Innovative Design and Application Analysis of Integrated Operational Amplifiers

Authors

  • Ding Chen

DOI:

https://doi.org/10.54097/xtqm8x55

Keywords:

Telescopic, Folded, Two-stage, Operational amplifier.

Abstract

Operational amplifiers in integrated circuits come in many varieties and numbers and are an essential part of electronic systems. Its performance directly affects the accuracy and effectiveness of the whole system. As the market demand for operational amplifiers in different fields is growing day by day, according to different kinds of demand, people have designed a variety of operational amplifier structure. This paper describes the basic characteristics of operational amplifiers and analyzes three basic structures that are extremely relevant for modification circuits. The common-source, common-gate circuit structure op-amp has the advantages of high gain, high input common-mode range, high output swing, and high overall gain bandwidth, so it has been adopted as the most commonly used architecture today and in the future. The current improvements in operational amplifier design are mainly focused on two-stage operational amplifiers, and less on multi-stage operational amplifiers. The folded common source and common gate operational amplifier circuits are characterized by good frequency characteristics, comparatively low power consumption and high bandwidth per unit gain. The demands on the performance of operational amplifiers will become higher and more varied, and more excellent improved circuits are needed.

Downloads

Download data is not yet available.

References

Liao Yuan, Zhang Mengxin, Liu Wenhan, et. Design of a low-power portable multilead ECG signal acquisition system. Cnki, 2019, 38 (05): 53 - 58.

A. S, V. S, Ramu J, et al. Design and area optimization of CMOS operational amplifier circuit using hybrid flower pollination algorithm for IoT end-node devices. Microprocessors and Microsystems, 2022, 93.

Alejandro M V, Esteban T, Gerardo L F L D. On the Sizing of CMOS Operational Amplifiers by Applying Many-Objective Optimization Algorithms. Electronics, 2021, 10 (24).

Lv, Gaochong, Guo, et al. Exact design for the settling time of two-stage Miller compensated operational amplifiers. Analog Integrated Circuits and Signal Processing, 2021 (prepublish).

Assim A A A, E.V. B. Zero-drift operational amplifiers. Computing, Telecommunication and Control, 2021, 14 (70).

Aneet S, Kumar S R. Novel Meminductor Emulators Using Operational Amplifiers and their Applications in Chaotic Oscillators. Journal of Circuits, Systems and Computers, 2021, 30 (12).

Paolo C, Francesco M. Digital Suppression of EMI-Induced Errors in a Baseband Acquisition Front-End including Off-the-Shelf, EMI-Sensitive Operational Amplifiers. Electronics, 2021, 10 (17).

Milanov I P. Modeling and Simulation of Monolithic Single-Supply Power Operational Amplifiers. Energies, 2021, 14 (15).

Ren Chen, Yang Yongjun, al. A three-stage operational amplifier for high-precision capacitive sensor circuits. IC Design and Applications, 2022, 47 (04): 53 - 58.

Zhang Luxuan, Li Jinguo, Yuan yuan, al. An Output Stage Operational Amplifier Design for High-Speed Readout Circuits. Laser infrared, 2022, 52 (09): 53 - 58.

Xu Yanbin, al. Design of high-gain CMOS folded common-source, common-gate operational amplifiers. Electronics world, 2021 (20): 53 - 58.

Yang Fan, Zhang Jiahong, Liu Zutao, et. A high gain bandwidth product high swing rate operational transconductance amplifier Electronic Components and Materials, 2023, 42 (5): 598 - 603.

PENG Chunyu, ZHANG Weiqiang, LIN Zhiting, et al. Design of a high gain, high bandwidth, fully differential operational amplifier. Electronics & Packaging, 2023, 23 (7): 070302.

Liao Yuan, Zhang Mengxin, Liu Wenhan, et. Design of a low-power portable multilead ECG signal acquisition system. Cnki, 2019, 38 (05): 53 - 58.

Zhu Yingwei, Sun Haiqin, Li Jin, et. Application Verification Study of Domestic High Precision Operational Amplifiers for Aerospace Applications. Electronic Components and Information Technology, 2021, 5 (3): 120 - 123.

Zhu Yingwei, Sun Haiqin, Li Jin, et. Application Verification Study of Domestic High Precision Operational Amplifiers for Aerospace Applications. Electronic Components and Information Technology, 2021, 5 (3): 120 - 123.

Zhang Da, al. Characterization of integrated operational amplifiers and their application in audio amplifiers. Cnki, 2012, 38 (05): 53 - 58.

Downloads

Published

15-12-2023

How to Cite

Chen, D. (2023). Innovative Design and Application Analysis of Integrated Operational Amplifiers. Highlights in Science, Engineering and Technology, 72, 341-351. https://doi.org/10.54097/xtqm8x55