A multimodal cardiac therapy system synchronizes mechanical compression with electrical countershock to enhance current flow across the myocardium.
Motion sensors detect device rotation to automatically orient the display upright, resolving readability issues during emergencies.
A programmable output energy delivery bridge with a bootstrapped fully solid-state switch control voltage generation circuit delivers defibrillation shocks.
A CPR band application aid facilitates positioning the restraint under a patient.
Configurable comparator groups similar electrocardiogram episodes to reduce clinician review time.
Surface electrodes on the device body enable continuous ECG monitoring, eliminating bulky disposable pad deployment and reducing replacement costs.
An isolating circuit electrically separates patient parameter electrodes from system grounds, minimizing electrical noise interference that causes false alarms.
Independent energy reservoirs segment defibrillation pulses to reduce tissue damage while maintaining efficacy through precise amplitude control.