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    • 11. 发明申请
    • DIFFERENTIAL FORCE SENSOR
    • 差分力传感器
    • US20110000313A1
    • 2011-01-06
    • US12834321
    • 2010-07-12
    • Todd EckhardtRichard WadeRyan Jones
    • Todd EckhardtRichard WadeRyan Jones
    • G01F1/42
    • A61M5/14A61M5/16831A61M2205/332G01F1/383G01L1/18G01L1/2231G01L9/0055G01L15/00G01L19/0023
    • A differential force sensor method and apparatus for automatically monitoring manual injections through an intravenous line. The differential force sensor includes two piezoresistive sense die that are packaged in close proximity utilizing a number of packaging processes. The two piezoresistive sense die can be utilized to measure forces exerted on a diaphragm on either side of an orifice. The piezoresistive sense die can be packaged in close proximity to make intimate contact with the diaphragms on either side of the orifice. The differential force sensor further includes two plungers that make intimate contact with the diaphragm and transfer the force into the piezo-resistive sense dies. Additionally, one or more ASICs and microcontrollers can be utilized to provide thermal calibration and differential calculation.
    • 一种用于通过静脉管线自动监测手动注射的差速力传感器方法和装置。 差速力传感器包括两个压阻式感测管芯,其通过许多包装工艺紧密地包装在一起。 两个压阻感应模具可用于测量施加在孔口两侧的隔膜上的力。 压阻感应芯片可以紧密封装,以便与孔板两侧的隔膜紧密接触。 差速力传感器还包括两个柱塞,其与膜片紧密接触并将力传递到压阻感测模具中。 此外,可以使用一个或多个ASIC和微控制器来提供热校准和差分计算。
    • 12. 发明授权
    • Fluid flow monitor
    • 流体流量监测仪
    • US07775126B2
    • 2010-08-17
    • US12256181
    • 2008-10-22
    • Todd EckhardtRichard WadeRyan Jones
    • Todd EckhardtRichard WadeRyan Jones
    • G01F1/37A61M31/00
    • A61M5/14A61M5/16831A61M2205/332G01F1/383G01L1/18G01L1/2231G01L9/0055G01L15/00G01L19/0023
    • A differential force sensor method and apparatus for automatically monitoring manual injections through an intravenous line. The differential force sensor includes two piezoresistive sense die that are packaged in close proximity utilizing a number of packaging processes. The two piezoresistive sense die can be utilized to measure forces exerted on a diaphragm on either side of an orifice. The piezoresistive sense die can be packaged in close proximity to make intimate contact with the diaphragms on either side of the orifice. The differential force sensor further includes two plungers that make intimate contact with the diaphragm and transfer the force into the piezo-resistive sense dies. Additionally, one or more ASICs and microcontrollers can be utilized to provide thermal calibration and differential calculation.
    • 一种用于通过静脉管线自动监测手动注射的差速力传感器方法和装置。 差速力传感器包括两个压阻式感测管芯,其通过许多包装工艺紧密地包装在一起。 两个压阻感应模具可用于测量施加在孔口两侧的隔膜上的力。 压阻感应芯片可以紧密封装,以便与孔板两侧的隔膜紧密接触。 差速力传感器还包括两个柱塞,其与膜片紧密接触并将力传递到压阻感测模具中。 此外,可以使用一个或多个ASIC和微控制器来提供热校准和差分计算。
    • 15. 发明授权
    • Method and apparatus for increasing the effective resolution of a sensor
    • 增加传感器有效分辨率的方法和装置
    • US08446220B2
    • 2013-05-21
    • US13103913
    • 2011-05-09
    • Paul RozgoRyan JonesLamar Floyd Ricks
    • Paul RozgoRyan JonesLamar Floyd Ricks
    • H03F1/00
    • G01D18/004H03M1/1295H03M1/183
    • Methods and devices for increasing a sensor resolution are disclosed. In one example, a two measurement process is used. A first measurement is used to effectively measure across a full range (e.g. 0 to 5 VDC) of the sensor. This first measurement may identify the current operating point of the sensor (e.g. 3.5 VDC). A second measurement may then be made to effectively measure across a sub-range of the sensor that encompasses the current operating point of the sensor (e.g. across a sub-range of 3.0 to 4.0 VDC for a current operating point of 3.5 VDC). The gain of the amplifier may be raised during the second measurement to produce a higher resolution measurement. In some cases, the first measurement may be used to determine an appropriate offset that may be applied so as to scale the amplifier to the desired sub-range of sensor that includes the current operating point of the sensor. In some cases, the two measurements may be used together to compute an effectively higher resolution measurement signal. In some cases, this may allow for a smaller and/or cheaper sensor to be used, while still achieving good results.
    • 公开了用于增加传感器分辨率的方法和装置。 在一个示例中,使用两个测量过程。 第一测量用于有效地测量传感器的全范围(例如0至5VDC)。 该第一测量可以识别传感器的当前工作点(例如3.5VDC)。 然后可以进行第二测量以有效地测量包含传感器的当前工作点的传感器的子范围(例如,对于3.5VDC的当前操作点,在3.0至4.0VDC的子范围内)。 放大器的增益可能在第二次测量期间提高,以产生更高分辨率的测量。 在一些情况下,可以使用第一测量来确定可以应用的适当的偏移,以便将放大器缩放到包括传感器的当前工作点的传感器的期望子范围。 在一些情况下,可以一起使用两个测量来计算有效地更高分辨率的测量信号。 在某些情况下,这可能允许使用更小和/或更便宜的传感器,同时仍然获得良好的结果。
    • 18. 发明授权
    • Connector assembly for a sensor
    • 用于传感器的连接器组件
    • US08817483B2
    • 2014-08-26
    • US13195770
    • 2011-08-01
    • Todd EckhardtPaul RozgoIan BentleyJim MachirRyan Jones
    • Todd EckhardtPaul RozgoIan BentleyJim MachirRyan Jones
    • H05K5/00
    • G01L19/003G01L19/0038G01L19/0084G01L19/144G01L19/147G01L19/148
    • The present disclosure relates to sensors including pressure sensors, humidity sensors, flow sensors, etc. In some cases, a connector assembly for a sensor assembly may include an electrical connector, a printed circuit board and a conductive outer housing. The electrical connector may include a mechanical connector and electrical terminals exposed at a first end and at a second end of the mechanical connector. The electrical connector, printed circuit board and conductive outer housing may all be electrically connected to one another. In some instances, a plurality of electrical connectors having different mechanically shaped second ends and similarly shaped first ends may be provided, from which one electrical connector may be chosen for use in the connector assembly.
    • 本公开涉及包括压力传感器,湿度传感器,流量传感器等的传感器。在一些情况下,用于传感器组件的连接器组件可以包括电连接器,印刷电路板和导电外壳。 电连接器可以包括机械连接器和暴露在机械连接器的第一端和第二端处的电端子。 电连接器,印刷电路板和导电外壳可以彼此电连接。 在一些情况下,可以设置具有不同的机械形状的第二端和类似形状的第一端的多个电连接器,从中可以选择一个电连接器用于连接器组件。
    • 19. 发明授权
    • Pressure sensor
    • 压力传感器
    • US08516897B1
    • 2013-08-27
    • US13401727
    • 2012-02-21
    • Ryan JonesPaul RozgoRichard Charles Sorenson
    • Ryan JonesPaul RozgoRichard Charles Sorenson
    • G01L7/00H01L27/14H01L21/02
    • G01L19/147G01L19/0038H01L2224/48091H01L2224/48137H01L2924/00014
    • The present disclosure relates to pressure sensor assemblies and methods. The pressure sensor assembly may include a first substrate, a second substrate and a sense die. The first substrate may be connected to the second substrate, such that an aperture in the first substrate is in fluid communication with an aperture in the second substrate. The second substrate may be connected to the sense die, such that the aperture in the second substrate is in fluid communication with a sense diaphragm on the second substrate. The pressure sensor assembly may include a media path that extends through the aperture in the first substrate, through the aperture in the second substrate, and to the sense die. In some cases, the first substrate, the second substrate and the sense die may be connected in a manner that does not include an adhesive.
    • 本公开涉及压力传感器组件和方法。 压力传感器组件可以包括第一基板,第二基板和感测管芯。 第一衬底可以连接到第二衬底,使得第一衬底中的孔与第二衬底中的孔流体连通。 第二衬底可以连接到感测管芯,使得第二衬底中的孔与第二衬底上的感测膜流体连通。 压力传感器组件可以包括延伸穿过第一衬底中的孔,穿过第二衬底中的孔并且到达感应管芯的介质路径。 在一些情况下,可以以不包括粘合剂的方式连接第一基板,第二基板和感测裸片。