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Design and Simulation of a 6-Bit Successive-Approximation ADC Using Modeled Organic Thin-Film Transistors

机译:使用建模有机薄膜晶体管的6位连续近似ADC的设计和仿真

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摘要

We have demonstrated a method for using proper models of pentacene P-channel and fullerene N-channel thin-film transistors (TFTs) in order to design and simulate organic integrated circuits. Initially, the transistors were fabricated, and we measured their main physical and electrical parameters. Then, these organic TFTs (OTFTs) were modeled with support of an organic process design kit (OPDK) added in Cadence. The key specifications of the modeled elements were extracted from measured data, whereas the fitting ones were elected to replicate experimental curves. The simulating process proves that frequency responses of the TFTs cover all biosignal frequency ranges; hence, it is reasonable to deploy the elements to design integrated circuits used in biomedical applications. Complying with complementary rules, the organic circuits work properly, including logic gates, flip-flops, comparators, and analog-to-digital converters (ADCs) as well. The proposed successive-approximation-register (SAR) ADC consumes a power of 883.7 µW and achieves an ENOB of 5.05 bits, a SNR of 32.17 dB at a supply voltage of 10 V, and a sampling frequency of about 2 KHz.
机译:我们已经证明了一种使用适当型号的五苯P沟道和富勒烯N沟道薄膜晶体管(TFT)的方法,以设计和模拟有机集成电路。最初,制造晶体管,并测量它们的主要物理和电气参数。然后,这些有机TFT(OTFTS)被建模,支持在节奏中添加有机过程设计套件(OPDK)。从测量数据提取建模元素的关键规格,而拟合元素被选为复制实验曲线。模拟过程证明了TFT的频率响应涵盖了所有生物频率范围;因此,部署用于设计生物医学应用中使用的集成电路的元素是合理的。符合互补规则,有机电路的工作正常,包括逻辑门,触发器,比较器和模数转换器(ADC)。所提出的连续近似寄存器(SAR)ADC消耗883.7μW的功率,并实现5.05位的eNOB,SNR为32.17dB,电源电压为10V,采样频率为约2kHz。

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