IP Library Patent Application 16208450
Patent Application
App. No. 16/208,450

Self-Expiring Electrocardiography And Physiological Sensor Monitor

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Quick Facts
Patent No.
US None
App. No.
16/208,450
Abstract

A self-expiring electrocardiography and physiological monitor recorder is provided. A sealed housing is adapted to be removably secured into a non-conductive receptacle on an electrode patch. Electronic circuity is provided within the sealed housing and includes an electrocardiographic front end circuit operable to sense electrocardiographic signals through electrocardiographic electrodes provided on the electrode patch and flash memory to record the electrocardiographic signals. The electronic circuitry also includes a micro-controller to draw power from a battery provided on the electrode patch, to receive from the electrode patch a recording duration, and to terminate recording of the electrocardiographic signals upon satisfaction of the recording duration.

Claims (42)

1 . A self-expiring electrocardiography and physiological sensor monitor recorder, comprising:

a sealed housing adapted to be removably secured into a non-conductive receptacle on an electrode patch; and

electronic circuity comprised within the sealed housing, comprising:

an electrocardiographic front end circuit operable to sense electrocardiographic signals through electrocardiographic electrodes provided on the electrode patch;

flash memory to record the electrocardiographic signals; and

a micro-controller to draw power from a battery provided on the electrode patch, to receive from the electrode patch a recording duration, and to terminate recording of the electrocardiographic signals upon satisfaction of the recording duration.

2 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein the electrode patch comprises a crypto circuit to store the recording duration.

3 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein at least one further electrode patch replaces the electrode patch once recording of the electrocardiographic signals is terminated.

4 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein the recording duration is programmed into the electrode patch at a time comprising one of prior to, during, and after manufacture.

5 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein the recorded electrocardiographic signals are retrieved from the electrocardiographic front end circuit via a download station.

6 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 5 , further comprising:

a set of electrical contacts formed on a surface of the sealed housing that interface with a set of terminals on a paired receptacle of the download station.

7 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein the electrocardiographic signals are converted into a different format via middlewear.

8 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , further comprising:

a feedback button formed on a surface of the sealed housing and configured to mark events identified by a wearer.

9 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , further comprising:

a buzzer comprising at least one of a speaker, magnetic resonator, and piezoelectric buzzer and configured to output feedback to a wearer.

10 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 1 , wherein the recording duration is received from the electrode patch prior to, during, or after authentication of the electrode patch.

11 . A self-expiring electrocardiography and physiological sensor monitor comprising:

an electrode patch comprising:

a flexible backing formed of an elongated strip of stretchable material;

a pair of electrocardiographic electrodes conductively exposed on a contact surface of each end of the elongated strip, respectively;

a non-conductive receptacle adhered to an outward-facing surface of the elongated strip and comprising a plurality of electrical pads; and

a battery housed in a battery compartment formed on the flexible backing and electrically interfaced to a pair of the electrical pads on the non-conductive receptacle; and

a sealed housing adapted to be removably secured into the non-conductive receptacle on the electrode patch; and

electronic circuity comprised within the sealed housing, comprising:

an electrocardiographic front end circuit operable to sense electrocardiographic signals through the electrocardiographic electrodes provided on the electrode patch;

flash memory to record the electrocardiographic signals; and

a micro-controller to draw power from the battery provided on the electrode patch, to receive from the electrode patch a recording duration, and to terminate recording of the electrocardiographic signals upon satisfaction of the recording duration.

12 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , wherein the electrode patch comprises a crypto circuit to store the recording duration.

13 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , further comprising:

at least one further electrode patch to replace the electrode patch once recording of the electrocardiographic signals is terminated.

14 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , wherein the recording duration is programmed into the electrode patch at a time comprising one of prior to, during, and after manufacture.

15 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , wherein the recorded electrocardiographic signals are retrieved from the electrocardiographic front end circuit via a download station.

16 . A self-expiring electrocardiography and physiological sensor monitor according to claim 15 , further comprising:

a set of electrical contacts formed on a surface of the sealed housing that interface with a set of terminals on a paired receptacle of the download statio.

17 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , wherein the electrocardiographic signals are converted into a different format via middlewear.

18 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , further comprising:

a feedback button formed on a surface of the sealed housing and configured to mark events identified by a wearer.

19 . A self-expiring electrocardiography and physiological sensor monitor according to claim 11 , further comprising:

a buzzer comprising at least one of a speaker, magnetic resonator, and piezoelectric buzzer and configured to output feedback to a wearer.

20 . A self-expiring electrocardiography and physiological sensor monitor recorder according to claim 11 , wherein the recording duration is received from the electrode patch prior to, during, or after authentication of the electrode patch.

Assignments (2)
SECURITY AGREEMENT SUPPLEMENT Recorded Oct 25, 2021
From: BARDY DIAGNOSTICS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 058567/0677 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2019
From: FELIX, JASON; BARDY, GUST H.; BISHAY, JON M.; GREEN, JOSHUA DJON
To: BARDY DIAGNOSTICS, INC.
Reel/Frame 049863/0168 →