Interleaving can relax the power-speed tradeoffs
of analog-to-digital converters and reduce their metastability
error rate while increasing the input capacitance. This paper
quantifies the benefits and derives an upper bound on the performance
by considering noise and slewing requirements
of the circuit driving the system. A frequency-domain analysis
of interleaved converters is also presented that sheds light on
the corruption mechanisms due to interchannel mismatches. A
background timing mismatch calibration technique is proposed
and experimentally shown to reduce the image to 75 dB for
input frequencies exceeding 500 MHz.
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