A low-power class-AB Gm-C biquad stage has been designed using a voltage buffer based on error amplifiers and a push-pull current mirror. The class-AB architecture allows good power efficiency by lowering the required bias current. The biquad stage consumes 250 μA from a 1.2V supply, and achieves a resonance frequency of 2.2MHz with a Q of 2. The SFDR (spurious-free dynamic range) with a two-tone test is 48dB and the SNR (signal-to-noise ratio) is 44.4dB, with a 400mVpp differential input signal. A pseudo-differential architecture allows large bandwidth and lower power consumption in the transconductance stages. The stage can be used to synthetize lowpass and bandpass filters composed of low-Q stages.
A low-power class-AB Gm-C biquad stage in CMOS 40nm technology / Centurelli, F.; Monsurro, P.; Trifiletti, A.. - (2019), pp. 294-297. (Intervento presentato al convegno 26th IEEE International Conference on Electronics, Circuits and Systems, ICECS 2019 tenutosi a Genoa; Italy) [10.1109/ICECS46596.2019.8965124].
A low-power class-AB Gm-C biquad stage in CMOS 40nm technology
Centurelli F.;Monsurro P.
;Trifiletti A.
2019
Abstract
A low-power class-AB Gm-C biquad stage has been designed using a voltage buffer based on error amplifiers and a push-pull current mirror. The class-AB architecture allows good power efficiency by lowering the required bias current. The biquad stage consumes 250 μA from a 1.2V supply, and achieves a resonance frequency of 2.2MHz with a Q of 2. The SFDR (spurious-free dynamic range) with a two-tone test is 48dB and the SNR (signal-to-noise ratio) is 44.4dB, with a 400mVpp differential input signal. A pseudo-differential architecture allows large bandwidth and lower power consumption in the transconductance stages. The stage can be used to synthetize lowpass and bandpass filters composed of low-Q stages.File | Dimensione | Formato | |
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