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    • 1. 发明申请
    • Cleaning method for filter testing device, computer program product for implementing said method and filter testing device
    • 过滤器检测装置的清洗方法,实现所述方法和过滤器检测装置的计算机程序产品
    • US20040211445A1
    • 2004-10-28
    • US10762553
    • 2004-01-23
    • SARTORIUS AG
    • Jochen Von Der HardtJuergen Van Den BoogaardReinhard BaumfalkOscar-Werner Reif
    • B08B009/00
    • B01D46/46B01D2273/18
    • A cleaning method for a filter testing device (10) including switching devices (V1-V6), external connections (12, 14, 16, 18, 20) and internal volumes (24, 26, 28, 30, VV1-VV5) that can come into contact with a fluid from a filter device that is to be tested. The cleaning method involves the steps of: selecting one or more internal volumes (24, 26, 28, 30, VV1-VV5) to be cleaned, cleaning the selected internal volumes (24, 26, 28, 30, VV1-VV5) with a cleaning fluid by correspondingly switching the switching devices (V1-V6), and removing the cleaning fluid contained in the internal volumes (24, 26, 28, 30, VV1-VV5) from the internal volumes. Also a computer program product with program parts for implementing the method of the invention or a preferred embodiment thereof, and a filter testing device adapted to be cleaned by the method of the invention.
    • 一种用于包括开关装置(V1-V6),外部连接(12,14,16,18,20)和内部体积(24,26,28,30,VV1-VV5)的过滤器测试装置(10)的清洁方法, 可以与要测试的过滤装置的流体接触。 清洁方法包括以下步骤:选择待清洁的一个或多个内部体积(24,26,28,30,VV1-VV5),用所选择的内部体积(24,26,28,30,VV1-VV5)清洁所选择的内部体积 通过相应地切换开关装置(V1-V6)和从内部容积中去除包含在内部容积(24,26,28,30,VV1-VV5)中的清洁流体的清洁流体。 还有一种具有用于实现本发明的方法的程序部件或其优选实施例的计算机程序产品,以及适于通过本发明的方法进行清洁的过滤器测试装置。
    • 3. 发明申请
    • Weighing sensor with calibration weight
    • 带校准重量的称重传感器
    • US20040003948A1
    • 2004-01-08
    • US10428949
    • 2003-05-05
    • SARTORIUS AG
    • Otto KuhlmannThorsten CapellePeter FleischerFriedrich HelmsenDetlev ErbenRudolf Mueller
    • G01G019/52
    • G01G23/012G01G21/244
    • A weighing sensor including a base (1) fixed to a housing, a load sensor (2) connected to the base in a displaceable manner via two arms (3, 4), a lever system (8 . . . 11) having at least one lever and transmitting the load acting on the load sensor to a transducer (12, 13), and a built-in calibration weight (40) which may be lowered onto a support region (30/38) for checking and/or calibrating the sensitivity of the weighing sensor. The support region is guided in a parallel manner by two additional arms (21, 22) and is connected to a lever (9/39) of the lever system (8 . . . 11) via a coupling element (26). Relatively large loads on the weighing sensor may be simulated with relatively small calibration weights, without the need for complicated lifting devices. The two additional arms (21, 22) are connected on the one hand to the support region (30/38) and on the other hand to the load sensor (2) and are located on the side of the load sensor (2) opposite from the lever system (8 . . . 11).
    • 一种称重传感器,包括固定到壳体的基座(1),经由两个臂(3,4)以可移位方式连接到基座的负载传感器(2),至少具有至少 一个杠杆并将作用在负载传感器上的负载传递到换能器(12,13),以及内置的校准配重(40),其可以降低到支撑区域(30/38)上,用于检查和/或校准 称重传感器的灵敏度。 支撑区域通过两个附加臂(21,22)以平行的方式被引导,并且经由联接元件(26)连接到杠杆系统(8 ... 11)的杠杆(9/39)。 称重传感器上的相对较大的载荷可以用相对较小的校准砝码来模拟,而不需要复杂的提升装置。 两个附加臂(21,22)一方面连接到支撑区域(30/38),另一方面连接到负载传感器(2),并且位于负载传感器(2)的相反侧 从杠杆系统(8 ... 11)。
    • 5. 发明申请
    • Electronic weighing sensor
    • 电子称重传感器
    • US20010052431A1
    • 2001-12-20
    • US09860556
    • 2001-05-21
    • SARTORIUS AG
    • Alfred KlauerJoerg Peter Martens
    • G01G001/38G01G007/00
    • G01G3/1414G01G23/10
    • An electronic weighing sensor (10) having a digital signal processing unit (19), which includes at least one filter (12) with low-pass characteristic. By means of the filter (12), the direct-current component (m) is determined from the output signal of the weighing sensor and the weighing result is derived therefrom. A signal, which is dependent on the amplitude of the vibrations, is determined by the digital signal processing unit (19) and electronic components (18) change the direct-current component (m) as a function of the magnitude of the vibration-dependent signal. This significantly improves the performance of the weighing sensor (10) with respect to shocks and vibrations in the installation site of the weighing sensor (10).
    • 一种具有数字信号处理单元(19)的电子称重传感器(10),其包括具有低通特性的至少一个滤波器(12)。 通过过滤器(12),从称重传感器的输出信号确定直流分量(m),并从中得到称重结果。 取决于振动幅度的信号由数字信号处理单元(19)确定,并且电子部件(18)根据振动依赖的大小来改变直流分量(m) 信号。 这显着地改善了称重传感器(10)相对于称重传感器(10)的安装位置的冲击和振动的性能。
    • 9. 发明申请
    • Measurement system having at least one replaceable sensor
    • 具有至少一个可更换传感器的测量系统
    • US20040075578A1
    • 2004-04-22
    • US10642204
    • 2003-08-18
    • SARTORIUS AG
    • Olaf DuddaChristian Oldendorf
    • G08C019/00G08B001/08
    • G08C17/00
    • A measurement system having an analyzer unit (2; 102) and at least one replaceable sensor (1; 101). Each sensor has a transponder (13) in which sensor-specific data is stored. The analyzer unit has an antenna (21) for wireless readout of the data stored in the transponder and for wireless transmission of the power required to operate the transponder. The transponder (13) and the antenna of the analyzer unit (2) are further configured to additionally transmit and receive the measurement signal of the sensor (1) wirelessly. The sensor may be accommodated in a connecting unit (32, 52, 62, 72, 112) configured to be secured to a corresponding mating component (41, 56, 66, 76, 116).
    • 一种具有分析器单元(2; 102)和至少一个可更换传感器(1; 101)的测量系统。 每个传感器具有其中存储传感器特定数据的应答器(13)。 分析器单元具有用于无线读取存储在应答器中的数据并用于无线传输操作转发器所需的电力的天线(21)。 应答器(13)和分析器单元(2)的天线还被配置为无线地附加地发送和接收传感器(1)的测量信号。 传感器可以容纳在被配置为固定到相应的配合部件(41,56,66,76,116)上的连接单元(32,52,62,72,112)中。