会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 12. 发明申请
    • Kit servomotor
    • 套件伺服电机
    • US20090315433A1
    • 2009-12-24
    • US12457509
    • 2009-06-12
    • Josef Siraky
    • Josef Siraky
    • H02K11/00
    • H02K11/21
    • A kit servomotor consists of an electromotor and a rotary encoder. The electromotor has a motor stator (3, 8) and a rotor (1), which is positioned in unsupported fashion in the motor stator. The motor stator (3, 8) and the rotor (1) can be installed on the output end. The rotor (1) is designed as a hollow shaft, at least on its end opposite the end used for installation. The rotary encoder is attached to the electromotor on the end opposite the installation end and has a stator unit (4) and an encoder shaft (5). The stator unit (4) is connected to the motor stator (3, 8). The encoder shaft 5 is connected to the rotor (1) using a coupling that is isogonal with respect to the angle of rotation, but elastic in the radial and axial directions. At its motor end, which is coaxial to the hollow shaft of the rotor (1), the encoder shaft (5) has an outer diameter that is smaller than the inner diameter of the hollow shaft. The coupling is axially flat in design and bridges the annular gap between the outer diameter of the encoder shaft (5) and the inner diameter of the hollow shaft of the rotor (1).
    • 套件伺服电机由电动机和旋转编码器组成。 电动机具有电动机定子(3,8)和转子(1),其以不支撑的方式定位在电动机定子中。 电动机定子(3,8)和转子(1)可以安装在输出端。 转子(1)设计为空心轴,至少在其与安装端所在的端部相对的端部。 旋转编码器在与安装端相对的端部附接到电动机,并具有定子单元(4)和编码器轴(5)。 定子单元(4)连接到电动机定子(3,8)。 编码器轴5使用相对于旋转角度为等角度但在径向和轴向方向上具有弹性的联轴器连接到转子(1)。 在其与转子(1)的空心轴同轴的电动机端,编码器轴(5)的外径小于中空轴的内径。 联轴器在设计上轴向平坦,并且桥接编码器轴(5)的外径和转子(1)的中空轴的内径之间的环形间隙。
    • 13. 发明授权
    • Rotary position transducer
    • 旋转位置传感器
    • US07540095B2
    • 2009-06-02
    • US12003007
    • 2007-12-19
    • Josef SirakyRolf Hartlieb
    • Josef SirakyRolf Hartlieb
    • G01B21/20G01B3/14
    • F16H55/18F16H57/02004F16H57/12
    • A rotary position transducer has a housing, a rotor, which is connected to a drive shaft to be measured and projects into the housing so as to rotate with it and the angular position of which within one revolution is measured, and a multi-turn unit that is mounted in the housing and measures the number of revolutions of the rotor. The multi-turn unit is coupled with the rotor by way of a gear wheel gear mechanism, which has a driving spur wheel (10) connected to the rotor, and a driven spur wheel (12) of the multi-turn unit. In the case of one of the spur wheels (10), the head of every second tooth (16) is shortened up to the reference circle. In the case of the other spur wheel (12), the base of every second gap (18) between teeth is filled up to the reference circle. The spur wheels (10, 12) are helical-geared, wherein the modulus and the helix angle (α) of the helical gearing are determined in such a manner that at least one tooth (16) is always in engagement.
    • 旋转位置传感器具有壳体,转子,其连接到待测量的驱动轴并且突出到壳体中以与其一起旋转并且其在一圈内的角位置被测量,并且多匝单元 其安装在壳体中并且测量转子的转数。 多转单元通过齿轮传动机构与转子耦合,齿轮机构具有连接到转子的驱动正齿轮(10)和多匝单元的被驱动的正齿轮(12)。 在正齿轮(10)中的一个的情况下,每第二齿(16)的头部被缩短到参考圆。 在另一个正齿轮(12)的情况下,齿之间的每个第二间隙(18)的基部填充到参考圆。 正齿轮(10,12)是螺旋齿轮的,其中螺旋齿轮的模量和螺旋角(α)以这样的方式确定,使得至少一个齿(16)总是接合。
    • 14. 发明申请
    • Measuring device
    • 测量工具
    • US20060070250A1
    • 2006-04-06
    • US11244398
    • 2005-10-06
    • Josef SirakyBernhard Wolfle
    • Josef SirakyBernhard Wolfle
    • G01B7/30
    • G01B3/12G01P3/50
    • Measuring device for measuring the path and/or speed of a moving object in relation to a structural component, with a measuring wheel (20) and with a rotary encoder (10), such that the measuring wheel (20) is coupled to the encoder shaft (16) of the rotary encoder (10) at a precise angle of rotation, and the measuring wheel (20), along with the contact surface (22) formed by its jacket, can be positioned on the object in such a way that the axis of the measuring wheel (X direction) runs basically perpendicular to the direction of motion (Z direction) of the object, and the measuring wheel (20) and the rotary encoder (10) are elastically mounted on the structural component in a direction (Y direction) that is basically perpendicular to the axis of the measuring wheel (X direction) and to the direction of motion of the object (Z direction), wherein the measuring wheel (20) and the rotary encoder (10) are positioned on an elastic arm (32) that exhibits two legs (34, 36), the elastic arm (32) is secured to the structural component with the end of one of the legs (34), the measuring wheel (20) and the rotary encoder (10) are attached to the end of the other leg (36), and one of the legs (34) can be deflected in what is essentially the Y direction and the other leg (36) can be deflected in what is essentially the X direction.
    • 用于通过测量轮(20)和旋转编码器(10)测量移动物体相对于结构部件的路径和/或速度的测量装置,使得测量轮(20)与编码器 旋转编码器(10)的轴(16)以精确的旋转角度,并且测量轮(20)与由其护套形成的接触表面(22)一起可以被定位在物体上,使得 测量轮(X方向)的轴基本上垂直于物体的运动方向(Z方向)延伸,并且测量轮(20)和旋转编码器(10)沿方向弹性地安装在结构部件上 (Y方向),其基本上垂直于测量轮的轴线(X方向)和物体的运动方向(Z方向),其中测量轮(20)和旋转编码器(10)位于 弹性臂(32),其展现两条腿(3 如图4,图36所示),弹性臂(32)固定到结构部件上,其中一个腿(34)的一端,测量轮(20)和旋转编码器(10)的一端连接到另一个 腿部(36),并且腿部(34)中的一个可以在基本上Y方向上偏转,并且另一个腿部(36)可以在基本上在X方向上偏转。
    • 17. 发明授权
    • Length measurement apparatus
    • 长度测量仪
    • US08575931B2
    • 2013-11-05
    • US12971573
    • 2010-12-17
    • Josef SirakyFlorian Grieshaber
    • Josef SirakyFlorian Grieshaber
    • G01R33/00
    • G01D5/147
    • A length measurement apparatus (10) has a bistable magnetic element (102), an elongated physical scale (200) with a plurality of measurement graduation elements (202) spaced apart from one another and a reading head (100) movable relative to the physical scale (200) in its longitudinal extent and which includes a first and second reading head magnet (114a b) arranged transverse to the longitudinal extent and with opposite polarity to one another. The measurement graduation elements (202) each have a magnetic short-circuit element (202) to suppress the magnetic field (116a) of the first reading head magnet (114a) in a first relative position of the reading head (100) and the magnetic field (116b) of the second reading head magnet (114b) in a second relative position of the reading head (100).
    • 长度测量装置(10)具有双稳态磁性元件(102),具有彼此间隔开的多个测量刻度元件(202)的细长物理尺度(200)以及相对于物理尺寸可移动的读取头(100) 其尺寸(200)在其纵向范围内,并且包括横向于纵向延伸并且彼此具有相反极性的第一和第二读取头磁体(114a b)。 测量刻度元件(202)各自具有磁性短路元件(202),以在读取头(100)的第一相对位置和磁性元件(202)中抑制第一读取磁头磁体(114a)的磁场(116a) 第二读取磁头磁体(114b)的位置(116b)位于读取头(100)的第二相对位置。
    • 18. 发明申请
    • Device for measuring the axial position of a piston rod relative to a cylinder housing
    • 用于测量活塞杆相对于气缸壳体的轴向位置的装置
    • US20100223982A1
    • 2010-09-09
    • US12659011
    • 2010-02-23
    • Josef Siraky
    • Josef Siraky
    • G01M15/06
    • F15B15/2884F15B15/2861
    • Device for measuring the axial position of a piston rod (18) relative to the cylinder housing (10) of a cylinder-piston unit that is actuated by fluid pressure, with structures having elevations or indentations formed in the jacket surface of the piston (18), which elevations or indentations form an axially extending material measure; and with a sensor device (28), which is positioned on the cylinder housing and which scans the structure with sensors that are positioned in the axial direction for the purpose of contact-free positional sensing; and with an abrasion-proof cover by means of which the structure is guided within the cylinder housing (10), where the structures are annular structures (22, 24) that concentrically surround the piston rod (18), and where the cover is a tube (26) that is coaxially slid onto the piston rod (18), and where the annular structures (22, 24) form an absolutely coded material measure.
    • 用于测量活塞杆(18)相对于由流体压力致动的气缸 - 活塞单元的气缸壳体(10)的轴向位置的装置,具有形成在活塞(18)的护套表面中的高度或压痕的结构 ),这些凸起或凹痕形成轴向延伸的材料测量; 以及传感器装置(28),其位于所述气缸壳体上,并且为了无接触地位置感测的目的,沿着轴向定位的传感器扫描所述结构; 并且具有耐磨保护盖,借助于此,该结构在气缸壳体(10)内被引导,其中结构是同心地围绕活塞杆(18)的环形结构(22,24),并且其中盖是 管(26),其同轴地滑动到活塞杆(18)上,并且其中环形结构(22,24)形成绝对编码的材料测量。
    • 19. 发明授权
    • Rotary encoder
    • 旋转编码器
    • US07336205B2
    • 2008-02-26
    • US11472548
    • 2006-06-22
    • Josef SirakyAugust Goetz
    • Josef SirakyAugust Goetz
    • H03M1/22
    • G01P1/04G01D5/24442
    • A rotary encoder exhibits a shaft, which can be coupled in torque-proof fashion to a rotating object to be measured. The shaft is connected at a true angle of rotation to a material measure and is divided axially into a drive section (10), which can be coupled to the measured object, and an output section (12), which is connected to the material measure. The drive section (10) and the output section (12) are connected in torsionally rigid but axially resilient fashion by an intermediate element (26), which takes the form of a disk.
    • 旋转编码器具有轴,该轴可以扭矩抵抗的方式与要测量的旋转物体相耦合。 该轴以一个真实的旋转角度连接到材料测量件上,并被轴向地分成可连接到测量对象的驱动部分(10),和连接到材料测量装置的输出部分(12) 。 驱动部分(10)和输出部分(12)通过采取盘形式的中间元件(26)以扭转刚性但轴向弹性的方式连接。
    • 20. 发明申请
    • Device for measuring the position, the path or the rotational angle of an object
    • 用于测量物体的位置,路径或旋转角度的装置
    • US20070180714A1
    • 2007-08-09
    • US10798781
    • 2004-03-12
    • Josef Siraky
    • Josef Siraky
    • G01B7/30
    • H03M1/287G01D5/04G01D5/2492G01D5/2497G01D5/3473
    • A device for measuring the position, path, or rotational angle of an object exhibits a dimensional gauge that is connected to the object and that can be scanned. The dimensional gauge assigns measured values to the object's positional range, and these measured values repeat themselves cyclically in the object's successive positional ranges. The number of the completed measured value cycles is counted by an encoding unit with code disks (3, 4, 5), which exhibit an absolute angular encoding capability (34, 44, 54). The code disks (3, 4 or 4, 5) are arranged in succession and are coupled by a differential gear (21, 30, 40 or 22, 45, 50). The number of completed measured value cycles is determined from the reciprocal angular position of the code disks (3, 4, 5).
    • 用于测量物体的位置,路径或旋转角度的装置显示连接到物体并且可被扫描的尺寸计。 尺寸计量器将测量值分配给对象的位置范围,并且这些测量值在对象的连续位置范围内循环重复。 通过具有代码盘(3,4,5)的编码单元对完成的测量值周期的数量进行计数,该编码单元具有绝对角度编码能力(34,44,54)。 代码盘(3,4或4,5)依次布置并通过差速齿轮(21,30,40或22,45,50)联接。 完成的测量值循环的数量由代码盘(3,4,5)的倒数角位置确定。