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    • 25. 发明授权
    • Power supply control system for heater used in gas sensor
    • 用于气体传感器的加热器电源控制系统
    • US06870142B2
    • 2005-03-22
    • US10157866
    • 2002-05-31
    • Satoshi HadaEiichi KurokawaMitsunobu Niwa
    • Satoshi HadaEiichi KurokawaMitsunobu Niwa
    • G01N27/41F02D41/14G01N27/406G01N27/416G01N27/419H05B1/02
    • H05B1/0236F02D41/1494G01N27/4067
    • A heater control system is provided for controlling the temperature of a heater used to heat a solid electrolyte-made sensor element of a gas concentration sensor up to a given temperature at which the sensor element is activated to provide a correct gas concentration output for controlling a preselected variable used in, for example, an automotive air-fuel ratio control system. The heater control system measures a resistance value of the sensor element and controls an electric power supplied to the heater as a function of the resistance value. The heater control system is designed to determine a controlled variable properly used to control the heater, thereby resulting in improved controllability of a power supply to the heater and also works to minimize an error in determining the resistance of the heater.
    • 提供一种加热器控制系统,用于控制用于加热气体浓度传感器的固体电解质制成的传感器元件的加热器的温度,直到传感器元件被激活的给定温度,以提供用于控制传感器元件的正确的气体浓度输出 用于例如汽车空燃比控制系统中的预选变量。 加热器控制系统测量传感器元件的电阻值,并根据电阻值控制供应给加热器的电力。 加热器控制系统被设计成确定适当地用于控制加热器的受控变量,由此导致对加热器的电源的可控性提高,并且还用于最小化确定加热器电阻的误差。
    • 26. 发明授权
    • Power supply control system for heater used in gas sensor
    • 用于气体传感器的加热器电源控制系统
    • US06720534B2
    • 2004-04-13
    • US10158110
    • 2002-05-31
    • Satoshi HadaEiichi KurokawaAkio Tanaka
    • Satoshi HadaEiichi KurokawaAkio Tanaka
    • H05B102
    • G01N27/4067
    • A heater control apparatus used for a gas concentration sensor heats a sensor element including a solid electrolyte body up to a desired activation temperature. The heater control apparatus determines an actual resistance value of the sensor element, controls a power supply to the heater as a function of a difference between the actual resistance value and a target one, determines a power supplied to the heater, and determines a reference resistance value of the sensor element based on a predetermined fundamental relation between a power used in the heater and a resistance value of the sensor element to correct the target resistance value as a function of a difference between the reference resistance value and the actual resistance value.
    • 用于气体浓度传感器的加热器控制装置将包括固体电解质体的传感器元件加热至所需的活化温度。 加热器控制装置确定传感器元件的实际电阻值,根据实际电阻值和目标电阻值之间的差来控制加热器的电源,确定供给加热器的功率,并确定参考电阻 基于加热器中使用的功率与传感器元件的电阻值之间的预定基本关系的传感器元件的值作为参考电阻值与实际电阻值之差的函数来校正目标电阻值。
    • 30. 发明授权
    • Turbine blade having squealer
    • 涡轮叶片具有尖叫声
    • US08414262B2
    • 2013-04-09
    • US12608438
    • 2009-10-29
    • Satoshi Hada
    • Satoshi Hada
    • F01D5/20
    • F01D5/20F05D2240/307F05D2260/20
    • A turbine blade of the invention includes an air foil including a plurality of cooling flow passages through which a cooling medium flows from a leading edge region to a trailing edge region, a top plate which forms the apex of the air foil, has a heat-resistant coating applied on the upper surface thereof, and includes a plurality of cooling holes, and a squealer which protrudes radially outward from the blade from the top plate, and is formed so as to extend from a leading edge end to a starting end of the trailing edge region along a suction-surface-side blade wall in a peripheral direction of the blade.
    • 本发明的涡轮叶片包括一个空气箔片,它包括多个冷却流道,冷却介质从前缘区域流到后缘区域,形成气翼顶点的顶板, 并且包括多个冷却孔,以及从顶板从叶片径向向外突出并形成为从前缘到前端的起始端, 在叶片的周向沿着吸力表面侧叶片壁的后缘区域。