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    • 12. 发明申请
    • SENSOR MODULE
    • 传感器模块
    • US20120181641A1
    • 2012-07-19
    • US13348904
    • 2012-01-12
    • Satoru HIRAMOTOYoshiyuki KonoAkitoshi MizutaniTakamitsu KubotaKoichiro Matsumoto
    • Satoru HIRAMOTOYoshiyuki KonoAkitoshi MizutaniTakamitsu KubotaKoichiro Matsumoto
    • H01L29/82
    • F02D9/107F02D2009/0213
    • A sensor module includes a sensor, a module cover, and a wiring unit. The cover holds the sensor and includes a connector configured to make a connection with an external device. The wiring unit is held by the cover and is arranged from the connector to the sensor. The wiring unit includes a connecting member extending from the connector to a central region of the cover in its width direction and a wiring member extending from the central region of the cover in its width direction to a vicinity of the sensor. The cover and the connecting member are integrally formed from a mold material having insulation properties. The connecting member includes a first connecting terminal exposed at the central region of the cover. The wiring member includes a second connecting terminal conductively joined to the first connecting terminal.
    • 传感器模块包括传感器,模块盖和布线单元。 盖保持传感器并且包括被配置为与外部设备连接的连接器。 接线单元由盖子保持,并从连接器设置到传感器。 布线单元包括从连接器沿其宽度方向延伸到盖的中心区域的连接构件和从盖的中心区域沿宽度方向延伸到传感器附近的布线构件。 盖和连接构件由具有绝缘性的模具材料一体地形成。 连接构件包括在盖的中心区域露出的第一连接端子。 布线构件包括与第一连接端子导电接合的第二连接端子。
    • 14. 发明申请
    • ROTATIONAL ANGLE DETECTING DEVICE
    • 旋转角度检测装置
    • US20110238367A1
    • 2011-09-29
    • US13072223
    • 2011-03-25
    • Koichiro MATSUMOTOYoshiyuki KONO
    • Koichiro MATSUMOTOYoshiyuki KONO
    • G06F19/00
    • G01D5/145G01D5/24495
    • A rotational angle detecting device includes a magnetic member, a magnetic sensor and a processing unit. The magnetic sensor includes a sensor element disposed to rotate relative to the magnetic member in accordance with a rotation of a rotating object and outputting signals according to a change in a magnetic field caused as rotating relative to the magnetic member. The processing unit is capable of processing output values of the sensor element. The processing unit acquires the output value at every angle of rotation of the rotating object, estimates a waveform for one cycle of the signals as an estimation waveform from the acquired output values, and normalizes an amplitude of the estimation waveform. Further, the processing unit calculates a rotational angle of the rotating object by a trigonometric function operation based on the output value and the normalized amplitude.
    • 旋转角度检测装置包括磁性构件,磁性传感器和处理单元。 磁传感器包括传感器元件,其被设置为根据旋转物体的旋转相对于磁性构件旋转,并且根据相对于磁性构件旋转引起的磁场的变化输出信号。 处理单元能够处理传感器元件的输出值。 处理单元在旋转对象的每个旋转角度获取输出值,从所获取的输出值中估计作为估计波形的信号的一个周期的波形,并且对估计波形的幅度进行归一化。 此外,处理单元基于输出值和归一化幅度,通过三角函数运算来计算旋转物体的旋转角度。
    • 16. 发明授权
    • Electromechanical conversion device
    • 机电转换装置
    • US07355391B2
    • 2008-04-08
    • US11524310
    • 2006-09-21
    • Tatsuya KitanakaKoichiro MatsumotoTakashi Kawashima
    • Tatsuya KitanakaKoichiro MatsumotoTakashi Kawashima
    • G01B7/30
    • G01D5/145G01D3/028
    • An electromechanical conversion device includes an electromechanical conversion unit and a cable, which has a signal wire and a ground wire for grounding the electromechanical conversion unit. The electromechanical conversion unit performs a conversion between a relative movement with respect to a magnetic field generation unit and electrical signals, based on a magnetic field generated by the magnetic field generation unit. The signal wire is connected with the electromechanical conversion unit to transfer the electrical signals, and has a first branch portion and a second branch portion which extend substantially parallel to the ground wire and are respectively arranged at two opposite sides of the ground wire. A distance between the first branch portion and the ground wire is substantially equal to that between the second branch portion and the ground wire.
    • 机电转换装置包括机电转换单元和电缆,其具有用于使机电转换单元接地的信号线和接地线。 机电转换单元基于由磁场产生单元产生的磁场,执行相对于磁场产生单元的相对运动和电信号之间的转换。 信号线与机电转换单元连接以传送电信号,并且具有基本上平行于接地线延伸的第一分支部分和第二分支部分,并且分别布置在接地线的两个相对侧。 第一分支部分和接地线之间的距离基本上等于第二分支部分和接地线之间的距离。
    • 17. 发明申请
    • STROKE AMOUNT DETECTING DEVICE
    • 检测量检测设备
    • US20120235673A1
    • 2012-09-20
    • US13419731
    • 2012-03-14
    • Koichiro MatsumotoAkitoshi MizutaniKenji Takeda
    • Koichiro MatsumotoAkitoshi MizutaniKenji Takeda
    • G01B7/14
    • G01D3/028G01D5/145
    • A stroke amount detecting device includes a magnetism detecting unit, a first magnetic field generating unit and a second magnetic field generating unit. A magnetic pole of the first generating unit and a magnetic pole of the second generating unit, which are opposed to each other, have different polarities. A distance between a gap end of the first generating unit and a gap end of the second generating unit, which are located on a farther side of a rectilinear axis, is smaller than a distance between an open end of the first generating unit and an open end of the second generating unit, which are located on a closer side of the rectilinear axis. The magnetism detecting unit detects a stroke amount of an object based on a magnetic flux generated between the open end of the first generating unit and the open end of the second generating unit.
    • 行程量检测装置包括磁检测单元,第一磁场产生单元和第二磁场产生单元。 第一生成单元的磁极和彼此相对的第二生成单元的磁极具有不同的极性。 第一生成单元的间隙端与第二生成单元的位于直线轴的更远侧的间隙端之间的距离小于第一生成单元的开口端与开口部之间的距离 第二生成单元的端部位于直线轴的更靠近的一侧。 磁检测单元基于在第一生成单元的开口端和第二生成单元的开口端之间产生的磁通量来检测物体的行程量。
    • 19. 发明申请
    • STROKE SENSOR AND ROTATION ANGLE SENSOR
    • STROKE传感器和旋转角度传感器
    • US20100188074A1
    • 2010-07-29
    • US12694628
    • 2010-01-27
    • Koichiro MatsumotoTetsuya AokiTakashi KawashimaTatsuya KitanakaYoshiyuki Kono
    • Koichiro MatsumotoTetsuya AokiTakashi KawashimaTatsuya KitanakaYoshiyuki Kono
    • G01B7/30
    • G01D5/145F02D41/009
    • A stroke sensor has two magnets, which are magnetized in a cross-section direction and are displaced in a longitudinal direction, and two magnetism sensitive sections arranged parallel to the longitudinal direction. The magnets have circular-arc-shaped swelling end edges respectively and are magnetized such that the swelling end edges have opposite polarities. Thus, a distribution of a magnetic flux density on an arrangement axis substantially coincides with a sine curve. The magnetic flux having such the distribution is displaced in the longitudinal direction together with the magnets. The magnetism sensitive sections are arranged on the arrangement axis to be distant from each other by a distance of one fourth of a cycle of the sine curve. Thus, the stroke sensor that is not affected by temperature and that has high sensing accuracy can be provided.
    • 行程传感器具有两个在横截面方向被磁化并沿纵向位移的磁体和两个平行于纵向排列的磁感应部分。 磁体分别具有圆弧形的膨胀端边缘并被磁化,使得膨胀端边缘具有相反的极性。 因此,布置轴上的磁通密度的分布基本上与正弦曲线一致。 具有这种分布的磁通与磁体一起在纵向方向上移位。 磁感应部分布置在布置轴上,以相对于正弦曲线的周期的四分之一的距离彼此远离。 因此,可以提供不受温度影响并且具有高感测精度的行程传感器。
    • 20. 发明申请
    • PERMANENT MAGNET TYPE POSITION SENSOR
    • 永磁体类型位置传感器
    • US20090033315A1
    • 2009-02-05
    • US12181783
    • 2008-07-29
    • Takashi KawashimaKimio UchidaYukinobu KajitaTatsuya KitanakaKoichiro MatsumotoYoshiyuki KonoHisataka OkadoHiroyuki Shintani
    • Takashi KawashimaKimio UchidaYukinobu KajitaTatsuya KitanakaKoichiro MatsumotoYoshiyuki KonoHisataka OkadoHiroyuki Shintani
    • G01B7/00
    • G01D5/145
    • A position sensor includes a longitudinally extending permanent magnet member at least two longitudinally extending arc-shaped projecting elements respectively projecting from the opposite ends toward the inside space to confront each other at a distance and a pair of compatible main magnetic sensors disposed in the inside space along the longitudinal axis at an interval so as to generate a pair of output signals when the permanent magnet member shifts along the longitudinal axis. The opposite ends of the permanent magnet member are configured to surround a common inside space and polarized to have opposite magnetic poles so as to provide in the inside space a magnetic field whose magnetic flux density becomes a maximum at a longitudinal center of the inside space and gradually becomes smaller as a position of the inside space shifts from the longitudinal center along a longitudinal axis of the permanent magnet members. The arc-shaped projecting elements are arranged so that the magnetic flux density and each of the output signals can be expressed by a cosine of a shift value from the longitudinal center, and the interval is ¼ of the cycle of the cosine.
    • 位置传感器包括纵向延伸的永磁体构件,其至少两个纵向延伸的弧形突起元件,其分别从相对端向内部空间突出以相隔一定距离,并且一对相容的主磁传感器设置在内部空间 沿着纵轴以一定的间隔,以便当永磁体部件沿着纵向轴线移动时产生一对输出信号。 永久磁铁构件的相对端构成为包围共同的内部空间并且被极化以具有相反的磁极,以便在内部空间中提供在内部空间的纵向中心处的磁通密度变为最大的磁场,以及 随着内部空间的位置沿纵向中心沿永久磁铁构件的纵向轴线偏移,逐渐变小。 弧形突出元件被布置成使得磁通密度和每个输出信号可以由来自纵向中心的偏移值的余弦来表示,并且间隔是余弦周期的1/4。