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    • 2. 发明申请
    • Combined sensor and its fabrication method
    • 组合传感器及其制造方法
    • US20070062282A1
    • 2007-03-22
    • US11516927
    • 2006-09-06
    • Teruhisa AkashiRyoji OkadaMasahide HayashiKengo Suzuki
    • Teruhisa AkashiRyoji OkadaMasahide HayashiKengo Suzuki
    • G01P15/08
    • G01P15/0802G01C19/5719G01P15/097G01P15/14G01P15/18G01P2015/082
    • A sensor structure using vibrating sensor elements which can detect an angular rate and accelerations in two axes at the same time is provided. 2 sets of vibration units which vibrate in out-of-phase mode (tunning-fork vibration) and include four vibrating sensor elements of the approximately same shape supported on a substrate in a vibratile state are provided and the vibrating sensor elements are disposed so that vibration axes of the vibration units cross each other at right angles. Each of the vibrating sensor elements includes a pair of detection units and adjustment units for adjusting a vibration frequency. The vibrating sensor elements constitute a combined sensor having supporting structure for supporting the vibrating sensor elements independently so that the vibrating sensor elements do not interfere with each other.
    • 提供了使用能够同时检测两个轴的角速度和加速度的振动传感器元件的传感器结构。 提供了2组以异相模式(调音叉振动)振动的振动单元,并且包括以振动状态支撑在基板上的大致相同形状的四个振动传感器元件,并且将振动传感器元件设置成 振动单元的振动轴线成直角交叉。 每个振动传感器元件包括一对检测单元和用于调节振动频率的调节单元。 振动传感器元件构成具有用于独立地支撑振动传感器元件的支撑结构的组合传感器,使得振动传感器元件彼此不干涉。
    • 10. 发明授权
    • Spectrometer
    • 光谱仪
    • US08587779B2
    • 2013-11-19
    • US13126523
    • 2009-09-24
    • Kazuya IguchiKengo Suzuki
    • Kazuya IguchiKengo Suzuki
    • G01J3/28
    • G01N21/0332G01J3/0254G01J3/0286G01J3/0291G01N21/255G01N21/645G01N2201/065
    • A spectrometer 1A is provided with an integrating sphere 20 for observing measured light emitted from a sample S of a measurement target, and a Dewar vessel 50 which retains a medium R for regulating temperature of the sample S, so as to cover the sample S and a second container portion 50b of which is located so as to face the interior of the integrating sphere 20. The sample S can be easily regulated at a desired temperature with the use of the Dewar vessel 50 retaining the medium R so as to cover the sample S. As the second container portion 50b is located so as to face the interior of the integrating sphere 20, the temperature of the sample S is regulated by the medium R, while inhibiting an external ambience around the integrating sphere from affecting the sample S. Therefore, the sample S can be efficiently regulated at a desired temperature.
    • 光谱仪1A设置有用于观察从测量对象的样品S发射的测量光的积分球20和保持用于调节样品S的温度的介质R的杜瓦容器50,以覆盖样品S和 其第二容器部分50b定位成面对积分球20的内部。使用保持介质R的杜瓦容器50以便覆盖样品,可以容易地将样品S调节到期望的温度 当第二容器部分50b定位成面对积分球20的内部时,样品S的温度由介质R调节,同时抑制积分球周围的外部环境影响样品S. 因此,可以将样品S有效地调节到期望的温度。