Performance-effective compaction of standard cell library for edge-triggered latches utilizing 0.5 micron technology
Chun Zhi Zhao, W. Pan, Chun Zhi Zhao, Ka Lok Man, Jaehak Choi, J. Morris Chang
Abstract
Chun Zhi Zhao, W. Pan, Chun Zhi Zhao, Ka Lok Man, Jaehak Choi, J. Morris Chang
Abstract
Very-Large-Scale Integration (VLSI) is the process of establishing integrated circuits. Although the process is getting more and more complex, the development of VLSI has effectively increased the design capability and system performance. Power dissipation for large and complex circuits has always been a concern for engineers on the leading edge of technology. This paper aims at establishing a new standard cell library. Moreover, the most relevant definitions, classifications and details (including power and performance optimization) of the new standard cell library are presented in this paper.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Very-Large-Scale Integration (VLSI) is the process of establishing integrated circuits. Although the process is getting more and more complex, the development of VLSI has effectively increased the design capability and system performance. Power dissipation for large and complex circuits has always been a concern for engineers on the leading edge of technology. This paper aims at establishing a new standard cell library. Moreover, the most relevant definitions, classifications and details (including power and performance optimization) of the new standard cell library are presented in this paper.
Key concepts: Very-large-scale integration, Standard cell, Enhanced Data Rates for GSM Evolution, Computer science, Process (computing), Dissipation, Electronic circuit, Electronic engineering