IP Library Granted Patent US 10,794,618
Granted Patent B2
US 10,794,618 · App. 15/771,928 · Granted Oct 6, 2020

Thermoelectric cooling tank system and methods

Inventor: Alexander Wasserman (West Hills, CA)
Assignee: LVD Acquisition, LLC
F25B21/02B67D1/0869B67D3/0009F25B49/00F25D31/002H01L35/30H01L35/32F25B2321/023
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Quick Facts
Patent No.
US 10,794,618
App. No.
15/771,928
Granted
Oct 6, 2020
Kind
B2
Abstract

Exemplary embodiments include tanks for cooling liquid where at least two thermoelectric chips come into contact with and cool a plurality of conductive fins that each extend into the interior of the tank where they come into contact with and thereby chill fluid as it is housed in and flows between two connected chambers within the tank.

Claims (45)

1. A device for chilling liquid, the device comprising:

a tank for receiving and selectively maintaining a volume of liquid within its interior;

an inlet for receiving the volume of liquid into the tank;

an outlet which permits for the liquid to be removed from the tank;

a baffle disposed within the tank such that a first side of the baffle assists in defining a first area within the tank interior for receiving the volume of liquid from the inlet and a second side of the baffle assists in defining a second area within the tank interior for holding at least some of the liquid before it is removed from the tank through the outlet;

at least one opening defined by at least part of the baffle and part of the interior of the tank body wherein said opening extends between the first area and the second area and permits for liquid to travel from the first area to the second area;

a plurality of cooling fins connected to the tank wherein each cooling fin extends into the interior of the tank and protrudes through the first side of the baffle to the second side of the baffle such that some of the fin extends into the first area of the tank interior and some of the fin extends into the second area of the tank interior; and

at least two thermoelectric chips in thermal connectivity with the cooling fins, such that at least one first thermoelectric chip is in connectivity with at least some of the cooling fins and at least one second thermoelectric chip is in connectivity with at least some of the cooling fins.

2. The device of claim 1 wherein the at least one first thermoelectric chip and the at least one second thermoelectric chip each have a width and a height and the first and second thermoelectric chips are positioned next to each other horizontally such that they collectively have a width that is greater than the height of the chips and the width of the thermoelectric chips is placed horizontal to the direction the liquid would flow from the first area to the second area.

3. The device of claim 2 further comprising a thermally conductive spacer block that thermally connects the thermoelectric chips to the cooling fins.

4. The device of claim 1 further comprising:

a temperature sensor disposed within the tank such that it may take a temperature reading of the liquid selectively stored in said tank;

an electronic control in connectivity with said temperature sensor wherein said control obtains temperature readings from the temperature sensor and generates signals based on said readings; and

at least one power supply in connectivity with the electronic control wherein said at least one power supply receives the signals generated by the control and is adapted to switch between a high power output and a low power output based on the signals.

5. The device of claim 1 wherein the at least one opening is a plurality of openings such that there is an opening defined by the baffle for each one of the cooling fins and each cooling fin is received by one of the openings such that the liquid may travel from the first area to the second area via the plurality of openings gaining exposure to surface area of the cooling fins as it flows through said openings.

6. The device of claim 1 wherein the cooling fins are connected to the tank via a plate which is integral with the fins wherein said plate extends from the interior of the tank to the exterior of the tank.

7. The device of claim 1 further comprising a layer of insulation having an inner surface and an outer surface wherein said insulation surrounds the exterior of the tank and defines an opening such that the at least one thermoelectric chip is positioned at the outer surface of the insulation and the tank is positioned at the inner surface of the insulation.

8. The device of claim 1 wherein the at least one thermoelectric chip comprises more than two thermoelectric chips.

9. The device of claim 8 wherein the more than two thermoelectric chips are positioned next to each other such that they collectively have a width that is vertical to the direction liquid would flow within the tank as it would flow from the first area to the second area.

10. A device for chilling liquid, the device comprising:

a tank for receiving and selectively maintaining a volume of liquid within its interior;

an inlet for receiving the volume of liquid into the tank;

an outlet which permits for the liquid to be removed from the tank;

a baffle disposed within the tank such that a first side of the baffle assists in defining a first area within the tank wherein said first area receives the liquid from the inlet and a second side of the baffle assists in defining a second area within the tank wherein said second area provides the liquid to the outlet;

a plurality of openings defined by the baffle wherein each of said openings extends between the first area and the second area and permits for the liquid to travel from the first area to the second area;

a plurality of cooling fins wherein each cooling fin is connected to the tank and extends into the interior of the tank such that each fin is received by and protrudes through one of the openings such that some of each cooling fin extends into the first area of the tank interior and some of each fin extends into the second area of the tank interior; and

two thermoelectric chips in thermal connectivity with the cooling fins, wherein the two thermoelectric chips each has a width and a height and the chips are positioned next to each other such that the collective width of the two chips is greater than the height of the chips and the chips are positioned relative to the tank such that the collective width is horizontal to the direction the liquid would flow as it travels from the first area to the second area.

11. The device of claim 10 further comprising a temperature sensor disposed within the tank such that it may obtain temperature readings of the liquid selectively maintained in the tank.

12. The device of claim 11 further comprising:

at least one power source in electronic connectivity with the thermoelectric chips; and

an electronic control that is in electronic connectivity with the temperature sensor as well as the at least one power source wherein the electronic control receives temperature reading information from the temperature sensor and generates signals based on said reading information and sends said signals to the at least one power source causing it to supply power to the thermoelectric chips.

13. The device of claim 12 wherein the at least one power source is capable of supplying a high power output to the thermoelectric chips as well as a low power output to the thermoelectric chips.

14. The device of claim 13 wherein the at least one power source comprises a first power source and a second power source and the first power source supplies the high power output to the thermoelectric chips and the second power source supplies the low power output to the thermoelectric chips upon receipt of signals received from the control.

15. The device of claim 13 wherein the high power output is approximately 50 Watts.

16. The device of claim 13 wherein the low power output is approximately 4 Watts.

17. A device for chilling liquid, the device comprising:

a tank for receiving and selectively maintaining a volume of liquid within its interior;

an inlet for receiving the volume of liquid into the tank;

an outlet which permits for the liquid to be removed from the tank;

a baffle disposed within the tank such that a first side of the baffle assists in defining a first area within the tank wherein said first area receives the liquid from the inlet and a second side of the baffle assists in defining a second area within the tank wherein said second area provides the liquid to the outlet;

at least one opening defined by the baffle wherein each at least one opening extends between the first area and the second area and permits for liquid to travel from the first area to the second area;

a plurality of cooling fins connected to the tank that extend into the interior of the tank and protrude through the baffle such that some of each fin extends into the first area of the tank interior and some of each fin extends into the second area of the tank interior; and

two thermoelectric chips in thermal connectivity with the cooling fins, wherein the plurality of cooling fins protrudes through the baffle through the at least one opening defined by the baffle.

18. The device of claim 17 further comprising a thermally conductive spacer block which thermally connects the cooling fins to the thermoelectric chips.

19. The device of claim 18 wherein the two thermoelectric chips each have a width and a height and the chips are positioned next to each other such that the collective width of the two chips is greater than the height of the chips and the chips are positioned relative to the tank such that the collective width is horizontal to the direction the liquid would flow as it travels from the first area to the second area.

Assignments (2)
SECURITY INTEREST Recorded Aug 10, 2021
From: CULLIGAN INTERNATIONAL COMPANY; RAYNE CORPORATION; LVD ACQUISITION, LLC; PARAGON WATER SYSTEMS, INC.; ZERO TECHNOLOGIES, LLC
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 057145/0728 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2020
From: WASSERMAN, ALEXANDER
To: LVD ACQUISITION, LLC
Reel/Frame 053633/0702 →
Continuity (2)
Provisional Application 62248626 · Oct 30, 2015
Related Publication 20180306471A1 · Oct 25, 2018