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By Arjuna Marzuki, Ahmad Ismat Abdul Rahim, Mourad Loulou

Monolithic Microwave built-in Circuit (MMIC) is an digital equipment that's customary in all excessive frequency instant structures. In constructing MMIC as a product, knowing research and layout thoughts, modeling, dimension method, and present developments are essential.

Advances in Monolithic Microwave built-in Circuits for instant platforms: Modeling and layout Technologies is a relevant resource of information on MMIC improvement, containing examine on concept, layout, and sensible techniques to built-in circuit units. This publication is of curiosity to researchers in and academia operating within the parts of circuit layout, built-in circuits, and RF and microwave, in addition to somebody with an curiosity in monolithic instant gadget development.

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Extra resources for Advances in Monolithic Microwave Integrated Circuits for Wireless Systems: Modeling and Design Technologies

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Multi-standard CMOS Wireless Receivers: Analysis and Design. Kluwer Academic Publishers. , & Castello, R. (2006). 11b-g With Multiband Positive Feedback Low-Noise Amplifier. IEEE Journal of Solid-state Circuits, 41(4), 981–989. 870890 Moreira, C. , & Belot, D. (2006). A Reconfigurable DCS1800/W-CDMA LNA: Design and Implementation Issues. In Proceedings of the 9th European Conference on Wireless Technology, Manchester UK, September 2006 (pp. 357-360). Moreira, C. , & Belot, D. (2006). A Reconfigurable DCS1800/W-CDMA LNA: Design and Implementation Issues.

Finally, the FC LNA was not only designed for low voltage operation but also for good noise performance (Abou-Allam & Manku, 1998). From the analysis of the topologies modified from the inductively-degenerated cascode LNA, a new topology is given to provide good gain and noise performance without the need of external matching circuitries. This chapter is divided according to the five topologies involved in the study. Under each division, the functionality of each topology is studied. The characteristics that distinguished one topology from the rest are analyzed.

Boeck, G. (2005). Reconfigurable Receiver Approach for 4G Terminals and Beyond. The 3rd International IEEE-NEWCAS Conference (pp. 9-12). , & Masu, K. (2005). Reconfigurable CMOS Low Noise Amplifier for Self Compensation. IEEE International Symposium Circuits and Systems, ISCAS ’06, Melbourne (pp. 1-5). Kim, J. , Jang, Y. , & Yoo, H. J. (2007). Design of reconfigurable RF front-end for multi-standard receiver using switchable passive networks. Springer Journal of Analog Integrated Circuits and Signal Processing, 50(2), 81–88.

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