lens computer-generated holography interference detecting method based on a liquid crystal spatial light modulator and relates to the field of optical measurement. According to the method, online detection of an aspheric reflector is achieved by a computer-generated holography interference method by the aid of a digital phase-shifting interferometer used for providing a light source, an imaging system and interferogram analysis software and by means of introducing the liquid crystal spatial light modulator to serve as a computer-generated holography carrier. A zero compensation lens is introduced into a testing light path to compensate spherical aberration of the aspheric lens, residual wave aberration is obtained by ZEMAX ray tracing, a mathematical model of the residual wave aberration is obtained according to a Zernike coefficient and a Zernike expression of the wave aberration and is made into a computer-generated hologram by means of computer-generated holography encoding, the computer-generated hologram is loaded on the liquid crystal spatial light modulator and forms reference light after being modulated, and the reference light interferes with testing light. The method can achieve real-time online detection of the aspheric lens by the aid of a powerful interferogram analysis function of the digital phase-shifting interferometer and a real-time computer-generated hologram display function of the liquid crystal spatial light modulator.
Owner:HARBIN UNIV OF SCI & TECH

Ultra-wide dynamic range image sensor based on pixel charge compensation technology

The invention belongs to the technical field of semiconductor image sensing, and relates to an ultra-wide dynamic range image sensor based on a pixel charge compensation technology. The ultra-wide dynamic range image sensor based on the pixel charge compensation technology is composed of a photoelectric conversion module 1, an upper read-out processing module 21 and a lower read-out processing module 22 for controlling and reading out data of the photoelectric conversion module 1, a column decoding module 3 and an offset signal module 4. A pixel element is integrated with an element for charge compensation near a main photodiode, so pixel output saturation is avoided by compensating charge to an integrating capacitor of the main photodiode under a highlight condition. An apparatus forms a linear response as to the light intensity under a weak light condition, and the linear response is automatically converted into the linear response to a light intensity logarithm under a strong light condition, so as to obtain an extremely wide dynamic range; the amplitude of the output voltage of a pixel circuit is large; a column amplifier circuit does not need to be integrated; an analogue-digital convertor can be directly input; the design flow of the device is simplified; the chip area is saved; and the photoreceptive dynamic range is extremely wide, and the theoretical value can reach up to 200dB.
Owner:JILIN UNIV
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