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    • 1. 发明申请
    • END PIECE FOR OPTICAL FIBRES
    • END CAP光纤
    • WO0014582A3
    • 2000-06-02
    • PCT/DE9902425
    • 1999-08-04
    • HEIDELBERGER DRUCKMASCH AGJUERGENSEN HEINRICH
    • JUERGENSEN HEINRICH
    • G02B6/24G02B6/32G02B6/36G02B6/38G02B6/42
    • G02B6/3624G02B6/241G02B6/32G02B6/3652G02B6/366G02B6/3814G02B6/4296
    • The invention relates to an end piece for optical fibres (5, 28) which consists of an elongated housing having a continuous cylindrical hole extending in an axial direction for receiving an optical fibre and outer fitting seats (134) which serve as reference surfaces for mounting the housing in the mountings. At the end of the housing (123) at which the optical fibre (5, 28) is introduced into same, said optical fibre (5, 28) is taken up and guided inside the housing. A short-focus positive lens (133) is fixed to the other end of the housing (132). Inside the continuous cylindrical hole (130) extending in an axial direction the end of the optical fibre (5, 28) and the positive lens (133) are aligned in relation to each other and fixed in such a way that the point where the beam exits the optical fibre (5, 28) is located approximately in the focal point of the positive lens (133) and the laser beam (144) bundle exiting from the positive lens is aligned in a defined manner in relation to the fitting seats (134).
    • 端接件对光纤(5,28)由具有连续的细长外壳的,在轴向方向上延伸的,用于接收光纤维和外部配件(134)作为基准表面用于包含在插座圆筒形开口。 在其上发生的光纤(5,28)的壳体(123)的端部,光纤(5,28)被接收,并且在所述壳体内引导。 在壳体(132)的另一端具有一个短焦距聚焦透镜(133)被附接。 光纤(5,28)和所述会聚透镜(133)的端部内的连续排列,在轴向方向上,圆筒形孔(130)相对于彼此延伸,并固定成使从光纤(5,28中的辐射的出口点 对准)大致位于所述会聚透镜(133)和相对于所述管件(134)被定义离开所述激光束(144)的光线的会聚透镜束的光的焦点。
    • 8. 发明专利
    • DE19840935A1
    • 2000-03-09
    • DE19840935
    • 1998-09-08
    • HEIDELBERGER DRUCKMASCH AG
    • JUERGENSEN HEINRICH
    • G02B6/24G02B6/32G02B6/36G02B6/38G02B6/42
    • The invention relates to an end piece for optical fibres (5, 28) which consists of an elongated housing having a continuous cylindrical hole extending in an axial direction for receiving an optical fibre and outer fitting seats (134) which serve as reference surfaces for mounting the housing in the mountings. At the end of the housing (123) at which the optical fibre (5, 28) is introduced into same, said optical fibre (5, 28) is taken up and guided inside the housing. A short-focus positive lens (133) is fixed to the other end of the housing (132). Inside the continuous cylindrical hole (130) extending in an axial direction the end of the optical fibre (5, 28) and the positive lens (133) are aligned in relation to each other and fixed in such a way that the point where the beam exits the optical fibre (5, 28) is located approximately in the focal point of the positive lens (133) and the laser beam (144) bundle exiting from the positive lens is aligned in a defined manner in relation to the fitting seats (134).
    • 9. 发明专利
    • DE59601470D1
    • 1999-04-22
    • DE59601470
    • 1996-08-23
    • HEIDELBERGER DRUCKMASCH AG
    • JUERGENSEN HEINRICH
    • H01S3/094G03F7/20H01S3/0941H01S3/131H01S3/133
    • PCT No. PCT/DE96/01565 Sec. 371 Date May 28, 1998 Sec. 102(e) Date May 28, 1998 PCT Filed Aug. 23, 1996 PCT Pub. No. WO97/11517 PCT Pub. Date Mar. 27, 1997In a method and an apparatus for driving a diode-pumped solid-state laser, the light power emitted by the solid-state laser (1) is determined as a measurement signal, using a measurement apparatus. By comparison of the measurement signal with a predetermined light power target value, a control deviation is determined in a control amplifier the deviation being converted in a generator into a driver current for a laser diode used as a pump diode for the resonator of the solid-state laser. For the damping of high-frequency disturbances of the light power, in a high-bandwidth negative feedback branch the high-frequency components of the measurement signal are filtered out by means of a high-pass filter and are supplied to a fast control amplifier. In a control element connected in parallel to the laser diode, a portion of the driver current supplied to the laser diode is controlled dependent on the high-frequency components of the measurement signal.