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    • 1. 发明专利
    • Method of synchronizing bidirectional transmission of data and system using same
    • 同步数据传输的方法和使用该方法的系统
    • JP2007306571A
    • 2007-11-22
    • JP2007126469
    • 2007-05-11
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • FRANCESCON MASSIMOSIRAKY JOSEFARMBRUSTER ULRICH
    • H04L7/04H04L7/00
    • H04L7/10H04L7/0008H04L7/0079H04L7/044Y10T70/7113
    • PROBLEM TO BE SOLVED: To provide a method capable of synchronizing trigger pulses and data transmission between a transmitter and a receiver with each other as accurately as possible. SOLUTION: Disclosed is the method of synchronizing bidirectional transmission of data between the transmitter and receiver based upon transmission of frames (10) of set bit length. In each frame (10), a first bit length (20) set for data transmission from the transmitter to the receiver and a second bit length (30) set for data transmission from the receiver to the transmitter are determined. Here, trigger pulses (40) for data gathering by the receiver are transmitted from the transmitter to the receiver in parallel to and irrelevantly to the data transmission between the transmitter and receiver, wherein each frame (10) has a time slot (50) so as to transmit data neither from the receiver to the transmitter nor from the transmitter to the receiver and a trigger pulse (40) is transmitted with the time slot (50) from the transmitter to the receiver. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够使发送器和接收器之间的触发脉冲和数据传输尽可能准确地彼此同步的方法。 解决方案:公开了基于设置位长度的帧(10)的传输来同步在发射机和接收机之间的数据双向传输的方法。 在每个帧(10)中,确定用于从发射机到接收机的数据传输的第一比特长度(20)和用于从接收机到发射机的数据传输的第二比特长度(30)。 这里,用于接收机进行数据采集的触发脉冲(40)与发射机和接收机之间的数据传输并行并且不相关地从发射机发射到接收机,其中每个帧(10)具有时隙(50) 用于将数据既不从接收机传输到发射机也不从发射机发送到接收机,并且触发脉冲(40)随时间(50)从发射机发射到接收机。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Information carrier
    • 信息载体
    • JP2007172817A
    • 2007-07-05
    • JP2006341003
    • 2006-12-19
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • OLIVIER PARRIAUXALEXANDER V TISHCHENKOMUTSCHLER REINHOLD
    • G11B7/24G01B11/00G01D5/347G11B7/254G11B7/257
    • G01D5/38G01D5/34707
    • PROBLEM TO BE SOLVED: To obtain an information carrier capable of using a usual light source such as a light emitting diode. SOLUTION: Marks (20) are disposed in a track, the marks can be detected by means of light of a central wavelength (λ) which is emitted by the light source and made incident upon the information carrier (10) at an angle (Θ i ) and the position of the information carrier (10) can be derived from the marks. The marks (20) are formed by areas (25) which are structured at least by first structures (22) of a lattice period (Λ) and these areas are disposed on the back side (40b) of a metal film (40) and/or on the front side (40a) of the metal film (40). The lattice period (Λ) of the first structures (22) satisfy the equation Λ=λ/(the effective index of a plasmon mode along the metal film (40)-sin(Θ i )) or Λ=λ/(the effective index of a plasmon mode along the metal film (40)+sin(Θ i )). COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:获得能够使用诸如发光二极管的常规光源的信息载体。 标记(20)被布置在轨道中,标记可以通过由光源发射并入射到信息载体(10)上的中心波长(λ)的光来检测, 角度(Θ i ),信息载体(10)的位置可以从标记中导出。 标记(20)由至少由晶格周期(Λ)的第一结构(22)构成的区域(25)形成,并且这些区域设置在金属膜(40)的背面(40b)上,并且 /或金属膜(40)的前侧(40a)上。 第一结构(22)的晶格周期(Λ)满足等式Λ=λ/(沿着金属膜(40)-sin(Θ i )的等离子体激元模式的有效指数)或 Λ=λ/(沿着金属膜(40)的等离子体激元模式的有效指数+ sin(Θ i ))。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Device for absolutely measuring linear position or rotation position of object to be measured
    • 用于绝对测量物体的线性位置或旋转位置的装置
    • JP2007147597A
    • 2007-06-14
    • JP2006287368
    • 2006-10-23
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • SIRAKY JOSEF
    • G01D5/12G01D5/08
    • G01D5/04G01D5/08G01D5/24433
    • PROBLEM TO BE SOLVED: To provide a sensor for coding a position by a plurality of scanning cycles which keeps a wear problem minimized when a coding unit is mechanically connected.
      SOLUTION: In order to absolutely measure a position of an object 10 to be measured by scanning a net weight section a plurality of times, the coding unit 18 for sensing cycles is used. The coding unit 18 is connected to the object 10 via mechanical linkage portions 22, 24. The linkage portions respectively includes a gear 22 for driving and an input gear 24 driven by the coding unit 18. In order to minimize the wear of engagement, the engagement contains a play and the driven input gear 24 is driven synchronously with the gear 22 driven by a motor 26 by controlling a scanning device 12. Thus, the linkage operates in the play without mechanical engagement.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于通过多个扫描周期对位置进行编码的传感器,当编码单元机械地连接时,其使磨损问题最小化。 解决方案:为了通过多次扫描净重部分来绝对地测量要测量的对象10的位置,使用用于感测循环的编码单元18。 编码单元18通过机械联动部分22,24连接到物体10.连接部分分别包括用于驱动的​​齿轮22和由编码单元18驱动的输入齿轮24.为了最小化接合的磨损, 接合包含游隙,并且从动输入齿轮24通过控制扫描装置12与由电动机26驱动的齿轮22同步地驱动。因此,联动装置在没有机械接合的情况下操作。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Rotation detector
    • 旋转探测器
    • JP2008170431A
    • 2008-07-24
    • JP2007325717
    • 2007-12-18
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • SIRAKY JOSEFHARTLIEB ROLF
    • G01B5/24
    • F16H55/18F16H57/02004F16H57/12
    • PROBLEM TO BE SOLVED: To obtain a rotation detector capable of minimizing the undefined play in a gear coupling of gears between a rotor and a multiplex winding unit.
      SOLUTION: A housing, the rotor unrotatablly combined with a drive shaft which rushes in into the housing and which is to be measured, and measured for the angular position within one revolution, and the multiplex winding unit supported with the housing and measuring the number of the rotation of the rotor are included. The multiplex winding unit is coupled to the rotor through a gear transmission device which has a drive spur gear 10 combined with the rotor and a driven spur gear 12 of the multiplex winding unit. The head of every second tooth 16 of one spur gear 10 is shortened to the pitch circle. The bottom of every second tooth groove 18 of the other spur gear 12 is filled up to the pitch circle. The teeth of the spur gears 10, 12 are cut helically, and the inclination angle of a helical tooth profile is defined so as to always engage at least one tooth 16.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:获得能够使转子和多路复用绕组单元之间的齿轮的齿轮联接中的未定义的摆动最小化的旋转检测器。

      解决方案:一个壳体,转子不可转动地与驱动轴组合,该驱动轴冲入壳体中并被测量,并在一圈内测量角位置,并且多个缠绕单元支撑在壳体上并测量 包括转子的旋转数。 多路复用绕组单元通过齿轮传动装置连接到转子,齿轮传动装置具有与转子组合的驱动正齿轮10和多路复用绕组单元的从动正齿轮12。 一个正齿轮10的每个第二齿16的头被缩短到节圆。 另一个正齿轮12的每个第二齿槽18的底部填充到节圆。 正齿轮10,12的齿是螺旋状切割的,并且螺旋齿廓的倾斜角被限定为总是啮合至少一个齿16.版权所有(C)2008,JPO&INPIT

    • 6. 发明专利
    • Positioning system
    • 定位系统
    • JP2007155731A
    • 2007-06-21
    • JP2006326511
    • 2006-12-04
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • SIRAKY JOSEFHARTLIEB ROLFMAIER JOSEF
    • G01B5/00G01B21/00H02K7/116
    • H02K7/116H02K7/06H02K11/21
    • PROBLEM TO BE SOLVED: To attain high positioning precision for a positioner without being complicated mechanically, and to allow flexibly applications suitable for various uses, as a positioning system for the mobile positioner. SOLUTION: This positioning system for positioning the positioner is provided with a motor 18 for driving the positioner 10, and a measuring instrument, and the measuring instrument measures directly an adjustment travel of the positioner to control the motor 18. A tow wire 32 is coupled with the positioner and is wound onto a drum 36. Rotation of the drum 36 is measured to measure the adjustment travel of the positioner, using a shaft encoder 42. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了获得定位器的高定位精度而不是机械地复杂,并且允许适合于各种用途的灵活应用,作为移动定位器的定位系统。

      解决方案:用于定位器定位的定位系统设置有用于驱动定位器10的马达18和测量仪器,并且测量仪器直接测量定位器的调节行程以控制马达18.牵引线 32与定位器联接并被卷绕在滚筒36上。测量滚筒36的旋转,以使用轴编码器42测量定位器的调节行程。(C)2007,JPO和INPIT

    • 7. 发明专利
    • Encoder
    • 编码器
    • JP2011075553A
    • 2011-04-14
    • JP2010202842
    • 2010-09-10
    • Sick Stegmann Gmbhジック シュテークマン ゲーエムベーハーSICK STEGMANN GmbH
    • DRIKER MICHAELVITNER OFERSIRAKY JOSEF
    • G01D5/245
    • G01D5/34707G01D5/34738
    • PROBLEM TO BE SOLVED: To provide an encoder that simplifies configuration of a general type of encoder. SOLUTION: The encoder includes a rotor 28 that can be fixed on the shaft of a motor, and a stator which can be fixed by a bearing surface on an attachment surface of the motor and has a scanning means. In the mounted state, the rotor 28 is fixed on the shaft and a housing 10 is fixed on the attachment surface in such a way that the rotor 28 and the scanning means have a defined axial distance. The encoder is pushed onto the shaft until the housing 10 is held in a mounting auxiliary position with its bearing surface at an axial distance from the attachment surface, the axial distance corresponding to the defined distance. In the mounting auxiliary position of the housing 10, the rotor 28 is brought axially to be placed on the scanning means and is fixed on the shaft, and the housing 10 of the stator is moved by its bearing surface by the defined distance towards the attachment surface and is fixed on the attachment surface. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种简化编码器的一般类型的配置的编码器。 解决方案:编码器包括可固定在电动机的轴上的转子28和可由电动机的附接表面上的支承表面固定并具有扫描装置的定子。 在安装状态下,转子28固定在轴上,壳体10固定在附接表面上,使得转子28和扫描装置具有确定的轴向距离。 编码器被推到轴上,直到壳体10保持在安装辅助位置,其轴承表面与附接表面在轴向距离处,轴向距离对应于限定的距离。 在壳体10的安装辅助位置,转子28轴向地被放置在扫描装置上并固定在轴上,并且定子的壳体10被其支承表面移动一定距离的附件 表面并固定在附着表面上。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Encoder
    • 编码器
    • JP2008064744A
    • 2008-03-21
    • JP2007198699
    • 2007-07-31
    • Sick Stegmann Gmbhジク ステグマン ゲーエムベーハー
    • SIRAKY JOSEFHARTLIEB ROLF
    • G01D5/245
    • G01D5/34707G01D5/24442
    • PROBLEM TO BE SOLVED: To facilitate mounting of an encoder.
      SOLUTION: An encoder for detecting measured values, which depend on the rotating angle between a shaft and a housing containing the shaft, a stator 20 which is secured to the housing, a rotor 30 which is secured to the shaft, and a sensor which detects the rotation of the rotor 30 relative to the stator 20. A spring washer 42 with supporting points 44 rests on the circumference of the stator 20. In the mounting process the encoder is positioned on the shaft until the stator 20 is axially braced against the housing with the supporting points 44 of the spring washer 42. In this auxiliary position the rotor 30 is fixed in position on the shaft. Then the stator 20 is pressed against the housing while working against the force of the spring washer 42 and is secured to the housing.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了便于安装编码器。 解决方案:一种用于检测测量值的编码器,该测量值取决于轴和容纳轴的壳体之间的旋转角度,固定到壳体的定子20,固定到轴的转子30和 传感器,其检测转子30相对于定子20的旋转。具有支撑点44的弹簧垫圈42搁置在定子20的圆周上。在安装过程中,编码器定位在轴上,直到定子20被轴向支撑 与弹簧垫圈42的支撑点44相对于壳体。在该辅助位置,转子30固定在轴上的适当位置。 然后,在抵抗弹簧垫圈42的力的作用下,定子20压靠在壳体上并固定到壳体上。 版权所有(C)2008,JPO&INPIT