Title :
A fully integrated dual-channel log-domain programmable preamplifier and filter for an implantable cardiac pacemaker
Author :
Gerosa, Andrea ; Maniero, Andrea ; Neviani, Andrea
Author_Institution :
Dept. of Inf. Eng., Univ. of Padova, Italy
Abstract :
A programmable-gain preamplifier and filter for detection of spontaneous heart activity in an implantable cardiac pacemaker is presented. The system is fully integrated in a standard 0.35-μm CMOS technology, including all auxiliary circuits. Two channels are available in order to process both atrial and ventricular signals. CMOS translinear circuits, with particular emphasis on log-domain techniques, have been exploited in order to contain current consumption and to allow correct operation with a reduced supply voltage, due to battery discharging. Indeed, the realized system can operate down to 1.8 V of supply voltage and dissipates at most 1.8 μA, granting at least 47 dB of dynamic range (DR) for the atrial chain, which is compatible with advanced digital sensing. Current consumption can be further reduced at the expense of DR if a simpler sensing like peak detection is adopted. All system performance have been verified by measurements results and are compatible with the requirements of cardiac pacemakers. This work, therefore, demonstrates how a proper design approach, exploiting low-power and low-voltage techniques, allows one to optimize performance for the cardiac pacemaker.
Keywords :
CMOS integrated circuits; cardiology; filters; low-power electronics; medical signal processing; pacemakers; preamplifiers; programmable circuits; 0.35 micron; 1.8 V; 1.8 muA; CMOS technology; CMOS translinear circuits; atrial chain; atrial signals; auxiliary circuits; battery discharging; current consumption; digital sensing; dual-channel filter; dual-channel preamplifier; dynamic range; implantable cardiac pacemaker; log-domain filter; log-domain preamplifier; log-domain techniques; low-power techniques; low-voltage techniques; peak detection; programmable-gain filter; programmable-gain preamplifier; spontaneous heart activity detection; supply voltage; ventricular signals; Batteries; CMOS technology; Dynamic range; Filters; Heart; Integrated circuit technology; Pacemakers; Preamplifiers; Signal processing; Voltage; Biomedical; LP; LV; TL; circuits; companding; log domain; low power; low voltage; pacemaker; translinear;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2004.835027