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    • 22. 发明授权
    • Compensating circuit board connector
    • 补偿电路板连接器
    • US07841860B1
    • 2010-11-30
    • US12559706
    • 2009-09-15
    • Wen-Hsiung Chen
    • Wen-Hsiung Chen
    • H01R12/00
    • H05K1/142H01R12/52H01R12/57H01R12/58H01R13/2442H01R13/6315H05K2201/10189
    • A compensating circuit board connector for connecting two adjacent circuit boards includes two sockets and a jumper. Each socket includes at least one receiving terminal having a conducting portion with two opposite sidewalls. The sockets are disposed on the circuit boards, respectively, so the conducting portions of the receiving terminals of the sockets jointly form an accommodating space. The jumper is mated with the sockets and includes at least one jumper terminal. The jumper terminal, configured for being received in the accommodating space, includes a frame and two resilient portions. The frame, narrower than a spacing between the opposite sidewalls of each receiving terminal, extends through the conducting portions of the receiving terminals of the sockets. The resilient portions, provided respectively at two ends of the frame, extend outward to each press against the opposite sidewalls of the corresponding receiving terminal, thereby electrically connecting the receiving terminals of the sockets.
    • 用于连接两个相邻电路板的补偿电路板连接器包括两个插座和一个跳线。 每个插座包括至少一个接收端子,其具有带有两个相对侧壁的导电部分。 插座分别设置在电路板上,因此插座的接收端子的导电部分共同形成容纳空间。 跳线与插座配合,并包括至少一个跳线端子。 被配置为容纳在容纳空间中的跨接端子包括框架和两个弹性部分。 窄于每个接收端子的相对侧壁之间的间隔的框架延伸穿过插座的接收端子的导电部分。 分别设置在框架的两端的弹性部分向外延伸抵靠相应接收端子的相对侧壁,从而电连接插座的接收端子。
    • 24. 发明申请
    • POWER SUPPLY AND HEAT-DISSIPATING METHOD OF THE POWER SUPPLY
    • 电源供电和散热方法
    • US20090272514A1
    • 2009-11-05
    • US12114733
    • 2008-05-02
    • Jung-Fa ChenWen-Hsiung Chen
    • Jung-Fa ChenWen-Hsiung Chen
    • H02B1/56H05K7/20
    • G06F1/20
    • A power supply is mounted in a case for a computer and has a shell, a blower assembly and multiple electrical components. The shell has a rear surface, a heat sink chamber, an electrical component chamber, an air inlet and an air outlet. The chambers have front end communicating with each other. The air inlet and the air outlet are formed through the rear surface of the shell. The blower assembly is mounted in the shell and is adjacent to the rear surface of the shell. The electrical components are mounted in the electrical component chamber and generate heat when the computer operates. The heat-dissipating method of the power supply is to extract air from outside the computer case into the shell to dissipate the heat generated by the electrical components. Using air at room temperature from outside the case is much more efficient to cool down the power supply.
    • 电源安装在用于计算机的壳体中,并且具有外壳,鼓风机组件和多个电气部件。 壳体具有后表面,散热室,电气部件室,空气入口和空气出口。 这些室具有彼此连通的前端。 空气入口和空气出口通过壳体的后表面形成。 鼓风机组件安装在壳体中并且与壳体的后表面相邻。 电气部件安装在电气部件室中,并在计算机工作时产生热量。 电源的散热方法是将计算机外壳外部的空气从外壳中抽出,以消散由电气部件产生的热量。 从外部使用室温的空气可以更有效地冷却电源。