By Woogeun Rhee (auth.), Arthur van Roermund, Michiel Steyaert, Johan H. Huijsing (eds.)
This e-book comprises the contribution of 18 tutorials of the twelfth Workshop on Advances in Analog Circuit layout. it truly is quantity 12 within the profitable sequence of Analog Circuit layout, delivering invaluable info and ideal overviews of analog circuit layout, CAD, and RF structures. The sequence will be noticeable as a connection with these taken with analog and mixed-signal layout.
Each ebook discusses 3 particular issues on new and worthwhile layout principles within the region of analog circuit layout. each one subject is mentioned via six specialists within the box and cutting-edge details is shared and overviewed. during this twelfth variation the subjects are Fractional-N Synthesizers, layout for Robustness, and Line and Bus Drivers.
Analog Circuit Design is a necessary reference resource for analog layout engineers and researchers that desire to retain abreast with the newest advancements within the box. the educational assurance additionally makes it compatible to be used in a sophisticated layout path.
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Extra info for Analog Circuit Design: Fractional-N Synthesizers, Design for Robustness, Line and Bus Drivers
European Solid-State Circuits Conference, Sep. 2000, pp. 468-471. D. G. Wilson, W. Rhee, and B. Song, “Integrated RF receiver front ends and frequency synthesizers for wireless,” Emerging Technologies: Designing Low Power Digital Systems, International Symp. on Circuits and Systems, May 1996. V. Reinhardt, “Spur reduction techniques in direct digital synthesizers,” in Proceedings of 47th Frequency Control Symposium, Oct. 1993, pp. 230241. W. Rhee and A. Ali, “An on-chip phase-compensation technique in fractional-N frequency synthesis,” in IEEE Proceedings of ISCAS, vol.
The quantization noise power is with for both modulators with the modulus range and b the number of effective output bits. Out-of-Band Phase Noise The out-of-band phase noise contribution of the modulator at the output of the synthesizer is found in Eq. (2) [7, 8], with the noise transfer function. The noise transfer function is integrated since the prescaler acts on frequency, while the state variable is phase. In the equation, is the closed-loop transfer function of the PLL. Since the aim is to achieve high spectral purity, a 4th-order, type-II PLL characteristic is chosen (see Eq.
3. Fractional-N Synthesis: Non-Linear Analysis The linear analysis suggested that applying control to the prescaler would not cause any problems whatsoever. Practice however proves this inaccurate. Therefore, an analysis method is developed that provides a fast, interactive means of examining the influence of non-linearities and mismatch in different PLL building blocks by performing a transient simulation of the fractional-N synthesizer. The strong point of the analysis method is its capability to sweep simulations sufficiently fast over different degrees of non-linearities and operating points, while performing sufficiently long transient simulations to get accurate fast-Fourier transforms (FFT) of the phase variable.