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    • 2. 发明授权
    • Inductive position-measuring device
    • 感应位置测量装置
    • US09383184B2
    • 2016-07-05
    • US14105859
    • 2013-12-13
    • DR. JOHANNES HEIDENHAIN GMBH
    • Marc Oliver TiemannMartin Heumann
    • G01B7/14G01B7/00G01D5/20G01D5/245G01B7/30
    • G01B7/003G01B7/30G01D5/2053G01D5/2451
    • An inductive position-measuring device includes a scanning element and a graduation element that are movable relative to each other in a first direction. The scanning element includes exciter conductors and three receiver tracks. The first and the second receiver track are disposed at a distance relative to each other, and the third receiver track is located between the first and the second receiver track. The graduation element includes two graduation tracks which are disposed at a distance relative to each other, and which have different graduation periods. Furthermore, electromagnetic fields generated by the exciter conductors are able to be modulated by the graduation tracks, so that a relative position in the first direction is detectable by the first and the second receiver track, while a relative position in a second direction, which is oriented orthogonally with respect to the first direction, is detectable by the third receiver track.
    • 感应位置测量装置包括可沿第一方向相对于彼此移动的扫描元件和刻度元件。 扫描元件包括激励器导体和三个接收器轨道。 第一和第二接收器轨道相对于彼此设置一定距离,并且第三接收器轨道位于第一和第二接收器轨道之间。 毕业元素包括彼此相距一定距离并且具有不同毕业周期的两个毕业轨迹。 此外,由激励器导体产生的电磁场能够被刻度轨道调制,使得第一方向上的相对位置可由第一和第二接收器轨道检测,而第二方向上的相对位置 相对于第一方向正交定向,可由第三接收器轨迹检测。
    • 5. 发明申请
    • Inductive Position-Measuring Device
    • 感应位置测量装置
    • US20140167746A1
    • 2014-06-19
    • US14105859
    • 2013-12-13
    • Dr. Johannes Heidenhain GMBH
    • Marc Oliver TiemannMartin Heumann
    • G01B7/00
    • G01B7/003G01B7/30G01D5/2053G01D5/2451
    • An inductive position-measuring device includes a scanning element and a graduation element that are movable relative to each other in a first direction. The scanning element includes exciter conductors and three receiver tracks. The first and the second receiver track are disposed at a distance relative to each other, and the third receiver track is located between the first and the second receiver track. The graduation element includes two graduation tracks which are disposed at a distance relative to each other, and which have different graduation periods. Furthermore, electromagnetic fields generated by the exciter conductors are able to be modulated by the graduation tracks, so that a relative position in the first direction is detectable by the first and the second receiver track, while a relative position in a second direction, which is oriented orthogonally with respect to the first direction, is detectable by the third receiver track.
    • 感应位置测量装置包括可沿第一方向相对于彼此移动的扫描元件和刻度元件。 扫描元件包括激励器导体和三个接收器轨道。 第一和第二接收器轨道相对于彼此设置一定距离,并且第三接收器轨道位于第一和第二接收器轨道之间。 毕业元素包括彼此相距一定距离并且具有不同毕业周期的两个毕业轨迹。 此外,由激励器导体产生的电磁场能够被刻度轨道调制,使得第一方向上的相对位置可由第一和第二接收器轨道检测,而第二方向上的相对位置 相对于第一方向正交定向,可由第三接收器轨迹检测。