Design of intelligent temperature control driving circuit for high power LED array

Fei Wang, Houda Zhou, Jingjing Liu, Luqiao Yin, Jianhua Zhang
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Abstract

A new type of high-power underwater lighting LED driver circuit is proposed. This design studies and designs the electrical performance stability, temperature regulation and LED array arrangement of LED array circuits. The temperature control mainly uses the temperature sensor module for detection, and the temperature feedback is timely performed by the MCU. When the temperature reaches the set temperature gradient threshold, the PWM is adjusted in time to adjust the current to achieve the brightness reduction. The purpose of heat generation is to adjust the temperature; the other point is mainly to design the voltage regulator circuit part. The stability of the circuit is very important for the LED array circuit and the peripheral circuit in this design, which also becomes the judgment circuit. One of the key indicators. This paper mainly designs the circuit stability for input voltage regulation and temperature control adjustment. Underwater illumination flux will also have certain requirements, LED array arrangement is also very important. Through the simulation experiment, the hexagonal array arrangement is adopted. For the above three points, a high-power LED driver circuit is developed. Finally, through the specific experiment to verify the operation of the circuit, the overall operation of the circuit is good, the dimming, voltage regulation is good and the efficiency is high, and the design goal is achieved.
大功率LED阵列智能温控驱动电路的设计
提出了一种新型大功率水下照明LED驱动电路。本设计对LED阵列电路的电气性能稳定性、温度调节和LED阵列排列进行了研究和设计。温度控制主要采用温度传感器模块进行检测,并由单片机及时进行温度反馈。当温度达到设定的温度梯度阈值时,及时调节PWM调节电流,实现亮度降低。产生热量的目的是调节温度;另一点主要是稳压电路部分的设计。电路的稳定性对于本次设计的LED阵列电路和外围电路都是非常重要的,同时也成为了判断电路。其中一个关键指标。本文主要设计了输入电压调节和温控调节电路的稳定性。水下照度光通量也会有一定的要求,LED阵列的排列也很重要。通过仿真实验,采用六边形阵列布置。针对以上三点,研制了大功率LED驱动电路。最后通过具体的实验来验证电路的运行情况,电路整体运行良好,调光、稳压效果好,效率高,达到了设计目标。
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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