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    • 3. 发明申请
    • EVALUATION METHOD AND EVALUATION DEVICE FOR A CAPACITIVE CONTACT SENSOR
    • 用于电容式接触式传感器的评估方法和评估装置
    • WO2013004603A3
    • 2013-04-11
    • PCT/EP2012062651
    • 2012-06-28
    • MICROCHIP TECH GERMANY II GMBHBURGER STEFANSTEFFENS HOLGER
    • BURGER STEFANSTEFFENS HOLGER
    • H03K17/96
    • G01R27/2605G01D5/24H03K17/962H03K2217/96054H03K2217/960775
    • Provided is an evaluation method for a capacitive contact sensor, which comprises at least one transmitting electrode (SE) and at least one receiving electrode (EE) or at least one sensor electrode, which are able to be brought into a capacitive coupling, wherein . - at the at least one receiving electrode or at the at least one sensor electrode a measurement signal is tapped, which represents the temporal course of the coupling capacitance (C2) between the at least one transmitting electrode and the at least one receiving electrode and the temporal course of the capacitive load of the sensor electrode, respectively, . - a reference signal is created from the measurement signal, and . - at least one detection signal is created, when the reference signal meets at least one detection criterion. In addition, provided is an evaluation device for a capacitive contact sensor and an electric handheld device comprising an evaluation device according to the invention, wherein the evaluation device may be coupled with at least one transmitting electrode and at least one receiving electrode or with at least one sensor electrode of the capacitive contact sensor and which is adapted to carry out an evaluation method according to the invention.
    • 提供一种用于电容式接触传感器的评估方法,其包括能够被进入电容耦合的至少一个发射电极(SE)和至少一个接收电极(EE)或至少一个传感器电极。 - 在所述至少一个接收电极处或在所述至少一个传感器电极处,抽头测量信号,其表示所述至少一个发射电极和所述至少一个接收电极之间的耦合电容(C2)的时间过程,以及 传感器电极的电容性负载的时间过程分别为。 - 从测量信号创建参考信号, - 当参考信号满足至少一个检测标准时,产生至少一个检测信号。 此外,提供了一种用于电容式接触传感器的评估装置和包括根据本发明的评估装置的电动手持装置,其中评估装置可以与至少一个发射电极和至少一个接收电极或至少一个接收电极 电容式接触传感器的一个传感器电极,其适于执行根据本发明的评估方法。
    • 5. 发明申请
    • GRIPPER UNIT, MOUNTING HEAD, AND METHOD FOR FITTING SUBSTRATES WITH ELECTRICAL COMPONENTS
    • GRAB单元,用来与电子部件配件SUBSTRATES位置和方法
    • WO2006018387A3
    • 2006-11-09
    • PCT/EP2005053832
    • 2005-08-04
    • SIEMENS AGBURGER STEFAN
    • BURGER STEFAN
    • H01L21/683B25J15/06F04F5/52H01L21/68H05K13/04
    • F04F5/52H01L21/6838H05K13/0408
    • Disclosed is a gripper unit comprising an ejector pump (1) that is provided with a compressed air connection, a vacuum connection, and a used air connection. The gripper unit further comprises a gripper (2) encompassing a suction port that is pneumatically coupled to the vacuum connection, a controllable valve (5) located between the compressed air connection and a compressed air supply (4), and a reservoir (3) which is pneumatically coupled to the used air connection. The compressed air supply (4) is pneumatically coupled to the compressed air connection of the injector pump (1) in a first position of the controllable valve (5) such that compressed air flows into the reservoir (3) via the injector pump (1) and vacuum is applied at the suction port of the gripper (2) while the injector pump (1) is separated from the compressed air supply (4) in a second position of the controllable valve (5) such that used air of the injector pump (1), which is stored in the reservoir (3), flows to the suction port of the gripper (2) via the injector pump (1), thus allowing the consumption of compressed air to be significantly reduced.
    • 在用真空泵的夹持器单元(1),其具有压缩空气连接,具有真空口和排气口,(2),其具有吸入口的夹持器,(5)设置成与真空端口被气动地连接至可控阀吸入口之间 压缩空气连接和(4)提供了一种压缩空气供应,并且被气动地连接到空气连接的收集容器(3),是在可控制的阀的第一位置(5),(压缩空气供给(4)到所述真空泵的压缩空气连接 1)气动地联接,从而使(1)经由所述真空泵压缩空气流入收集容器(3)和(在夹持器2)真空的吸入口被施加,并且,(在可控阀5的第二位置),真空泵(1 )(通过分离,使得在收集容器(3)通过S存储在真空喷射泵(1)的排气中的压缩空气供应4) trahlvakuumpumpe(1)流动到夹持器(2)的吸入口。 因此,压缩空气消耗可以显著降低。