Study on the performance of high-voltage deep ultraviolet light-emitting diodes

Author:

Hsu Yu-Hsuan,Peng Kang-Wei1,Lin Yi-HsinORCID,Tseng Ming-Chun2,Lin Su-Hui1,Shen Meng-Chun1,Wu Ting-Zhu1ORCID,Chen Zhong1,Horng Ray-Hua3ORCID

Affiliation:

1. Xiamen University

2. National Chung Hsing University

3. National Yang Ming Chiao Tung University

Abstract

This study fabricated high-voltage, low-current DUV-LEDs by connecting two devices. Due to better current spreading and the enhanced reflective mirror effect, high-voltage devices present a higher dynamic resistance, emission output power, wall-plug efficiency, external quantum efficiency, and view angle than single traditional devices. The study found that when the injection current was 320 mA, the maximum output power was exhibited at 47.1 mW in the HV sample. The maximum WPE and EQE of high-voltage DUV-LEDs were 2.46% and 5.48%, respectively. Noteworthily, the redshift wavelength shifted from 287.5 to 280.5 nm, less than the traditional device—from 278 to 282 nm. Further, due to the uniform emission patterns in high-voltage devices, the view angle presents 130 degrees at 100 mA input current. In this study, the high-voltage device showed more excellent properties than the traditional device. In particular, it presented a high potential application in high-voltage circuits, which can remove transformers to eliminate extra power consumption.

Funder

Ministry of Science and Technology, Taiwan

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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