A High Performance Radiation-Hard Field Programmable Analog Array

ISQED(2004)

引用 10|浏览3
暂无评分
摘要
While interest, availability and use of FPAAs have grown, FPAAs still have not achieved thesame success as FPGAs in the digital domain. This results from several factors, including the lack of CAD tools, small circuit density, small bandwidth and layout dependent noise figures. These factors are all related to each other, making the design of a high performance FPAA a multi-dimensional problem. A critical reason behind these difficulties is the non-ideal programming technology, which contributes a large portion of parasitics into the sensitive analog system. This paper presents a high performance, radiation hard Laser Field Programmable Analog Array (LFPAA) using LaserLink's MakeLinkTM technology. Because of its extremely low resistance, negligible parasitic capacitance and full compatibility with commercial CMOS process, MakeLink TM can fully reduce these FPAA design concerns and offer a breakthrough capability in analog array performance. The proposed LFPAA consists of a 4 x 4 array of Configurable Analog Blocks (CABs) surrounded by abundant interconnect resources. There are 16 PAD groups around the chip, and 8 tracks per X/Y channel. Each CAB has 4 input and 4 output pins with internal circuit operating in fully differential mode. Withappropriate programming, the LFPAA can provide an accurate, low-cost and rapid-prototyping analog ASIC solution.
更多
查看译文
关键词
programmable analog array,rapid-prototyping analog asic solution,configurable analog blocks,fpaa design concern,proposed lfpaa,analog array performance,sensitive analog system,high performance,analog array,makelinktm technology,high performance radiation-hard field,withappropriate programming,parasitic capacitance,bandwidth,network routing,circuits,chip,integrated circuit layout,availability,radiation hardness,field programmable gate arrays,application specific integrated circuits,noise figure,design automation,field programmable analog array,cmos technology
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要