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Reliable high power diode lasers: thermo-mechanical fatigue aspects

机译:可靠的大功率二极管激光器:热机械疲劳方面

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High power water-cooled diode lasers are finding increasing demand in biomedical, cosmetic and industrial applications, where repetitive cw (continuous wave) and pulsed cw operation modes are required. When operating in such modes, the lasers experience numerous complete thermal cycles between "cold" heat sink temperature and the "hot" temperature typical of thermally equilibrated cw operation. It is clearly demonstrated that the main failure mechanism directly linked to repetitive cw operation is thermo-mechanical fatigue of the solder joints adjacent to the laser bars, especially when "soft" solders are used. Analyses of the bonding interfaces were carried out using scanning electron microscopy. It was observed that intermetallic compounds, formed already during the bonding process, lead to the solders fatigue both on the p- and n-side of the laser bar. Fatigue failure of solder joints in repetitive cw operation reduces useful lifetime of the stacks to hundreds hours, in comparison with more than 10,000 hours lifetime typically demonstrated in commonly adopted non-stop cw reliability testing programs. It is shown, that proper selection of package materials and solders, careful design of fatigue sensitive parts and burn-in screening in the hard pulse operation mode allow considerable increase of lifetime and reliability, without compromising the device efficiency, optical power density and compactness.
机译:大功率水冷二极管激光器在生物医学,化妆品和工业应用中发现了不断增长的需求,在这些应用中需要重复的连续波(连续波)和脉冲连续波操作模式。当以这种模式运行时,激光器在“冷”散热器温度和典型的热平衡CW操作的“热”温度之间经历许多完整的热循环。可以清楚地表明,直接与重复连续操作有关的主要故障机理是与激光棒相邻的焊点的热机械疲劳,特别是在使用“软”焊料时。使用扫描电子显微镜进行键合界面的分析。可以观察到,在焊接过程中已经形成的金属间化合物会导致焊料在激光棒的p侧和n侧疲劳。与通常采用的连续CW可靠性测试程序中通常证明的10,000多小时的寿命相比,在连续的CW操作中焊点的疲劳失效将烟囱的使用寿命缩短到数百小时。结果表明,正确选择包装材料和焊料,精心设计疲劳敏感部件以及在硬脉冲工作模式下进行烧屏测试,可以在不影响器件效率,光功率密度和紧凑性的前提下,显着提高其使用寿命和可靠性。

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