基于web的纳米器件建模和电路仿真教育平台

Hao Zhuang, Jin He, W. Deng, Xiangyu Zhang, Xiaoan Zhu, Qingxing He, M. Chan
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引用次数: 2

摘要

本文介绍了一个基于web的纳米尺度非经典器件建模和电路仿真平台,特别是用于非经典CMOS器件的紧凑建模和电路性能预测。该平台基于程序库,包括模型代码文件。采用SPICE作为电路仿真框架,Verilog-A作为模型设计语言。平台根据用户输入甲板内容,运行嵌入设备和电路程序,根据仿真结果和用户的要求,在网页上生成数据文本和图形等几种类型的设备特性输出,供分析。通过平台配置和功能应用,给出了一些纳米器件的建模实例和电路仿真实例。研究表明,这种平台不仅解决了建模与仿真软件对计算机操作系统的依赖、软件和程序更新的复杂性等问题,而且可以帮助研究人员专注于器件物理和电路设计方面的研究,在网上展示研究成果,分享最新的研究成果或新技术,从而加速器件建模与电路设计技术的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Web-Based Education Platform for nanoscale device modeling and circuit simulation
This paper describes a web-based platform for nanoscale non-classical device modeling and circuit simulation, especially for non-classical CMOS device compact modeling and circuit performance prediction. This platform is based on program libraries, including model code files. We use SPICE as circuit simulation framework, and the Verilog-A as model design language. Based on the user input deck content, running embedding device and circuit programs, the platform produces several types of device characteristics output such as data texts and graphs on the web page for analysis, according to the simulation results and users' requests. Some nanoscale device modeling examples and the circuit simulation cases are demonstrated by the means of the platform configures and function application. It is shown that not only does this kind of platform address problems arising from the dependence on computer operating system of modeling and simulation software, the complexity of software and program update, but also helps researchers focus on their research on device physics and circuit design, display their research results and share latest research achievements or new technology online, which will accelerate the development of device modeling and circuit design technology in turn.
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