A 14-bit 80-kHz sigma-delta A/D converter: modeling, design and performance evaluation
The development is described of a sigma-delta A/D (analog-to-digital) converter. Included is a brief overview of sigma-delta conversion. The A/D converter achieves an 88.5-dB dynamic range and a maximum signal-to-noise ratio of 81.5 dB. The harmonic distortion is negligible. This level of performanc...
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Veröffentlicht in: | IEEE journal of solid-state circuits 1989-04, Vol.24 (2), p.256-266 |
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Sprache: | eng |
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Zusammenfassung: | The development is described of a sigma-delta A/D (analog-to-digital) converter. Included is a brief overview of sigma-delta conversion. The A/D converter achieves an 88.5-dB dynamic range and a maximum signal-to-noise ratio of 81.5 dB. The harmonic distortion is negligible. This level of performance is about 10 dB higher than previously reported results for oversampled A/D converters in this frequency range. The analog modulator uses a double-integration switched-capacitor architecture with an oversampling rate of 10.24 MHz. Transconductance amplifiers having a 160-MHz f/sub t/ were developed for the integrators. The circuit is implemented in a 1.75- mu m 5-V CMOS process. The analog circuitry occupies 2 mm/sup 2/ of silicon area and consumes 75 mW of power. Some of the difficult problems associated with evaluating the performance of sigma-delta converters are described. The design of a sigma-delta development and performance evaluation system is presented. This system includes a custom interface board linking the chip to a Sun workstation, and extensive digital signal processing and analysis software.< > |
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ISSN: | 0018-9200 1558-173X |
DOI: | 10.1109/4.18584 |