发光二极管
材料科学
光电子学
二极管
薄脆饼
波长
结温
氮化物
光学
当前拥挤
热阻
光功率
最大功率原理
功率(物理)
电流(流体)
热的
激光器
复合材料
电气工程
图层(电子)
气象学
工程类
物理
量子力学
作者
V. Adivarahan,Shuai Wu,Wenhong Sun,V. Mandavilli,M. Shatalov,G. Simin,Jun Yang,H. P. Maruska,M. Asif Khan
摘要
Using a micro-pixel design, we report the demonstration of high-power deep UV AlGaN-based light-emitting diodes (LEDs) with peak emission wavelength at 280nm. The design comes in response to lateral current crowding problems, which severely limit the maximum possible active area and the overall performance of ordinary square geometry III-nitride LEDs fabricated on insulating substrates. It is shown that the interconnected micro-pixel geometry significantly reduces both the device series resistance and the thermal impedance, thereby improving heat dissipation and increasing the maximum optical power. The design imparts ever-increasing advantages as the operating wavelength decreases (and the aluminum content increases). The optical power of the 10×10pixel array with an effective area of 222×222μm2 only saturates at dc currents higher than 200mA, which is nearly 50% greater than found for a square geometry LED with identical junction area, fabricated from the same wafer. These 280nm LEDs demonstrated a high on-wafer cw power of 145μW with 200mA of pumping current.
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