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Design and Optimization of Novel Shaped FinFET

机译:新型FINFET的设计与优化

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摘要

A novel high-performance and miniaturized fin-shaped field effect transistor has been proposed which has been named as rectzoidal (rectz) because of its origin from the existing rectangular (rect) and trapezoidal (trap) structures. The rationale behind proposing this structure is to sustain the integration of millions of transistors on integrated circuits (ICs), further utilizing these scaled transistors in advanced processors of leading semiconductor industries. The work presented here is divided into two phases: first phase presents the proposed transistor design at 20nm gate length and its comparative simulation analysis with the previous rect and trap transistor structures in terms of short channel effects and other analog and RF parameters like transconductance, output conductance, intrinsic gain, gate capacitance, unity gain frequency etc. using Cogenda three-dimensional Technology Computer-Aided Design (TCAD) tool. In the subsequent phase, i.e., optimization phase, artificial neural network was trained with design parameters of proposed structure and fitness function was formulated using weighted sum approach. Evolutionary and swarm-based optimization algorithms have been applied to obtain optimum design parameters of proposed transistor structure corresponding to minimum fitness function value. Results obtained through these optimizers are in good consistence with TCAD simulation results.
机译:已经提出了一种新型高性能和小型化鳍形场效应晶体管,其被命名为循环(RECTZ),因为其起源于现有的矩形(RECT)和梯形(疏水阀)结构。提出这种结构的基本原理是为了维持数百万晶体管对集成电路(IC)的集成,进一步利用领先的半导体行业的先进处理器中的这些缩放晶体管。此处呈现的工作分为两个阶段:第一阶段在20nm栅极长度上呈现所提出的晶体管设计及其在短频道效应和其他模拟和RF参数等矩阵效果和跨导,输出等类似的螺旋晶体管结构的比较模拟分析。使用Cogenda三维技术计算机辅助设计(TCAD)工具进行电导,内在增益,栅极电容,Unity增益频率等。在随后的阶段,即优化阶段,人工神经网络培训,具有所提出的结构参数,使用加权和方法配制了健身功能。已经应用了进化和基于群的优化算法,以获得对应于最小健身功能值的所提出的晶体管结构的最佳设计参数。通过这些优化器获得的结果与TCAD仿真结果良好。

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