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Information Journal Paper

Title

Energy Efficient Novel Design of Static Random Access Memory Memory Cell in Quantum-dot Cellular Automata Approach

Pages

  720-725

Abstract

 This paper introduces a peculiar approach of designing Static Random Access Memory (SRAM) memory cell in Quantum-dot Cellular Automata (QCA) technique. The proposed design consists of one 3-input MG, one 5-input MG in addition to a (2×1) Multiplexer block utilizing the loop-based approach. The simulation results reveals the excellence of the proposed design. The proposed SRAM cell achieves 16% and 15% improvement in terms of total number of Cell counts and Area. Similarly, the proposed design structure realizes the overall power dissipation savings up to 35. 3% at maximum energy dissipation of circuit, 38. 6% at average energy dissipation of circuit, 36. 1% at minimum energy dissipation of circuit, 36. 4% at average energy dissipation of circuit and 40. 1% at average switching energy dissipation compared to the latest reported designs. The power analysis and structural analysis of the proposed design is compared with its state-of-the-art counterpart designs, using QCAPro and QCADesigner 2. 0. 3 tools. The proposed QCA based SRAM cell design can be taken as a base design in building an ultra-low power information generating systems like Microprocessors.

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    APA: Copy

    Kassa, s., & Nema, s.. (2019). Energy Efficient Novel Design of Static Random Access Memory Memory Cell in Quantum-dot Cellular Automata Approach. INTERNATIONAL JOURNAL OF ENGINEERING, 32(5 (TRANSACTIONS B: Applications)), 720-725. SID. https://sid.ir/paper/721571/en

    Vancouver: Copy

    Kassa s., Nema s.. Energy Efficient Novel Design of Static Random Access Memory Memory Cell in Quantum-dot Cellular Automata Approach. INTERNATIONAL JOURNAL OF ENGINEERING[Internet]. 2019;32(5 (TRANSACTIONS B: Applications)):720-725. Available from: https://sid.ir/paper/721571/en

    IEEE: Copy

    s. Kassa, and s. Nema, “Energy Efficient Novel Design of Static Random Access Memory Memory Cell in Quantum-dot Cellular Automata Approach,” INTERNATIONAL JOURNAL OF ENGINEERING, vol. 32, no. 5 (TRANSACTIONS B: Applications), pp. 720–725, 2019, [Online]. Available: https://sid.ir/paper/721571/en

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