A Compact Fully-Differential Distributed Amplifier with Coupled Inductors in 0.18-µm CMOS Technology
Author:
Affiliation:
1. Graduate School of Science and Technology, Tokyo University of Science
2. Department of Electrical Engineering, Faculty of Science and Technology, Tokyo University of Science
3. National Institute of Information and Communications Technology
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
https://www.jstage.jst.go.jp/article/transele/E106.C/11/E106.C_2023MMP0006/_pdf
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2. [2] O. El-Aassar and G.M. Rebeiz, “A DC-to-108-GHz CMOS SOI distributed power amplifier and modulator driver leveraging multi-drive complementary stacked cells,” IEEE J. Solid-State Circuits, vol.54, no.12, pp.3437-3451, Dec. 2019. 10.1109/jssc.2019.2941013
3. [3] R.J.A. Baker, J. Hoffman, P. Schvan, and S.P. Voinigescu, “SiGe BiCMOS linear modulator drivers with 4.8-Vpp differential output swing for 120-GBaud applications,” IEEE Radio Freq. Integrated Circuits Symp., Honolulu, HI, pp.260-263, June 2017. 10.1109/rfic.2017.7969067
4. [4] P. Rito, I. García López, A. Awny, M. Ko, A.C. Ulusoy, and D. Kissinger, “A DC-90-GHz 4-Vpp Modulator Driver in a 0.13-µm SiGe:C BiCMOS Process,” IEEE Trans. Microw. Theory Techn., vol.65, no.12, pp.5192-5202, Dec. 2017. 10.1109/tmtt.2017.2757927
5. [5] X. Zhu, Y. Qian, Z. Peng, Y. Liang, and S. Diao, “Analysis and design of a DC-12-GHz distribution power amplifier for quantum key distribution application,” IEEE Trans. Very Large Scale Integr. Syst., vol.30, no.9, pp.1306-1318, Sept. 2022. 10.1109/tvlsi.2022.3180503
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