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    • 1. 发明授权
    • Angle measuring instrument for a rotating shaft
    • 旋转轴用角度测量仪
    • US06828783B2
    • 2004-12-07
    • US10295801
    • 2002-11-15
    • Andreas SchroterMarc TiemannJohann Oberhauser
    • Andreas SchroterMarc TiemannJohann Oberhauser
    • G01B730
    • G01D5/2053
    • An angle measuring instrument having a device for determining a shaft angular position within one shaft rotation, and a device for determining a number of executed shaft rotations having a gear including at least one gear for converting the shaft rotary motion into rotary motion having a defined reduction ratio. The gear unit includes at least one gear wheel which rotates in a defined ratio to the shaft rotary motion. Devices are provided for generating sensor signals which are positionally dependent and are dependent upon the shaft rotations, in which the detecting device inductively scans reduced rotational movements of the shaft, and has alternating electrically conductive and electrically non-conductive graduation regions and a scanning device, movable relative to the graduation structure, including a device for generating a homogeneous electromagnetic field and a sensor device to scan the graduation structure and to transmit sensor signals which are dependent upon the shaft rotations.
    • 一种具有用于确定一个轴旋转内的轴角度位置的装置的角度测量仪器,以及用于确定执行的轴转数的装置,该装置具有齿轮,该齿轮包括至少一个齿轮,用于将轴旋转运动转换成具有限定的减小的旋转运动 比。 齿轮单元包括至少一个与轴旋转运动以一定比例旋转的齿轮。 提供了用于产生位置相关并且取决于轴旋转的传感器信号的装置,其中检测装置感应地扫描轴的减小的旋转运动,并且具有交替的导电和非导电刻度区域和扫描装置, 包括用于产生均匀电磁场的装置和用于扫描分度结构并传送取决于轴旋转的传感器信号的传感器装置的分度结构。
    • 3. 发明申请
    • ROTARY ENCODER AND SERIES OF ROTARY ENCODERS
    • 旋转编码器和旋转编码器系列
    • US20110094115A1
    • 2011-04-28
    • US13000785
    • 2009-06-30
    • Andreas SchroterSebastian Riepertinger
    • Andreas SchroterSebastian Riepertinger
    • G01B7/30
    • G01D3/022G01D5/2451G01D5/2497G01D11/245
    • A rotary encoder includes a stator and a rotor, the rotor being disposed in a manner allowing rotation relative to the stator with the aid of a bearing. The rotor has a shaft, a positive-locking device as well as a code disk being secured in rotatably fixed manner to the shaft. The stator has a body having a scanning device for scanning the code disk, a compensating coupling and a housing. The body is joined to the housing by the compensating coupling. The housing has a further positive-locking device, the rotary encoder being pre-adjusted such that in operation of the rotary encoder, at a predefined relative angular position between the positive-locking device of the shaft and the further positive-locking device of the housing, a predefined angle value is able to be output by the rotary encoder. A series of rotary encoders may be provided.
    • 旋转编码器包括定子和转子,所述转子以允许通过轴承相对于定子旋转的方式设置。 转子具有轴,正锁定装置以及可转动地固定在轴上的代码盘。 定子具有主体,其具有用于扫描代码盘的扫描装置,补偿联接器和壳体。 主体通过补偿联轴器连接到外壳。 壳体具有另外的正锁定装置,旋转编码器被预先调节,使得在旋转编码器的操作中,在轴的正锁定装置和另一正向锁定装置之间的预定的相对角位置 外壳中,预定义的角度值能由旋转编码器输出。 可以提供一系列旋转编码器。
    • 5. 发明授权
    • Rotary encoder and series of rotary encoders
    • 旋转编码器和一系列旋转编码器
    • US08146259B2
    • 2012-04-03
    • US13000785
    • 2009-06-30
    • Andreas SchroterSebastian Riepertinger
    • Andreas SchroterSebastian Riepertinger
    • G01B7/30
    • G01D3/022G01D5/2451G01D5/2497G01D11/245
    • A rotary encoder includes a stator and a rotor, the rotor being disposed in a manner allowing rotation relative to the stator with the aid of a bearing. The rotor has a shaft, a positive-locking device as well as a code disk being secured in rotatably fixed manner to the shaft. The stator has a body having a scanning device for scanning the code disk, a compensating coupling and a housing. The body is joined to the housing by the compensating coupling. The housing has a further positive-locking device, the rotary encoder being pre-adjusted such that in operation of the rotary encoder, at a predefined relative angular position between the positive-locking device of the shaft and the further positive-locking device of the housing, a predefined angle value is able to be output by the rotary encoder. A series of rotary encoders may be provided.
    • 旋转编码器包括定子和转子,所述转子以允许通过轴承相对于定子旋转的方式设置。 转子具有轴,正锁定装置以及可转动地固定在轴上的代码盘。 定子具有主体,其具有用于扫描代码盘的扫描装置,补偿联接器和壳体。 主体通过补偿联轴器连接到外壳。 壳体具有另外的正锁定装置,旋转编码器被预先调节,使得在旋转编码器的操作中,在轴的正锁定装置和另一正向锁定装置之间的预定相对角位置处 外壳中,预定义的角度值能由旋转编码器输出。 可以提供一系列旋转编码器。
    • 6. 发明授权
    • Position measuring arrangement and procedure for the assembly of a position measuring arrangement
    • 位置测量装置的位置测量装置和程序
    • US07500320B2
    • 2009-03-10
    • US11881904
    • 2007-07-30
    • Andreas SchroterThomas JägerWaltraud Aichhorn
    • Andreas SchroterThomas JägerWaltraud Aichhorn
    • G01B21/24
    • G01D5/34707G01D5/24442Y10T29/53
    • A method for assembling a position measuring arrangement for measuring a relative position of a first object with respect to a second object, wherein the position measuring arrangement includes a first unit movable in relation to a second unit of the position measuring arrangement, the method including fastening said first unit to the first object and fastening the second unit to the second object. The method further including adjusting a required scanning distance (A) between a scanning element of the second unit and a graduation of the second unit by applying a gauge to a first limit stop face of the first unit, as well as to a second limit stop face of the second unit. Prior to the fastening the first unit and the fastening the second unit, positioning and fixing either the first limit stop face on the first unit or the second limit stop face on the second unit in a direction of the required scanning distance so that the scanning distance (A) is optimally adjusted.
    • 一种用于组装用于测量第一物体相对于第二物体的相对位置的位置测量装置的方法,其中所述位置测量装置包括可相对于所述位置测量装置的第二单元移动的第一单元,所述方法包括紧固 所述第一单元到所述第一物体并且将所述第二单元紧固到所述第二物体。 该方法还包括通过向第一单元的第一极限停止面施加量规来调整第二单元的扫描元件与第二单元的刻度之间的所需扫描距离(A),以及第二限位停止 第二单位面。 在紧固第一单元和紧固第二单元之前,将所述第一单元上的第一限位挡块定位并固定在所述第二单元上的所述第二单元上的所述第二单元上,使得所述扫描距离 (A)进行了最佳调整。
    • 7. 发明授权
    • Field-modulating angular position measuring device having a scanning distance determinable in accordance with temperature and signal amplitudes
    • 具有可根据温度和信号幅度确定的扫描距离的场调制角位置测量装置
    • US07470890B2
    • 2008-12-30
    • US11497207
    • 2006-07-31
    • Andreas SchroterSteffen Bielski
    • Andreas SchroterSteffen Bielski
    • G01D5/34
    • G01D5/34738G01D5/24442G01D5/24452G01D5/24485G01D5/2449
    • A field-modulating angular position measuring device includes a scanning device, a measuring graduation, and evaluation electronics, the scanning device and the measuring graduation being arranged at a scanning distance rotatably relative to each other, and angle-dependent output signals being producible by the scanning device, which may be processed further in the evaluation electronics. The angular position measuring device furthermore has a unit for determining the signal amplitudes of the output signals. The angular position measuring device furthermore includes a temperature sensor, which is able to determine a temperature in the angular position measuring device. The angular position measuring device is configured such that the scanning distance may be determined on the basis of the temperature and the signal amplitudes. Furthermore, a method for operating such an angular position measuring device makes it possible, e.g., to determine a change in length of a shaft.
    • 场调制角位置测量装置包括扫描装置,测量刻度和评估电路,扫描装置和测量刻度以相对于彼此可旋转的扫描距离布置,以及角度相关的输出信号可由 扫描装置,其可以在评估电子装置中进一步处理。 角位置测量装置还具有用于确定输出信号的信号幅度的单元。 角度位置测量装置还包括能够确定角位置测量装置中的温度的温度传感器。 角位置测量装置被配置为可以基于温度和信号幅度来确定扫描距离。 此外,用于操作这种角位置测量装置的方法使得可以例如确定轴的长度变化。
    • 8. 发明授权
    • Method for assembling a position measuring device and a positioning means for the assembly
    • 用于组装位置测量装置的方法和用于组件的定位装置
    • US06775898B1
    • 2004-08-17
    • US09762754
    • 2001-04-16
    • Andreas SchroterHorst Röder
    • Andreas SchroterHorst Röder
    • B23Q300
    • G01D5/34738Y10T29/49826Y10T29/49895Y10T29/49901Y10T29/49902
    • A positioning device for setting the scanning distance between a scanning element and a scale of a position measuring device, the positioning device including a first part that is fixed in at least one direction of motion along a scanning distance directly or indirectly to the scale and a second part is fixed in at least one direction of motion along the scanning distance directly or indirectly to the scanning element, wherein the first or second part is displaceable relative to the other part in the direction of the scanning distance, and the displacement distance is defined. The first or second part includes a receptacle that is clamped to a face, extending in the direction of the scanning distance, of the scale or to a support of the scale, or to the scanning element or to a support of the scanning element.
    • 一种用于设置扫描元件与位置测量装置的刻度之间的扫描距离的定位装置,所述定位装置包括沿扫描距离直接或间接地与所述刻度尺在至少一个运动方向上固定的第一部分和 第二部分沿扫描距离直接或间接地固定在扫描方向的至少一个方向上,其中第一或第二部分可相对于扫描距离方向上的另一部分移动,并且定义位移距离 。 第一部分或第二部分包括被夹持在面向扫描距离的方向或刻度尺的支撑体上或与扫描元件或扫描元件的支撑件相对的面上的插座。
    • 9. 发明申请
    • Configuring a Memory for Use in a Mobile Appliance
    • 配置用于移动设备的内存
    • US20100105375A1
    • 2010-04-29
    • US12518753
    • 2007-12-03
    • Andreas Schroter
    • Andreas Schroter
    • H04W24/00G06F15/177
    • H04W8/183H04L63/0853H04W8/24H04W8/245H04W8/26H04W12/00512H04W12/06H04W28/18H04W88/02
    • A memory, such as a SIM card, is configured for use in a mobile appliance equipped to communicate through a wireless network. The configuration is started after a trigger 410, such as first use of the memory. Next, an identifier is retrieved 420 which is associated with the memory. The mobile appliance is used to provide 430 the identifier to a server via the wireless network. In the server, the identifier is used to retrieve 440 associated configuration data for configuring the mobile appliance to operate in the wireless network in a network-specific and/or provider-specific manner. The configuration data is provided 450 from the server to the mobile appliance via the wireless network. Finally, the configuration data is stored 460 in the memory.
    • 诸如SIM卡的存储器被配置为用于配备成通过无线网络进行通信的移动设备。 配置在触发器410之后启动,诸如首次使用存储器。 接下来,检索与存储器相关联的标识符420。 移动设备用于通过无线网络向服务器提供430标识符。 在服务器中,标识符用于检索440个关联的配置数据,用于配置移动设备以网络特定和/或供应商特定的方式在无线网络中操作。 通过无线网络从服务器向移动设备提供配置数据450。 最后,将配置数据存储在存储器460中。
    • 10. 发明授权
    • Scale and method for producing this scale and position measuring system employing such a scale
    • 用于生产这种尺度和尺寸的位置测量系统的尺度和方法
    • US07253612B2
    • 2007-08-07
    • US10622024
    • 2003-07-17
    • Andreas SchroterMichael Schwabe
    • Andreas SchroterMichael Schwabe
    • G01B7/30
    • G01D5/14
    • A scale that includes a first base body having a first non-magnetizable support and a first set of magnetic elements that are arranged laterally next to the first non-magnetizable support, are magnetized in a single identical direction and are arranged in a measuring direction. A second base body having a second non-magnetizable support and a second set of magnetic elements that are arranged laterally next to the second non-magnetizable support, are magnetized in the single identical direction and area arranged in the measuring direction. The first base body and the second base body are put together such that in the measuring direction alternating ones of the first and second sets of magnetic elements are arranged and the first and second sets of magnetic elements have different magnetic orientations with respect to each other.
    • 包括具有第一不可磁化支撑件的第一基体和横向放置在第一不可磁化载体上的第一组磁性元件的刻度在单个相同的方向上被磁化并且沿测量方向布置。 具有第二不可磁化支撑体的第二基体和横向放置在第二不可磁化载体上的第二组磁性元件在沿测量方向布置的单个相同的方向和面积上被磁化。 将第一基体和第二基体放置在一起,使得在测量方向上布置交替的第一和第二组磁性元件组,并且第一和第二组磁性元件相对于彼此具有不同的磁取向。