A BiCMOS high-Q 10.7MHz SC bandpass filter has been realized using double-sampled finite-gain-compensated SC integrators. With low-power opamps and large capacitors the power consumption is 16mW, the inband noise density is 380nV/√Hz and the dynamic range is about 68dB for a 3% IM.

Baschirotto, A., Nagari, A., Montecchi, F., Castello, R. (1996). Design considerations for a 10.7 MHz BiCMOS high-Q double-sampled SC bandpass filter. In 1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96 (pp.433-436). IEEE [10.1109/ISCAS.1996.539977].

Design considerations for a 10.7 MHz BiCMOS high-Q double-sampled SC bandpass filter

Baschirotto, A;
1996

Abstract

A BiCMOS high-Q 10.7MHz SC bandpass filter has been realized using double-sampled finite-gain-compensated SC integrators. With low-power opamps and large capacitors the power consumption is 16mW, the inband noise density is 380nV/√Hz and the dynamic range is about 68dB for a 3% IM.
paper
10.7 MHz; 16 mW; BiCMOS; double-sampled SC bandpass filter; dynamic range; finite-gain-compensated SC integrators; inband noise density; low-power opamps; power consumption; BiCMOS analogue integrated circuits; band-pass filters; integrated circuit design; integrated circuit measurement; integrating circuits; operational amplifiers; switched capacitor filters
English
1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96
1996
1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96
0-7803-3073-0
1996
1
433
436
none
Baschirotto, A., Nagari, A., Montecchi, F., Castello, R. (1996). Design considerations for a 10.7 MHz BiCMOS high-Q double-sampled SC bandpass filter. In 1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96 (pp.433-436). IEEE [10.1109/ISCAS.1996.539977].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/36910
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