Reprint

Advanced CMOS Integrated Circuit Design and Application

Edited by
March 2022
198 pages
  • ISBN978-3-0365-3477-0 (Hardback)
  • ISBN978-3-0365-3478-7 (PDF)

This book is a reprint of the Special Issue Advanced CMOS Integrated Circuit Design and Application that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Summary

The recent development of various application systems and platforms, such as 5G, B5G, 6G, and IoT, is based on the advancement of CMOS integrated circuit (IC) technology that enables them to implement high-performance chipsets. In addition to development in the traditional fields of analog and digital integrated circuits, the development of CMOS IC design and application in high-power and high-frequency operations, which was previously thought to be possible only with compound semiconductor technology, is a core technology that drives rapid industrial development.

This book aims to highlight advances in all aspects of CMOS integrated circuit design and applications without discriminating between different operating frequencies, output powers, and the analog/digital domains. Specific topics in the book include:

  • Next-generation CMOS circuit design and application;
  • CMOS RF/microwave/millimeter-wave/terahertz-wave integrated circuits and systems;
  • CMOS integrated circuits specially used for wireless or wired systems and applications such as converters, sensors, interfaces, frequency synthesizers/generators/rectifiers, and so on;
  • Algorithm and signal-processing methods to improve the performance of CMOS circuits and systems.
Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
spin memristor; mask operation; memristor switch; memristor crossbar; image processing; CMOS; voltage-controlled oscillator; switched-biasing; flicker noise; phase noise; current source; figure-of-merit; pixel-level ADC; current-input ADC; readout circuit; microbolometer; high SNR; wide dynamic range; current-reuse; injection-locked frequency divider; radar sensor; wideband; RF receiver; blocker; second-order intermodulation (IM2); orthogonal frequency division modulation (OFDM); CMOS; MedRadio; medical implanted communication service (MICS); biomedical device; biosensors; LC-VCO; CMOS; phase noise; current-shaping; 90 nm; current tail; varactor; LC tank; on-wafer; vibration energy harvester; power management circuit; CMOS rectifier; dynamic threshold cancellation technique; high power conversion efficiency; CMOS circuit; analog system; signal processing; learning algorithm; artificial neural network; freeware; open science; analog microelectronics design; long channel transistors; short channel transistors; integrated circuit design; CMOS design; VLSI; higher education; educational innovation; integrated circuit layout; complex thinking; CMOS detector; concurrent-mode; differential detector IC; imaging SNR; integrated folded-dipole antenna; sub-terahertz imaging; voltage responsivity