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    • 1. 发明申请
    • METHOD FOR DETECTING THE DRIVE TYPE OF AN ACTUATOR (II)
    • 检测执行机构驱动类型的方法(二)
    • US20090145291A1
    • 2009-06-11
    • US12328954
    • 2008-12-05
    • Thomas KLEEGREWEStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • Thomas KLEEGREWEStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • F15B21/08
    • F15B21/08F15B19/002G01B7/30G01B21/22
    • A method is disclosed for detecting the drive type of an actuator, e.g., a pneumatic actuator, having a positioner for operating a final control element in a process engineering plant. The actuator is connected to the positioner by a mounting set, the positioner comprising an electronic control unit, which uses a microcontroller to receive one or more input signals, and to output actuating signals to control the flow of gas to or from the chambers of a single-acting or double-acting pneumatic drive. The position feedback sensors are equipped with a rotational measuring system. During commissioning of the actuator, the relationship between the drive volumes and the position signal is found and compared with transfer characteristics of known drive types. Where there is a match between the transfer characteristic defined by the value pairs of the given actuator and one of the transfer characteristics of the known drive types, the identified drive type is assigned to the given actuator.
    • 公开了一种用于检测致动器(例如气动致动器)的驱动类型的方法,其具有用于在过程工程设备中操作最终控制元件的定位器。 致动器通过安装组件连接到定位器,定位器包括电子控制单元,该电子控制单元使用微控制器来接收一个或多个输入信号,并且输出致动信号以控制气体到达或来自腔室的气流 单作用或双作用气动驱动。 位置反馈传感器配备有旋转测量系统。 在执行器调试期间,找到驱动体积和位置信号之间的关系,并将其与已知驱动类型的传递特性进行比较。 在由给定致动器的值对定义的传递特性与已知驱动类型的传送特性之间存在匹配的情况下,将所识别的驱动类型分配给给定的致动器。
    • 2. 发明授权
    • Method for detecting the drive type of an actuator (II)
    • 用于检测致动器(II)的驱动类型的方法
    • US08281705B2
    • 2012-10-09
    • US12328954
    • 2008-12-05
    • Thomas KleegreweStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • Thomas KleegreweStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • F01B31/12F15B9/10
    • F15B21/08F15B19/002G01B7/30G01B21/22
    • A method is disclosed for detecting the drive type of an actuator, e.g., a pneumatic actuator, having a positioner for operating a final control element in a process engineering plant. The actuator is connected to the positioner by a mounting set, the positioner comprising an electronic control unit, which uses a microcontroller to receive one or more input signals, and to output actuating signals to control the flow of gas to or from the chambers of a single-acting or double-acting pneumatic drive. The position feedback sensors are equipped with a rotational measuring system. During commissioning of the actuator, the relationship between the drive volumes and the position signal is found and compared with transfer characteristics of known drive types. Where there is a match between the transfer characteristic defined by the value pairs of the given actuator and one of the transfer characteristics of the known drive types, the identified drive type is assigned to the given actuator.
    • 公开了一种用于检测致动器(例如气动致动器)的驱动类型的方法,其具有用于在过程工程设备中操作最终控制元件的定位器。 致动器通过安装组件连接到定位器,定位器包括电子控制单元,该电子控制单元使用微控制器来接收一个或多个输入信号,并输出致动信号以控制气体到达或来自腔室的气流 单作用或双作用气动驱动。 位置反馈传感器配备有旋转测量系统。 在执行器调试期间,找到驱动体积和位置信号之间的关系,并将其与已知驱动类型的传递特性进行比较。 在由给定致动器的值对定义的传递特性与已知驱动类型的传送特性之间存在匹配的情况下,将所识别的驱动类型分配给给定的致动器。
    • 3. 发明申请
    • METHOD FOR IDENTIFICATION OF THE DRIVE TYPE OF AN ACTUATING DRIVE
    • 用于识别执行驱动器的驱动类型的方法
    • US20090133573A1
    • 2009-05-28
    • US12195689
    • 2008-08-21
    • Thomas KleegreweStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • Thomas KleegreweStefan EngelkeAndreas StelterWolfgang ScholzUrs E. MeierDetlef Pape
    • F15B19/00F15B13/00F15B15/02
    • F15B19/002F16K37/0083
    • The disclosure relates to a method for identification of the drive type of an actuating drive, e.g., a pneumatic actuating drive, having a position regulator in order to control an actuating member in a process installation. The actuating drive is connected by means of an attachment to the position regulator, with the position regulator having control electronics which receive one or more input signals with the aid of a microcontroller and emit actuating signals in order to ventilate or vent the chambers of a single-acting or double-acting pneumatic drive. The position feedback sensor system is equipped with a rotational measurement system. The actuating range of the actuating drive is passed through completely while setting it up. The angle positions signaled back are recorded. The drive type is determined from the range between the limit angle positions at the actuating range limits of the actuating drive. The knowledge that the angle ranges covered by linear-movement drives and pivoting drives differ significantly can be made use of.
    • 本公开涉及一种用于识别致动驱动器的驱动类型的方法,例如气动致动驱动器,其具有位置调节器以便控制过程安装中的致动构件。 致动驱动器通过附件连接到位置调节器,位置调节器具有控制电子装置,其借助于微控制器接收一个或多个输入信号,并发出致动信号,以使单个腔室的腔室通风或排出 动作或双作用气动驱动。 位置反馈传感器系统配有旋转测量系统。 驱动驱动器的启动范围在设置时完全通过。 记录回信号的角度位置。 驱动类型由驱动驱动装置的驱动范围极限的极限角位置之间的范围决定。 知道线性运动驱动器和枢转驱动器覆盖的角度范围可以有很大的不同。
    • 6. 发明申请
    • SHUT-OFF VALVE
    • 关闭阀
    • US20120181463A1
    • 2012-07-19
    • US13336210
    • 2011-12-23
    • Thomas KLEEGREWEWolfgang Scholz
    • Thomas KLEEGREWEWolfgang Scholz
    • F16K31/02F16K47/02
    • F16K37/0041
    • A shut-off fitting is disclosed for use, for example, in a pipeline of a technical installation with a servo drive. The servo drive can be connected to a control device having a position controller and a signal conditioner device. The position controller can have an analog control input for connecting a process control signal and a binary control input for actuating the servo drive in accordance with a predeterminable speed characteristic. The signal conditioner device can have a feed voltage input, an analog control output, a binary control output, and an energy store.
    • 公开了一种关闭配件,例如在具有伺服驱动器的技术设备的管道中使用。 伺服驱动器可以连接到具有位置控制器和信号调节器装置的控制装置。 位置控制器可以具有用于连接过程控制信号和二进制控制输入的模拟控制输入,用于根据可预定的速度特性来驱动伺服驱动器。 信号调节装置可以具有馈电电压输入,模拟控制输出,二进制控制输出和能量存储。
    • 8. 发明申请
    • Component arragement with an optimized assembly capability
    • 具有优化装配能力的组件装配
    • US20090213552A1
    • 2009-08-27
    • US11659297
    • 2005-07-14
    • Anton MauderWolfgang Scholz
    • Anton MauderWolfgang Scholz
    • H05K7/20
    • G02B6/4494G02B6/441H01L2924/0002H05K3/325H05K2201/10409H05K2201/10689H05K2201/2036H01L2924/00
    • The invention relates to a component arrangement comprising: an electronics module (10); a heat sink (20) contacted by the electronics module (10); a printed circuit board (30), and; a fastening means (40) for fastening the electronics module (10) to the printed circuit board (30) and to the heat sink (20). The electronics module (10) has at least one elastic connecting limb (11) for the solder-free contacting of the electronics module (10) with the printed circuit board (30) and has a location (14) for the fastening means (40). The electronics module (10) additionally comprises a decoupling means (12) for decoupling the force of pressure between the connecting limb (11) and the printed circuit board (30) from the contact force between the heat sink (20) and the electronics module (10). Another aspect of the invention concerns an electronics module (10) that can be used in the aforementioned component arrangement.
    • 本发明涉及一种组件装置,包括:电子模块(10); 由所述电子模块(10)接触的散热器(20); 印刷电路板(30),和 用于将电子模块(10)紧固到印刷电路板(30)和散热器(20)的紧固装置(40)。 电子模块(10)具有用于电子模块(10)与印刷电路板(30)的无焊料接触的至少一个弹性连接臂(11),并且具有用于紧固装置(40)的位置(14) )。 电子模块(10)还包括用于将连接臂(11)和印刷电路板(30)之间的压力与散热器(20)和电子模块(20)之间的接触力分离的解耦装置(12) (10)。 本发明的另一方面涉及一种可用于上述组件布置的电子模块(10)。