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    • 1. 发明申请
    • RECEPTACLE CONTACT
    • RECEPTACLE联系人
    • WO2016093993A1
    • 2016-06-16
    • PCT/US2015/059494
    • 2015-11-06
    • TYCO ELECTRONICS CORPORATION
    • MYER, John MarkMOLL, Hurley ChesterWITTENSOLDNER, Paul EricWITMER, Michael P.
    • H01R13/11H01R13/115
    • H01R4/4809H01R13/113H01R13/115H01R13/187H01R43/16Y10T29/49117
    • A receptacle contact (110) includes a resilient contact arm (152) having at least one contact area (160) for contacting a mating contact (32). A support arm (164) is stamped and formed from an area of a wall (134) of the receptacle contact (110). The support arm (164) cooperates with the resilient contact arm (152) to support the resilient contact arm. An overstress member (167) is provided on the wall (134) of the receptacle contact (110). The overstress member (167) is formed to extend into the area of the wall from which the support arm (164) was formed. The overstress member (167) cooperates with the support arm (164) to prevent the support arm (164) from being moved beyond the overstress member (167) and beyond the area of the wall (134) from which the support arm (164) was formed, thereby ensuring that the resilient contact arm (152) and the support arm (164) will provide sufficient normal force to maintain a mechanical and electrical engagement with a mating contact (32).
    • 插座触点(110)包括弹性接触臂(152),其具有用于接触配合触头(32)的至少一个接触区域(160)。 支撑臂(164)由插座触点(110)的壁(134)的区域冲压成形。 支撑臂(164)与弹性接触臂(152)协作以支撑弹性接触臂。 在所述插座触点(110)的壁(134)上设置有过应力构件(167)。 过应力构件(167)形成为延伸到形成有支撑臂(164)的壁的区域中。 所述过应力构件(167)与所述支撑臂(164)协作以防止所述支撑臂(164)移动超过所述过应力构件(167)并超出所述壁(134)的所述支撑臂(164)的区域, 形成,从而确保弹性接触臂(152)和支撑臂(164)将提供足够的法向力以保持与配合触头(32)的机械和电接合。
    • 5. 发明申请
    • FILAMENT LED LAMP
    • FILAMENT LED灯
    • WO2014172615A3
    • 2015-05-21
    • PCT/US2014034617
    • 2014-04-18
    • TECHNICAL CONSUMER PRODUCTS INC
    • CHEN TIMOTHYUHLER GEORGE
    • H01J61/52
    • F21V29/004F21K9/232F21K9/90F21V3/00F21V23/009F21V29/80F21Y2115/10Y10T29/49117
    • An LED lamp includes a thermally conductive base including an appendage protruding from a center of a first end and an opening to cavity on a second end. The appendage includes a channel coupled to the cavity. The LED lamp further includes an LED assembly disposed at an end of the protruding appendage and in thermal communication with the base. The LED assembly further includes a bulb disposed on the first end, wherein the appendage protrudes in a direction towards the center of the bulb, and wherein the LED assembly is proximate to the center of the bulb. The LED assembly further includes an electrical housing, configured to house an electrical module, disposed inside the cavity of the base. An electrical wire disposed inside the channel electrically couples the LED assembly to the electrical module.
    • LED灯包括导热底座,其包括从第一端的中心突出的附件和在第二端上的空腔的开口。 附件包括耦合到空腔的通道。 LED灯还包括设置在突出附件的端部并与基座热连通的LED组件。 LED组件还包括设置在第一端上的灯泡,其中附件沿朝向灯泡中心的方向突出,并且其中LED组件靠近灯泡的中心。 LED组件还包括电气外壳,其被配置为容纳设置在基座的空腔内部的电气模块。 设置在通道内部的电线将LED组件电耦合到电气模块。
    • 7. 发明申请
    • TAMPER PROTECTION MESH IN AN ELECTRONIC DEVICE
    • 电子设备中的夯保护网
    • WO2015050746A1
    • 2015-04-09
    • PCT/US2014/057044
    • 2014-09-23
    • SQUARE, INC.
    • WADE, JeremyTEMPLETON, ThomasWEBER, TrentLAMFALUSI, Michael
    • H05K9/00H05K5/02
    • G06K7/0095G06K7/0078G06K7/10257Y10T29/49117
    • A technique for tamper protection in an electronic device is disclosed. A conductive mesh is affixed onto one or more interior surfaces of the outer housing of the device. The mesh includes one or more conductive traces coupled to one or more detectors within the device. The detector can detect an open-circuit or short-circuit condition resulting from an unauthorized attempt to open the housing, and output a signal to trigger an appropriate countermeasure. The electrical contacts along the trace that are monitored can be selected differently from one manufactured unit to the next, and can be selected based on a randomness function. The selection of contacts may be made during or after manufacturing of the device. The mesh can include multiple metal traces that run very close together, in parallel, across one or more interior surfaces of the housing, allowing detection of both open-circuit and short-circuit conditions.
    • 公开了一种用于电子设备中的防篡改技术。 将导电网固定在装置外壳的一个或多个内表面上。 网格包括耦合到设备内的一个或多个检测器的一个或多个导电迹线。 检测器可以检测未经授权的打开外壳的尝试导致的开路或短路状况,并输出信号以触发适当的对策。 被监测的迹线上的电触点可以从一个制造的单元到下一个不同的选择,并且可以基于随机函数来选择。 触点的选择可以在器件制造期间或之后进行。 网状物可以包括跨过壳体的一个或多个内表面非常接近地并行运行的多个金属迹线,允许检测开路和短路条件。
    • 10. 发明申请
    • INTEGRAL SENSOR
    • 整体传感器
    • WO2015034874A1
    • 2015-03-12
    • PCT/US2014/053805
    • 2014-09-03
    • CAMERON INTERNATIONAL CORPORATION
    • MCHUGH, EdmundMULLIN, Michael D.
    • E21B47/10
    • G01D11/245G01L9/0007Y10T29/49117Y10T29/49826
    • An integral sensor system is provided. In one embodiment, the system includes a sensor (28, 30, 38, 46, 66, 134) installed in a carrier (44) and a component (14, 16, 18, 20, 22, 68, 84, 98, 118) having a body (70) for receiving a fluid. The carrier is integrated into the component to enable the sensor to detect one or more characteristics of the fluid, and the carrier is integrated into the component such that an interface between the carrier and the component is a fully integral pressure boundary without a seal connection between the carrier and the component. The carrier can be welded (80, 94, 108, 124) to the component to form the integral pressure boundary. Additional systems, devices, and methods are also disclosed.
    • 提供了一体的传感器系统。 在一个实施例中,该系统包括安装在载体(44)和组件(14,16,18,20,22,68,84,98,118)中的传感器(28,30,38,46,66,134) )具有用于接收流体的主体(70)。 载体被集成到部件中以使得传感器能够检测流体的一个或多个特性,并且载体被集成到部件中,使得载体和部件之间的界面是完全整体的压力边界,而没有密封连接 载体和组件。 载体可以被焊接(80,94,108,124)到组件以形成整体压力边界。 还公开了附加的系统,装置和方法。