IP Library Granted Patent US 12,161,473
Granted Patent B1
US 12,161,473 · App. 18/800,675 · Granted Dec 10, 2024

Electrocardiography patch

Inventors: Jason Felix (Vashon Island, WA); Jon Mikalson Bishay (Seattle, WA); Gust H. Bardy (Carnation, WA)
Assignee: BARDY DIAGNOSTICS, INC.
A61B5/335A61B5/0006A61B5/0022A61B5/02055A61B5/14532A61B5/14542A61B5/259A61B5/282A61B5/6823A61B5/6833A61B5/7405A61B5/7455A61B5/7475G16H40/67A61B5/021A61B5/03A61B5/0816A61B5/087A61B5/1118A61B5/14551A61B5/349A61B2560/0214A61B2560/0443
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Quick Facts
Patent No.
US 12,161,473
App. No.
18/800,675
Granted
Dec 10, 2024
Kind
B1
Abstract

An apparatus is provided. A strip has first and second end sections, and a first face and second face. Two electrocardiographic electrodes are provided on the strip with one of the electrocardiographic electrodes provided on the first face of the first end section of the strip and another of the electrocardiographic electrodes positioned on the first face on the second end section of the strip. A flexible circuit is mounted to the second face of the strip and includes a circuit trace electrically coupled to each of the electrocardiographic electrodes. The apparatus includes a wireless transceiver and a battery.

Claims (95)

1. A wearable electrocardiography monitoring device, comprising:

a flexible backing including a strip comprising:

a first face and a second face, wherein a portion of the first face is covered in adhesive to adhere the strip to skin of a patient,

a first end section,

a second end section opposite the first end section, and

a mid-section between the first end section and the second end section, wherein the mid-section is narrower than the first end section and the second end section;

a flexible circuit mounted to the second face of the strip, the flexible circuit comprising a first circuit trace and a second circuit trace;

a first electrocardiographic electrode and a second electrocardiographic electrode, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are configured to sense electrocardiographic signals, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are coupled to the flexible circuit, wherein the first electrocardiographic electrode is conductively exposed at the first face along the first end section of the strip, wherein the second electrocardiographic electrode is conductively exposed at the first face along the second end section of the strip, wherein the first circuit trace is electrically coupled to the first electrocardiographic electrode, wherein the second circuit trace is electrically coupled to the second electrocardiographic electrode, and wherein the first electrocardiographic electrode includes an inline resistor;

a battery vertically aligned with a sealed housing, wherein the sealed housing includes rounded edges on a top surface, wherein the sealed housing is coupled to the flexible backing, and wherein the sealed housing includes a processor, wherein the processor is electrically coupled to the first electrocardiographic electrode, the second electrocardiographic electrode, and the battery, wherein the processor is configured to process the electrocardiographic signals sensed via the first electrocardiographic electrode and the second electrocardiographic electrode; and

a wireless transceiver, wherein the wireless transceiver draws power from the battery.

2. The wearable electrocardiography monitoring device of claim 1 , wherein the mid-section comprises a first edge parallel to a second edge.

3. The wearable electrocardiography monitoring device of claim 1 , wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth.

4. The wearable electrocardiography monitoring device of claim 1 , wherein the electrocardiographic signals are converted to a different format.

5. The wearable electrocardiography monitoring device of claim 4 , wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format.

6. The wearable electrocardiography monitoring device of claim 1 , wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

7. The wearable electrocardiography monitoring device of claim 1 , wherein the battery is vertically aligned with the wireless transceiver.

8. A wearable electrocardiography monitoring device, comprising:

a flexible backing including a strip comprising:

a first face and a second face, wherein a portion of the first face is covered in adhesive to adhere the strip to skin of a patient,

a first end section,

a second end section opposite the first end section, and

a mid-section between the first end section and the second end section, wherein the mid-section is narrower than the first end section and the second end section, and wherein the mid-section comprises a first edge parallel to a second edge;

a flexible circuit mounted to the second face of the strip, the flexible circuit comprising a first circuit trace and a second circuit trace;

a first electrocardiographic electrode and a second electrocardiographic electrode, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are configured to sense electrocardiographic signals, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are coupled to the flexible circuit, wherein the first electrocardiographic electrode is conductively exposed at the first face along the first end section of the strip, wherein the second electrocardiographic electrode is conductively exposed at the first face along the second end section of the strip, wherein the first circuit trace is electrically coupled to the first electrocardiographic electrode, wherein the second circuit trace is electrically coupled to the second electrocardiographic electrode, and wherein the first electrocardiographic electrode includes an inline resistor;

a battery;

a wireless transceiver, wherein the wireless transceiver draws power from the battery; and

a sealed housing having rounded edges on a top surface,

wherein the sealed housing is coupled to the flexible backing, and wherein the sealed housing includes a processor, wherein the processor is electrically coupled to the first electrocardiographic electrode, the second electrocardiographic electrode, and the battery, wherein the processor is configured to process the electrocardiographic signals sensed via the first electrocardiographic electrode and the second electrocardiographic electrode.

9. The wearable electrocardiography monitoring device of claim 8 , wherein the battery is vertically aligned with the sealed housing.

10. The wearable electrocardiography monitoring device of claim 8 , wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth.

11. The wearable electrocardiography monitoring device of claim 8 , wherein the electrocardiographic signals are converted to a different format.

12. The wearable electrocardiography monitoring device of claim 11 , wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format.

13. The wearable electrocardiography monitoring device of claim 8 , wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

14. The wearable electrocardiography monitoring device of claim 8 , wherein the battery is vertically aligned with the wireless transceiver.

15. A wearable electrocardiography monitoring device, comprising:

a flexible backing including a strip comprising:

a first face and a second face, wherein a portion of the first face is covered in adhesive to adhere the strip to skin of a patient,

a first end section,

a second end section opposite the first end section, and

a mid-section between the first end section and the second end section, wherein the mid-section is narrower than the first end section and the second end section, and wherein the mid-section comprises a first edge parallel to a second edge;

a flexible circuit mounted to the second face of the strip, the flexible circuit comprising a first circuit trace and a second circuit trace;

a first electrocardiographic electrode and a second electrocardiographic electrode, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are configured to sense electrocardiographic signals, wherein the first electrocardiographic electrode and the second electrocardiographic electrode are coupled to the flexible circuit, wherein the first electrocardiographic electrode is conductively exposed at the first face along the first end section of the strip, wherein the second electrocardiographic electrode is conductively exposed at the first face along the second end section of the strip, wherein the first circuit trace is electrically coupled to the first electrocardiographic electrode, wherein the second circuit trace is electrically coupled to the second electrocardiographic electrode, and wherein the first electrocardiographic electrode includes an inline resistor;

a battery vertically aligned with a sealed housing, wherein the sealed housing includes rounded edges on a top surface, wherein the sealed housing is coupled to the flexible backing, and wherein the sealed housing includes a processor, wherein the processor is electrically coupled to the first electrocardiographic electrode, the second electrocardiographic electrode, and the battery, wherein the processor is configured to process the electrocardiographic signals sensed via the first electrocardiographic electrode and the second electrocardiographic electrode; and

a wireless transceiver, wherein the wireless transceiver draws power from the battery.

16. The wearable electrocardiography monitoring device of claim 15 , wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth.

17. The wearable electrocardiography monitoring device of claim 15 , wherein the electrocardiographic signals are converted to a different format.

18. The wearable electrocardiography monitoring device of claim 17 , wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format.

19. The wearable electrocardiography monitoring device of claim 15 , wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

20. The wearable electrocardiography monitoring device of claim 15 , wherein the battery is vertically aligned with the wireless transceiver.

21. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format,

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only, and

wherein the battery is vertically aligned with the wireless transceiver.

22. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to a different format,

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only, and

wherein the battery is vertically aligned with the wireless transceiver.

23. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format,

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only, and

wherein the battery is vertically aligned with the wireless transceiver.

24. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format, and

wherein the battery is vertically aligned with the wireless transceiver.

25. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format, and

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

26. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format, and

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to the different format.

27. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format, and

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

28. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are converted to a different format, and

wherein the battery is vertically aligned with the wireless transceiver.

29. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to a different format, and

wherein the adhesive covering the portion of the first face of the strip is provided on the first end section and the second end section only.

30. The wearable electrocardiography monitoring device of claim 20 ,

wherein the wireless transceiver is configured to communicate with an external device via Wi-Fi, mobile phone communication standards, or Bluetooth,

wherein the electrocardiographic signals are retrieved by one of a server, a client computer, and a mobile device via the wireless transceiver after the electrocardiographic signals are converted to a different format, and

wherein the battery is vertically aligned with the wireless transceiver.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2024
From: BISHAY, JON MIKALSON; FELIX, JASON; BARDY, GUST H.
To: BARDY DIAGNOSTICS, INC.
Reel/Frame 068973/0852 →
Continuity (12)
Continuation 18647762 · Apr 26, 2024
Continuation 18353398 · Jul 17, 2023
Continuation 17946933 · Sep 16, 2022
Continuation 17367476 · Jul 5, 2021
Continuation 17119945 · Dec 11, 2020
Continuation 16241929 · Jan 7, 2019
Continuation 15818437 · Nov 20, 2017
Continuation 15256266 · Sep 2, 2016
Continuation 14082071 · Nov 15, 2013
Continuation In Part 14080717 · Nov 14, 2013
Continuation In Part 14080725 · Nov 14, 2013
Provisional Application 61882403 · Sep 25, 2013