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    • 1. 发明授权
    • Rotation transmission device
    • 旋转传动装置
    • US08448764B2
    • 2013-05-28
    • US12742448
    • 2008-12-09
    • Koji AkiyoshiTakanobu SatoTakahide Saito
    • Koji AkiyoshiTakanobu SatoTakahide Saito
    • F16D41/08
    • F16D41/105F16C35/063F16C2226/74
    • A rotation transmission device includes an outer ring having an inner periphery and an inner ring mounted inside the outer ring and having an outer periphery. A control retainer and a rotary retainer are disposed between opposed surfaces of the outer ring and the inner ring, and each of the retainers has a flange and bridges provided at the radially outer side of the respective flange and arranged circumferentially alternately with the bridges of the other retainer thereby defining pockets between the adjacent bridges. The control retainer is axially slidably and rotatably supported and the rotary retainer is axially immovably and rotatably supported. An electromagnetic clutch is mounted on a torque transmission shaft and includes an electromagnet having an electromagnetic coil, the electromagnetic clutch being configured to axially move the control retainer when the electromagnetic coil is energized and deenergized.
    • 旋转传递装置包括外圈和安装在外圈内部并具有外周的内圈的外圈。 控制保持器和旋转保持器设置在外环和内环的相对表面之间,并且每个保持器具有设置在相应凸缘的径向外侧的凸缘和桥, 从而在相邻的桥之间形成凹槽。 控制保持器轴向可滑动和可旋转地支撑,并且旋转保持器轴向地不可移动和可旋转地支撑。 电磁离合器安装在转矩传递轴上并且包括具有电磁线圈的电磁体,电磁离合器构造成当电磁线圈通电并断电时轴向移动控制保持器。
    • 2. 发明申请
    • ROTATION TRANSMISSION DEVICE
    • 旋转传动装置
    • US20110061983A1
    • 2011-03-17
    • US12991914
    • 2009-06-01
    • Takanobu SatoKoji AkiyoshiTakahide Saito
    • Takanobu SatoKoji AkiyoshiTakahide Saito
    • F16D43/00F16D27/102
    • F16D41/086F16D27/004F16D27/10F16D2027/008F16D2300/18
    • A rotation transmission device is provided which has a minimum play in the rotational direction, which is reliable by preventing the rollers from erroneously engaging during idling, and which has high torque capacity. A control retainer 19A and a rotary retainer 19B are mounted between an outer race 11 having a cylindrical surface 17 on its inner periphery and an inner race 12 having cam surfaces 18 on its outer periphery. An opposed pair of rollers 25 are mounted in each of pockets 24 defined between pillars 21 and 23 of the respective retainers 19A and 19B. A presser member 26 is also mounted in each pocket 24 which biases the pair of rollers 25 away from each other while pressing the rollers against the cam surface 18. A plurality of torque cams 40 are provided between flanges 20 and 22 of the control retainer 19A and the rotary retainer 19B. When the control retainer 19A is moved toward a rotor 52 by the actuation of an electromagnetic clutch 50, the torque cams 40 rotate the control retainer 19A and the rotary retainer 19B in the direction in which the circumferential width of the pockets 24 decreases, thereby disengaging the opposed pairs of rollers 25. When the control retainer 19A is moved away from the rotor 52, the control retainer 19A and the rotary retainer 19B are rotated relative to each other in the direction in which the circumferential width of the pockets 24 increases under the biasing force of the presser members 26, thereby engaging the rollers 25. While the inner race 12 is idling, the presser members 26 prevent the rollers 25 from moving radially outwardly, thereby preventing erroneous engagement of the rollers 25.
    • 提供了一种旋转传递装置,其在旋转方向上具有最小的游隙,这是通过防止辊在空转期间错误地接合并且具有高扭矩能力而可靠的。 控制保持器19A和旋转保持器19B安装在其内周上具有圆柱形表面17的外座圈11和在其外周上具有凸轮表面18的内座圈12之间。 相对的一对辊子25安装在各个保持器19A和19B的支柱21和23之间限定的每个凹穴24中。 压紧构件26也安装在每个袋24中,其将一对辊25偏压,同时将辊压在凸轮表面18上。多个扭矩凸轮40设置在控制保持器19A的凸缘20和22之间 和旋转保持架19B。 当控制保持器19A通过电磁离合器50的驱动向转子52移动时,转矩凸轮40沿着凹穴24的周向宽度减小的方向旋转控制保持器19A和旋转保持器19B,从而脱开 相对的辊对25.当控制保持器19A远离转子52移动时,控制保持器19A和旋转保持器19B在袋24的周向宽度增加的方向上相对于彼此旋转 按压构件26的偏压力,从而接合辊25.当内圈12空转时,按压构件26防止辊25径向向外移动,从而防止辊25的错误接合。
    • 3. 发明申请
    • ROTATION TRANSMISSION DEVICE
    • 旋转传动装置
    • US20100314212A1
    • 2010-12-16
    • US12742448
    • 2008-12-09
    • Koji AkiyoshiTakanobu SatoTakahide Saito
    • Koji AkiyoshiTakanobu SatoTakahide Saito
    • F16D11/04
    • F16D41/105F16C35/063F16C2226/74
    • A rotation transmission device is provided which is small in play in the rotational direction, can be idled with high reliability and is high in torque capacity.An axially movable control retainer 19A and a rotatable rotary retainer 19B are mounted between an outer ring 11 having a cylindrical surface 17 on its inner periphery and an inner ring 12 having cam surfaces on its outer periphery. An opposed pair of rollers 26 and a coil spring 27 for biasing the pair of rollers 26 away from each other are received in each pocket 25 defined between bridges 21 and 23 of the respective retainers 19A and 19B. A torque cam 30 is provided between flanges 20 and 22 of the control retainer 19A and the rotary retainer 19B, respectively. An armature 41 is coupled to the bridges 21 of the control retainer 19A. An electromagnet 43 is provided to face a rotor 42 that axially faces the armature 41 so that when the electromagnet 43 is energized, the control retainer 19A moves toward the rotor 42, and the control retainer 19A and the rotary retainer 19B rotate relative to each other in the direction to reduce the circumferential width of the pockets 25, thereby disengaging the opposed pairs of rollers 26. When the electromagnet 43 is deenergized, the control retainer 19A moves away from the rotor 42 under the biasing force of the separation spring 44, and the control retainer 19A and the rotary retainer 19B rotate relative to each other in the direction to increase the circumferential width of the pockets 25, thereby engaging the opposed pairs of rollers 26.
    • 提供了一种在旋转方向上游隙较小的旋转传递装置,可以高可靠性空转,扭矩能力高。 轴向移动的控制保持器19A和可旋转的旋转保持器19B安装在其内周上具有圆柱形表面17的外圈11和在其外周上具有凸轮表面的内圈12之间。 相对的辊对26和用于将一对辊26彼此偏离的螺旋弹簧27接收在限定在相应的保持器19A和19B的桥21和23之间的每个凹部25中。 转矩凸轮30分别设置在控制保持器19A和旋转保持器19B的凸缘20和22之间。 衔铁41联接到控制保持器19A的桥21。 电磁铁43被设置为面向轴向面向电枢41的转子42,使得当电磁铁43通电时,控制保持器19A朝向转子42移动,并且控制保持器19A和旋转保持器19B相对于彼此旋转 在减小凹穴25的周向宽度的方向上,从而使相对的辊对26分离。当电磁体43被断电时,控制保持器19A在分离弹簧44的偏压力下远离转子42移动,并且 控制保持器19A和旋转保持器19B沿着增加凹部25的周向宽度的方向相对旋转,从而与相对的辊对26接合。
    • 4. 发明申请
    • ROTATION TRANSMISSION DEVICE
    • 旋转传动装置
    • US20080060896A1
    • 2008-03-13
    • US11850883
    • 2007-09-06
    • Takahide SaitoKoji AkiyoshiTakanobu SatoMasako Ashimori
    • Takahide SaitoKoji AkiyoshiTakanobu SatoMasako Ashimori
    • F16D27/02
    • F16D41/105
    • A rotation transmission device which can quickly change the direction of rotation. It includes a inner ring formed with cam surfaces on its outer periphery, a outer ring formed with a cylindrical surface on its inner periphery, and a plurality of pairs of rollers, each pair being disposed between one of the cam surfaces and the cylindrical surface so as to be circumferentially opposed to each other. A roller separation spring is disposed between each pair of rollers to bias the rollers away from each other so that the rollers are wedged between the cam surface and the cylindrical surface. The rollers are retained by a roller retainer which can change the distance between each pair of circumferentially opposed rollers. By reducing the distance between each pair of rollers with the roller retainer, it is possible to disengage the rollers from the cam surfaces and the cylindrical surface.
    • 一种可以快速改变旋转方向的旋转传动装置。 其包括在其外周上形成有凸轮表面的内圈,在其内周上形成有圆柱形表面的外圈和多对辊,每对辊设置在凸轮表面之一和圆柱形表面之间,因此 被周向地相对。 辊分离弹簧设置在每对辊之间以将辊彼此偏离,使得辊楔入凸轮表面和圆柱形表面之间。 辊子被保持器保持,辊保持器可以改变每对周向相对的辊之间的距离。 通过减小每个辊与辊保持器之间的距离,可以将辊与凸轮表面和圆柱形表面分离。
    • 5. 发明授权
    • Rotation transmission device
    • 旋转传动装置
    • US07874413B2
    • 2011-01-25
    • US11850883
    • 2007-09-06
    • Takahide SaitoKoji AkiyoshiTakanobu SatoMasako Ashimori
    • Takahide SaitoKoji AkiyoshiTakanobu SatoMasako Ashimori
    • F16D41/08
    • F16D41/105
    • A rotation transmission device which can quickly change the direction of rotation includes an inner ring having cam surfaces on its outer periphery, an outer ring having a cylindrical surface on its inner periphery, and pairs of circumferentially opposed rollers, the rollers of each pair being disposed between one of the cam surfaces and the cylindrical surface to be circumferentially opposed to each other. A roller separation spring is disposed between the rollers of each pair of rollers to bias the rollers away from each other so that the rollers are wedged between the cam surface and the cylindrical surface. The rollers are retained by a roller retainer which can change the distance between the rollers of each pair of rollers. By reducing the distance between the rollers of each pair of rollers with the roller retainer, the rollers can be disengaged from the cam surfaces and the cylindrical surface.
    • 可以快速改变旋转方向的旋转传递装置包括在其外周上具有凸轮表面的内圈,在其内周上具有圆柱形表面的外圈和一对周向相对的辊,每对辊布置 在一个凸轮表面和圆周表面之间彼此周向相对。 辊分离弹簧设置在每对辊的辊之间,以将辊彼此偏离,使得辊被楔入凸轮表面和圆柱形表面之间。 辊子被保持器保持,辊保持器可以改变每对辊子的辊之间的距离。 通过减小每一对滚子与辊保持器之间的距离,滚子可以从凸轮表面和圆柱形表面脱离。
    • 9. 发明申请
    • IMAGING APPARATUS
    • 成像设备
    • US20120153129A1
    • 2012-06-21
    • US13383052
    • 2009-07-15
    • Takanobu Sato
    • Takanobu Sato
    • H01J31/38
    • H01J31/38
    • An imaging apparatus which can provide a uniform magnetic field distribution in an image pickup device and can be reduced in size includes an electron emission source array with a plurality of electron emission sources arranged on a plane perpendicular to an optical axis, and a translucent substrate having an optoelectronic film disposed on the optical axis to be opposed to the electron emission source array with a space therebetween. The imaging apparatus has a magnet portion for forming in the space a magnetic field in a direction orthogonal to each principal plane of the translucent substrate and the electron emission source array. The magnet portion includes a plurality of magnets which are disposed in parallel to the optical axis so that the respective magnetic poles thereof are arranged in a forward direction in parallel to the optical axis and will not contact with each other.
    • 可以在图像拾取装置中提供均匀的磁场分布并且可以减小尺寸的成像装置包括具有布置在垂直于光轴的平面上的多个电子发射源的电子发射源阵列,以及具有 设置在光轴上以与电子发射源阵列相对的光电子膜,其间具有空间。 成像装置具有用于在该空间内沿与透光性基板的各主面正交的方向和电子发射源阵列形成磁场的磁体部。 磁体部分包括平行于光轴布置的多个磁体,使得它们各自的磁极平行于光轴布置在正方向上,并且不会彼此接触。
    • 10. 发明申请
    • IMAGING APPARATUS
    • 成像设备
    • US20120145885A1
    • 2012-06-14
    • US13383064
    • 2009-07-15
    • Takanobu SatoYoshiyuki Okuda
    • Takanobu SatoYoshiyuki Okuda
    • H01J31/38
    • H01J31/503
    • An imaging apparatus which can provide a uniform magnetic field distribution in an image pickup device and can reduce the size of the device includes an electron emission source array with a plurality of electron emission sources arranged on a plane, and a translucent substrate having an optoelectronic film opposed to the electron emission source array with a space therebetween. The imaging apparatus includes a magnet portion for forming in the space a magnetic field in a direction orthogonal to each principal plane of the translucent substrate and the electron emission source array, and a magnetic force supply portion. The magnetic force supply portion has a magnetic body which is disposed on the light incident side to be opposed to the translucent substrate with a space therebetween and connected to the magnet portion, and an opening which defines an optical path that will not hinder formation of the optical image.
    • 可以在图像拾取装置中提供均匀的磁场分布并且可以减小装置的尺寸的成像装置包括具有布置在平面上的多个电子发射源的电子发射源阵列和具有光电子膜的透光性基板 与其间具有空间的电子发射源阵列相对。 成像装置包括磁体部分,用于在该空间中沿与半透明基板和电子发射源阵列的每个主平面正交的方向形成磁场,以及磁力供应部分。 磁力供给部具有磁性体,该磁性体设置在与光透射性基板相对的光入射侧,并且与磁体部分之间具有间隔并且与磁体部分相连接;以及开口,其限定不会妨碍形成 光学图像。