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    • 1. 发明授权
    • Magneto-resistance effect device and magnetic head
    • 磁阻效应器和磁头
    • US5946168A
    • 1999-08-31
    • US823899
    • 1997-03-25
    • Minoru HashimotoNobuhiro SugawaraToshihiko YaoiHiroshi Kano
    • Minoru HashimotoNobuhiro SugawaraToshihiko YaoiHiroshi Kano
    • G01R33/09G11B5/39H01L43/08
    • G11B5/3932G11B5/3903G11B5/398H01L43/08
    • A magneto-resistance effect device (MR device) in which stable magneto-resistance characteristics may be achieved even if a layer of a soft magnetic material is reduced in width. The MR device includes a layer of a soft magnetic material 1, a rear end electrode 4, connected to one longitudinal end of the layer of a soft magnetic material 1, and a forward end electrode 5 connected to the opposite end of the soft magnetic material 1. On both ends of the layer of the soft magnetic material 1 are arranged magnetic domain stabilizers 2, 3 generating a bias magnetic field having a component parallel to the direction of width of the layer of a soft magnetic material 1. If the bias magnetic field sufficient to overcome the longitudinal magnetostatic anisotropy can be impressed, the direction of magnetization D.sub.f of the mono-layer soft magnetic material 1 is oriented in the direction of width. The electrical resistance of the magnetic domain stabilizers 2, 3 is selected to be larger than that of the soft magnetic material 1 for suppressing loss of the sense current i. The MR device 10 can be applied with advantage to a so-called vertical type MR head.
    • 即使软磁性材料层的宽度减小,也可以获得稳定的磁阻特性的磁阻效应器件(MR器件)。 MR装置包括软磁性材料层1,后端电极4,其连接到软磁性材料层1的一个纵向端部,前端电极5连接到软磁性材料的另一端 在软磁性材料层1的两端设置有磁畴稳定器2,3,产生具有与软磁性材料1的层的宽度方向平行的分量的偏置磁场。如果偏磁 可以印制足以克服纵向静磁各向异性的场,单层软磁材料1的磁化方向Df在宽度方向上取向。 选择磁畴稳定器2,3的电阻大于软磁材料1的电阻,以抑制感测电流i的损失。 MR器件10可以有利地应用于所谓的垂直型MR头。
    • 2. 发明申请
    • CONTROL METHOD FOR CONTRACT-TYPE GEL ACTUATOR AND CONTROL DEVICE
    • 合同型凝胶激光器和控制装置的控制方法
    • US20130264972A1
    • 2013-10-10
    • US13993949
    • 2011-10-28
    • Minoru HashimotoMinami Shibagaki
    • Minoru HashimotoMinami Shibagaki
    • H02N2/06B25J9/10
    • H02N2/06B25J9/1095H01L41/0835H01L41/193H02N2/062
    • A method for controlling a displacement in the thickness direction of the contraction-type gel actuator having an effect of contraction in the thickness direction by applying a voltage between an anode and a cathode between which a gel which includes a dielectric polymeric material is interposed, which includes performing feedback control of an applied voltage, with a sampled value of a displacement when the applied voltage acts on the contraction-type gel actuator, according to the following equation (1): E=kp(xd−x)+Ed  (1) In the equation, xd represents a target displacement of the contraction-type gel actuator; Ed represents an applied voltage with respect to the target displacement xd obtained by the linear approximation of the applied voltage and the displacement from a measured result of the displacement in accordance with the applied voltage of the contraction-type gel actuator; and kp represents a proportional gain.
    • 通过在阳极和阴极之间施加电压来控制具有厚度方向收缩效果的收缩型凝胶致动器的厚度方向上的位移的方法,在该阳极和阴极之间插入包含电介质聚合物材料的凝胶, 根据以下等式(1),当所施加的电压作用在收缩型凝胶致动器时,执行施加的电压的反馈控制与位移的采样值:E = kp(xd-x)+ Ed )在等式中,xd表示收缩型凝胶致动器的目标位移; Ed表示相对于根据施加电压的线性近似获得的目标位移xd的施加电压和根据收缩型凝胶致动器的施加电压的位移的测量结果的位移; kp表示比例增益。
    • 3. 发明授权
    • Image forming apparatus and control method of image forming apparatus
    • 图像形成装置及图像形成装置的控制方法
    • US08322609B2
    • 2012-12-04
    • US12624033
    • 2009-11-23
    • Minoru Hashimoto
    • Minoru Hashimoto
    • G06K5/00G06K15/22G06F17/00G06F1/00G03G21/00G03G15/00
    • B41J29/393G03G15/5004G03G15/5091G06F21/31G06F21/34G06F21/81G06F2221/2115
    • An image forming apparatus includes a power supply unit supplying power to a plurality of components, the power supply unit including a first power mode and a second power mode, the second power mode supplying less power than the first power mode, a control unit controlling which power mode the power supply unit uses, an authentication unit performing a user authentication when power is supplied from the power supply unit in the second power mode and an authentication request received in the second power mode, and a sending unit sending a request signal requesting the control unit to shift the power supply unit to the first power mode when the authentication unit succeeds in the user authentication, wherein the control unit controls the power supply unit to shift from the second power mode to the first power mode upon receipt of the request signal.
    • 图像形成装置包括向多个部件供电的电源单元,所述电源单元包括第一功率模式和第二功率模式,所述第二功率模式提供比所述第一功率模式更少的功率;控制单元,其控制哪个 电源单元使用的电源模式,当以第二电源模式从电源单元供电并且以第二电源模式接收到的认证请求执行用户认证的认证单元以及发送请求信号的请求信号的发送单元 控制单元,当所述认证单元成功进行用户认证时,将所述电源单元切换到所述第一功率模式,其中,所述控制单元在接收到所述请求信号时控制所述供电单元从所述第二功率模式转换到所述第一功率模式 。
    • 9. 发明授权
    • Image processing system and method for processing image data using the system
    • 使用该系统处理图像数据的图像处理系统和方法
    • US07508939B2
    • 2009-03-24
    • US10993632
    • 2004-11-18
    • Minoru Hashimoto
    • Minoru Hashimoto
    • H04L9/00H04L15/34
    • H04K1/00H04L9/0894H04L2209/60
    • In an image processing system according to the present invention, a first device encrypts image data generated by reading an image in a document, stores a decryption key for decrypting the image data, and transmits the image data to a data storing device. A second device receives the image data from the data storing device, sends a request for the decryption key to the first device and receives the decryption key, decrypts the image data with the decryption key, and performs print processing on the image data. Thus, users can easily perform print processing without the need to remember authentication and printer information.
    • 在根据本发明的图像处理系统中,第一设备对通过读取文档中的图像生成的图像数据进行加密,存储用于解密图像数据的解密密钥,并将图像数据发送到数据存储装置。 第二装置从数据存储装置接收图像数据,向第一装置发送解密密钥的请求并接收解密密钥,用解密密钥解密图像数据,并对图像数据进行打印处理。 因此,用户可以轻松执行打印处理,而无需记住身份验证和打印机信息。