By Arjuna Marzuki, Ahmad Ismat Abdul Rahim, Mourad Loulou
Monolithic Microwave built-in Circuit (MMIC) is an digital machine that's typical in all excessive frequency instant platforms. In constructing MMIC as a product, realizing research and layout options, modeling, dimension technique, and present tendencies are essential.
Advances in Monolithic Microwave built-in Circuits for instant structures: Modeling and layout Technologies is a important resource of data on MMIC improvement, containing examine on conception, layout, and useful methods to built-in circuit units. This booklet is of curiosity to researchers in and academia operating within the components of circuit layout, built-in circuits, and RF and microwave, in addition to a person with an curiosity in monolithic instant equipment development.
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Additional info for Advances in Monolithic Microwave Integrated Circuits for Wireless Systems: Modeling and Design Technologies
Regarding linearity, the attained results are comparable between reconfigurable LNA and wide band LNAs in Mustaffa, Zayegh, Veljanovski, Stojcevski, & Zulkifli (2008a and 2008b). e. 02 dBm). This could be explained by the use of more power consumption in the reconfigurable LNA compared to wide band LNAs. CONCLUSION In this chapter, details on the concepts of mobile communication system and issues regarding it as well as the design and implementation of a reconfigurable multi-standard multi-band LNA have been presented.
2002) making it larger than Fmino and, thus, making the reason for utilizing SNIM unworthy. PCNO Technique In PCNO technique, simultaneous gain and noise matching is possible at any amount of power dissipation. This is achieved by proper selection of Ls at any given Cgs (Shaeffer & Lee, 1997). Under fixed drain current, there exists a transistor’s width which can result in a low NF. The derivation for achieving the expression which relates noise parameters with the transistor’s size to give minimum noise factor is explained in great detail in (Lee, 2004).
The total gate capacitance is the summation of gate-source, gatedrain and gate-bulk capacitances, respectively. In term of output impedance matching, SW1 , and SW2 play an important roles in determining the load at the output. The on and off of these switches will set the output impedance matching of the LNA either to operate at upper band or lower band mode. The LNA is operating as follows: • • To set the output impedance of the LNA at upper band mode, SW1 has to be in ON mode and SW2 in OFF mode.
Advances in Monolithic Microwave Integrated Circuits for Wireless Systems: Modeling and Design Technologies by Arjuna Marzuki, Ahmad Ismat Abdul Rahim, Mourad Loulou