A Cell-Driven Multiplier Generator with Delay Optimization of Partial Products Compression and an Efficient Partition Technique for the Final Addition(Digital Circuits and Computer Arithmetic, <Special Section>Recent Advances in Circuits and Systems-Part
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概要
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In this paper, a cell-driven multiplier generator is developed that can produce high-performance gate-level netlists for multiplier-related arithmetic functional units, including multipliers, multiplier and accumulators (MAC) and dot product calculator. The generator optimizes the speed/area performance both in the partial product compression and in the final addition stage for the specified process technology. In addition to the conventional CMOS full adder cells, we have also designed fast compression elements based on pass-transistor logic for further performance improvement of the generated multipliers. Simulation results show that our proposed generator could produce better multiplier-related functional units compared to those generated using Synopsys Designware library or other previously proposed approaches.
- 2005-07-01
著者
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Tsai Ming
Department Of Computer Science And Engineering National Sun Yat-sen University
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JUANG Tso
Ta Jen Institute of Technology
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HSIAO Shen
Department of Computer Science and Engineering, National Sun Yat-sen University
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JAN Jenq
Department of Computer Science and Engineering, National Sun Yat-sen University
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Jan Jenq
Department Of Computer Science And Engineering National Sun Yat-sen University
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Hsiao Shen
Department Of Computer Science And Engineering National Sun Yat-sen University
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