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A four-quadrant beam position sensor for applications with frequency modulated IR laser diodes

机译:四象限光束位置传感器,用于带调频红外激光二极管的应用

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The use of IR laser diodes associated to modulation spectroscopy is increasing in importance for many environmental monitoring applications. However, small and chep sensors are required for the alignment of the involved low power laser beams. Polymer PVDF foils offered the possibility to develop high sensitivity, small dimension, pyroelectric detectors for mid IR laser applications. This paper presents a new position sensitive quadrant detector with a total active area of 4X4 mm, directly connected to a transimpedance amplifier and a band pass filter. The four analog signals from the sensor are sampled, filtered and amplifed with a 12 bit data acquisition board, equipped with a DSP that gives the real time rms values and standard deviation of the difference signals between two diagonal elements. The spot centroid of diode laser emitting peak powers of about 20 #mu#W is determined with a beam position uncertainty of 20 #mu#m, corresponding to 5percent of the beam spot. For this application the overall sensitivity was 3000 V/W and the modulation frequency 85 Hz. The uncertainty is reduced to 0.5percent with 200 #mu#W diode power.
机译:对于许多环境监测应用而言,与调制光谱法相关的IR激光二极管的使用正变得越来越重要。但是,对于对准的低功率激光束,需要小型且稳定的传感器。聚合物PVDF箔为中红外激光应用提供了开发高灵敏度,小尺寸热释电检测器的可能性。本文提出了一种新的位置敏感象限检测器,其总有效面积为4X4 mm,直接连接到跨阻放大器和带通滤波器。来自传感器的四个模拟信号通过一个12位的数据采集板进行采样,滤波和放大,该板具有一个DSP,该DSP给出两个对角线元素之间的实时有效值和差分信号的标准偏差。确定发射峰值功率约为20#mu#W的二极管激光器的光斑质心,其光束位置不确定性为20#mu#m,相当于光束点的5%。对于此应用,总灵敏度为3000 V / W,调制频率为85 Hz。使用200#mu#W二极管功率,不确定度降低到0.5%。

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