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    • 1. 发明授权
    • Optical microphone
    • 光学麦克风
    • US09173039B2
    • 2015-10-27
    • US14062517
    • 2013-10-24
    • Takuya IwamotoMasahiko HashimotoUshio SangawaYuriko Kaneko
    • Takuya IwamotoMasahiko HashimotoUshio SangawaYuriko Kaneko
    • H04B10/02H04B10/12H04R23/00H04R1/34
    • H04R23/008H04R1/34
    • An optical microphone for detecting an acoustic wave propagating through an environmental fluid by using a light wave, includes: an acoustic wave receiving section having a propagation medium portion through which an acoustic wave propagate and a first support portion for supporting the propagation medium portion; a light source for outputting a light wave so that the light wave passes through the propagation medium portion across the acoustic wave propagating through the propagation medium portion; a light-blocking portion having an edge line for splitting the light wave having passed through the propagation medium portion into a blocked portion and a non-blocked portion; and a photoelectric conversion section for receiving a portion of the light wave having passed through the propagation medium portion which has not been blocked by the light-blocking portion to output an electric signal.
    • 一种用于通过使用光波检测通过环境流体传播的声波的光学麦克风,包括:具有传播介质部分的声波接收部分,声波传播通过该传播介质部分和用于支撑传播介质部分的第一支撑部分; 用于输出光波的光源,使得光波穿过传播介质部分传播的声波; 具有用于将通过传播介质部分的光波分解为封闭部分和未阻挡部分的边缘线的遮光部分; 以及光电转换部,其接收未被遮光部阻挡的传播介质部的光波的一部分,以输出电信号。
    • 3. 发明申请
    • OPTICAL MICROPHONE
    • 光学麦克风
    • US20120204649A1
    • 2012-08-16
    • US13454154
    • 2012-04-24
    • Takuya IWAMOTOMasahiko HASHIMOTOUshio SANGAWAYuriko KANEKO
    • Takuya IWAMOTOMasahiko HASHIMOTOUshio SANGAWAYuriko KANEKO
    • G01N29/02
    • H04R23/008G01H9/00
    • There is provided an optical microphone for detecting an acoustic wave propagating in an ambient fluid, the optical microphone including: a propagation medium section; a light source for emitting a light wave to be transmitted through a diffraction region in the propagation medium section; and a photoelectric conversion section for detecting the light wave having been transmitted through the propagation medium section. A first acoustic wave which is a portion of the acoustic wave and a second acoustic wave which is another portion thereof are allowed to propagate in the propagation medium section so as to simultaneously arrive at the diffraction region, and an interference component between a +1st order diffracted light wave and a −1st order diffracted light wave of the light wave generated based on a refractive index distribution of the propagation medium occurring in the diffraction region.
    • 提供了一种用于检测在周围流体中传播的声波的光学麦克风,所述光学麦克风包括:传播介质部分; 用于发射通过传播介质部分中的衍射区域的光波的光源; 以及用于检测通过传播介质部分传输的光波的光电转换部分。 作为声波的一部分的第一声波和作为其另一部分的第二声波被允许在传播介质部分中传播以同时到达衍射区域,并且+ 1阶的干涉分量 衍射光波和基于在衍射区域中出现的传播介质的折射率分布而产生的光波的-1级衍射光波。
    • 6. 发明授权
    • High-pressure discharge lamp and manufacturing method thereof
    • 高压放电灯及其制造方法
    • US6132279A
    • 2000-10-17
    • US39424
    • 1998-03-16
    • Makoto HoriuchiYuriko KanekoMamoru Takeda
    • Makoto HoriuchiYuriko KanekoMamoru Takeda
    • H01J9/32H01J61/30H01J61/36H01J9/00H05B33/10
    • H01J9/326H01J61/30H01J61/368H01J61/82H01J61/84
    • A method for manufacturing a high-pressure discharge lamp of the double-ended type having excellent resistance to high-pressure and wherein the internal diameter of a portion of the high-pressure discharge lamp where a light-emitting section and a side tube are adjacent can be reduced without restricting the maximum diameter of an electrode on a side where it projects into the light-emitting section. An electrode assembly 105 is arranged within an evacuated glass bulb 2 such that an end of electrode 102 where a coil 102b is wound is positioned within the light-emitting section 3. In this condition, the portion where the light-emitting section 3 and the side tube 4a (4b) are adjacent is heated by a burner 300. The internal diameter of the side tube 4a (4b) can thereby be formed with a reduced-diameter section 7, whose diameter is smaller than that of the electrode rod 102a without restricting the diameter at the location of the coil 102b.
    • 一种双端型高压放电灯的制造方法,其具有优异的耐高压性,并且其中发光部和侧管相邻的高压放电灯的一部分的内径 可以在不限制其突出到发光部的一侧的电极的最大直径的情况下进行减小。 电极组件105布置在真空玻璃灯泡2内,使得缠绕线圈102b的电极102的端部位于发光部分3内。在这种情况下,发光部分3和 侧管4a(4b)相邻的侧管4a(4b)被燃烧器300加热。因此,侧管4a(4b)的内径可以形成为直径小于直径的部分7,其直径小于电极棒102a的直径, 限制线圈102b的位置处的直径。