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    • 4. 发明授权
    • Thermal-mechanical flexible overload sensor
    • 热机械柔性过载传感器
    • US09460880B2
    • 2016-10-04
    • US14553131
    • 2014-11-25
    • SCHNEIDER ELECTRIC USA, INC.
    • Juan Ignacio Melecio RamirezWaldo Jesus Arcos MedinaGabriela Isabel Rubio Barraza
    • H01H71/18H01H61/06H01H81/02H01H61/00H01H85/00H01H61/04
    • H01H61/04H01H61/063
    • An overload relay is provided for electrical equipment, such as a motor. The overload relay includes a set of electrical contacts, a trip mechanism and a single-arm, a set of monolithic compliant mechanism actuators. The trip mechanism has a normal position and a tripped position. The normal position allows electrical connection between the electrical contacts, and the tripped position interrupts electrical connection between the electrical contacts in response to detection of a high current condition. The single-arm actuator is formed of an electrically conductive material, and includes a compliant hinge and a single bar connected to the hinge. The single bar is electrically coupled to the line contact or the load contact. Under the high current condition, one of first and second ends of the single bar deflects relative to the compliant hinge to cause the trip mechanism to move into the tripped position.
    • 为电气设备(如电机)提供过载继电器。 过载继电器包括一组电触点,跳闸机构和单臂,一组单片顺应机构致动器。 跳闸机构具有正常位置和跳闸位置。 正常位置允许电触点之间的电连接,并且跳闸位置响应于高电流状况的检测而中断电触点之间的电连接。 单臂致动器由导电材料形成,并且包括柔性铰链和连接到铰链的单个杆。 单个条电线耦合到线路接触或负载接触。 在高电流条件下,单个杆的第一和第二端中的一个相对于柔性铰链偏转,以使脱扣机构移动到跳闸位置。
    • 5. 发明授权
    • Assembly of electric motor starter components
    • 组装电动机起动器部件
    • US09025286B2
    • 2015-05-05
    • US13530338
    • 2012-06-22
    • Keith WashburnChristian V. PellonKevin DroppsMark C. CarlosDaniel Quinn
    • Keith WashburnChristian V. PellonKevin DroppsMark C. CarlosDaniel Quinn
    • H02H5/04H01H61/00F04B39/12
    • H01H61/002F04B39/121Y10T29/49117
    • Techniques disclosed herein include systems and methods for assembly of electric motor starter connecting packages that enable increased automation and reduced assembly via top-down assembly of circuit components, thereby allowing robotic placement, connection, and securing of circuit components. The connecting package can include an electric motor starter, with optional overload protector, packaged as one unit. The motor starter can include an electrical circuit containing a triac, current transformer, Positive Temperature Coefficient (PTC) element, resistor, and a capacitor. A cover and base of the connecting package enclose and firmly secure connected circuit elements without needing a circuit board or filler material. The device design enables quick testing of the motor starter circuit and circuit elements after being enclosed by the housing.
    • 本文公开的技术包括用于组装电动机起动器连接包装的系统和方法,其能够通过电路部件的自顶向下组件实现增加的自动化和减少组装,从而允许机器人放置,连接和电路部件的固定。 连接包装可以包括一个电动起动器,带有可选的过载保护器,作为一个单元包装。 电动机起动器可以包括一个包含三端双向可控硅开关元件,电流互感器,正温度系数(PTC)元件,电阻器和电容器的电路。 连接包装的盖子和底座包围并牢固地固定连接的电路元件,而不需要电路板或填充材料。 该设备设计可以在外壳封闭后对电机起动电路和电路元件进行快速测试。
    • 7. 发明授权
    • Thermal actuator for a MEMS-based relay switch
    • 用于基于MEMS的继电器开关的热致动器
    • US08154378B2
    • 2012-04-10
    • US11836860
    • 2007-08-10
    • Validmir Anatolyevich AksyukFlavio PardoMaria Elina Simon
    • Validmir Anatolyevich AksyukFlavio PardoMaria Elina Simon
    • H01H61/00H01H71/16H01H71/18H01H61/02F01B29/10F02G1/04
    • H01H61/02B81B3/0024B81B2201/014B81B2201/031H01H2061/008
    • A representative embodiment of the invention provides a thermal actuator for a MEMS-based relay switch. The thermal actuator has an “active” arm that is movably mounted on a substrate. The “active” arm has (i) a thermal expansion layer and (ii) a resistive heater that is electrically isolated from the thermal expansion layer. The thermal expansion layer is adapted to expand in response to a temperature change induced by a control current flowing through the resistive heater, thereby bending the “active” arm and moving that arm with respect to the substrate. Due to the fact that mechanical and electrical characteristics of the “active” arm are primarily controlled by the thermal expansion layer and the resistive heater, respectively, those characteristics can be optimized independently to obtain better operating characteristics for MEMS-based relay switches of the invention compared to those attained in the prior art.
    • 本发明的代表性实施例提供了一种用于基于MEMS的继电器开关的热致动器。 热致动器具有可移动地安装在基板上的“主动”臂。 “主动”臂具有(i)热膨胀层和(ii)与热膨胀层电隔离的电阻加热器。 热膨胀层适应于由流过电阻加热器的控制电流引起的温度变化而膨胀,从而弯曲“主动”臂并相对于基板移动该臂。 由于“主动”臂的机械和电气特性分别主要由热膨胀层和电阻加热器控制,可以独立地优化这些特性以获得本发明的基于MEMS的继电器开关更好的工作特性 与现有技术中获得的相比。