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    • 5. 发明授权
    • Three-dimensional display device
    • 三维显示设备
    • US08514474B2
    • 2013-08-20
    • US13221321
    • 2011-08-30
    • Chia-Yen LeeChing-Tung HsuMing-Wei TsaiYeong-Feng WangYen-I ChouRong-Chang Liang
    • Chia-Yen LeeChing-Tung HsuMing-Wei TsaiYeong-Feng WangYen-I ChouRong-Chang Liang
    • G02B26/02
    • G02B27/225G02B26/005Y10T29/4998
    • A 3D image display device with high resolution is disclosed. The device may deflect left and right eye images to a left and right eye of a viewer, respectively. As such, the viewer may see 3D images. The 3D image display device includes a plurality of electrically switchable light modulating cells containing two incompatible light modulating mediums. When a voltage is applied to electrodes of the electrically switchable light modulating cell, the interface between the incompatible light modulating mediums non-horizontally deforms corresponding to the electrowetting or electrostatic concept. The geometrical shape, size, and material of partition walls in the electrically switchable light modulating cells may reduce or eliminate misplacement of incompatible light modulating mediums while voltages are applied thereto. In addition, the method of manufacturing the 3D image display device is also disclosed.
    • 公开了一种具有高分辨率的3D图像显示装置。 该装置可以分别将左眼图像和右眼图像偏转到观看者的左眼和右眼。 这样,观看者可以看到3D图像。 3D图像显示装置包括包含两个不兼容的光调制介质的多个可电开关的光调制单元。 当电压被施加到电气可切换光调制单元的电极时,不兼容的光调制介质之间的界面对应于电润湿或静电概念非水平变形。 电可开关光调制单元中的分隔壁的几何形状,尺寸和材料可以在施加电压的同时减少或消除不兼容的光调制介质的误放。 此外,还公开了制造3D图像显示装置的方法。
    • 8. 发明授权
    • Process for preparing a hydrogen sensor
    • 氢传感器的制备方法
    • US06800499B2
    • 2004-10-05
    • US10157251
    • 2002-05-28
    • Huey-Ing ChenWen-Chau LiuYen-I ChouChin-Yi ChuHsi-Jen Pan
    • Huey-Ing ChenWen-Chau LiuYen-I ChouChin-Yi ChuHsi-Jen Pan
    • H01L2100
    • G01N33/005H01L21/28581
    • A high-sensitivity Pd/InP hydrogen sensor was made by a) forming an n-type or p-type semiconductor film on a semiconductor substrate; b) forming a patterned first metal electrode on the semiconductor film, wherein the first metal electrode forms an Ohmic contact with the semiconductor film; and c) forming a second metal electrode on the semiconductor film, the second metal electrode being isolated from the first metal electrode, wherein the second metal electrode forms a Schottky contact with the semiconductor film, wherein a thickness of the second metal electrode and a material of which the second metal electrode is made enable a Schottky barrier height of the Schottky contact to decrease when hydrogen contacts the second metal electrode. The second metal electrode can be physical vapor deposited or electroless plated.
    • 通过a)在半导体衬底上形成n型或p型半导体膜来制造高灵敏度Pd / InP氢传感器; b)在所述半导体膜上形成图案化的第一金属电极,其中所述第一金属电极与所述半导体膜形成欧姆接触; 以及c)在所述半导体膜上形成第二金属电极,所述第二金属电极与所述第一金属电极隔离,其中所述第二金属电极与所述半导体膜形成肖特基接触,其中所述第二金属电极和材料的厚度 其中第二金属电极被制成使得当氢接触第二金属电极时,肖特基接触的肖特基势垒高度降低。 第二金属电极可以物理气相沉积或化学镀。
    • 10. 发明授权
    • Electron emission device
    • 电子发射装置
    • US08049401B2
    • 2011-11-01
    • US12414666
    • 2009-03-31
    • Po-Hung WangJung-Yu LiShih-Pu ChenYi-Ping LinYen-I ChouMing-Chung Liu
    • Po-Hung WangJung-Yu LiShih-Pu ChenYi-Ping LinYen-I ChouMing-Chung Liu
    • H01J17/00
    • H01J63/02H01J9/268
    • An electron emission device including a first substrate, a second substrate, a gas, a sealant, and a phosphor layer is provided. The first substrate has a cathode thereon, and the cathode has a patterned profile. The second substrate is opposite to the first substrate and has an anode thereon. The sealant is disposed at edges of the first substrate and the second substrate to assemble the first and second substrates. The gas is disposed between the cathode and the anode and configured to induce a plurality of electrons from the cathode, wherein the pressure of the gas is between 10 torr and 10−3 torr. The phosphor layer is disposed on the moving path of the electrons to react with the electrons so as to emit light.
    • 提供了包括第一基板,第二基板,气体,密封剂和荧光体层的电子发射装置。 第一衬底在其上具有阴极,阴极具有图案形状。 第二基板与第一基板相对并且在其上具有阳极。 密封剂设置在第一基板和第二基板的边缘处以组装第一和第二基板。 气体设置在阴极和阳极之间并且被配置为从阴极诱导多个电子,其中气体的压力在10托和10 -3托之间。 荧光体层设置在电子的移动路径上以与电子反应以发光。