In this paper a 250MHz-bandwidth continuous-time low-pass filter is presented. The filter is based on Active-Gm-RC biquadratic cell. With respect to Active-Gm-RC, this filter exploits an additional input RC-net, increasing the low-pass filtering order up to 3, while maintaining single-Opamp topology. In particular, Opamp frequency response has been optimized, exploiting a proper algorithm, that allows to minimize power and maximize loop gain phase margin. A prototype of the filter has been designed in CMOS 0.13μm technology, complying with ultra-wide-band receivers specifications. The filter consumes 1.2mW, while processing a 0.7V zero-peak differential signal, and maintaining noise power spectral density under 237μVrms. The overall Signal-to-Noise-Ratio is 65dB. © 2012 IEEE.

A 1.25mW 3rd-order Active-Gm-RC 250MHz-bandwidth analog filter based on power-stability optimization

De Matteis M.;D'Amico S.;Baschirotto A.
2012-01-01

Abstract

In this paper a 250MHz-bandwidth continuous-time low-pass filter is presented. The filter is based on Active-Gm-RC biquadratic cell. With respect to Active-Gm-RC, this filter exploits an additional input RC-net, increasing the low-pass filtering order up to 3, while maintaining single-Opamp topology. In particular, Opamp frequency response has been optimized, exploiting a proper algorithm, that allows to minimize power and maximize loop gain phase margin. A prototype of the filter has been designed in CMOS 0.13μm technology, complying with ultra-wide-band receivers specifications. The filter consumes 1.2mW, while processing a 0.7V zero-peak differential signal, and maintaining noise power spectral density under 237μVrms. The overall Signal-to-Noise-Ratio is 65dB. © 2012 IEEE.
2012
978-1-4673-1260-8
978-1-4673-1261-5
978-1-4673-1259-2
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11587/442871
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