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    • 5. 发明申请
    • INTAKE AIR MASS FLOW MEASUREMENT DEVICE
    • 摄入空气质量流量测量装置
    • US20080302173A1
    • 2008-12-11
    • US12132888
    • 2008-06-04
    • Takayuki SAITOShinya IgarashiTakayuki YogoChihiro Kobayashi
    • Takayuki SAITOShinya IgarashiTakayuki YogoChihiro Kobayashi
    • G01M15/00
    • 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。
    • 7. 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。
    • 8. 发明申请
    • Sensor Structure
    • 传感器结构
    • US20120198943A1
    • 2012-08-09
    • US13368746
    • 2012-02-08
    • Takayuki SAITOKeiji HanzawaTakayuki Yogo
    • Takayuki SAITOKeiji HanzawaTakayuki Yogo
    • G01F1/34
    • G01L19/0007G01F1/684G01L23/24
    • A sensor structure is provided so that a dynamic pressure effect caused by airflow is avoided as much as possible even when a mass airflow measurement device is integrated with a pressure measurement device, thereby preventing contaminated substances, water droplets, or the like from arriving at a pressure measurement part. In the sensor structure, the mass airflow measurement device is inserted into a sensor insertion port provided in an intake air tube component including an intake air tube and is fixed to the intake air tube, and a pressure measurement device is mounted in a housing structural component of the mass airflow measurement device for measuring the pressure. The pressure measurement device and the inside of the intake air tube are connected by a pressure intake port provided in the housing structural component.
    • 提供了一种传感器结构,即使当质量气流测量装置与压力测量装置集成在一起时也尽可能地避免由气流引起的动态压力效应,从而防止污染物质,水滴等到达 压力测量部件。 在传感器结构中,将质量气流测量装置插入设置在包括进气管的进气管部件中的传感器插入口中,并固定在进气管上,并且将压力测量装置安装在壳体结构部件 用于测量压力的质量气流测量装置。 压力测量装置和进气管的内部通过设置在壳体结构部件中的压力吸入口连接。
    • 10. 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。