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The liquid crystal light valve—A new display device

机译:液晶光阀—新型显示装置

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The liquid crystal light valve (LCLV) is a photoactivated electro-optic device that is designed to transfer images from one beam of light to another. It is being developed primarily for application to large screen video display of both alpha numeric/graphic and pictorial television imagery. However, it is also useful in the conversion of images from non-coherent to spatially coherent light, and from visible to IR light. Basically the device consists of a glass substrate upon which is deposited thin films of indium-tin oxide, a CdS photo-sensor, a CdTe light-absorbing layer, and a dielectric mirror. A second glass substrate is coated with a thin film indium-tin oxide transparent electrode. The two substrates sandwich between them a thin layer of an appropriate nematic liquid crystal. The resulting device has several important features. It has high input sensitivity (<100 µW/cm2at 525 nm), high resolution (>1500 lines/inch at 50 percent MTF), high contrast (>100:1), television-compatible speed (30 frames/sec.). Moreover, it is capable of very substantial image intensification (>105). Devices having apertures of two inches are fabricated routinely on fiber optics substrates. These devises can then be coupled directly to a 2- inch diameter fiber optics faceplate CRT primary (input) display to constitute a compact device package. In this talk we will describe the basic light valve device, discuss the various liquid crystal electro-optic effects that we use in these devices and characterize the performance that we obtain from them.
机译:液晶光阀(LCLV)是光活化的电光装置,其被设计成将图像从一个光束传送到另一个光束。它主要用于应用于alpha数字/图形和图形电视图像的大屏幕视频显示。然而,在从非相干到空间相干光的图像转换的图像中也是有用的,并且来自IR光的可见。基本上,该装置由玻璃基板组成,该玻璃基板沉积氧化铟锡,CDS光传感器,CdTe光吸收层和介电镜的薄膜。第二玻璃基板涂有薄膜氧化铟锡透明电极。在它们之间夹层的两个基板夹在它们之间是适当的向列液晶的薄层。得到的设备具有几个重要的功能。它具有高输入灵敏度(<100μW/ cm 2 ,525 nm),高分辨率(> 1500线/英寸为50%,高),高对比度(> 100:1),电视兼容速度(30帧/秒)。此外,它能够非常大的图像增强(> 10 5 )。具有两英寸的孔的装置通常在光纤基板上常规制造。然后,这些设计可以直接耦合到2英寸直径的光纤面板CRT主(输入)显示器,以构成紧凑型器件封装。在这谈话中,我们将描述基本的光阀装置,讨论我们在这些设备中使用的各种液晶电光效果,并表征了我们从中获得的性能。

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