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    • 41. 发明申请
    • DAMPER SYSTEM FOR VEHICLE
    • 车辆阻尼器系统
    • US20110298399A1
    • 2011-12-08
    • US13201962
    • 2009-07-08
    • Atsushi OgawaMotohiko HonmaHirofumi Inoue
    • Atsushi OgawaMotohiko HonmaHirofumi Inoue
    • H02K7/06
    • H02P3/12B60G17/06B60G2300/60F16F15/03F16F2232/06
    • A vehicle damper including an electromagnetic damper configured to generate a damping force with respect to a motion of a sprung portion and an unsprung portion toward each other and a motion thereof away from each other and includes: an electromagnetic motor; a motion converting mechanism; and an external circuit which is disposed outside the electromagnetic motor and including a first connection passage and a second connection passage and which includes a battery-device connection circuit for connecting the motor and a battery device and a battery-device-connection-circuit-current adjuster configured to adjust an electric current that flows in the battery-device connection circuit, wherein the damper system further includes an external-circuit controller configured to control an electric current that flows in the electromagnetic motor by controlling the external circuit and configured to control a flow of an electric current between the battery device and the electromagnetic motor by controlling the battery-device-connection-circuit-current adjuster.
    • 一种车辆阻尼器,包括电磁阻尼器,其构造成相对于弹簧部分和簧下部分相对于彼此的运动产生阻尼力,并且其运动彼此远离,并且包括:电磁马达; 运动转换机制; 以及外部电路,其设置在所述电磁电动机的外部并且包括第一连接通道和第二连接通道,并且包括用于连接所述电动机和电池装置的电池装置连接电路以及电池装置连接电路电流 调整器,被配置为调节在电池装置连接电路中流动的电流,其中所述阻尼器系统还包括外部电路控制器,其被配置为通过控制所述外部电路来控制在所述电磁电动机中流动的电流,并且被配置为控制 通过控制电池装置连接电路电流调节器,在电池装置和电磁马达之间流动电流。
    • 45. 发明授权
    • Disk discriminating method and disk discriminating apparatus
    • 盘识别方法和盘识别装置
    • US07646689B2
    • 2010-01-12
    • US11337094
    • 2006-01-23
    • Norio HatanakaRyoichi IshikawaHirofumi Inoue
    • Norio HatanakaRyoichi IshikawaHirofumi Inoue
    • G11B7/00
    • G11B19/12
    • To discriminate a disk in a short time, a calculating part 16 measures an amplitude of one of a focus error signal and a tracking error signal, which are output from a differential signal generating part 15, several times, and outputs the measured amplitudes to a controller 20. The controller 20 compares the input amplitudes with threshold values stored in a memory 21, respectively, and determines whether or not an amplification gain of one of the focus error signal and the tracking error signal is changed. If it is determined that the amplification gain of one of the focus error signal and the tracking error signal is changed, the controller 20 changes the amplification gain of one of the focus error signal and the tracking error signal to an amplification gain represented by one of the threshold values and discriminates the kind of an optical disk based on the changed amplification gain.
    • 为了在短时间内识别盘,计算部16测量从差分信号生成部15输出的多次的聚焦误差信号和跟踪误差信号之一的振幅,并将测得的振幅输出到 控制器20分别将输入幅度与存储在存储器21中的阈值进行比较,并确定聚焦误差信号和跟踪误差信号之一的放大增益是否改变。 如果确定聚焦误差信号和跟踪误差信号之一的放大增益改变,则控制器20将聚焦误差信号和跟踪误差信号之一的放大增益改变为由 阈值并基于改变的放大增益来鉴别光盘的种类。
    • 48. 发明申请
    • RESIN COMPOSITION
    • 树脂组合物
    • US20090054577A1
    • 2009-02-26
    • US12279435
    • 2007-03-16
    • Hiroshi UchidaHirofumi Inoue
    • Hiroshi UchidaHirofumi Inoue
    • C08L71/00C08L77/00C08L67/00C08K3/22C08K3/30C08K3/34C08K3/26C08L63/00C08L61/00C08L83/00C09D11/00
    • H05K3/285C08L71/03C09D7/47C09D7/65C09D11/52H05K2201/015H05K2201/0209H05K2201/0212
    • The invention relates to a thermosetting resin composition comprising (A) 20 to 90 mass % of thermosetting resin, (B) 10 to 80 mass % of inorganic and/or organic fine particles and (C) 0.1 to 5 mass % of fluorine-containing polyether, wherein (C) is polymer having fluorinated alkyl polyoxetane structure of formula (1) or (2), (m is an integer of 1 to 100, n is an integer of 1 to 6, R1 represents a hydrogen atom or an alkyl group having 1 to 6 carbon atoms, R2 and R3 each represent a straight or branched chain alkyl group having 1 to 20 carbon atoms, with a proviso that at least 50% of hydrogen atoms present in the alkyl group is substituted by fluorine and the other hydrogen atoms are substituted by hydrogen, iodine, chlorine or bromine atoms) or a composition containing copolymer which consists of monomer having fluorinated alkyl polyoxetane structure and oxygen-containing monomer having 2 to 6 carbon atoms.
    • 本发明涉及一种热固性树脂组合物,其包含(A)20-90质量%的热固性树脂,(B)10至80质量%的无机和/或有机细颗粒和(C)0.1至5质量%的含氟 聚醚,其中(C)为具有式(1)或(2)的氟化烷基聚氧杂环丁烷结构的聚合物,(m为1〜100的整数,n为1〜6的整数,R1为氢原子或烷基 具有1至6个碳原子的基团,R 2和R 3各自表示具有1至20个碳原子的直链或支链烷基,条件是存在于烷基中的至少50%的氢原子被氟取代,而另一个 氢原子被氢,碘,氯或溴原子取代)或含有共聚物的组合物,其由具有氟代烷基聚氧杂环丁烷结构的单体和含有2-6个碳原子的含氧单体组成。
    • 49. 发明申请
    • Electromagnetic Suspension Device
    • 电磁悬架装置
    • US20090026989A1
    • 2009-01-29
    • US12278456
    • 2006-11-15
    • Tomoo KubotaHirofumi Inoue
    • Tomoo KubotaHirofumi Inoue
    • H02P21/05
    • F16F15/03B60G17/0157B60G2202/42B60G2204/4193F16F2232/04H02P21/00H02P21/0089H02P21/06H02P21/22H02P25/06H02P25/062
    • In an electromagnetic suspension device comprising one member (1), the other member (2) adapted to perform a relative motion with respect to the one member (1), and a motor (M) capable of at least suppressing the relative motion, and wherein electric current values id and iq of d and q phases are determined using dq conversion from electric currents iv and iu flowing in the motor (M) and an electrical angle θ of a rotor, and the motor (M) is controlled on the basis of both d-phase voltage command value Vd1 and q-phase voltage command value Vq1, the improvement characterized by further comprising correction means (23) for correcting the d-phase voltage command value Vd1 on the basis of both q-phase electric current iq and electrical angular velocity ω of the rotor and correcting the q-phase voltage command value Vq1 on the basis of both d-phase electric current id and electrical angular velocity ω of the rotor.
    • 在包括一个构件(1)的电磁悬挂装置中,适于相对于一个构件(1)执行相对运动的另一构件(2)和能够至少抑制相对运动的马达(M),以及 其中d和q相的电流值id和iq使用从在电动机(M)中流动的电流iv和iu以及转子的电角度θ的dq转换来确定,并且马达(M)基于 两相电压指令值Vd1和q相电压指令值Vq1两者的改进特征在于还包括用于基于q相电流iq校正d相电压指令值Vd1的校正装置(23) 和转子的电角速度ω,并且基于转子的d相电流id和电角速度ω来校正q相电压指令值Vq1。