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Efficient computation of quasi-periodic circuit operating conditions via a mixed frequency/time approach
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Source Annual ACM IEEE Design Automation Conference archive
Proceedings of the 36th annual ACM/IEEE Design Automation Conference table of contents
New Orleans, Louisiana, United States
Pages: 635 - 640  
Year of Publication: 1999
ISBN:1-58133-109-7
Authors
Dan Feng  Cadence Design Systems, San Jose, CA
Joel Phillips  Cadence Design Systems, San Jose, CA
Keith Nabors  Cadence Design Systems, San Jose, CA
Ken Kundert  Cadence Design Systems, San Jose, CA
Jacob White  Massachusetts Institute of Technology, Cambridge, MA
Sponsors
EDAC : Electronic Design Automation Consortium
IEEE-CAS : Circuits & Systems
SIGDA: ACM Special Interest Group on Design Automation
Publisher
ACM  New York, NY, USA
Bibliometrics
Downloads (6 Weeks): n/a,   Downloads (12 Months): n/a,   Citation Count: 5
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REFERENCES

Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.

 
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L.O. CHUAAND A. USHIDA, Algorithmsfor computing almost periodic steady-state response of nonlinear systems to multiple input frequencies, IEEE Trans. Circuits and Systems, 28 (1981), pp. 953-971.
 
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K. KUNDERT, J. WHITE, AND A. SANGIOVANNI-VINCENTELLI, A mixed frequency-time approach for distortion analysis of switching filter circuits, IEEE J. Solid State Circuits, 24 (1989), pp. 443-451.
 
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K. S. KUNDERT, J. K. WHITE, AND A. SANGIOVANNI- VINCENTELLI, Steady-State Methods for Simulating Analog And Microwave Circuits, Kluwer Academic Publishers, Boston, 1990.
 
5
P. LANCASTER AND M. TISMENETSKY, The Theory of Matrices, Academic Press, second ed., 1985.
 
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D. LONG, R. MELVILLE, K. ASHBY, AND B. HORTON, Full chip harmonic balance, in Proceedings of the Custom Integrated Circuits Conference, May 1997.
 
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R. MELVILLE, P. FELDMANN, AND J. ROYCHOWDHURY, Efficient multi-tone distortion analysis of analog integrated circuits, in Proceedings of the Custom Integrated Circuits Conference, May 1995.
 
8
M. OKUMURA, Y. SUGAWARA, AND H. TANIMOTO, An efficient small signal frequency analysis method for nonlinear circuits with two frequency excitations, IEEE transactions of computer-aided design of integrated circuits and systems, 9 (1990), pp. 225-235.
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J. ROYCHOWDHURY, D. LONG, AND P. FELDMANN, Cyclostationary noise analysis of large RF circuits with multitone excitations, IEEE J. Sol. St. Circuits, 33 (1998), pp. 324-336.
 
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R. TELICHEVESKY, J. WHITE, AND K. KUNDERT, Receiver characterization using periodic small-signal analysis, in Proceedings of the Custom Integrated Circuits Conference, May 1996.
 
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Y. THODESEN, Two stage method for efficient simulation of parametric circuits, PhD thesis, Department of telecommunications, the Norwegian institute of technology, 1996.


Collaborative Colleagues:
Dan Feng: colleagues
Joel Phillips: colleagues
Keith Nabors: colleagues
Ken Kundert: colleagues
Jacob White: colleagues