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An improved low-voltage low-power CMOS comparator to be used in high-speed pipeline ADCs.

, , , and . ISCAS (5), page 141-144. IEEE, (2002)

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Design of low-voltage CMOS pipelined ADCs using 1 pico-Joule of energy per conversion., , , , , and . ISCAS (1), page 921-924. IEEE, (2002)Design of a digitally programmable delay-locked-loop for a low-cost ultra wide band radar receiver., , , and . ISCAS (1), page 133-136. IEEE, (2003)Design methodology for optimization of analog building blocks using genetic algorithms., , and . ISCAS (5), page 435-438. IEEE, (2001)Low-Power CMOS Comparator with Embedded Amplification for Ultra-high-speed ADCs., , , , and . ISCAS, page 3602-3605. IEEE, (2007)Efficient digital self-calibration of video-rate pipeline ADCs using white Gaussian noise., , , , and . ISCAS (1), page 877-880. IEEE, (2003)Novel linearization technique for low-distortion high-swing CMOS switches with improved reliability., , and . ISCAS, IEEE, (2006)Design and optimization of low-voltage two-stage CMOS amplifiers with enhanced performance., , , , and . ISCAS (1), page 197-200. IEEE, (2003)Low-Voltage Low-Power Broadband CMOS Analogue Circuit for White Gaussian Noise Generation., , and . J. Low Power Electronics, 2 (2): 308-316 (2006)A Switched-Capacitor Band-Pass Biquad Filter Using a Simple Quasi-unity Gain Amplifier., , and . DoCEIS, volume 394 of IFIP Advances in Information and Communication Technology, page 582-589. Springer, (2013)An improved low-voltage low-power CMOS comparator to be used in high-speed pipeline ADCs., , , and . ISCAS (5), page 141-144. IEEE, (2002)