Back to Search Start Over

Development of low-temperature polycrystalline silicon process and novel 2T2C driving circuits for electric paper.

Authors :
Jin, Yu
Shen, Ying
Xu, Wen-Jie
Fan, Wen-Zhi
Xu, Lei
Gao, Xiao-Yu
Wu, Yong
Zhou, Zhi-Yi
Gu, Wei-Jie
Yu, Dong-Liang
Sun, Jian-Qiu
Ke, Li-Juan
Zhang, Wei-Bin
Xu, Wei-Qi
Xu, Feng-Ying
Source :
Displays. Sep2024, Vol. 84, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

The 2T2C circuits based on LTPS-TFTs adopts a small TFT W/L to reduce switch error and effectively avoid the impact of I OFF , acting as driving circuits for e-paper with perfect image sticking performance. [Display omitted] • LTPS-TFTs with small W/L is adopted in e-paper to reduce switch error, and thus significantly improving image sticking performance. • LTPS-TFTs with extremely low off-state leakage current (I OFF) even at a large source-drain voltage (V DS) of 30 V were obtained through detailed explorations of LTPS process technology. • The aging test results of the LTPS-TFTs exhibits a new physical phenomenon, that is, the I OFF of the LTPS-TFTs has a strict matching characteristic with the aging direction. • A novel 2T2C driving circuit for the e-paper was reported to effectively avoid the adverse effects of I OFF on the frame holding period. In this work, we systematically investigate low-temperature polycrystalline silicon (LTPS)-based driving circuits of electronic paper for the aim of adopting small width/length ratio (W/L) of LTPS-based thin film transistors (TFTs) to reduce switch error and thus improve image sticking. Firstly, LTPS-TFTs with extremely low off-state leakage current (I OFF) even at a large source-drain voltage (V DS) of 30 V were obtained through detailed explorations of LTPS process technology. Meanwhile, the high on-state current (I ON) of LTPS-TFTs also meet the requirements of fast signal writing to the storage capacitor due to their extremely high field-effect mobility (approximately 100 cm2/V⋅s), making it possible to fabricate TFTs with relatively small W/L, thereby minimizing switch error. The I D -V D test results reveal that the produced LTPS-TFTs can effectively withstand the maximum voltage difference of 30 V during product operation. Subsequently, the optimal W/L of the LTPS-TFT was determined through experimental results. Then, reliability test was conducted on the obtained LTPS-TFTs, revealing that the threshold voltage (V TH) of the LTPS-TFTs shifted by 0.08 V after 7200 s under negative bias temperature stress (NBTS), and only by 0.19 V under positive bias temperature stress (PBTS). The aging test results of the aforementioned LTPS-TFTs exhibits a new physical phenomenon, that is, the I OFF of the LTPS-TFTs has a strict matching characteristic with the aging direction. Next, we proposed a novel 2T2C driving circuit for the e-paper, which can effectively avoid the adverse effects of I OFF on the frame holding period, and plotted it into an array layout. Finally, we combined the optimal fabricating process of the LTPS-TFTs with the 2T2C driving circuit design scheme to produce an e-paper with outstanding image sticking performance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01419382
Volume :
84
Database :
Academic Search Index
Journal :
Displays
Publication Type :
Academic Journal
Accession number :
179501506
Full Text :
https://doi.org/10.1016/j.displa.2024.102808