IP Library Granted Patent US 9,008,767
Granted Patent B2
US 9,008,767 · App. 11/282,186 · Granted Apr 14, 2015

System and method for performing self-test in an automatic external defribillator (AED)

Inventor: Kyle R. Bowers (Boxborough, MA)
Assignee: Scion Medical Limited
A61N1/3925
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,008,767
App. No.
11/282,186
Granted
Apr 14, 2015
Kind
B2
Abstract

An automatic external defibrillator with an intelligent self-test system that ensures device readiness. The self-test system conditionally runs functional tests based on knowledge of device use, time of day, pre-programmed information, operational features and previous events. The condition of the defibrillator is indicated visually, audibly or both based on the results of the self-test performed.

Claims (69)

1. A defibrillator system comprising:

a capacitor for storing a charge;

a charge circuit to charge the capacitor;

a discharge circuit to discharge the capacitor and deliver a biphasic waveform to a patient;

user interface controls connected to the charge circuit and the discharge circuit and configured to receive operator instructions and to provide system information to the operator; and

a microprocessor-based self-test controller for running periodic self-tests of the defibrillator system;

wherein the self-test controller is configured to conditionally run the periodic self-tests of the defibrillator system based on prior operation of the defibrillator system;

and further wherein prior operation of the defibrillator system comprises at least one event from the group consisting of the time interval since the last capacitor discharge, the time interval since the last power-on, the accumulated time duration of power-on operation since the battery was installed, the accumulated time duration of stand-by operation since the battery was installed, the number of previous self-tests performed, the accumulated time duration of stand-by operation since electrodes were installed, and a prior event, wherein the prior event comprises at least one event from the group consisting of a previous self-test result; the occurrence of over-current during discharge; a voltage measurement; a frequency measurement; a button press; a non-maskable interrupt; a system reset; a flag setting; a removal of the battery; a removal of the memory card; an insertion of the electrode connector; and use of the system since a previous self-test;

wherein the self-test comprises testing at least one element from the group consisting of a charge circuit, a discharge circuit, a battery circuit, a capacitor circuit, a defibrillation pad circuit, an analog circuit, a digital circuit, a microprocessor, an integrated circuit, a memory circuit, a user-interface circuit, a status indicator circuit, a real-time clock circuit, an audio circuit, a power control circuit, a current overload protection circuit, a temperature circuit, a system monitor circuit, a button circuit, a power supply circuit, and a reference voltage circuit;

wherein the self-test controller tests the battery circuit and capacitor circuit only if the defibrillator system has not previously failed a self-test.

2. A system according to claim 1 wherein the user interface controls comprise at least one element from the group consisting of:

an LCD display;

an LED;

a buzzer;

a voice playback circuit;

an audio amplifier; and

an audio speaker to notify the operator of events during system operation.

3. A system according to claim 1 wherein the system further comprises a battery.

4. A system according to claim 3 wherein the battery is part of a battery pack.

5. A system according to claim 1 wherein the system further comprises a pair of electrode pads.

6. A system according to claim 1 wherein the self-test controller further conditionally runs self-tests based on a pre-programmed system parameter.

7. A system according to claim 6 wherein the pre-programmed system parameter comprises at least one parameter from the group consisting of:

a voltage level;

a rate of charge;

a frequency;

an event flag;

a “Replace Before” date;

a “Use Before” date;

a self-test time;

a time limit; and

a temperature limit.

8. A system according to claim 1 wherein the self-test controller further conditionally runs self-tests based on system configuration, wherein system configuration comprises at least one feature from the group consisting of:

a voice synthesizer;

the presence of a flash card;

manual override controls;

an audio recording circuit;

a voice synthesis mode operation;

a manual mode operation;

an AED mode operation;

an audio recording mode;

an ECG display mode; and

a recording data to flash card mode.

9. A defibrillator system comprising:

a battery;

a capacitor for storing a charge;

a charge circuit to charge the capacitor from the battery;

a discharge circuit to discharge the capacitor and deliver a biphasic waveform to a patient;

user interface controls connected to the charge circuit and the discharge circuit and configured to receive operator instructions and to provide system information to the operator; and

a microprocessor-based self-test controller for running periodic self-tests of the defibrillator system;

wherein the self-test controller is configured to conditionally run the periodic self-tests of the defibrillator system based on prior operation of the defibrillator system;

wherein prior operation of the defibrillator system comprises at least one event from the group consisting of the time interval since the last capacitor discharge, the time interval since the last power-on, the accumulated time duration of power-on operation since the battery was installed, the accumulated time duration of stand-by operation since the battery was installed, the number of previous self-tests performed, the accumulated time duration of stand-by operation since electrodes were installed, and a prior event, wherein the prior event comprises at least one event from the group consisting of a previous self-test result; the occurrence of over-current during discharge; a voltage measurement; a frequency measurement; a button press; a non-maskable interrupt; a system reset; a flag setting; a removal of the battery; a removal of the memory card; an insertion of the electrode connector; and use of the system since a previous self-test;

wherein the self-test comprises testing at least one element from the group consisting of a charge circuit, a discharge circuit, a battery circuit, a capacitor circuit, a defibrillation pad circuit, an analog circuit, a digital circuit, a microprocessor, an integrated circuit, a memory circuit, a user-interface circuit, a status indicator circuit, a real-time clock circuit, an audio circuit, a power control circuit, a current overload protection circuit, a temperature circuit, a system monitor circuit, a button circuit, a power supply circuit, and a reference voltage circuit;

wherein the self-test controller tests the battery circuit and capacitor circuit only if the defibrillator system has not previously failed a self-test.

10. A system according to claim 9 wherein the self-test controller includes an algorithm to determine battery capacity without applying a load to the battery.

11. A system according to claim 9 wherein the self-test controller includes an algorithm to determine battery capacity while applying a load to the battery.

12. A method for operating a defibrillator system, comprising:

providing a defibrillator system comprising:

a capacitor for storing a charge;

a charge circuit to charge the capacitor;

a discharge circuit to discharge the capacitor and deliver a biphasic waveform to a patient;

user interface controls connected to the charge circuit and the discharge circuit and configured to receive operator instructions and to provide system information to the operator; and

a microprocessor-based self-test controller for running periodic self-tests of the defibrillator system;

wherein the self-test controller is configured to conditionally run the periodic self-tests of the defibrillator system based on prior operation of the defibrillator system;

wherein prior operation of the defibrillator system comprises at least one event from the group consisting of a the time interval since the last capacitor discharge, the time interval since the last power-on, the accumulated time duration of power-on operation since the battery was installed, the accumulated time duration of stand-by operation since the battery was installed, the number of previous self-tests performed, the accumulated time duration of stand-by operation since electrodes were installed, and a prior event, wherein the prior event comprises at least one event from the group consisting of a previous self-test result; the occurrence of over-current during discharge; a voltage measurement; a frequency measurement; a button press; a non-maskable interrupt; a system reset; a flag setting; a removal of the battery; a removal of the memory card; an insertion of the electrode connector; and use of the system since a previous self-test;

wherein the self-test comprises testing at least one element from the group consisting of a charge circuit, a discharge circuit, a battery circuit, a capacitor circuit, a defibrillation pad circuit, an analog circuit, a digital circuit, a microprocessor, an integrated circuit, a memory circuit, a user-interface circuit, a status indicator circuit, a real-time clock circuit, an audio circuit, a power control circuit, a current overload protection circuit, a temperature circuit, a system monitor circuit, a button circuit, a power supply circuit, and a reference voltage circuit;

wherein the self-test controller tests the battery circuit and capacitor circuit only if the defibrillator system has not previously failed a self-test; and

operating the system in standby mode so that the self-test controller self-tests the system while in standby mode.

13. A system according to claim 3 wherein the self-test controller includes an algorithm to determine battery capacity without applying a load to the battery.

14. A system according to claim 3 wherein the self-test controller includes an algorithm to determine battery capacity while applying a load to the battery.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2015
From: LIMAR MEDICAL INC.
To: SCION MEDICAL LIMITED
Reel/Frame 034960/0867 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2015
From: ACCESS CARDIOSYSTEMS, INC.
To: LIMAR MEDICAL INC.
Reel/Frame 034730/0438 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2006
From: BOWERS, KYLE R.
To: ACCESS CARDIOSYSTEMS, INC.
Reel/Frame 017579/0490 →
Continuity (2)
Provisional Application 60629054 · Nov 18, 2004
Related Publication 20060136000A1 · Jun 22, 2006