P/N非连续欧姆接触LED的优化设计

Hao Xu, Weiling Guo, Jie Deng, Jiaxin Chen, Dong Li, Jie Sun
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摘要

为了进一步提高LED的性能,寻求更好的LED电极结构,本文基于P/N电极不连续欧姆接触LED设计并制备了多种不同电极窗尺寸和间距的器件。通过比较5-500mA驱动电流下不同电极窗尺寸和间距对LED光电性能的影响,得到了性能最佳的电极窗尺寸和间距。本文的测试结果表明,当N电极窗口间距从45µm减小到37µm时,器件电压降低,光谱面积增大。当N电极窗口尺寸从5µm×17µm减小到5µm×10µm时,器件电压虽有所提高,但在150mA额定电流下的发光效率提高了4.9%。当P电极窗间距从20µm增加到30µm时,器件电压会增加,但在150mA测试电流下的发光效率提高了7.2%。虽然P电极窗的尺寸对器件的发光性能影响不大,但在一定程度上增大P电极窗的尺寸可以改善器件的电学特性。本文获得的提高器件发光性能的最佳结构为:N电极窗尺寸为5µm×10µm,间距为37µm;P电极窗尺寸为15µm×5µm,间距为30µm。
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Optimization of P/N discontinuous ohmic contact LED
To further improve the performance of the LED and seek a better electrode structure of LED, this paper designs and prepares a variety of devices with different electrode window sizes and spacings based on the P/N electrode discontinuous ohmic contact LED. By comparing the influence of different electrode window sizes and spacings on the photoelectric performance of LED under 5-500mA driving current, the best performance electrode window size and spacing are obtained. The test results in this paper show that when the N electrode window spacing is reduced from 45µm to 37µm, the device voltage decreases, and the spectral area increases. When the size of the N electrode window is reduced from 5µm×17µm to 5µm×10µm, although the voltage of the device has increased, the luminous efficiency under the rated current of 150mA is increased by 4.9%. When the distance between the P electrode windows is increased from 20µm to 30µm, the voltage of the device will increase, but the luminous efficiency under the test current of 150mA is increased by 7.2%. Although the size of the P electrode window has little effect on the light-emitting performance of the device, increasing the size of the P electrode window to a certain extent can improve the electrical characteristics of the device. The best structure obtained in this paper to improve the light-emitting performance of the device is: the size of the N electrode window is 5µm×10µm, and the spacing is 37µm; the size of the P electrode window is 15µm×5µm, and the spacing is 30µm.
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