Electrostatic discharge protection of MiniLED backlight units on glass
Active matrix (AM) MiniLED backlight units (BLU) on glass substrate is developed to solve severe problems of MiniLED on PCB including insufficient heat dissipation and worse swelling and shrinking performance, as well as limited zone number. However, the MiniLED on glass is observed to possess a wea...
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Elsevier
2021
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oai:doaj.org-article:feed749714fd4b98b5828ccf6d4432292021-11-26T04:33:19ZElectrostatic discharge protection of MiniLED backlight units on glass2352-484710.1016/j.egyr.2021.08.046https://doaj.org/article/feed749714fd4b98b5828ccf6d4432292021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S235248472100648Xhttps://doaj.org/toc/2352-4847Active matrix (AM) MiniLED backlight units (BLU) on glass substrate is developed to solve severe problems of MiniLED on PCB including insufficient heat dissipation and worse swelling and shrinking performance, as well as limited zone number. However, the MiniLED on glass is observed to possess a weak ability of anti-electrostatic discharge (ESD). The MiniLEDs on glass developed by us (short for MLED) are demonstrated to have a powerful ability of anti-ESD by the means of optimization of peripheral circuit design and metal and dielectric materials, also by the improvements of surroundings of module assembly factory. Consequently, the failure ratio of reliability analysis of MLED is observed to be decreased drastically after the improvements of the ability of anti-ESD.Juncheng XiaoFeng ZhengJiayang FeiJi LiQuansheng LiuWenxue HuoJingwen ZhuangWenlin MeiShengdong ZhangElsevierarticleMiniLED backlight units on glassReliability of MiniLEDESD protectionElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENEnergy Reports, Vol 7, Iss , Pp 276-282 (2021) |
institution |
DOAJ |
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DOAJ |
language |
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topic |
MiniLED backlight units on glass Reliability of MiniLED ESD protection Electrical engineering. Electronics. Nuclear engineering TK1-9971 |
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MiniLED backlight units on glass Reliability of MiniLED ESD protection Electrical engineering. Electronics. Nuclear engineering TK1-9971 Juncheng Xiao Feng Zheng Jiayang Fei Ji Li Quansheng Liu Wenxue Huo Jingwen Zhuang Wenlin Mei Shengdong Zhang Electrostatic discharge protection of MiniLED backlight units on glass |
description |
Active matrix (AM) MiniLED backlight units (BLU) on glass substrate is developed to solve severe problems of MiniLED on PCB including insufficient heat dissipation and worse swelling and shrinking performance, as well as limited zone number. However, the MiniLED on glass is observed to possess a weak ability of anti-electrostatic discharge (ESD). The MiniLEDs on glass developed by us (short for MLED) are demonstrated to have a powerful ability of anti-ESD by the means of optimization of peripheral circuit design and metal and dielectric materials, also by the improvements of surroundings of module assembly factory. Consequently, the failure ratio of reliability analysis of MLED is observed to be decreased drastically after the improvements of the ability of anti-ESD. |
format |
article |
author |
Juncheng Xiao Feng Zheng Jiayang Fei Ji Li Quansheng Liu Wenxue Huo Jingwen Zhuang Wenlin Mei Shengdong Zhang |
author_facet |
Juncheng Xiao Feng Zheng Jiayang Fei Ji Li Quansheng Liu Wenxue Huo Jingwen Zhuang Wenlin Mei Shengdong Zhang |
author_sort |
Juncheng Xiao |
title |
Electrostatic discharge protection of MiniLED backlight units on glass |
title_short |
Electrostatic discharge protection of MiniLED backlight units on glass |
title_full |
Electrostatic discharge protection of MiniLED backlight units on glass |
title_fullStr |
Electrostatic discharge protection of MiniLED backlight units on glass |
title_full_unstemmed |
Electrostatic discharge protection of MiniLED backlight units on glass |
title_sort |
electrostatic discharge protection of miniled backlight units on glass |
publisher |
Elsevier |
publishDate |
2021 |
url |
https://doaj.org/article/feed749714fd4b98b5828ccf6d443229 |
work_keys_str_mv |
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_version_ |
1718409879856611328 |