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 ebook "Analog Interfaces for electronic sign Processing Systems". the sphere of analog built-in circuit layout is present process speedy evolution. The pervasiveness of electronic processing has significantly transformed the micro-system architectures: the analog a part of complicated combined platforms is an increasing number of driven on the boundary limits of the processing chain. furthermore, the elevated functionality of electronic circuits, by way of accuracy and pace, are making the specification necessities of analog circuits very strict. as well as this, the expertise, offer voltage and gear intake of analog circuits needs to be suitable with these, common for electronic circuits. hence, in a couple of phrases, analog circuits have gotten advanced and specialized interfaces among the genuine global and electronic sign processing domain names. This technological evolution may be followed by means of an equivalently speedy evolution in dressmaker advantage. wisdom of advanced sign dealing with may be speedy changed by way of information of easy yet very exact and extremely quickly sign processing and an excellent history in facts conversion ideas. All of this by utilizing the CMOS (and most likely BiCMOS) technology.
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Extra resources for Analog Interfaces for Digital Signal Processing Systems
Of the IEEE CICC conference, San Diego, 1989, pp. 1-4 F. OP 'T EYNDE, W. ISCAS, Portland, 1989, pp. 86-89 F. OP' T EYNDE, W. lm CMOS OTA with 800 MHz GBW" - Proc. 1. INTRODUCTION Besides noise and parasitic coupling of spurious signals. hannonic distortion is the major signal-corrupting factor in high-performance data acquisition systems. As data processing is more and more performed by mixed analog and digital circuits. the distortion specifications for the analog building blocks become more and more severe, in order to fully benefit from the almost unlimited dynamic range of the digital circuits.
Gain [dB] 40 200 180 ~-- 30 160 140 20 120 100 10 80 60 o 40 20 -10 1E+05 ""I 1E+06 '''I " 0 ,,' 1 1 E+08 1E+09 Fig. 17: The measured open-loop gain of the 800 MHz differential OTA 1E+10 - 34- THE POWER CONSUMPTION OF CMOS WIDEBAND AMpUFIERS In order to minimise the series resistances of the feedforward capacitors, metal contacts are provided all around the capacitor bottom plates_ The top plates are on-top contacted with multiple contacts. This amplifier is measured on wafer with dedicated HF probes, shown in Fig.
4. also compares the distortion of the amplifier when used as a noninverting buffer (see Fig. ) with the distortion when used as an inverting amplifier (see Fig. ). In the two configurations, the load is the same. The second harmonic distortion for the non-inverting buffer is over 20 dB larger for frequencies up to 10 kHz. This increase can only be caused by the input common-mode voltage since this is the only difference between the two circuits. This illustrates the importance of the commonmode gain.