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    • 4. 发明授权
    • Input device and driving device thereof
    • 输入装置及其驱动装置
    • US07242395B2
    • 2007-07-10
    • US10677236
    • 2003-10-03
    • Shigemi KurashimaNobuyoshi ShimizuAkio NakamuraYuriko NishiyamaShinichiro AkiedaTakashi Arita
    • Shigemi KurashimaNobuyoshi ShimizuAkio NakamuraYuriko NishiyamaShinichiro AkiedaTakashi Arita
    • G09G5/00G06K11/06
    • G06F3/046G06F1/1626G06F1/169G06F3/016G06F3/0488
    • An input device and a driving device able to be made thin and secure sufficiently large vibration amplitude are provided. The input device comprises an input panel, a current conducting element for conducting a driving current, and a magnetic field application unit for applying a magnetic field on the current conducting element. Both of the current conducting element and the magnetic field application unit are arranged in the peripheral region of the input panel. The magnetic field applied by the magnetic field application unit is parallel to the input panel and intersects the current conducting element. When the input panel is touched, a driving current is fed into the current conducting element, and a force is imposed on the current conducting element and the magnetic field application unit, making them move. This movement further drives the input panel to vibrate. Consequently, input operations can be recognized by feeling the vibration of the input panel.
    • 可以提供一种输入装置和驱动装置,其能够被制成薄而牢固的足够大的振幅。 输入装置包括输入面板,用于传导驱动电流的导电元件,以及用于在电流传导元件上施加磁场的磁场施加单元。 电流导电元件和磁场施加单元均布置在输入面板的周边区域中。 由磁场施加单元施加的磁场平行于输入面板并与电流传导元件相交。 当触摸输入面板时,驱动电流被馈送到电流传导元件中,并且对导电元件和磁场施加单元施加力,使其移动。 该运动进一步驱动输入面板振动。 因此,可以通过感觉输入面板的振动来识别输入操作。
    • 5. 发明授权
    • Magnetoresistance effect element sensor and an electronic circuit
therefor
    • 磁阻效应元件传感器及其电子电路
    • US5585719A
    • 1996-12-17
    • US205378
    • 1994-03-04
    • Michiko EndoNobuyoshi ShimizuShigemi KurashimaHiroshi KajitaniShigeo TanjiMieko Kawamoto
    • Michiko EndoNobuyoshi ShimizuShigemi KurashimaHiroshi KajitaniShigeo TanjiMieko Kawamoto
    • G01D5/245G01D5/14G01D5/16G01P3/486G01P3/488G01D5/244G01N27/72
    • G01D5/142G01P3/486
    • A magnetic sensor including a magnetoresistance effect element directed to prevent deterioration in the detection sensitivity occurring due to inversion of the magnetization of a plurality of ferromagnetic thin film stripes forming the magnetoresistance effect element with respect to the initial direction during the repeated operations, the magnetic sensor being arranged in such a manner that the magnetoresistance effect element is disposed at a position deviating from the center of the magnetic pole surface of a cylindrical magnet, preferably at a position deviating in a direction perpendicular to a direction in which the magnetic object to be detected is moved. The thus-employed arrangement enables a bias magnetic field to be applied to the magnetoresistance effect element in parallel to the deviation direction. Therefore, the magnetization of all of the plurality of the ferromagnetic thin film stripes forming the magnetoresistance effect element can be caused to face the same direction. As a result, the detection sensitivity can be stabilized because inversion of the magnetization can be prevented even if external magnetic fields are repeatedly applied.
    • 一种磁传感器,包括磁阻效应元件,其用于防止由于在重复操作期间相对于初始方向形成磁阻效应元件的多个铁磁性薄膜条的磁化反转而产生的检测灵敏度的劣化,磁传感器 以这样的方式布置,使得磁阻效应元件设置在偏离圆柱形磁体的磁极表面的中心的位置,优选地在垂直于待检测的磁性物体的方向的方向上偏离的位置 被移动 这样采用的布置使偏置磁场平行于偏转方向施加到磁阻效应元件。 因此,可以使形成磁阻效应元件的多个铁磁性薄膜条的所有磁化面朝向相同的方向。 结果,即使重复施加外部磁场,也可以防止磁化反转,从而可以稳定检测灵敏度。