IP Library Granted Patent US 11,672,903
Granted Patent B2
US 11,672,903 · App. 16/377,453 · Granted Jun 13, 2023

Apparatus and method for infusing fluid through a tube by appropriately heating the tube

Inventors: John J. Biasi (Groton, MA); Larry B. Gray (Merrimack, NH); Daniel F. Pawlowski (Raymond, NH)
Assignee: DEKA Products Limited Partnership
A61M5/14228A61M5/44F04B43/0072F04B43/0081F04B43/1223F04B53/08F04B53/16A61M2205/3334A61M2205/3368
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Quick Facts
Patent No.
US 11,672,903
App. No.
16/377,453
Granted
Jun 13, 2023
Kind
B2
Abstract

A peristaltic pump disclosed herein includes a raceway, a plunger, a motor, and a heater. The raceway is configured to retain a tube (e.g., an IV tube). The plunger acts on the tube disposed within the raceway. The motor engages the plunger to actuate the plunger. The heater is disposed in thermal-conductive contact with the tube. That is, the heater, either through direct or indirect application, heats the tube.

Claims (31)

1. A peristaltic pump, comprising:

a raceway configured to retain a tube;

a plunger configured to act on the tube disposed within the raceway;

a heater configured to heat the tube;

a heater controller configured to control heating of the heater; and

a temperature sensor configured to sense heat generated by the heater,

wherein the heater controller is configured to control the heater to achieve a target temperature when the peristaltic pump cannot achieve a target flow rate without activating the heater.

2. A peristaltic pump, comprising:

a plunger configured to act on a tube;

a heater configured to heat the tube; and

a controller configured to heat the heater to a predetermined temperature,

wherein the predetermined temperature is selected to achieve a predetermined maximum flow error rate of the controller when controlling actuation of the plunger to move fluid through the tube.

3. The peristaltic pump according to claim 2 , wherein the predetermined temperature is selected based upon a material of the tube.

4. A peristaltic pump, comprising:

a plunger configured to act on a tube;

a heater configured to heat the tube; and

a controller configured to heat the heater to a predetermined temperature,

wherein the predetermined temperature is selected in accordance with a plurality of tube types, and wherein each tube type of the plurality of tube types affects an error flow rate depending upon the predetermined temperature.

5. The peristaltic pump according to claim 4 , wherein the predetermined temperature is selected to minimize a maximum error flow rate of all of the plurality of tube types.

6. The peristaltic pump according to claim 5 , wherein the plunger is a spring-biased plunger configured to use a spring to urge a volume of fluid to be discharged by the plunger, wherein a delta movement of the plunger from a full fill volume to a full discharge volume is correlated to a fluid discharge volume.

7. The peristaltic pump according to claim 6 , wherein the correlation between the delta movement of the plunger to the fluid discharge volume corresponds to the predetermined temperature selected to minimize the maximum error flow rate of all of the plurality of tube types.

8. The peristaltic pump according to claim 4 , wherein a tube type of the plurality of tube types is defined as a function of a material of a wall of a respective tube of the plurality of tube types.

9. A peristaltic pump, comprising:

a plunger configured to act on a tube; and

a heater configured to heat the tube,

wherein: the plunger is a spring-biased plunger configured to use a spring to urge a volume of fluid to be discharged by the plunger, wherein a delta movement of the plunger from a full fill volume to a full discharge volume is correlated to an estimated fluid discharge volume, and

the correlation is determined using a linear equation having at least one parameter.

10. The peristaltic pump according to claim 9 , wherein a parameter of the at least one parameter is increased or decreased in accordance with an increase or decrease of a target temperature.

11. The peristaltic pump according to claim 9 , wherein a target temperature is configured to minimize a maximum error flow rate for a plurality of tube types, the tube being a tube type of the plurality of tube types.

12. The peristaltic pump according to claim 11 , wherein the target temperature is selected to minimize the maximum error flow rate for the plurality of tube types when using fixed parameters of the at least one parameter of the linear equation.

13. The peristaltic pump according to claim 9 , wherein the linear equation is ax+b=y, where x is the delta movement of the plunger and y is the estimated fluid discharge volume, wherein the at least one parameter include the a and b of the linear equation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2019
From: BIASI, JOHN J.; GRAY, LARRY B.; PAWLOWSKI, DANIEL F.
To: DEKA PRODUCTS LIMITED PARTNERSHIP
Reel/Frame 048818/0535 →
Continuity (3)
Continuation 14853300 · Sep 14, 2015
Provisional Application 62052008 · Sep 18, 2014
Related Publication 20190298913A1 · Oct 3, 2019
Cited By (2)
US 12,520,880 US 12,560,161