IP Library Granted Patent US 11,864,289
Granted Patent B2
US 11,864,289 · App. 17/568,646 · Granted Jan 2, 2024

Light driver system with modular controller board

Inventors: Vachik Javadian (Glendale, CA); Steven C. Krattiger (Northridge, CA)
Assignee: ERP POWER, LLC
H05B45/355H05B45/10H05B45/12H05B45/3725H05B47/105H05B47/19
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,864,289
App. No.
17/568,646
Granted
Jan 2, 2024
Kind
B2
Abstract

A light driver includes a converter configured to generate a drive signal for powering a light source based on a control signal, a modular controller board electrically coupled to a sensor board and configured to receive sensor data from the sensor board and to generate a first sensor control signal corresponding to the sensor data, and a primary controller configured to control the converter by generating the control signal based on the first sensor control signal.

Claims (54)

1. A light driver comprising:

a converter configured to generate a drive signal for powering a light source based on a control signal;

a modular controller board electrically coupled to a sensor board and configured to receive sensor data from the sensor board and to generate a first sensor control signal and a second sensor control signal corresponding to the sensor data;

a primary controller configured to control the converter by generating the control signal based on the first sensor control signal; and

an intensity controller configured to control at least one of a light intensity of the light source or a color shade of the light source in response to the second sensor control signal.

2. The light driver of claim 1 , further comprising:

a rectifier configured to rectify an input signal to generate a rectified signal having a single polarity,

wherein the converter is further configured to generate the drive signal based on the rectified signal.

3. The light driver of claim 1 , wherein the primary controller includes a power factor correction (PFC) controller configured to regulate a DC-level voltage of the drive signal by generating the control signal.

4. The light driver of claim 1 , further comprising:

a main board on which the converter and the primary controller are positioned,

wherein the modular controller board is physically stacked on top of, or is perpendicularly connected to, the main board, and

wherein the modular controller board is electrically connected to the main board.

5. The light driver of claim 1 , wherein the modular controller board comprises:

a processor configured to process the sensor data and to control operation of the light source by generating the first sensor control signal based on the sensor data.

6. The light driver of claim 5 , wherein the modular controller board comprises:

a wireless module configured to wirelessly receive an external command from an external controller, and to relay the external command to the processor for processing, and

wherein the processor is further configured to generate the first sensor control signal further based on the external command.

7. The light driver of claim 6 , wherein the external controller comprises a wireless wall dimmer, and

wherein the external command comprises a dimmer setting.

8. The light driver of claim 6 , wherein the external controller includes a mobile device configured to execute a user control application that issues the external command in response to a user input.

9. The light driver of claim 1 , wherein the modular controller board is coupled to the sensor board through a wired connection comprising a plurality of wires that are ground shielded.

10. The light driver of claim 2 , wherein the converter is a DC-DC converter, the rectifier is a bridge rectifier, and the input signal is an alternating-current (AC) signal.

11. A light driver comprising:

a converter configured to generate a drive signal for powering a light source based on a control signal;

a modular controller board electrically coupled to a sensor board and configured to receive sensor data from the sensor board and to generate a first sensor control signal corresponding to the sensor data; and

a primary controller configured to control the converter by generating the control signal based on the first sensor control signal,

wherein the converter comprises:

a transformer comprising a primary winding, a first secondary winding electrically coupled to the light source, and a second secondary winding electrically coupled to the sensor board, and

wherein the converter is configured to supply the drive signal to the light source through the first secondary winding, and to supply electrical power to the sensor board through the second secondary winding.

12. A lighting system node comprising:

a sensor board comprising a sensor configured to sense a parameter from the environment and to generate sense data; and

a light driver comprising:

a converter configured to generate a drive signal for powering a light source based on a control signal;

a modular controller board electrically coupled to the sensor board and configured to receive sensor data from the sensor board and to generate a first sensor control signal and a second sensor control signal corresponding to the sensor data;

a primary controller configured to control the converter by generating the control signal based on the first sensor control signal; and

an intensity controller configured to control at least one of a light intensity of the light source or a color shade of the light source in response to the second sensor control signal.

13. The lighting system node of claim 12 , wherein the converter comprises:

a transformer comprising a primary winding, a first secondary winding electrically coupled to the light source, and a second secondary winding electrically coupled to the sensor board,

wherein the converter is configured to supply the drive signal to the light source through the first secondary winding, and to supply electrical power to the sensor board through the second secondary winding.

14. The lighting system node of claim 12 , wherein the light driver further comprises:

a rectifier configured to rectify an input signal to generate a rectified signal having a single polarity,

wherein the converter is further configured to generate the drive signal based on the rectified signal.

15. The lighting system node of claim 12 , wherein the modular controller board comprises:

a processor configured to process the sensor data and to control operation of the light source by generating the first sensor control signal based on the sensor data; and

a wireless module configured to wirelessly receive an external command from an external controller, and to relay the external command to the processor for processing, and

wherein the processor is further configured to generate the first sensor control signal further based on the external command.

16. The lighting system node of claim 12 , wherein the light driver further comprises:

a main board on which the converter and the primary controller are positioned,

wherein the modular controller board is physically stacked on top of, or is perpendicularly connected to, the main board, and

wherein the modular controller board being electrically connected to the main board.

17. The lighting system node of claim 15 , wherein the external controller includes a mobile device configured to execute a user control application that issues the external command in response to a user input.

18. The lighting system node of claim 15 , wherein the external controller comprises a wireless wall dimmer, and

wherein the external command comprises a dimmer setting.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2022
From: JAVADIAN, VACHIK; KRATTIGER, STEVEN C.
To: ERP POWER, LLC
Reel/Frame 058663/0247 →
Continuity (3)
Provisional Application 63152745 · Feb 23, 2021
Provisional Application 63152743 · Feb 23, 2021
Related Publication 20220272809A1 · Aug 25, 2022