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    • 3. 发明授权
    • Monolithic silicon acceleration sensor
    • 单片硅加速度传感器
    • US06829937B2
    • 2004-12-14
    • US10171616
    • 2002-06-17
    • Geoffrey L. Mahon
    • Geoffrey L. Mahon
    • G01P1510
    • G01P15/18G01P15/0802G01P15/123G01P15/125G01P2015/0828
    • A monolithic silicon acceleration sensor capable of detecting acceleration along multiple orthogonal axes of acceleration is disclosed. The monolithic silicon acceleration sensor is micromachined from silicon to form one or more sensor cells, each sensor cell having an inertial mass positioned by beam members fixed to a silicon support structure. Movement of the inertial mass due to acceleration is detected by either a differential capacitance measurement between opposing surfaces of the inertial mass and electrically conductive layers on a top and a bottom cover plate structure, or by a resistance measurement of piezoresistive elements fixed to the positioning beam members. Embodiments of the invention are capable of detecting acceleration in a plane, along two orthogonal axes of acceleration, or along three orthogonal axis of acceleration.
    • 公开了能够沿着加速度的多个正交轴检测加速度的单片硅加速度传感器。 单片硅加速度传感器从硅微加工以形成一个或多个传感器单元,每个传感器单元具有由固定到硅支撑结构的梁构件定位的惯性质量。 通过在惯性块的相对表面和顶部和底部盖板结构上的导电层之间进行的差分电容测量,或者通过固定在定位梁上的压阻元件的电阻测量来检测由加速度引起的惯性质量的移动 会员 本发明的实施例能够沿着加速度的两个正交轴或者沿着三个正交加速轴来检测平面中的加速度。
    • 4. 发明授权
    • Temperature compensated stored gas inflator
    • 温度补偿存储气体充气机
    • US5433476A
    • 1995-07-18
    • US281429
    • 1994-07-27
    • Peter MaternaGeoffrey L. Mahon
    • Peter MaternaGeoffrey L. Mahon
    • B60R21/263B60R21/268F17C5/00B60R21/26
    • B60R21/268F17C5/00B60R2021/2633F17C2250/0439F17C2250/0636F17C2260/02F17C2270/0181
    • A stored gas inflator is operable over a wide range of initial temperatures and such that the dependence of its total output as a function of initial temperature is substantially reduced.A vessel contains gas under pressure and has a seated outlet for the gas which is adapted to open upon command and permit passage of the gas therethrough.A thermal reservoir element is provided.A first exiting flowpath directs gas so that it substantially bypasses or avoids thermal contact with the thermal reservoir element.A second exiting flowpath directs whatever gas does not leave through the first exiting flowpath through the thermal reservoir element so that the gas has substantial thermal contact with the thermal reservoir element.A temperature-dependent flow control means varies the amount of gas passing through each of the aforementioned flowpaths.
    • 储存气体充气器可在宽范围的初始温度下操作,并且使得其总输出与初始温度的关系的依赖性显着降低。 容器包含处于压力下的气体,并且具有用于气体的就座出口,其适于在命令时打开并允许气体通过其中。 提供了一个储热元件。 第一排出流动路径引导气体,使得其基本上绕过或避免与储热元件的热​​接触。 第二排出流动路径指示通过热储存元件的第一排出流动路径不留下的任何气体,使得气体与热储存元件具有实质的热接触。 温度依赖的流量控制装置改变通过每个上述流动路径的气体的量。