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    • 1. 发明申请
    • Container having handling hole for transportation and opening and closing member for handling hole and manufacturing method for the same
    • 具有用于运输的处理孔和用于处理孔的打开和关闭构件的容器及其制造方法
    • US20090166366A1
    • 2009-07-02
    • US12318328
    • 2008-12-24
    • Shinji KanekoTatsuya TamuraRyozo Kuwata
    • Shinji KanekoTatsuya TamuraRyozo Kuwata
    • B65D90/02B31B1/14
    • B65D25/30B29C48/0022B29C48/06B29C48/13B29L2031/7126
    • A main body of an opening and closing member is arranged so as to cover a handling hole from one side of a wall, such as a container wall. The opening and closing member is mounted to the container by engaging an engagement portion with a flange formed at the periphery of the handling hole. When a user inserts a hand into the handling hole and pushes the main body, the main body moves away from the wall, and the handling hole is uncovered. By so doing, the user can insert his or her hand into the handling hole and carry the container or other object. Then, when the user removes his or her hand from the handling hole, the main body moves toward the wall, and an outer periphery of the main body contacts the wall at the periphery of the handling hole and returns to the original position. Thus, the handling hole is covered from one side of the wall. By so doing, dirt, water and/or the like can be suppressed from passing through the handling hole. Thus, the container or other object can easily be carried by using the handling hole, and dirt, water and/or the like can be suppressed from passing through the handling hole without requiring a special operation or task.
    • 打开和关闭构件的主体被布置成从诸如容器壁的壁的一侧覆盖操作孔。 通过将接合部与形成在操作孔的周边处的凸缘接合而将开闭部件安装到容器。 当用户将手插入处理孔并推动主体时,主体远离壁移动,并且操作孔未被覆盖。 通过这样做,用户可以将他或她的手插入处理孔并携带容器或其他物体。 然后,当使用者将他或她的手从处理孔中取出时,主体朝向壁移动,并且主体的外周与操作孔的周边处的壁接触并返回原来的位置。 因此,处理孔从壁的一侧被覆盖。 通过这样做,可以抑制污物,水和/或类似物通过处理孔。 因此,容器或其他物体可以容易地通过使用处理孔来承载,并且可以防止污垢,水和/或类似物通过操作孔而不需要特别的操作或任务。
    • 3. 发明授权
    • Shake compensation device for optical devices using a mirror to compensate for the shake
    • 使用镜子的光学装置的振动补偿装置来补偿抖动
    • US07561185B2
    • 2009-07-14
    • US10198068
    • 2002-07-19
    • Masafumi YamasakiShinji KanekoKimihiko Nishioka
    • Masafumi YamasakiShinji KanekoKimihiko Nishioka
    • H04N5/228
    • H04N5/23283G03B17/17G03B2205/0023H04N5/23248H04N5/23258H04N5/23287
    • A shake compensating device for optical devices includes an optical system for forming an image of an object; a reflecting surface placed in the optical path of the optical system, a first substrate having a first electrode, placed adjacent to the reflecting surface; a second substrate fixed to an optical device, placed opposite to the first substrate and having a second electrode at a position opposite to the first electrode; a voltage control circuit for applying voltages across the first electrode and the second electrode, one of which is divided into a plurality of electrodes; and a detecting unit for detecting the shake angle of the optical device. In this case, the voltage control circuit controls the voltages applied across the divided electrodes and the other electrode opposite thereto in accordance with the output of the detecting unit.
    • 用于光学装置的抖动补偿装置包括用于形成物体的图像的光学系统; 放置在光学系统的光路中的反射表面,具有邻近反射表面放置的第一电极的第一基底; 固定到光学装置的第二基板,与所述第一基板相对设置,并且在与所述第一电极相对的位置处具有第二电极; 电压控制电路,用于施加跨越第一电极和第二电极的电压,其中一个被分成多个电极; 以及用于检测光学装置的抖动角度的检测单元。 在这种情况下,电压控制电路根据检测单元的输出控制施加在分割电极和与其相反的另一电极的电压。
    • 7. 发明授权
    • Video noise reduction system with signal emphasis preceding FM
modulation upper-band luminance
    • 视频降噪系统具有信号强调,前调频调制高频带亮度
    • US4802016A
    • 1989-01-31
    • US31551
    • 1987-03-30
    • Shinji Kaneko
    • Shinji Kaneko
    • G11B5/027G11B20/06H04N5/92H04N5/923H04N9/79H04N9/793H04N9/797H04N9/825H04N9/81
    • H04N5/923H04N9/7908H04N9/7936H04N9/7973H04N9/825
    • A video noise reduction system for use in a video signal recording apparatus adapted to record red, blue and green primary color component video signals on a plurality of separate tracks of a magnetic recording medium. The component video signals are applied to a matrix circuit which produces a wide-band luminance signal. The video noise reduction system includes a band splitter circuit for splitting the wide-band luminance signal into an upper-band luminance signal and a lower-band luminance signal and an emphasis circuit for emphasizing the low level components of the upper-band luminance signal before the upper-band luminance signal is FM modulated. Since the emphasis circuit follows the band splitter circuit having a flat phase versus frequency characteristic, the video noise reduction circuit can reduce video noise without causing distortion of the frequency modulated video signal.
    • 一种用于视频信号记录装置的视频噪声降低系统,适用于在红色,蓝色和绿色原色分量视频信号上记录在磁记录介质的多个独立磁道上。 分量视频信号被施加到产生宽带亮度信号的矩阵电路。 视频噪声降低系统包括:分频器电路,用于将宽带亮度信号分解为上带亮度信号和低频带亮度信号;以及加强电路,用于强调上段亮度信号的低电平分量 高频带亮度信号是FM调制的。 由于加强电路遵循具有平坦相位对频率特性的分束器电路,所以视频噪声降低电路可以降低视频噪声而不会引起调频视频信号的失真。
    • 9. 发明授权
    • Forklift and inching control method of forklift
    • 叉车叉车和微动控制方法
    • US09057437B2
    • 2015-06-16
    • US13699548
    • 2012-04-26
    • Shinji Kaneko
    • Shinji Kaneko
    • F16H61/431B66F9/20B66F9/22F16H61/4157F16H61/47F16H61/472F16H59/36
    • F16H61/431B60Y2200/62B66F9/20B66F9/22F16H61/4157F16H61/47F16H61/472F16H2059/366F16H2312/10
    • In order to provide a forklift capable of performing an inching control suitable for a specific work and a running operation of the forklift and an inching control method of the forklift, an inching ratio calculating unit calculates an inching ratio, a target engine speed calculating unit calculates a target engine speed, a modulation control unit sets a time constant of the inching ratio in response to a speed difference between the target engine speed and an actual engine speed and outputs a correction inching ratio having the time constant set thereto, a multiplication unit outputs a correction absorption torque obtained by multiplying the correction inching ratio by a target absorption torque, and a HST pump electromagnetic proportional control output current converting unit outputs a current instruction value to a pump capacity setting unit.
    • 为了提供一种能够执行适合于叉车的特定作业和行驶操作的微动控制的铲车以及叉车的微动控制方法,微动比计算单元计算微动比,目标发动机转速计算单元计算 目标发动机转速,调制控制单元响应于目标发动机转速和实际发动机转速之间的速度差设定微动比的时间常数,并输出设定了时间常数的校正微调比,乘法单元输出 通过将校正微调比乘以目标吸收扭矩获得的校正吸收扭矩和HST泵电磁比例控制输出电流转换单元将电流指令值输出到泵容量设定单元。