By Arjuna Marzuki, Ahmad Ismat Abdul Rahim, Mourad Loulou
Monolithic Microwave built-in Circuit (MMIC) is an digital machine that's common in all excessive frequency instant structures. In constructing MMIC as a product, knowing research and layout ideas, modeling, dimension method, and present tendencies are essential.
Advances in Monolithic Microwave built-in Circuits for instant platforms: Modeling and layout Technologies is a imperative resource of data on MMIC improvement, containing study on conception, layout, and sensible ways to built-in circuit units. This e-book 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 gadget development.
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Extra resources for Advances in Monolithic Microwave Integrated Circuits for Wireless Systems: Modeling and Design Technologies
2004). ). Cambridge Univ Press. Nguyen, T. , Kim, C. , Ihm, G. , Yang, M. , & Lee, S. G. (2004). CMOS low-noise amplifier design optimization techniques. Microwave Theory and Techniques. IEEE Transactions on, 52(5), 1433–1442. Nguyen, T. , & Lee, S. G. (2003). Noise and gain optimization technique for RF-integrated CMOS low noise amplifier. Paper presented at the Proceedings of the 2003 IEEE Conference on Electron Devices and Solid-State Circuits Hong Kong. , & ebrary, I. (2001). Direct conversion receivers in wide-band systems: Kluwer Academic Publishers.
The characteristics that distinguished one topology from the rest are analyzed. Comments on the capabilities of each topology in achieving the desired performance metrics are given. Derivations of equations are given to enable better understanding on how the circuits perform. Simulations were performed on all five designs based on the typical performance metrics of the LNA and the results given. Results will be discussed and followed by conclusions. BACKGROUND Amplifier Topologies Common-Source (CS) Amplifier with Shunt-Input Resistor This topology is shown in Figure 1.
Technical Specification Group GSM/EDGE Radio Access Network; Radio transmission and reception (Release 7). 0. 3rd Generation Partnership Project (2008b). Technical Specification Group Radio Access Network; User Equipment (UE) radio transmission and reception (FDD), (Release 8). 0. , Jung, Y. , Lee, D. , & Chae, S. I. (2005). 25-µm CMOS Quad-Band GSM RF Transceiver Using an Efficient Local Oscillator (LO) Frequency Plan. IEEE Journal of Solidstate Circuits, 40(5). , & Lee, T. H. (1997). RF Linearity of Short-Channel MOSFETs.