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    • 1. 发明申请
    • Method and Apparatus for a Temperature Sensor for Measuring Peak Temperatures
    • 用于测量峰值温度的温度传感器的方法和装置
    • US20090161727A1
    • 2009-06-25
    • US11959774
    • 2007-12-19
    • Jerzy WielgusDaniel R. GamotaJohn B. SzczechKin P. TsuiJie Zhang
    • Jerzy WielgusDaniel R. GamotaJohn B. SzczechKin P. TsuiJie Zhang
    • G01K7/00H01C7/02
    • G01K3/04G01K7/16G01K2211/00H01C7/04H01C17/065Y10T29/49085
    • A method and apparatus for an irreversible temperature sensor for measuring a peak exposure temperature. The apparatus is fabricated by printing an admixture of conductive nanoparticles on a dielectric substrate to form a film. The film has an electrical resistance that is inversely proportional to the exposure temperature. The electrical resistance also irreversibly decreases as the exposure temperature of the film increases. A portion of the film is exposed to a pulse of electromagnetic energy sufficient to render it substantially more electrically conductive than the portion that was not exposed. In use, the peak exposure temperature is determined by measuring the electrical resistance of the non-altered portion of the film and the electrical resistance of the portion that was exposed to the pulse of electromagnetic energy, and subtracting the electrical resistance of the altered portion from the electrical resistance of the portion that was not altered, to provide a difference value. The peak exposure temperature is then be calculated as a function of the difference value.
    • 用于测量峰值暴露温度的不可逆温度传感器的方法和装置。 该装置通过在介电基片上印刷导电纳米颗粒的混合物来形成膜。 该膜具有与曝光温度成反比的电阻。 随着膜的暴露温度升高,电阻也不可逆地减小。 膜的一部分暴露于足以使其基本上比未暴露的部分更具导电性的电磁能的脉冲。 在使用中,峰值曝光温度通过测量膜的未改变部分的电阻和暴露于电磁能脉冲的部分的电阻,以及减去改变部分的电阻来确定 未改变的部分的电阻,以提供差值。 然后根据差值计算峰值暴露温度。
    • 2. 发明授权
    • Method and apparatus for a temperature sensor for measuring peak temperatures
    • 用于测量峰值温度的温度传感器的方法和装置
    • US07780345B2
    • 2010-08-24
    • US11959774
    • 2007-12-19
    • Jerzy WielgusDaniel R. GamotaJohn B. SzczechKin P. TsuiJie Zhang
    • Jerzy WielgusDaniel R. GamotaJohn B. SzczechKin P. TsuiJie Zhang
    • G01K3/00G01K7/00H01C7/04H01C7/10H01C3/04
    • G01K3/04G01K7/16G01K2211/00H01C7/04H01C17/065Y10T29/49085
    • A method and apparatus for an irreversible temperature sensor for measuring a peak exposure temperature. The apparatus is fabricated by printing an admixture of conductive nanoparticles on a dielectric substrate to form a film. The film has an electrical resistance that is inversely proportional to the exposure temperature. The electrical resistance also irreversibly decreases as the exposure temperature of the film increases. A portion of the film is exposed to a pulse of electromagnetic energy sufficient to render it substantially more electrically conductive than the portion that was not exposed. In use, the peak exposure temperature is determined by measuring the electrical resistance of the non-altered portion of the film and the electrical resistance of the portion that was exposed to the pulse of electromagnetic energy, and subtracting the electrical resistance of the altered portion from the electrical resistance of the portion that was not altered, to provide a difference value. The peak exposure temperature is then be calculated as a function of the difference value.
    • 用于测量峰值暴露温度的不可逆温度传感器的方法和装置。 该装置通过在介电基片上印刷导电纳米颗粒的混合物来形成膜。 该膜具有与曝光温度成反比的电阻。 随着膜的暴露温度升高,电阻也不可逆地减小。 膜的一部分暴露于足以使其基本上比未暴露的部分更具导电性的电磁能的脉冲。 在使用中,峰值曝光温度通过测量膜的未改变部分的电阻和暴露于电磁能脉冲的部分的电阻,以及减去改变部分的电阻来确定 未改变的部分的电阻,以提供差值。 然后根据差值计算峰值暴露温度。