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    • 1. 发明授权
    • Sealing structure and a flowmeter using the same
    • 密封结构和使用其的流量计
    • US07434460B2
    • 2008-10-14
    • US11318553
    • 2005-12-28
    • Hideki MatsuuraNoboru KitaharaYasushi Goka
    • Hideki MatsuuraNoboru KitaharaYasushi Goka
    • G01F1/68G01F1/684
    • G01F1/684G01F5/00G01F15/18
    • A substrate includes a first surface portion, which covers a heat receiving portion of a radiation member together with a resinous member. The substrate further includes a second surface portion, which is on the outer periphery of the first surface portion. The substrate makes contact with the resinous member via the second surface portion. The first surface portion and the heat receiving portion have a first contact boundary therebetween. The second surface portion and the resinous member have a second contact boundary that surrounds the first contact boundary. The second contact boundary is sealed using a sealing member. The sealing member is restricted from flowing into a boundary between the first contact boundary and the second contact boundary.
    • 衬底包括第一表面部分,其与树脂构件一起覆盖辐射构件的热接收部分。 基板还包括在第一表面部分的外周上的第二表面部分。 基板经由第二表面部分与树脂构件接触。 第一表面部分和热接收部分之间具有第一接触边界。 第二表面部分和树脂构件具有围绕第一接触边界的第二接触边界。 第二接触边界使用密封件密封。 密封构件被限制流入第一接触边界和第二接触边界之间的边界。
    • 2. 发明申请
    • Air flow rate measuring device having sensing unit
    • 空气流量测量装置具有感测单元
    • US20050241389A1
    • 2005-11-03
    • US11108753
    • 2005-04-19
    • Noboru KitaharaHideki MatsuuraYasushi Goka
    • Noboru KitaharaHideki MatsuuraYasushi Goka
    • G01F1/68G01F1/684G01F5/00
    • G01F5/00G01F1/6842
    • A sensing unit is constructed of a heater element and a temperature sensing element. The sensing unit is arranged in a region, in which measurement air, which flows into the inflow passage through the bypass inlet, bends at the substantially right-angle and contracts in flow. Alternatively, the sensing unit is arranged in a region immediately after an area, in which the measurement air flowing through the bypass inlet bends at the substantially right-angle. The lengthwise directions of the heater element and the temperature sensing element are respectively arranged to be in parallel with both thickness-wise side faces of the measurement body. Thereby, even when a flow rate of measurement air changes, an influence due to the change can be restricted from being exerted. Therefore, the maximum flow rate can be measured within the lengthwise range of the heater element from a low flow rate to a high flow rate.
    • 感测单元由加热器元件和温度感测元件构成。 感测单元布置在区域中,其中流经旁路入口流入流入通道的测量空气以大致直角弯曲并且流动收缩。 或者,感测单元布置在紧邻其中流过旁路入口的测量空气以大致直角弯曲的区域之后的区域中。 加热器元件和感温元件的长度方向分别设置成与测量体的两个厚度方向的侧面平行。 因此,即使当测量空气的流量变化时,也可以限制由于变化引起的影响。 因此,可以在从低流量到高流量的加热器元件的纵向范围内测量最大流量。
    • 3. 发明授权
    • Air flow rate measuring device having sensing unit
    • 空气流量测量装置具有感测单元
    • US07228734B2
    • 2007-06-12
    • US11108753
    • 2005-04-19
    • Noboru KitaharaHideki MatsuuraYasushi Goka
    • Noboru KitaharaHideki MatsuuraYasushi Goka
    • G01F1/68
    • G01F5/00G01F1/6842
    • A sensing unit is constructed of a heater element and a temperature sensing element. The sensing unit is arranged in a region, in which measurement air, which flows into the inflow passage through the bypass inlet, bends at the substantially right-angle and contracts in flow. Alternatively, the sensing unit is arranged in a region immediately after an area, in which the measurement air flowing through the bypass inlet bends at the substantially right-angle. The lengthwise directions of the heater element and the temperature sensing element are respectively arranged to be in parallel with both thickness-wise side faces of the measurement body. Thereby, even when a flow rate of measurement air changes, an influence due to the change can be restricted from being exerted. Therefore, the maximum flow rate can be measured within the lengthwise range of the heater element from a low flow rate to a high flow rate.
    • 感测单元由加热器元件和温度感测元件构成。 感测单元布置在区域中,其中流经旁路入口流入流入通道的测量空气以大致直角弯曲并且流动收缩。 或者,感测单元布置在紧邻其中流过旁路入口的测量空气以大致直角弯曲的区域之后的区域中。 加热器元件和感温元件的长度方向分别设置成与测量体的两个厚度方向的侧面平行。 因此,即使当测量空气的流量变化时,也可以限制由于变化引起的影响。 因此,可以在从低流量到高流量的加热器元件的纵向范围内测量最大流量。
    • 4. 发明申请
    • Airflow meter
    • 气流计
    • US20050241386A1
    • 2005-11-03
    • US11115352
    • 2005-04-27
    • Yasushi GokaHideki MatsuuraNoboru Kitahara
    • Yasushi GokaHideki MatsuuraNoboru Kitahara
    • G01F1/68G01F1/684G01F1/688G01F5/00
    • G01F1/6842G01F5/00
    • An airflow meter has a bypass passage disposed in an air passage and a sensing portion disposed in the bypass passage to detect an airflow amount. The bypass passage is provided with a restriction portion to gradually decrease a passage width of the bypass passage in an airflow direction in the bypass passage. The restriction portion includes a first restriction portion and the second restriction portion disposed at an immediately downstream side of a narrowest portion of the first restriction portion. The first restriction portion gradually decreases the passage width in the airflow direction. The second restriction portion increases the passage width than the passage width at the narrowest portion in a stepped manner. The sensing portion is located in a bound in which the restriction portion is disposed.
    • 气流计具有布置在空气通道中的旁通通道和设置在旁路通道中的检测部分以检测气流量。 旁路通道设置有限制部,以在旁通通路中沿着气流方向逐渐减小旁通通路的通路宽度。 限制部分包括第一限制部分和设置在第一限制部分的最窄部分的紧下游侧的第二限制部分。 第一限制部逐渐减小风向的通过宽度。 第二限制部分使通道宽度以阶梯方式在最窄部分处的通道宽度增加。 感测部位于设置有限制部的边界。
    • 5. 发明申请
    • Sealing structure and apparatus using the same
    • 密封结构和使用其的设备
    • US20080008224A1
    • 2008-01-10
    • US11318553
    • 2005-12-28
    • Hideki MatsuuraNoboru KitaharaYasushi Goka
    • Hideki MatsuuraNoboru KitaharaYasushi Goka
    • G01K17/00
    • G01F1/684G01F5/00G01F15/18
    • A substrate includes a first surface portion, which covers a heat receiving portion of a radiation member together with a resinous member. The substrate further includes a second surface portion, which is on the outer periphery of the first surface portion. The substrate makes contact with the resinous member via the second surface portion. The first surface portion and the heat receiving portion have a first contact boundary therebetween. The second surface portion and the resinous member have a second contact boundary that surrounds the first contact boundary. The second contact boundary is sealed using a sealing member. The sealing member is restricted from flowing into a boundary between the first contact boundary and the second contact boundary.
    • 衬底包括第一表面部分,其与树脂构件一起覆盖辐射构件的受热部分。 基板还包括在第一表面部分的外周上的第二表面部分。 基板经由第二表面部分与树脂构件接触。 第一表面部分和热接收部分之间具有第一接触边界。 第二表面部分和树脂构件具有围绕第一接触边界的第二接触边界。 第二接触边界使用密封件密封。 密封构件被限制流入第一接触边界和第二接触边界之间的边界。
    • 6. 发明授权
    • Airflow meter
    • 气流计
    • US07043978B2
    • 2006-05-16
    • US11115352
    • 2005-04-27
    • Yasushi GokaHideki MatsuuraNoboru Kitahara
    • Yasushi GokaHideki MatsuuraNoboru Kitahara
    • G01F1/68
    • G01F1/6842G01F5/00
    • An airflow meter has a bypass passage disposed in an air passage and a sensing portion disposed in the bypass passage to detect an airflow amount. The bypass passage is provided with a restriction portion to gradually decrease a passage width of the bypass passage in an airflow direction in the bypass passage. The restriction portion includes a first restriction portion and the second restriction portion disposed at an immediately downstream side of a narrowest portion of the first restriction portion. The first restriction portion gradually decreases the passage width in the airflow direction. The second restriction portion increases the passage width than the passage width at the narrowest portion in a stepped manner. The sensing portion is located in a bound in which the restriction portion is disposed.
    • 气流计具有布置在空气通道中的旁通通道和设置在旁路通道中的检测部分以检测气流量。 旁路通道设置有限制部,以在旁通通路中沿着气流方向逐渐减小旁通通路的通路宽度。 限制部分包括第一限制部分和设置在第一限制部分的最窄部分的紧下游侧的第二限制部分。 第一限制部逐渐减小风向的通过宽度。 第二限制部分使通道宽度以阶梯方式在最窄部分处的通道宽度增加。 感测部位于设置有限制部的边界。
    • 7. 发明授权
    • Flow measuring device
    • 流量测量装置
    • US08756989B2
    • 2014-06-24
    • US13281678
    • 2011-10-26
    • Yasushi GokaTakashi EnomotoNoboru Kitahara
    • Yasushi GokaTakashi EnomotoNoboru Kitahara
    • G01F1/68
    • G01F1/6842G01F15/14
    • A flow measuring device includes a housing, a support, and a flow measurement element. The housing defines a passage therein and includes a passage narrowing part, which reduces a cross-sectional area of the passage, in a predetermined part of the passage. The support has a platy shape and is disposed along a flow direction of fluid flowing in the passage. The flow measurement element is located inside the passage narrowing part and is disposed on a surface of the support. The flow measurement element detects a flow rate of fluid flowing in the passage. The passage narrowing part has an inner wall surface that gradually reduces a width of the passage from a center side to both end sides of the passage in a height direction of the passage, which is perpendicular to a direction of the width of the passage.
    • 流量测量装置包括壳体,支撑件和流量测量元件。 壳体在其中限定通道,并且包括在通道的预定部分中减小通道的横截面面积的通道变窄部分。 支撑体具有板状,并且沿着在通道中流动的流体的流动方向设置。 流量测量元件位于通道变窄部分的内部并且设置在支撑体的表面上。 流量测量元件检测在通道中流动的流体的流量。 通道狭窄部具有内壁面,该内壁面在与通道的宽度方向垂直的通道的高度方向上逐渐减小通道从通道的中心侧到两端侧的宽度。
    • 8. 发明申请
    • FLOW MEASURING DEVICE
    • 流量测量装置
    • US20120103086A1
    • 2012-05-03
    • US13281678
    • 2011-10-26
    • Yasushi GOKATakashi EnomotoNoboru Kitahara
    • Yasushi GOKATakashi EnomotoNoboru Kitahara
    • G01F1/68G01F15/14
    • G01F1/6842G01F15/14
    • A flow measuring device includes a housing, a support, and a flow measurement element. The housing defines a passage therein and includes a passage narrowing part, which reduces a cross-sectional area of the passage, in a predetermined part of the passage. The support has a platy shape and is disposed along a flow direction of fluid flowing in the passage. The flow measurement element is located inside the passage narrowing part and is disposed on a surface of the support. The flow measurement element detects a flow rate of fluid flowing in the passage. The passage narrowing part has an inner wall surface that gradually reduces a width of the passage from a center side to both end sides of the passage in a height direction of the passage, which is perpendicular to a direction of the width of the passage.
    • 流量测量装置包括壳体,支撑件和流量测量元件。 壳体在其中限定通道,并且包括在通道的预定部分中减小通道的横截面面积的通道变窄部分。 支撑体具有板状,并且沿着在通道中流动的流体的流动方向设置。 流量测量元件位于通道变窄部分的内部并且设置在支撑体的表面上。 流量测量元件检测在通道中流动的流体的流量。 通道狭窄部具有内壁面,该内壁面在与通道的宽度方向垂直的通道的高度方向上逐渐减小通道从通道的中心侧到两端侧的宽度。
    • 9. 发明申请
    • Flow detecting device and intake system having the same
    • 流量检测装置和进气系统具有相同的功能
    • US20070056363A1
    • 2007-03-15
    • US11521602
    • 2006-09-15
    • Takao BanNoboru KitaharaYasushi GokaYasushi KounoGunnar Nees
    • Takao BanNoboru KitaharaYasushi GokaYasushi KounoGunnar Nees
    • G01M19/00G01F1/68
    • G01F1/6842F02D41/187
    • A flow detecting device is provided to a fluid passage through which a main flow of fluid passes. A sensor body has a bypass passage through which a bypass flow passes from the main flow. The bypass passage has a bent portion, which is located midway through the bypass passage, and an outflow passage, which is located downstream of the bent portion. The flow direction of the bypass flow changes at the bent portion toward the outflow passage through the bypass passage. A heating element is arranged in the bypass passage. The heating element generates heat by being supplied with electricity for detecting a flow amount of fluid. The sensor body has a side surface defining an opening through which dynamic pressure caused by counterflow is released to an outside of the outflow passage when fluid causes counterflow in the fluid passage in a direction opposite to a flow direction of the main flow.
    • 流体检测装置设置在主流体通过的流体通道中。 传感器主体具有旁路通道,旁路通过该通道从主流流动。 旁通通道具有位于旁通通道中途的弯曲部分和位于弯曲部分下游的流出通道。 旁通流的流动方向在弯曲部分处朝着通过旁通通道的流出通道改变。 旁通通道中设有加热元件。 加热元件通过供给用于检测流体流量的电力而产生热量。 传感器主体具有限定开口的侧表面,当流体在与主流动方向相反的方向上导致流体流动逆流时,逆流引起的动压被释放到流出通道的外部。
    • 10. 发明授权
    • Intake system having a flow detecting device including a pressure receiving surface at the outflow passage of the bypass
    • 进气系统具有流量检测装置,该流量检测装置包括在旁路的流出通道处的压力接收表面
    • US07437925B2
    • 2008-10-21
    • US11521602
    • 2006-09-15
    • Takao BanNoboru KitaharaYasushi GokaYasushi KounoGunnar Nees
    • Takao BanNoboru KitaharaYasushi GokaYasushi KounoGunnar Nees
    • G01F1/68
    • G01F1/6842F02D41/187
    • A flow detecting device is provided to a fluid passage through which a main flow of fluid passes. A sensor body has a bypass passage through which a bypass flow passes from the main flow. The bypass passage has a bent portion, which is located midway through the bypass passage, and an outflow passage, which is located downstream of the bent portion. The flow direction of the bypass flow changes at the bent portion toward the outflow passage through the bypass passage. A heating element is arranged in the bypass passage. The heating element generates heat by being supplied with electricity for detecting a flow amount of fluid. The sensor body has a side surface defining an opening through which dynamic pressure caused by counterflow is released to an outside of the outflow passage when fluid causes counterflow in the fluid passage in a direction opposite to a flow direction of the main flow.
    • 流体检测装置设置在主流体通过的流体通道中。 传感器主体具有旁路通道,旁路通过该通道从主流流动。 旁通通道具有位于旁通通道中途的弯曲部分和位于弯曲部分下游的流出通道。 旁通流的流动方向在弯曲部分处朝着通过旁通通道的流出通道改变。 旁通通道中设有加热元件。 加热元件通过供给用于检测流体流量的电力而产生热量。 传感器主体具有限定开口的侧表面,当流体在与主流动方向相反的方向上导致流体流动逆流时,逆流引起的动压被释放到流出通道的外部。