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Flexible hardware/software co-design for scalable elliptic curve cryptography for low-resource applications.

, , and . ASAP, page 285-288. IEEE Computer Society, (2010)

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Advantage of the modified Lunn-McNeil technique over Kalbfleisch-Prentice technique in competing risks., , , , and . Data Mining and Knowledge Discovery: Theory, Tools, and Technology, volume 4730 of SPIE Proceedings, page 203-211. SPIE, (2002)An improved Montgomery inversion algorithm over GF(2m) targeted for low area scalable inverter on FPGA., and . APCCAS, page 1510-1513. IEEE, (2008)Flexible hardware/software co-design for scalable elliptic curve cryptography for low-resource applications., , and . ASAP, page 285-288. IEEE Computer Society, (2010)Small Footprint Implementations of Scalable ECC Point Multiplication on FPGA., and . ICC, page 1-4. IEEE, (2010)Low Area Scalable Montgomery Inversion Over GF(2m)., and . SECRYPT, page 363-367. INSTICC Press, (2008)A scalable hardware/software co-design for elliptic curve cryptography on PicoBlaze microcontroller., and . ISCAS, page 2111-2114. IEEE, (2010)Efficient Time-Area Scalable ECC Processor Using µ-Coding Technique., and . WAIFI, volume 6087 of Lecture Notes in Computer Science, page 250-268. Springer, (2010)Low Area-Scalable Hardware/Software Co-Design for Elliptic Curve Cryptography., and . NTMS, page 1-5. IEEE, (2009)Embedded Software Design of Scalable Low-Area Elliptic-Curve Cryptography., and . IEEE Embed. Syst. Lett., 1 (2): 42-45 (2009)