articleTop 1% cited
A 1.5-V, 10-bit, 14.3-MS/s CMOS pipeline analog-to-digital converter
IEEE Journal of Solid-State Circuits · 1999 · Vol. 34(5) · pp. 599–606
Andrew Abo✉(University of California, Berkeley)P.R. Gray(University of California, Berkeley)
Abstract
A 1.5-V, 10-bit, 14.3-MS/s pipeline analog-to-digital converter was implemented in a 0.6 /spl mu/m CMOS technology. Emphasis was placed on observing device reliability constraints at low voltage. MOS switches were implemented without low-threshold devices by using a bootstrapping technique that does not subject the devices to large terminal voltages. The converter achieved a peak signal-to-noise-and-distortion ratio of 58.5 dB, maximum differential nonlinearity of 11.5 least significant bit (LSB), maximum integral nonlinearity of 0.7 LSB, and a power consumption of 36 mW.
Analog and Mixed-Signal Circuit DesignAdvancements in Semiconductor Devices and Circuit DesignLow-power high-performance VLSI designDifferential nonlinearityCMOSLeast significant bitIntegral nonlinearityPipeline (software)Analog-to-digital converterElectronic engineeringElectrical engineeringComputer scienceVoltage
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Cited by
A 10-bit 50-MS/s SAR ADC With a Monotonic Capacitor Switching Procedure
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References
A 10 b, 20 Msample/s, 35 mW pipeline A/D converter
IEEE Journal of Solid-State Circuits · 1995 · 635 citations
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