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    • 7. 发明授权
    • RFID tire tag test fixture and method
    • RFID轮胎标签测试夹具和方法
    • US07999684B2
    • 2011-08-16
    • US12272887
    • 2008-11-18
    • John Michael FenkanynRajat JainRichard Nicholas CranoDale Roy Norton
    • John Michael FenkanynRajat JainRichard Nicholas CranoDale Roy Norton
    • G08B13/14
    • B60C23/041B60C23/0493B60C2019/004
    • A test fixture and electronic tag assembly includes an electronic tag comprising an electronic device and a half wave dipole antenna of antenna length L. The antenna is configured as first and second coiled dipole antenna segments connecting with and extending in opposite directions from the electronic device. The assembly further includes a support frame; first and second electrically conductive pads positioned in spaced apart relationship within the support frame; and apparatus for fixedly holding end segments of the first and second coiled dipole antenna segments respectively against the first and second conductive pads in an overlapping relationship. A combined length of the first and second coiled dipole antenna segments and the conductive pads less the length of the overlapping end segments define a calculated effective antenna length for operative utility in performance measurement of the electronic tag in air analogous with the performance of the performance of the tag in a non-air medium such as in a tire. The spacing between the conductive pads may be selectively altered to accommodate the testing of tags of varying lengths within the fixture.
    • 测试夹具和电子标签组件包括电子标签,其包括电子设备和天线长度L的半波偶极子天线。天线被配置为与电子设备连接并沿相反方向延伸的第一和第二线圈偶极子天线段。 组件还包括支撑框架; 在支撑框架内以间隔开的关系定位的第一和第二导电垫; 以及用于以重叠关系将第一和第二卷绕的偶极天线段的端部段分别固定地保持在第一和第二导电焊盘上的装置。 第一和第二线圈偶极子天线段和导电焊盘的组合长度减小重叠端部段的长度限定计算的有效天线长度,用于在空气中对电子标签的性能测量中的操作效用,类似于性能的性能 标签在诸如轮胎中的非空气介质中。 可以选择性地改变导电焊盘之间的间隔,以适应固定装置内变化长度的标签的测试。
    • 8. 发明申请
    • RFID TIRE TAG TEST FIXTURE AND METHOD
    • RFID轮胎标签测试仪器和方法
    • US20100123585A1
    • 2010-05-20
    • US12272887
    • 2008-11-18
    • John Michael FenkanynRajat JainRichard Nicholas CranoDale Roy Norton
    • John Michael FenkanynRajat JainRichard Nicholas CranoDale Roy Norton
    • G08B13/14
    • B60C23/041B60C23/0493B60C2019/004
    • A test fixture and electronic tag assembly includes an electronic tag comprising an electronic device and a half wave dipole antenna of antenna length L. The antenna is configured as first and second coiled dipole antenna segments connecting with and extending in opposite directions from the electronic device. The assembly further includes a support frame; first and second electrically conductive pads positioned in spaced apart relationship within the support frame; and apparatus for fixedly holding end segments of the first and second coiled dipole antenna segments respectively against the first and second conductive pads in an overlapping relationship. A combined length of the first and second coiled dipole antenna segments and the conductive pads less the length of the overlapping end segments define a calculated effective antenna length for operative utility in performance measurement of the electronic tag in air analogous with the performance of the performance of the tag in a non-air medium such as in a tire. The spacing between the conductive pads may be selectively altered to accommodate the testing of tags of varying lengths within the fixture.
    • 测试夹具和电子标签组件包括电子标签,其包括电子设备和天线长度L的半波偶极子天线。天线被配置为与电子设备连接并沿相反方向延伸的第一和第二线圈偶极子天线段。 组件还包括支撑框架; 在支撑框架内以间隔开的关系定位的第一和第二导电垫; 以及用于以重叠关系将第一和第二卷绕的偶极天线段的端部段分别固定地保持在第一和第二导电焊盘上的装置。 第一和第二线圈偶极子天线段和导电焊盘的组合长度减小重叠端部段的长度限定计算的有效天线长度,用于在空气中对电子标签的性能测量中的操作效用,类似于性能的性能 标签在诸如轮胎中的非空气介质中。 可以选择性地改变导电焊盘之间的间隔,以适应固定装置内变化长度的标签的测试。
    • 9. 发明申请
    • METHOD FOR TESTING EMBEDDED RFID TAGS
    • 测试嵌入式RFID标签的方法
    • US20110074550A1
    • 2011-03-31
    • US12568060
    • 2009-09-28
    • John Michael FenkanynRichard Nicholas Crano
    • John Michael FenkanynRichard Nicholas Crano
    • H04Q5/22
    • G06K7/0008H04Q2213/13095
    • A method of testing an electronic tag includes: embedding the electronic tag within an elongate carrier strip composed of a material having material properties simulating an end product material within which the tag resides embedded during end product use; positioning the embedded tag substantially within the carrier strip at a mid-portion between opposite end portions of the strip; positioning the mid-portion of the strip and the embedded tag over at least one curved support surface; engaging the end portions of the strip; and positioning a reader in a position operative to receive information from the electronic tag during a testing transmission sequence; reciprocally moving the strip mid-portion in a forward direction and a reverse direction over the curved support surface; and rendering the reader operational to receive information transmitted from the electronic tag as the strip mid-portion reciprocally moves in the forward and reverse directions.
    • 一种测试电子标签的方法包括:将电子标签嵌入细长的载体条中,所述细长载体条由具有模拟最终产品材料的材料性质的材料组成,所述最终产品材料在最终产品使用期间嵌入其中; 将嵌入式标签基本上定位在带状物的相对端部之间的中间部分的载体条带内; 将条带的中间部分和嵌入的标签定位在至少一个弯曲的支撑表面上; 接合条带的端部; 以及将读取器定位在操作以在测试传输序列期间从所述电子标签接收信息的位置; 在弯曲的支撑表面上沿着向前方向和相反方向往复移动带状中间部分; 并且使得读取器可操作以在条带中间部分沿正向和反向方向往复移动时接收从电子标签发送的信息。
    • 10. 发明申请
    • TESTING APPARATUS FOR EMBEDDED RFID TAGS
    • 嵌入式RFID标签测试装置
    • US20110074549A1
    • 2011-03-31
    • US12568043
    • 2009-09-28
    • John Michael FenkanynRichard Nicholas Crano
    • John Michael FenkanynRichard Nicholas Crano
    • H04Q5/22
    • G06K7/0008H04Q2213/13095
    • A testing apparatus includes an elongate carrier strip encapsulating an electronic device such as an RFID tag therein. The apparatus includes multiple rollers positioned in sequence and defining a serpentine path for receiving and supporting a carrier strip mid-portion. A drive mechanism engages the end portions of the strip and reciprocally moves the strip mid-portion in a forward direction and a reverse direction against curved surfaces of the rollers. A reader is further provided and positioned to detect the presence or absence of transmission error by the electronic device as the strip mid-portion reciprocally moves in the forward and reverse directions over the apparatus support surface during a testing sequence.
    • 测试装置包括在其中封装诸如RFID标签的电子设备的细长载体条。 该设备包括顺序地定位的多个辊,并且限定用于接收和支撑载体带中部的蛇形路径。 驱动机构与条带的端部相接合,并使条带中间部分向前和向后的方向抵靠辊的曲面往复移动。 进一步提供读取器并定位成当测试序列期间条带中间部分在装置支撑表面上沿正向和反向方向往复移动时,检测电子设备是否存在传输误差。