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热词
    • 5. 发明授权
    • Universal sensor controller for a thermal anemometer
    • 用于热风速计的通用传感器控制器
    • US07647843B2
    • 2010-01-19
    • US12173233
    • 2008-07-15
    • Bruce B. Burton
    • Bruce B. Burton
    • G01F1/46
    • G01F1/699G01F1/6965
    • A flow switch uses an analog-to-digital converter combined with a multiplexer to measure voltages at one or more points of a measurement circuit and an algorithm within a microcontroller to calculate flow velocity. The measurement circuit has at least one sensor in the fluid stream. The sensor is heated by passing an electric current through the sensor. A second optional upstream sensor is not heated and is at the fluid temperature. The microcontroller then uses the voltage measurements with calibration information and equations based on the desired mode of operation to calculate the flow velocity.
    • 流量开关使用与多路复用器组合的模数转换器来测量测量电路的一个或多个点处的电压以及微控制器内的算法来计算流速。 测量电路在流体流中具有至少一个传感器。 传感器通过传递电流而被加热。 第二个可选的上游传感器不加热并处于流体温度。 然后,微控制器使用基于所需操作模式的校准信息和方程式的电压测量来计算流速。
    • 6. 发明授权
    • Universal sensor controller for a thermal anemometer
    • 用于热风速计的通用传感器控制器
    • US07418878B2
    • 2008-09-02
    • US11857353
    • 2007-09-18
    • Bruce B. Burton
    • Bruce B. Burton
    • G01P5/06
    • G01F1/699G01F1/6965
    • A fluid property measurement system uses an analog-to-digital converter combined with a multiplexer to measure voltages at one or more points of a measurement circuit and an algorithm within a microcontroller to calculate a fluid property. The measurement circuit has at least one sensor in the fluid stream. The sensor is heated by passing an electric current through the sensor. A second optional upstream sensor is not heated and is at the fluid temperature. The microcontroller then uses the voltage measurements with calibration information and equations based on the desired mode of operation to calculate the fluid property.
    • 流体性质测量系统使用与多路复用器结合的模拟 - 数字转换器来测量测量电路的一个或多个点处的电压和微控制器内的算法以计算流体特性。 测量电路在流体流中具有至少一个传感器。 传感器通过传递电流而被加热。 第二个可选的上游传感器不加热并处于流体温度。 然后,微控制器使用基于所需操作模式的校准信息和方程式的电压测量来计算流体性质。
    • 7. 发明申请
    • Universal Sensor Controller for a Thermal Anemometer
    • 用于热风速计的通用传感器控制器
    • US20080271545A1
    • 2008-11-06
    • US12173233
    • 2008-07-15
    • Bruce B. Burton
    • Bruce B. Burton
    • G01F1/00
    • G01F1/699G01F1/6965
    • A flow switch uses an analog-to-digital converter combined with a multiplexer to measure voltages at one or more points of a measurement circuit and an algorithm within a microcontroller to calculate flow velocity. The measurement circuit has at least one sensor in the fluid stream. The sensor is heated by passing an electric current through the sensor. A second optional upstream sensor is not heated and is at the fluid temperature. The microcontroller then uses the voltage measurements with calibration information and equations based on the desired mode of operation to calculate the flow velocity.
    • 流量开关使用与多路复用器组合的模数转换器来测量测量电路的一个或多个点处的电压以及微控制器内的算法来计算流速。 测量电路在流体流中具有至少一个传感器。 传感器通过传递电流而被加热。 第二个可选的上游传感器不加热并处于流体温度。 然后,微控制器使用基于所需操作模式的校准信息和方程式的电压测量来计算流速。
    • 8. 发明申请
    • Universal Sensor Controller for a Thermal Anemometer
    • 用于热风速计的通用传感器控制器
    • US20080066541A1
    • 2008-03-20
    • US11857353
    • 2007-09-18
    • Bruce B. Burton
    • Bruce B. Burton
    • G01F1/00
    • G01F1/699G01F1/6965
    • A fluid property measurement system uses an analog-to-digital converter combined with a multiplexer to measure voltages at one or more points of a measurement circuit and an algorithm within a microcontroller to calculate a fluid property. The measurement circuit has at least one sensor in the fluid stream. The sensor is heated by passing an electric current through the sensor. A second optional upstream sensor is not heated and is at the fluid temperature. The microcontroller then uses the voltage measurements with calibration information and equations based on the desired mode of operation to calculate the fluid property.
    • 流体性质测量系统使用与多路复用器结合的模拟 - 数字转换器来测量测量电路的一个或多个点处的电压和微控制器内的算法以计算流体特性。 测量电路在流体流中具有至少一个传感器。 传感器通过传递电流而被加热。 第二个可选的上游传感器不加热并处于流体温度。 然后,微控制器使用基于所需操作模式的校准信息和方程式的电压测量来计算流体性质。