Effects of unit size on current density and illuminance of micro-LED-array
A 300 μm×300 μm light emitting diode(LED) chip is divided into nine 80 μm×80 μm units with 30 μm spacing between adjacent ones. After arraying, the total saturation light output power and the maximum injection current are enhanced by 5.19 times and nearly 7 times, respectively. In addition, the test...
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Published in: | Optoelectronics letters Vol. 13; no. 2; pp. 84 - 89 |
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Main Author: | |
Format: | Journal Article |
Language: | English |
Published: |
Tianjin
Tianjin University of Technology
01-03-2017
Springer Nature B.V |
Subjects: | |
Online Access: | Get full text |
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Summary: | A 300 μm×300 μm light emitting diode(LED) chip is divided into nine 80 μm×80 μm units with 30 μm spacing between adjacent ones. After arraying, the total saturation light output power and the maximum injection current are enhanced by 5.19 times and nearly 7 times, respectively. In addition, the test results demonstrate that the illuminance uniformity on the receiving surface reaches the optimum when the spacing between the arrays is equal to the maximum flat condition. The larger the number of arrays, the greater the area with uniform illuminance on the receiving surface. |
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Bibliography: | 12-1370/TN A 300 μm×300 μm light emitting diode(LED) chip is divided into nine 80 μm×80 μm units with 30 μm spacing between adjacent ones. After arraying, the total saturation light output power and the maximum injection current are enhanced by 5.19 times and nearly 7 times, respectively. In addition, the test results demonstrate that the illuminance uniformity on the receiving surface reaches the optimum when the spacing between the arrays is equal to the maximum flat condition. The larger the number of arrays, the greater the area with uniform illuminance on the receiving surface. spacing saturation uniformity receiving reaches chips illumination sustain maintain covering |
ISSN: | 1673-1905 1993-5013 |
DOI: | 10.1007/s11801-017-7002-0 |