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MRI India Journals Vol. 14 No. 3s (2025): Special Issue: AIDCON-2025

From Transistors to Quantum Dots: A Comparative Study of CMOS and QCA Paradigms Technologies

Authors

  • Vrushali G. Nasre Department of Electronics and Telecommunication Engineering Priyadarshini College of Engineering, Nagpur, Maharashtra, India
  • Shubhroto. M. Amgaonkar Department of Electronics and Telecommunication Engineering Priyadarshini College of Engineering, Nagpur, Maharashtra, India
  • Rohit Itware Department of Electronics and Telecommunication Engineering Priyadarshini College of Engineering, Nagpur, Maharashtra, India
  • Harshal Vaidya Department of Electronics and Telecommunication Engineering Priyadarshini College of Engineering, Nagpur, Maharashtra, India
  • Priyanshu Bhagat Department of Electronics and Telecommunication Engineering Priyadarshini College of Engineering, Nagpur, Maharashtra, India

DOI:

https://doi.org/10.65521/intjournalrecadvengtech.v14i3s.1693

Keywords:

Quantum-dot Cellular Automata CMOS QCA designer tool Nanotechnology Semiconductor integrated Circuit Design Logic Gates

Abstract

(CMOS) Complementary-Metal-Oxide Semiconductor technology has been the dominant platform for digital circuit design for decades, enabling high-performance and cost-effective electronics. However, as CMOS devices scale below 5 nm, they face physical and economic challenges such as leakage currents, short-channel effects, and increased fabrication costs. Quantum- dot Cellular Automata (QCA) is an emerging nanotechnology that encodes binary information using electron polarization rather than current flow, offering ultra-low power consumption and extremely high device density. This paper presents a comparative review of CMOS and QCA technologies in terms of power, area, speed, scalability, reliability, and fabrication complexity. Challenges and future trends for both technologies are also discussed, providing an overview of their possible roles in next-generation Nanoelectronics. The paper also discusses current challenges and potential research directions for enabling a transition from CMOS to QCA in the coming decades.

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Published

2025-12-23

How to Cite

Nasre, V. G., Amgaonkar , S. M., Itware, R., Vaidya, H., & Bhagat, P. (2025). From Transistors to Quantum Dots: A Comparative Study of CMOS and QCA Paradigms Technologies. International Journal of Recent Advances in Engineering and Technology, 14(3s), 204–214. https://doi.org/10.65521/intjournalrecadvengtech.v14i3s.1693

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