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    • 1. 发明申请
    • PLANETARY GEAR UNIT
    • 行星齿轮单元
    • US20130072345A1
    • 2013-03-21
    • US13622184
    • 2012-09-18
    • Ryohei KUBOAtsushi MORIKouichi KATO
    • Ryohei KUBOAtsushi MORIKouichi KATO
    • F16H57/02
    • F16H57/02F16H57/037F16H57/08F16H2057/02086
    • A planetary gear unit inside a case includes coaxial sun and ring gears, a planetary pinion gear that meshes with the sun and ring gears, and a carrier that holds the planetary pinion gear, the ring gear being fixed with respect to the case, and a flange disposed inward of the ring gear. The ring gear is fixed to a case wall, via the flange, the wall extending radially inward, and the flange being prevented from rotating with respect to the wall by a rotation prevention mechanism. The rotation prevention mechanism includes a plurality of case holes on the same circle in the wall, flange holes in the flange at positions corresponding to the case holes, and rotation prevention members fitted into the case and flange holes to prevent rotation of the flange with respect to the wall with the flange relatively movable axially with respect to the wall.
    • 壳体内的行星齿轮单元包括同轴太阳和环形齿轮,与太阳和环形齿轮啮合的行星小齿轮和保持行星小齿轮的载体,齿圈相对于壳体固定, 凸缘设置在环形齿轮的内侧。 环形齿轮通过凸缘固定到壳体壁上,壁径向向内延伸,并且通过旋转防止机构防止凸缘相对于壁旋转。 旋转防止机构包括在壁的同一个圆周上的多个壳体孔,凸缘中的与壳体孔对应的位置处的凸缘孔,以及装配到壳体中的防旋转构件和用于防止凸缘相对旋转的凸缘孔 到具有法兰的壁上,所述凸缘相对于壁相对于轴向相对移动。
    • 3. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20150110514A1
    • 2015-04-23
    • US14499733
    • 2014-09-29
    • Atsushi MORIShinji KATOMasaru KUMAGAI
    • Atsushi MORIShinji KATOMasaru KUMAGAI
    • G03G15/00
    • G03G15/5041G03G15/5058H04N1/02885H04N1/047
    • An image forming apparatus includes a photoconductor, an optical scanner, a development device, a movable density sensor, a density sensor driver, and a processor. The optical scanner includes a light source to emit light, and irradiates a surface of the photoconductor in a main scanning direction with the light to form a latent image on the surface of the photoconductor. The development device develops the latent image into a toner image. The density sensor detects unevenness in density of the toner image in the main scanning direction. The density sensor driver moves the density sensor in the main scanning direction. The processor corrects a driving signal for the light source according to image data to reduce the unevenness in density in the main scanning direction, according to positional data of the density sensor in the main scanning direction and an output value of the density sensor.
    • 图像形成装置包括光电导体,光学扫描器,显影装置,可移动密度传感器,密度传感器驱动器和处理器。 光学扫描器包括发光的光源,并且用光在主扫描方向上照射感光体的表面,以在感光体的表面上形成潜像。 显影装置将潜像显影成调色剂图像。 密度传感器检测调色剂图像在主扫描方向上的浓度不均匀。 密度传感器驱动器将密度传感器沿主扫描方向移动。 处理器根据图像数据校正光源的驱动信号,以根据密度传感器在主扫描方向上的位置数据和密度传感器的输出值来减小主扫描方向上的浓度不均匀性。
    • 4. 发明申请
    • HIGH-POWER LASER UNIT WHEREIN LASER OUTPUT CAN BE ACCURATELY CORRECTED
    • 可以精确校正激光输出的大功率激光单元
    • US20120213238A1
    • 2012-08-23
    • US13308753
    • 2011-12-01
    • Koji HAYANOAtsushi MORIYuji NISHIKAWA
    • Koji HAYANOAtsushi MORIYuji NISHIKAWA
    • H01S3/102
    • H01S3/131H01S3/1317
    • A high-power laser unit capable of accurately correcting laser output from low to rated outputs, even when the laser unit has a laser power monitor which may be affected by environmental factors inside or outside the laser unit, by effectively reducing environmental factors. The laser unit has a laser power monitor for measuring laser output, and a laser controller for correcting the laser output by correcting an amount of excitation energy to a laser power supply so that a measurement value coincides with a laser output command value. The laser unit has a laser output commanding part for generating a laser output command. When it is not necessary to correct the laser output command, the laser output command is converted into an excitation energy command value and sent to the power supply. Otherwise, an output correcting part of the laser controller corrects the laser output command.
    • 即使激光单元具有可能受激光单元内部或外部的环境因素影响的激光功率监视器,也能够有效降低环境因素,从而能够精确地校正从低电平到额定输出的激光输出的高功率激光单元。 激光单元具有用于测量激光输出的激光功率监视器,以及激光控制器,用于通过向激光电源校正激发能量的量来校正激光输出,使得测量值与激光输出命令值一致。 激光单元具有用于产生激光输出命令的激光输出指令部。 当不需要校正激光输出命令时,将激光输出命令转换为激发能量指令值并发送到电源。 否则,激光控制器的输出校正部分校正激光输出命令。
    • 6. 发明申请
    • DAMPING TEST METHOD, CONTROL APPARATUS, HYDRAULIC SYSTEM, AND COMPUTER READABLE RECORDING MEDIUM
    • 阻尼测试方法,控制装置,液压系统和计算机可读记录介质
    • US20120029859A1
    • 2012-02-02
    • US13187145
    • 2011-07-20
    • Atsushi FUKUIKazuyuki SUZUKIToshiaki OGAWAAtsushi MORI
    • Atsushi FUKUIKazuyuki SUZUKIToshiaki OGAWAAtsushi MORI
    • G06F19/00
    • B64C13/40B64F5/60Y02T50/44
    • The control apparatus acquires an ideal velocity characteristic of a control surface, and the temperature of pressure oil of the actuator to be tested and the operating speed of the control surface when the actuator is attached to the control surface. The control apparatus corrects the ideal velocity characteristic of the control surface by using the pressure oil temperature and the control surface operating speed. The control apparatus sets an upper limit and a lower limit by using a predicted value for a fluctuation range for a fluctuation factor that causes a fluctuation of the control surface operating speed, with reference to the corrected ideal velocity characteristic, measures the pressure oil temperature and the operating speed by actuating the control surface, with the actuator to be tested placed in a damping mode, and determines whether the measured value falls within the range between the upper limit and the lower limit.
    • 控制装置获取控制表面的理想速度特性,以及当致动器附接到控制表面时要测试的致动器的压力油的温度和控制表面的操作速度。 控制装置通过使用压力油温度和控制面操作速度来校正控制面的理想速度特性。 控制装置通过使用引起控制面操作速度的波动的波动因数的波动范围的预测值,参照校正后的理想速度特性来测定压力油温和 通过致动控制表面的操作速度,待测试执行器处于阻尼模式,并确定测量值是否在上限和下限之间的范围内。