By Frank op 't Eynde, Willy M.C. Sansen
It is a smart honor to supply an advent for Dr. Frank Op 't Eynde's and Dr. Willy Sansen's publication "Analog Interfaces for electronic sign Processing Systems". the sphere of analog built-in circuit layout is present process swift evolution. The pervasiveness of electronic processing has significantly changed the micro-system architectures: the analog a part of complicated combined structures is a growing number of driven on the boundary limits of the processing chain. furthermore, the elevated functionality of electronic circuits, by way of accuracy and velocity, are making the specification specifications of analog circuits very strict. as well as this, the expertise, provide voltage and tool intake of analog circuits needs to be suitable with these, average for electronic circuits. for this reason, in a number of phrases, analog circuits have gotten complicated and specialized interfaces among the true international and electronic sign processing domain names. This technological evolution can be followed via an equivalently speedy evolution in dressmaker knowledge. wisdom of complex sign dealing with might be fast changed by way of information of straightforward yet very exact and extremely speedy sign processing and a superior historical past in info conversion options. All of this by utilizing the CMOS (and in all probability BiCMOS) technology.
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Extra resources for Analog Interfaces for Digital Signal Processing Systems
10. shows a microphotograph of the chip. For the most critical transistors, a waffle layout is applied. The others are realised with an interdigitated layout. In order to obtain a good bulk connection even for high frequencies and to prevent latchup problems, the transistors are surrounded by bulk contacts. In this way, the bulk resistance is minimised. In order to reduce the parasitic source and drain series resistances, multiple diffusion contacts are provided. The amplifier gain can be derived from scattering parameter measurements  [II].
This can be an awkward and time-consuming process. The calculations can however be simplified considerably for circuits satisfying the following two conditions: 1) For the given circuit and the given input signal, the Volterra series  reaches convergency. 2) The contributions of the even-order Volterra kernels to the output signal decrease rapidly with increasing order, and so do the contributions due to the odd-order kernels. A circuit satisfying these conditions is called to operate under low-distortion conditions.
SANSEN, P. VANDELOO: "Modeling the MOS Transistor at High  M. P. E. Lm CMOS Switched-Capacitor Video Frequencies" - Electronic Letters, vol. 22, No. 15, 17 July 1986, pp. 810-812 MILKOVIC: "Current Gain High-Frequency CMOS Operational Amplifiers": IEEE J. Solid-State Circuits, Vol. SC-20 pp. 5 MHz" - Proc. of the IEEE CICC conference, San-Diego, 1989, pp. 1-4 l7] K. BULT, GEELEN: " A Fast-Settling CMOS opamp with 90 dB DC gain and 181 I. GETREU: "Modeling the Bipolar Transistor" - Tektronix part.
Analog Interfaces for Digital Signal Processing Systems by Frank op 't Eynde, Willy M.C. Sansen