Analog Circuit Design: MOST RF Circuits, Sigma-Delta by D. B. M. Klaassen, B. Nauta, R. R. J. Vanoppen (auth.),

By D. B. M. Klaassen, B. Nauta, R. R. J. Vanoppen (auth.), Willy Sansen, Rudy J. van de Plassche, Johan H. Huijsing (eds.)

This booklet comprises the revised contributions of the entire audio system of the 5th AACD Workshop which used to be held in Lausanne on April 2-4, 1996. It was once equipped via Dr Vlado Valence of the EPFL collage and MEAD of Lausanne. this system consisted of six tutorials in step with day in the course of 3 days. The tutorials have been provided by means of specialists within the box. They have been chosen by way of a application committee such as Prof. Willy Sansen of the Katholieke Universiteit Leuven, Prof. Rudy van de Plassche of Philips examine and the collage of expertise Eindhoven and Prof. 10han Huijsing of the Delft collage of know-how. the 3 themes pointed out above were chosen as a result of their significance in current days analog layout. the opposite subject matters which were mentioned prior to are: in 1992 : Operational amplifiers Analog to electronic convereters Analog desktop aided layout in 1993 : combined relief cicuit layout Sensor interface circuits verbal exchange circuits in 1994 : Low-power low-voltage layout built-in filters shrewdpermanent strength circuits in 1995 : Low-noise, low-power, low-voltage layout Mixed-mode layout with CAD instruments Voltage, present and time references each one AACD workhop has given upward thrust to the ebook of a publication via Kluwer entitled "Analog Circuit Design". this can be hence the 5th publication. This sequence of books offers a worthy evaluation of all analog circuit layout thoughts and achievements. it's a reference for whoever is engaged during this discipline.

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Extra info for Analog Circuit Design: MOST RF Circuits, Sigma-Delta Converters and Translinear Circuits

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In the same way, the VCG can be trimmed to compensate the gain variation due to DIF throughout the IF adjustment range. ~ r"-'" .. 12: Improved new architecture of the mixer. -1C'/C' (2) are cancelled due to the new distributed phase shifters, while MLO/fLO and MrF/frF are cancelled due to the VCG. 54 c. Cascode low noise amplifier To obtain a complete image rejection front-end, a low noise amplifier (Fig. 13) was implemented before the mixer. The LNA uses the cascode structure with than LC on-silicon load as described previously vee Out Fig 13: Representation of the low noise amplifier The current mirror Qm-Qd and intemal decoupling capacitance C2 fonn a low noise bias scheme for Q I.

A. Abidi, "Radio Frequency Integrated Circuits for Portable Communications," Digest of Technical Papers, 1994 Custom Integrated Circuits Conference, San Diego, June 1994. 14. A. Chandrakasan, S. Sheng, R. W. Brodersen, "Design Considerations for a Future Portable Multi-Media Terminai," Third-Generation Wireless Information Networks, Kluewer Academic Publisher, 1992. 15. P. Baltus and A. Tombeur, "DECT Zero-IF Receiver Front-end," Proceedings of the AACD (Leuven), pp. 295318, March 1993. 16. M. Steyaert and 1.

Da/H. -to:'I(H;r ·T···· T····· . N. N. (100 KHz offset) I'Ll. ,,,w ~. a4~:U'QiHr. :H& :LO .... PAN Measurement 3V 4mA ISmA 1,7 to 1,8 GHz 80mV - 83 dBclHz - 99dBclHz - 97 dBc/Hz i .. So . 0",. veo output spectrum (free running) Table 3 Summary of measured results 58 With an external PLL for synthesizer operation, the phase noise is reduced to -97 dBclHz at 10KHz offset. The overall perfonnances of the circuit are summarized in Table 3. The VCO power consumption is only 12 mW. 19. and Fig 20 respectively.

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