0.5 V, 10.94 μW, 36.89 μ$$V_{rms}$$ IRN, 3rd order bulk-driven quadrature filter using fully differential current conveyor for bluetooth applications
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/s10470-021-01868-1.pdf
Reference20 articles.
1. Razavi, B. (1996). Challenges in portable RF transceiver design. IEEE Circuits and Devices Magazine, 12, 12–25.
2. Kumngern, M., & Khateb, F. (2016). 0.5 V fully differential current conveyor using bulk-driven quasi-floating-gate technique. IET Circuits, Devices & Systems, 10(1), 78–86.
3. Eldeeb, M. A., Ghallab, Y. H., Ismail, Y., & Elghitani, H. (2017). Low-Low-voltage subthreshold CMOS current mode circuits: Design and applicationsvoltage subthreshold CMOS current mode circuits–Design and applications. International Journal of Electronics and Communications, 82, 251–264.
4. Kumngern, M., Khateb, F., & Kulej, T. (2019). Bulk-driven fully balanced second-generation current conveyor in 0.18 $$\mu $$m CMOS. International Journal of Electronics and Communications, 104, 66–75.
5. Rajput, S. S., & Jamuar, S. S. (2002). Low voltage analog circuit design techniques. IEEE Circuits and Systems Society, 2, 24–42.
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1. 1 V Electronically Tunable Differential Difference Current Conveyors Using Multiple-Input Operational Transconductance Amplifiers;Sensors;2024-02-28
2. 0.3 V Fully Differential Current Conveyor Using MIBD-DT MOST technique;2022 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS);2022-11-22
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