IP Library Granted Patent US 11,480,486
Granted Patent B2
US 11,480,486 · App. 17/039,200 · Granted Oct 25, 2022

Integrated sensor and service port with anti-blowback feature for HVAC equipment or HVAC system

Inventors: Mario A. Cruz (Miami, FL); Charles Peter Harland (Waterloo, CA); Maximilian Alexander Pfeifle (Waterloo, CA)
Assignee: WATSCO VENTURES LLC
G01L19/0023F25B41/40F25B45/00F25B49/005F25B2345/001F25B2345/006F25B2500/221F25B2700/19F25B2700/21
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Quick Facts
Patent No.
US 11,480,486
App. No.
17/039,200
Granted
Oct 25, 2022
Kind
B2
Abstract

An integrated sensor and service port for HVAC (heating, ventilating, and air conditioning) equipment or an HVAC system. The integrated sensor and service port may comprise an anti-blowback mechanism.

Claims (36)

1. An apparatus comprising:

a housing, said housing having a first connection portion, a second connection portion and a sensor integrated therein, the first connection portion being configured to connect with and cooperate with a service port of heating, ventilating, and air conditioning (HVAC) equipment, the second connection portion being configured to function as the service port, and the sensor adapted to sense a characteristic of the HVAC equipment, and

an anti-blowback mechanism adapted to prevent the service port of the HVAC equipment from being opened until the first connection portion is connected to the service port of the HVAC equipment,

wherein the anti-blowback mechanism comprises a depressor adapted to be received by the housing at a depressor region, the depressor comprising a threaded portion adapted to be received by a threaded portion of the depressor region, and rotation of the depressor in a first direction causes movement of the depressor in a first direction and rotation of the depressor in a second direction causes movement of the depressor in a second direction.

2. The apparatus of claim 1 , wherein the first connection portion, the second connection portion and the sensor are in communication with a channel formed within the housing and said first connection portion comprises:

a brass flare fitting over the channel;

a flare nut over the brass flare fitting; and

a depressor fitting within the brass flare fitting.

3. The apparatus of claim 2 , wherein the depressor is connected to the depressor fitting, and

movement of the depressor in the first direction retracts the depressor fitting within the housing, leaving the service port of the HVAC equipment in a closed position, and movement of the depressor in the second direction moves the depressor fitting towards the service port of the HVAC equipment such that the depressor fitting may place the service port of the HVAC equipment in an opened position.

4. The apparatus of claim 3 , wherein the anti-blowback mechanism further comprises a depressor seal formed within the channel and around the depressor.

5. The apparatus of claim 3 , wherein the second connection portion comprises:

a threaded portion to allow a sealed connection to service equipment; and

an internal valve core to allow service access to a pressurized system.

6. The apparatus of claim 1 , wherein the housing comprises brass.

7. The apparatus of claim 1 , wherein the sensor is a pressure sensor.

8. The apparatus of claim 1 , wherein the sensor is one of a pressure sensor, temperature sensor or a combined pressure and temperature sensor.

9. The apparatus of claim 1 , further comprising a third connection portion coupled to the sensor, the third connection portion adapted to provide a mechanism to communicate readings of the sensor outside of the apparatus.

10. An integrated sensor and service port device comprising:

a brass housing, said housing having a service port opening and connection portion, a service port portion and a sensor integrated therein, the service port opening and connection portion configured to connect with and cooperate with a service port of heating, ventilating, and air conditioning (HVAC) equipment, and

an anti-blowback mechanism adapted to prevent the service port of the HVAC equipment from being opened until the service port opening and connection portion is connected to the service port of the HVAC equipment, the anti-blowback mechanism comprising a threaded depressor adapted to be received by the housing at a depressor region, the threaded depressor contacting a depressor fitting adapted to form a temporary seal while the depressor fitting is engaging a valve core of the service port and a permanent seal when the service port valve core is fully engaged by the depressor fitting.

11. The integrated sensor and service port device of claim 10 , wherein the service port portion is configured to function as the HVAC equipment service port and the sensor is adapted to sense a characteristic of the HVAC equipment.

12. The integrated sensor and service port device of claim 11 wherein the service port opening and connection portion, service port portion and the sensor are in communication with a channel formed within the housing and said service port opening and connection portion comprises:

a brass tube flare fitting over the channel; and

a flare nut over the brass tube flare fitting;

wherein the depressor fitting is within the brass tube flare fitting.

13. The integrated sensor and service port device of claim 12 ,

wherein movement of the depressor in a first direction retracts the depressor fitting within the housing, leaving the service port of the HVAC equipment in a closed position, and movement of the depressor in a second direction moves the depressor fitting towards the service port of the HVAC equipment such that the depressor fitting may place the service port of the HVAC equipment in an opened position.

14. The integrated sensor and service port device of claim 13 , wherein the anti-blowback mechanism further comprises a depressor seal formed within the channel and around the depressor.

15. The integrated sensor and service port device of claim 13 , wherein the depressor comprises a threaded portion adapted to be received by a threaded portion of the depressor region, and movement of the depressor in the first direction comprises rotation of the depressor in a first direction and movement of the depressor in the second direction comprises rotation of the depressor in a second direction.

16. The integrated sensor and service port device of claim 12 , wherein the service port portion comprises:

a threaded portion to allow a sealed connection to service equipment; and

an internal valve core to allow service access to a pressurized system.

17. The integrated sensor and service port device of claim 10 , wherein the housing comprises brass.

18. The integrated sensor and service port device of claim 10 , wherein the sensor is a pressure sensor.

19. The integrated sensor and service port device of claim 10 , further comprising a communication connection coupled to the sensor, the communication connection adapted to communicate readings of the sensor outside of the device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2020
From: CRUZ, MARIO A.; HARLAND, CHARLES PETER; PFEIFLE, MAXIMILIAN ALEXANDER
To: WATSCO VENTURES LLC
Reel/Frame 054211/0495 →
Continuity (3)
Continuation In Part 16273205 · Feb 12, 2019
Provisional Application 62629479 · Feb 12, 2018
Related Publication 20210010731A1 · Jan 14, 2021