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2016 | OriginalPaper | Buchkapitel

Designing of DPA Resistant Circuit Using Secure Differential Logic Gates

verfasst von : Palavlasa Manoj, Datti Venkata Ramana

Erschienen in: Computational Intelligence in Data Mining—Volume 1

Verlag: Springer India

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Abstract

Crypto circuits can be attacked using the technique of differential power analysis by another/separate party, using power consumption dependence on secret message/information for extracting the critical data (information). To avoid DPA (Differential Power Analysis) and security bases, differential logic styles are basically used, because of constant power dissipation. This paper proposes a new design methodology using OR-NOR gates in 90 nm VLSI technology using SABL (Sense Amplifier Based Logic) for DPDN (Differential Pull down Logic) to secure/protect differential logic gates and to eliminate charge in the pull-down differential gate and to remove the memory effect.

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Literatur
1.
Zurück zum Zitat Tena-Sánchez, E., Castro, J., Acosta, A.J.: A methodology for optimized design of secure differential logic gates for DPA resistant circuits. IEEE J. Emerg. Sel. Top. Circuits Syst. 4(2), 203–215 (2014)CrossRef Tena-Sánchez, E., Castro, J., Acosta, A.J.: A methodology for optimized design of secure differential logic gates for DPA resistant circuits. IEEE J. Emerg. Sel. Top. Circuits Syst. 4(2), 203–215 (2014)CrossRef
2.
Zurück zum Zitat Gutmann, P., Naccache, D., Palmer, C.C.: Side-channel attacks on cryptographic software. IEEE J. Co-published Comput. Reliab. Soc. 9, 1540–7993 (2009) Gutmann, P., Naccache, D., Palmer, C.C.: Side-channel attacks on cryptographic software. IEEE J. Co-published Comput. Reliab. Soc. 9, 1540–7993 (2009)
3.
Zurück zum Zitat Kocher, P., Jaffe, J., Jun, B.: Differential power analysis. In: Proceedings of the International Cryptal Conference, pp. 388–397. (1999) Kocher, P., Jaffe, J., Jun, B.: Differential power analysis. In: Proceedings of the International Cryptal Conference, pp. 388–397. (1999)
4.
Zurück zum Zitat Tiri, K., Akmal, M., Verbau Whede, I.: A dynamic and differential CMOS logic with signal independent power consumption to withstand differential power analysis on smart cards. In: Proceedings of the European Solid-State Circuits Conference, pp. 403–406. (2002) Tiri, K., Akmal, M., Verbau Whede, I.: A dynamic and differential CMOS logic with signal independent power consumption to withstand differential power analysis on smart cards. In: Proceedings of the European Solid-State Circuits Conference, pp. 403–406. (2002)
5.
Zurück zum Zitat Hassoune, I., Macé, F., Flandre, D., Legat, J.-D.: Low-swing current mode logic (LSCML): a new logic style for secure and robust smart cards against power analysis attacks. Micro Electron. J. 37(9), 997–1006 (2006) Hassoune, I., Macé, F., Flandre, D., Legat, J.-D.: Low-swing current mode logic (LSCML): a new logic style for secure and robust smart cards against power analysis attacks. Micro Electron. J. 37(9), 997–1006 (2006)
6.
Zurück zum Zitat Allam, M.W., Elmasry, M.I.: Dynamic current mode logic (DyCML): a new low-power high-performance logic style. IEEE J. Solid-State Circuits 36(3), 550–558 (2001)CrossRef Allam, M.W., Elmasry, M.I.: Dynamic current mode logic (DyCML): a new low-power high-performance logic style. IEEE J. Solid-State Circuits 36(3), 550–558 (2001)CrossRef
7.
Zurück zum Zitat Bucci, M., Giancane, L., Luzzi, R., Trifiletti, A.: Three-phase dual rail pre-charge logic. In: Proceedings of the International Workshop Cryptography. Hardware Embedded Systems, pp. 232–24. (2006) Bucci, M., Giancane, L., Luzzi, R., Trifiletti, A.: Three-phase dual rail pre-charge logic. In: Proceedings of the International Workshop Cryptography. Hardware Embedded Systems, pp. 232–24. (2006)
8.
Zurück zum Zitat Suzuki, D., Saeki, M.: Security evaluation of DPA countermeasures using dual-rail pre-charge logic style. In: Proceedings of the International Workshop Cryptography. Hardware Embedded Systems, pp. 255–269. (2006) Suzuki, D., Saeki, M.: Security evaluation of DPA countermeasures using dual-rail pre-charge logic style. In: Proceedings of the International Workshop Cryptography. Hardware Embedded Systems, pp. 255–269. (2006)
9.
Zurück zum Zitat Lin, L., Burleson, W.: Leakage-based differential power analysis (LDPA) on sub-90 nm CMOS crypto systems. In: Proceedings of the IEEE International Symposium Circuits Systems, pp. 252–255. (2008) Lin, L., Burleson, W.: Leakage-based differential power analysis (LDPA) on sub-90 nm CMOS crypto systems. In: Proceedings of the IEEE International Symposium Circuits Systems, pp. 252–255. (2008)
10.
Zurück zum Zitat Tiri, K., Verbau Whede, I.: Design method for constant power consumption of differential logic circuits. In: Proceedings of Design, Automat. Test European Conference on Exhibit, pp. 1530–1591. (2005) Tiri, K., Verbau Whede, I.: Design method for constant power consumption of differential logic circuits. In: Proceedings of Design, Automat. Test European Conference on Exhibit, pp. 1530–1591. (2005)
Metadaten
Titel
Designing of DPA Resistant Circuit Using Secure Differential Logic Gates
verfasst von
Palavlasa Manoj
Datti Venkata Ramana
Copyright-Jahr
2016
Verlag
Springer India
DOI
https://doi.org/10.1007/978-81-322-2734-2_45