By Gernot Hueber, Robert Bogdan Staszewski
Summarizes state of the art actual layer applied sciences for multi-mode instant RF transceivers.Includes unique contributions from exotic researchers and professionals.Covers state-of-the-art actual layer applied sciences for multi-mode instant RF transceivers.Contributors are all top researchers and pros during this box.
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Additional info for Multi-Mode Multi-Band RF Transceivers for Wireless Communications: Advanced Techniques, Architectures, and Trends
Another point of attention is the reference level to which the dc output level is controlled. In high-bias-current conditions in combination with high gain, it is not possible to have a high-output dc voltage. The dc level feedback will clip to ground, and the bias PMOS transistors will act as resistors, reducing the gain rather than as current sources. To limit this effect, it is possible to program the target output dc level voltage to some extent. Finally, the total bias current through the amplifier can be controlled to optimize the power consumption for the linearity required.
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Van Driessche, B. Debaillie, and B. Cˆome, “Ensuring consistency during front-end design using an object-oriented interfacing tool called NETLISP,” in Design Automation Conference, San Francisco, pp. 889–892, July 2006. 2. J. Van Driessche, J. Craninckx, and B. Cˆome, “Analysis and key specifications of a novel frequency synthesizer architecture for multi-standard transceivers,” in IEEE Radio and Wireless Symposium, pp. 481–484, Jan. 2006. c01 JWBS029-Hueber September 2, 2010 10:26 Printer: Yet to come REFERENCES 31 3.
Multi-Mode Multi-Band RF Transceivers for Wireless Communications: Advanced Techniques, Architectures, and Trends by Gernot Hueber, Robert Bogdan Staszewski