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    • 22. 发明申请
    • SMT TERMINAL BLOCK
    • SMT端子块
    • US20060199439A1
    • 2006-09-07
    • US11419158
    • 2006-05-18
    • John MertzCory GrabingerDennis GrabowskiArthur Punyko
    • John MertzCory GrabingerDennis GrabowskiArthur Punyko
    • H01R9/22
    • H01R13/74H01R4/363H01R9/24H01R12/716
    • Terminal blocks adapted for placement on a printed circuit board using SMT techniques are disclosed herein. A terminal block in accordance with an illustrative embodiment of the present invention can include a main body, a terminal block header including a number of terminal inlet ports configured to receive wire or conduit, and one or more terminal leads adapted to make electrical contact with a number of attachment pads formed on the printed circuit board. An illustrative method of mounting the terminal block to a printed circuit board may include the steps inserting the upper portion of the main body through a terminal block opening, and then connecting the one or more terminal leads of the terminal block to attachment pads.
    • 本文公开了适于使用SMT技术放置在印刷电路板上的端子块。 根据本发明的说明性实施例的端子块可以包括主体,包括被配置为接收导线或导管的多个端子入口端口的端子块接头以及适于与电气接触的一个或多个端子引线 在印刷电路板上形成的附接焊盘的数量。 将端子块安装到印刷电路板的说明性方法可以包括通过端子块开口插入主体的上部,然后将端子块的一个或多个端子引线连接到附接焊盘的步骤。
    • 23. 发明申请
    • ECONOMIZER/DCV CONTROLLER WITH MANUAL SENSOR CALIBRATION
    • 经济型/ DCV控制器,带手动传感器校准
    • US20120078563A1
    • 2012-03-29
    • US12890380
    • 2010-09-24
    • Cory GrabingerAdrienne ThomleMiroslav Mikulica
    • Cory GrabingerAdrienne ThomleMiroslav Mikulica
    • G06F19/00
    • F24F11/30F24F11/0001F24F11/62F24F2110/00
    • An economizer controller with sensor calibration. A controller sensor may be used to measure a parameter. At the same time at the same location of the measurement with the controller sensor, a measurement of the same parameter may be made with a precision sensor. The difference between the two measurements may be saved to a controller memory as an offset. The offset may be used to compensate future measurements of the same parameter by the controller sensor. Additional offsets at various magnitudes may be obtained between the precision and the controller sensors for compensating subsequent measurements by the controller sensor. Measurements with the compensated sensor may be used for calibrating sensors in other economizer controllers, for example, at remote locations in the field.
    • 具有传感器校准功能的节能控制器。 可以使用控制器传感器来测量参数。 同时在与控制器传感器相同的测量位置,可以用精密传感器测量相同的参数。 两个测量之间的差异可以作为偏移保存到控制器存储器。 偏移量可用于补偿控制器传感器对相同参数的未来测量。 可以在精度和控制器传感器之间获得各种量值的附加偏移量,以便通过控制器传感器来补偿随后的测量。 使用补偿传感器的测量可用于校准其他节能器控制器中的传感器,例如在现场的远程位置。
    • 25. 发明申请
    • HVAC ACTUATOR WITH OUTPUT TORQUE COMPENSATION
    • 具有输出扭矩补偿的HVAC执行器
    • US20100123421A1
    • 2010-05-20
    • US12273413
    • 2008-11-18
    • Cory GrabingerNathan CarlsonIvo ChromyDavid Cermak
    • Cory GrabingerNathan CarlsonIvo ChromyDavid Cermak
    • G05B13/02F16K31/02
    • F16K31/046
    • An HVAC actuator, such as a spring return actuator, may adjust the maximum output torque of the motor with the varying spring return force of the HVAC actuator as the HVAC actuator moves through its range of motion. In some cases, this may provide a more constant force at the output of the HVAC actuator and reduce the force that is applied through the motor, drive train and/or the HVAC component when an end stop is reached. Also, an HVAC actuator is disclosed that can be configured to discover and store the location of one or more end stop(s), and to slow the speed of the motor down before the end stop(s) is reached. This may reduce the force that is applied through the motor, drive train and/or the HVAC component when an end stop is reached.
    • HVAC致动器(例如弹簧复位致动器)可以随着HVAC致动器在其运动范围内移动而随着HVAC致动器的变化的弹簧复位力而调节电动机的最大输出转矩。 在一些情况下,这可以在HVAC致动器的输出处提供更恒定的力,并且当达到端部止挡时减小通过马达,传动系和/或HVAC部件施加的力。 此外,公开了一种HVAC致动器,其可以被配置为发现和存储一个或多个终止挡块的位置,并且在到达终点停止之前降低电机的速度。 当达到终点停止时,这可以减少通过马达,传动系和/或HVAC部件施加的力。
    • 29. 发明授权
    • HVAC actuator with output torque compensation
    • HVAC执行器带输出扭矩补偿
    • US08084982B2
    • 2011-12-27
    • US12273413
    • 2008-11-18
    • Cory GrabingerNathan CarlsonIvo ChromyDavid Cermak
    • Cory GrabingerNathan CarlsonIvo ChromyDavid Cermak
    • G05B13/00
    • F16K31/046
    • An HVAC actuator, such as a spring return actuator, may adjust the maximum output torque of the motor with the varying spring return force of the HVAC actuator as the HVAC actuator moves through its range of motion. In some cases, this may provide a more constant force at the output of the HVAC actuator and reduce the force that is applied through the motor, drive train and/or the HVAC component when an end stop is reached. Also, an HVAC actuator is disclosed that can be configured to discover and store the location of one or more end stop(s), and to slow the speed of the motor down before the end stop(s) is reached. This may reduce the force that is applied through the motor, drive train and/or the HVAC component when an end stop is reached.
    • HVAC致动器(例如弹簧复位致动器)可以随着HVAC致动器在其运动范围内移动而随着HVAC致动器的变化的弹簧复位力而调节电动机的最大输出转矩。 在一些情况下,这可以在HVAC致动器的输出处提供更恒定的力,并且当达到端部止挡时减小通过马达,传动系和/或HVAC部件施加的力。 此外,公开了一种HVAC致动器,其可以被配置为发现和存储一个或多个终止挡块的位置,并且在到达终点停止之前降低电机的速度。 当达到终点停止时,这可以减少通过马达,传动系和/或HVAC部件施加的力。