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    • 1. 发明授权
    • Method of assembling an electric motor
    • 组装电动机的方法
    • US5487213A
    • 1996-01-30
    • US236198
    • 1994-05-02
    • David R. HultJeffery L. YoungStuart V. Holsten
    • David R. HultJeffery L. YoungStuart V. Holsten
    • H01R39/415H02K5/14H02K15/16H02K15/14
    • H02K15/16H01R39/415H02K5/148Y10T29/49009
    • A motor manufacturing and its method of assembly are disclosed. The motor includes lower and upper end frames with bearings, an armature assembly rotatably mounted in the bearings of the lower and upper end frames, and a winding field assembly supported between the lower and upper end frames and surrounding the armature assembly. The method includes the steps of inserting one end of the armature assembly into the bearing of the lower end frame, positioning the winding field assembly over the armature assembly while also stacking the winding field assembly on the lower end frame, stacking the upper end frame on the winding field assembly while also positioning an opposite end of the armature assembly into the bearing of the upper end frame, and securing the lower end frame, winding field assembly and upper end frame to each other. Motor brush and brush holder assemblies are also secured to the upper end frame in a novel releasable locking arrangement, in order to provide self compensating adjustment of the brushes relative to a commutator that surrounds the armature assembly.
    • 公开了一种电动机制造及其组装方法。 电动机包括具有轴承的下端框架和上端框架,可旋转地安装在下端框架和上端框架的轴承中的电枢组件以及支撑在下端框架和上端框架之间并围绕电枢组件的绕组现场组件。 该方法包括以下步骤:将电枢组件的一端插入下端框架的轴承中,将绕组磁场组件定位在电枢组件上,同时将绕组磁场组件堆叠在下端框架上,将上端框架堆叠在 绕组磁场组件,同时将电枢组件的相对端定位到上端框架的轴承中,并将下端框架,绕组磁场组件和上端框架彼此固定。 电机刷和电刷架组件也以新颖的可释放锁定装置固定到上端框架,以便相对于围绕电枢组件的换向器提供电刷的自我补偿调整。
    • 2. 发明申请
    • Integrated Microstrip Circulator and Antenna Assembly
    • 集成微带循环器和天线组件
    • US20090309671A1
    • 2009-12-17
    • US12540327
    • 2009-08-12
    • Ryan S. AdamsJeffery L. YoungBenton O'Neil
    • Ryan S. AdamsJeffery L. YoungBenton O'Neil
    • H01P1/32
    • H01P1/387H01Q19/24H01Q19/30
    • Embodiments of integrated device and associated methods of design are provided. Such embodiments include a metallic ground plane, dielectric material, ferrite puck and formed metal layer configured to define circulator and microwave device portions, or functions, within an integrated device unit. Impedance characteristics of each functional portion are determined independent of one another and are optimized with respect to each function. Respective matching network portions of each integrated device optimally couple the circulator portion with a microwave device portion and one or more connector ports. Integrated devices of the present teachings can be applied modularly at the systems level of communications, radar, and/or other contexts.
    • 提供了集成设备和相关设计方法的实施例。 这样的实施例包括金属接地平面,介电材料,铁氧体圆盘和形成的金属层,其被配置为在集成器件单元内定义循环器和微波器件部分或功能。 每个功能部分的阻抗特性彼此独立地确定并且相对于每个功能被优化。 每个集成设备的各个匹配网络部分将循环器部分与微波设备部分和一个或多个连接器端口最佳地耦合。 本教导的集成设备可以在通信,雷达和/或其他上下文的系统级模块化地应用。