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High-power IR Laser in SMT package

机译:采用SMT封装的大功率IR激光器

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Laser dies in an optical power range of 1-3 Watts are widely assembled in popular TO- packages. TO-packages suffer from high thermal resistance and limited output power. Bad thermal contact between circuit boards and TO-devices can cause overheating of laser chips, significantly reducing the operating life time. We developed a compact high heat-load SMT package for an optical power up to 7 Watts in CW operation with good life time results. The new package for high power laser chips combines highly efficient heat dissipation with Surface-mount technology. A Direct-Bonded-Copper (DBC) substrate acts as a base plate for the laser chip and heat sink. The attached frame is used for electrical contacting and acts as beam reflector where the laser light is reflected at a 45° mirror. In the application the DBC base plate of the SMT-Laser is directly soldered to a Metal-Core-PCB by reflow soldering. The overall thermal resistance from laser chip to the bottom of a MC-PCB was measured as low as 2.5 K/W. The device placement process can be operated by modern high-speed mounting equipment. The direct link between device and MC-PCB allows CW laser operation up to 6-7 watts at wavelengths of 808nm to 940nm without facing any overheating symptom like thermal roll over. The device is suitable for CW and QCW operation. In pulsed operation short rise and fall times of <2ns have been demonstrated. New application fields like infrared illumination for sensing purposes in the automotive industry and 3D imaging systems could be opened by this new technology.
机译:激光功率为1-3瓦的激光管芯广泛地组装在流行的TO封装中。 TO封装具有较高的热阻和有限的输出功率。电路板和TO器件之间的不良热接触会导致激光芯片过热,从而大大缩短使用寿命。我们开发了一种紧凑的高热负荷SMT封装,在连续波操作中可提供高达7瓦的光功率,并具有良好的使用寿命。用于高功率激光芯片的新封装将高效散热与表面贴装技术相结合。直接键合铜(DBC)基板充当激光芯片和散热器的基板。附接的框架用于电接触,并用作光束反射器,在此处激光在45°反射镜处反射。在该应用中,SMT激光器的DBC底板通过回流焊接直接焊接到Metal-Core-PCB上。从激光芯片到MC-PCB底部的总热阻测得低至2.5 K / W。可以通过现代高速安装设备来操作设备放置过程。器件与MC-PCB之间的直接联系使CW激光器在808nm至940nm的波长下可运行高达6-7瓦的功率,而不会遇到诸如热翻转之类的过热症状。该设备适用于CW和QCW操作。在脉冲操作中,已经证明了小于2ns的短上升和下降时间。这项新技术可以开拓新的应用领域,例如汽车工业中用于传感目的的红外照明和3D成像系统。

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