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    • 2. 发明申请
    • ANNULAR ISOLATOR WITH SECONDARY FEATURES
    • 具有次要特征的环形隔离器
    • US20140001687A1
    • 2014-01-02
    • US13538235
    • 2012-06-29
    • Todd L. BramanScott James GoepfertTimothy J. Hanson
    • Todd L. BramanScott James GoepfertTimothy J. Hanson
    • F16F7/00F16F15/04B29C65/00
    • F16F15/08Y10T29/4998
    • In one embodiment, a motion attenuating isolator is provided. A main portion of the isolator includes one or more members composed of an elastomeric material. The one or more members are configured to form an annular shape between an isolated portion and a non-isolated portion. The main portion defines one or more circumferential gaps within the annular shape. A plurality of sets of secondary features is disposed within the circumferential gaps. Secondary features in the plurality of sets of secondary features are composed of an elastomeric material, and each set of secondary features includes a first secondary feature that extends from the isolated portion and a second secondary feature that extends from the non-isolated portion of the system. Each first secondary feature is configured to engage with a corresponding second secondary feature during displacement of the isolated portion with respect to the non-isolated portion in a respective direction.
    • 在一个实施例中,提供了运动衰减隔离器。 隔离器的主要部分包括由弹性体材料构成的一个或多个构件。 一个或多个构件构造成在隔离部分和非隔离部分之间形成环形形状。 主要部分限定环形内的一个或多个周向间隙。 多个次要特征组被设置在周向间隙内。 多组二次特征中的次要特征由弹性体材料组成,并且每组次要特征包括从隔离部分延伸的第一次要特征和从系统的非隔离部分延伸的第二次要特征 。 每个第一次要特征被构造成在隔离部分相对于相对于非隔离部分在相应方向上移位期间与相应的第二次要特征接合。
    • 3. 发明授权
    • Three-dimensional printed circuit board
    • 三维印刷电路板
    • US07919717B2
    • 2011-04-05
    • US11161872
    • 2005-08-19
    • Todd L. BramanMyles A. Koshiol
    • Todd L. BramanMyles A. Koshiol
    • H01R12/04H05K1/11H01K3/10
    • H05K3/403H05K3/3405H05K3/366H05K3/4611H05K2201/09163H05K2201/09181H05K2201/10446H05K2201/10727Y10T29/49165Y10T29/49167
    • A three-dimensional PWB is provided that may include two or more layers stacked together forming a top surface, a bottom surface, and one or more side surfaces, and one or more solder pad situated on at least one of the one or more side surfaces. The one or more solder pads may include exposed voids in the one or more side surfaces. In some cases, the top surface and/or the bottom surface may have one or more solder pad. The one or more solder pads on at least one of the one or more side surfaces may be electrically connected to the one or more solder pads on the top surface and/or the bottom surface. In the illustrative PWB, the top surface and/or the bottom surface may be adapted to be mounted with an inertial sensor. The one or more side surfaces may be adapted to be mounted to a printed wiring board.
    • 提供三维PWB,其可以包括层叠在一起的两层或更多层,形成顶表面,底表面和一个或多个侧表面,以及位于一个或多个侧表面中的至少一个侧表面上的一个或多个焊盘 。 一个或多个焊盘可以包括在一个或多个侧表面中的暴露的空隙。 在一些情况下,顶表面和/或底表面可以具有一个或多个焊盘。 一个或多个侧表面中的至少一个侧面上的一个或多个焊盘可以电连接到顶表面和/或底表面上的一个或多个焊盘。 在说明性的PWB中,顶表面和/或底表面可适于安装惯性传感器。 一个或多个侧表面可以适于安装到印刷电路板。
    • 10. 发明申请
    • ADJUSTABLE GAS DAMPING VIBRATION AND SHOCK ISOLATION SYSTEM
    • 可调节气体阻尼振动和冲击隔离系统
    • US20100059911A1
    • 2010-03-11
    • US12205349
    • 2008-09-05
    • Scott J. GoepfertTodd L. BramanMatthew SchlagerJacob Weinmann
    • Scott J. GoepfertTodd L. BramanMatthew SchlagerJacob Weinmann
    • F16F9/00
    • F16F15/0237F16F15/0232G01C21/16
    • An inertial measurement unit includes a housing with openings to permit fluid communication between at least one pressure source and two distinct cavities within the housing. The cavities are separated by an inertial sensor assembly coupled to a vibration isolator assembly. The pressure in the cavities may be adjusted or tuned to change a natural frequency of the inertial measurement unit, thus allowing the unit to be configured and even optimized for a variety of different applications. By adjusting the pressure in the respective cavities, gas squeeze film damping effects may be optimized when the inertial measurement unit undergoes a shock event and/or when the inertial measurement unit experiences vibration loads during operation. In one embodiment, the vibration isolator assembly includes perforations to permit fluid communication between the first and second cavities during specific operational events.
    • 惯性测量单元包括具有开口以允许至少一个压力源和壳体内的两个不同空腔之间的流体连通的壳体。 空腔由耦合到隔振器组件的惯性传感器组件分开。 空腔中的压力可以被调节或调谐以改变惯性测量单元的固有频率,从而允许单元被配置并且甚至针对各种不同的应用进行优化。 通过调节各个空腔中的压力,当惯性测量单元经历冲击事件时和/或当惯性测量单元在操作期间经历振动负载时,可以优化气体挤压膜阻尼效应。 在一个实施例中,隔振器组件包括穿孔,以在特定操作事件期间允许第一和第二腔之间的流体连通。