Thermoelectric Control of Deep UV LED to Improve Optical Performance

P. Fredes, U. Raff, E. Gramsch, J. Cuenca, J. Pascal
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Abstract

A thermoelectric control system using thermoelectric cooler devices (TEC) combined with an aluminum heat dissipater and a fan heat extractor allows improving considerably the optical performance of deep UV LEDs (285 nm) operating at desired temperatures. A proportional, integral, and differential controller (PID) control technique was implemented to control the voltage in the TEC devices, and therefore, the desired range of temperatures can be achieved. The PID parameters are obtained with computational simulations based on physical models and experimental data recordings of the temperature, using a thermistor sensor for the temperature measurements and SiC photodiode with UV enhanced system for the optical power measurements. The experimental data show that decreasing the temperature of the UV-C LED light source using a TEC increases the optical output power, while it has been shown that the lifetime of the LED devices can be improved.
提高深紫外LED光学性能的热电控制
热电控制系统使用热电冷却器(TEC)与铝散热器和风扇热提取器相结合,可以大大提高在所需温度下工作的深紫外led (285 nm)的光学性能。采用比例、积分和微分控制器(PID)控制技术来控制TEC器件中的电压,从而实现所需的温度范围。基于物理模型和温度实验数据记录,采用热敏电阻传感器进行温度测量,SiC光电二极管与UV增强系统进行光功率测量,通过计算模拟得到PID参数。实验数据表明,使用TEC降低UV-C LED光源的温度可以提高光输出功率,同时可以提高LED器件的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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