← 返回 JSSC 论文列表
📄 下载 JSSC 原文 PDF
JSSC 2014第2期Digital CircuitsNeural Network Accelerator

Positive-Feedback Level Shifter Logic for Large-Area Electronics Daniele Raiteri, Student Member , IEEE, Pieter van Lieshout, Arthur

提出正反馈电平转换器逻辑,用于有机或金属氧化物半导体的大面积电子器件设计,显著提高增益和噪声容限。
增益从13 dB(传统Zero-Vgs逆变器)提升至76 dB(PLS逆变器),噪声容限从2.58 V提升至6.82 V(20 V电源)
正反馈电平转换器大面积电子器件有机半导体金属氧化物半导体数字电路
创新点1:正反馈电平转换器(PLS)逻辑设计,通过引入正反馈机制显著提升增益(从传统Zero-Vgs逆变器的13 dB提升至76 dB),解决了大尺寸电子器件中因TFT工艺变异导致的信号衰减问题,属于电路结构创新。
创新点2:高增益和对称输入输出特性,即使在TFT工艺存在显著变异的情况下,仍能保持稳定的噪声容限(噪声容限从2.58 V提升至6.82 V),显著提高了电路的可靠性和鲁棒性,属于性能优化创新。
创新点3:自动校正工艺变化的控制电压设计,通过线性控制电路在供电范围内动态调整控制电压,实现了对工艺变异的自适应补偿,属于系统级创新。
创新点4:成功实现240级PLS移位寄存器,集成13,440个有机TFT,创下有机电路晶体管数量的最高纪录,展示了该技术在复杂大尺寸电子系统(如柔性显示和大面积传感表面)中的应用潜力,属于规模集成创新。
Abstract
Positive-feedback Level Shifter (PLS) logic is pro- posed in this paper for the design of unipolar digital circuits manufactured at low temperature on foil using organic or metal-oxide semiconductors. Pos itive feedback and a suitable control voltage provide high gain and a symmetrical input-output characteristic even in presence of large TFT variations, enabling robust digital design. The measured gain improves from 13 dB in traditional Zero-Vgs inverters to 76 dB in PLS inverters; the average noise margin increases from 2.58 V (Zero-Vgs) to 6.82 V (PLS) at 20 V supply. Assuming that a positive noise margin for each gate is the only requirement to obtain a fully functional digital circuit, the maximum number of logic gates compatible with a 90% yield improves from 200 Zero-Vgs inverters to above 24 million PLS inverters. A 240-stage PLS shift-register exploiting 13,440 organic TFTs is indeed successfully measured. This is to the authors’ knowledge the organic circuit with the highest transistor count ever demonstrated. The con trol voltage, always within the supply rails, enables automatic cor rection of the process variations using linear control circuits. The proposed approach will enable a strong increase in the complexity of large-area electronics on foil, with great bene fit to applications like flexible displays and large-area sensing surfaces.