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    • 4. 发明申请
    • SPECIFIED GAS CONCENTRATION SENSOR
    • 指定气体浓度传感器
    • US20130209315A1
    • 2013-08-15
    • US13821805
    • 2011-09-08
    • Mitsuteru Kimura
    • Mitsuteru Kimura
    • G01N25/48
    • G01N25/4873G01N25/4826
    • A specified gas concentration sensor includes a thin film thermally separated from a substrate, which is provided by a heater, a temperature sensor and an absorbing substance of a specified gas, and temperature change accompanied by heat generation while absorbing the specified gas in an ambient gas being capable of measuring by the temperature sensor. The absorbed specified gas is released from the absorbing substance by heating with the heater, and after stopping heating with the heater, the specified gas concentration in the ambient gas is obtained by utilizing an output of the temperature sensor at a time passing a predetermined time which is a thermal time constant of the thin film or longer at which the specified gas is absent from the heater. An optional heat conductive type sensor having no absorbing substance of the specified gas can broaden the measurable range of the specified gas concentration.
    • 特定的气体浓度传感器包括从基板热分离的薄膜,其由加热器,温度传感器和特定气体的吸收物质提供,伴随着发热的温度变化同时吸收环境气体中的特定气体 能够通过温度传感器进行测量。 吸收的指定气体通过加热器加热而从吸收物质释放,并且在停止加热之后,通过在经过预定时间的时间利用温度传感器的输出来获得环境气体中指定的气体浓度, 是薄膜的热时间常数或加热器中不存在特定气体的时间常数。 不具有特定气体的吸收物质的可选导热型传感器可以扩大规定气体浓度的可测量范围。
    • 9. 发明授权
    • Specified gas concentration sensor
    • 指定气体浓度传感器
    • US09261472B2
    • 2016-02-16
    • US13821805
    • 2011-09-08
    • Mitsuteru Kimura
    • Mitsuteru Kimura
    • G01N25/24G01N25/32G01N25/48
    • G01N25/4873G01N25/4826
    • A specified gas concentration sensor includes a thin film thermally separated from a substrate, which is provided by a heater, a temperature sensor and an absorbing substance of a specified gas, and temperature change accompanied by heat generation while absorbing the specified gas in an ambient gas being capable of measuring by the temperature sensor. The absorbed specified gas is released from the absorbing substance by heating with the heater, and after stopping heating with the heater, the specified gas concentration in the ambient gas is obtained by utilizing an output of the temperature sensor at a time passing a predetermined time which is a thermal time constant of the thin film or longer at which the specified gas is absent from the heater. An optional heat conductive type sensor having no absorbing substance of the specified gas can broaden the measurable range of the specified gas concentration.
    • 特定的气体浓度传感器包括从基板热分离的薄膜,其由加热器,温度传感器和特定气体的吸收物质提供,伴随着发热的温度变化同时吸收环境气体中的特定气体 能够通过温度传感器进行测量。 吸收的指定气体通过加热器加热而从吸收物质释放,并且在停止加热之后,通过在经过预定时间的时间利用温度传感器的输出来获得环境气体中指定的气体浓度, 是薄膜的热时间常数或加热器中不存在特定气体的时间常数。 不具有特定气体的吸收物质的可选导热型传感器可以扩大规定气体浓度的可测量范围。
    • 10. 发明申请
    • Digital Multi-Use Thermo-Cup
    • 数码多功能热杯
    • US20140175083A1
    • 2014-06-26
    • US13725998
    • 2012-12-21
    • HALLIBURTON ENERGY SERVICES, INC. ("HESI")
    • Ketan C. BhaidasnaChristopher R. BELLJustin T. LOOPViatcheslav TCHERNIN
    • H05B1/02
    • H05B1/0269G01N25/00G01N25/02G01N25/04G01N25/4826G01N33/28
    • A multi-use thermal cup device is provided that includes a cup, a sensor, a thermometer, a user interface, and an electronic controller. The cup has at least one heating element disposed between its inner and outer walls. Electro-mechanical connection points are included on the outer wall of the cup and the electronic controller, which are sized to allow the controller to be connected to the cup at a distance sufficient to insulate the controller from heat dispersed from the cup. An insulating air gap is formed between the cup and the electronic controller to protect the controller from any dissipating heat. The controller is programmable to direct the power supply to the heat conductors and to control the function of any device connected to the sensor in response to information received from the sensor and the user-defined sampling parameters.
    • 提供了一种多用途热杯装置,其包括杯,传感器,温度计,用户界面和电子控制器。 该杯具有设置在其内壁和外壁之间的至少一个加热元件。 机电连接点包括在杯子和电子控制器的外壁上,其尺寸设计成允许控制器以足以使控制器与杯分散的热量绝缘的杯子连接到杯子。 在杯和电子控制器之间形成绝缘气隙,以保护控制器免受任何耗散的热量。 控制器是可编程的,用于将电源引导到导热体,并响应于从传感器接收的信息和用户定义的采样参数来控制连接到传感器的任何设备的功能。