红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2015年
8期
2417-2422
,共6页
王昕%许英杰%范贤光%王海涛%吴景林%左勇
王昕%許英傑%範賢光%王海濤%吳景林%左勇
왕흔%허영걸%범현광%왕해도%오경림%좌용
脉冲注入式%U-I特性%高功率型LED%热学特性测试%B样条
脈遲註入式%U-I特性%高功率型LED%熱學特性測試%B樣條
맥충주입식%U-I특성%고공솔형LED%열학특성측시%B양조
pulse injection%U-I characteristics%high power LED%thermal performance testing%B-spline
热学特性是影响功率型LED光学和电学特性的主要因素之一,设计了一套基于脉冲式U-I特性的功率型LED热学特性测试系统,可以测试在不同结温下LED工作电流与正向电压的关系,从而获得LED的热学特性参数。该系统通过产生窄脉冲电流来驱动LED ,对其峰值时的电压电流进行采样,同时控制和采集LED的热沉温度,从而获得不同温度下LED的U-I特性曲线。与其他U-I测试系统相比,文中采用了窄脉冲(1μs )工作电流,LED器件PN结区处于发热与散热的交替过程,不会造成大的热积累,大大提高了测量精度。实验中,对某功率型LED进行了测试,获得了该器件的电压、电流和结温特性曲线,并利用B样条建立该器件的U-I-T模型,进而实现了对其结温的实时在线检测。
熱學特性是影響功率型LED光學和電學特性的主要因素之一,設計瞭一套基于脈遲式U-I特性的功率型LED熱學特性測試繫統,可以測試在不同結溫下LED工作電流與正嚮電壓的關繫,從而穫得LED的熱學特性參數。該繫統通過產生窄脈遲電流來驅動LED ,對其峰值時的電壓電流進行採樣,同時控製和採集LED的熱沉溫度,從而穫得不同溫度下LED的U-I特性麯線。與其他U-I測試繫統相比,文中採用瞭窄脈遲(1μs )工作電流,LED器件PN結區處于髮熱與散熱的交替過程,不會造成大的熱積纍,大大提高瞭測量精度。實驗中,對某功率型LED進行瞭測試,穫得瞭該器件的電壓、電流和結溫特性麯線,併利用B樣條建立該器件的U-I-T模型,進而實現瞭對其結溫的實時在線檢測。
열학특성시영향공솔형LED광학화전학특성적주요인소지일,설계료일투기우맥충식U-I특성적공솔형LED열학특성측시계통,가이측시재불동결온하LED공작전류여정향전압적관계,종이획득LED적열학특성삼수。해계통통과산생착맥충전류래구동LED ,대기봉치시적전압전류진행채양,동시공제화채집LED적열침온도,종이획득불동온도하LED적U-I특성곡선。여기타U-I측시계통상비,문중채용료착맥충(1μs )공작전류,LED기건PN결구처우발열여산열적교체과정,불회조성대적열적루,대대제고료측량정도。실험중,대모공솔형LED진행료측시,획득료해기건적전압、전류화결온특성곡선,병이용B양조건립해기건적U-I-T모형,진이실현료대기결온적실시재선검측。
Thermal performance is one of the main factors which affect the optical and electrical performance of high power LED. The thermal performance testing system for high power LEDs based on voltage-current characteristics with pulse injection was designed in this paper, which can test the relationship between the operating current and forward voltage of LED under different junction temperatures, thereby obtaining LED thermal characteristics parameters. The system worked by generating a controlled narrow pulse current to drive the LED, and sampling the peaks of voltage and current of LEDs with LED heat sink temperature control and acquisition, thereby obtaining the voltage-current characteristic curve in different junction temperatures. Compared with other voltage-current testing systems, the designed system adapts the narrow pulse duty cycle (1μs), so the PN junction of LED devices is always in the process of alternately heating and cooling, which can avoid large heat accumulation and greatly improve the accuracy of measurement. In the experiment, a power LED device was tested by the system and the voltage-current-temperature curve was obtained. Then the B-spline based U-I-T model of the LED was established, so the real-time online detection of LED device was achieved.