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    • 51. 发明授权
    • Capacitive angular position sensor
    • 电容角位置传感器
    • US06876209B2
    • 2005-04-05
    • US10695309
    • 2003-10-28
    • Yingjie LinWarren Baxter Nicholson
    • Yingjie LinWarren Baxter Nicholson
    • G01D5/24G01R27/26
    • G01D5/2405
    • A sensor assembly for sensing angular position of one object relative to another object. A capacitor is formed between a transmitter capacitor plate having a pair of transmitter electrodes and a receiver capacitor plate having preferably eight receiver electrodes forming four receiver electrode pairs. A dielectric rotor rotates between the plates, the rotor having first and second segments each subtending 67.5 which are mutually separated by a vacancy subtending 45 degrees, and further having a third segment subtending 45 degrees disposed between the first and second segments diametrically opposite the vacancy. An electrical circuit measures net charge induced on each of the receiver electrode pairs, wherein the charges indicate the angular position of said rotor relative to said transmitter and receiver capacitor plates.
    • 用于感测一个物体相对于另一个物体的角位置的传感器组件。 在具有一对发射器电极的发射器电容器板和具有形成四个接收器电极对的优选八个接收器电极的接收器电容器板之间形成电容器。 电介质转子在板之间旋转,转子具有第一和第二段,每个与第一段和第二段对齐,它们彼此分开,空位对齐45度,并且还具有一个第三段对角45度,设置在与空位完全相反的第一段和第二段之间。 电路测量在每个接收器电极对上感应的净电荷,其中电荷指示所述转子相对于所述发射器和接收器电容器板的角位置。
    • 54. 发明授权
    • In-situ liquid viscosity measurement
    • 原位液体粘度测量
    • US06725707B1
    • 2004-04-27
    • US10341009
    • 2003-01-13
    • Yingjie LinLorenzo Guadalupe Rodriguez
    • Yingjie LinLorenzo Guadalupe Rodriguez
    • G01N1100
    • G01N11/00
    • A device for determining the viscosity of a liquid has a temperature sensor and a heater disposed in spaced relation within a channel. When the device is immersed in a liquid, the heater heats the liquid and the temperature sensor detects the change in temperature of the liquid in response to heating of the liquid by the heater. A controller coupled with the temperature sensor receives a signal corresponding to the temperature of the liquid and determines an index value corresponding to the change in temperature with respect to time. The index value may be compared with a stored value to evaluate the relative change in viscosity, or it may be used to determine an actual value of viscosity of the liquid.
    • 用于确定液体粘度的装置具有温度传感器和在通道内间隔设置的加热器。 当设备浸入液体中时,加热器加热液体,并且温度传感器响应于加热器对液体的加热而检测液体的温度变化。 与温度传感器耦合的控制器接收与液体温度相对应的信号,并且确定对应于温度随时间变化的指数值。 可以将指标值与存储值进行比较以评估粘度的相对变化,或者可以用于确定液体的粘度的实际值。
    • 55. 发明授权
    • Circuit design for liquid property sensor
    • 液体传感器电路设计
    • US06693444B2
    • 2004-02-17
    • US10199651
    • 2002-07-19
    • Yingjie LinSu-Chee Simon Wang
    • Yingjie LinSu-Chee Simon Wang
    • G01R2708
    • G01N27/02G01N33/2835
    • An apparatus for measuring the complex impedance of a fuel includes a sensing element in contact with the fuel. The sensing element is excited with an excitation signal of a predetermined frequency, preferably in a range of 10 kHz to 100 kHz. The induced signal is used to generate a phase and a magnitude signal indicative of the phase and magnitude of the complex impedance. From the phase and magnitude signals, the resistance and capacitance of the fuel can be calculated. Correction for variations in temperature of the electronics is provided, as is variable control to adjust the resolution of the magnitude signal required by fuels of varying content, such as varying ethanol content.
    • 用于测量燃料的复阻抗的装置包括与燃料接触的感测元件。 感测元件以预定频率的激励信号激励,优选地在10kHz至100kHz的范围内。 感应信号用于产生指示复阻抗的相位和幅度的相位和幅度信号。 从相位和幅度信号可以计算燃料的电阻和电容。 提供电子装置的温度变化的校正,以及用于调节不同含量的燃料(例如不同乙醇含量)所需的幅度信号的分辨率的可变控制。
    • 57. 发明授权
    • Soft-landing plunger for use in a control valve
    • 软着陆柱塞用于控制阀
    • US06517044B1
    • 2003-02-11
    • US09955709
    • 2001-09-19
    • Yingjie LinLorenzo Guadalupe Rodriguez
    • Yingjie LinLorenzo Guadalupe Rodriguez
    • F16K3102
    • F16K31/0696
    • An evaporative control valve includes a plunger reciprocable between a valve stop and a valve seat to open and close a controlled port. The plunger has a body, a flexible support member mounted on one end of the body and a resilient tip positioned on the support member for sealing engagement with the valve seat. When the resilient tip of the plunger impacts the valve seat, the flexible support member absorbs substantially all of the force of impact by deflecting in the direction opposite the plunger movement, increasing impact time and reducing noise which may be generated. The resilient tip may be positioned on the flexible support member to further define a stop cushion to further reduce impact of the plunger against the valve stop.
    • 蒸发控制阀包括可在阀门止动件和阀座之间往复运动以打开和关闭受控端口的柱塞。 柱塞具有主体,安装在主体的一端的柔性支撑构件和位于支撑构件上用于与阀座密封接合的弹性末端。 当柱塞的弹性顶端冲击阀座时,柔性支撑构件通过沿与柱塞移动相反的方向偏转而吸收基本上所有的冲击力,增加冲击时间并降低可能产生的噪音。 弹性末端可以定位在柔性支撑构件上以进一步限定止动垫,以进一步减小柱塞抵抗阀止动件的冲击。
    • 58. 发明授权
    • Steering column differential angle position sensor
    • 转向柱差角位置传感器
    • US06443020B1
    • 2002-09-03
    • US09663473
    • 2000-09-15
    • Yingjie LinWarren Baxter NicholsonSteven Douglas Thomson
    • Yingjie LinWarren Baxter NicholsonSteven Douglas Thomson
    • G01L302
    • B62D6/10
    • A steering column differential angle position sensor includes an upper target wheel and a lower target wheel. Each target wheel forms a plurality of similarly shaped slots that are equally spaced radially around the target wheels. Two receiver coils and a excitation coil are coaxially aligned with the target wheels. A hollow housing surrounds the target wheels and the coils. The excitation coil generates an alternating current magnetic field around itself, and this alternating current magnetic field generates eddy current in the target wheels. The receiver coils receive an alternating current signal that is a combination of the alternating current magnetic field generated by the excitation coil and the eddy current. The receiver coils sense changes in the alternating current signal due to differential slot alignment of the target wheels, and hence, the torque on a steering column that is mechanically coupled to the sensor.
    • 转向柱差角位置传感器包括上目标轮和下目标轮。 每个目标轮形成多个类似形状的槽,其围绕目标轮径向等距分布。 两个接收器线圈和激励线圈与目标轮同轴对准。 围绕目标轮和线圈的中空壳体。 励磁线圈在其周围产生交流磁场,该交流磁场在目标轮中产生涡电流。 接收器线圈接收由励磁线圈产生的交流磁场与涡流的组合的交流信号。 接收器线圈由于目标轮的差动槽对准以及因此机械耦合到传感器的转向柱上的转矩而感测到交流信号中的变化。