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    • 4. 发明授权
    • Method of and apparatus for welding spring to aperture grill
    • 将弹簧焊接到孔格栅的方法和设备
    • US5692941A
    • 1997-12-02
    • US617900
    • 1996-05-07
    • Masami TakedaTomoyuki KuriharaKazuhiko OtsukaYoshirou Kojima
    • Masami TakedaTomoyuki KuriharaKazuhiko OtsukaYoshirou Kojima
    • H01J9/14H01J9/18H01J29/07H01J9/42
    • H01J9/18H01J29/073H01J9/142H01J2209/185H01J2229/0711H01J2229/0761
    • When three or four panel attachment springs 3 are welded to side portions of an aperture grill 1 (or 21), the aperture grill is disposed so that a grill 107 should be opposed to a predetermined reference plane. The springs are disposed by three or four spring positioning means. A posture of the aperture grill 1 (or 21) is adjusted based on measured results of the respective measurement position Z.sub.0 to Z.sub.4 of the grill 107. Positions of spring pins for supporting springs on the spring positioning means are agreed with positions of panel pins provided on a panel. Thereafter, the respective springs are simultaneously welded to the side portions of the aperture grill. Thus, it is possible to precisely weld the springs to side-portion positions of the aperture grill. When the four springs are welded, it is possible to simultaneously weld the four springs by one equipment.
    • PCT No.PCT / JP95 / 01421 Sec。 371日期:1996年5月7日 102(e)日期1996年5月7日PCT提交1995年7月18日PCT公布。 出版物WO96 / 02930 日期1996年2月1日当三个或四个面板安装弹簧3焊接到孔格栅1(或21)的侧部时,孔格栅布置成格栅107应该与预定的参考平面相对。 弹簧由三个或四个弹簧定位装置设置。 基于格栅107的各测量位置Z0至Z4的测量结果来调节孔格栅1(或21)的姿势。弹簧定位装置上用于支撑弹簧的弹簧销的位置与所提供的面板销的位置一致 在面板上 此后,各个弹簧同时焊接到孔格栅的侧部。 因此,可以将弹簧精确地焊接到孔格栅的侧部位置。 当四个弹簧焊接时,可以通过一个设备同时焊接四个弹簧。
    • 5. 发明授权
    • Thermal flow sensor and method of generating flow rate detection signal by the thermal flow sensor
    • 热流量传感器及热流量传感器产生流量检测信号的方法
    • US09116028B2
    • 2015-08-25
    • US13850036
    • 2013-03-25
    • Kazuhiko OtsukaKoji TanimotoYuji Ariyoshi
    • Kazuhiko OtsukaKoji TanimotoYuji Ariyoshi
    • G01F1/68G01F1/696G01F1/72G01F1/69
    • G01F1/696G01F1/68G01F1/69G01F1/6965G01F1/72
    • Provided is a thermal flow sensor capable of obtaining a flow rate detection signal that differs depending on a flow direction of a fluid, with a simple configuration and at low cost. The thermal flow sensor includes: a bridge circuit (1) for outputting a flow rate detection signal (VM); a fluid direction detection circuit (2) for outputting a fluid direction detection signal (VD); and an arithmetic circuit (3, 4, 6) configured to: generate a first output signal (VQF) and a second output signal (VQR) based on the flow rate detection signal (VM) and the fluid direction detection signal (VD); and select the first output signal (VQF) when the fluid direction detection signal (VD) shows normal flow and select the second output signal (VQR) when the fluid direction detection signal (VD) shows reverse flow, to thereby output a flow rate detection signal (VOUT).
    • 提供一种热流量传感器,其能够以简单的结构和低成本获得根据流体的流动方向而不同的流量检测信号。 热流传感器包括:用于输出流量检测信号(VM)的桥接电路(1); 用于输出流体方向检测信号(VD)的流体方向检测电路(2); 以及运算电路(3,4,6),被配置为基于所述流量检测信号(VM)和所述流体检测信号(VD)产生第一输出信号(VQF)和第二输出信号(VQR); 并且当流体方向检测信号(VD)显示正常流量时选择第一输出信号(VQF),并且当流体检测信号(VD)显示反向流动时选择第二输出信号(VQR),从而输出流量检测 信号(VOUT)。
    • 7. 发明授权
    • Wire wound electronic component
    • 绕线电子元件
    • US06198373B1
    • 2001-03-06
    • US09131392
    • 1998-08-07
    • Hideki OgawaHideo AobaYoshihiro AmadaTakayuki UeharaKazuhiko OtsukaHideyuki KarasawaNobuyasu Shiba
    • Hideki OgawaHideo AobaYoshihiro AmadaTakayuki UeharaKazuhiko OtsukaHideyuki KarasawaNobuyasu Shiba
    • H01F2702
    • H01F41/127H01F17/0033H01F17/045H01F27/022H01F27/027H01F27/292H01F41/005H01F41/0246H01F41/046H01F41/12
    • The present invention is to provide a wire wound electronic component with stable quality, as well as raising reliability thereof by improving heat radiation, water-proofness, resistance against static electricity, resistance against stresses, magnetic characteristic thereof. Powder of one or both of an inorganic material and a metallic material having higher thermal conductivity than a resin is added as a filler in the above resin, or a mixture of one or both of powders of the said inorganic material or the said metallic material and powders of a ferrite material for magnetic shielding is added as a filler in the above resin. When a sealing resin comprising a high thermal conductive material added thereto is used, heat generated inside a wire wound electronic component by passing a current through a coil conductor is effectively released outside the component, and the component can have a good heat radiation. Especially when the metallic powder is used as an additive, static electricity is prevented from being charged and generation of static electricity is also restrained.
    • 本发明提供一种质量稳定的绕线电子部件,通过提高散热性,耐水性,耐静电性,耐应力性,磁特性等提高其可靠性。一种或两种 在上述树脂中添加无机材料和具有比树脂更高导热性的金属材料作为填料,或者将所述无机材料或所述金属材料的粉末之一或两者的混合物和用于磁性的铁氧体材料的粉末 在上述树脂中加入作为填料的屏蔽。 当使用添加有高导热性材料的密封树脂时,通过使电流通过线圈导体而在绕线电子部件内部产生的热被有效地释放到部件外部,并且该部件可以具有良好的散热性。 特别是当使用金属粉末作为添加剂时,防止静电被充电并且也抑制静电产生。
    • 10. 发明授权
    • Mirror holder and optical axis correcting device using the same
    • 镜架和使用其的光轴校正装置
    • US6086209A
    • 2000-07-11
    • US293237
    • 1999-04-16
    • Kiyohiko MiyaharaHidehiro KawaguchiToshihisa IriyamaKazuhiko Otsuka
    • Kiyohiko MiyaharaHidehiro KawaguchiToshihisa IriyamaKazuhiko Otsuka
    • G01B11/26G02B7/00G02B7/02G02B7/182G02B7/198G02B26/08H04B10/07H04B10/11H04B10/112
    • G02B7/023G02B26/0816G02B7/1821
    • Disclosed is an optical axis correcting device which allows high accuracy optical axis adjustment and which has an excellent responsiveness. An optical communication device suited for long distance optical communication using this optical axis correcting device is provided. A two-axis spring for setting a mirror includes a first annular section, a second annular section on the outer side of the first annular section and concentric thereto, and a third annular section on the outer side of the second annular section and concentric thereto, wherein the first annular section and the second annular section are connected together by a pair of X-axis bridges which allow torsional rotation and which are opposed to each other with the center of the concentric circle therebetween, wherein the second annular section and the third annular section are connected together by similar Y-axis bridges. The X-axis bridges and the Y-axis bridges are arranged at a predetermined angle by using the center of the concentric circles as a reference, and are arranged so as to exhibit the same angle with respect to the rolling direction of the rolled members forming the two-axis spring using the center of the concentric circles as a reference.
    • 公开了一种光轴校正装置,其允许高精度的光轴调节并且具有优异的响应性。 提供一种适用于使用该光轴校正装置的长距离光通信的光通信装置。 用于设置反射镜的双轴弹簧包括第一环形部分,在第一环形部分的外侧上的与其同心的第二环形部分,以及在第二环形部分的外侧上与其同心的第三环形部分, 其中所述第一环形部分和所述第二环形部分通过一对X轴桥连接在一起,所述一对X轴桥梁允许扭转旋转,并且彼此相对地具有其间的同心圆的中心,其中所述第二环形部分和所述第三环形部分 部分通过类似的Y轴桥连接在一起。 通过使用同心圆的中心作为参考,X轴桥和Y轴桥以预定的角度布置,并且被布置成相对于成形的轧制构件的轧制方向呈现相同的角度 使用同心圆心的双轴弹簧作为参考。