IP Library Granted Patent US 11,016,001
Granted Patent B2
US 11,016,001 · App. 16/148,507 · Granted May 25, 2021

Systems and methods for leak detection in liquid-cooled information handling systems

Inventors: Sandor Farkas (Round Rock, TX); Jeremiah Bartlett (Austin, TX)
Assignee: Dell Products L.P.
G01M3/40G06F1/20H05K7/20218
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Quick Facts
Patent No.
US 11,016,001
App. No.
16/148,507
Granted
May 25, 2021
Kind
B2
Abstract

The method may include: in a first measurement phase, generating a first input signal to the first input terminal of a leak detection cable interface circuit and receiving a first response signal in response the first input signal; in a second measurement phase, generating a second input signal to the second input terminal of the leak detection cable interface circuit and receiving a second response signal in response the second input signal; and based on at least the first response signal and the second response signal, determining a state of a leak detection cable communicatively coupled to the leak detection cable interface circuit.

Claims (72)

1. An information handling system comprising:

an information handling resource;

an active liquid cooling system for providing active cooling of the information handling resource; and

a leak detection system for detecting a leak of fluid from the active liquid cooling system, the leak detection system comprising:

a microcontroller configured to generate one or more control signals for leak detection by a leak detection cable and receive measurement signals indicative of a state of the leak detection cable in response to the one or more control signals; and

a leak detection cable interface circuit configured to interface between the leak detection cable and the microcontroller and comprising:

two input terminals for interfacing with the microcontroller;

two output terminals for interfacing with the leak detection cable; and

a symmetrical network of passive circuit elements such that a first input impedance of a first input terminal of the two input terminals is approximately equal to a second input impedance of a second input terminal of the two input terminals and such that a first output impedance of a first output terminal of the two output terminals is approximately equal to a second output impedance of a second input terminal of the two output terminals.

2. The information handling system of claim 1 , wherein the symmetrical network of passive circuit elements comprises:

a first resistor having a first resistance and coupled between the first input terminal and the first output terminal;

a second resistor having a second resistance approximately equal to that of the first resistance and coupled between the second input terminal and the second output terminal;

a third resistor having a third resistance and coupled between the first output terminal and a ground voltage;

a fourth resistor having a fourth resistance approximately equal to that of the third resistance and coupled between the second output terminal and a ground voltage; and

a fifth resistor coupled between the first output terminal and the second output terminal.

3. The information handling system of claim 1 , wherein the microcontroller is configured to:

in a first measurement phase, generate a first input signal to the first input terminal and receive a first response signal in response to the first input signal;

in a second measurement phase, generate a second input signal to the second input terminal and receive a second response signal in response to the second input signal; and

based on at least the first response signal and the second response signal, determine a state of the leak detection cable.

4. The information handling system of claim 3 , wherein:

the first input signal is a first pulsed signal;

the first response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the first pulsed signal;

the second input signal is a second pulsed signal; and

the second response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the second pulsed signal.

5. The information handling system of claim 3 , wherein the microcontroller is further configured to:

in a first idle phase before the first measurement phase and after the second measurement phase, reset the leak detection cable interface circuit and the leak detection cable; and

in a second idle phase before the second measurement phase and after the first measurement phase, reset the leak detection cable interface circuit and the leak detection cable.

6. The information handling system of claim 5 , wherein resetting the leak detection cable interface circuit and the leak detection cable comprises forcing both of the first input terminal and the second input terminal to a ground voltage.

7. The information handling system of claim 1 , wherein the state of the leak detection cable may comprise one of a state in which moisture is present on the leak detection cable and a state in which moisture is absent from the leak detection cable.

8. The information handling system of claim 6 , wherein the state of the leak detection cable may further comprise a state in which the leak detection cable is absent, a state in which the leak detection cable is electrically shorted to a ground voltage, and a state in which the leak detection cable is electrically shorted to a supply voltage.

9. A leak detection system for detecting a leak of fluid, the leak detection system comprising:

a microcontroller configured to generate one or more control signals for leak detection by a leak detection cable and receive measurement signals indicative of a state of the leak detection cable in response to the one or more control signals; and

a leak detection cable interface circuit configured to interface between the leak detection cable and the microcontroller and comprising:

two input terminals for interfacing with the microcontroller;

two output terminals for interfacing with the leak detection cable; and

a symmetrical network of passive circuit elements such that a first input impedance of a first input terminal of the two input terminals is approximately equal to a second input impedance of a second input terminal of the two input terminals and such that a first output impedance of a first output terminal of the two output terminals is approximately equal to a second output impedance of a second input terminal of the two output terminals.

10. The leak detection system of claim 9 , wherein the symmetrical network of passive circuit elements comprises:

a first resistor having a first resistance and coupled between the first input terminal and the first output terminal;

a second resistor having a second resistance approximately equal to that of the first resistance and coupled between the second input terminal and the second output terminal;

a third resistor having a third resistance and coupled between the first output terminal and a ground voltage;

a fourth resistor having a fourth resistance approximately equal to that of the third resistance and coupled between the second output terminal and a ground voltage; and

a fifth resistor coupled between the first output terminal and the second output terminal.

11. The leak detection system of claim 9 , wherein the microcontroller is configured to:

in a first measurement phase, generate a first input signal to the first input terminal and receive a first response signal in response to the first input signal;

in a second measurement phase, generate a second input signal to the second input terminal and receive a second response signal in response to the second input signal; and

based on at least the first response signal and the second response signal, determine the state of the leak detection cable.

12. The leak detection system of claim 11 , wherein:

the first input signal is a first pulsed signal;

the first response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the first pulsed signal;

the second input signal is a second pulsed signal; and

the second response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the second pulsed signal.

13. The leak detection system of claim 11 , wherein the microcontroller is further configured to:

in a first idle phase before the first measurement phase and after the second measurement phase, reset the leak detection cable interface circuit and the leak detection cable; and

in a second idle phase before the second measurement phase and after the first measurement phase, reset the leak detection cable interface circuit and the leak detection cable.

14. The leak detection system of claim 13 , wherein resetting the leak detection cable interface circuit and the leak detection cable comprises forcing both of the first input terminal and the second input terminal to a ground voltage.

15. The leak detection system of claim 9 , wherein the state of the leak detection cable may comprise one of a state in which moisture is present on the leak detection cable and a state in which moisture is absent from the leak detection cable.

16. The leak detection system of claim 15 , wherein the state of the leak detection cable may further comprise a state in which the leak detection cable is absent, a state in which the leak detection cable is electrically shorted to a ground voltage, and a state in which the leak detection cable is electrically shorted to a supply voltage.

17. A method, in a leak detection system for detecting for a leak of fluid, wherein the leak detection system comprises a leak detection cable interface circuit configured to interface with a leak detection cable and a microcontroller and comprising two input terminals for interfacing with the microcontroller, two output terminals for interfacing with the leak detection cable, and a symmetrical network of passive circuit elements such that a first input impedance of a first input terminal of the two input terminals is approximately equal to a second input impedance of a second input terminal of the two input terminals and such that a first output impedance of a first output terminal of the two output terminals is approximately equal to a second output impedance of a second input terminal of the two output terminals, the method comprising:

in a first measurement phase, generating a first input signal to the first input terminal and receiving a first response signal in response the first input signal;

in a second measurement phase, generating a second input signal to the second input terminal and receiving a second response signal in response the second input signal; and

based on at least the first response signal and the second response signal, determining a state of the leak detection cable.

18. The method of claim 17 , wherein:

the first input signal is a first pulsed signal;

the first response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the first pulsed signal;

the second input signal is a second pulsed signal; and

the second response signal is a transient response of the leak detection cable interface circuit and the leak detection cable to the second pulsed signal.

19. The method of claim 18 , further comprising:

in a first idle phase before the first measurement phase and after the second measurement phase, resetting the leak detection cable interface circuit and the leak detection cable; and

in a second idle phase before the second measurement phase and after the first measurement phase, resetting the leak detection cable interface circuit and the leak detection cable.

20. The method of claim 19 , wherein resetting the leak detection cable interface circuit and the leak detection cable comprises forcing both of the first input terminal and the second input terminal to a ground voltage.

21. The method of claim 17 , wherein the state of the leak detection cable may comprise one of a state in which moisture is present on the leak detection cable and a state in which moisture is absent from the leak detection cable.

22. The method of claim 21 , wherein the state of the leak detection cable may further comprise a state in which the leak detection cable is absent, a state in which the leak detection cable is electrically shorted to a ground voltage, and a state in which the leak detection cable is electrically shorted to a supply voltage.

Assignments (5)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (053546/0001) Recorded Jun 23, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL MARKETING L.P. (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO CREDANT TECHNOLOGIES, INC.); DELL INTERNATIONAL L.L.C.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO FORCE10 NETWORKS, INC. AND WYSE TECHNOLOGY L.L.C.); EMC IP HOLDING COMPANY LLC
Reel/Frame 071642/0001 →
SECURITY AGREEMENT Recorded Oct 1, 2021
From: DELL PRODUCTS, L.P.; EMC IP HOLDING COMPANY LLC
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
Reel/Frame 057682/0830 →
SECURITY AGREEMENT Recorded Apr 22, 2020
From: CREDANT TECHNOLOGIES INC.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; FORCE10 NETWORKS, INC.; WYSE TECHNOLOGY L.L.C.; EMC IP HOLDING COMPANY LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 053546/0001 →
SECURITY AGREEMENT Recorded Mar 21, 2019
From: CREDANT TECHNOLOGIES, INC.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; FORCE10 NETWORKS, INC.; WYSE TECHNOLOGY L.L.C.; EMC IP HOLDING COMPANY LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 049452/0223 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2018
From: FARKAS, SANDOR; BARTLETT, JEREMIAH
To: DELL PRODUCTS L.P.
Reel/Frame 047022/0075 →