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Analog-to-Digital Converters (ADCs) play an important role in most
modern signal processing and wireless communication systems where
extensive signal manipulation is necessary to be performed by
complicated digital signal processing (DSP) circuitry. This trend
also creates the possibility of fabricating all functional blocks
of a system in a single chip (System On Chip - SoC), with great
reductions in cost, chip area and power consumption. However, this
tendency places an increasing challenge, in terms of speed,
resolution, power consumption, and noise performance, in the design
of the front-end ADC which is usually the bottleneck of the whole
system, especially under the unavoidable low supply-voltage imposed
by technology scaling, as well as the requirement of battery
operated portable devices. Generalized Low-Voltage Circuit
Techniques for Very High-Speed Time-Interleaved Analog-to-Digital
Converters will present new techniques tailored for low-voltage and
high-speed Switched-Capacitor (SC) ADC with various design-specific
considerations.
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