IP Library Granted Patent US 12,359,842
Granted Patent B2
US 12,359,842 · App. 18/439,574 · Granted Jul 15, 2025

Condenser fan rotation restriction system

Inventors: Gnanesh Suvvada (Vizianagaram, IN); Manjur Tamboli (Norman, OK); Naushad Parapurath Monangat (Pune, IN); Pavankumar Ramchandra Toraskar (Sangli, IN)
Assignee: Johnson Controls Light Commercial IP GmbH
F24F13/1426F24F11/30F24F13/30F24F2140/40
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Quick Facts
Patent No.
US 12,359,842
App. No.
18/439,574
Granted
Jul 15, 2025
Kind
B2
Abstract

A condenser fan assembly includes a first condenser fan and a first motor coupled to the first condenser fan via a first shaft, where the first motor is configured to drive rotation of the first condenser fan via the first shaft, and a second condenser fan and a second motor coupled to the second condenser fan via a second shaft, where the second motor is configured to drive rotation of the second condenser fan via the second shaft. The condenser fan assembly also includes a fan rotation restrictor configured to selectively block and enable rotation of the first shaft.

Claims (15)

1. A condenser fan assembly, comprising:

a fan shroud configured to couple to a condenser to define a chamber between the condenser and the fan shroud, wherein the fan shroud comprises a first passage and a second passage formed therein;

a first condenser fan and a first motor coupled to the first condenser fan, wherein the first motor is configured to drive rotation of the first condenser fan to discharge air from the chamber via the first passage;

a second condenser fan and a second motor coupled to the second condenser fan, wherein the second motor is configured to drive rotation of the second condenser fan to discharge air from the chamber via the second passage; and

a damper assembly coupled to the fan shroud, wherein the damper assembly is disposed about and aligned with the first passage and is disposed external to the chamber, the damper assembly comprises a plurality of blades configured to transition between an open configuration and a closed configuration based on an operating state of the first condenser fan, the plurality of blades occludes the first passage in the closed configuration, and the plurality of blades exposes the first passage in the open configuration.

2. The condenser fan assembly of claim 1 , comprising an additional damper assembly coupled to the fan shroud, wherein the additional damper assembly is disposed about and aligned with the second passage and is disposed external to the chamber, the additional damper assembly comprises an additional plurality of blades configured to transition between an additional open configuration and an additional closed configuration based on an additional operating state of the second condenser fan, the additional plurality of blades occludes the second passage in the additional closed configuration, and the additional plurality of blades exposes the second passage in the additional open configuration.

3. The condenser fan assembly of claim 2 , comprising:

a first actuator of the damper assembly, wherein the first actuator is configured to transition the plurality of blades between the open configuration and the closed configuration; and

a second actuator of the additional damper assembly, wherein the second actuator is configured to transition the additional plurality of blades between the additional open configuration and the additional closed configuration.

4. The condenser fan assembly of claim 3 , comprising a controller communicatively coupled to the first actuator and the second actuator, wherein the controller configured to control operation of the first actuator and the second actuator independently of one another, control operation of the first actuator based on the operating state of the first condenser fan, and control operation of the second actuator based on the additional operating state of the second condenser fan.

5. The condenser fan assembly of claim 4 , wherein the controller comprises an interlock configured to coordinate operation of the first actuator and the first condenser fan, and the controller is configured to instruct the first actuator to operate the damper assembly based on a determination by the interlock that the first condenser fan is in an active operating state.

6. The condenser fan assembly of claim 1 , wherein the damper assembly is a backdraft damper configured to transition from the open configuration to the closed configuration via force of gravity.

7. The condenser fan assembly of claim 1 , wherein the plurality of blades is configured to transition to the open configuration in response to a pressure differential across the plurality of blades.

8. The condenser fan assembly of claim 1 , wherein the damper assembly comprises an actuator configured to transition the plurality of blades between the open configuration and the closed configuration.

9. The condenser fan assembly of claim 1 , comprising a controller configured to operate the second motor to drive rotation of the second condenser fan with the plurality of blades in the closed configuration.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2025
From: JOHNSON CONTROLS TECHNOLOGY COMPANY
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 072298/0096 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2025
From: TYCO FIRE & SECURITY GMBH
To: JOHNSON CONTROLS LIGHT COMMERCIAL IP GMBH
Reel/Frame 070179/0435 →
Priority Claims (1)
IN 202011019599 · May 8, 2020 · national
Continuity (2)
Division 17308645 · May 5, 2021
Related Publication 20240183571A1 · Jun 6, 2024
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