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    • 11. 发明授权
    • Vehicle side mirror apparatus
    • 车辆侧镜装置
    • US07229197B2
    • 2007-06-12
    • US10958683
    • 2004-10-06
    • Yoshiharu TanakaAkihiro Misawa
    • Yoshiharu TanakaAkihiro Misawa
    • B60Q1/26
    • B60R1/1207B60Q1/2665
    • A vehicle side mirror apparatus for looking backward circumstances of a vehicle has: a housing that is of a transparent or semitransparent material with a cross section having a predetermined thickness, the housing having a light entering end into which light enters, and a light radiating end that faces the back of the vehicle; and an LED lamp that is disposed in the vicinity of the light entering end. Light emitted from the LED lamp enters into the light entering end of the housing, passing through within the cross section, being radiated to the back of the vehicle from the light radiating end of the housing.
    • 用于观察车辆后退情况的车辆侧视镜装置具有:具有预定厚度的横截面的透明或半透明材料的壳体,所述壳体具有光入射的光入射端,以及光辐射端 面对车辆的后方; 以及配置在光入射附近的LED灯。 从LED灯发出的光进入壳体的光进入端部,在横截面内穿过,从壳体的光辐射端辐射到车辆后部。
    • 13. 发明申请
    • Light source unit
    • 光源单元
    • US20110141742A1
    • 2011-06-16
    • US12926887
    • 2010-12-15
    • Yoshiharu TanakaAkihiro MisawaHiroki TsugeKenji Asano
    • Yoshiharu TanakaAkihiro MisawaHiroki TsugeKenji Asano
    • F21V29/00
    • F21V29/76F21S41/147F21S41/155F21S45/47F21S45/48F21S48/1159F21V29/75F21Y2115/10
    • There is provided a light source unit in which a heat block and a reflector are accommodated in an imaginary cylinder which would be defined by a holding device for holding an outer circumference of a lens and which is mounted in a mount portion on a vehicle, wherein a first heat dissipating portion and a second heat dissipating portion, which are partitioned by a partition plate, are provided on an outer circumferential surface of the heat block, wherein a plurality of fins are projected on the first heat dissipating portion which is disposed on a lens side of the heat block so as to extend in a circumferential direction, and a plurality of fins are projected on the second heat dissipating portion so as to extend in an axial direction of the heat block, and wherein the partition plate has a mounting rib, and a mounting device is provided on the mounting rib for mounting the light source unit in the mount portion of the vehicle.
    • 提供了一种光源单元,其中加热块和反射器容纳在假想圆筒中,该假想圆筒将由用于保持透镜的外周并用于安装在车辆的安装部分中的保持装置限定,其中 在隔热板的外周面上设置由隔板隔开的第一散热部和第二散热部,其中多个翅片突出在第一散热部上, 透镜侧沿圆周方向延伸,并且多个翅片沿着热块的轴向方向突出在第二散热部上,并且其中隔板具有安装肋 并且安装装置设置在安装肋上,用于将光源单元安装在车辆的安装部分中。
    • 17. 发明授权
    • Rotary-type filling machine and method for calculating filling quantity for rotary-type filling machine
    • 旋转式灌装机及旋转式灌装机灌装量计算方法
    • US09428373B2
    • 2016-08-30
    • US13983969
    • 2011-04-06
    • Yoshiharu TanakaMasayuki HayashiShinji Ishikura
    • Yoshiharu TanakaMasayuki HayashiShinji Ishikura
    • B67C3/28
    • B67C3/286B67C3/283B67C3/287
    • A rotary-type filling machine includes a rotary body, a liquid distribution chamber, a plurality of filling flow path configuration units, each of which has a fluid path constituted by a liquid path connected to the liquid distribution chamber and a liquid valve and configured to individually introduce a liquid into a container, a filling control device, a liquid supply unit, a pressure difference information detection unit configured to detect pressure difference information between a liquid distribution chamber pressure, which is a pressure of the liquid in the liquid distribution chamber, and a filling atmospheric pressure detected as a pressure of a flow release unit in a filling flow path configuration unit at an arbitrary radial direction position of the rotary body, and a rotation information detection unit configured to detect rotation information of the rotary body.
    • 旋转式灌装机包括旋转体,液体分配室,多个填充流路构造单元,每个填充流路构造单元具有由与液体分配室连接的液体路径构成的流体路径和液体阀, 单独地将液体引入容器中,填充控制装置,液体供应单元,压力差信息检测单元,其被配置为检测作为液体分配室中的液体的压力的液体分配室压力之间的压力差信息, 以及作为旋转体的任意径向位置处的填充流路构造单元中的流量释放单元的压力的填充气压,以及旋转信息检测单元,被配置为检测旋转体的旋转信息。
    • 18. 发明申请
    • Lens shift measuring apparatus, lens shift measuring method, and optical module manufacturing method
    • 透镜偏移测量装置,透镜偏移测量方法和光学模块制造方法
    • US20110075887A1
    • 2011-03-31
    • US12923533
    • 2010-09-27
    • Yoshiharu Tanaka
    • Yoshiharu Tanaka
    • G06K9/00B32B37/02
    • G02B6/4227G01M11/0221G02B6/4204G02B6/4221G02B6/4222
    • The lens shift measuring apparatus calculates a position of a predetermined portion of a frame body, on the basis of an imaging result obtained by imaging reflected light from the frame body, in a state in which light is irradiated onto a lens-attached member having a lens and the frame body to hold the lens, such that the reflected light from the frame body is generated, and calculates a position of a focusing spot, on the basis of an imaging result obtained by imaging light transmitted through the lens, in a state in which the light is irradiated onto the lens-attached member, such that the focusing spot formed by focusing the light transmitted through the lens by the lens is generated, and calculates a shift amount of the position of the focusing spot with respect to the predetermined portion as the shift of the lens.
    • 透镜偏移测量装置基于通过对来自框体的反射光进行成像而获得的成像结果来计算框体的预定部分的位置,其中光照射到具有 透镜和框体以保持透镜,从而产生来自框体的反射光,并且基于通过将通过透镜透射的光成像获得的成像结果在状态下计算聚焦点的位置 其中光被照射到透镜安装部件上,使得通过将通过透镜透射的光聚焦在透镜上而形成的聚焦光点被产生,并且计算聚焦光斑的位置相对于预定的 部分作为透镜的移动。
    • 19. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20090231450A1
    • 2009-09-17
    • US11908297
    • 2007-01-10
    • Yoshiharu TanakaNobuharu Murashima
    • Yoshiharu TanakaNobuharu Murashima
    • H04N5/228
    • H04N5/23248G03B5/02H04N5/23258H04N5/23287H04N5/238H04N5/765H04N5/772H04N5/907H04N2101/00
    • In an imaging apparatus, an erroneous shake correction is prevented from being performed due to a front curtain shock. A shutter selecting section determines a current state is a shake-correction execution mode when a shake correction switch is ON, when a tripod detection sensor tripod is not mounted, when a shake detection sensor senses a shake amount equal to or larger than a predetermined value, and when a shutter speed is lower than a predetermined value. In this case, the shutter selecting section selects an electronic focal plane shutter as the front curtain, and supplies an operation command signal to an electronic focal plane shutter control section. In other cases, the shutter selecting section determines the current state is not the shake-correction execution mode, and selects a mechanical focal plane shutter as the front curtain and supplies an operation command signal to a shutter drive control section.
    • 在成像装置中,由于前帘震动而防止执行错误的抖动校正。 当抖动校正开关为ON时,当没有安装三脚架检测传感器三脚架时,当抖动检测传感器感测到等于或大于预定值的抖动量时,快门选择部分确定当前状态是抖动校正执行模式 并且当快门速度低于预定值时。 在这种情况下,快门选择部选择电子焦平面快门作为前幕,并且向电子焦平面快门控制部提供操作命令信号。 在其他情况下,快门选择部确定当前状态不是抖动校正执行模式,并且选择机械焦平面快门作为前帘,并将操作命令信号提供给快门驱动控制部。