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    • 1. 发明申请
    • TESTING APPARATUS AND METHOD
    • 测试装置和方法
    • US20130328584A1
    • 2013-12-12
    • US13588086
    • 2012-08-17
    • Chun-Hsun LinHsuan-Hao YangTzu-Yuan HuangKuang-Ching FanHsin-Hung Lee
    • Chun-Hsun LinHsuan-Hao YangTzu-Yuan HuangKuang-Ching FanHsin-Hung Lee
    • G01R1/073G01R31/26
    • G01R1/0408G01R31/2831G01R31/2886
    • Disclosed is a testing apparatus, including: a base having opposite upper and lower surfaces, and a plurality of electrical circuits formed in the base, each of the electrical circuits extending from the upper surface to the lower surface and bending backwards to the upper surface such that two terminal ends of the electrical circuit are located on the upper surface. While in a testing, an element is disposed on the upper surface of the base such that testing probes are placed on the electrical contact spots of both the element and the upper surface of the base, thus without resorting to double sided testing that testing probes are placed on the upper and lower surfaces of the element as mentioned in the prior art. Hence, the testing apparatus and testing method can simplify the testing process and prevent the element from damage caused by mechanical stresses of the testing probes.
    • 公开了一种测试装置,包括:具有相对的上表面和下表面的基座和形成在基部中的多个电路,每个电路从上表面延伸到下表面并向后弯曲到上表面, 电路的两个末端位于上表面。 在测试中,将元件设置在基座的上表面上,使得测试探针放置在基座的元件和上表面的电接触点上,因此不需要进行双面测试,测试探针 放置在元件的上表面和下表面上,如现有技术中所述。 因此,测试装置和测试方法可以简化测试过程,并防止元件受到测试探针的机械应力所造成的损坏。
    • 3. 发明授权
    • Asymmetric differential inductor
    • 不对称差分电感
    • US08493168B2
    • 2013-07-23
    • US13222231
    • 2011-08-31
    • Ming-Fan TsaiKuan-Yu ChenBo-Shiang FangHsin-Hung Lee
    • Ming-Fan TsaiKuan-Yu ChenBo-Shiang FangHsin-Hung Lee
    • H01F5/00H01F27/28
    • H01F17/0006H01F19/00
    • An asymmetric differential inductor includes first and second conductive wirings spirally disposed on a substrate having a first input terminal, a second input terminal, a ground terminal, and a central conductive wiring. The central conductive wiring has a central contact connecting the ground terminal and a central end away from the ground terminal. The first conductive wiring extends across the central conductive wiring and has a first contact connecting the first input terminal and a first end connecting the central end. The second conductive wiring extends across the central conductive wiring and interlaces with the first conductive wiring and has a second contact connecting the second input terminal and a second end connecting the central end. Corresponding portions of wiring sections of the first and second conductive wirings at opposite sides of the central conductive wiring are asymmetrical to one another to thereby save substrate space and facilitate circuit layout.
    • 非对称差分电感器包括螺旋地设置在具有第一输入端子,第二输入端子,接地端子和中心导电布线的基板上的第一和第二导电布线。 中心导电布线具有连接接地端子和远离接地端子的中心端的中心接触点。 第一导电布线延伸穿过中心导电布线,并且具有连接第一输入端和连接中心端的第一端的第一触点。 所述第二导电布线延伸穿过所述中心导电布线并与所述第一导电布线交织,并且具有连接所述第二输入端子和连接所述中心端部的第二端部的第二触点。 在中心导电布线的相对侧的第一和第二导电布线的布线部分的相应部分彼此不对称,从而节省基板空间并且便于布线。
    • 5. 发明授权
    • Symmetric differential inductor structure
    • 对称差分电感结构
    • US08305182B1
    • 2012-11-06
    • US13243138
    • 2011-09-23
    • Ming-Fan TsaiKuan-Yu ChenBo-Shiang FangHsin-Hung Lee
    • Ming-Fan TsaiKuan-Yu ChenBo-Shiang FangHsin-Hung Lee
    • H01F5/00H01F27/28
    • H01L23/5227H01F19/04H01L2924/0002H01L2924/00
    • A symmetric differential inductor structure includes first, second, third and fourth spiral conductive wirings disposed in four quadrants of a substrate, respectively. Further, a fifth conductive wiring connects the first and fourth spiral conductive wirings, and a sixth conductive wiring connects the second and third spiral conductive wirings. The first and second spiral conductive wirings are symmetric but not intersected with one another, and the third and fourth spiral conductive wirings are symmetric but not intersected with one another. Therefore, the invention attains full geometric symmetry to avoid using conductive wirings that occupy a large area of the substrate as in the prior art and to thereby increase the product profit and yield.
    • 对称差分电感器结构包括分别设置在基板的四个象限内的第一,第二,第三和第四螺旋导电布线。 此外,第五导电布线连接第一和第四螺旋导电布线,并且第六导电布线连接第二和第三螺旋导电布线。 第一和第二螺旋导电布线是对称的,但是彼此不相交,第三和第四螺旋导电布线是对称的但彼此不相交。 因此,本发明获得完全的几何对称性,以避免如现有技术那样使用占据基板的大面积的导电布线,从而提高产品利润和产量。
    • 7. 发明授权
    • Mounting structure for electronic device
    • 电子设备的安装结构
    • US08238096B2
    • 2012-08-07
    • US12551457
    • 2009-08-31
    • Guang-Xing ZhenQing-Hui MiHsin-Hung LeeMing-Hui TsaiGuang-Yao Lee
    • Guang-Xing ZhenQing-Hui MiHsin-Hung LeeMing-Hui TsaiGuang-Yao Lee
    • G06F1/16
    • G06F1/187
    • An mounting structure includes an enclosure, a bracket, a latching member, and an elastic member. The enclosure includes opposite first and second sidewalls. An insert hole is defined in each of the first and second sidewalls. A latching hole is defined in the first sidewall. The bracket to receive an electronic device includes opposite first and second sides. An insert extends from each of the first and second sides. The inserts can be inserted in the insert holes. The latching member is rotatably mounted to the bracket. The latching member includes a main body, and a latching pole extending from the main body. The elastic member can bias the latching member to rotate to a latching position in which the latching pole is inserted in the latching hole of the enclosure.
    • 安装结构包括外壳,支架,闩锁构件和弹性构件。 外壳包括相对的第一和第二侧壁。 在第一和第二侧壁中的每一个中限定插入孔。 锁定孔限定在第一侧壁中。 用于接收电子设备的支架包括相对的第一和第二侧。 插入件从第一和第二侧中的每一个延伸。 插入件可插入插入孔中。 闩锁构件可旋转地安装到支架上。 闩锁构件包括主体和从主体延伸的闩锁杆。 弹性构件可以偏置闩锁构件以旋转到闩锁位置,在闩锁位置中,闩锁杆插入到外壳的闩锁孔中。
    • 9. 发明授权
    • Electrofluidic display device and driving method thereof
    • 电流体显示装置及其驱动方法
    • US08213072B1
    • 2012-07-03
    • US13074008
    • 2011-03-29
    • Yun-Sheng KuWei-Yuan ChengShu-Wei KuoHsin-Hung LeeKuo-Lung Lo
    • Yun-Sheng KuWei-Yuan ChengShu-Wei KuoHsin-Hung LeeKuo-Lung Lo
    • G02F1/03G02B26/02
    • G09G3/348G02B26/005G09G3/2018G09G3/207
    • An electrofluidic display device including a first structure layer and a second structure layer is provided. The first structure layer includes a first substrate. A trench structure layer is disposed on the first substrate and has a trench surrounding an indent groove of a second substrate. A first electrode layer is disposed on the first substrate. A first hydrophobic layer is disposed on the first electrode layer. The second structure layer having the second substrate is located aside the first substrate with a gap. A groove structure layer is disposed on the second substrate. The groove structure has the indent groove surrounded by the trench. A second electrode layer is disposed on the groove structure layer. A second hydrophobic layer is disposed on the second electrode layer. Polar fluid is disposed in the indent groove. Non-polar fluid is disposed in the gap between the first and second substrates.
    • 提供一种包括第一结构层和第二结构层的电流体显示装置。 第一结构层包括第一基板。 沟槽结构层设置在第一衬底上并且具有围绕第二衬底的凹槽的沟槽。 第一电极层设置在第一基板上。 第一疏水层设置在第一电极层上。 具有第二基板的第二结构层位于第一基板的间隙之间。 凹槽结构层设置在第二基板上。 凹槽结构具有由沟槽包围的凹槽。 第二电极层设置在沟槽结构层上。 第二疏水层设置在第二电极层上。 极性流体设置在凹槽中。 非极性流体设置在第一和第二基板之间的间隙中。
    • 10. 发明授权
    • Repairing methods of pixel structure and organic electro-luminescence displaying unit
    • 像素结构和有机电致发光显示单元的修复方法
    • US08092268B2
    • 2012-01-10
    • US12575474
    • 2009-10-08
    • Chih-Wen YaoHsin-Hung Lee
    • Chih-Wen YaoHsin-Hung Lee
    • H01L21/00H01J9/50
    • G09G3/3233G09G2300/0842G09G2330/08H01L27/124H01L27/3223H01L27/3244H01L2251/568
    • The invention provides a method of repairing the pixel structure, and the method includes the following. First, an electrical connection between the current control unit and the power line is cut. The power line is then electrically connected to the redundant active device, so that the current control unit and the redundant active device control the current provided by the power line. The invention provides a method of repairing the organic electro-luminescence display unit, suitable for repairing the above-mentioned organic electro-luminescence display unit, and the method includes the following. First, an electrical connection between the current control unit and the power line is cut. The power line is electrically connected to the redundant active device, so that the current control unit and the redundant active device control the current passing through the organic electro-luminescence layer.
    • 本发明提供一种修复像素结构的方法,该方法包括以下步骤。 首先,切断电流控制单元与电力线之间的电连接。 电力线然后电连接到冗余有源器件,使得电流控制单元和冗余有源器件控制电力线提供的电流。 本发明提供一种修复有机电致发光显示单元的方法,适用于修复上述有机电致发光显示单元,该方法包括以下步骤。 首先,切断电流控制单元与电力线之间的电连接。 电力线电连接到冗余有源器件,使得电流控制单元和冗余有源器件控制通过有机电致发光层的电流。