A 0.4 V, tail-less, fully differential trans-conductance amplifier: an all inverter-based structure
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing
Link
https://link.springer.com/content/pdf/10.1007/s10470-020-01662-5.pdf
Reference30 articles.
1. Fahim, A. (2014). Challenges in low-power analog circuit design for sub-28nm CMOS technologies. In 2014 IEEE/ACM international symposium on low power electronics and design (ISLPED), 11–13 Aug. 2014 (pp. 123–126).
2. Sansen, W. (2007). Analog design challenges in nanometer CMOS technologies. In 2007 IEEE Asian solid-state circuits conference, 12–14 Nov. 2007 (pp. 5–9).
3. Veldandi, H., & Shaik, R. A. (2018). A 0.3-V Pseudo-differential bulk-input OTA for low-frequency applications. Circuits, Systems, Signal Processing,37(12), 5199–5221.
4. Lu, Y., & Yao, R. H. (2008). Low-voltage constant-gm rail-to-rail CMOS operational amplifier input stage. Solid-State Electronics,52(6), 957–961.
5. Zhao, X., Fang, H., Ling, T., & Xu, J. J. I. (2015). Transconductance improvement method for low-voltage bulk-driven input stage. Integration the VLSI Journal,49, 98–103.
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