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Circuit design and routing for field programmable analog arrays.

机译:现场可编程模拟阵列的电路设计和布线。

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摘要

Accurate, low-cost, rapid-prototyping techniques for analog circuits have been a long awaited dream for analog designers. However, due to the inherent nature of analog system, design automation in analog domain is very difficult to realize, and field programmable analog arrays (FPAA) have not achieved the same success as FPGAs in the digital domain. This results from several factors, including the lack of supporting CAD tools, small circuit density, low speed and significant parasitic effect from the fixed routing wires. These factors are all related to each other, making the design of a high performance FPAA a multi-dimension problem. Among others, a critical reason behind these difficulties is the non-ideal programming technology, which contributes a large portion of parasitics into the sensitive analog system, thus degrades the system performance.; This work is trying to attack these difficulties with development of a laser field programmable analog array (LFPAA). There are two parts of work involved, routing for FPAA and analog IC building block design. To facilitate the router development and provide a platform for FPAA application development, a generic arrayed based FPAA architecture and a flexible CAB topology were proposed. The routing algorithm was based on a modified and improved pathfinder negotiated routing algorithm, and was implemented in C for a prototype FPAA. The parasitic constraints for performance analog routing were also investigated and solutions were proposed. In the area of analog circuit design, a novel differential difference op amp was invented as the core building block. Two bandgap circuits including a low voltage version were developed to generate a stable reference voltage for the FPAA. Based on the proposed FPAA architecture, several application examples were demonstrated. The results show the flexible functionality of the FPAA. Moreover, various laser Makelink test structures were studied on different CMOS processes and BiCMOS copper process. Laser Makelink proves to be a powerful programming technology for analog IC design. A novel laser Makelink trimming method was invented to reduce the op amp offset. The application of using laser Makelink to reconfigure the analog circuit blocks was presented.
机译:用于模拟电路的准确,低成本,快速原型设计技术一直是模拟设计师梦dream以求的梦想。但是,由于模拟系统的固有特性,很难实现模拟领域的设计自动化,并且现场可编程模拟阵列(FPAA)尚未获得与数字领域FPGA相同的成功。这是由几个因素造成的,包括缺乏支持的CAD工具,较小的电路密度,较低的速度以及固定布线所产生的明显寄生效应。这些因素都是相互关联的,这使得高性能FPAA的设计成为多维问题。其中,造成这些困难的一个关键原因是非理想的编程技术,该技术会在敏感的模拟系统中造成很大的寄生效应,从而降低系统性能。这项工作试图通过开发激光现场可编程模拟阵列(LFPAA)来克服这些困难。涉及两部分工作,FPAA的布线和模拟IC构件的设计。为了促进路由器开发并为FPAA应用程序开发提供平台,提出了一种基于阵列的通用FPAA体系结构和灵活的CAB拓扑。该路由算法基于改进和改进的探路者协商路由算法,并针对原型FPAA以C语言实现。还研究了性能模拟路由的寄生约束,并提出了解决方案。在模拟电路设计领域,发明了一种新型差分差动放大器作为核心构件。开发了两个包括低电压版本的带隙电路,以为FPAA生成稳定的参考电压。基于提出的FPAA体系结构,演示了几个应用示例。结果显示了FPAA的灵活功能。此外,在不同的CMOS工艺和BiCMOS铜工艺上研究了各种激光Makelink测试结构。事实证明,Laser Makelink是用于模拟IC设计的强大编程技术。发明了一种新颖的激光Makelink微调方法,以减少运算放大器的失调。介绍了使用激光Makelink重新配置模拟电路模块的应用。

著录项

  • 作者

    Luo, Ji.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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