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A CMOS-Liquid Crystal-Based Image Transceiver Device

机译:基于CMOS-液晶的图像收发装置

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A CMOS-Liquid Crystal-Based Image Transceiver Device (ITD) is under Development at the Holon Institute of Technology. The Device combines both functions of Imaging and Display in a single array structure. This unique structure allows the combination of See-Through, Aiming, Imaging and the Displaying of a superposed image to be combined in a single, compact, Head Mounted Display. The CMOS-Based pixel elements are designed to provide efficient imaging in the Visible Range as well as Driver Capabilities for the overlying Liquid Crystal Modulator. The Image Sensor part of the pixel is based on an n-well photodiode and a three-transistors readout circuit. The imaging function is based on a back-illuminated sensor configuration. In order to provide a high imager Fill-factor, two pixel configuration are proposed : 1) A p++/p~-/p-well silicon structure using twin-well CMOS Process ; 2) An n-well processed silicon structure with a Micro-lens Array. The Display portion of the IT Device is to be fabricated on a silicon-based reflective, Active Matrix Driver, using Nematic liquid crystal material. The reflective Display Pixel Electrode is driven by an n-MOS transistor, formed in the corresponding pixel region on the silicon substrate. The Timing, Sequencing and Control of the IT Device array are designed in a pipeline array processing scheme. A preliminary Prototype System and Device design have been performed and the first test device is currently being tested. Details of the Device Design as well as its Smart Goggle applications are presented.
机译:基于CMOS-液晶的图像收发器装置(ITD)正在开发Holon技术研究所。该设备将成像功能与单个阵列结构中的两种功能相结合。这种独特的结构允许在单个紧凑的头戴式显示器中组合透视,瞄准,成像和显示叠加图像的组合。基于CMOS的像素元件被设计为在可见范围内提供有效的成像以及覆盖液晶调制器的驱动器能力。像素的图像传感器部分基于n阱光电二极管和三晶体管读出电路。成像功能基于反光照明传感器配置。为了提供高成像填充因子,提出了两个像素配置:1)使用双孔CMOS工艺的P ++ / P〜/ P阱硅结构; 2)具有微透镜阵列的N阱加工硅结构。使用向硅基的反射,有源矩阵驱动器,使用向硅液晶材料制造IT装置的显示部分。反射显示像素电极由形成在硅衬底上的相应像素区域中的N-MOS晶体管驱动。 IT设备阵列的定时,排序和控制在流水线阵列处理方案中设计。已经执行了初步原型系统和设备设计,目前正在测试第一个测试设备。提供了设备设计的详细信息以及其智能护目镜应用程序。

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