IP Library Granted Patent US 9,492,605
Granted Patent B2
US 9,492,605 · App. 14/181,170 · Granted Nov 15, 2016

Infusion pump assembly with a backup power supply

Inventor: Marc A. Mandro (Bow, NH)
Assignee: DEKA Products Limited Partnership
A61M5/142A61M5/1452A61M5/16854A61M5/5086H01M10/4264H01M16/00A61M2205/16A61M2205/17A61M2205/18A61M2205/8206
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Quick Facts
Patent No.
US 9,492,605
App. No.
14/181,170
Granted
Nov 15, 2016
Kind
B2
Abstract

An infusion pump assembly includes a reservoir assembly configured to contain an infusible fluid. A motor assembly is configured to act upon the reservoir assembly and dispense at least a portion of the infusible fluid contained within the reservoir assembly. Processing logic is configured to control the motor assembly. A primary power supply is configured to provide primary electrical energy to at least a portion of the processing logic. A backup power supply is configured to provide backup electrical energy to the at least a portion of the processing logic in the event that the primary power supply fails to provide the primary electrical energy to the at least a portion of the processing logic.

Claims (42)

1. An infusion pump assembly comprising:

a reservoir assembly configured to contain an infusible fluid;

a motor assembly configured to dispense infusible fluid from the reservoir assembly;

processing logic configured to control the motor assembly, the processing logic including one or more circuit partitioning components configured to divide the processing logic into primary processing logic and backup processing logic;

a primary power supply configured to provide primary electrical energy to at least a portion of the processing logic including the backup processing logic; and

a backup power supply configured to provide backup electrical energy to the backup processing logic in the event that the primary power supply fails to provide the primary electrical energy to the at least a portion of the processing logic.

2. The infusion pump assembly of claim 1 wherein the primary power supply includes a first battery.

3. The infusion pump assembly of claim 1 wherein the backup power supply is a super capacitor assembly.

4. The infusion pump assembly of claim 1 wherein the primary processing logic includes a primary microprocessor.

5. The infusion pump assembly of claim 1 wherein the backup processing logic includes a safety microprocessor.

6. The infusion pump assembly of claim 1 wherein the one or more circuit partitioning components includes one or more of a diode assembly and a current limiting assembly.

7. The infusion pump assembly of claim 6 wherein the diode assembly is configured to allow the primary power supply to charge the backup power supply while prohibiting the backup power supply from providing backup electrical energy to the primary processing logic in the event that the primary power supply fails to provide the primary electrical energy to the primary processing logic.

8. The infusion pump assembly of claim 6 wherein the current limiting assembly is configured to limit the amount of the primary electrical energy available to charge the backup power supply.

9. The infusion pump assembly of claim 1 wherein the primary power supply is configured to provide electrical energy to one or more subsystems included within the infusion pump assembly.

10. The infusion pump assembly of claim 1 wherein the primary power supply and the backup power supply are configured to provide electrical energy to an audio system included within the infusion pump assembly.

11. The infusion pump assembly of claim 10 wherein the audio system is configured to provide an escalating alarm sequence in the event of a loss of a beacon signal, wherein the escalating alarm sequence includes at least a low-intensity alarm and a high-intensity alarm.

12. The infusion pump assembly of claim 1 wherein the processing logic includes one or more circuit partitioning components configured to allow the primary power supply to charge the backup power supply by diverting a portion of the primary electrical energy from the at least a portion of the processing logic to the backup power supply.

13. An infusion pump assembly comprising:

a reservoir assembly configured to contain an infusible fluid;

a motor assembly configured to dispense at least a portion of the infusible fluid contained within the reservoir assembly;

processing logic configured to control the motor assembly;

one or more circuit partitioning components configured to divide the processing logic into primary processing logic and backup processing logic;

a first battery configured to provide primary electrical energy to at least a portion of the processing logic; and

a super capacitor assembly configured to provide backup electrical energy to the at least a portion of the processing logic in the event that the first battery fails to provide the primary electrical energy to the at least a portion of the processing logic during operation of the infusion pump assembly.

14. The infusion pump assembly of claim 13 wherein the primary processing logic includes a primary microprocessor.

15. The infusion pump assembly of claim 13 wherein the backup processing logic includes a safety microprocessor.

16. The infusion pump assembly of claim 13 wherein the one or more circuit partitioning components includes one or more of a diode assembly and a current limiting assembly.

17. The infusion pump assembly of claim 13 wherein the one or more circuit partitioning components are configured to allow the first battery to charge the super capacitor assembly by diverting a portion of the primary electrical energy from the at least a portion of the processing logic to the super capacitor assembly.

18. An infusion pump assembly comprising:

a reservoir assembly configured to contain an infusible fluid;

a motor assembly configured to dispense at least a portion of the infusible fluid contained within the reservoir assembly;

processing logic configured to control the motor assembly;

a primary power supply configured to provide primary electrical energy to at least a portion of the processing logic; and

a backup power supply configured to provide backup electrical energy to the at least a portion of the processing logic in the event that the primary power supply fails to provide the primary electrical energy to the at least a portion of the processing logic;

wherein the processing logic includes one or more circuit partitioning components configured to divide the processing logic into primary processing logic and backup processing logic.

19. The infusion pump assembly of claim 18 wherein the primary power supply includes a first battery.

20. The infusion pump assembly of claim 18 wherein the backup power supply is a super capacitor assembly.

21. The infusion pump assembly of claim 18 wherein the primary processing logic includes a primary microprocessor.

22. The infusion pump assembly of claim 18 wherein the one or more circuit partitioning components further configured to allow the primary power supply to charge the backup power supply by diverting a portion of the primary electrical energy from the at least a portion of the processing logic to the backup power supply.

23. The infusion pump assembly of claim 18 wherein the backup processing logic includes a safety microprocessor.

24. The infusion pump assembly of claim 18 wherein the one or more circuit partitioning components includes one or more of a diode assembly and a current limiting assembly.

25. The infusion pump assembly of claim 24 wherein the diode assembly is configured to allow the primary power supply to charge the backup power supply while prohibiting the backup power supply from providing backup electrical energy to the primary processing logic in the event that the primary power supply fails to provide the primary electrical energy to the primary processing logic.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2014
From: MANDRO, MARC A.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 033324/0185 →
Continuity (3)
Continuation 13305004 · Nov 28, 2011
Continuation 12249540 · Oct 10, 2008
Related Publication 20140163469A1 · Jun 12, 2014