IP Library Granted Patent US 12,547,854
Granted Patent B2
US 12,547,854 · App. 18/761,788 · Granted Feb 10, 2026

Location-based configuration of a load control device

Inventor: Dragan Veskovic (Allentown, PA)
Assignee: Lutron Technology Company LLC
H05B45/10G06K7/10297H05B47/10H05B47/18H05B47/185H05B47/199H05B47/183
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Quick Facts
Patent No.
US 12,547,854
App. No.
18/761,788
Granted
Feb 10, 2026
Kind
B2
Abstract

A method of automatically programming a new load control device that replaces an old load control device takes advantage of a remote identification tag (e.g., an RFID tag) located in the vicinity of the old device. The remote identification tag stores an identifier that is representative of a location in which the old device is installed. The method includes the steps of: (1) storing a setting of an old device in a memory of a controller; (2) associating the setting with the identifier of the old device in the memory of the controller; (3) the new device retrieving the identifier from the remote identification tag after the new device is installed in the location of the old device; (4) the new device transmitting the identifier to the controller; and (5) the controller transmitting the setting of the old device to the new device in response to receiving the identifier.

Claims (48)

1 . A system controller comprising:

communication interface circuitry;

memory circuitry;

controller circuitry coupled to the communication interface circuitry and to the memory circuitry, the controller circuitry to:

cause a broadcast, via the communication interface circuitry, of a query to each of a plurality of electric load devices communicatively coupled to the controller circuitry;

receive a response from each of the plurality of electric load devices; and

for each response received from respective ones of the plurality of electric load devices:

determine whether the response includes a location identifier associated with the respective electric load device;

responsive to the determination that the response includes the location identifier associated with the respective electric load device:

retrieve, from a data structure stored in the memory circuitry, a short address associated with the received location identifier; and

retrieve, from the data structure, one or more configuration parameters associated with the received location identifier; and

cause a communication of the retrieved short address and the one or more configuration parameters to the respective electric load device.

2 . The system controller of claim 1 wherein to determine whether the response includes the location identifier associated with the respective electric load device, the controller circuitry to further:

determine whether the response includes radio frequency identification (RFID) information associated with the respective electric load device.

3 . The system controller of claim 1 wherein to broadcast the query to each of the plurality of communicatively coupled electric load devices, the controller circuitry to further:

broadcast the query to each of a plurality of communicatively coupled lighting devices.

4 . The system controller of claim 3 wherein to retrieve the one or more configuration parameters associated with the received location information from the memory circuitry, the system controller to further:

retrieve at least one of: a high-end trim, a low-end trim, a preset intensity, or a fade time.

5 . An electric load control method, comprising:

causing, by load controller circuitry, a broadcast via the communication interface circuitry of a query to each of a plurality of electric load devices communicatively coupled to the controller circuitry;

receiving, by the load controller circuitry, a response from each of the plurality of electric load devices; and

for each response received from respective ones of the plurality of electric load devices:

determining, by the load controller circuitry, whether the response includes a location identifier associated with the respective electric load device;

responsive to the determination that the response includes the location identifier associated with the respective electric load device:

retrieving, by the load controller circuitry, from a data structure stored in the memory circuitry, a short address associated with the received location identifier; and

retrieving, by the load controller circuitry, from the data structure, one or more configuration parameters associated with the received location identifier; and

causing, by the load contoller circuitry, a communication of the retrieved short address and the one or more configuration parameters to the respective electric load device.

6 . The method of claim 5 wherein determining whether the response includes the location identifier associated with the respective electric load device further comprises:

determining, by the load controller circuitry, whether the response includes radio frequency identification (RFID) information associated with the respective electric load device.

7 . The method of claim 5 wherein causing the broadcast of the query to each of the plurality of communicatively coupled electric load devices further comprises:

causing, by the load controller circuitry, the broadcast of the query to each of a plurality of communicatively coupled lighting devices.

8 . The method of claim 7 wherein retrieving the one or more configuration parameters associated with the received location information from the memory circuitry further comprises:

retrieving, by the load controller circuitry, at least one of: a high-end trim, a low-end trim, a preset intensity, or a fade time from the memory circuitry.

9 . A non-transitory, machine-readable, storage device that includes instructions that, when executed by load controller circuitry, cause the load controller circuitry to:

cause a broadcast via the communication interface circuitry of a query to each of a plurality of electric load devices communicatively coupled to the controller circuitry;

receive a response from each of the plurality of electric load devices; and

for each response received from respective ones of the plurality of electric load devices:

determine whether the response includes a location identifier associated with the respective electric load device;

responsive to the determination that the response includes the location identifier associated with the respective electric load device:

retrieve from a data structure stored in the memory circuitry, a short address associated with the received location identifier; and

retrieve from the data structure, one or more configuration parameters associated with the received location identifier; and

cause a communication of the retrieved short address and the one or more configuration parameters to the respective electric load device.

10 . The non-transitory, machine-readable, storage device of claim 9 wherein the instructions that cause the load controller circuitry to determine whether the response includes the location identifier associated with the respective electric load device further cause the load controller circuitry to:

determine whether the response includes radio frequency identification (RFID) information associated with the respective electric load device.

11 . The non-transitory, machine-readable, storage device of claim 9 wherein the instructions that cause the load controller circuitry to cause the broadcast of the query to each of the plurality of communicatively coupled electric load devices further cause the load controller circuitry to:

cause the broadcast of the query to each of a plurality of communicatively coupled lighting devices.

12 . The non-transitory, machine-readable, storage device of claim 11 wherein the instructions that cause the load controller circuitry to retrieve the one or more configuration parameters associated with the received location information from the memory circuitry further cause the load controller circuitry to:

retrieve at least one of: a high-end trim, a low-end trim, a preset intensity, or a fade time from the memory circuitry.

Continuity (10)
Continuation 18182689 · Mar 13, 2023
Continuation 17699532 · Mar 21, 2022
Continuation 17061712 · Oct 2, 2020
Continuation 16556344 · Aug 30, 2019
Continuation 15959355 · Apr 23, 2018
Continuation 15332395 · Oct 24, 2016
Continuation 14274109 · May 9, 2014
Continuation 12718273 · Mar 5, 2010
Provisional Application 61162018 · Mar 20, 2009
Related Publication 20240357724A1 · Oct 24, 2024
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