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    • 1. 发明授权
    • Laser light source
    • 激光光源
    • US08295321B2
    • 2012-10-23
    • US12991268
    • 2009-05-21
    • Taro AndoHaruyasu ItoYoshiyuki OhtakeTakashi InoueNaoya MatsumotoNorihiro Fukuchi
    • Taro AndoHaruyasu ItoYoshiyuki OhtakeTakashi InoueNaoya MatsumotoNorihiro Fukuchi
    • H01S3/13H01S3/082H01S3/08
    • H01S3/0804H01S3/0805H01S3/08059H01S3/08068H01S3/10053H01S3/105
    • A laser light source 1 is provided with a first reflection mirror 11, a laser medium 12, an aperture 13, an output mirror 14, a half mirror 15, a light beam diameter adjuster 16, and a second reflection mirror 17, and outputs laser oscillation light 31 reflected by the half mirror 15 to the outside. The main resonator is composed by the first reflection mirror 11 and the output mirror 14 disposed so as to be opposed to each other with the laser medium 12 placed therebetween. The external resonator is composed by the output mirror 14 and the second reflection mirror 17 disposed so as to be opposed to each other. The second reflection mirror 17 is configured such that it gives amplitude or phase variations to respective positions in the section of a light beam when the light is reflected, the second reflection mirror presents an amplitude or phase variation distribution, and determines the transverse mode of the laser oscillation light 31 based on the amplitude or phase variation distribution. Thus, a laser light source capable of easily controlling the transverse mode of the laser oscillation light can be realized.
    • 激光光源1设置有第一反射镜11,激光介质12,孔13,输出镜14,半透半反镜15,光束直径调节器16和第二反射镜17,并且输出激光 由半反射镜15反射到外部的振荡光31。 主谐振器由第一反射镜11和输出反射镜14构成,其中激光介质12位于它们之间,以彼此相对。 外部谐振器由输出反射镜14和设置为彼此相对设置的第二反射镜17组成。 第二反射镜17被构造成使得当光被反射时,其对光束的部分中的相应位置给出幅度或相位变化,第二反射镜呈现振幅或相位变化分布,并且确定第二反射镜17的横向模式 基于振幅或相位变化分布的激光振荡光31。 因此,可以实现能够容易地控制激光振荡光的横向模式的激光源。
    • 4. 发明授权
    • Temperature sensitive fluid type fan coupling apparatus
    • 温敏型风机联轴器
    • US6125981A
    • 2000-10-03
    • US332666
    • 1999-06-14
    • Haruyasu ItoYoshinobu Iida
    • Haruyasu ItoYoshinobu Iida
    • F01P5/02F16D35/02
    • F16D35/026
    • A temperature sensitive fluid type fan coupling apparatus is provided which can prevent "an accompanying rotation" phenomenon from being generated so as to reduce fan sound and improve fuel consumption. The fan coupling apparatus comprises a sealing device box including a cover and a case which is separated into an oil reserving chamber and a torque transmission chamber by a partition plate. A drive disc is fixed to a rotary shaft body and is disposed inside the torque transmission chamber to support the sealing device box. A circulating flow passage delivers oil from the torque transmission chamber to the oil reserving chamber. A valve member for opening and closing a supply hole communicating between the torque transmission chamber and the oil reserving chamber is provided so as to increase and reduce an effective contact area for the oil in the drive disc and torque transmission gap portion, thereby controlling a torque transmission to the side of the sealing device box driven by the rotary shaft body. Barrages for holding the oil, in the oil reserving chamber and not the torque transmission chamber, are provided on both sides of the supply hole, thereby preventing the "accompanying rotation" phenomenon in the driven side of the sealing device box due to the excessive oil.
    • 提供了一种可以防止产生“伴随旋转”现象的温度敏感型风扇联接装置,从而减少风扇声音并提高燃料消耗。 风扇联接装置包括密封装置箱,其包括盖和通过隔板分离成储油室的转矩传递室的壳体。 驱动盘固定在旋转轴体上,并设置在扭矩传递室内部,以支撑密封装置箱。 循环流路将油从扭矩传递室输送到储油室。 设置用于打开和关闭连接在扭矩传递室和储油室之间的供应孔的阀构件,以增加和减少驱动盘和扭矩传递间隙部分中的油的有效接触面积,从而控制扭矩 传递到由旋转轴体驱动的密封装置箱体的侧面。 在供油孔的两侧设置有用于将油保持在储油室而不是转矩传递室的水坝,从而防止由于过量的油引起的密封装置箱的从动侧中的“伴随旋转”现象 。
    • 7. 发明授权
    • Optical system for laser optical rectification and wave front control
    • 激光光学整流和波前控制光学系统
    • US08810890B2
    • 2014-08-19
    • US13809468
    • 2011-07-13
    • Haruyasu ItoTakashi Yasuda
    • Haruyasu ItoTakashi Yasuda
    • G02F1/01
    • G02F1/01G02B27/0927G02B27/0944G02B27/095G02B27/0977
    • A laser light shaping and wavefront controlling optical system 1 in accordance with an embodiment of the present invention comprises an intensity conversion lens 24 for converting and shaping an intensity distribution of laser light incident thereon into a desirable intensity distribution; an optical modulation device 34 for modulating the laser light emitted from the intensity conversion lens 24 so as to control a wavefront thereof; a condenser optical system 36 for converging the laser light issued from the optical modulation device 34; and an image-forming optical system 30, arranged between the optical modulation device 34 and the condenser optical system 36, having an entrance-side imaging plane between a plane 24x where the laser light emitted from the intensity conversion lens 24 attains the desirable intensity distribution and a modulation plane 34a of the optical modulation device 34 and an exit-side imaging plane on a pupil plane 36a of the condenser optical system 36.
    • 根据本发明的实施例的激光成形和波前控制光学系统1包括:强度转换透镜24,用于将入射到其上的激光的强度分布转换和成形为期望的强度分布; 用于调制从强度转换透镜24发射的激光以控制其波前的光调制装置34; 用于会聚从光调制装置34发出的激光的聚光光学系统36; 以及配置在光调制装置34和聚光光学系统36之间的成像光学系统30,其具有在从强度转换透镜24发射的激光达到所需强度分布的平面24x之间的入射侧成像面 以及光调制装置34的调制面34a和聚光镜36的光瞳面36a的出射侧成像面。
    • 8. 发明申请
    • OPTICAL SYSTEM FOR LASER OPTICAL RECTIFICATION AND WAVE FRONT CONTROL
    • 用于激光光学校正和波前控制的光学系统
    • US20130107346A1
    • 2013-05-02
    • US13809468
    • 2011-07-13
    • Haruyasu ItoTakashi Yasuda
    • Haruyasu ItoTakashi Yasuda
    • G02F1/01
    • G02F1/01G02B27/0927G02B27/0944G02B27/095G02B27/0977
    • A laser light shaping and wavefront controlling optical system 1 in accordance with an embodiment of the present invention comprises an intensity conversion lens 24 for converting and shaping an intensity distribution of laser light incident thereon into a desirable intensity distribution; an optical modulation device 34 for modulating the laser light emitted from the intensity conversion lens 24 so as to control a wavefront thereof; a condenser optical system 36 for converging the laser light issued from the optical modulation device 34; and an image-forming optical system 30, arranged between the optical modulation device 34 and the condenser optical system 36, having an entrance-side imaging plane between a plane 24x where the laser light emitted from the intensity conversion lens 24 attains the desirable intensity distribution and a modulation plane 34a of the optical modulation device 34 and an exit-side imaging plane on a pupil plane 36a of the condenser optical system 36.
    • 根据本发明的实施例的激光成形和波前控制光学系统1包括:强度转换透镜24,用于将入射到其上的激光的强度分布转换和成形为期望的强度分布; 用于调制从强度转换透镜24发射的激光以控制其波前的光调制装置34; 用于会聚从光调制装置34发出的激光的聚光光学系统36; 以及配置在光调制装置34和聚光光学系统36之间的成像光学系统30,其具有在从强度转换透镜24发射的激光达到所需强度分布的平面24x之间的入射侧成像面 以及光调制装置34的调制面34a和聚光镜36的光瞳面36a的出射侧成像面。