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    • 1. 发明授权
    • Flow-velocity measuring device
    • 流速测量装置
    • US07284423B2
    • 2007-10-23
    • US11291699
    • 2005-11-30
    • Daisuke KuzuyamaToshimitsu Fujiwara
    • Daisuke KuzuyamaToshimitsu Fujiwara
    • G01F5/00
    • G01F1/6842G01F5/00
    • A flow-velocity measuring device of a simple structure in which the size in the direction of flow of a measured fluid is small and the size of a surface area for blocking the flow of the measured fluid is small includes: an inlet port formed on a surface of a main body and opening toward the upstream of a measured fluid; an introducing channel extending in the main body from the inlet port; a branch channel branched from the introducing channel and connected at a terminal end thereof to a first discharge port opening on the surface of the main body; a discharge channel extending from the introducing channel and connected at a terminal end thereof to a second discharge port opening on the surface of the main body; and a sensor element provided in the branch channel or in a measuring channel further branched from the branch channel and connected at a terminal end thereof to a third discharge port opening on the surface of the main body, and at least any one of the discharge channel, the introducing channel, the branch channel, and the measuring channel comprises a part overlapped with other flow channels in the direction at a right angle with respect to the direction of flow of the introducing channel and the direction of flow of the branch channel at a branch point from the introducing channel to the branch channel.
    • 一种简单结构的流速测量装置,其中测量流体的流动方向上的尺寸小,并且用于阻止测量流体的流动的表面积的尺寸小包括:形成在 主体的表面并向测量流体的上游开口; 引导通道,其从所述入口延伸到所述主体中; 从所述引入通道分支并在其末端连接到所述主体的表面上的第一排出口的分支通道; 排出通道,其从所述引入通道延伸并在其末端连接到所述主体的表面上的第二排出口; 以及传感器元件,其设置在所述分支通道或测量通道中,所述测量通道从所述分支通道进一步分支并且在其终端处连接到所述主体的表面上的第三排出口,并且所述排出通道 引入通道,分支通道和测量通道包括与其它流动通道相对于引入通道的流动方向成直角的方向与在其中的分支通道的流动方向重叠的部分 从引入通道到分支通道的分支点。
    • 2. 发明申请
    • Flow-velocity measuring device
    • 流速测量装置
    • US20060137444A1
    • 2006-06-29
    • US11291699
    • 2005-11-30
    • Daisuke KuzuyamaToshimitsu Fujiwara
    • Daisuke KuzuyamaToshimitsu Fujiwara
    • G01F5/00
    • G01F1/6842G01F5/00
    • A flow-velocity measuring device of a simple structure in which the size in the direction of flow of a measured fluid is small and the size of a surface area for blocking the flow of the measured fluid is small includes: an inlet port formed on a surface of a main body and opening toward the upstream of a measured fluid; an introducing channel extending in the main body from the inlet port; a branch channel branched from the introducing channel and connected at a terminal end thereof to a first discharge port opening on the surface of the main body; a discharge channel extending from the introducing channel and connected at a terminal end thereof to a second discharge port opening on the surface of the main body; and a sensor element provided in the branch channel or in a measuring channel further branched from the branch channel and connected at a terminal end thereof to a third discharge port opening on the surface of the main body, and at least any one of the discharge channel, the introducing channel, the branch channel, and the measuring channel comprises a part overlapped with other flow channels in the direction at a right angle with respect to the direction of flow of the introducing channel and the direction of flow of the branch channel at a branch point from the introducing channel to the branch channel.
    • 一种简单结构的流速测量装置,其中测量流体的流动方向上的尺寸小,并且用于阻止测量流体的流动的表面积的尺寸小包括:形成在 主体的表面并向测量流体的上游开口; 引导通道,其从所述入口延伸到所述主体中; 从所述引入通道分支并在其末端连接到所述主体的表面上的第一排出口的分支通道; 排出通道,其从所述引入通道延伸并在其末端连接到所述主体的表面上的第二排出口; 以及传感器元件,其设置在所述分支通道或测量通道中,所述测量通道从所述分支通道进一步分支并且在其终端处连接到所述主体的表面上的第三排出口,并且所述排出通道 引入通道,分支通道和测量通道包括与其它流动通道相对于引入通道的流动方向成直角的方向与在其中的分支通道的流动方向重叠的部分 从引入通道到分支通道的分支点。
    • 5. 发明授权
    • Thickness detecting sensor
    • 厚度检测传感器
    • US07019539B2
    • 2006-03-28
    • US10843002
    • 2004-05-11
    • Toshimitsu FujiwaraHideyuki BingoMasahiro Kinoshita
    • Toshimitsu FujiwaraHideyuki BingoMasahiro Kinoshita
    • G01R27/26
    • G01B7/08
    • A thickness detecting sensor can widely set a dynamic range for detecting the thickness of a medium, and exactly detect the thickness of the medium even when the dynamic range is widely set in this way. Therefore, the thickness detecting sensor has a fixing electrode and a movable electrode arranged so as to be opposed to each other, a plunger for changing the gap between the electrodes by coming in contact with the medium, and a CR oscillating circuit and an FV converting circuit for converting electrostatic capacity stored between the electrodes into an electric signal for detecting the thickness of the medium. The rear end portion of the plunger comes in contact with the electrode face of the gap side of the movable electrode. The movable electrode is displaced in the direction separated from the fixing electrode correspondingly to the thickness of the medium.
    • 厚度检测传感器可以广泛地设置用于检测介质厚度的动态范围,并且即使当以这种方式广泛设置动态范围时,也能精确地检测介质的厚度。 因此,厚度检测传感器具有固定电极和布置成彼此相对的可动电极,用于通过与介质接触来改变电极之间的间隙的柱塞,以及CR振荡电路和FV转换 用于将存储在电极之间的静电电容转换成用于检测介质厚度的电信号的电路。 柱塞的后端部与可动电极的间隙侧的电极面接触。 对应于介质的厚度,可移动电极沿着与固定电极分离的方向移位。
    • 9. 发明授权
    • Flow velocity measuring device
    • 流速测量装置
    • US07062963B2
    • 2006-06-20
    • US11067149
    • 2005-02-25
    • Toshimitsu FujiwaraSatoshi NozoeNaotsugu Ueda
    • Toshimitsu FujiwaraSatoshi NozoeNaotsugu Ueda
    • G01F1/68
    • G01F5/00G01F1/6842G01F15/12G01P5/10G01P5/12
    • A flow velocity measuring device is able to conduct a fluid to a sensor element after removal of dust and dirt contained in the fluid to accurately measure the flow velocity of the fluid even when the fluid is low in flow velocity and the device is mounted in any direction. A flow passage is formed by internal spaces, which have curved wall surfaces, introduction passages connected to the internal spaces at one ends of the wall surfaces tangentially to the wall surfaces, discharge passages connected to the internal spaces at the other ends of the wall surfaces tangentially to the wall surfaces, and branch discharge passages connected to the internal spaces at substantially right angle to a direction, in which the wall surfaces are curved, and a sensor element is arranged in the branch passage or a flow passage connected to the branch passage.
    • 流速测量装置能够在除去流体中包含的灰尘和污物之后将流体传导到传感器元件,以便精确地测量流体的流速,即使流体的流速低,并且装置安装在任何 方向。 流动通道由具有弯曲壁表面的内部空间形成,引入通道连接到与壁表面相切的壁表面的一端处的内部空间,连接到壁表面的另一端的内部空间的排出通道 与壁面切线,以及连接到内部空间的分支排出通道,其与壁表面弯曲的方向基本成直角,并且传感器元件布置在分支通道中或流动通道中,该流动通道连接到分支通道 。