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    • 52. 发明授权
    • Suspension system for a vehicle
    • 车辆悬挂系统
    • US5269557A
    • 1993-12-14
    • US783183
    • 1991-10-28
    • Tetsuro ButsuenYasunori YamamotoTohru Yoshioka
    • Tetsuro ButsuenYasunori YamamotoTohru Yoshioka
    • B60G17/015F16F9/46B60G11/26
    • F16F9/468B60G17/015B60G2400/10B60G2400/204B60G2400/252B60G2400/41B60G2400/518B60G2400/82B60G2400/90B60G2400/91B60G2500/10B60G2600/184
    • In a suspension system for a vehicle comprising a shock absorber of which damping force characteristics can be changed into four or more characteristics, detecting means detect the oscillation frequency range of the sprung member of the vehicle and a bumpy road. From the four or more damping force characteristics of the shock absorber, the number of characteristics on the higher level side are limited to two or so when the sprung member is in a low frequency oscillation range, that of the characteristics on the lower level side are limited to two or so when the sprung member is in a high frequency oscillation range, and that of the characteristics on the medium level side are limited to two or so when a road is bumpy. The damping force characteristic of the shock absorber is selected and changed on the basis of a given control rule only within the limited damping force characteristics. Thus, it is possible to prevent noise and oscillation from being caused by the large change of the damping force characteristic. Furthermore, there can be obtained comfortableness to ride in and stability on a high level.
    • 在一种用于车辆的悬架系统中,检测装置检测车辆弹簧构件和颠簸路的振荡频率范围,该缓冲器包括阻尼力特性可以改变为四个或更多特性的减震器。 从减震器的四个以上的阻尼力特性来看,当弹簧构件处于低频振荡范围时,较高侧的特性数量被限制在两个左右,而下一侧的特性的数量是 当弹簧构件处于高频振荡范围时限制为两个左右,而当路面颠簸时,中等水平侧的特性被限制在两个左右。 基于给定的控制规则,仅在有限的阻尼力特性内选择和改变减震器的阻尼力特性。 因此,可以防止噪声和振动由阻尼力特性的大的变化引起。 此外,可以获得在高水平上的舒适性和稳定性。
    • 55. 发明授权
    • Suspension system for a vehicle
    • 车辆悬架系统
    • US5172929A
    • 1992-12-22
    • US783137
    • 1991-10-28
    • Tetsuro ButsuenYasunori YamamotoTohru Yoshioka
    • Tetsuro ButsuenYasunori YamamotoTohru Yoshioka
    • B60G17/015F16F9/46
    • B60G17/015F16F9/468B60G2400/10B60G2400/104B60G2400/204B60G2400/252B60G2400/41B60G2400/518B60G2400/82B60G2400/90B60G2400/91B60G2500/10B60G2600/02B60G2800/24
    • In a suspension system for a vehicle comprising a shock absorber of which damping force characteristic can be changed into three or more characteristics, the predetermined running state of the vehicle is detected by detecting means and there is limited to two or so the number of the damping force characteristics to be selected from the three or more characteristics of the shock absorber according to the running state. The damping force characteristic of the shock absorber is selected and changed on the basis of a given control rule only within the limited damping force characteristics. In addition, the threshold of the control rule is changed such that the damping force characteristic of the shock absorber can easily be changed into the higher or lower level side according to the rate of change in the predetermined running state. Thus, it is possible to prevent noise and oscillation from being caused by the large change of the damping force characteristic. Furthermore, there can be obtained comfortableness to ride in and stability on a high level.
    • 在一种用于车辆的悬架系统中,其特征在于阻尼力特性可以改变为三个或更多个特征的减震器,通过检测装置检测车辆的预定行驶状态,并且限制了两个或更多个阻尼 根据运行状态从减震器的三个或更多个特性中选择力特性。 基于给定的控制规则,仅在有限的阻尼力特性内选择和改变减震器的阻尼力特性。 此外,改变控制规则的阈值,使得减震器的阻尼力特性可以根据预定行驶状态的变化率容易地变成高级或低级侧。 因此,可以防止噪声和振动由阻尼力特性的大的变化引起。 此外,可以获得在高水平上的舒适性和稳定性。
    • 56. 发明授权
    • Multi-input differential amplifier and light emitting element driving device
    • 多输入差分放大器和发光元件驱动装置
    • US08587372B2
    • 2013-11-19
    • US13149218
    • 2011-05-31
    • Kazuhito KimuraYasunori Yamamoto
    • Kazuhito KimuraYasunori Yamamoto
    • H03F9/00H03L5/00G05F1/00
    • H03F3/45475H03F3/45179H05B33/0815H05B33/0827H05B33/0842
    • A multi-input differential amplifying device of the present invention includes: a differential amplifier having an inverting input terminal and a non-inverting input terminal; and an input portion configured to apply a first input voltage to a first input terminal that is one of the inverting input terminal and the non-inverting input terminal and apply a second input voltage to a second input terminal that is the other input terminal, the first input voltage corresponding to first input signals that are a plurality of input signals for the first input terminal, the second input voltage corresponding to a second input signal that is one input signal for the second input terminal. The input portion is configured to correct an offset voltage between the first input voltage and the second input voltage.
    • 本发明的多输入差分放大装置包括:具有反相输入端和非反相输入端的差分放大器; 以及输入部,被配置为将第一输入电压施加到作为反相输入端和非反相输入端之一的第一输入端,并将第二输入电压施加到作为另一输入端的第二输入端, 对应于作为第一输入端子的多个输入信号的第一输入信号的第一输入电压,对应于作为第二输入端子的一个输入信号的第二输入信号的第二输入电压。 输入部分被配置为校正第一输入电压和第二输入电压之间的偏移电压。
    • 58. 发明申请
    • MULTI-INPUT DIFFERENTIAL AMPLIFIER AND LIGHT EMITTING ELEMENT DRIVING DEVICE
    • 多输入差分放大器和发光元件驱动装置
    • US20110291589A1
    • 2011-12-01
    • US13149218
    • 2011-05-31
    • Kazuhito KIMURAYasunori Yamamoto
    • Kazuhito KIMURAYasunori Yamamoto
    • H05B37/02H03F3/45
    • H03F3/45475H03F3/45179H05B33/0815H05B33/0827H05B33/0842
    • A multi-input differential amplifying device of the present invention includes: a differential amplifier having an inverting input terminal and a non-inverting input terminal; and an input portion configured to apply a first input voltage to a first input terminal that is one of the inverting input terminal and the non-inverting input terminal and apply a second input voltage to a second input terminal that is the other input terminal, the first input voltage corresponding to first input signals that are a plurality of input signals for the first input terminal, the second input voltage corresponding to a second input signal that is one input signal for the second input terminal. The input portion is configured to correct an offset voltage between the first input voltage and the second input voltage.
    • 本发明的多输入差分放大装置包括:具有反相输入端和非反相输入端的差分放大器; 以及输入部,被配置为将第一输入电压施加到作为反相输入端和非反相输入端之一的第一输入端,并将第二输入电压施加到作为另一输入端的第二输入端, 对应于作为第一输入端子的多个输入信号的第一输入信号的第一输入电压,对应于作为第二输入端子的一个输入信号的第二输入信号的第二输入电压。 输入部分被配置为校正第一输入电压和第二输入电压之间的偏移电压。
    • 59. 发明授权
    • Information processing apparatus for performing a system boot by using programs stored in a non-volatile storage device
    • 信息处理装置,用于通过使用存储在非易失性存储装置中的程序执行系统引导
    • US07925928B2
    • 2011-04-12
    • US11984008
    • 2007-11-13
    • Yasunori YamamotoKeizo SumidaYoshiteru Mino
    • Yasunori YamamotoKeizo SumidaYoshiteru Mino
    • G06F11/00
    • G06F11/1417G06F11/1004
    • After power activation, a transferer 14 detects a bootstrap program 111 having a first error check code 114 assigned thereto and being stored in a first storage device 11, subjects the bootstrap program 111 to an error detection/correction process, and transfers the bootstrap program 111 to the second storage device 12. If the transfer is properly completed, by executing the bootstrap program 111 on the second storage device 12, the CPU 10 performs an error detection/correction process for a main program 112 having a second error check code 115 assigned thereto, and transfers the main program 112 to a third storage device 13, after which the CPU's control branches out to the main program 112 on the third storage device 13. As a result, system boot can be performed without employing a NOR type flash memory.
    • 在电源激活之后,传送器14检测具有分配给其的第一错误检查码114并被存储在第一存储装置11中的自举程序111,使自举程序111进行错误检测/校正处理,并且传送引导程序111 如果传送正确完成,则通过在第二存储装置12上执行自举程序111,CPU 10对分配了第二错误检查代码115的主程序112执行错误检测/校正处理 并且将主程序112传送到第三存储装置13,之后CPU的控制分支到第三存储装置13上的主程序112.结果,可以执行系统引导而不使用NOR型闪存 。