Conditional techniques for low power consumption flip-flops
Conditional capture and conditional precharge techniques for high-performance flip-flops are reviewed in terms of power and delay. It is found that application of conditional techniques can improve energy-delay product for up to 14% for 50% input activity and save more than 50% in power consumption...
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          | Published in | 2001 8th International Conference on Electronics, Circuits and Systems Vol. 2; pp. 803 - 806 vol.2 | 
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| Main Authors | , , | 
| Format | Conference Proceeding | 
| Language | English | 
| Published | 
            IEEE
    
        2001
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| Subjects | |
| Online Access | Get full text | 
| ISBN | 9780780370579 0780370570  | 
| DOI | 10.1109/ICECS.2001.957596 | 
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| Abstract | Conditional capture and conditional precharge techniques for high-performance flip-flops are reviewed in terms of power and delay. It is found that application of conditional techniques can improve energy-delay product for up to 14% for 50% input activity and save more than 50% in power consumption for quiet input. This property makes conditional methods suitable for high-performance VLSI systems. | 
    
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| AbstractList | Conditional capture and conditional precharge techniques for high-performance flip-flops are reviewed in terms of power and delay. It is found that application of conditional techniques can improve energy-delay product for up to 14% for 50% input activity and save more than 50% in power consumption for quiet input. This property makes conditional methods suitable for high-performance VLSI systems. | 
    
| Author | Oklobdzija, V.G. Aleksic, M. Nedovic, N.  | 
    
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| Snippet | Conditional capture and conditional precharge techniques for high-performance flip-flops are reviewed in terms of power and delay. It is found that application... | 
    
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| StartPage | 803 | 
    
| SubjectTerms | Application software Clocks Cooling Delay Energy consumption Flip-flops Laboratories Power engineering computing Sampling methods Very large scale integration  | 
    
| Title | Conditional techniques for low power consumption flip-flops | 
    
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