4.6 Article

All Silicon Microdisplay Using Efficient Hot-Carrier Electroluminescence in Standard 0.18μm CMOS Technology

Journal

IEEE ELECTRON DEVICE LETTERS
Volume 42, Issue 4, Pages 541-544

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/LED.2021.3059781

Keywords

AMLEDs; CMOS; hot carrier electroluminescence; microdisplay; optical power efficiency

Funding

  1. National Key Research and Development Program of China [2018YFE0181500]
  2. National Natural Science Foundation of China [61574028]
  3. Sichuan Province's Science Fund for Distinguished Young Scholars [2020JDJQ0022]

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The all-CMOS monolithic microdisplay technology has been a focus of research, with improvements in optical power efficiency achieved through the use of AMLEDs. The technology has significant potential for applications in near-to-eye displays and head mounted displays.
All-CMOS monolithic microdisplay technologies have been attracting attention due to their direct integration of light-emitting pixel arrays and driving circuits on a single silicon substrate. Improvements to optical power efficiency have been a hot spot for all-silicon microdisplay technologies. MOS-like gate-control structure avalanche-mode light-emitting diodes (AMLEDs) that employ hot-carrier electroluminescence to produce light emission are used to enhance the optical power efficiency of pixel units. A semi-active matrix mode is used to reduce the power consumption of driver circuits. A 100 x 100 pixel array with an all-CMOS monolithic microdisplay system is demonstrated using standard 0.18 mu m CMOS technology. The optical emission power and the breakdown voltage of the proposed AMLEDs are increased by 139.2% and reduced by more than 67%, respectively. The optical-power efficiency is 5.98 x 10(-7) which is comparable to the best reported so far in all-CMOS monolithic microdisplay chip. With its significant optical-power efficiency, the proposed microdisplay technology has broad application prospects in near-to-eye display and head mounted displays (HMDs).

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