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    • 4. 发明申请
    • Explosion induced G-force absorbtion apparatus
    • 爆炸诱导G力吸收装置
    • US20090066126A1
    • 2009-03-12
    • US12148689
    • 2008-04-22
    • Robert Stevens
    • Robert Stevens
    • B60N2/42
    • B60N2/42709B60N2/4242F16F7/123
    • This invention relates to a provided explosion induced G-force absorbtion apparatus for reducing the G-force imparted on a vehicle occupant below that of the vehicle, the G-force absorbtion apparatus comprising: a first mounting member attached to the vehicle; a second mounting member attached to the occupant's seat; an absorbtion mechanism attached between the first and second mounting members, wherein the absorption mechanism comprises at least a mitigating strip provided on one of the mounting members and an anvil provided on the other of the mounting members such that when the vehicle, and hence the first mounting member, is subjected to an explosion induced G-force, the mitigating strip is pulled over the anvil. As it does this is it inherently must simultaneously bend. This bending action requires energy which is received from the relative movement of the seat and the frame thereby absorbing a portion of the G-force in order to reduce the G-force experienced at the second mounting member and hence the occupant's seat.
    • 本发明涉及一种用于将车辆乘员所施加的G力减小到低于车辆的G型力的设置的爆炸式G吸力装置,所述G型吸力装置包括:安装在车辆上的第一安装构件; 附接到乘员座位的第二安装构件; 附接在所述第一和第二安装构件之间的吸收机构,其中所述吸收机构至少包括设置在所述安装构件中的一个上的缓冲条和设置在所述安装构件中的另一个上的砧座,使得当所述车辆, 安装构件受到爆炸引起的G力,将缓冲带拉过砧座。 因为它是固有的必须同时弯曲。 这种弯曲动作需要从座椅和框架的相对运动中接收到的能量,从而吸收G力的一部分,以便减少在第二安装构件和因此乘员座椅上经受的G力。
    • 5. 发明申请
    • Fibre optic based semiconductor micro sensors for sensing pressure or temperature, fabrication methods of said sensors, and a method of securing an optical fibre to a silicon block
    • 用于感测压力或温度的基于光纤的半导体微传感器,所述传感器的制造方法以及将光纤固定到硅块的方法
    • US20060115202A1
    • 2006-06-01
    • US10530524
    • 2003-10-08
    • Robert StevensArnold Harpin
    • Robert StevensArnold Harpin
    • G02B6/00
    • G01L9/0079G01L9/0042
    • An optical micro sensor (1) for measuring one or more environmental parameters, such as pressure and temperature, through the modification of incident radiation. The sensor (1) is fabricated using MEMS technology and is adapted to receive an optical fibre (40) which communicates radiation to and from the micro sensor (1). The sensor (1) has an environmentally-sensitive element (4) which modifies the incident radiation communicated by the optical fibre (40). The modified radiation is communicated back along the optical fibre (40) and provides information regarding the environmental conditions surrounding the sensor (1). The pressure sensor is provided with a Fabry Perot cavity (3) in a first surface of a silicon wafer (2). The cavity is covered by a reflector at the environmentally-sensitive element (4). The diameter of the channel (7) holding the optical fibre (40) is greater than the diameter of the cavity. (3). The temperature sensor is provided with luminescent material at the element (4). Also, a method of securing an optical fibre to a silicon block is claimed.
    • 一种用于通过改变入射辐射来测量一个或多个环境参数(例如压力和温度)的光学微传感器(1)。 传感器(1)使用MEMS技术制造并且适于接收将光辐射与微传感器(1)进行通信的光纤(40)。 传感器(1)具有对由光纤(40)传播的入射辐射进行改变的环境敏感元件(4)。 改变的辐射沿着光纤(40)传回,并提供关于传感器(1)周围的环境条件的信息。 压力传感器在硅晶片(2)的第一表面中设置有法布里珀罗腔(3)。 空腔由环境敏感元件(4)上的反射器覆盖。 保持光纤(40)的通道(7)的直径大于空腔的直径。 (3)。 温度传感器在元件(4)处设置有发光材料。 另外,要求保护光纤到硅块的方法。
    • 7. 发明授权
    • High power circulating
    • 大功率循环
    • US4633199A
    • 1986-12-30
    • US678298
    • 1984-12-05
    • Robert StevensThomas Rosa
    • Robert StevensThomas Rosa
    • H01P1/39
    • H01P1/39
    • In a microwave circulator having a ferrite core axially aligned along the axis of a junction of waveguides and surrounded by an insulating sleeve seated in counterbores in opposed metal transformers seated in opposed waveguide broad walls, one end of the ferrite core is highly polished and bonded with a silver epoxy to one of the metal transformers and spaced from the other by an insulating disk. Opposed rare-earth cylindrical magnets embedded in the broad wall axially aligned along the junction axis bias the ferrite core and establish a magnetic field along the junction axis inside the ferrite core.
    • 在具有铁氧体磁芯的波导环形体中,铁氧体磁芯沿着波导结的轴线轴向排列并且被位于相对的金属变压器中的位于相对的波导宽壁的相对的金属变压器中的绝缘套筒包围,铁氧体磁芯的一端被高度抛光并与 一个银环氧树脂到一个金属变压器,并通过绝缘盘与另一个间隔开。 嵌入在沿着接合轴线轴向对准的宽壁中的相对的稀土圆柱形磁体偏置铁氧体磁芯,并沿着铁氧体磁芯内的连接轴建立磁场。