⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文提出了一种连续时间六边形现场可编程模拟阵列(FPAA),采用0.13µm CMOS工艺实现,增益带宽积达186MHz。旨在通过六边形拓扑和连续时间设计,克服传统模拟阵列性能差的缺点,为模拟电路快速原型提供高性能解决方案。
The high non-recurring engineering costs of integrated circuit design make rapid-prototyping an important field of microelectronics. For digital circuits, FPGAs are highly developed and have become indispensable as both development tools and application platforms. In contrast, the nature of analog circuits is much more complex and does not readily allow a mapping of any arbitrary analog behavior to a generic set of basic building-blocks and routing nodes. Therefore, field-programmable analog arrays (FPAAs) are very specific to the target application and have poor performance when compared to single-purpose ASICs. The use of switched-capacitor technology in most commercial FPAAs provides benefits in adjustability and matching, but brings drawbacks in terms of bandwidth and power-consumption. Previous designs are limited to a signal frequency of 1 to 10MHz for analog filters. Although recent continuous-time designs use
J. Becker, F. Henrici, S. Trendelenburg, M. Ortmanns, Y. Manoli
University of Freiburg - IMTEK, Freiburg, Germany