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    • 1. 发明申请
    • RADIAL-LEADED OVER-CURRENT PROTECTION DEVICE
    • 径向引线过流保护装置
    • US20150155080A1
    • 2015-06-04
    • US14281038
    • 2014-05-19
    • Fu Hua CHUYi An SHAEn Tien YANGTong Cheng TSAI
    • Fu Hua CHUYi An SHAEn Tien YANGTong Cheng TSAI
    • H01C7/02
    • H01C1/1406H01C1/028H01C1/144H01C7/027H01C17/0652H01C17/06566
    • A radial-leaded over-current protection device includes a PTC device, first and second electrode leads and an insulating encapsulation layer. The PTC device has first and a second conductive layers and a PTC material layer therebetween. The PTC material layer has a resistivity less than 0.18 Ω-cm and includes crystalline polymer and conductive ceramic filler. The ceramic filler has a resistivity less than 500 Ω-cm and is 35-65% by volume of the PTC material layer. The first electrode lead has an end connecting to the first conductive layer, whereas the second electrode lead has an end connecting to the second conductive layer. The insulating encapsulation layer wraps the PTC device and the ends of the conductive layers. The radial-leaded over-current protection device at 25° C. has a value of hold current thereof divided by an area of the PTC device ranging from 0.027-0.3 A/mm2. Each electrode lead has a cross-sectional area of at least 0.16 mm2.
    • 径向引线的过电流保护装置包括PTC器件,第一和第二电极引线以及绝缘封装层。 PTC器件具有第一和第二导电层和PTC材料层之间。 PTC材料层的电阻率小于0.18&OHgr·-cm,并且包括结晶聚合物和导电陶瓷填料。 陶瓷填料的电阻率小于500Ω-OHgr·-cm,是PTC材料层的35-65%(体积)。 第一电极引线具有连接到第一导电层的端部,而第二电极引线具有连接到第二导电层的一端。 绝缘封装层包裹PTC器件和导电层的端部。 在25℃的径向引线的过电流保护器件,其保持电流值除以PTC器件的面积为0.027-0.3A / mm2。 每个电极引线的横截面积至少为0.16mm 2。
    • 2. 发明授权
    • Surface mountable over-current protection device
    • 表面贴装过流保护装置
    • US09000881B2
    • 2015-04-07
    • US13901068
    • 2013-05-23
    • Fu Hua ChuDavid Shau Chew WangChun Teng TsengYi An Sha
    • Fu Hua ChuDavid Shau Chew WangChun Teng TsengYi An Sha
    • H01C7/10H01C7/13H02H3/08H01C7/12H02H9/04
    • H02H3/08H01C1/1406H01C7/02H01C7/021H01C7/12H02H9/044
    • A surface-mountable over-current protection device comprises a PTC material layer, first and second conductive layers, first and second electrodes, first and second electrically conductive connecting members. The PTC material layer has a resistivity less than 0.18 Ω-cm. The conductive layers are in contact with opposite surfaces of the PTC material layer. The first electrode comprises pair of first metal foils and is insulated from the second conductive layer. The second electrode comprises a pair of second metal foils and is insulated from the first conductive layer. The first electrically conductive connecting member connects to the first metal foils and conductive layer. The second electrically conductive connecting member connects to the second metal foils and conductive layer. The first electrically conductive connecting member comprises 40%-100% by area of the first lateral surface, and the second electrically conductive connecting member comprises 40%-100% by area of the second lateral surface.
    • 表面安装式过流保护装置包括PTC材料层,第一和第二导电层,第一和第二电极,第一和第二导电连接构件。 PTC材料层的电阻率小于0.18&OHgr; -cm。 导电层与PTC材料层的相对表面接触。 第一电极包括一对第一金属箔并且与第二导电层绝缘。 第二电极包括一对第二金属箔,并与第一导电层绝缘。 第一导电连接构件连接到第一金属箔和导电层。 第二导电连接构件连接到第二金属箔和导电层。 第一导电连接构件包括第一侧面的40%-100%的面积,第二导电连接构件包括第二侧面的40%-100%的面积。
    • 5. 发明授权
    • Over-current protection device
    • 过电流保护装置
    • US08687337B2
    • 2014-04-01
    • US13238999
    • 2011-09-21
    • Yi An ShaDavid Shau Chew Wang
    • Yi An ShaDavid Shau Chew Wang
    • H02H9/08
    • H01C1/1406H01C7/02H01C7/13H01C13/02
    • An over-current protection device includes a first substrate, a second substrate, a first grating electrode, a second grating electrode and a positive temperature coefficient (PTC) material layer. The first grating electrode and the second grating electrode are formed on the first substrate and are interlaced and spaced on a same plane. The PTC material layer is formed on the first substrate, the first grating electrode and the second grating electrode, and between the first grating electrode and the second grating electrode. In an embodiment, the first grating electrode and the second grating electrode serve as a current input port and a current output port, respectively.
    • 过电流保护装置包括第一基板,第二基板,第一格栅电极,第二格栅电极和正温度系数(PTC)材料层。 第一光栅电极和第二光栅电极形成在第一基板上,并且在同一平面上交织并隔开。 PTC材料层形成在第一基板,第一光栅电极和第二光栅电极以及第一光栅电极和第二光栅电极之间。 在一个实施例中,第一光栅电极和第二光栅电极分别用作电流输入端口和电流输出端口。
    • 8. 发明申请
    • OPTICALLY COMPENSATED BEND MODE LIQUID CRYSTAL DISPLAY DEVICES AND FABRICATION METHODS THEREOF
    • 光学补偿弯曲模式液晶显示装置及其制造方法
    • US20080297672A1
    • 2008-12-04
    • US12109310
    • 2008-04-24
    • Yi-An ShaKuo-Chang LeeChih-Chun Hsiao
    • Yi-An ShaKuo-Chang LeeChih-Chun Hsiao
    • G02F1/1337G02F1/133
    • G02F1/1395
    • The invention relates to optically compensated bend (OCB) mode liquid crystal display devices and fabrication methods thereof. The OCB mode liquid crystal display includes a first substrate, a second substrate and a liquid crystal layer interposed therebetween. A first pixel electrode is disposed on the first substrate. A second pixel electrode is disposed overlying the first pixel electrode with a dielectric layer interposed therebetween such that a discontinuous fringe field is formed at the edge of the second pixel electrode. A first alignment layer is disposed on the first substrate covering the first and second pixel electrode. A common electrode is disposed on the second substrate, and a second alignment layer is disposed on the second substrate covering the common electrode.
    • 本发明涉及光学补偿弯曲(OCB)模式液晶显示装置及其制造方法。 OCB模式液晶显示器包括第一基板,第二基板和插入其间的液晶层。 第一像素电极设置在第一基板上。 第二像素电极设置在第一像素电极的上方,介电层插入其间,使得在第二像素电极的边缘处形成不连续的条纹场。 第一取向层设置在覆盖第一和第二像素电极的第一基板上。 公共电极设置在第二基板上,第二取向层设置在覆盖共用电极的第二基板上。
    • 10. 发明申请
    • Liquid crystal display device and manufacturing method thereof
    • 液晶显示装置及其制造方法
    • US20070121044A1
    • 2007-05-31
    • US11523010
    • 2006-09-19
    • Kang-Fung LiuChi-Chang LiaoShie-Chang JengYi-An Sha
    • Kang-Fung LiuChi-Chang LiaoShie-Chang JengYi-An Sha
    • G02F1/1337
    • G02F1/134363G02F1/13439G02F2001/13373G02F2001/133776G02F2001/134381
    • A LCD device and a manufacturing method thereof are disclosed. The LCD is characteristic of the electrode layer having no alignment layer disposed thereon. On this structure, the electrode layer of the positive and negative electrodes are adjacent to the liquid crystal molecules in the liquid crystal layer, and the electric field produced therebetween and also the structure for isolating the alignment layer in this region can avoid the disclination of the liquid crystal molecules caused by the transverse electric field produced between the electrodes so as to improve the optical efficiency of the LCD device. The manufacturing steps thereof includes providing a first substrate and a second substrate, forming a second alignment layer and a patterned second electrode layer on the second substrate simultaneously or sequentially, injecting liquid crystal to form a liquid crystal layer, and fabricating to form a liquid crystal display cell.
    • 公开了一种LCD装置及其制造方法。 LCD是其上没有布置有取向层的电极层的特征。 在该结构中,正极和负极的电极层与液晶层中的液晶分子相邻,并且在其间产生的电场以及用于隔离该区域中的取向层的结构可以避免旋转 由电极之间产生的横向电场引起的液晶分子,以提高LCD器件的光学效率。 其制造步骤包括提供第一衬底和第二衬底,同时或顺序地在第二衬底上形成第二取向层和图案化的第二电极层,注入液晶以形成液晶层,并制造形成液晶 显示单元格。