ENCODER READHEAD
    1.
    发明授权
    ENCODER READHEAD 有权
    编码器读取

    公开(公告)号:EP2404142B1

    公开(公告)日:2017-08-09

    申请号:EP10712744.1

    申请日:2010-03-01

    IPC分类号: G01D5/249

    CPC分类号: G01D5/2492

    摘要: A readhead is provided for reading an absolute scale, optionally a passive magnetic scale, that encodes a series of data bits. The readhead includes a plurality of sensors, such as an array of Hall sensors, for producing a plurality of sensor signals. A plurality of signal combiners are also provided to receive at least two of the sensor signals and produce therefrom a combined sensor signal. A plurality of data bit extractors are arranged to receive at least two combined sensor signals and to determine the value of a data bit encoded in an associated absolute scale. The readhead also comprises an incremental signal generator for generating at least one incremental signal from the combined sensor signals produced by a plurality of the signal combiners. In this manner, both absolute and incremental position is measured.

    摘要翻译: 提供读取头用于读取编码一系列数据位的绝对标度,可选地为无源磁标尺。 读取头包括多个传感器,例如霍尔传感器阵列,用于产生多个传感器信号。 还提供了多个信号组合器以接收至少两个传感器信号并由此产生组合的传感器信号。 多个数据比特提取器被布置为接收至少两个组合的传感器信号并且确定以相关联的绝对比例编码的数据比特的值。 读取头还包括增量信号发生器,用于从由多个信号组合器产生的组合的传感器信号中产生至少一个增量信号。 以这种方式,测量绝对位置和增量位置。

    MAGNETIC ENCODER APPARATUS
    2.
    发明公开
    MAGNETIC ENCODER APPARATUS 有权
    MAGNETISCHER CODIERER

    公开(公告)号:EP2823260A1

    公开(公告)日:2015-01-14

    申请号:EP13711727.1

    申请日:2013-03-06

    IPC分类号: G01D5/14 G01D5/244

    摘要: Magnetic encoder apparatus (2) is described that comprises a plurality of magnetic sensor elements (e.g. Hall sensors) for reading an associated magnetic scale (4; 10) that produces a periodically repeating magnetic pattern. The plurality of magnetic sensor elements produce a plurality of sensor signals and an analyser (7) is provided for analysing the plurality of sensor signals to provide a measure of the position of the magnetic sensor elements relative to the associated magnetic scale (4; 10). The analyser (7) is arranged to use the plurality of sensor signals to assess the period (60) of the periodically repeating magnetic pattern sensed by the plurality of magnetic sensor elements. In this manner, the requirement to carefully match the period of the sensor elements with the periodically repeating magnetic pattern of the associated magnetic scale (4; 10) is avoided.

    摘要翻译: 提出了一种磁性编码器装置,其包括用于读取产生周期性重复的磁性图案的相关磁标度的多个磁性传感器元件(例如霍尔传感器)。 多个磁传感器元件产生多个传感器信号,并且提供分析器用于分析多个传感器信号以提供磁传感器元件相对于相关磁标尺的位置的量度。 分析器布置成使用多个传感器信号来评估由多个磁传感器元件感测到的周期性重复磁图案的周期。 以这种方式,避免了将传感器元件的周期与相关磁标度的周期性重复的磁性图案仔细地匹配的要求。

    ENCODER WITH REFERENCE MARKS
    3.
    发明公开
    ENCODER WITH REFERENCE MARKS 有权
    ENKODER MIT REFERENZMARKIERUNGEN

    公开(公告)号:EP1466142A2

    公开(公告)日:2004-10-13

    申请号:EP03702454.4

    申请日:2003-01-13

    IPC分类号: G01D5/245 G01D5/249

    CPC分类号: G01D5/2457 G01D5/2495

    摘要: A scale (10) has magnetic incremental scale marks in a track (10a), and a pseudo-random code sequence in a reference mark track (10b). Sensors (2, 3) feed the pattern of the code in the track (10b) into a bi-directional shift register (18). So that a user can select any desired position for use as a reference mark, a memory (24) is provided, into which any selected code value can be pre-stored. A comparator (26) then compares the code value in the shift register (18) with the code value in the memory (24) and outputs a reference mark signal (Ri) when they match.

    摘要翻译: 刻度(10)在轨道(10a)中具有磁增量刻度标记,以及参考标记轨道(10b)中的伪随机码序列。 传感器(2,3)将轨道(10b)中的代码的模式馈送到双向移位寄存器(18)中。 为了使用户可以选择用作参考标记的任何期望的位置,提供存储器(24),可以预先存储任何所选择的代码值。 然后,比较器(26)将移位寄存器(18)中的代码值与存储器(24)中的代码值进行比较,并在匹配时输出参考标记信号(Ri)。

    Position encoder apparatus
    5.
    发明授权

    公开(公告)号:EP2404141B1

    公开(公告)日:2018-08-15

    申请号:EP10712743.3

    申请日:2010-03-01

    发明人: DOLSAK, Gregor

    IPC分类号: G01D5/244 G01D5/36

    摘要: A scanning device for a position encoder is provided that comprises a plurality of sensor elements for generating a plurality of sensor signals. A summation unit is also provided for generating at least a first summation signal and a second summation signal that provide information on the relative alignment of the scanning device and an associated scale. The first summation signal is generated from a first subset of the plurality of sensor signals and the second summation signal is generated from a second subset of the plurality of sensor signals. The plurality of sensor elements are substantially evenly spaced apart from one another N and sensor elements are provided per period of an associated scale, wherein N is an integer value and a multiple of three and four. In this manner, the third harmonic contribution to the summation signals is suppressed.

    PROCESS AND DEVICE FOR ADJUSTING ROTARY ENCODER
    6.
    发明公开
    PROCESS AND DEVICE FOR ADJUSTING ROTARY ENCODER 审中-公开
    用于调整旋转编码器的过程和装置

    公开(公告)号:EP3167248A1

    公开(公告)日:2017-05-17

    申请号:EP15763427.0

    申请日:2015-07-10

    IPC分类号: G01D5/20 G01D18/00 G01P3/44

    CPC分类号: G01D18/008 G01D5/2033

    摘要: The invention relates to the process and device for adjusting a rotary encoder, i.e. the absolute magnetic rotary encoder with Hall effect sensors which, when positioned in the form of a circle, detect the magnetic field of a diametrically polarised permanent magnet. The rotary encoder adjustment process features the following: the actuator magnet turns once or several times over the sensor circuit, whereby the time-dependant rotation angle is recorded/stored; time-dependant presupposed values of the rotation angle are calculated; these are then subtracted from the measured actual rotation angle values; by analysing the obtained difference, the electric parameter values for the sensor circuit are determined in such a manner as to make the newly measured difference based on new electric parameter values smaller than before the change; the electric parameter values for the sensor circuit are written into the sensor circuit.

    摘要翻译: 用于调节旋转编码器的方法和装置本发明涉及用于调节旋转编码器的方法和装置,即具有霍尔效应传感器的绝对式磁旋转编码器,当其以圆形定位时,检测直径极化的永磁体的磁场。 旋转编码器调整过程具有以下特点:执行器磁体在传感器电路上转动一次或几次,由此记录/存储与时间有关的旋转角度; 计算旋转角度的时间相关预设值; 然后从测得的实际旋转角度值中减去这些值; 通过分析所获得的差值来确定传感器电路的电参数值,使得基于新的电参数值的新测量的差小于变化之前的新的电参数值; 传感器电路的电参数值被写入传感器电路。

    ENCODER READHEAD
    7.
    发明公开
    ENCODER READHEAD 有权
    编码器读取

    公开(公告)号:EP2404142A1

    公开(公告)日:2012-01-11

    申请号:EP10712744.1

    申请日:2010-03-01

    IPC分类号: G01D5/249

    CPC分类号: G01D5/2492

    摘要: A readhead is provided for reading an absolute scale, optionally a passive magnetic scale, that encodes a series of data bits. The readhead includes a plurality of sensors, such as an array of Hall sensors, for producing a plurality of sensor signals. A plurality of signal combiners are also provided to receive at least two of the sensor signals and produce therefrom a combined sensor signal. A plurality of data bit extractors are arranged to receive at least two combined sensor signals and to determine the value of a data bit encoded in an associated absolute scale. The readhead also comprises an incremental signal generator for generating at least one incremental signal from the combined sensor signals produced by a plurality of the signal combiners. In this manner, both absolute and incremental position is measured.

    摘要翻译: 描述读取头(6; 76)用于读取编码一系列数据位的绝对标尺(4; 40; 50; 80),可选地为无源磁尺。 读取头包括多个传感器,例如用于产生多个传感器信号(H)的霍尔传感器(30; 82)的阵列。 还提供多个信号组合器(84)以接收至少两个传感器信号并由此产生组合的传感器信号(S)。 多个数据比特提取器(86)被布置为接收至少两个组合的传感器信号(S)并且确定以相关绝对比例(4; 40; 50; 80)编码的数据比特的值。 读取头(6; 76)还包括增量信号发生器(88,90),用于从由多个信号组合器(84)产生的组合传感器信号(S)中产生至少一个增量信号(Sin / Cos)。 以这种方式,测量绝对位置和增量位置。

    PROCESS AND DEVICE FOR ADJUSTING ROTARY ENCODER

    公开(公告)号:EP3167248B1

    公开(公告)日:2018-08-29

    申请号:EP15763427.0

    申请日:2015-07-10

    IPC分类号: G01D5/20 G01D18/00 G01P3/44

    CPC分类号: G01D18/008 G01D5/2033

    摘要: The invention relates to the process and device for adjusting a rotary encoder, i.e. the absolute magnetic rotary encoder with Hall effect sensors which, when positioned in the form of a circle, detect the magnetic field of a diametrically polarised permanent magnet. The rotary encoder adjustment process features the following: the actuator magnet turns once or several times over the sensor circuit, whereby the time-dependant rotation angle is recorded/stored; time-dependant presupposed values of the rotation angle are calculated; these are then subtracted from the measured actual rotation angle values; by analysing the obtained difference, the electric parameter values for the sensor circuit are determined in such a manner as to make the newly measured difference based on new electric parameter values smaller than before the change; the electric parameter values for the sensor circuit are written into the sensor circuit.

    Position encoder apparatus
    10.
    发明公开
    Position encoder apparatus 审中-公开
    位置编码器装置

    公开(公告)号:EP2404141A1

    公开(公告)日:2012-01-11

    申请号:EP10712743.3

    申请日:2010-03-01

    发明人: DOLSAK, Gregor

    IPC分类号: G01D5/244 G01D5/36

    摘要: A scanning device for a position encoder is provided that comprises a plurality of sensor elements for generating a plurality of sensor signals. A summation unit is also provided for generating at least a first summation signal and a second summation signal that provide information on the relative alignment of the scanning device and an associated scale. The first summation signal is generated from a first subset of the plurality of sensor signals and the second summation signal is generated from a second subset of the plurality of sensor signals. The plurality of sensor elements are substantially evenly spaced apart from one another N and sensor elements are provided per period of an associated scale, wherein N is an integer value and a multiple of three and four. In this manner, the third harmonic contribution to the summation signals is suppressed.

    摘要翻译: 描述了用于位置编码器的扫描装置(150),其包括用于生成多个传感器信号(S)的多个传感器元件(16; H)。 还提供求和单元(34),用于产生至少第一求和信号(Sin)和第二求和信号(Cos),其提供关于扫描装置和相关标尺(14; 152)的相对对准的信息。 第一求和信号(Sin)从多个传感器信号(S)的第一子集产生并且第二求和信号(Cos)从多个传感器信号(S)的第二子集产生。 多个传感器元件(16; H)彼此基本均匀地间隔开,并且N个传感器元件在相关标尺(14)的每个周期(p)提供,其中N是整数值并且是三和四的倍数 以这种方式,抑制了求和信号(Sin / Cos)的三次谐波贡献。