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    • 1. 发明授权
    • Laser oscillator
    • 激光振荡器
    • US07809033B2
    • 2010-10-05
    • US12153054
    • 2008-05-13
    • Koji FunaokaMasahiko HasegawaKazuo SugiharaYasunari Matsumoto
    • Koji FunaokaMasahiko HasegawaKazuo SugiharaYasunari Matsumoto
    • H01S3/04
    • H01S3/0401
    • A laser oscillator is obtained in which the flatness of an optical element that makes contact with a cooling flange is maintained in a highly precise state, by suppressing a flange presser and a base from profile-deforming the cooling flange. The flange presser and the cooling flange make contact with each other by the intermediary of three protrusions provided in either one of the flange presser and the cooling flange, and the three protrusions are arranged at the vertexes of a triangle; the cooling flange and the base make contact with each other by the intermediary of three protrusions provided in either one of the cooling flange and the base; the three points at which the flange presser and the cooling flange make contact with each other by the intermediary of the protrusions and the three points at which the cooling flange and the base make contact with each other by the intermediary of the protrusions are arranged in such a way as to face respective corresponding points; and the flange presser and the base that flank the cooling flange are fixed fastened with a fastening member.
    • 获得激光振荡器,其中通过抑制凸缘按压器和基座使得冷却凸缘的形状变形而使与冷却凸缘接触的光学元件的平坦度保持在高度精确的状态。 凸缘压紧件和冷却法兰通过设置在凸缘压紧件和冷却法兰中的任一个中的三个突起的中间彼此接触,并且三个突起布置在三角形的顶点处; 冷却法兰和基座通过设置在冷却法兰和基座中的任一个中的三个突起的中间彼此接触; 凸缘和冷却法兰通过突起的中间相互接触的三个点和冷却凸缘和基座之间通过突起相互接触的三个点被布置成 面对各自对应点的方式; 并且凸缘压紧件和位于冷却凸缘侧面的基座用紧固构件固定。
    • 2. 发明申请
    • Laser oscillator
    • 激光振荡器
    • US20090180503A1
    • 2009-07-16
    • US12153054
    • 2008-05-13
    • Koji FunaokaMasahiko HasegawaKazuo SugiharaYasunari Matsumoto
    • Koji FunaokaMasahiko HasegawaKazuo SugiharaYasunari Matsumoto
    • H01S3/04
    • H01S3/0401
    • A laser oscillator is obtained in which the flatness of an optical element that makes contact with a cooling flange is maintained in a highly precise state, by suppressing a flange presser and a base from profile-deforming the cooling flange. The flange presser and the cooling flange make contact with each other by the intermediary of three protrusions provided in either one of the flange presser and the cooling flange, and the three protrusions are arranged at the vertexes of a triangle; the cooling flange and the base make contact with each other by the intermediary of three protrusions provided in either one of the cooling flange and the base; the three points at which the flange presser and the cooling flange make contact with each other by the intermediary of the protrusions and the three points at which the cooling flange and the base make contact with each other by the intermediary of the protrusions are arranged in such a way as to face respective corresponding points; and the flange presser and the base that flank the cooling flange are fixed fastened with a fastening member.
    • 获得激光振荡器,其中通过抑制凸缘按压器和基座使得冷却凸缘的形状变形而使与冷却凸缘接触的光学元件的平坦度保持在高度精确的状态。 凸缘压紧件和冷却法兰通过设置在凸缘压紧件和冷却法兰中的任一个中的三个突起的中间彼此接触,并且三个突起布置在三角形的顶点处; 冷却法兰和基座通过设置在冷却法兰和基座中的任一个中的三个突起的中间彼此接触; 凸缘和冷却法兰通过突起的中间相互接触的三个点和冷却凸缘和基座之间通过突起相互接触的三个点被布置成 面对各自对应点的方式; 并且凸缘压紧件和位于冷却凸缘侧面的基座用紧固构件固定。