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Ayman Fayed's Adaptive Techniques for Mixed Signal System on Chip (The PDF

By Ayman Fayed

ISBN-10: 0387321543

ISBN-13: 9780387321547

ISBN-10: 0387321551

ISBN-13: 9780387321554

This publication is dedicated to the topic of adaptive concepts for clever analog and combined sign layout wherein totally practical first-pass silicon is conceivable. To our wisdom, this can be the 1st booklet dedicated to this topic. The strategies defined should still bring about quantum development in layout productiveness of advanced analog and combined sign structures whereas considerably slicing the spiraling bills of product improvement in rising nanometer applied sciences.

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Additional info for Adaptive Techniques for Mixed Signal System on Chip (The International Series in Engineering and Computer Science)

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Another way to assess the linearity of the transconductor is the THD numbers shown in table 3-1. As expected, the best THD performance is achieved at low frequency, and low input voltage, while the worst performance is at high frequency and high input voltage. As those numbers show, the circuit in Fig. 3-2 has much more linear behavior (10 dbs better THD), as well as much wider input voltage range. Another advantage of the circuit in Fig. 3-2 is its truly fully differential nature, or in other words, the minimal difference between Gm+ and Gm-.

1730-1735, Dec. 1992. 7. Mohammed Ismail, Terri Fiez, “Analog VLSI Signal and Information Processing,” McGraw-Hill, New York, 1994. 8. H. Wallinga and K. Bult, “Design and Analysis of CMOS Analog Processing Circuits by Means of a Graphical MOST Model,” IEEE Journal of Solid-State Circuits, vol. 24, No. 3, PP. 672-680, Jun. 1989. 9. N. I. Khachab and M. Ismail, “Linearization techniques for nth-order sensor models in MOS VLSI technology,” IEEE Trans. Circuits. , vol. 38,PP. 1439-1450, Dec. 1991.

If the source voltages are forced to be equal, Eq. 2-21 reduces to: I1  I 2 ª D § ·º K « VD1  VD2 ¨VG  VTO  VD1  VD2 ¸» 2 © ¹¼ ¬ (2-24) Moreover, if the drain voltages were manipulated such that VD1 = VB + VX and VD2 = VB – VX, then Eq. 2-22 becomes: R 2VX I1  I 2 1 K VG  VTO  DVB (2-25) which is again similar to Eq. 2-19, but unlike Eq. 2-23, it is only valid when the two transistors are operating in the triode region. Equations 2-22 and 2-24 were based on sharing the gate voltage between the two transistors in Fig.

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Adaptive Techniques for Mixed Signal System on Chip (The International Series in Engineering and Computer Science) by Ayman Fayed


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