IP Library › Granted Patent US 12,270,407
Granted Patent B2
US 12,270,407 · App. 17/773,386 · Granted Apr 8, 2025

Fan speed and light state detection for ceiling fans

Inventors: Michael Dennis Tetreault (Simsbury, CT); Nicholas Charles Kraus (Enfield, CT)
Assignee: Hubbell Incorporated
F04D25/088F04D25/06H02P23/14H05B47/14
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Quick Facts
Patent No.
US 12,270,407
App. No.
17/773,386
Granted
Apr 8, 2025
Kind
B2
Abstract

A fan controller for a ceiling fan is provided. The fan controller includes one or more switching devices configured to selectively couple the ceiling fan to a power source. The fan controller further includes a power meter circuit and one or more control devices. The one or more control devices are configured to obtain, via the power meter circuit, data indicative of power consumption of a fan motor of the ceiling. The one or more control devices are configured to determine the fan motor is configured in a first mode of a plurality of modes for the fan motor based, at least in part, on the data indicative of power consumption. The one or more control devices are configured to provide a notification to manipulate an input device on the ceiling fan to switch the fan motor from the first mode to a second mode of the plurality of modes.

Claims (62)

1. A fan controller for a ceiling fan, the fan controller comprising:

one or more switching devices configured to selectively couple the ceiling fan to a power source;

a power meter circuit; and

one or more control devices configured to:

obtain, via the power meter circuit, data indicative of power consumption of a fan motor of the ceiling fan;

determine the fan motor is configured in a first mode of a plurality of modes for the fan motor based, at least in part, on the data indicative of power consumption; and

in response to determining the fan motor is configured in the first mode, provide a notification to manipulate an input device physically located on the ceiling fan to switch the fan motor from the first mode to a second mode of the plurality of modes.

2. The fan controller of claim 1 , wherein:

when the fan motor is configured in the first mode, the fan motor is decoupled from the power source; and

when the fan motor is configured in the second mode, the fan motor is coupled to the power source.

3. The fan controller of claim 1 , wherein:

when the fan motor is configured in the first mode, the fan motor rotates fan blades of the ceiling fan at a first speed; and

when the fan motor is configured in the second mode, the fan motor rotates fan blades of the ceiling fan at a second speed that is faster than the first speed.

4. The fan controller of claim 1 , wherein the one or more control devices are further configured to:

obtain, via the power meter circuit, data indicative of power consumption of a light source of the ceiling fan;

determine the light source is configured in a first mode of a plurality of modes for the light source based, at least in part, on the data indicative of power consumption; and

in response to determining the light source is configured in the first mode of the plurality of modes for the light source, provide a notification to manipulate an input device physically located on the ceiling fan to switch the light source from the first mode of the plurality of modes for the light source to a second mode of the plurality of modes for the light source.

5. The fan controller of claim 4 , wherein:

when the light source is configured in the first mode, the light source is decoupled from the power source; and

when the light source is configured in the second mode, the light source is coupled to the power source.

6. The fan controller of claim 4 , wherein:

when the light source is configured in the first mode, the light source is coupled to the power source such that the light source emits light; and

when the light source is configured in the second mode, the light source is coupled to the power source such that the light source emits light that is brighter than the light the light source emits when configured in the first mode.

7. The fan controller of claim 1 , wherein the one or more control devices are configured to provide the notification to a remote device via a communication interface of the fan controller.

8. The fan controller of claim 1 , wherein the notification comprises at least one of an audible notification and a visual notification.

9. A fan system, comprising:

a ceiling fan comprising an input device and a fan motor, the fan motor configurable in a plurality of modes; and

a fan controller configured to control power delivery to the ceiling fan, the fan controller comprising:

one or more switching devices configured to selectively couple the ceiling fan to a power source;

a power meter circuit; and

one or more control devices configured to:

obtain, via the power meter circuit, data indicative of power consumption of the fan motor;

determine the fan motor is configured in a first mode of a plurality of modes based, at least in part, on the data indicative of power consumption; and

provide a notification to manipulate the input device of the ceiling fan to switch the fan motor from the first mode to a second mode of the plurality of modes.

10. The fan system of claim 9 , wherein input device comprises a pull-chain switch.

11. The fan system of claim 9 , wherein:

when the fan motor is configured in the first mode, the fan motor is decoupled from the power source; and

when the fan motor is configured in the second mode, the fan motor is coupled to the power source such that the fan motor rotates fan blades of the ceiling fan.

12. The fan system of claim 9 , wherein:

when the fan motor is configured in the first mode, the fan motor is coupled to the power source such that the fan motor rotates fan blades of the ceiling fan at a first speed; and

when the fan motor is configured in the second mode, the fan motor is coupled to the power source such that the fan motor rotates fan blades of the ceiling fan at a second speed that is faster than the first speed.

13. The fan system of claim 9 , wherein the ceiling fan further comprises a light source.

14. The fan system of claim 13 , wherein the one or more control devices are further configured to:

obtain, via the power meter circuit, data indicative of power consumption of the light source;

determine the light source is configured in the first mode of the plurality of modes based, at least in part, on the data indicative of power consumption; and

provide a notification to manipulate the input device of the ceiling fan to switch the light source from the first mode to a second mode of the plurality of modes.

15. The fan system of claim 14 , wherein:

when the light source is configured in the first mode, the light source is decoupled from the power source; and

when the light source is configured in the second mode, the light source is coupled to the power source.

16. The fan system of claim 14 , wherein:

when the light source is configured in the first mode, the light source is coupled to the power source such that the light source emits light; and

when the light source is configured in the second mode, the light source is coupled to the power source such that the light source emits light that is brighter than the light the light source emits when configured in the first mode.

17. The fan system of claim 9 , wherein the one or more control devices are configured to provide the notification to a remote device via a communication interface of the fan controller.

18. The fan system of claim 9 , wherein the notification comprises at least one of an audible notification and a visual notification.

19. A method of controlling a ceiling fan comprising:

obtaining, via a fan controller, data indicative of a user input to configure an electrical load of a ceiling fan in one of a plurality of requested modes;

obtaining, via a power meter circuit, data indicative of power consumption of the electrical load;

determining a current mode of the electrical load based, at least in part, on the data indicative of power consumption;

determining whether the current mode of the electrical load is different than the requested mode associated with the user input;

determining whether the current mode of the electrical load precludes the fan controller from switching the electrical load to the requested mode associated with the user input; and

providing a notification to manipulate one or more input devices physically located on the ceiling fan to switch the fan motor from the current mode to a second mode of the plurality of modes that allows the fan controller to switch the electrical load from the current mode to the requested mode if the fan controller is precluded from switching the electrical load to the requested mode.

20. The method of claim 19 , wherein the electrical load is a fan motor and the one or more input devices physically located on the ceiling fan is a pull-chain switch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2025
From: TETREAULT, MICHAEL DENNIS
To: HUBBELL INCORPORATED
Reel/Frame 070218/0185 →
Continuity (2)
Provisional Application 62928419 · Oct 31, 2019
Related Publication 20230065003A1 · Mar 2, 2023
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