“60,000nits Full-color Native RGB Single Junction 3,386PPI Micro-OLED” by Hsu, Huang and Qiu – ACM SIGGRAPH HISTORY ARCHIVES

“60,000nits Full-color Native RGB Single Junction 3,386PPI Micro-OLED” by Hsu, Huang and Qiu

  • 2025 Posters_Hsu_60,000nits Full-color Native RGB Single Junction 3,386PPI Micro-OLED

Conference:


Type(s):


Title:

    60,000nits Full-color Native RGB Single Junction 3,386PPI Micro-OLED

Session/Category Title:

    Displays & Optics

Presenter(s)/Author(s):



Abstract:


    Developed uNEEDXR™ system achieves 60,000 nits brightness in micro-OLEDs on silicon, featuring high brightness, high pixel density, low power consumption, high contrast ratio, high color saturation, and tunable energy distribution (including viewing angle, wavelength, and bandwidth).

References:


    [1] Shih-Song Cheng, Paul C.-P. Chao, and Sheng-Chieh Huang. 2024. Ultra-High PPI Pixel Circuits for Micro Displays. Ph. D. Dissertation.
    [2] Shih-Song Cheng, Huei-Siou Chen, Yung-Ting Chen, Le-Jean Wei, Li-Min Huang, and Long-Ming Lu. 2018. P-216: Late-News Poster: UHPD Technology for Enhanced User Experience of Near-Eye Applications. SID Symposium Digest of Technical Papers 49, 1 (2018), 1872–1875. arXiv:https://sid.onlinelibrary.wiley.com/doi/pdf/10.1002/sdtp.12471
    [3] M. C. Gather, A. Köhnen, A. Falcou, H. Becker, and K. Meerholz. 2007. Solution-Processed Full-Color Polymer Organic Light-Emitting Diode Displays Fabricated by Direct Photolithography. Advanced Functional Materials 17, 2 (2007), 191–200. arXiv:https://advanced.onlinelibrary.wiley.com/doi/pdf/10.1002/adfm.200600651
    [4] Amalkumar Ghosh, Evan P. Donoghue, Ilyas Khayrullin, Tariq Ali, Ihor Wacyk, Kerry Tice, Fridrich Vazan, Laurie Sziklas, David Fellowes, and Russell Draper. 2016. 62-1: Invited Paper: Directly Patterened 2645 PPI Full Color OLED Microdisplay for Head Mounted Wearables. SID Symposium Digest of Technical Papers 47, 1 (2016), 837–840. arXiv:https://sid.onlinelibrary.wiley.com/doi/pdf/10.1002/sdtp.10805
    [5] Tung-Huei Ke, Epimitheas Georgitzikis, Gema Molina Alvarez, Erwin Vandenplas, Luis Moreno Hagelsieb, Hylke Akkerman, Santhosh Shanmugam, Albert van Breemen, Paul Heremans, and Pawel E. Malinowski. 2021a. 55.1: Invited Paper: Photolithographic patterning of OLED and OPD for invisible sensor integration in mobile display. SID Symposium Digest of Technical Papers 52, S1 (2021), 398–401. arXiv:https://sid.onlinelibrary.wiley.com/doi/pdf/10.1002/sdtp.14500
    [6] Tung-Huei Ke, Calvin Mona Sandeheng, Gema Molina Alvarez, Erwin Vandenplas, Rossa Mac Ciarnain, Pawel E. Malinowski, Jan Genoe, and Paul Heremans. 2021b. 55.1: Invited Paper: FMM-free OLED Manufacturing Enabled by Photolithographic Patterning Processes. SID Symposium Digest of Technical Papers 52, S2 (2021), 655–658. arXiv:https://sid.onlinelibrary.wiley.com/doi/pdf/10.1002/sdtp.15238
    [7] Yun-Han LEE, Tao ZHAN, and Shin-Tson WU. 2019. Prospects and challenges in augmented reality displays. Virtual Reality & Intelligent Hardware 1, 1 (2019), 10–20.
    [8] Paweł E. Malinowski, TungHuei Ke, Atsushi Nakamura, Ting-Yu Chang, Pritesh Gokhale, Sören Steudel, Dimitri Janssen, Yoshitaka Kamochi, Ichiro Koyama, Yu Iwai, and Paul Heremans. 2015. 16.3: True-Color 640 ppi OLED Arrays Patterned by CA i-line Photolithography. SID Symposium Digest of Technical Papers 46, 1 (2015), 215–218. arXiv:https://sid.onlinelibrary.wiley.com/doi/pdf/10.1002/sdtp.10332
    [9] Pawel E. Malinowski, Atsushi Nakamura, Dimitri Janssen, Yoshitaka Kamochi, Ichiro Koyama, Yu Iwai, Anna Stefaniuk, Ewelina Wilenska, Caterin Salas Redondo, David Cheyns, Soeren Steudel, and Paul Heremans. 2014. Photolithographic patterning of organic photodetectors with a non-fluorinated photoresist system. Organic Electronics 15, 10 (2014), 2355–2359.
    [10] Huiqing Pang, Lech Michalski, Michael S. Weaver, Ruiqing Ma, and Julie J. Brown. 2014. Thermal behavior and indirect life test of large-area OLED lighting panels. Journal of Solid State Lighting 1, 1 (2014), 7.


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