The fundamental limit on binary switching energy for terascale integration (TSI)

作者: J.D. Meindl , J.A. Davis

DOI: 10.1109/4.871332

关键词:

摘要: The fundamental limit on signal energy transfer during a binary switching transition is E/sub s/(min)=(ln2)kT. Derivation of precisely this result based two entirely distinct physical models confirms its validity. first model an ideal MOSFET operating in CMOS inverter circuit at the capacity for discrimination. second isolated interconnect treated as noisy communication channel. Both are relevant to modern terascale integration.

参考文章(9)
C Shanndn, W Weaver, The Mathematical Theory of Communication ,(1948)
R. Landauer, Irreversibility and heat generation in the computing process Ibm Journal of Research and Development. ,vol. 44, pp. 261- 269 ,(2000) , 10.1147/RD.441.0261
Arthur W. Burks, John Von Neumann, Theory Of Self Reproducing Automata ,(1966)
R.M. Swanson, J.D. Meindl, Ion-implanted complementary MOS transistors in low-voltage circuits international solid-state circuits conference. ,vol. 7, pp. 146- 153 ,(1972) , 10.1109/JSSC.1972.1050260
J.D. Meindl, Low power microelectronics: retrospect and prospect Proceedings of the IEEE. ,vol. 83, pp. 619- 635 ,(1995) , 10.1109/5.371970
ARTHUR W. LO, PHYSICAL REALIZATION OF DIGITAL LOGIC CIRCUITS Micropower Electronics. pp. 19- 39 ,(1964) , 10.1016/B978-0-08-010625-0.50006-9
D. A. Muller, T. Sorsch, S. Moccio, F. H. Baumann, K. Evans-Lutterodt, G. Timp, The electronic structure at the atomic scale of ultrathin gate oxides Nature. ,vol. 399, pp. 758- 761 ,(1999) , 10.1038/21602
R.W. Keyes, Physical limits in digital electronics Proceedings of the IEEE. ,vol. 63, pp. 740- 767 ,(1975) , 10.1109/PROC.1975.9825
CE Shennon, Warren Weaver, A mathematical theory of communication Bell System Technical Journal. ,vol. 27, pp. 379- 423 ,(1948) , 10.1002/J.1538-7305.1948.TB01338.X