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    • 3. 发明申请
    • Liquid crystal on silicon display panel and electronic device using the same
    • 硅液晶显示面板及使用其的电子设备
    • US20090195736A1
    • 2009-08-06
    • US12068167
    • 2008-02-04
    • Chun-Hao SuBing-Jei LiaoYen-Chen Chen
    • Chun-Hao SuBing-Jei LiaoYen-Chen Chen
    • G02F1/1335
    • G02F1/133512G02F1/136277
    • A liquid crystal on silicon (LCOS) display panel and an electronic device using the same are provided. The electronic device comprises the LCOS display panel and a circuit board. The LCOS display panel comprises a silicon substrate, a transparent substrate and a liquid crystal layer. The transparent substrate has a base plate and a mask layer. The circuit board is electrically connected to the display panel. The transparent substrate is disposed opposite to the silicon substrate, and the liquid crystal layer is positioned between the silicon substrate and the transparent substrate. The mask layer is disposed on the base plate and has at least one opening to form at least one light-transmitting region and one light-blocking region, and the light-transmitting region is a displaying region of the transparent substrate.
    • 提供了一种硅液晶显示面板及使用其的电子设备。 电子设备包括LCOS显示面板和电路板。 LCOS显示面板包括硅衬底,透明衬底和液晶层。 透明基板具有基板和掩模层。 电路板电连接到显示面板。 透明基板与硅基板相对设置,液晶层位于硅基板和透明基板之间。 掩模层设置在基板上,并且具有至少一个开口以形成至少一个透光区域和一个遮光区域,并且透光区域是透明基板的显示区域。
    • 6. 发明授权
    • Molding method for a thin-profile composite capillary structure
    • 薄型复合毛细管结构的成型方法
    • US08720062B2
    • 2014-05-13
    • US13346261
    • 2012-01-09
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • Sin-Wei HeJhong-Yan ChangYen-Chen Chen
    • B21D53/02
    • B22F7/002H01L21/4871H01L23/427H01L2924/0002Y10T29/49353H01L2924/00
    • A molding method for a thin-profile composite capillary structure includes the steps of preparing a metal grid and metal powder separately; attaching a liquid medium onto the metal grid by means of spraying or brushing or steeping; attaching uniformly the metal powder onto the grid with the liquid medium; and fixing the metal powder onto the surface of the grid by means of sintering, such that a sintered powder layer is formed onto the surface of the grid. The structure includes a metal grid, which is of planar grid pattern made of woven metal wires. A sintered powder layer is sintered onto a lateral surface of the metal grid from the metal powder. The thickness of the sintered powder layer is 0.1 mm-0.7 mm. The total thickness of the thin-profile composite capillary structure is 0.2 mm-0.8 mm, thus presenting flexibility. The thin-profile composite capillary structure is particularly suitable for a heat pipe.
    • 薄型复合毛细结构的成型方法包括分别制备金属网格和金属粉末的步骤; 通过喷涂或刷洗或浸泡将液体介质附着到金属网格上; 用液体介质将金属粉末均匀地附着在栅格上; 并通过烧结将金属粉末固定在电网的表面上,使得烧结粉末层形成在电网的表面上。 该结构包括由编织金属线制成的平面网格图案的金属格栅。 将烧结的粉末层从金属粉末烧结到金属网格的侧表面上。 烧结粉末层的厚度为0.1mm-0.7mm。 薄型复合毛细结构的总厚度为0.2mm-0.8mm,因此具有柔性。 薄型复合毛细结构特别适用于热管。
    • 8. 发明申请
    • Method of Forming Laterally Distributed LEDs
    • 形成分布式LED的方法
    • US20100197060A1
    • 2010-08-05
    • US12366609
    • 2009-02-05
    • Chun-Yen ChangTsung-Hsi YangYen-Chen Chen
    • Chun-Yen ChangTsung-Hsi YangYen-Chen Chen
    • H01L33/00
    • H01L27/153
    • A method of forming laterally distributed light emitting diodes (LEDs) is disclosed. A first buffer layer with a first type of conductivity is formed on a semiconductor substrate, and a dielectric layer is formed on the first buffer layer. The dielectric layer is patterned to form a first patterned space therein, followed by forming a first active layer in the first patterned space. The dielectric layer is then patterned to form a second patterned space therein, followed by forming a second active layer in the second patterned space. Second buffer layers with a second type of conductivity are then formed on the first active layer and the second active layer. Finally, electrodes are formed on the second buffer layers and on the first buffer layer.
    • 公开了形成横向分布式发光二极管(LED)的方法。 在半导体衬底上形成具有第一导电类型的第一缓冲层,并且在第一缓冲层上形成电介质层。 图案化电介质层以在其中形成第一图案化空间,随后在第一图案化空间中形成第一有源层。 然后将介电层图案化以在其中形成第二图案化空间,随后在第二图案化空间中形成第二有源层。 然后在第一有源层和第二有源层上形成具有第二类导电性的第二缓冲层。 最后,在第二缓冲层和第一缓冲层上形成电极。
    • 10. 发明授权
    • Driving method for cholesteric liquid crystal display
    • 胆甾型液晶显示器的驱动方法
    • US07436383B2
    • 2008-10-14
    • US10826063
    • 2004-04-16
    • Yen-Chen ChenChien-Pin ChenChia-Cheng Lai
    • Yen-Chen ChenChien-Pin ChenChia-Cheng Lai
    • G09G3/36
    • G09G3/3622G09G2300/0486
    • The present invention relates to a driving method for cholesteric liquid crystal display. A plurality of pixels of the display are controlled by a plurality of row drivers and a plurality of column drivers. According to the method of the invention, firstly, a DC input voltage or a non-symmetric AC input voltage is applied to the row drivers and the column drivers so that the voltage of the pixel is larger than a withstand voltage of the drivers. Then, an initial column signal and an initial row signal are respectively supplied by the corresponding column driver and row driver so as to initialize the corresponding pixel. The polarity of the initial column signal is different from that of the initial row signal. Because the initial row signal minus the initial column signal equals the signal of the pixel, the amplitude of the signal applied to the pixel can be increased. Therefore, according to the invention, the initial time of the pixel can be decreased, and the transferring speed of the pixel can be improved.
    • 本发明涉及胆甾型液晶显示器的驱动方法。 显示器的多个像素由多个行驱动器和多个列驱动器控制。 根据本发明的方法,首先,对行驱动器和列驱动器施加DC输入电压或非对称AC输入电压,使得像素的电压大于驱动器的耐受电压。 然后,相应的列驱动器和行驱动器分别提供初始列信号和初始行信号,以初始化对应的像素。 初始列信号的极性与初始行信号的极性不同。 由于初始行信号减去初始列信号等于像素的信号,所以可以增加施加到像素的信号的幅度。 因此,根据本发明,可以减少像素的初始时间,并且可以提高像素的传送速度。