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    • 1. 发明授权
    • 3D shock isolation apparatus with access to one end of a body
    • 三维冲击隔离装置可以进入身体的一端
    • US08234979B1
    • 2012-08-07
    • US12772658
    • 2010-05-03
    • David J. FalabellaGary A. SimpsonJonathan Dwight Wehking
    • David J. FalabellaGary A. SimpsonJonathan Dwight Wehking
    • F42B12/00F42B30/00
    • F42B12/207F42C11/00F42C19/02
    • An apparatus for shock isolating an electronics package includes an outer member including an internal threaded portion and a transition member including an external threaded portion and a hollow inner portion that defines a cavity configured for receiving the electronics package. A layer of mechanically compliant shock isolation material is positioned between the inner thread portion of the outer member and the external thread portion of the transition member. The compliant shock isolation material encloses a front end and sidewalls of the transition member and is absent from its aft end to allow access to one end of the electronics package (e.g. to a connector). The internal threaded portion of the outer member and the external threaded portion of the transition member are compliantly engaged via a gap provided by the layer of compliant shock isolation material. In one embodiment the electronics package is a fuze assembly.
    • 用于冲击隔离电子组件的装置包括外部构件,该外部构件包括内部螺纹部分和包括外部螺纹部分和中空内部部分的过渡构件,所述中空内部部分限定了构造成用于接收电子组件的腔体。 一层机械顺应的冲击隔离材料定位在外部构件的内螺纹部分和过渡构件的外螺纹部分之间。 柔性隔震材料包围过渡构件的前端和侧壁,并且其后端不存在以允许接近电子封装(例如连接器)的一端。 外部构件的内螺纹部分和过渡构件的外螺纹部分经由由顺应性冲击隔离材料层提供的间隙顺从地接合。 在一个实施例中,电子封装是引信组件。
    • 2. 发明授权
    • Optical segmented RF signature managed window
    • 光分段RF签名管理窗口
    • US06560050B2
    • 2003-05-06
    • US09878348
    • 2001-06-12
    • Carlos Anselmo CasteleiroDavid J. Falabella
    • Carlos Anselmo CasteleiroDavid J. Falabella
    • G02B2700
    • G01S7/4813F41H3/00F42B7/00G02B7/007H01Q1/40Y10T428/24917
    • A window has at least two surfaces oriented relative to each other at an angle greater than zero. A conductive path is disposed across the two surfaces and renders the window reflective or absorptive to a second predetermined bandwidth of energy, which can be radio frequency energy. The window utilizes window geometry, surface treatments, and bonding techniques to maintain electrical continuity across the surface. The window can be constructed from multiple segmented elements, such as sapphire, or from a unitary body. The window is transmissive to a desired wavelength of energy for the sensor while being reflective, refractive, or absorptive to a desired RF bandwidth of energy. The window provides RF signature management coupled with a substantial sensor Field of Regard and allows for full-time use of an embedded sensor.
    • 窗口具有至少两个以大于零的角度相对于彼此定向的表面。 导电路径横跨两个表面布置,并使得窗口反射或吸收第二预定带宽的能量,其可以是射频能量。 该窗口利用窗口几何形状,表面处理和粘合技术来保持整个表面的电连续性。 窗口可以由多个分段元素构成,如蓝宝石或单体。 窗口对于传感器的期望的能量波长是透射的,同时被反射,折射或吸收到期望的RF带宽的能量。 该窗口提供RF签名管理以及相当大的传感器领域,并允许全时使用嵌入式传感器。