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    • 21. 发明申请
    • Pace Clock
    • 步速时钟
    • US20120287758A1
    • 2012-11-15
    • US13107650
    • 2011-05-13
    • Yingjie Lin
    • Yingjie Lin
    • G04C11/02
    • G04G21/04G04G9/0064
    • The present invention relates to a pace clock and system for timing repetitive exercise, and more particularly to a pace clock and system for interval based training such as swim training to allow the swimmer predetermined periods of time to rest and recover after each individual swim within a particular set. A pace clock according to the present invention can display time in minutes and seconds; it can also display at least one additional digit which indicates the swim repeat number and/or cycle repeat number. The pace clock having a processing center, such as a micro-controller, to receive operation commands and workout plan from the master controller, such as computer and handheld device, through the transceiver. The master controller connecting with multiple pace clocks through RF or wired transceiver enables the coach to know the current status of the workout from multiple swimmers having their own workout plan.
    • 本发明涉及一种用于定时重复运动的步速时钟和系统,更具体地说,涉及一种用于基于时间间隔的训练的步速时钟和系统,例如游泳训练,以允许游泳者预定的时间段在每次个体游泳之后休息和恢复 特定集 根据本发明的步速时钟可以以分和秒显示时间; 它还可以显示至少一个指示游泳重复次数和/或循环重复次数的附加数字。 具有诸如微控制器的处理中心的步速时钟通过收发器从诸如计算机和手持设备的主控制器接收操作命令和锻炼计划。 主控制器通过射频或有线收发器连接多个起搏时钟,使得教练能够从具有自己的锻炼计划的多名游泳者身上知道锻炼的当前状态。
    • 24. 发明授权
    • Planar sensor and a method for measuring the temperature of same
    • 平面传感器和测量温度的方法
    • US07279133B2
    • 2007-10-09
    • US10029049
    • 2001-12-20
    • David K. ChenDavid P. WallaceDa Yu WangWalter T. SymonsPaul C. KikuchiYingjie LinLora ThrunMark A. ShostJoseph G. Ralph
    • David K. ChenDavid P. WallaceDa Yu WangWalter T. SymonsPaul C. KikuchiYingjie LinLora ThrunMark A. ShostJoseph G. Ralph
    • B32B5/02B32B27/12B32B27/04G01N27/00G01N27/26
    • G01K7/223G01N27/419Y10T436/207497
    • In a planar oxygen sensor having a pump cell, a reference cell, a sensor chamber and a heating device, a ground plane electrode is provided and includes a sensing portion having a first sense lead and a second sense lead and a measuring portion having a first measuring lead and a second measuring lead, wherein the first measuring lead and the second measuring lead have increased surface area relative to said sensing portion such that the resistance between the first measuring lead and the second measuring lead is reduced and wherein the first measuring lead is disposed so as to be communicated with the first sense lead and the second measuring lead is disposed so as to be communicated with the second sense lead. Also, in a planar oxygen sensor having a pump cell, a reference cell, a sensor chamber, a heating device and a ground plane electrode that includes a sensing portion having a first sense lead and a second sense lead and a measuring portion having a first measuring lead and a second measuring lead, a method for measuring the temperature of the planar oxygen sensor is provided and includes obtaining a temperature measurement device, communicating the temperature measurement device with the first measuring lead and the second measuring lead, operating the planar oxygen sensor so as to cause the heating device to heat the planar oxygen sensor, and measuring the resistance between the first measuring lead and the second measuring lead.
    • 在具有泵电池,参考电池,传感器室和加热装置的平面氧传感器中,提供接地平面电极,并且包括具有第一感测引线和第二感测引线的感测部分和具有第一 测量引线和第二测量引线,其中所述第一测量引线和所述第二测量引线相对于所述感测部分具有增加的表面积,使得所述第一测量引线和所述第二测量引线之间的电阻减小,并且其中所述第一测量引线为 被布置成与第一感测引线连通,并且第二测量引线被设置成与第二感测引线连通。 此外,在具有泵电池,参考电池,传感器室,加热装置和接地平面电极的平面氧传感器中,包括具有第一感测引线和第二感测引线的感测部分和具有第一感测引线的测量部分 测量引线和第二测量引线,提供了一种用于测量平面氧传感器的温度的方法,包括获得温度测量装置,将温度测量装置与第一测量引线和第二测量引线连通,操作平面氧传感器 以使加热装置加热平面氧传感器,并测量第一测量引线和第二测量引线之间的电阻。
    • 29. 发明授权
    • Liquid level sensing assembly and method for measuring using same
    • 液面感应组件及其使用方法
    • US06823731B1
    • 2004-11-30
    • US10683742
    • 2003-10-10
    • Yingjie Lin
    • Yingjie Lin
    • G01F2300
    • G01F23/266G01F23/263
    • A sensing assembly senses a level of a liquid in a reservoir. The sensing assembly includes a first input port for receiving a first input voltage signal. The sensing assembly also includes a second input port for receiving a second input voltage signal. An excitation circuit is electrically connected to the first and second input ports for receiving the first and second input voltage signals and for generating a first excitation signal and a second excitation signal. A receiving circuit is disposed adjacent the excitation circuit and defines a variable capacitance with the excitation circuit. The receiving circuit produces an output voltage variable with the level of the liquid in the reservoir due to capacitance changes between the excitation circuit and the receiving circuit. The receiving circuit includes a first receiving electrode extending through a sine wave form and a second receiving electrode extending through a cosine wave form. The capacitance changes are due to dielectric changes created by the presence of the liquid adjacent at least a portion of the sensing assembly.
    • 感测组件感测储存器中液体的水平。 感测组件包括用于接收第一输入电压信号的第一输入端口。 感测组件还包括用于接收第二输入电压信号的第二输入端口。 激励电路电连接到第一和第二输入端口,用于接收第一和第二输入电压信号并产生第一激励信号和第二激励信号。 接收电路设置在激励电路附近并且与励磁电路定义可变电容。 由于励磁电路和接收电路之间的电容变化,接收电路产生具有液位的液位的输出电压变化。 接收电路包括延伸穿过正弦波形的第一接收电极和延伸穿过余弦波形的第二接收电极。 电容变化是由于与感测组件的至少一部分相邻的液体的存在而产生的电介质变化。