GAP MEASUREMENT DEVICE
    1.
    发明申请
    GAP MEASUREMENT DEVICE 有权
    差压测量装置

    公开(公告)号:US20140347679A1

    公开(公告)日:2014-11-27

    申请号:US14279313

    申请日:2014-05-15

    CPC classification number: G01B11/14 G01B11/08 G01B11/105

    Abstract: A gap measurement device 1 comprises a light source 5 for projecting light on a gap 3 to be measured, a lens optical system 6 for focusing on an imaging surface 7 a gap image 3A from light transmitted through the gap 3, and a light-receiving element 9 for receiving light of the gap image 3A formed on the imaging surface 7 of the lens optical system 6. A holed mask 8 provided with a light-transmitting hole 8a having a prescribed aperture size is arranged on the imaging surface 7, and the light-receiving element 9 receives the light of the gap image 3A via the hole 8a. A gap size at a point to be measured in an extended gap 3 can be measured by forming an image of the gap with the lens optical system 6 and placing the hole 8a of the holed mask 8 on the point to be measured on the imaging surface 7 of the lens optical system 6.

    Abstract translation: 间隙测量装置1包括用于将光投射在待测量间隙3上的光源5,用于将透过间隙3的光聚焦在成像表面7上的透镜光学系统6和光接收 元件9,用于接收形成在透镜光学系统6的成像表面7上的间隙图像3A的光。具有规定孔径尺寸的透光孔8a的孔掩模8布置在成​​像表面7上, 光接收元件9经由孔8a接收间隙图像3A的光。 可以通过与透镜光学系统6形成间隙的图像并将孔眼8的孔8a放置在成像面上的待测点上来测量在延伸间隙3中要测量的点处的间隙尺寸 7透镜光学系统6。

    STRAIN WAVE GEARING, FRICTIONAL ENGAGEMENT WAVE DEVICE, AND WAVE GENERATOR
    2.
    发明申请
    STRAIN WAVE GEARING, FRICTIONAL ENGAGEMENT WAVE DEVICE, AND WAVE GENERATOR 审中-公开
    应变波动齿轮,摩擦接合波形装置和波形发生器

    公开(公告)号:US20160298746A1

    公开(公告)日:2016-10-13

    申请号:US14758451

    申请日:2013-11-19

    CPC classification number: F16H49/001 F16H2049/003

    Abstract: An externally toothed gear of a strain wave gearing is made to flex into a shape conforming to an ellipsoidal curve. The externally toothed gear meshes with an internally toothed gear at the major-diameter position of the ellipsoidal curve. These two meshing positions gradually change in the circumferential direction of the both gears along the tooth trace direction. The number of external teeth of the externally toothed gear participating in meshing with the internally toothed gear can be increased. A strain wave gearing which has a high rigidity and is capable of reducing vibrational noise, can be realized.

    Abstract translation: 使应变波传动装置的外齿齿轮弯曲成符合椭圆曲线的形状。 外齿轮在椭圆曲线的大直径位置处与内齿齿轮啮合。 这两个啮合位置沿着齿迹方向在两个齿轮的圆周方向上逐渐变化。 可以增加参与与内齿轮啮合的外齿齿轮的外齿数。 可以实现具有高刚性并能够降低振动噪声的应变波传动装置。

    SELF-CALIBRATION METHOD FOR ANGLE DETECTOR, ANGLE DETECTOR, CIRCUMFERENTIAL SCALE CALIBRATION DEVICE, AND ANGLE DETECTOR CALIBRATION DEVICE
    3.
    发明申请
    SELF-CALIBRATION METHOD FOR ANGLE DETECTOR, ANGLE DETECTOR, CIRCUMFERENTIAL SCALE CALIBRATION DEVICE, AND ANGLE DETECTOR CALIBRATION DEVICE 有权
    角度检测器,角度检测器,圆周校准校准装置和角度检测器校准装置的自校准方法

    公开(公告)号:US20130124128A1

    公开(公告)日:2013-05-16

    申请号:US13633071

    申请日:2012-10-01

    CPC classification number: G01D5/24452

    Abstract: In a self-calibration method of an angle detector, an angle interval between first and second scale reader heads are set, so that a single rotation is not equally divided into an integer number of potions by a value of the angle interval and that a plurality of rotations N are equally divided into M equal portions by the value of the angle interval. Readings by the scale reader heads during N rotations of the divided circle are obtained at a pre-set data sampling interval. From differences in readings by these scale reader heads, data of the sequential two-point method relating to an angle scale error of the divided circle are obtained at the data sampling interval. The scale error of the divided circle at the data sampling interval is calculated by synthesizing the data using the fact that an average of the data for the rotations N reaches approximately zero.

    Abstract translation: 在角度检测器的自校准方法中,设置第一和第二刻度尺读取器头之间的角度间隔,使得单个旋转不被等分成整数数量的角度间隔的值,并且多个 的旋转N通过角度间隔的值被等分成M等分。 在预先设定的数据采样间隔处获得在划分圆的N个旋转期间通过刻度尺读取头的读数。 由于这些刻度读取头的读数差异,在数据采样间隔获得与分割圆的角度刻度误差有关的连续两点方法的数据。 通过使用旋转数据N的平均值近似为零的事实合成数据来计算数据采样间隔处的分割圆的比例误差。

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