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    • 3. 发明授权
    • Bending machine for tubing, bar and the like
    • 管材,棒材等弯曲机
    • US06854311B2
    • 2005-02-15
    • US10404256
    • 2003-04-01
    • Frank SchmauderWinfried RichterJürgen WolfStephan LaustererErwin HolderStefan DeuterRainer Hofmann
    • Frank SchmauderWinfried RichterJürgen WolfStephan LaustererErwin HolderStefan DeuterRainer Hofmann
    • B21D7/024B21D7/12
    • B21D7/024B21D7/12
    • A bending machine for the bending of tube, rod and bar shaped workpieces (24, 24a) includes a machine base unit (2), a collet (6) for mounting a workpiece, and a tool assembly (15) with at least one bending tool. The bending tool can be opened and closed in the transverse direction of the workpiece by the relative movement of tool components to form a workpiece holder. The tool assembly (15) is mounted on a swivel support (10) to rotate around a tool axis of rotation (16) extending axially of the workpiece, and the swivel support (10) is mounted on the machine base unit (2) to be rotatable around a swivel support axis of rotation (11) extending in the axial direction (12) of the workpiece. The swivel support axis of rotation (11) and the tool axis of rotation (16), and the tool axis of rotation (16) and the workpiece holder, are radially offset relative to one another.
    • 用于弯曲管,棒和棒状工件(24,24a)的弯曲机包括机器基座单元(2),用于安装工件的夹头(6)和具有至少一个弯曲的工具组件(15) 工具。 弯曲工具可以通过工具部件的相对运动在工件的横向上打开和关闭,以形成工件保持器。 工具组件(15)安装在旋转支撑件(10)上以围绕工件轴向延伸的工具旋转轴线(16)旋转,并且旋转支撑件(10)安装在机器基座单元(2)上 可围绕在工件的轴向(12)上延伸的旋转支撑旋转轴线(11)旋转。 旋转支撑轴线(11)和刀具旋转轴线(16)以及刀具旋转轴线(16)和工件保持器相对于彼此径向偏移。
    • 4. 发明授权
    • Optical or opto-electrical array
    • 光电或光电阵列
    • US06616345B2
    • 2003-09-09
    • US09838997
    • 2001-04-20
    • Thilo von FreyholdJürgen WolfTorsten Scheller
    • Thilo von FreyholdJürgen WolfTorsten Scheller
    • G02B636
    • G02B6/4228G02B6/4204G02B6/4219
    • Optical or optoelectronic array with an assembly holder and an optical or optoelectronic assembly located on it to position the assembly holder on an assembly surface of an optical bench in a way that is movable only in a first plane of adjustment parallel to the assembly surfacewhere the assembly holder has an assembly base for positioning the assembly holder on the assembly surface as well as a seat which is open the entire distance from one outside surface of the assembly holder to the opposite outside surface of the assembly holder in which the optical or optoelectronic assembly is located and which is formed in such a way that the optical or optoelectronic assembly can be moved relative to the assembly holder only in a second plane of adjustment which is non-parallel to the first plane of adjustment, extending parallel to the directional passage of the seat.
    • 光学或光电子阵列具有组件保持器和位于其上的光学或光电组件,以将组件保持器定位在光学工作台的组件表面上,其方式仅在平行于组装表面的第一平面内可移动,其中组件 保持器具有用于将组件保持器定位在组装表面上的组合基座以及从组件保持器的一个外表面到组件保持器的相对外表面打开整个距离的座,其中光学或光电组件是 位于并且其形成为使得光学或光电组件能够仅在不平行于第一调整平面的第二调节平面中相对于组件保持器移动,平行于第二调整平面 座位。
    • 6. 发明申请
    • STAND-ALONE MINIATURISED COMMUNICATION MODULE
    • 独立的微型通信模块
    • US20090315736A1
    • 2009-12-24
    • US12065446
    • 2006-09-01
    • Herbert ReichlJürgen WolfKlaus Lang
    • Herbert ReichlJürgen WolfKlaus Lang
    • G08B21/00
    • G08C17/00H04Q9/00
    • A device for continuous measurement of the forces acting upon a movable compressible playable object is provided with at least one transmitter communicating with at least one receiver outside the movable object. The at least one receiver transforms signals received and evaluates them online. The movable compressible playable object, for instance a ball, includes at least one pressure sensor and/or at least one three-dimensional acceleration sensor as well as a converter for transforming signals therefrom to transmit them to the transmitter. A method for the use of this device causes activation of the transmitter in the movable object so that a system is created for the measurement of the forces acting upon such an object wherein the received measuring signals are present in evaluated form, online or offline, to be analyzed. By means of the activation method, the active sensor system is initiated to receive and transmit measuring signals.
    • 用于连续地测量作用在可移动可压缩可播放物体上的力的装置设置有与可移动物体外的至少一个接收器通信的至少一个发射器。 至少一个接收器转换接收到的信号并在线评估它们。 可移动可压缩可播放物体,例如球,包括至少一个压力传感器和/或至少一个三维加速度传感器以及用于将信号转换成发送器的变换器。 使用该装置的方法导致可移动物体中的发射器的激活,使得创建用于测量作用在这样的物体上的力的系统,其中接收的测量信号以在线或离线的评估形式存在于 分析。 通过激活方法,启动主动传感器系统以接收和发送测量信号。
    • 10. 发明授权
    • Impulse voltage generator circuit
    • 脉冲电压发生器电路
    • US06211683B1
    • 2001-04-03
    • US09254913
    • 1999-03-16
    • Jürgen Wolf
    • Jürgen Wolf
    • G01R3112
    • H03K3/537G01R31/028G01R31/14G01R31/2841
    • A pulsed-voltage generator circuit for producing a flash pulsed voltage for testing the capacitance of a unit under test has two stages (1, 2) which can be charged. Each stage (1, 2) comprises, connected in series, a surge capacitance (11, 21) and a switching spark gap (12, 22), a parallel resistor (13, 23) connected in parallel with the surge capacitance (11, 21) and the switching spark gap (12, 22), and, connected in series with them, a series resistor (14, 24). The two stages (1, 2) are connected to one another such that they can be charged connected in parallel and can be discharged connected in series. A load capacitance (4) is connected to the second stage (2), an additional circuit element (5) for reducing the overshoot of the pulse fronts of the flash pulsed voltage for the load capacitance (4) being arranged between the second stage (2) and the load capacitance (4). The additional circuit element (5) has a compensation capacitance (51) and, connected in parallel with it, a discharge resistor (52).
    • 用于产生用于测试被测单元的电容的闪光脉冲电压的脉冲电压发生器电路具有两个可以充电的阶段(1,2)。 每个级(1,2)包括串联连接的浪涌电容(11,21)和开关火花隙(12,22),与浪涌电容(11,22)并联连接的并联电阻(13,23) 21)和切换火花隙(12,22),并与它们串联连接串联电阻(14,24)。 两级(1,2)彼此连接,使得它们可以被并联充电连接并且可以串联排放。 负载电容(4)连接到第二级(2),用于减小用于负载电容(4)的闪光脉冲电压的脉冲前沿的过冲的附加电路元件(5)被布置在第二级 2)和负载电容(4)。 附加电路元件(5)具有补偿电容(51)并与其并联连接放电电阻(52)。