IP Library Granted Patent US 11,304,342
Granted Patent B1
US 11,304,342 · App. 17/336,908 · Granted Apr 12, 2022

Measurement of dielectric liquid level change in two-phase immersion cooling systems

Inventors: Mazyar Amin (Plano, TX); Thomas Turner (Plano, TX)
Assignee: TMGCore, LLC
H05K7/208G01F23/0038G01F23/20G01F23/603G01N9/08
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Quick Facts
Patent No.
US 11,304,342
App. No.
17/336,908
Granted
Apr 12, 2022
Kind
B1
Abstract

The instant application pertains to new fluid level monitoring apparatus and a cooling system for computer components that employs the fluid level monitoring apparatus. In one embodiment, the liquid level measurement device comprises a load cell and a buoyancy element. The buoyancy element is configured to be partially submerged in the liquid phase. The load cell and the buoyancy element are operably connected such that a change in liquid volume may be determined using Archimedes' principle.

Claims (34)

1. A cooling system for computing components comprising:

a vessel configured to comprise a volume of thermally conductive, boilable and condensable dielectric fluid in a liquid phase and a vapor phase;

a door;

a sump area that is separated from a bath area of the vessel by a weir;

a rack configured to hold one or more computer components such that the one or more computer components are configured to be:

at least partially submerged within the liquid phase of the volume of thermally conductive, boilable and condensable dielectric fluid; and

lifted out of the volume of thermally conductive, boilable and condensable dielectric fluid when the door is open;

a condenser for actively condensing a vapor phase dielectric fluid to a liquid phase dielectric fluid; and

a liquid level measurement device comprising a load cell and a buoyancy element wherein the buoyancy element is configured to be partially submerged in the liquid phase and wherein the load cell and the buoyancy element are operably connected such that a change in liquid volume may be determined.

2. The cooling system of claim 1 wherein the change in liquid volume is calculated from (1) a change in force measured by the load cell, (2) density of the buoyancy element, (3) cross-sectional area of the buoyancy element, (4) density of the fluid, and (5) movement of the buoyancy element due to the change in force on the load cell.

3. The cooling system of claim 1 wherein the buoyancy element is configured to hang substantially vertically from the load cell.

4. The cooling system of claim 1 further comprising a tank configured to comprise a volume of thermally conductive, condensable dielectric fluid wherein the system is configured (1) to transfer dielectric fluid from the tank to the vessel; or (2) to transfer dielectric fluid from the vessel to the tank; or (3) both (1) and (2) based on a change in liquid volume.

5. The cooling system of claim 1 further comprising an actuator configured to raise and lower the buoyancy element.

6. The cooling system of claim 1 further comprising a variable speed motor configured to raise and lower the buoyancy element.

7. The cooling system of claim 1 further comprising a housing which at least partially surrounds the load cell and the buoyancy element wherein said housing is configured to reduce disturbances.

8. The cooling system of claim 1 , wherein the liquid level measurement device is located within the sump area.

9. The cooling system of claim 1 , further comprising a housing which at least partially surrounds the load cell and the buoyancy element.

10. The cooling system of claim 9 , further comprising an actuator configured to raise and lower the housing.

11. A cooling system for computing components comprising:

a vessel configured to comprise a volume of thermally conductive, boilable and condensable dielectric fluid in a liquid phase and a vapor phase;

a sump area that is separated from a bath area of the vessel by a weir;

a rack configured to hold one or more computer components such that the one or more computer components are configured to be at least partially submerged within the liquid phase of the volume of thermally conductive, boilable and condensable dielectric fluid;

a condenser for actively condensing a vapor phase dielectric fluid to a liquid phase dielectric fluid; and

a liquid level measurement device comprising:

a load cell;

a buoyancy element;

a housing which at least partially surrounds the load cell and buoyancy element; and

an actuator configured to raise and lower the housing;

wherein the buoyancy element is configured to be partially submerged in a liquid and wherein the load cell and the buoyancy element are operably connected such that a change in liquid volume may be determined.

12. The cooling system of claim 11 wherein the change in liquid volume is calculated from (1) a change in force measured by the load cell, (2) density of the buoyancy element, (3) cross-sectional area of the buoyancy element, (4) density of the liquid, and (5) movement of the buoyancy element due to the change in force on the load cell.

13. The cooling system of claim 11 wherein the buoyancy element is configured to hang substantially vertically from the load cell.

14. The cooling system of claim 11 further comprising a variable speed motor configured to raise and lower the buoyancy element.

15. The cooling system of claim 11 wherein the liquid level measurement device is configured to measure an amount of dielectric liquid level change.

16. The cooling system of claim 11 which further comprises a processor configured to receive a force in the load cell, and calculate the change in liquid volume.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2024
From: TMGCORE, INC.
To: MODINE LLC
Reel/Frame 066553/0560 →
SECURITY INTEREST Recorded May 23, 2023
From: TMGCORE, INC.
To: MODINE MANUFACTURING COMPANY
Reel/Frame 063730/0315 →
CERTIFICATE OF CONVERSION Recorded Jul 26, 2021
From: TMGCORE, LLC
To: TMGCORE, INC.
Reel/Frame 056981/0860 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2021
From: AMIN, MAYZAR; TURNER, THOMAS
To: TMGCORE, LLC
Reel/Frame 056800/0300 →