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    • 1. 外观设计
    • Fluid mover enclosure
    • USD896767S1
    • 2020-09-22
    • US29715458
    • 2019-12-02
    • Advanced Thermal Solutions, Inc.
    • Anatoly PikovskyGregory Wong
    • FIG. 1 is a front perspective view of a fluid mover enclosure showing our new design;
      FIG. 2 is a top plan view of the fluid mover enclosure shown in FIG. 1;
      FIG. 3 is a bottom plan view of FIG. 1;
      FIG. 4 is a front view of FIG. 1;
      FIG. 5 is a back view of FIG. 1;
      FIG. 6 is a right side view of FIG. 1;
      FIG. 7 is a left side view of FIG. 1;
      FIG. 8 is a front perspective view of the fluid mover enclosure of FIG. 1, wherein the enclosure is shown assembled within an environmental mounting;
      FIG. 9 is a front perspective view of the fluid mover enclosure of FIG. 1, showing the environmental mounting exploded around the enclosure;
      FIG. 10 is a front perspective view of a second embodiment of a fluid mover enclosure showing our new design.
      FIG. 11 is a top plan view of the fluid mover enclosure shown in FIG. 10;
      FIG. 12 is a bottom plan view of FIG. 10;
      FIG. 13 is a front view of FIG. 10;
      FIG. 14 is a back view of FIG. 10;
      FIG. 15 is a right side view of FIG. 10;
      FIG. 16 is a left side view of FIG. 10;
      FIG. 17 is a front perspective view of the fluid mover enclosure of FIG. 10, wherein the enclosure is shown assembled within an environmental mounting; and,
      FIG. 18 is a front perspective view of the fluid mover enclosure of FIG. 10, showing the environmental mounting exploded around the enclosure.
      The broken lines illustrate portions of the fluid mover enclosure. The additional broken line structures in FIGS. 8, 9, 17, and 18 illustrate environmental mounting. None of the broken lines form part of the claimed design.
    • 7. 发明授权
    • Universal transceiver
    • 通用收发器
    • US5940780A
    • 1999-08-17
    • US536516
    • 1995-09-29
    • Kaveh AzarMehmet Mustafa
    • Kaveh AzarMehmet Mustafa
    • G01D1/00G01D11/00
    • G01D1/00
    • A device is disclosed for interfacing with a variety of transducer types to generate a measurement value of a certain property. The device has at least one sensor block that in turn has at least one sensor channel containing sensor circuitry. The sensor circuitry is configured to cooperate with a particular transducer to generate an electrical signal representing the property. Connected to the sensor block is a control block. The control block has configuration circuitry for enabling the sensor circuitry. Additionally, the control block contains conversion circuitry for converting the signal to the measurement value using a conversion equation. A user interface provides the means for inputting configuration information and outputting the measurement value. In one embodiment, the sensor block also contains a multiplicity of sensor channels and multiplexing circuitry for enabling the control block to address each sensor channel individually. The device may also have a plurality of circuits in each sensor circuit. The configuration circuitry enables a selection of these circuits according to the transducer used and the measurement desired. This embodiment may also have conversion circuitry that is responsive to the configuration circuitry such that the conversion equation relates to the selection.
    • 公开了用于与各种换能器类型接口以产生某一特性的测量值的装置。 该装置具有至少一个传感器块,该传感器块又具有包含传感器电路的至少一个传感器通道。 传感器电路被配置为与特定换能器协作以产生表示该特性的电信号。 连接到传感器块是一个控制块。 控制块具有用于启用传感器电路的配置电路。 此外,控制块包含用于使用转换方程将信号转换为测量值的转换电路。 用户接口提供用于输入配置信息并输出测量值的装置。 在一个实施例中,传感器块还包含多个传感器通道和多路复用电路,用于使控制块能够单独寻址每个传感器通道。 该装置还可以在每个传感器电路中具有多个电路。 配置电路使得能够根据所使用的换能器和所需的测量来选择这些电路。 该实施例还可以具有响应于配置电路的转换电路,使得转换方程与选择有关。