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    • 3. 发明申请
    • Adjustment Method, Particularly a Laser Adjustment Method, and an Actuator Suitable For the Same
    • 调整方法,特别是激光调节方法,以及适用于其的执行机构
    • US20080144195A1
    • 2008-06-19
    • US10473941
    • 2002-06-12
    • Burkhard Arthur Seitz born MullerKlaus StrolAxel Mehnert
    • Burkhard Arthur Seitz born MullerKlaus StrolAxel Mehnert
    • G02B7/02
    • G02B6/4226
    • The invention relates to an adjustment method, especially for adjusting optical or fibre optical components. Said method involves locally heating, in a defined manner, at least one first partial region of an adjustment region (106, 114) of an actuator (100, 200, 400), in such a way that compressive strains appear in at least one second partial region of the adjustment region of the actuator (100, 200, 400) as a result of the fact that said second partial region prevents the thermal expansion of the heated partial area. When the yielding point σF of the material of the partial region is achieved, said compressive strains lead to a plastic deformation of the heated partial region. The heated first partial region shrinks during the cooling process, triggering a defined geometry modification of the actuator (100, 200, 400) following the cooling process. Due to the fact that the at least one second partial region prevents the shrinking, tensile stresses appear in the previously heated first partial region and the compressive strains are frozen in the at least one second region. According to the invention, the regions of the actuator (100, 200, 300, 400), in which the tensile stresses or compressive strains are frozen following the cooling process, are brought to a critical temperature (Tk) in relation to the operational temperature range of the actuator, after the cooling process, at least until the flow processes of the material at said critical temperature are largely completed. A second adjustment process is then carried out. The invention also relates to an actuator which is especially suitable for carrying out the inventive method, and an optical component comprising one such actuator.
    • 本发明涉及一种调整方法,特别是调整光学或光纤组件的方法。 所述方法包括以限定的方式局部加热致动器(100,200,400)的调节区域(106,114)的至少一个第一部分区域,使压缩应变出现在至少一秒钟 由于所述第二部分区域防止加热的部分区域的热膨胀,所以致动器的调节区域的部分区域(100,200,400)。 当实现部分区域的材料的屈服点σF 时,所述压缩应变导致加热的部分区域的塑性变形。 加热的第一部分区域在冷却过程中收缩,在冷却过程之后触发致动器(100,200,400)的限定几何修改。 由于至少一个第二部分区域防止收缩,拉伸应力出现在先前加热的第一部分区域中,并且压缩应变在至少一个第二区域中被冻结。 根据本发明,在冷却过程之后将拉伸应力或压缩应变冷冻的致动器(100,200,300,400)的区域达到临界温度(T >)相对于致动器的操作温度范围,在冷却过程之后,至少直到材料在所述临界温度下的流程大部分完成。 然后进行第二调整过程。 本发明还涉及特别适于实施本发明的方法的致动器,以及包括一个这样的致动器的光学部件。
    • 9. 发明申请
    • Two-piece nose assembly with solid sleeve for optical subassembly
    • 两件式鼻子组件,带有用于光学组件的实心套筒
    • US20060002660A1
    • 2006-01-05
    • US11076835
    • 2005-03-10
    • Martin WisecarverAxel Mehnert
    • Martin WisecarverAxel Mehnert
    • G02B6/36
    • G02B6/4292
    • A two piece nose assembly for optoelectronic devices is disclosed. The assembly includes a first piece having a central bore and an annular alignment recess about the central bore. The first piece can be attached to a housing of the optical device. The assembly also includes an annular second piece designed to receive an optical connector and having an outside surface designed to interference fit with an inside surface of the annular alignment recess. The annular second piece has an inside surface having a hardness of at least 35 on the Rockwell “C” scale. The first piece has an annular groove on an outside surface thereof that defines a lip adjacent to the housing. The annular groove has a tapered edge that facilitates an optimized angle of incidence for a laser beam used to weld the first piece to the housing.
    • 公开了一种用于光电子器件的两件式鼻部组件。 组件包括具有中心孔的第一件和围绕中心孔的环形排列凹槽。 第一件可以连接到光学装置的外壳。 组件还包括设计成接收光学连接器并且具有设计成与环形对准凹槽的内表面干涉配合的外表面的环形第二件。 环形第二片具有在洛氏“C”刻度上具有至少35度的硬度的内表面。 第一件在其外表面上具有环形槽,其限定了与壳体相邻的唇缘。 环形槽具有锥形边缘,其有助于用于将第一件焊接到外壳的激光束的最佳入射角。