Development Trends and Prospects of Semiconductor Devices and Technology

Authors

  • Zekun Qiu
  • Xianao Shen
  • Zirui Zhao

DOI:

https://doi.org/10.54097/jc4btz06

Keywords:

Semiconductor devices; technology trends; nanotechnology; artificial intelligence optimization.

Abstract

Semiconductor devices and technology have undergone remarkable development over the years, driving innovations across various industries. This paper explores the historical background and evolution of semiconductor devices, examining key breakthroughs and trends. It also delves into the current state of semiconductor technology, highlighting artificial intelligence optimization, nanotechnology, liquid biopsy technology, deep learning, and quantum computers. These advancements are reshaping the landscape of semiconductor devices, promising enhanced performance and applications in diverse fields. Moreover, the impact of semiconductor technology is expanding into areas such as healthcare, energy, and beyond, offering new avenues to address global challenges. This paper underscores the significance of semiconductor technology as a cornerstone of modern technology and innovation. From its humble beginnings with the transistor to its current pivotal role in AI, nanotechnology, liquid biopsy, deep learning, and quantum computing, semiconductors continue to be the driving force behind a technological revolution that transcends boundaries and holds immense promise for our collective future.

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References

Baliga B J. Trends in power semiconductor devices. IEEE Transactions on electron Devices, 1996, 43(10): 1717-1731.

Chopra S, Subramaniam S. A review on challenges for MOSFET scaling. Int. J. Innovative Science, 2015, 2(4).

Bardeen J, Brattain W H. The transistor, a semiconductor triode. Proceedings of the IEEE, 1998, 86(1): 29-30.

Lakatoş E Ş. 60 Years from the Invention of the Integrated Circuits. Electrotehnica, Electronica, Automatica, 2018, 66(3).

Alimirzaie S, Bagherzadeh M, Akbari M R. Liquid biopsy in breast cancer: A comprehensive review. Clinical genetics, 2019, 95(6): 643-660.

Cao Y, Romero J, Olson J P, et al. Quantum chemistry in the age of quantum computing. Chemical reviews, 2019, 119(19): 10856-10915.

Yin H, Bowes D, Cross A W, et al. Application of a pseudospark-generated electron beam to a 200 GHz backward wave oscillator. 2015 IEEE International Conference on Plasma Sciences (ICOPS). IEEE, 2015: 1-1.

Zhu B, Fan L, Mushtaq N, et al. Semiconductor electrochemistry for clean energy conversion and storage. Electrochemical Energy Reviews, 2021: 1-36.

ollaert N, Alian A, Chen S H, et al. Semiconductor technologies for next generation mobile communications. 2018 14th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT). IEEE, 2018: 1-4.

Razavi B, Behzad R. RF microelectronics. New York: Prentice hall, 2012.

Mukhopadhyay S C, Suryadevara N K, Nag A. Wearable sensors for healthcare: Fabrication to application. Sensors, 2022, 22(14): 5137.

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Published

26-01-2024

How to Cite

Qiu, Z., Shen, X., & Zhao, Z. (2024). Development Trends and Prospects of Semiconductor Devices and Technology. Highlights in Science, Engineering and Technology, 81, 374-380. https://doi.org/10.54097/jc4btz06