STRESS SENSOR AND FABRICATION METHOD FOR THE SAME
    81.
    发明申请
    STRESS SENSOR AND FABRICATION METHOD FOR THE SAME 审中-公开
    应力传感器及其制造方法

    公开(公告)号:US20160223413A1

    公开(公告)日:2016-08-04

    申请号:US14984696

    申请日:2015-12-30

    Applicant: ROHM CO., LTD.

    CPC classification number: G01L1/122 G01L1/2206

    Abstract: The stress sensor includes: a magnetic material; a stress applied portion on the magnetic material; a magnet disposed so as to be adjacent to by a magnetic material; a magnetic sensor disposed via the magnetic material so as to be opposed to the stress applied portion, wherein the magnetic sensor detects a magnetic flux emitted from a magnetic domain generated in the magnetic material by a local stress applied to the stress applied portion. The local stress or stress distribution can be detected with a convenience structure, and can obtain a high spatial resolution by using a stress response phenomenon of a single magnetic domain.

    Abstract translation: 该应力传感器包括:磁性材料; 应力施加部分在磁性材料上; 设置成与磁性材料相邻的磁体; 磁传感器,其经由磁性材料设置成与应力施加部分相对,其中,磁传感器通过施加到应力施加部分的局部应力来检测从磁性材料中产生的磁畴发射的磁通量。 局部应力或应力分布可以通过方便的结构进行检测,可以通过使用单个磁畴的应力响应现象获得高空间分辨率。

    ARRANGEMENTS AND METHOD FOR MEASURING A FORCE OR A TORQUE ON A MACHINE ELEMENT
    82.
    发明申请
    ARRANGEMENTS AND METHOD FOR MEASURING A FORCE OR A TORQUE ON A MACHINE ELEMENT 审中-公开
    在机械元件上测量力或扭矩的安装和方法

    公开(公告)号:US20160146679A1

    公开(公告)日:2016-05-26

    申请号:US14898235

    申请日:2014-05-13

    CPC classification number: G01L1/122 G01L1/125 G01L3/102 G01L3/104

    Abstract: The present invention relates to arrangements for measuring a force and/or a torque on a machine element (01) extending in an axis (03) using the inverse magnetostrictive effect. The invention further relates to a method for measuring a force and/or a torque, wherein the force or the torque is acting on a machine element (01) extending along an axis (03). In a first arrangement according to the invention, the machine element (01) has a permanent magnetization (04) that is aligned with the axis (03). The arrangement further includes at least one magnetic field sensor (16, 17, 18, 19) that is designed to measure at least one vectorial component of a magnetic field generated by the permanent magnetization (04) and by the force and/or by the torque.

    Abstract translation: 本发明涉及使用逆磁致伸缩效应测量在轴(03)上延伸的机械元件(01)上的力和/或扭矩的装置。 本发明还涉及一种用于测量力和/或扭矩的方法,其中力或扭矩作用在沿轴线(03)延伸的机械元件(01)上。 在根据本发明的第一布置中,机器元件(01)具有与轴线(03)对准的永久磁化(04)。 该装置还包括至少一个磁场传感器(16,17,18,19),其被设计成测量由永久磁化(04)和力产生的磁场的至少一个矢量分量和/或由 扭矩。

    A SENSOR AND A METHOD OF MAKING THE SAME
    84.
    发明申请
    A SENSOR AND A METHOD OF MAKING THE SAME 有权
    传感器及其制造方法

    公开(公告)号:US20150338291A1

    公开(公告)日:2015-11-26

    申请号:US14653117

    申请日:2013-11-27

    Abstract: The present invention provides a sensor having an improved sensitivity and precision, which is lighter and more flexible than conventional sensors, and a method of making the sensor. The present invention relates to a sensor comprising a resin foam containing a magnetic filler, and a magnetic sensor that detects a magnetic change caused by a deformation of the resin foam, wherein the resin foam is a polyurethane resin foam that comprises a polyisocyanate component, an active hydrogen component, a catalyst and a foam stabilizer, and wherein the resin foam has a hardness change (H1-H60) of 0 to 10 between a JIS-C hardness (H1) in one second after contact with a pressure surface of a hardness tester and a JIS-C hardness (H60) in 60 seconds after the contact.

    Abstract translation: 本发明提供一种具有改进的灵敏度和精度的传感器,其比常规传感器更轻和更灵活,以及制造传感器的方法。 本发明涉及包含含有磁性填料的树脂发泡体的传感器和检测由树脂发泡体的变形引起的磁变化的磁传感器,其中,所述树脂发泡体是包含多异氰酸酯组分的聚氨酯树脂泡沫, 活性氢组分,催化剂和泡沫稳定剂,并且其中所述树脂泡沫体在与硬度的压力表面接触后的一秒钟内的JIS-C硬度(H1)之间具有0至10的硬度变化(H1-H60) 测试仪和JIS-C硬度(H60)。

    STRAIN DETECTING ELEMENT, PRESSURE SENSOR AND MICROPHONE
    85.
    发明申请
    STRAIN DETECTING ELEMENT, PRESSURE SENSOR AND MICROPHONE 审中-公开
    应变检测元件,压力传感器和麦克风

    公开(公告)号:US20150268105A1

    公开(公告)日:2015-09-24

    申请号:US14662857

    申请日:2015-03-19

    CPC classification number: G01L9/16 G01L1/122

    Abstract: According to one embodiment, the pressure sensor includes a supporting portion, a film portion, and a strain detecting element. The film portion is supported by the supporting portion. The strain detecting element is disposed on a part of the film portion. The strain detecting element includes a first magnetic layer, a second magnetic layer, and an intermediate layer. A magnetization direction of the first magnetic layer is variable according to a deformation of the film portion. The first magnetic layer has a first facing surface. The second magnetic layer has a second facing surface. The second facing surface faces the first facing surface. The intermediate layer is disposed between the first magnetic layer and the second magnetic layer. An area of the first facing surface is larger than an area of the second facing surface.

    Abstract translation: 根据一个实施例,压力传感器包括支撑部分,膜部分和应变检测元件。 胶片部分由支撑部分支撑。 应变检测元件设置在膜部分的一部分上。 应变检测元件包括第一磁性层,第二磁性层和中间层。 第一磁性层的磁化方向根据膜部的变形而变化。 第一磁性层具有第一面对表面。 第二磁性层具有第二相对表面。 第二面向表面面向第一面向表面。 中间层设置在第一磁性层和第二磁性层之间。 第一面对面的面积大于第二面对面的面积。

    SENSOR UNIT FOR MEASURING BRAKE FORCE OF PARKING CABLE AND ELECTRONIC PARKING BRAKE WITH THE SAME
    86.
    发明申请
    SENSOR UNIT FOR MEASURING BRAKE FORCE OF PARKING CABLE AND ELECTRONIC PARKING BRAKE WITH THE SAME 有权
    用于测量停车线的制动力传感器单元和电子停车制动器

    公开(公告)号:US20130313055A1

    公开(公告)日:2013-11-28

    申请号:US13676771

    申请日:2012-11-14

    Abstract: Disclosed is a sensor unit having a simple sensor structure to detect intensity of force applied to a parking cable upon braking a vehicle and an electronic parking brake with the same. The disclosed sensor unit includes a sensor housing, in which a Hall IC is installed to sense variation of magnetic force caused by displacement of a magnet, a magnet housing arranged to be movable within the sensor housing, the magnet being installed in the magnet housing, and an elastic member arranged between the magnet housing and the sensor housing, to elastically support the magnet housing. The magnet housing is coupled to a power conversion unit to operate for pulling of the parking cable or release of the pulling.

    Abstract translation: 公开了一种传感器单元,其具有简单的传感器结构,用于检测在制动车辆时施加到停车电缆的力的强度和具有该强度的电子驻车制动器。 所公开的传感器单元包括传感器外壳,其中安装有霍尔IC以感测由磁体的位移引起的磁力的变化;磁体壳体,布置成可在传感器外壳内移动,磁体安装在磁体外壳中, 以及弹性构件,其布置在所述磁体壳体和所述传感器壳体之间,以弹性地支撑所述磁体壳体。 磁体壳体耦合到电力转换单元以用于拉动驻车电缆或释放拉动。

    SENSOR FOR TENSION MEASUREMENT
    87.
    发明申请
    SENSOR FOR TENSION MEASUREMENT 有权
    传感器用于张力测量

    公开(公告)号:US20130238257A1

    公开(公告)日:2013-09-12

    申请号:US13789431

    申请日:2013-03-07

    Abstract: A device includes a first sensor and a second sensor. The first sensor is configured to generate a first signal corresponding to a detected first force. The second sensor is configured to generate a second signal corresponding to a detected second force. The first force and the second force has a substantially common direction. The device includes a processor configured to determine a measure of tension using the first signal and using the second signal. The measure of tension corresponds to displacement of an elongate member.

    Abstract translation: 一种装置包括第一传感器和第二传感器。 第一传感器被配置为产生对应于检测到的第一力的第一信号。 第二传感器被配置为产生对应于检测到的第二力的第二信号。 第一力和第二力具有基本上共同的方向。 该设备包括处理器,其被配置为使用第一信号确定张力的度量并使用第二信号。 张力的量度对应于细长构件的位移。

    Force sensor and motor-driven parking brake apparatus using the same
    88.
    发明授权
    Force sensor and motor-driven parking brake apparatus using the same 有权
    强制传感器和电动驻车制动装置使用它

    公开(公告)号:US07441632B2

    公开(公告)日:2008-10-28

    申请号:US11169950

    申请日:2005-06-30

    CPC classification number: G01L1/04 B60T13/746 F16D2125/582 G01L1/122

    Abstract: A force sensor includes a shaft to which a magnet is fixed, and a case which can reciprocate with respect to the shaft and to which a Hall IC element is fixed. The Hall IC element outputs an output voltage which changes in accordance with relative displacement between the Hall IC element and the magnet. A main spring is interposed between the shaft and the case and elastically deforms in accordance with force produced between the shaft and the case in the reciprocating direction. A sub spring is provided in order to impart a preload such that when the amount of elastic deformation of the main spring is substantially zero, no axial clearance is formed between a flange portion of the shaft and one end portion of the main spring, and no axial clearance is formed between the case and the other end of the main spring.

    Abstract translation: 力传感器包括固定有磁体的轴和能够相对于轴往复运动并且固定有霍尔IC元件的壳体。 霍尔IC元件输出根据霍尔IC元件和磁体之间的相对位移而变化的输出电压。 主弹簧插入在轴和壳体之间,并且根据在轴和壳体之间在往复方向上产生的力弹性变形。 提供副弹簧以赋予预载荷,使得当主弹簧的弹性变形量基本上为零时,在轴的凸缘部分和主弹簧的一个端部之间没有形成轴向间隙,并且没有 在壳体和主弹簧的另一端之间形成轴向间隙。

    Strain gauge sensor system and method
    89.
    发明授权
    Strain gauge sensor system and method 有权
    应变计传感器系统及方法

    公开(公告)号:US07441464B2

    公开(公告)日:2008-10-28

    申请号:US11594624

    申请日:2006-11-08

    CPC classification number: G01L1/122 D07B1/145

    Abstract: A strain gauge sensor system and method for measuring the strain in a member, such as a fiber rope, has a sensor target assembly having a plurality of magnets carried spaced apart by individual gauge lengths along the member. Position and trigger sensor devices are configured spaced apart along side a desired path of travel of the member. When the member is fed along the desired path of travel, the trigger sensor device, in response to magnetically sensing a passing magnet, triggers the position sensor device to read the position of an adjacent passing magnet. The strain in the gauge length is determined from the read position. RFID tags placed on the member between the magnets can be identified by an RF reader to identify a particular gauge length being measured. The system can include a deployment device for feeding the member along the desired path.

    Abstract translation: 用于测量诸如纤维绳的构件中的应变的应变计传感器系统和方法具有传感器目标组件,该传感器目标组件具有多个磁体,沿着构件以单独的测量长度间隔开。 位置和触发传感器装置被构造成沿着构件的所需行进路径的侧面间隔开。 当构件沿着所需的行进路径被馈送时,触发传感器装置响应于磁性地感测通过的磁体,触发位置传感器装置读取相邻通过的磁体的位置。 从读取位置确定标距长度中的应变。 通过RF读取器可以识别放置在磁体之间的构件上的RFID标签,以识别正被测量的特定的测量长度。 该系统可以包括用于沿所需路径馈送构件的展开装置。

    Displacement sensor containing magnetic field sensing element between a pair of biased magnets movable as a unit
    90.
    发明授权
    Displacement sensor containing magnetic field sensing element between a pair of biased magnets movable as a unit 失效
    位移传感器包含可以作为一个单元移动的一对偏置磁体之间的磁场感测元件

    公开(公告)号:US06670805B1

    公开(公告)日:2003-12-30

    申请号:US09961211

    申请日:2001-09-21

    CPC classification number: G01D5/142 G01L1/122

    Abstract: A displacement sensor for providing an indication of the position of a first body relative to a second body, the first body being displaceable relative to the second body in a displacement direction. The sensor is composed of: two magnets that are spaced from one another in the displacement direction to define therebetween a region containing a magnetic field; a magnetic field sensing element mounted in the region; and components for coupling at least one of the magnets to one of the bodies and the magnetic field sensing element to the other of the bodies to produce a relative displacement between the at least one magnet and the magnetic field sensing element in the displacement direction in response to displacement of the first body relative to the second body.

    Abstract translation: 位移传感器,用于提供第一主体相对于第二主体的位置的指示,所述第一主体可相对于所述第二主体在位移方向上移动。 传感器由两个磁体组成,两个磁体在位移方向上彼此间隔开,以便在它们之间限定包含磁场的区域; 安装在该区域中的磁场感测元件; 以及用于将至少一个磁体耦合到所述主体中的一个和所述磁场感测元件到所述主体中的另一个的部件,以响应于在所述位移方向上在所述至少一个磁体和所述磁场感测元件之间产生相对位移 使第一主体相对于第二主体移位。

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