Improving the bandwidth of the transimpedance amplifier based on CS stages in cascode configuration using impedance matching techniques
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing
Link
http://link.springer.com/content/pdf/10.1007/s10470-016-0757-6.pdf
Reference22 articles.
1. Oh, Y.-H., & Lee, S.-G. (2004). An inductance enhancement technique and its application to a shunt-peaked 2.5 Gb/s transimpedance amplifier design. IEEE Transactions on Circuits and Systems II: Express Briefs, 51(11), 624–628.
2. Yu, Y., Baltus, P. G., & Van Roermund, A. H. (2011). Integrated 60GHz RF Beamforming in CMOS. Netherlands: Springer.
3. Fan, X., Zhang, H., & Sánchez-Sinencio, E. (2008). A noise reduction and linearity improvement technique for a differential cascode LNA. IEEE Journal of Solid State Circuits, 43(3), 588–599.
4. Abidi, A. A. (2004). RF-CMOS comes of age. IEICE Transactions on Electronics, 87(6), 840–853.
5. Seng, C.W., Sern, T.Y., Seng, Y.K. (2013). A low power wideband differential transimpedance amplifier for optical receivers in 0.18- $$\upmu$$ μ m CMOS. In 2013 IEEE 11th international new circuits and systems conference (NEWCAS) (pp. 1–4). IEEE
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