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    • 1. 发明授权
    • Sensor structure
    • 传感器结构
    • US08215160B2
    • 2012-07-10
    • US12826061
    • 2010-06-29
    • Takayuki SaitoChihiro KobayashiTakayuki Yogo
    • Takayuki SaitoChihiro KobayashiTakayuki Yogo
    • G01M15/04
    • G01F1/6842F02D41/187G01F5/00G01F15/02
    • The present invention utilizes self-heating of electronic components to improve a humidity sensing part with low environment resistance, such as a condensation problem and the like, and also to enhance the heat radiation efficiency of electronic components. The humidity sensing part is used in an intake tube of an automobile by integrating, for example, with a heating resister type mass air flow measurement device. A humidity sensing element is mounted on an electronic circuit board in a mass air flow measurement device with the temperature thereof starting to increase immediately after a sensor has been actuated. This urges the temperature of the humidity sensing element to start increasing (being heated) immediately after the sensor has been actuated. To urge the humidity sensing element to be further heated, a base plate is composed of two types of materials, resin and metal. A part of the base plate holding an area of the electronic circuit board generating a large quantity of heat is composed of the metal. A part of the base plate corresponding to the periphery of the humidity sensing part which is to be heated is composed of the resin.
    • 本发明利用电子部件的自身加热来改善诸如冷凝问题等的低环境阻力的湿度感测部件,并且还提高电子部件的散热效率。 湿度检测部件通过集成例如加热电阻式质量空气流量测量装置而用在汽车的进气管中。 湿度感测元件安装在质量空气流量测量装置的电子电路板上,其温度在传感器被致动之后立即开始增加。 这促使湿度传感元件的温度在传感器启动后立即开始增加(被加热)。 为了促使湿度传感元件进一步加热,基板由树脂和金属的两种材料组成。 保持产生大量热量的电子电路板的区域的基板的一部分由金属构成。 与被加热的湿度感测部的周边对应的基板的一部分由树脂构成。
    • 2. 发明授权
    • Intake air mass flow measurement device
    • 进气质量流量测量装置
    • US07934419B2
    • 2011-05-03
    • US12132888
    • 2008-06-04
    • Takayuki SaitoShinya IgarashiTakayuki YogoChihiro Kobayashi
    • Takayuki SaitoShinya IgarashiTakayuki YogoChihiro Kobayashi
    • G01M15/04
    • G01F5/00G01F1/40G01F1/684
    • In an intake air mass flow measurement device, for preventing clogging in a pressure intake tube due to water or the like entering the pressure intake tube in a device measuring a pressure in the intake air tube, the intake air mass flow measurement device includes a mass air flow measurement device for measuring an intake air mass flow in an intake air tube; and a pressure sensing device for sensing pressure in the intake air tube, the pressure sensing device being integrated with the mass air flow measurement device, and an aperture plane opened to the inside of a main air flow passage for detection of the pressure takes in pressure by using a gap generated between a main air flow passage constituting member and an insertion part of the mass air flow measurement device when a measurement part of the mass air flow measurement device is inserted into the main air flow passage. With this construction, it is possible to provide a structure in which water or the like can hardly clog the pressure intake port.
    • 在进气量质量流量测量装置中,为了防止在测量进气管中的压力的​​装置中进入压力进入管的水等引入的压力吸入管中的堵塞,进气质量流量测量装置包括质量 气流测量装置,用于测量进气管中的进气质量流量; 以及用于感测进气管中的压力的​​压力感测装置,所述压力感测装置与所述质量空气流量测量装置成一体,并且开口到主空气流动通道内侧的孔平面用于检测压力 通过在大气流量测量装置的测定部插入主空气流路时,通过使用在主空气流路构成构件和大容量空气流量测量装置的插入部之间产生的间隙。 利用这种结构,可以提供一种其中水等难以阻塞压力进气口的结构。
    • 4. 发明授权
    • Sensor structure
    • 传感器结构
    • US08549901B2
    • 2013-10-08
    • US13367939
    • 2012-02-07
    • Takayuki SaitoKeiji HanzawaTakayuki Yogo
    • Takayuki SaitoKeiji HanzawaTakayuki Yogo
    • G01M15/04
    • G01F1/6842F02D41/187G01F5/00
    • In relation to a humidity sensor sensitive to water and contamination, a sensor implementation structure that achieves both protection performance against water and contaminants and measurement performance such as humidity responsiveness is provided. A sensor structure has a mass airflow measurement element that measures a mass airflow flowing in an intake pipe, a humidity sensing element that senses humidity of air flowing in the intake pipe, a housing structural component having a connector that carries out input/output to/from outside and a terminal component of the connector, and a bypass passage that is composed by using part of the housing structural component and takes in part of the air that flows in the intake pipe, the mass airflow measurement element being mounted in the bypass passage; wherein space is provided in the housing structural component in the vicinity of the bypass passage, the humidity sensing element is mounted in the space.
    • 关于对水和污染物敏感的湿度传感器,提供了实现对水和污染物的保护性能以及诸如湿度响应性的测量性能的传感器实施结构。 传感器结构具有测量进气管中流动的质量气流的质量气流测量元件,感测进气管中流动的空气湿度的湿度感测元件,具有连接器的壳体结构部件,该连接器将输入/ 从连接器的外部和端子部件和旁通通路构成,所述旁通通路由使用所述壳体结构部件的一部分而占据所述进气管中流动的一部分空气,所述质量空气流量测量元件安装在所述旁路通路 ; 其中在所述外壳结构部件中在所述旁通通路附近设置空间,所述湿度感测元件安装在所述空间中。
    • 6. 发明申请
    • AIR PHYSICAL QUANTITY SENSING DEVICE
    • 空气物理量传感装置
    • US20140216146A1
    • 2014-08-07
    • US14240946
    • 2012-07-31
    • Takayuki YogoTakayuki SaitoKeiji Hanzawa
    • Takayuki YogoTakayuki SaitoKeiji Hanzawa
    • F02M35/10
    • F02M35/10373F02D41/187F02M35/10393G01F1/684G01F15/14
    • To prevent dew condensation on a sensor element, an air physical quantity sensing device which has a housing structural component integrally provided with a connector and a connector terminal member that perform input and output with the outside, an electronic circuit board mounted on the housing structural component, and an air physical quantity sensing element provided on the electronic circuit board and capable of detecting physical quantity of air. The housing structural component formed with a communication hole which allows the inside and outside of the main air flow passage to communicate with each other. The electronic circuit board has the communication hole separated into two and the surface on the side where the air physical quantity sensing element is provided faces the main air flow passage side.
    • 为了防止传感器元件上的结露,具有一体地设置有连接器的壳体结构部件和与外部进行输入和输出的连接器端子部件的空气物理量检测装置,安装在壳体结构部件上的电子电路板 以及设置在电子电路板上并且能够检测空气的物理量的空气物理量感测元件。 壳体结构部件形成有连通孔,其允许主空气流动通道的内部和外部彼此连通。 电子电路板具有分离为两个的连通孔,并且设置有空气物理感测元件的一侧的表面面向主空气流动通道侧。
    • 8. 发明授权
    • Thermal type air flow measuring instrument for internal combustion engine
    • 内燃机热式气流测量仪
    • US06189379B1
    • 2001-02-20
    • US09362190
    • 1999-07-28
    • Shinya IgarashiChihiro KobayashiHiroshi HirayamaTakayuki SaitoNobukatsu Arai
    • Shinya IgarashiChihiro KobayashiHiroshi HirayamaTakayuki SaitoNobukatsu Arai
    • G01F500
    • G01F1/684G01F1/6842G01F5/00
    • A thermal type air flow measuring instrument is mounted to a main passage forming an intake air passage of an internal combustion engine and is provided. with an auxiliary passage which includes a heating resistor and a temperature sensing resistor therein and an electronic circuit which is electrically connected to the heating resistor and the temperature sensing resistor. The auxiliary passage is a passage including at least one bent portion composed of a first path substantially parallel to the main passage and a second path having a path different in flow direction from the first path. A member forming the auxiliary passage is fixed in a united form to only a case member for interiorly protecting the electronic circuit, and the case member is fixed to the outer wall surface of the intake air passage. The auxiliary passage structure capable of being handled as a single module united to the case member is effective to the mass production of an air flow control system and the reduction in cost thereof since the structure can be mounted to different kinds of internal combustion engines.
    • 一种热式气流测量仪安装在形成内燃机进气通道的主通道上。 具有在其中包括加热电阻器和温度感测电阻器的辅助通道和电连接到加热电阻器和温度感测电阻器的电子电路。 辅助通道是包括由基本上平行于主通道的第一路径组成的至少一个弯曲部分和具有与第一路径不同的流动方向的路径的通道。 形成辅助通道的部件被联合地固定到仅用于内部保护电子电路的壳体部件,并且壳体部件固定到进气通道的外壁表面。 能够作为与壳体构件联合的单个模块来处理的辅助通道结构对于大量生产空气流量控制系统和降低成本是有效的,因为该结构可以安装到不同种类的内燃机上。
    • 9. 发明授权
    • Thermal type air flow measuring instrument for internal combustion engine
    • 内燃机热式气流测量仪
    • US5939628A
    • 1999-08-17
    • US112144
    • 1998-07-09
    • Shinya IgarashiChihiro KobayashiHiroshi HirayamaTakayuki SaitoNobukatsu Arai
    • Shinya IgarashiChihiro KobayashiHiroshi HirayamaTakayuki SaitoNobukatsu Arai
    • G01F1/684G01F5/00
    • G01F1/684G01F1/6842G01F5/00
    • A thermal type air flow measuring instrument is mounted to a main passage forming an intake air passage of an internal combustion engine and is provided with an auxiliary passage which includes a heating resistor and a temperature sensing resistor therein and an electronic circuit which is electrically connected to the heating resistor and the temperature sensing resistor. The auxiliary passage is a passage including at least one bent portion composed of a first path substantially parallel to the main passage and a second path having a path different in flow direction from the first path. A member forming the auxiliary passage is fixed in a united form to only a case member for interiorly protecting the electronic circuit, and the case member is fixed to the outer wall surface of the intake air passage. The auxiliary passage structure capable of being handled as a single module united to the case member is effective to the mass production of an air flow control system and the reduction in cost thereof since the structure can be mounted to different kinds of internal combustion engines.
    • 一种热式气流测量仪安装在形成内燃机进气通道的主通道上,并在其中设有一个辅助通道,该通道包括一个加热电阻器和一个温度感测电阻器,以及一个电连接到 加热电阻和温度检测电阻。 辅助通道是包括由基本上平行于主通道的第一路径组成的至少一个弯曲部分和具有与第一路径不同的流动方向的路径的通道。 形成辅助通道的部件被联合地固定到仅用于内部保护电子电路的壳体部件,并且壳体部件固定到进气通道的外壁表面。 能够作为与壳体构件联合的单个模块来处理的辅助通道结构对于大量生产空气流量控制系统和降低成本是有效的,因为该结构可以安装到不同种类的内燃机上。