Download e-book for iPad: Analog Circuit Design: Fractional-N Synthesizers, Design for by Woogeun Rhee (auth.), Arthur van Roermund, Michiel Steyaert,

By Woogeun Rhee (auth.), Arthur van Roermund, Michiel Steyaert, Johan H. Huijsing (eds.)

ISBN-10: 0306487071

ISBN-13: 9780306487071

ISBN-10: 1402075596

ISBN-13: 9781402075599

This ebook comprises the contribution of 18 tutorials of the twelfth Workshop on Advances in Analog Circuit layout. it really is quantity 12 within the winning sequence of Analog Circuit layout, supplying invaluable info and ideal overviews of analog circuit layout, CAD, and RF platforms. The sequence will be visible as a connection with these serious about analog and mixed-signal layout.
Each e-book discusses 3 particular issues on new and important layout principles within the zone of analog circuit layout. each one subject is mentioned via six specialists within the box and state of the art details is shared and overviewed. during this twelfth version the themes are Fractional-N Synthesizers, layout for Robustness, and Line and Bus Drivers.
Analog Circuit Design is an important reference resource for analog layout engineers and researchers that desire to continue abreast with the newest advancements within the box. the academic assurance additionally makes it compatible to be used in a sophisticated layout path.

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Additional resources for Analog Circuit Design: Fractional-N Synthesizers, Design for Robustness, Line and Bus Drivers

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Passive approaches are rarely used for higher order loop filter implementations due to the awkwardness of using inductors. Figure 11 illustrates active counterparts to the passive topologies shown in Figure 10. There are two advantages to using an active, rather than passive, approach for the loop filter implementation: 1) the charge pump need not support a wide voltage range at its output since the active approach consistently 36 sets its value to that of a reference voltage, 2) third order PLL dynamics can be achieved without requiring inductors.

Perrott, B. Setterberg, and A. 5GHz frequency synthesizer with settling and 2Mb/s closed loop modulation,” in ISSCC Dig. Tech. Papers, Feb. 2000, pp. 200-201. 26 [17] [18] [19] [20] [21] [22] [23] [24] [25] [26] [27] [28] B. , May 2002, pp. 425-428. R. Ahola and K. Halonen, “A 2GHz fractional-N frequency synthesizer in CMOS,” in Proc. European Solid-State Circuits Conference, Sep. 2000, pp. 472-475. K. Chao, S. Nadeem, W. Lee, and C. Sodini, “A higher-order topology for interpolative modulation for oversampling A/D converters,” IEEE Transactions on Circuits and Systems, vol.

3. Computation of G(f) Given the definitions in the previous section, the transfer function G(f) is designed automatically by the PLL Design Assistant software package. Specifically, the user simply enters in desired values for bandwidth, order, shape, type, and and the corresponding G(f) transfer function is automatically computed using classical filter design routines. The next section describes how to design the open loop PLL transfer function to achieve the desired G(f) response. 4. Loop Filter Design The key PLL component used to achieve a desired PLL transfer function is the loop filter.

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Analog Circuit Design: Fractional-N Synthesizers, Design for Robustness, Line and Bus Drivers by Woogeun Rhee (auth.), Arthur van Roermund, Michiel Steyaert, Johan H. Huijsing (eds.)

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