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    • 3. 发明申请
    • Rotation sensor
    • 旋转传感器
    • US20050184726A1
    • 2005-08-25
    • US11058206
    • 2005-02-16
    • Tomotaka WatanabeTakehisa IshiharaShinsuke TeradaTakayuki Enomoto
    • Tomotaka WatanabeTakehisa IshiharaShinsuke TeradaTakayuki Enomoto
    • G01B7/14G01B7/30G01D5/20H02K37/00
    • G01D5/202
    • In a rotation sensor including a rotor 10 mounted to a rotating shaft S and having a conductive sensing unit 12 whereof the width varies in the circumferential direction; and stationary cores 31, 32, 41, 42 each including an exciting coil for forming a magnetic circuit with respect to the sensing unit of the rotor by allowing AC exciting current to flow therein, and a core body formed of magnetic material and retaining the exciting coil, and being mounted to the fixed member and disposed so as to oppose to the sensing unit of the rotor at a distance in the axial direction of the shaft, the stationary cores are disposed at two positions each having a central angle with respect to the axis of the shaft other than substantially 180°, so that the rotation sensor which is superior in mountability, is low in cost, and is superior in detection accuracy over a wider range is provided.
    • 在包括安装在旋转轴S上的转子10的旋转传感器中,具有导电感测单元12,其宽度在圆周方向上变化; 和固定铁心31,32,41,42,每个固定铁心包括用于通过允许交流励磁电流在其中流动而相对于转子的感测单元形成磁路的励磁线圈,以及由磁性材料形成并保持激励 线圈,并且被安装到固定构件并且设置成与轴的轴向方向上的距离相对于转子的感测单元,固定芯设置在两个位置,每个位置具有相对于 轴的大致180度的轴线,使得安装性优异的旋转传感器的成本低,并且在更宽的范围内具有优异的检测精度。
    • 4. 发明授权
    • Rotation sensor
    • 旋转传感器
    • US07183761B2
    • 2007-02-27
    • US11058206
    • 2005-02-16
    • Tomotaka WatanabeTakehisa IshiharaShinsuke TeradaTakayuki Enomoto
    • Tomotaka WatanabeTakehisa IshiharaShinsuke TeradaTakayuki Enomoto
    • G01B7/30H01F5/00
    • G01D5/202
    • In a rotation sensor including a rotor 10 mounted to a rotating shaft S and having a conductive sensing unit 12 whereof the width varies in the circumferential direction; and stationary cores 31, 32, 41, 42 each including an exciting coil for forming a magnetic circuit with respect to the sensing unit of the rotor by allowing AC exciting current to flow therein, and a core body formed of magnetic material and retaining the exciting coil, and being mounted to the fixed member and disposed so as to oppose to the sensing unit of the rotor at a distance in the axial direction of the shaft, the stationary cores are disposed at two positions each having a central angle with respect to the axis of the shaft other than substantially 180°, so that the rotation sensor which is superior in mountability, is low in cost, and is superior in detection accuracy over a wider range is provided.
    • 在包括安装在旋转轴S上的转子10的旋转传感器中,具有导电感测单元12,其宽度在圆周方向上变化; 和固定铁心31,32,41,42,每个固定铁心包括用于通过允许交流励磁电流在其中流动而相对于转子的感测单元形成磁路的励磁线圈,以及由磁性材料形成并保持激励的芯体 线圈,并且被安装到固定构件并且设置成与轴的轴向方向上的距离相对于转子的感测单元,固定芯设置在两个位置,每个位置具有相对于 轴的大致180度的轴线,使得安装性优异的旋转传感器的成本低,并且在更宽的范围内具有优异的检测精度。
    • 6. 发明申请
    • Remote control receiver and electronic equipment including the same
    • 遥控接收机和电子设备包括相同
    • US20080050128A1
    • 2008-02-28
    • US11892487
    • 2007-08-23
    • Takehisa IshiharaHideo Wada
    • Takehisa IshiharaHideo Wada
    • H04B10/06
    • H04B10/1141
    • At least a plurality of light-receiving regions for receiving remote control signals, respectively, in a form of incident light and performing photoelectric conversion of the signals are provided in one common mold package. The remote control receiver includes a first signal processing circuit for adding up signals outputted by the plurality of light-receiving regions and, based on a resulting signal, demodulating and outputting the remote control signal. The remote control receiver also includes a second signal processing circuit for calculating a difference between the signals outputted by the plurality of light-receiving regions to obtain and output a directional signal representing a direction in which the incident light has been incident on the plurality of light-receiving regions.
    • 至少多个用于以入射光的形式分别接收遥控信号并执行信号的光电转换的光接收区域设置在一个普通的模具包装中。 遥控接收机包括第一信号处理电路,用于将由多个光接收区域输出的信号相加,并且基于结果信号解调并输出遥控信号。 遥控接收器还包括第二信号处理电路,用于计算由多个光接收区域输出的信号之间的差异,以获得和输出表示入射光入射到多个光的方向的方向信号 接收地区。
    • 7. 发明授权
    • Optical coupler with first and second division connector portion
    • 具有第一和第二分割连接器部分的光耦合器
    • US07635852B2
    • 2009-12-22
    • US11955931
    • 2007-12-13
    • Takehisa Ishihara
    • Takehisa Ishihara
    • G02B27/00
    • H01L31/153G02B6/4246H01L31/0203H01L31/18H01L2224/45144H01L2224/48247H01L2224/48257H01L2924/3025H03K17/30H03K17/795H01L2924/00
    • A device unit 46 is constituted by including a lead frame 50 on which a light-emitting mold portion 48 and a light-receiving mold portion 49 are mounted. Moreover, an exterior casing for housing the device unit 46 is constituted of two parts dividable into an upper casing 45 and a lower casing 47. Thus, by holding the device unit 46 by the upper casing 45 and the lower casing 47, external connection terminals 43 constructed of one end portion of the lead frame 50 can be fixed to the exterior casing and positioned in a connector portion 42. Therefore, by reducing the parts count to three and allowing the device unit 46 to be fixed to the exterior casing by a fixed fitting mechanism of the upper casing 45 and the lower casing 47 without performing welding, soldering, thermal caulking or the like, the assembling becomes easy.
    • 装置单元46由安装有发光模具部分48和光接收模具部分49的引线框架50构成。 此外,用于容纳装置单元46的外部壳体由可分成上壳体45和下壳体47的两个部分构成。因此,通过由上壳体45和下壳体47保持装置单元46,外部连接端子 由引线框架50的一个端部构成的端子43可以固定到外部壳体并且定位在连接器部分42中。因此,通过将部件数量减少到三个并且允许装置单元46通过一个 不进行焊接,焊接,热铆接等的上壳体45和下壳体47的固定配合机构,组装变得容易。