IP Library Granted Patent US 11,766,509
Granted Patent B2
US 11,766,509 · App. 17/223,687 · Granted Sep 26, 2023

Heat conductive circuit

Inventors: Michelle A. Iverson (Roseville, MN); Alexa R. Brigman (Coon Rapids, MN)
Assignee: Mozarc Medical US LLC
A61M1/1664A61J1/10A61J1/14A61M1/1629H05K7/20281A61M1/28A61M2205/3368A61M2205/366A61M2210/1017
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Quick Facts
Patent No.
US 11,766,509
App. No.
17/223,687
Granted
Sep 26, 2023
Kind
B2
Abstract

A container system configured to transfer heat to a fluid contained within the container system, such as dialysate. The container system may be configured to fluidly couple to a medical machine. The container system includes a flexible material comprising a wall of the container system. In examples, the flexible material defines a container volume configured to contain the fluid. The flexible material mechanically supports a circuit configured to generate and transfer heat to the fluid. The circuit is configured to flex and/or bend when the flexible material flexes and/or bends. In examples, the container system includes control circuitry configured to cause the circuit to generate heat based on a temperature of the fluid.

Claims (53)

1. A container system for delivering a medical solution comprising a fluid for use in a patient, the container system comprising:

a container body defining a fluid reservoir configured to hold the fluid, wherein the container body is configured to receive an inflow of the fluid into the fluid reservoir from an inlet conduit, and wherein the container body is configured to provide an outflow of the fluid from the fluid reservoir to an outlet conduit;

a cover wall defining a cavity configured to receive at least a portion of the container body, the cover wall configured to transfer heat to a volume of the container system configured to contain the fluid, wherein the cover wall comprises a flexible material, and wherein the cover wall is configured to transfer the heat from an inner wall surface of the cover wall to a surface of the portion of the container body when the cavity receives the portion of the container body;

a circuit mechanically supported by the flexible material, the circuit configured to heat the fluid when the cavity receives the portion of the container body,

wherein the circuit is configured to flex with the flexible material, and

wherein the circuit is configured to receive electrical power and generate the heat using the electrical power to cause the cover wall to transfer the heat to the fluid contained within the volume of the container system;

a temperature sensor configured to sense a temperature of the fluid, wherein the temperature sensor is configured to be positioned at a location displaced from the container body; and

control circuitry configured to cause the circuit to generate the heat, wherein the control circuitry is configured to:

receive a temperature signal indicative of the temperature of the fluid from the temperature sensor, and

cause the circuit to generate the heat based on the temperature signal.

2. The container system of claim 1 , wherein the circuit includes one or more circuit elements configured to generate the heat, wherein the one or circuit elements are substantially adhered to the flexible material, and wherein the one or more circuit elements are configured to flex with the flexible material.

3. The container system of claim 1 , wherein the temperature sensor is configured to sense a temperature of the fluid held within the volume of the container system.

4. The container system of claim 1 , further comprising a thermostat configured to communicate a temperature setpoint to the control circuitry, wherein the control circuitry is configured to:

compare the temperature setpoint and the temperature indicated by the temperature signal; and

cause the circuit to generate the heat based on the comparison of the temperature setpoint and the temperature indicated by the temperature signal.

5. The container system of claim 1 , further comprising:

a solute within the fluid reservoir,

wherein the container system is configured to cause the inflow of the fluid to mix with the solute and form the medical solution in the fluid reservoir, and

wherein the container system is configured to provide an outflow of the medical solution to the outlet conduit.

6. The container system of claim 1 , further comprising a conduit, wherein the conduit is one of the inlet conduit or the outlet conduit.

7. The container system of claim 1 , wherein the volume of the container system is a portion of the fluid reservoir.

8. The container system of claim 7 , further comprising:

the inlet conduit; and

the outlet conduit,

wherein the inlet conduit includes a first fluid connector configured to mechanically mate with a first machine connector of a machine to fluidly couple the inlet conduit and the machine, and

wherein the outlet conduit includes a second fluid connector configured to mechanically mate with a second machine connector of the machine to fluidly couple the outlet conduit and the machine.

9. The container system of claim 1 , wherein the circuit includes a first connector configured to mechanically mate with a second connector configured to provide the electrical power, wherein the first connector is configured to transfer the electrical power from the second connector to the circuit when the first connector mechanically mates with the second connector.

10. A container system for heating and delivering a medical solution comprising a fluid for use in a patient, the container system comprising:

a container body including an inlet conduit and an outlet conduit, the container body defining a fluid reservoir configured to hold the fluid, wherein the container body is configured to receive an inflow of the fluid to the fluid reservoir from the inlet conduit, and wherein the container body is configured to provide an outflow of the fluid from the fluid reservoir to the outlet conduit;

a solute within the fluid reservoir, wherein the container system is configured to cause the inflow of the fluid to mix with the solute and form the medical solution in the fluid reservoir, and wherein the container system is configured to provide an outflow of the medical solution from the fluid reservoir to the outlet conduit;

a cover wall defining a cavity configured to receive at least a portion of the container body, the cover wall configured to transfer heat to a volume of the container system, wherein the cover wall comprises a flexible material, and wherein the cover wall is configured to transfer the heat from an inner wall surface of the cover wall to a surface of the portion of the container body when the cavity receives the portion of the container body;

a circuit mechanically supported by the flexible material, the circuit configured to heat the fluid when the cavity receives the portion of the container body, wherein the circuit is configured to flex with the flexible material, and wherein the circuit is configured to receive electrical power and generate the heat using the electrical power to cause the cover wall to transfer the heat to the fluid contained within the volume of the container system;

a temperature sensor configured to sense a temperature of the fluid, wherein the temperature sensor is configured to be positioned at a location displaced from the container body; and

control circuitry configured to cause the circuit to generate the heat, wherein the control circuitry is configured to:

receive a temperature signal indicative of a temperature of the fluid from the temperature sensor, and

cause the circuit to generate the heat based on the temperature signal.

11. The container of claim 10 , further comprising a thermostat configured to communicate a temperature setpoint to the control circuitry, wherein the control circuitry is configured to:

compare the temperature setpoint and the temperature indicated by the temperature signal; and

cause the circuit to generate the heat based on the comparison.

12. The container system of claim 10 , wherein the circuit comprises one or more circuit elements, wherein each circuit element of the one or more circuit elements are electrically connected to at least one other circuit element of the one or more circuit elements, and wherein the circuit is configured to sustain the electrical connection between the circuit elements when the circuit flexes with the flexible material.

13. The container of claim 10 , wherein the circuit includes a first connector configured to mechanically mate with a second connector configured to provide the electrical power, wherein the first connector is configured to transfer the electrical power from the second connector to the circuit when the first connector mechanically mates with the second connector.

14. A method, comprising:

receiving an inflow of a fluid from an inlet conduit into a fluid reservoir defined by a container body, wherein the container body is configured to provide an outflow of the fluid from the fluid reservoir to an outlet conduit;

generating heat using a circuit receiving electrical power and mechanically supported by a cover wall comprising a flexible material, wherein the cover wall is configured to transfer heat to a volume of the container system configured to contain the fluid;

heating, using the circuit, a portion of the fluid in the volume of the container system when at least a portion of the container body is received in a cavity defined by the cover wall, wherein heating the portion of the fluid comprises causing the cover wall to transfer the heat from an inner wall surface of the cover wall to a surface of the portion of the container body;

sensing a temperature of the fluid using a temperature sensor configured to be positioned at a location displaced from the container body;

receiving, using control circuitry, a temperature signal indicative of the temperature of the fluid from the temperature sensor; and

causing, using the control circuitry, the circuit to generate the heat based on the temperature signal.

15. The container system of claim 1 , further comprising a conduit, wherein the conduit is one of the inlet conduit or the outlet conduit, and wherein the temperature sensor is configured to sense the temperature of the fluid within the one of the inlet conduit or the outlet conduit.

16. The container system of claim 1 , wherein the temperature sensor is configured to sense the temperature of the inflow of the fluid into the fluid reservoir.

17. The method of claim 14 , further comprising:

causing, using the container system, the inflow of the fluid to mix with a solute within the fluid reservoir to form a medical solution comprising the fluid in the fluid reservoir, and

providing an outflow of the medical solution from the fluid reservoir to the outlet conduit.

Assignments (3)
SECURITY INTEREST Recorded Dec 1, 2025
From: MOZARC MEDICAL US LLC
To: ORBIMED ROYALTY & CREDIT OPPORTUNITIES V, LP
Reel/Frame 073800/0164 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 19, 2023
From: MEDTRONIC, INC.
To: MOZARC MEDICAL US LLC
Reel/Frame 063375/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2021
From: IVERSON, MICHELLE A.; BRIGMAN, ALEXA R.
To: MEDTRONIC, INC.
Reel/Frame 055840/0457 →