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    • 1. 发明申请
    • SYSTEM FOR VERIFYING TEMPERATURE MEASUREMENT
    • 用于验证温度测量的系统
    • WO2012078186A2
    • 2012-06-14
    • PCT/US2011/001951
    • 2011-12-02
    • COLBURN, MichaelCOLBURN, MichaelBOGNER, StephenMCCLOSKEY, DavidMCCORMICK, Gavin
    • COLBURN, MichaelCOLBURN, MichaelBOGNER, StephenMCCLOSKEY, DavidMCCORMICK, Gavin
    • G01K15/00
    • G01K15/00G01K15/007
    • The present application is directed to a system for verifying calibration of a temperature sensor comprising an above-ambient temperature verifier and a below-ambient temperature verifier. The above-ambient temperature verifier includes a first housing and an ohmic material contained within the first housing. At least one pair of electrodes is provided to direct an applied current through the ohmic material to heat the material. A well is provided within the ohmic material for accepting a temperature sensor. The well has an inner surface with access to the surface provided through an opening in the first housing. A compression assembly cooperates with the ohmic material to create intimate contact between the inner surface and the temperature sensor when the temperatures sensor is placed within the well. An above-ambient reference temperature monitor is also provided to maintain a calibrated temperature within the ohmic material. The below-ambient temperature verifier includes a second housing and a below-ambient reference temperature monitor to maintain a calibrated temperature of a below-ambient temperature medium. The system further includes the ability to log all temperature test measurements to the specific identity of each temperature sensor tested by using a unique identity read from an RFID tag located on each temperature sensor to be verified.
    • 本申请涉及一种用于验证温度传感器的校准的系统,该温度传感器包括上述环境温度验证器和低于环境温度的验证器。 上述环境温度验证器包括第一壳体和包含在第一壳体内的欧姆材料。 提供至少一对电极以引导施加的电流通过欧姆材料以加热材料。 用于接受温度传感器的欧姆材料内设有一个孔。 该井具有通过第一壳体中的开口提供的通过该表面的内表面。 当温度传感器放置在井内时,压缩组件与欧姆材料配合以产生内表面和温度传感器之间的紧密接触。 还提供了一种高于环境的参考温度监控器,以将校准温度保持在欧姆材料内。 环境温度验证器包括第二壳体和低于环境温度的参考温度监测器,以保持低于环境温度的介质的校准温度。 该系统还包括通过使用从要验证的每个温度传感器上的RFID标签读取的唯一标识来将所有温度测试测量值记录到所测试的每个温度传感器的特定身份。
    • 6. 发明申请
    • FOOD STEAMER CONTAINERS WITH SEQUENTIAL OHMIC WATER HEATING
    • 具有顺序OHMIC水加热的食品蒸汽容器
    • WO2010134930A1
    • 2010-11-25
    • PCT/US2009/053794
    • 2009-08-13
    • IDEAS WELL DONE LLCCOLBURN, MichaelBOGNER, StephenMCCORMICK, Gavin
    • COLBURN, MichaelBOGNER, StephenMCCORMICK, Gavin
    • A47J27/04A47J27/16H05B3/60
    • H05B3/82A47J27/04F22B1/284F24H1/203F24H9/1818F24H9/2021F24H2250/10
    • A liquid heating system includes an electric current controller, a first container, and a second container. The first container includes a first liquid and a first electric heating system. The second container includes a second liquid and a second electric heating system. The electric current controller is connected to the first electric heating system and to the second electric heating system. The electric current controller is configured to automatically alternate between providing electric current to the first electric heating system and to the second electric heating system such that when the electric current controller is providing the current to the first electric heating system the electric current controller provides no electric current to the second electric heating system and when the electric current controller is providing the current to the second electric heating system the electric current controller provides no electric current to the first electric heating system.
    • 液体加热系统包括电流控制器,第一容器和第二容器。 第一容器包括第一液体和第一电加热系统。 第二容器包括第二液体和第二电加热系统。 电流控制器连接到第一电加热系统和第二电加热系统。 电流控制器被配置为在向第一电加热系统和第二电加热系统提供电流之间自动交替,使得当电流控制器向第一电加热系统提供电流时,电流控制器不提供电 电流到第二电加热系统,并且当电流控制器向第二电加热系统提供电流时,电流控制器不向第一电加热系统提供电流。
    • 10. 发明申请
    • STEAM GENERATOR SYSTEM
    • 蒸汽发生器系统
    • WO2013025208A1
    • 2013-02-21
    • PCT/US2011/048007
    • 2011-08-16
    • WOOD STONE IDEAS LLCCOLBURN, Michael GeorgeBOGNER, Stephen James
    • COLBURN, Michael GeorgeBOGNER, Stephen James
    • F22B1/30F22B35/00
    • F22B1/30F22B35/00
    • A system for generating steam from an electrolytic solution includes a steam generating tank, a flow producing device, an electric current measuring device, and a controller. The steam generating tank includes a first electrode and a second electrode. The first electrode and the second electrode are arranged to contact the electrolytic solution when the electrolytic solution is provided in the steam generating tank. Electrical current flows between the first electrode and the second electrode through the electrolytic solution. The electrical current heats the electrolytic solution to produce the steam. The controller is connected to the flow producing device to to turn on and turn off provision of the electrolytic solution to said steam generating tank based on the electrical current measured by the electric current measuring device.
    • 用于从电解液产生蒸汽的系统包括蒸汽发生罐,流动产生装置,电流测量装置和控制器。 蒸汽发生罐包括第一电极和第二电极。 第一电极和第二电极在电解液设置在蒸汽发生槽中时与电解液接触。 电流通过电解液在第一电极和第二电极之间流动。 电流加热电解液以产生蒸汽。 控制器连接到流动产生装置以基于由电流测量装置测量的电流来打开和关闭向所述蒸汽发生箱提供电解液。