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P‐9.9: Design and Fabrication of Fine‐Pitch‐flexible‐transparent Pixelated‐Addressed Micro‐LED Arrays
Author(s) -
Xiong Zhaobin,
Keung CHO Wai,
Qin Lihuan,
Yu Zhiyi,
Liu Zhaojun
Publication year - 2018
Publication title -
sid symposium digest of technical papers
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.351
H-Index - 44
eISSN - 2168-0159
pISSN - 0097-966X
DOI - 10.1002/sdtp.12815
Subject(s) - dot pitch , planar , materials science , optoelectronics , fabrication , pixel , printed circuit board , led display , light emitting diode , computer hardware , computer science , electrical engineering , engineering , medicine , computer graphics (images) , alternative medicine , pathology , computer vision
This paper reported the design and fabrication of a fine pitch, flexible, transparent and pixelated addressable micro‐light‐emitting diode (Micro‐LED) array with a blue emission wavelength. The resolution of the array was 32 × 32. The monochromatic LED chip was directly bonded onto a custom‐designed printed circuit board made of flexible and transparent PET material. A blue flexible transparent Micro‐LED array with a pixel pitch of 0.6 mm was demonstrated. The LED controller was implemented by the custom made FPGA board. The controller controlled the driver board performing sequential row scan and multi‐column scan with constant sink current for each pixel of the Micro‐LED array. Compared with the conventional package of blue and white LED, Micro‐LED pixels have shorter rise time and higher response frequency. In recent years, with the rapid development of medical, micro display and communication network and other fields, integrated Micro‐LED arrays has become the urgent demand of the market. In addition to the characteristics of the planar LED micro arrays, the flexible and transparent Micro‐LED arrays can be applied on the object with curved surface, which has enlarged the application range of the Micro‐LED, and showed great potential for wearable devices, flexible sensors and biomedical applications.

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