IP Library Granted Patent US 11,633,604
Granted Patent B2
US 11,633,604 · App. 16/262,705 · Granted Apr 25, 2023

Efficient use of an implantable pulse generator battery, and associated systems and methods

Inventors: Jon Parker (San Jose, CA); Bret Foreman (Redwood City, CA); Jason Aaron Sutor (Redwood City, CA); Sean Knudsen (Redwood City, CA)
Assignee: Nevro Corp.
A61N1/36153A61N1/36062A61N1/36071A61N1/36139A61N1/36157A61N1/36171A61N1/378
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Quick Facts
Patent No.
US 11,633,604
App. No.
16/262,705
Granted
Apr 25, 2023
Kind
B2
Abstract

Systems and methods for the efficient use of an implantable pulse generator (IPG) battery are disclosed. A representative system for adjusting an electrical signal of an IPG associated with delivering therapy to a patient comprises a computer readable medium having instructions that cause the IPG to deliver a supply voltage at a first value, adjust the supply voltage from the first value until a threshold break occurs, and, based at least in part of the threshold break, increase the supply voltage from the second value to a third value. As therapy is delivered to the patient, the system iteratively adjusts the supply voltage to approach and reflect a variable minimum voltage needed to provide the requested current to the IPG.

Claims (50)

1. A method for adjusting an electrical signal associated with delivering therapy to a patient, the method comprising:

delivering, via an implantable pulse generator, an electrical signal having a parameter with a first parameter value;

determining a minimum parameter value below which therapy is not delivered to the patient;

adjusting the parameter of the electrical signal from the first parameter value until a threshold break occurs at a second parameter value that is equal to or less than a threshold value, wherein the threshold value is above the minimum parameter value; and

in response to the threshold break, increasing the second parameter value to a third parameter value.

2. The method of claim 1 wherein the parameter corresponds to a voltage, and wherein adjusting the parameter includes decreasing the voltage from the first parameter value to the second parameter value based at least in part on a length of time between the threshold break and a previous threshold break.

3. The method of claim 1 wherein the parameter corresponds to a voltage, and wherein adjusting the parameter includes increasing the voltage from the first parameter value to the second parameter value based at least in part on a length of time between the threshold break and a previous threshold break.

4. The method of claim 1 , further comprising, after increasing the parameter of the electrical signal to the third parameter value, adjusting the parameter of the electrical signal based at least in part on a length of time between the threshold break and a previous threshold break.

5. The method of claim 1 wherein the third parameter value is less than the first parameter value and greater than the second parameter value.

6. The method of claim 1 wherein the parameter is a voltage, and wherein delivering the electrical signal includes delivering the electrical signal from a voltage regulator to a current generating source, the method further comprising:

converting the voltage provided by the voltage regulator to a requested current that is delivered to the patient.

7. The method of claim 1 wherein the threshold break is a first threshold break occurring at a first point in time, the method further comprising:

delivering, via the implantable pulse generator, the electrical signal having the third parameter value;

adjusting the parameter of the electrical signal from the third parameter value until a second threshold break occurs at a fourth parameter value; and

in response to the second threshold break, increasing the parameter of the electrical signal to a fifth parameter value.

8. The method of claim 7 wherein increasing the parameter of the electrical signal to a fifth parameter value is based at least in part on the first threshold break.

9. The method of claim 7 wherein adjusting the parameter from the third parameter value is based at least in part on a length of time between the first and second threshold breaks.

10. The method of claim 7 wherein:

delivering the electrical signal and adjusting the parameter of the electrical signal from the first parameter value comprise a first iteration of a closed-feedback loop,

increasing the parameter of the electrical signal to the third parameter value, delivering the electrical signal at the third parameter value, and adjusting the electrical signal from the third parameter value, comprise a second iteration of a feedback loop, subsequent to the first iteration, and

increasing the parameter to the fifth parameter value comprises a third iteration of the feedback loop, subsequent to the second iteration.

11. An implantable device configured to deliver therapy to a patient, the device comprising:

a battery;

a voltage regulator coupled to the battery and configured to produce a supply voltage;

a current-generating circuit configured to supply a current to the device based at least in part on the supply voltage; and

a computer-readable medium having instructions that, when executed, cause the device to—

deliver the supply voltage, having a first value, from the voltage regulator to the current-generating circuit;

adjust the supply voltage from the first value until a threshold break occurs, the threshold break corresponding to a second value of the supply voltage at or below a threshold value, wherein the threshold value is above a minimum voltage value below which the current-generating circuit is prevented from supplying the requested current to the device; and

in response to the threshold break, increase the supply voltage from the second value to a third value.

12. The device of claim 11 wherein:

the current supplied to the device is a requested current from the device, and

the computer-readable medium is configured to control a difference between values of the minimum voltage and the supply voltage.

13. The device of claim 11 wherein:

the threshold break is a first threshold break occurring at a first period in time,

the operations of delivering the variable supply voltage and adjusting the supply voltage comprise a first iteration, and

the instructions further cause the device to:

deliver the supply voltage at the third value, from the voltage regulator to the current-generating circuit;

adjust the supply voltage from the third value until a second threshold break occurs, the second threshold break corresponding to a fourth value of the supply voltage at or below a threshold value at a second period in time after the first period in time; and

based at least in part on the second threshold break, increase the supply voltage from the fourth value to a fifth value.

14. The device of claim 13 wherein:

adjusting the supply voltage from the third value includes adjusting the supply voltage from the third value based at least in part on a length of time between the first and second threshold breaks; and

increasing the supply voltage to the fifth value is further based at least in part on the second value.

15. The method of claim 1 wherein adjusting the parameter includes automatically adjusting the parameter, and wherein increasing the second parameter value includes automatically increasing the second parameter value.

16. The device of claim 11 wherein the operation of adjusting the supply voltage includes automatically adjusting the supply voltage, and wherein the operation of increasing the supply voltage includes automatically increasing the supply voltage.

17. The method of claim 1 wherein the second parameter value is equal to or greater than the minimum parameter value.

18. The device of claim 11 wherein the second value of the supply voltage is equal to or greater than the minimum voltage value.

19. A method for adjusting an electrical signal associated with delivering therapy to a patient, the method comprising:

delivering, via an implantable pulse generator, an electrical signal having a parameter with a first parameter value;

adjusting the parameter of the electrical signal from the first parameter value until a threshold break occurs at a second parameter value that is equal to or less than a threshold value, wherein the threshold value is above a minimum parameter value below which therapy is not delivered to the patient; and

in response to the threshold break, increasing the second parameter value to a third parameter value.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 4, 2025
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT
To: NEVRO CORP.
Reel/Frame 070743/0001 →
PATENT SECURITY AGREEMENT Recorded Dec 1, 2023
From: NEVRO CORP.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 065744/0302 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2020
From: PARKER, JON; FOREMAN, BRET; SUTOR, JASON AARON; KNUDSEN, SEAN
To: NEVRO CORP.
Reel/Frame 053308/0546 →
Continuity (2)
Provisional Application 62623961 · Jan 30, 2018
Related Publication 20190232064A1 · Aug 1, 2019
Cited By (1)
US 12,551,705