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    • 21. 发明授权
    • Holding device for dense wavelength division multiplexers
    • 用于密集波分复用器的保持装置
    • US06483980B1
    • 2002-11-19
    • US10012005
    • 2001-11-30
    • Kun-Tsan WuChien-Cheng Chen
    • Kun-Tsan WuChien-Cheng Chen
    • G02B600
    • G02B6/4471G02B6/2937G02B6/2938G02B6/3636G02B6/4454Y10S439/942
    • A holding device (200) used for a DWDM module. The holding device comprises a base (201), a plurality of projections (209), a plurality of C-shaped grooves (205) interleavingly defined between the projections, and a plurality of C-shaped slots (210) defined in upper portions of the projections respectively. An upper portion of each projection forms two chamfers (211, 212), on opposite sides of the corresponding slot. The chamfers extend inclinedly upwardly in a mutually diverging manner. The upper portion of each projection also forms two opposite slanted faces (207, 208). Two slanted faces of any two projections that oppose each other across an intervening groove extend inclinedly upwardly in a mutually diverging manner. The grooves hold sleeves (101) that enclose DWDMs (100). The slots hold optical fibers (102) of and connecting with the DWDMs.
    • 一种用于DWDM模块的保持装置(200)。 保持装置包括基部(201),多个突起(209),交替地限定在突起之间的多个C形槽(205)和限定在突起之间的多个C形槽(210) 分别预测。 每个突起的上部在对应的狭槽的相对侧上形成两个倒角(211,212)。 倒角以相互发散的方式倾斜向上延伸。 每个突起的上部也形成两个相对的倾斜面(207,208)。 任何两个突出部分的两个倾斜的两个倾斜的表面横跨中间的沟槽彼此相对,以相互发散的方式倾斜地向上延伸。 凹槽保持围绕DWDM(100)的套管(101)。 这些插槽保持与DWDM连接的光纤(102)。
    • 22. 发明授权
    • Knee joint prosthesis
    • 膝关节假体
    • US08444705B2
    • 2013-05-21
    • US13308014
    • 2011-11-30
    • Chien-Wen ChenChien-Cheng Chen
    • Chien-Wen ChenChien-Cheng Chen
    • A61F2/48
    • A61F2/644A61F2/76A61F2002/5006A61F2002/5007A61F2002/5021A61F2002/5033A61F2002/5043A61F2002/5073
    • A knee joint prosthesis is adapted for interconnecting a prosthetic lower leg and a prosthetic thigh. The knee joint prosthesis includes a knee seat disposed under and connected to the prosthetic thigh, a connecting seat disposed above and connected to the prosthetic lower leg, a link assembly, and an adjusting unit. The link assembly includes a plurality of links each connected pivotally to the knee seat and the connecting seat in such a manner to allow the knee joint prosthesis to change between an elevated position and a flexed position. The adjusting unit is disposed in the knee seat, and is operable to cooperate with the link assembly to adjust difficulty level of changing the knee joint prosthesis between the elevated and flexed positions.
    • 膝关节假体适于将假肢小腿和假腿大腿相互连接。 膝关节假体包括设置在假体大腿下方并连接到假体大腿的膝盖座,设置在假肢小腿上方并连接到假肢小腿的连接座,连杆组件和调节单元。 连杆组件包括多个连接件,每个连接件以这样的方式枢转地连接到膝盖座和连接座,以允许膝关节假体在升高位置和弯曲位置之间改变。 调节单元设置在膝盖座中,并且可操作以与连杆组件协作,以调节在升高位置和弯曲位置之间改变膝关节假体的难度水平。
    • 24. 发明授权
    • Liquid crystal display device with pixel electrode voltage differential
    • 具有像素电极电压差的液晶显示装置
    • US07633575B2
    • 2009-12-15
    • US12157066
    • 2008-06-06
    • Chien-Cheng ChenYu-Cheng LinHung-Yu Chen
    • Chien-Cheng ChenYu-Cheng LinHung-Yu Chen
    • G02F1/136
    • G02F1/1368G02F1/133707G02F1/1393H01L27/12
    • An exemplary liquid crystal display (100) includes gate lines (122), and data lines (123) cooperatively defining pixel units. Each pixel unit includes a first thin film transistor (TFT) (125), a second TFT (126), a first pixel electrode (127), and a second pixel electrode (128). Gate electrodes of the two TFTs are connected to one of the gate lines. A source electrode of the first TFT is connected to one of the data lines. A drain electrode of the first TFT is connected to the first pixel electrode. A source electrode of the second TFT is connected to the first pixel electrode. A drain electrode of the second TFT is connected to the second pixel electrode. A channel width/length ratio of the second TFT is such that a voltage of the drain electrode thereof is less than a voltage of the source electrode thereof when the second TFT is switched on.
    • 示例性液晶显示器(100)包括门线(122)和协作地限定像素单元的数据线(123)。 每个像素单元包括第一薄膜晶体管(TFT)(125),第二TFT(126),第一像素电极(127)和第二像素电极(128)。 两个TFT的栅电极连接到一条栅极线。 第一TFT的源极连接到数据线之一。 第一TFT的漏极连接到第一像素电极。 第二TFT的源极连接到第一像素电极。 第二TFT的漏电极连接到第二像素电极。 当第二TFT接通时,第二TFT的沟道宽度/长度比使得其漏电极的电压小于其源电极的电压。
    • 26. 发明申请
    • Liquid crystal display device with pixel electrode voltage differential
    • 具有像素电极电压差的液晶显示装置
    • US20080303969A1
    • 2008-12-11
    • US12157066
    • 2008-06-06
    • Chien-Cheng ChenYu-Cheng LinHung-Yu Chen
    • Chien-Cheng ChenYu-Cheng LinHung-Yu Chen
    • H01L29/04G02F1/136
    • G02F1/1368G02F1/133707G02F1/1393H01L27/12
    • An exemplary liquid crystal display (100) includes gate lines (122), and data lines (123) cooperatively defining pixel units. Each pixel unit includes a first thin film transistor (TFT) (125), a second TFT (126), a first pixel electrode (127), and a second pixel electrode (128). Gate electrodes of the two TFTs are connected to one of the gate lines. A source electrode of the first TFT is connected to one of the data lines. A drain electrode of the first TFT is connected to the first pixel electrode. A source electrode of the second TFT is connected to the first pixel electrode. A drain electrode of the second TFT is connected to the second pixel electrode. A channel width/length ratio of the second TFT is such that a voltage of the drain electrode thereof is less than a voltage of the source electrode thereof when the second TFT is switched on.
    • 示例性液晶显示器(100)包括门线(122)和协作地限定像素单元的数据线(123)。 每个像素单元包括第一薄膜晶体管(TFT)(125),第二TFT(126),第一像素电极(127)和第二像素电极(128)。 两个TFT的栅电极连接到一条栅极线。 第一TFT的源极连接到数据线之一。 第一TFT的漏极连接到第一像素电极。 第二TFT的源极连接到第一像素电极。 第二TFT的漏电极连接到第二像素电极。 当第二TFT接通时,第二TFT的沟道宽度/长度比使得其漏电极的电压小于其源电极的电压。
    • 27. 发明申请
    • Circuit board testing jig
    • 电路板测试夹具
    • US20080205005A1
    • 2008-08-28
    • US11709221
    • 2007-02-22
    • Chien-Cheng ChenI-Wei Shen
    • Chien-Cheng ChenI-Wei Shen
    • H05K7/20
    • G01R31/2808G01R31/2891
    • A circuit board testing jig for testing a circuit board and dissipating heats generated by a heat-generating electronic element of the circuit board is provided. The circuit board testing jig includes a fixing frame, a platform, and a displacement mechanism. The fixing frame and the platform are respectively used to support the circuit board and a heatsink module. The displacement mechanism enables the platform to move between a ready position and an attached position. When the platform is located at the ready position, the heatsink module on the platform is separated from the heat-generating electronic element; when the platform is located at the attached position, the heatsink module is pressed onto the heat-generating electronic element, for dissipating the heats generated by the heat-generating electronic element.
    • 提供了用于测试电路板并消散由电路板的发热电子元件产生的热量的电路板测试夹具。 电路板测试夹具包括固定框架,平台和位移机构。 固定架和平台分别用于支撑电路板和散热模块。 位移机构使得平台能够在就绪位置和附接位置之间移动。 当平台位于就绪位置时,平台上的散热器模块与发热电子元件分离; 当平台位于附接位置时,散热模块被压到发热电子元件上,用于消散由发热电子元件产生的热量。
    • 30. 发明授权
    • Multi-electrode measuring system
    • 多电极测量系统
    • US08134357B2
    • 2012-03-13
    • US12777942
    • 2010-05-11
    • Jung-Chuan ChouWei-Chuan ChenCheng-Wei ChenChien-Cheng Chen
    • Jung-Chuan ChouWei-Chuan ChenCheng-Wei ChenChien-Cheng Chen
    • G01R13/00
    • G01N27/27
    • The invention provides a multi-electrode measuring system including a front end device which is a sensing device including a multi-electrode sensing device having a plurality of electrodes; a multi-channel fixture coupled to the multi-electrode sensing device; and a reference electrode. A back-end device as a virtual instrumentation is an electronic device including a read out circuit device coupled to the multi-channel fixture and the reference electrode for receiving each original signal from each electrode of the multi-electrode sensing device and the reference electrode determining a sample solution; a data acquisition device coupled to the read out circuit device for digitizing each original signal to form a digital signal and for array sampling; and a signal processing device coupled to the data acquisition device for processing each signal.
    • 本发明提供一种多电极测量系统,包括前端装置,其是包括具有多个电极的多电极感测装置的感测装置; 耦合到所述多电极感测装置的多通道固定装置; 和参考电极。 作为虚拟仪器的后端设备是包括耦合到多通道固定装置的读出电路装置和参考电极的电子装置,用于从多电极感测装置的每个电极接收每个原始信号,并且参考电极确定 样品溶液; 耦合到读出电路装置的数据采集装置,用于数字化每个原始信号以形成数字信号并进行阵列采样; 以及耦合到数据采集装置的信号处理装置,用于处理每个信号。