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    • 101. 发明申请
    • MAGNETIC SENSOR AND MANUFACTURING METHOD THEREFOR
    • 磁传感器及其制造方法
    • US20120217962A1
    • 2012-08-30
    • US13466887
    • 2012-05-08
    • Hideto ANDOShinji SUGIHARAFumihito KOIKEKota ASATSUMA
    • Hideto ANDOShinji SUGIHARAFumihito KOIKEKota ASATSUMA
    • G01R33/09B05D3/00B05D5/00
    • G01R33/093B82Y25/00H01L43/08H01L43/12
    • A magnetic sensor having no sensitivity differences between sensitivity axes, and an easy manufacturing method therefor are provided. The method includes a process of forming first stacked films for a magnetoresistive element on a substrate. This element has a sensitivity axis in a certain direction and includes a self-pinned ferromagnetic pinned layer in which first and second ferromagnetic films are antiferromagnetically coupled through an antiparallel coupling layer, a nonmagnetic intermediate layer, and a soft magnetic free layer. The method further includes a process of removing a region of the first stacked films from the substrate. The remaining region of the films includes at least a region to be left to form the element. The method furthermore includes a process of forming second stacked films for a magnetoresistive element, which has a sensitivity axis in a direction different from the certain direction and has the same structure, on the exposed substrate.
    • 提供了灵敏度轴之间没有灵敏度差的磁传感器及其制造方法。 该方法包括在基板上形成用于磁阻元件的第一层叠膜的工艺。 该元件在一定方向上具有灵敏度轴,并且包括自身固定的铁磁性钉扎层,其中第一和第二铁磁性膜通过反平行耦合层,非磁性中间层和软磁性层反铁磁耦合。 该方法还包括从衬底去除第一层叠膜的区域的工艺。 膜的剩余区域至少包括要形成元件的区域。 该方法还包括在暴露的基板上形成具有与某一方向不同的方向并且具有相同结构的灵敏度轴的用于磁阻元件的第二叠层膜的工艺。
    • 102. 发明申请
    • MAGNETIC SENSOR
    • 磁传感器
    • US20120217961A1
    • 2012-08-30
    • US13465954
    • 2012-05-07
    • Hideto ANDOShinji SUGIHARATakafumi NOGUCHI
    • Hideto ANDOShinji SUGIHARATakafumi NOGUCHI
    • G01R33/02
    • G01R33/093B82Y25/00H01L43/08
    • A magnetic sensor includes a plurality of magnetoresistance effect elements and soft magnetic bodies. Each of the magnetoresistance effect elements is formed by stacking a magnetic layer and a non-magnetic layer on a substrate so as to exhibit a magnetoresistance effect. The magnetoresistance effect element is configured such that element portions and electrode layers are alternately disposed. A soft magnetic body is disposed on one and the other sides of each of the element portions in the Y direction, and the soft magnetic bodies are displaced from each other in the X direction. With this arrangement, an external magnetic field applied in the X1 direction is changed into an external magnetic field in the Y direction when passing through the soft magnetic bodies, and the changed external magnetic field flows into the element portions.
    • 磁传感器包括多个磁阻效应元件和软磁体。 通过在基板上层叠磁性层和非磁性层来形成磁阻效应元件,以显现出磁阻效应。 磁电阻效应元件被配置为使得元件部分和电极层交替设置。 在Y方向上的每个元件部分的一侧和另一侧设置软磁体,并且软磁体在X方向上彼此偏移。 通过这样的结构,在X1方向上施加的外部磁场在通过软磁体时变为Y方向的外部磁场,并且变化的外部磁场流入元件部。
    • 103. 发明授权
    • Input device
    • 输入设备
    • US08248382B2
    • 2012-08-21
    • US12401273
    • 2009-03-10
    • Tetsuo Muranaka
    • Tetsuo Muranaka
    • G06F3/041
    • G06F3/044
    • An input device includes a plurality of X scanning electrodes and a common detection electrode that forms capacitances together with the X scanning electrodes. A first driving signal is sequentially supplied to the X scanning electrodes, and a second driving signal is supplied to the X scanning electrodes other than the X scanning electrodes adjacent to the X scanning electrode supplied with the first driving signal. It is possible to detect two X scanning electrodes simultaneously approached by the fingers by detecting a current generated in the detection electrode when the first driving signal P and the second driving signal N are supplied.
    • 输入装置包括与X扫描电极一起形成电容的多个X扫描电极和公共检测电极。 向X扫描电极顺序地提供第一驱动信号,并将第二驱动信号提供给与提供有第一驱动信号的X扫描电极相邻的X扫描电极以外的X扫描电极。 当提供第一驱动信号P和第二驱动信号N时,通过检测在检测电极中产生的电流,可以检测由手指同时接近的两个X扫描电极。
    • 104. 发明授权
    • Data communication system
    • 数据通信系统
    • US08213859B2
    • 2012-07-03
    • US12562092
    • 2009-09-17
    • Hiroyuki Hebiguchi
    • Hiroyuki Hebiguchi
    • H04B5/00
    • H04B13/005
    • A data communication system includes a transmission medium such as a human body for transmitting an information signal via an electric field, a mobile device including a sender for imparting the electric field in which the information signal is modulated to the transmission medium, a stationary device including a receiver for detecting the electric field via the transmission medium and demodulating the electric field into the information signal, a floor cover arranging the stationary device and also being contacted by the transmission medium, in which the floor cover has a communication area contacted by the transmission medium where a data communication is performed between the mobile device and the stationary device, and the communication area is in a state of being electrically floating with respect to the floor cover.
    • 数据通信系统包括:诸如人体的传输介质,用于经由电场发送信息信号;移动设备,包括用于将信息信号调制到其中的电场传送到传输介质的发送器;包括 用于经由传输介质检测电场并将电场解调为信息信号的接收器,布置固定设备并且还与传输介质接触的地板盖,其中地板盖具有与传输接触的通信区域 介质,其中在所述移动设备和所述固定设备之间执行数据通信,并且所述通信区域处于相对于所述地板盖电浮动的状态。
    • 105. 发明授权
    • Substrate bonded MEMS sensor
    • 基板结合MEMS传感器
    • US08207586B2
    • 2012-06-26
    • US12560645
    • 2009-09-16
    • Kiyoshi SatoKiyoshi KobayashiYoshitaka UtoKatsuya KikuiriKazuyoshi TakahashiJun SuzukiHideki GochouToru TakahashiHisanobu Ohkawa
    • Kiyoshi SatoKiyoshi KobayashiYoshitaka UtoKatsuya KikuiriKazuyoshi TakahashiJun SuzukiHideki GochouToru TakahashiHisanobu Ohkawa
    • H01L29/84
    • B81B7/007B81B2207/097
    • A MEMS sensor includes a first substrate; a second substrate; a movable electrode portion and a fixed electrode portion which are arranged between the first substrate and the second substrate, wherein: conductive supporting portions of the movable electrode portion and the fixed electrode portion are, respectively, fixedly secured to a surface of the first substrate via a first insulating layer; a second insulating layer, a lead layer buried into the second insulating layer, and connection electrode portions that are electrically connected to the lead layer to be individually connected to the conductive supporting portions are provided on a surface of the second substrate; a metallic connection layer is formed on the surface of one of the respective conductive supporting portions; one of the respective connection electrode portions and the metallic connection layer are bonded together by eutectic bonding or diffusion bonding; and, at least each of the connection electrode portions has a thickness of about 4 μm or smaller.
    • MEMS传感器包括第一基板; 第二基板; 布置在所述第一基板和所述第二基板之间的可移动电极部分和固定电极部分,其中:所述可动电极部分和所述固定电极部分的导电支撑部分分别固定地固定到所述第一基板的表面, 第一绝缘层; 第二绝缘层,埋入第二绝缘层中的引线层和与导电层电连接以连接到导电支撑部分的连接电极部分设置在第二基板的表面上; 在各个导电支撑部分之一的表面上形成金属连接层; 各个连接电极部分和金属连接层中的一个通过共晶接合或扩散接合结合在一起; 并且至少每个连接电极部分具有约4μm或更小的厚度。
    • 107. 发明授权
    • Magnetic detecting device and method for manufacturing the same
    • 磁检测装置及其制造方法
    • US08198886B2
    • 2012-06-12
    • US12256798
    • 2008-10-23
    • Shinji SugiharaHideto AndoShinichi Sasaki
    • Shinji SugiharaHideto AndoShinichi Sasaki
    • G01R1/20
    • H01L27/22B82Y25/00G01R33/093Y10T29/4902
    • A magnetic detecting device includes a first and a second magnetoresistive element, and a first and a second fixed resistor connected in series to the first and the second magnetoresistive element, respectively. The first and the second magnetoresistive element each include a pinned magnetic layer and a free magnetic layer with a nonmagnetic conductive layer in between. The first and the second magnetoresistive element have the same layer structure except that the nonmagnetic conductive layers have different thicknesses. The thicknesses of the nonmagnetic conductive layers are set so that a positive interlayer coupling magnetic field acts between the free magnetic layer and the pinned magnetic layer of the first magnetoresistive element and a negative interlayer coupling magnetic field acts between the free magnetic layer and the pinned magnetic layer of the second magnetoresistive element. The first and the second fixed resistor have the same layer structure.
    • 磁检测装置包括分别与第一和第二磁阻元件串联连接的第一和第二磁阻元件以及第一和第二固定电阻器。 第一和第二磁阻元件各自包括钉扎磁性层和其间具有非磁性导电层的自由磁性层。 第一和第二磁阻元件具有相同的层结构,除了非磁性导电层具有不同的厚度。 非磁性导电层的厚度被设定为使得正的层间耦合磁场作用在自由磁性层和第一磁阻元件的被钉扎的磁性层之间,负的层间耦合磁场作用在自由磁性层和固定磁体之间 第二磁阻元件的层。 第一和第二固定电阻具有相同的层结构。
    • 109. 发明授权
    • Keyless entry system
    • 无钥匙进入系统
    • US08155827B2
    • 2012-04-10
    • US11668986
    • 2007-01-30
    • Satoshi NakajimaSatoshi HayasakaSuichi Nagaoka
    • Satoshi NakajimaSatoshi HayasakaSuichi Nagaoka
    • B60R25/06
    • B60R25/24
    • An on-vehicle control unit includes a memory storing a first data group having signal strength information of a plurality of request signals transmitted from a plurality of transmitting antennas before and after movement of a movable object when a portable device is placed along an inner surface of a vehicle and a second data group having signal strength information of the plurality of request signals transmitted from the plurality of transmitting antennas before and after the movement of the movable object when the portable device is placed along an outer surface of the vehicle. The on-vehicle control unit determines which of the first and second data groups request signal strength information received from the portable device closely resembles.
    • 一种车载控制单元包括:存储器,存储第一数据组,该第一数据组具有在可移动物体移动之前和之后从多个发射天线发送的多个请求信号的信号强度信息,当便携式装置沿着 车辆和第二数据组,其中当便携式装置沿着车辆的外表面放置时,在可移动物体的移动之前和之后,具有从多个发射天线发送的多个请求信号的信号强度信息。 车载控制单元确定第一和第二数据组中的哪一个请求从便携式设备接收的信号强度信息非常相似。
    • 110. 发明授权
    • Printer and method of adjusting conveying distance of recording sheet
    • 打印机和调整记录纸传送距离的方法
    • US08149257B2
    • 2012-04-03
    • US12722957
    • 2010-03-12
    • Zenko MotokiMinoru SatoHitoshi FunakiKeigo Wakana
    • Zenko MotokiMinoru SatoHitoshi FunakiKeigo Wakana
    • B41J13/00B41J11/00
    • B41J13/02B41J11/42B41J13/0045
    • A printer includes printing unit provided on a conveying path of a recording sheet and sheet feed unit provided on the downstream and upstream sides of the printing unit in a conveying direction of a recording sheet. The printer includes a platen roller, a first sheet feed roller, a second sheet feed roller, a first branch transmission gear group, a second branch transmission gear group, and thrust amount adjusting unit. A tooth trace of one of the gears of each of the first and second branch transmission gear groups has an inclination angle with respect to an axial direction, and the first and second branch transmission gear groups are formed of first and second idler gears including inclined gear portions of which inclined directions of tooth traces are the same as each other.
    • 打印机包括设置在记录纸的输送路径上的打印单元和设置在记录纸张的输送方向上的印刷单元的下游侧和上游侧的供纸单元。 打印机包括压纸辊,第一送纸辊,第二供纸辊,第一分支传动齿轮组,第二分支传动齿轮组和推力量调节单元。 第一和第二分支传动齿轮组中的每一个齿轮的齿迹具有相对于轴向方向的倾斜角,并且第一和第二分支传动齿轮组由包括倾斜齿轮的第一和第二空转齿轮形成 齿迹的倾斜方向的一部分彼此相同。