Abstract—
We have fabricated a 13.3‐in. XGA (1024 × 768) TFT sequential‐color liquid‐crystal display using optically compensated birefringency (OCB), illuminated by an LED backlight. We fabricated the sequential‐color display feasible process technology, and examined the performance and potential of a field‐sequential‐color scheme. The display was connected to a laptop computer and examined for flicker.
We have fabricated a 13.3" XGA (1024 by 768) TFT color sequential liquid crystal display using Optically Compensated Birefringency (OCB), illuminated by an LED backlight. We fabricated the color sequential display using mostly feasible process technology, and examined the performance and potential of a color field sequential scheme. The display was connected to a laptop computer and examined for flicker perception.
We describe a 320‐dpi, 4‐inch diagonal a‐Si:H TFT‐driven monochrome reflective display panel, in which two guest‐host nematic liquid crystal layers separated by a thin polymer film are orthogonally aligned to realize high reflectivity and high contrast ratio simultaneously. The TFT manufacturer used a four mask process with a high aperture ratio. The structure and characteristics of the panel are presented.
We discuss a high‐functional digital monitor interface, called Digital Link, which can support very high resolution monitors, high‐level control of monitor functions, and flexible monitor connections. This interface is essentially an upper layer protocol and takes advantages of the physical layer of existing digital interfaces. This paper also describes a prototype system that we have developed to evaluate various aspects of the protocol.
Abstract— We describe a 320‐dpi, 4‐in. diagonal a‐Si:H TFT‐driven monochrome reflective display panel, in which two guest‐host nematic liquid‐crystal layers separated by a thin polymer film are orthogonally aligned to realize high reflectivity and high contrast ratio simultaneously. The TFT manufacturer used a four‐mask process with a high aperture ratio. The structure and characteristics of the panel are presented.
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