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    • 1. 发明授权
    • Enhanced withstand voltage micro switch
    • 增强耐压微动开关
    • US08383975B2
    • 2013-02-26
    • US13016749
    • 2011-01-28
    • Ching-Hsin LinKing-Long Lee
    • Ching-Hsin LinKing-Long Lee
    • H01H5/30
    • H01H13/36H01H9/02H01H9/30H01H2050/028
    • An enhanced withstand voltage micro switch includes a base and a cap covering the base. The cap has a press element movable up and down. The base has a conductive member depressed by the press element and a connecting section extended upwards. The base also includes a first contact, and a second contact extended from the connecting section and located above the first contact. The conductive member is swung during up and down movement of the press element to connect with the first or the second contact. The connecting section has an isolation portion jutting sideward between the first and second contacts to prevent generation of a conductive layer caused by connection of the conductive member with the first and second contacts on the connecting section. Thus secured insulation can be formed between the first and second contacts to withstand a higher voltage test.
    • 增强的耐压微型开关包括基座和覆盖基座的盖。 盖具有可上下移动的按压元件。 基座具有由压力元件压下的导电部件和向上延伸的连接部。 基座还包括第一触点和从连接部分延伸并位于第一触点上方的第二触点。 在按压元件的上下移动期间,导电构件摆动以与第一或第二接触件连接。 连接部分具有在第一和第二触点之间向侧面突出的隔离部分,以防止由导电部件与连接部分上的第一和第二触头的连接引起的导电层的产生。 因此,可以在第一和第二触点之间形成固定的绝缘体,以经受更高的电压测试。
    • 2. 发明申请
    • ENHANCED WITHSTAND VOLTAGE MICRO SWITCH
    • 增强耐电压微动开关
    • US20120193197A1
    • 2012-08-02
    • US13016749
    • 2011-01-28
    • Ching-Hsin LINKing-Long LEE
    • Ching-Hsin LINKing-Long LEE
    • H01H9/02
    • H01H13/36H01H9/02H01H9/30H01H2050/028
    • An enhanced withstand voltage micro switch includes a base and a cap covering the base. The cap has a press element movable up and down. The base has a conductive member depressed by the press element and a connecting section extended upwards. The base also includes a first contact, and a second contact extended from the connecting section and located above the first contact. The conductive member is swung during up and down movement of the press element to connect with the first or the second contact. The connecting section has an isolation portion jutting sideward between the first and second contacts to prevent generation of a conductive layer caused by connection of the conductive member with the first and second contacts on the connecting section. Thus secured insulation can be formed between the first and second contacts to withstand a higher voltage test.
    • 增强的耐压微型开关包括基座和覆盖基座的盖。 盖具有可上下移动的按压元件。 基座具有由压力元件压下的导电部件和向上延伸的连接部。 基座还包括第一触点和从连接部分延伸并位于第一触点上方的第二触点。 在按压元件的上下移动期间,导电构件摆动以与第一或第二接触件连接。 连接部分具有在第一和第二触点之间向侧面突出的隔离部分,以防止由导电部件与连接部分上的第一和第二触头的连接引起的导电层的产生。 因此,可以在第一和第二触点之间形成固定的绝缘体,以经受更高的电压测试。
    • 3. 发明申请
    • MICROSWITCH ENDURING MORE CYCLES OF PRESSING ACTIVITIES
    • MICROSWITCH忍受更多的压力活动周期
    • US20140042006A1
    • 2014-02-13
    • US13584294
    • 2012-08-13
    • Ching-Hsin LinKing-Long Lee
    • Ching-Hsin LinKing-Long Lee
    • H01H1/26
    • H01H13/42H01H13/28H01H13/46
    • A microswitch comprises an accommodation room thereinside, a common terminal, an NC terminal and an NO terminal that are extended from the accommodation room, and a pressing element. The accommodation room further holds an operating element and an elastic element. The operating element has a pressed member located at one side of the common terminal and compressed by the pressing element, and a conduction member located at another side of the common terminal and interposed between the NC terminal and NO terminal. The elastic element is arranged between the common terminal and the conduction member, and has a first fixing portion coupled to the common terminal and a second fixing portion coupled to the conduction member. The operating element is normally supported by the elastic element to contact the NC terminal and pushed down by the pressing element to disconnect from the NC terminal and contact the NO terminal.
    • 微型开关包括其内部的容纳室,从容纳室延伸的公共端子,NC端子和NO端子以及按压元件。 住宿室还容纳操作元件和弹性元件。 操作元件具有位于公共端子一侧并被按压元件压缩的按压构件,以及位于公共端子另一侧的导电构件,并且插入在NC端子和NO端子之间。 弹性元件布置在公共端子和导电构件之间,并且具有联接到公共端子的第一固定部分和耦合到导电构件的第二固定部分。 操作元件通常由弹性元件支撑以接触NC端子并被按压元件推下以与NC端子断开并接触NO端子。
    • 4. 发明授权
    • Structure of flexible element
    • 柔性元件结构
    • US07371983B1
    • 2008-05-13
    • US11802207
    • 2007-05-21
    • Ching-Hsin LinWen-Hung Wu
    • Ching-Hsin LinWen-Hung Wu
    • H01H33/02
    • H01H1/26H01H3/12H01H9/16
    • A structure of a flexible element has a force-receiving portion and a fixing portion, wherein the force-receiving portion is extended to have two arms for connecting with the fixing portion, so as to form two bending portions therebetween, characterized in that an inner end point is defined inside the fixing portion and the inner edges of the fixing portion are extended from the inner edges of the bending portion and intersected at the inner end point, so that a force-distributing section is defined between the bending portion and the inner end point, for distributing the torque applied on the bending portion, so as to eliminate the problem of too much concentrated stress.
    • 柔性元件的结构具有受力部和固定部,其中受力部延伸成具有用于与固定部连接的两个臂,以在其间形成两个弯曲部,其特征在于,内部 端部被限定在固定部分内部,并且固定部分的内边缘从弯曲部分的内边缘延伸并且在内端点处相交,使得分配部分在弯曲部分和内部 终点,用于分配施加在弯曲部分上的扭矩,以消除太大的集中应力的问题。
    • 5. 发明申请
    • ENHANCED RETURNING ELASTICITY MICRO SWITCH
    • 增强弹性微动开关
    • US20120193196A1
    • 2012-08-02
    • US13016668
    • 2011-01-28
    • Ching-Hsin LINKing-Long Lee
    • Ching-Hsin LINKing-Long Lee
    • H01H9/02
    • H01H1/26H01H13/36
    • An enhanced returning elasticity micro switch includes a base and a cap mounted thereon to form a housing compartment therebetween. The base is run through by a first pin and a second pin. The first pin has an anchor portion in the housing compartment to couple with a conductive member. The conductive member has a lower contact portion and swings when being pressed. The second pin has a first contact in the housing compartment. The first contact has an inclined surface connected to the lower contact portion during swing of the conductive member. The inclined surface is located at an elevation tapered towards the anchor portion. Hence the contact area between the conductive member and second pin increases, and adhesion force between the conductive member and second pin during power transmission decreases. Returning elasticity of the conductive member increases, and resistance against depression of the conductive member decreases.
    • 增强的返回弹性微动开关包括底座和安装在其上的盖,以在它们之间形成壳体隔间。 底座通过第一针和第二针穿过。 第一销在壳体隔室中具有锚定部分以与导电构件联接。 导电构件具有下接触部分并且在被按压时摆动。 第二销在壳体隔室中具有第一接触。 第一接触件在导电构件的摆动期间具有连接到下接触部分的倾斜表面。 倾斜表面位于朝向锚定部分逐渐变细的高度。 因此,导电构件和第二销之间的接触面积增加,并且在动力传递期间导电构件和第二销之间的粘合力降低。 导电部件的返回弹性增加,导电部件的压下阻力降低。
    • 6. 发明授权
    • Enhanced returning elasticity micro switch
    • 增强返回弹性微动开关
    • US08440927B2
    • 2013-05-14
    • US13016668
    • 2011-01-28
    • Ching-Hsin LinKing-Long Lee
    • Ching-Hsin LinKing-Long Lee
    • H01H5/14
    • H01H1/26H01H13/36
    • An enhanced returning elasticity micro switch includes a base and a cap mounted thereon to form a housing compartment therebetween. The base is run through by a first pin and a second pin. The first pin has an anchor portion in the housing compartment to couple with a conductive member. The conductive member has a lower contact portion and swings when being pressed. The second pin has a first contact in the housing compartment. The first contact has an inclined surface connected to the lower contact portion during swing of the conductive member. The inclined surface is located at an elevation tapered towards the anchor portion. Hence the contact area between the conductive member and second pin increases, and adhesion force between the conductive member and second pin during power transmission decreases. Returning elasticity of the conductive member increases, and resistance against depression of the conductive member decreases.
    • 增强的返回弹性微动开关包括底座和安装在其上的盖,以在它们之间形成壳体隔间。 底座通过第一针和第二针穿过。 第一销在壳体隔室中具有锚定部分以与导电构件联接。 导电构件具有下接触部分并且在被按压时摆动。 第二销具有在壳体隔室中的第一接触。 第一接触件在导电构件的摆动期间具有连接到下接触部分的倾斜表面。 倾斜表面位于朝向锚定部分逐渐变细的高度。 因此,导电构件和第二销之间的接触面积增加,并且在动力传递期间导电构件和第二销之间的粘合力降低。 导电部件的返回弹性增加,导电部件的压下阻力降低。