节点文献
Incremental Placement-Based Clock Network Minimization Methodology
【摘要】 Power is the major challenge threatening the progress of very large scale integration (VLSI) tech-nology development. In ultra-deep submicron VLSI designs,clock network size must be minimized to re-duce power consumption,power supply noise,and the number of clock buffers which are vulnerable to process variations. Traditional design methodologies usually let the clock router independently undertake the clock network minimization. Since clock routing is based on register locations,register placement actu-ally strongly influences the clock network size. This paper describes a clock network design methodology that optimizes register placement. For a given cell placement result,incremental modifications are per-formed based on the clock skew specifications by moving registers toward preferred locations that may re-duce the clock network size. At the same time,the side-effects to logic cell placement,such as signal net wirelength and critical path delay,are controlled. Test results on benchmark circuits show that the methodol-ogy can considerably reduce clock network size with limited impact on signal net wirelength and critical path delay.
【Abstract】 Power is the major challenge threatening the progress of very large scale integration (VLSI) tech-nology development. In ultra-deep submicron VLSI designs,clock network size must be minimized to re-duce power consumption,power supply noise,and the number of clock buffers which are vulnerable to process variations. Traditional design methodologies usually let the clock router independently undertake the clock network minimization. Since clock routing is based on register locations,register placement actu-ally strongly influences the clock network size. This paper describes a clock network design methodology that optimizes register placement. For a given cell placement result,incremental modifications are per-formed based on the clock skew specifications by moving registers toward preferred locations that may re-duce the clock network size. At the same time,the side-effects to logic cell placement,such as signal net wirelength and critical path delay,are controlled. Test results on benchmark circuits show that the methodol-ogy can considerably reduce clock network size with limited impact on signal net wirelength and critical path delay.
【Key words】 clock network; incremental placement; very large scale integration (VLSI);
- 【文献出处】 Tsinghua Science and Technology ,清华大学学报(自然科学版)(英文版) , 编辑部邮箱 ,2008年01期
- 【分类号】TN40
- 【下载频次】36