IP Library › Granted Patent US 11,674,727
Granted Patent B2
US 11,674,727 · App. 17/384,120 · Granted Jun 13, 2023

HVAC equipment with refrigerant gas sensor

Inventor: Tathagata De (Houston, TX)
Assignee: Goodman Manufacturing Company, L.P.
F25B49/005F24F11/36F24H9/2085F25B2500/222
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Quick Facts
Patent No.
US 11,674,727
App. No.
17/384,120
Granted
Jun 13, 2023
Kind
B2
Abstract

An HVAC system with a refrigerant gas sensor is provided. In one embodiment, an HVAC system includes a heat exchanger coil installed within a housing. The heat exchanger coil is operable to exchange heat with air in the housing via a refrigerant passing through the heat exchanger coil. The system also includes an HVAC sensor assembly installed within the housing. The HVAC sensor assembly includes a refrigerant gas sensor and an orientation sensor positioned to detect an orientation of the refrigerant gas sensor. The HVAC system may also or instead include a position sensor to detect the position of the refrigerant gas sensor within the system. Additional systems, devices, and methods are also disclosed.

Claims (34)

1. An HVAC system comprising:

a heat exchanger coil installed within a housing, the heat exchanger coil operable to exchange heat with air in the housing via a refrigerant passing through the heat exchanger coil;

an HVAC sensor assembly installed within the housing, the HVAC sensor assembly including:

a refrigerant gas sensor; and

an orientation sensor positioned to detect an orientation of the refrigerant gas sensor;

an air handler having a blower; and

a controller configured to prevent an operation of the air handler in response to detection that the refrigerant gas sensor is not in a desired orientation.

2. The HVAC system of claim 1 , wherein the blower is installed in the housing in which the heat exchanger coil is installed.

3. The HVAC system of claim 1 , wherein the air handler includes a gas furnace.

4. The HVAC system of claim 1 , wherein the HVAC sensor assembly includes a swing body that carries the refrigerant gas sensor and the orientation sensor and is configured to swing between multiple orientations within the housing.

5. The HVAC system of claim 4 , wherein the swing body is mounted to the housing via a pivot to allow the swing body to turn about the pivot.

6. The HVAC system of claim 4 , wherein the swing body includes a swing body housing in which the refrigerant gas sensor and the orientation sensor are enclosed.

7. The HVAC system of claim 1 , comprising a position sensor installed to detect whether the refrigerant gas sensor is positioned at a desired location within the housing.

8. A system comprising:

an HVAC sensor assembly including:

a refrigerant gas sensor; and

an orientation sensor positioned to detect an orientation of the refrigerant gas sensor;

wherein the HVAC sensor assembly includes a swing body that carries the refrigerant gas sensor and the orientation sensor and is configured to swing between multiple orientations within an HVAC cabinet, the multiple orientations including a first desired orientation of the refrigerant gas sensor with respect to the HVAC cabinet in which the swing body sits along a first wall of the HVAC cabinet when the HVAC cabinet is installed in an upright orientation and a second desired orientation of the refrigerant gas sensor with respect to the HVAC cabinet in which the swing body sits along a second wall of the HVAC cabinet, different from the first wall, when the HVAC cabinet is installed in a horizontal orientation.

9. The system of claim 8 , wherein the refrigerant gas sensor and the orientation sensor are mounted on a shared printed circuit board.

10. The system of claim 8 , wherein the HVAC sensor assembly includes a sensor housing in which the refrigerant gas sensor and the orientation sensor are installed.

11. The system of claim 10 , wherein the HVAC sensor assembly includes a heater within the sensor housing.

12. The system of claim 8 , wherein the HVAC sensor assembly is installed in the HVA cabinet.

13. A method comprising:

using an orientation sensor to determine an orientation of a refrigerant gas sensor within an HVAC system;

comparing the determined orientation of the refrigerant gas sensor with a desired orientation of the refrigerant gas sensor;

detecting, from the comparison of the determined orientation of the refrigerant gas sensor with the desired orientation of the refrigerant gas sensor, that the refrigerant gas sensor is improperly oriented; and

controlling operation of the HVAC system based on the comparison of the determined orientation of the refrigerant gas sensor with the desired orientation of the refrigerant gas sensor, wherein controlling operation of the HVAC system based on the comparison of the determined orientation of the refrigerant gas sensor with the desired orientation of the refrigerant gas sensor includes preventing an operation of the HVAC system in response to detecting that the refrigerant gas sensor is improperly oriented.

14. The method of claim 13 , wherein comparing the determined orientation of the refrigerant gas sensor with the desired orientation of the refrigerant gas sensor includes determining whether the determined orientation is within a desired range of orientations of the refrigerant gas sensor.

15. The method of claim 13 , comprising:

using a location sensor to detect whether the refrigerant gas sensor is positioned at a desired location within the HVAC system; and

controlling operation of the HVAC system based on whether the refrigerant gas sensor is positioned at the desired location within the HVAC system.

16. The method of claim 13 , comprising:

detecting leaked refrigerant with the refrigerant gas sensor; and

preventing an operation of the HVAC system in response to the detection of the leaked refrigerant with the refrigerant gas sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2021
From: DE, TATHAGATA
To: GOODMAN MANUFACTURING COMPANY, L.P.
Reel/Frame 056970/0914 →
Continuity (1)
Related Publication 20230029164A1 · Jan 26, 2023
Cited By (5)
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