IP Library Granted Patent US 10,967,137
Granted Patent B2
US 10,967,137 · App. 15/869,860 · Granted Apr 6, 2021

Infusion pump assembly

Inventors: Kevin L. Grant (Litchfield, NH); Brian L. Tracey (Litchfield, NH); Marc Aurele Mandro (Bow, NH); Robert John Bryant, Jr. (Manchester, NH)
Assignee: DEKA PRODUCTS LIMITED PARTNERSHIP
A61M5/5086A61M5/145A61M5/1452A61M5/1456A61M5/14244A61M5/14586A61M5/1723A61M5/14A61M5/142A61M25/0612A61M39/1011A61M39/14A61M2005/14268A61M2005/14506A61M2005/14573A61M2205/332A61M2205/3306A61M2205/50A61M2205/52A61M2205/581A61M2205/582A61M2205/583A61M2205/8206A61M2230/201Y10T29/494Y10T29/49826
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Quick Facts
Patent No.
US 10,967,137
App. No.
15/869,860
Granted
Apr 6, 2021
Kind
B2
Abstract

An infusion pump assembly includes a locking tab and a pump barrel inside a pump barrel housing, where the pump barrel accommodates a reservoir assembly. The reservoir assembly includes a reservoir and a plunger rod. The infusion pump assembly also includes a locking disc at a terminus of the pump barrel. The locking disc includes a clearance hole for the plunger rod. The locking disc also includes at least one locking tab notch in close proximity with the locking tab. The locking tab is in moveable engagement with the locking tab notch, and the reservoir moves the locking tab from a locked position to an unlocked position when the plunger rod is inserted through clearance hole. The locking disc rotates upon torque being applied to the reservoir assembly, the locking disc rotating from a non-loaded position to a loaded position with respect to the plunger rod and a drive screw.

Claims (38)

1. An infusion pump device for delivering infusible fluid to a user, the infusion pump device comprising:

a pump portion comprising a motor assembly;

processing logic for executing one or more processes in the pump portion; and

a battery assembly configured to power the infusion pump device, wherein the processing logic is configured to:

compare an actual voltage level of the battery assembly to a minimum voltage requirement to determine if the actual voltage level meets the minimum voltage requirement; and

if the actual voltage level does not meet the minimum voltage requirement, initiating an alarm sequence on the infusion pump device;

wherein the pump portion further comprises a plunger rod, the plunger rod connected to a plunger and extending away from the plunger to a distal end, the plunger rod having a threaded portion;

wherein the plunger rod is engaged with the motor assembly;

wherein the plunger rod is displaceable by the motor assembly;

wherein the processing logic is configured to monitor a displacement of the plunger rod to determine if the plunger rod was displaced an expected displacement in response to displacement by the motor assembly; and

wherein if the plunger rod was not displaced the expected displacement, initiating an alarm sequence on the infusion pump device.

2. The infusion pump device in claim 1 , wherein the motor assembly comprises a nut assembly.

3. The infusion pump device of claim 1 , wherein the plunger comprises at least one seal.

4. The infusion pump device of claim 1 , wherein the pump portion further comprises a needle.

5. The infusion pump device of claim 1 , wherein the pump portion further comprises a rubber septum.

6. The infusion pump device of claim 5 , wherein the pump portion further comprises a needle, wherein the needle pierces the rubber septum.

7. An infusion pump device for delivering infusible fluid to a user, the infusion pump device comprising:

a pump portion comprising a motor assembly;

a plunger assembly comprising a plunger and a plunger rod, the plunger assembly having a threaded portion extending over an entire length of the plunger rod, the plunger assembly displaceable by the motor assembly; and

processing logic for executing one or more processes in the pump portion,

wherein the processing logic is configured to monitor a displacement of the plunger assembly to determine if the plunger assembly was displaced an expected displacement in response to displacement by the motor assembly, and

wherein if the plunger assembly was not displaced the expected displacement, initiating an alarm sequence on the infusion pump device.

8. The infusion pump device of claim 7 , wherein the pump portion further comprises a needle.

9. The infusion pump device of claim 7 , wherein the pump portion further comprises a rubber septum.

10. The infusion pump device of claim 9 , wherein the pump portion further comprises a needle, wherein the needle pierces the rubber septum.

11. The infusion pump device of claim 7 , wherein the plunger further comprises at least one seal.

12. An infusion pump device for delivering infusible fluid to a user, the infusion pump device comprising:

a pump portion comprising a motor assembly, wherein the motor assembly comprising a nut assembly;

a reservoir in removable relation to the pump portion, the reservoir comprising:

a plunger assembly comprising a plunger and a plunger rod, the plunger assembly having a threaded portion extending over an entire length of the plunger rod; and

processing logic for executing one or more processes in the pump portion,

wherein the processing logic is configured to monitor a displacement of the plunger assembly to determine if the plunger assembly was displaced an expected displacement in response to displacement by the motor assembly, and

wherein if the plunger assembly was not displaced the expected displacement, initiating an alarm sequence on the infusion pump device.

13. The infusion pump device of claim 12 , wherein the plunger assembly comprises at least one seal.

14. The infusion pump device of claim 12 , wherein the reservoir further comprises a rubber septum.

15. The infusion pump device of claim 12 , further comprising a battery assembly configured to power the infusion pump device, wherein the processing logic is configured to:

compare an actual voltage level of the battery assembly to a minimum voltage requirement to determine if the actual voltage level meets the minimum voltage requirement; and

if the actual voltage level does not meet the minimum voltage requirement, initiating an alarm sequence on the infusion pump device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2019
From: GRANT, KEVIN L.; TRACEY, BRIAN D.; MANDRO, MARC A.; BRYANT, ROBERT J., JR.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 049579/0837 →