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    • 1. 发明申请
    • Vibronic Measuring Device
    • 振动测量装置
    • US20140245834A1
    • 2014-09-04
    • US13818855
    • 2011-08-09
    • Martin UrbanTobias BrengartnerAlexander Muller
    • Martin UrbanTobias BrengartnerAlexander Muller
    • G01N29/40
    • G01N29/40B25F5/006G01F23/2965G01F23/2966G01F23/2967G01N9/002G01N11/16G01N29/022G01N29/036G01N2291/02818G01N2291/0427
    • A vibronic measuring device for determining at least one process variable of a medium. Included are: an oscillatable unit; a transmitting/receiving unit, which, by means of a transmission signal, excites the oscillatable unit to execute mechanical oscillations and receives the mechanical oscillations and converts such into an analog, electrical, received signal; and a control/evaluation unit (MC), which receives the analog, received signal, digitizes such and determines the process variable therefrom and which produces the transmission signal. Between the transmitting/receiving unit and the control/evaluation unit, a controllable amplifier is arranged, which receives the received signal and produces an adapted, received signal, and that the control/evaluation unit determines an amplitude of the received signal and, as a function of the determined amplitude, controls the amplifier in such a manner that the amplitude of the adapted, received signal is adapted to a digitizable voltage range predetermined by the control/evaluation unit.
    • 一种用于确定介质的至少一个过程变量的振动测量装置。 包括:一个可振荡的单元; 发送/接收单元,其通过传输信号激励可振荡单元执行机械振荡并接收机械振荡并将其转换为模拟,电接收信号; 以及接收模拟接收信号的控制/评估单元(MC)对其进行数字化并确定其中的过程变量并产生发送信号。 在发送/接收单元和控制/评估单元之间,布置可控放大器,其接收接收到的信号并产生适配的接收信号,并且控制/评估单元确定接收信号的幅度,并且作为 确定的幅度的函数以这样的方式控制放大器,使得适配的接收信号的幅度适应于由控制/评估单元预定的可数字化的电压范围。
    • 2. 发明授权
    • Vibronic measuring device
    • 振动测量装置
    • US09575035B2
    • 2017-02-21
    • US13818855
    • 2011-08-09
    • Martin UrbanTobias BrengartnerAlexander Muller
    • Martin UrbanTobias BrengartnerAlexander Muller
    • G01N29/40G01F23/296G01N9/00G01N11/16G01N29/02G01N29/036B25F5/00
    • G01N29/40B25F5/006G01F23/2965G01F23/2966G01F23/2967G01N9/002G01N11/16G01N29/022G01N29/036G01N2291/02818G01N2291/0427
    • A vibronic measuring device for determining at least one process variable of a medium. Included are: an oscillatable unit; a transmitting/receiving unit, which, by means of a transmission signal, excites the oscillatable unit to execute mechanical oscillations and receives the mechanical oscillations and converts such into an analog, electrical, received signal; and a control/evaluation unit (MC), which receives the analog, received signal, digitizes such and determines the process variable therefrom and which produces the transmission signal. Between the transmitting/receiving unit and the control/evaluation unit, a controllable amplifier is arranged, which receives the received signal and produces an adapted, received signal, and that the control/evaluation unit determines an amplitude of the received signal and, as a function of the determined amplitude, controls the amplifier in such a manner that the amplitude of the adapted, received signal is adapted to a digitizable voltage range predetermined by the control/evaluation unit.
    • 一种用于确定介质的至少一个过程变量的振动测量装置。 包括:一个可振荡的单元; 发送/接收单元,其通过传输信号激励可振荡单元执行机械振荡并接收机械振荡并将其转换为模拟,电接收信号; 以及接收模拟接收信号的控制/评估单元(MC)对其进行数字化并确定其中的过程变量并产生发送信号。 在发送/接收单元和控制/评估单元之间,设置可控放大器,其接收接收到的信号并产生适配的接收信号,并且控制/评估单元确定接收信号的幅度,并且作为 确定的幅度的函数以这样的方式控制放大器,使得适配的接收信号的幅度适应于由控制/评估单元预定的可数字化的电压范围。
    • 6. 发明申请
    • APPARATUS FOR ASCERTAINING AND/OR MONITORING A PROCESS VARIABLE OF A MEDIUM
    • 用于调节和/或监测中等变化的过程的装置
    • US20100083750A1
    • 2010-04-08
    • US12309471
    • 2007-06-14
    • Sascha D'AngelicoFranco FerraroAlexander Muller
    • Sascha D'AngelicoFranco FerraroAlexander Muller
    • G01F23/296
    • G01F23/2967G01N9/002G01N11/16G01N2009/006
    • An apparatus for ascertaining and/or monitoring of a process variable of a medium. The apparatus includes: A mechanically oscillatable unit; an exciting/receiving unit, which excites the mechanically oscillatable unit to execute mechanical oscillations and which receives the mechanical oscillations; and an electronics unit, which supplies the exciting/receiving unit with an electrical, output signal, and which receives from the exciting/receiving unit an electrical, input signal. In the electronics unit there is provided an amplifier unit, which amplifies the electrical, input signal to an amplified signal (SA). An adjustable phase shifter is provided, which changes the phase of the amplified signal, and a control unit is also provided, which controls the phase shifter, wherein the control unit measures the frequency of the amplified signal and controls the phase shifter starting from stored data concerning the frequency-phase dependence of the amplifier unit.
    • 一种用于确定和/或监测介质的过程变量的装置。 该装置包括:机械振荡单元; 激励/接收单元,其激励机械振荡单元执行机械振荡并且接收机械振荡; 以及电子单元,其向激励/接收单元提供电输出信号,并从激励/接收单元接收电输入信号。 在电子单元中,提供放大器单元,其将电输入信号放大到放大信号(SA)。 提供了可调移相器,其改变放大信号的相位,并且还提供控制单元,控制单元控制移相器,其中控制单元测量放大信号的频率,并从存储的数据开始控制移相器 关于放大器单元的频率相位依赖性。
    • 7. 发明申请
    • Drive Apparatus for a Washing Machine
    • 洗衣机驱动装置
    • US20090184674A1
    • 2009-07-23
    • US12356989
    • 2009-01-21
    • Martin WeinmannAlexander Muller
    • Martin WeinmannAlexander Muller
    • H02H7/085H02K11/00H02K9/06
    • D06F37/304H02K5/1732H02K11/25H02K11/33
    • A drive apparatus for a washing machine includes an electric motor, a drive shaft connected to the electric motor for rotary drive purposes and electronics for controlling operation of the electric motor. In order to achieve a compact construction, the electric motor and the electronics are integrated in a common unit. In order to increase operational reliability of the drive apparatus together with a simple construction, the common unit has a wall which is thermally coupled both to the electric motor and to the electronics and serves to dissipate heat. The electronics have a temperature sensor for detecting the temperature of the wall. Both the temperature of the electric motor and the temperature of the electronics can be monitored with this one temperature sensor.
    • 用于洗衣机的驱动装置包括电动机,连接到用于旋转驱动目的的电动机的驱动轴和用于控制电动机的操作的电子装置。 为了实现紧凑的结构,电动机和电子装置集成在共同的单元中。 为了提高驱动装置的操作可靠性以及简单的结构,公共单元具有壁,其与电动机和电子设备热耦合并且用于散热。 电子设备具有用于检测墙体温度的温度传感器。 电动机的温度和电子设备的温度都可以用这一个温度传感器来监测。