IP Library Granted Patent US 12,253,273
Granted Patent B1
US 12,253,273 · App. 17/567,488 · Granted Mar 18, 2025

HVAC monitoring system

Inventor: Daniel Xavier Dudek (Flower Mound, TX)
F24F11/30F24D19/1084F24F11/52F25B49/02G08B21/18F24F2110/12F25B2500/222F25B2700/21163
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Quick Facts
Patent No.
US 12,253,273
App. No.
17/567,488
Filed
Jan 3, 2022
Granted
Mar 18, 2025
Kind
B1
Art Unit
2687
USPC
340/605
Abstract

An HVAC monitoring system includes a base unit mounted on a condenser and/or furnace that is electrically connected to a plurality of thermistors positioned at specific locations critical to efficient operation of the system. The base unit is in discrete wireless communication with a receiver positioned within the building interior where it is readily accessible and observable by the occupant. The receiver includes a display screen with indicators that visually inform a user of an alert condition.

Claims (71)

1. An HVAC monitoring system comprising:

a condenser unit having a liquid refrigerant line, a refrigerant suction line, and a fan;

a base unit mounted on said condenser unit;

a first surface-mounted temperature sensor on said refrigerant suction line and electrically connected to said base unit;

a second surface-mounted temperature sensor on said liquid refrigerant line and electrically connected to said base unit;

an atmospheric temperature sensor mounted on said base unit and electrically connected to said base unit;

a remote receiver in wireless communication with said base unit for processing and displaying output from said first surface-mounted temperature sensor, said second surface-mounted temperature sensor, and said atmospheric temperature sensor;

a means for measuring a differential between a temperature measured by said second surface-mounted temperature sensor and said atmospheric temperature sensor and for calculating a refrigerant loss based upon said differential.

2. The HVAC monitoring system according to claim 1 wherein said first surface-mounted temperature sensor and said second surface-mounted temperature sensor are each encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements.

3. The HVAC monitoring system according to claim 1 wherein said condenser unit includes at least one refrigerant access point covered by an electronic valve cap that alerts a user if someone is tampering with a refrigerant line.

4. The HVAC monitoring system according to claim 1 further comprising at least one electronic refrigerant leak detector proximal said fan for sensing a refrigerant leak.

5. The HVAC monitoring system according to claim 1 further comprising:

a furnace having a second base unit mounted thereon;

an ambient air temperature probe for measuring ambient air temperature near the furnace;

a first temperature probe attached to a furnace air inlet;

a second temperature probe secured to an air furnace outlet;

a third temperature probe coupled with an evaporator coil suction;

a fourth temperature probe coupled with a furnace exhaust conduit to identify high-temperature alarm conditions.

6. The HVAC monitoring system according to claim 5 further comprising a natural gas leak detector for sensing natural gas leaks.

7. The HVAC monitoring system according to claim 5 wherein said second base unit is electronically connected to a condensate overflow interrupt switch on said furnace and transmits an alert signal to the receiver to alert the user to initiate corrective action.

8. The HVAC monitoring system according to claim 1 further comprising a fan temperature sensor proximal said fan for monitoring fan performance.

9. The HVAC monitoring system according to claim 5 further comprising at least one electronic refrigerant leak detector proximal an evaporator coil within said furnace for sensing a refrigerant leak.

10. The HVAC monitoring system according to claim 1 further comprising a means for filtering temperature fluctuations attributable to environmental conditions.

11. The HVAC monitoring system according to claim 8 , wherein said fan temperature sensor is encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements.

12. The HVAC monitoring system according to claim 10 wherein said means for filtering temperature fluctuations attributable to environmental conditions comprises said receiver having a microcontroller with software having a filtering algorithm for interpreting artificial temperature spikes solely attributable to environmental conditions.

13. An HVAC monitoring system comprising:

a condenser unit having a liquid refrigerant line, a refrigerant suction line, and a fan;

a base unit mounted on said condenser unit;

a first surface-mounted temperature sensor on said refrigerant suction line and electrically connected to said base unit;

a second surface-mounted temperature sensor on said liquid refrigerant line and electrically connected to said base unit;

an atmospheric temperature sensor mounted on said base unit and electrically connected to said base unit;

a remote receiver in wireless communication with said base unit for processing and displaying output from said first surface-mounted temperature sensor, said second surface-mounted temperature sensor, and said atmospheric temperature sensor;

at least one electronic refrigerant leak detector proximal said fan for sensing a refrigerant leak;

a furnace having a second base unit mounted thereon, wherein said second base unit is electronically connected to a condensate overflow interrupt switch on said furnace and transmits an alert signal to the receiver to alert the user to initiate corrective action;

an ambient air temperature probe for measuring ambient air temperature near the furnace;

a first temperature probe attached to a furnace air inlet;

a second temperature probe secured to an air furnace outlet;

a third temperature probe coupled with an evaporator coil suction;

a fourth temperature probe coupled with a furnace exhaust conduit to identify high-temperature alarm conditions.

14. The HVAC monitoring system according to claim 13 further comprising a means for measuring a differential between a temperature measured by said second surface-mounted temperature sensor and said atmospheric temperature sensor and for calculating a refrigerant loss based upon said differential.

15. The HVAC monitoring system according to claim 13 wherein said first surface-mounted temperature sensor and said second surface-mounted temperature sensor are each encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements.

16. The HVAC monitoring system according to claim 13 wherein said condenser includes at least one refrigerant access point covered by an electronic valve cap that alerts a user if someone is tampering with a refrigerant line.

17. The HVAC monitoring system according to claim 13 further comprising a natural gas leak detector for sensing natural gas leaks.

18. The HVAC monitoring system according to claim 13 further comprising a fan temperature sensor proximal said fan for monitoring fan performance.

19. The HVAC monitoring system according to claim 13 further comprising at least one electronic refrigerant leak detector proximal an evaporator coil within said furnace for sensing a refrigerant leak.

20. The HVAC monitoring system according to claim 13 further comprising a means for filtering temperature fluctuations attributable to environmental conditions.

21. The HVAC monitoring system according to claim 18 wherein said fan temperature sensor is encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements.

22. The HVAC monitoring system according to claim 20 wherein said means for filtering temperature fluctuations attributable to environmental conditions comprises said receiver having a microcontroller with software having a filtering algorithm for interpreting artificial temperature spikes solely attributable to environmental conditions.

23. An HVAC monitoring system comprising:

a condenser unit having a liquid refrigerant line, a refrigerant suction line, and a fan;

a base unit mounted on said condenser unit;

a first surface-mounted temperature sensor on said refrigerant suction line and electrically connected to said base unit;

a second surface-mounted temperature sensor on said liquid refrigerant line and electrically connected to said base unit; wherein said first surface-mounted temperature sensor and said second surface-mounted temperature sensor are each encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements;

an atmospheric temperature sensor mounted on said base unit and electrically connected to said base unit;

a remote receiver in wireless communication with said base unit for processing and displaying output from said first surface-mounted temperature sensor, said second surface-mounted temperature sensor, and said atmospheric temperature sensor;

a means for filtering temperature fluctuations attributable to environmental conditions, wherein said means for filtering temperature fluctuations attributable to environmental conditions comprises said receiver having a microcontroller with software having a filtering algorithm for interpreting artificial temperature spikes solely attributable to environmental conditions.

24. The HVAC monitoring system according to claim 23 further comprising a means for measuring a differential between a temperature measured by said second surface-mounted temperature sensor and said atmospheric temperature sensor and for calculating a refrigerant loss based upon said differential.

25. The HVAC monitoring system according to claim 23 wherein said condenser includes at least one refrigerant access point covered by an electronic valve cap that alerts a user if someone is tampering with a refrigerant line.

26. The HVAC monitoring system according to claim 23 further comprising at least one electronic refrigerant leak detector proximal said fan for sensing a refrigerant leak.

27. The HVAC monitoring system according to claim 23 further comprising:

a furnace having a second base unit mounted thereon;

an ambient air temperature probe for measuring ambient air temperature near the furnace;

a first temperature probe attached to a furnace air inlet;

a second temperature probe secured to an air furnace outlet;

a third temperature probe coupled with an evaporator coil suction;

a fourth temperature probe coupled with a furnace exhaust conduit to identify high-temperature alarm conditions.

28. The HVAC monitoring system according to claim 27 further comprising a natural gas leak detector for sensing natural gas leaks.

29. The HVAC monitoring system according to claim 27 wherein said second base unit is electronically connected to a condensate overflow interrupt switch on said furnace and transmits an alert signal to the receiver to alert the user to initiate corrective action.

30. The HVAC monitoring system according to claim 23 further comprising a fan temperature sensor proximal said fan for monitoring fan performance.

31. The HVAC monitoring system according to claim 27 further comprising at least one electronic refrigerant leak detector proximal an evaporator coil within said furnace for sensing a refrigerant leak.

32. The HVAC monitoring system according to claim 30 wherein said fan temperature sensor is encapsulated by a reflective, cylindrical sleeve having an internal layer of insulation for deflecting ambient radiant heat to assure accurate measurements.

Continuity (1)
Provisional Application 63133975 · Jan 5, 2021
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