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Design of a High Power Laser Diode Driver

机译:大功率激光二极管驱动器的设计

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摘要

Laser diodes are preferred light sources for compact non-scanning imaging laser radar systems due to their small volume and easiness to be integrated. Therefore, lots of present studies focus on research of modulation characteristics of high-power laser diodes. A high-frequency modulated driver for a compact non-scanning imaging laser radar system is described in this paper. It is based on linear constant current theory and can modulate a high power laser diode quasi-continuously. A high-speed operational amplifier is used to drive a power MOSFET, which can take full advantages of the power MOSFET-low driver current and good dynamic characteristics. In addition, an operational amplifier and PI (Proportion-Integration) control are applied in a negative feedback network to improve the current stability further. In order to avoid damaging the laser diode, a slow start circuit and over-current protection circuit have also been designed. The maximum current of the over-current protection circuit can be set according to the requirement. In addition, the power supply can also be switched between CW and QCW operating modes. When the high power semiconductor laser is modulated by large signal, some nonlinear effects will occur such as turn-on delay, relaxation oscillation and modulation chirp. Some theoretical analysis and experimental research on some nonlinear effects have also been done. Experimental results are consistent with theoretical analysis by using this driver for a 1W GaAs quantum well laser.
机译:激光二极管由于体积小且易于集成,因此是紧凑型非扫描成像激光雷达系统的首选光源。因此,目前的许多研究集中在研究大功率激光二极管的调制特性。本文介绍了一种用于紧凑型非扫描成像激光雷达系统的高频调制驱动器。它基于线性恒流理论,可以准连续调制大功率激光二极管。高速运算放大器用于驱动功率MOSFET,它可以充分利用功率MOSFET的优点:低驱动器电流和良好的动态特性。另外,在负反馈网络中应用了运算放大器和PI(比例积分)控制,以进一步提高电流稳定性。为了避免损坏激光二极管,还设计了慢启动电路和过电流保护电路。过流保护电路的最大电流可以根据需要设置。此外,电源还可以在CW和QCW操作模式之间切换。当高功率半导体激光器被大信号调制时,会发生一些非线性效应,例如导通延迟,张弛振荡和调制chi。还进行了一些非线性效应的理论分析和实验研究。通过将该驱动器用于1W GaAs量子阱激光器,实验结果与理论分析一致。

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