In pacemaker design the mainconcerns are reliability, functionality,operating life and miniaturization. Afundamental role in miniaturization is dueto the increased circuit integration; hencelow power circuit solutions that can beintegrated in sub-micron CMOS technology arehighly desirable. This work proposes avoltage multiplier suitable for pulse outputgeneration in an implantable pacemaker,implemented in a standard, low-cost CMOS 0.8um@Vdd = 2.8V
There have been considerable advancements in technology since the first permanent pacemaker was impl...
A low power CMOS charge pump (CP) is proposed utilizing a new combination of charge transferring swi...
A charge pump circuit capable of operating at different switching speed is presented. The switching ...
The problems that arise when trying to port pacemaker analogue blocks to submicrometre technology ar...
Power reduction is a central priority in battery-powered medical implantable devices, particularly p...
Implantable biomedical devices can highly benefit from submicrometer CMOS technologies both in terms...
Abstract—Implantable pacemaker is a battery operated real time embedded system, which includes softw...
Advances in circuits, sensors, and energy storage elements have opened up many new possibilities in ...
A high performance, ultra-low power, fully differentia 2nd-order continuous-time Σ∆ analogue-to-digi...
Abstract—A high performance, ultra-low power, fully differen-tial 2nd-order continuous-time Σ ∆ anal...
A low-power mixed-signal IC for implantable pacemakers is presented. The proposed system features th...
SUB-and-add multipliers have a simpler structure than other types of multipliers and, at the same ti...
This work investigates the deep subthreshold device size for the CMOS logic gate inverter circuit at...
PostprintThis paper shows the implementation of a fully integrated Gm-C 0.5-7Hz bandpass filter-ampl...
A high performance, ultra-low power, fully differential 2 nd-order continuous-time ∑Δ analogue-to-di...
There have been considerable advancements in technology since the first permanent pacemaker was impl...
A low power CMOS charge pump (CP) is proposed utilizing a new combination of charge transferring swi...
A charge pump circuit capable of operating at different switching speed is presented. The switching ...
The problems that arise when trying to port pacemaker analogue blocks to submicrometre technology ar...
Power reduction is a central priority in battery-powered medical implantable devices, particularly p...
Implantable biomedical devices can highly benefit from submicrometer CMOS technologies both in terms...
Abstract—Implantable pacemaker is a battery operated real time embedded system, which includes softw...
Advances in circuits, sensors, and energy storage elements have opened up many new possibilities in ...
A high performance, ultra-low power, fully differentia 2nd-order continuous-time Σ∆ analogue-to-digi...
Abstract—A high performance, ultra-low power, fully differen-tial 2nd-order continuous-time Σ ∆ anal...
A low-power mixed-signal IC for implantable pacemakers is presented. The proposed system features th...
SUB-and-add multipliers have a simpler structure than other types of multipliers and, at the same ti...
This work investigates the deep subthreshold device size for the CMOS logic gate inverter circuit at...
PostprintThis paper shows the implementation of a fully integrated Gm-C 0.5-7Hz bandpass filter-ampl...
A high performance, ultra-low power, fully differential 2 nd-order continuous-time ∑Δ analogue-to-di...
There have been considerable advancements in technology since the first permanent pacemaker was impl...
A low power CMOS charge pump (CP) is proposed utilizing a new combination of charge transferring swi...
A charge pump circuit capable of operating at different switching speed is presented. The switching ...