Underwater light having programmable controller and replaceable light-emitting diode (LED) assembly
US-11168876-B2 · Nov 9, 2021 · US
US11754268B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11754268-B2 |
| Application number | US-202117522700-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 9, 2021 |
| Priority date | Mar 6, 2019 |
| Publication date | Sep 12, 2023 |
| Grant date | Sep 12, 2023 |
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Official abstract text for this publication.
An underwater light including a programmable controller and a replaceable light-emitting diode (LED) printed circuit board assembly (PCBA) is provided. The light includes a controller PCBA in communication with the LED PCBA, and a connector for connecting the controller PCBA to the LED PCBA. An optically-transparent potting compound encapsulates the LED PCBA, and the LED PCBA can be safely replaced by removing a rear housing of the underwater light.
Opening claim text (preview).
What is claimed is: 1. An underwater light, comprising: a controller printed circuit board assembly (PCBA), including: a microcontroller subsystem including a microcontroller, a light-emitting diode (LED) driver subsystem in communication with the microcontroller subsystem, the LED driver subsystem receiving pulse-width modulated (PWM) signals from the microcontroller subsystem and being controlled by the PWM signals, and a power subsystem providing power to the microcontroller subsystem and the LED driver subsystem; an LED printed circuit board assembly (PCBA) in communication with the controller PCBA, the LED PCBA including a plurality of LED strings in communication with and driven by the LED driver subsystem; and a connector connecting the controller PCBA to the LED PCBA, the connector establishing bidirectional communication between the controller PCBA and the LED PCBA and communicating LED drive signals between the LED driver subsystem and the plurality of LED strings. 2. The underwater light of claim 1 , wherein the controller PCBA further includes a thermistor in communication with the microcontroller subsystem, the thermistor measuring a temperature of the controller PCBA and communicating a controller PCBA temperature signal to the microcontroller subsystem, the microcontroller subsystem controlling operation of the LED driver subsystem in response to the controller PCBA temperature signal. 3. The underwater light of claim 2 , wherein the microcontroller subsystem controls operation of the LED driver subsystem to reduce a light output of the plurality of LED strings when the controller PCBA temperature signal exceeds a predetermined temperature threshold. 4. The underwater light of claim 1 , wherein the power subsystem includes a bridge rectifier providing a rectified voltage signal to the LED driver subsystem. 5. The underwater light of claim 1 , wherein the LED driver subsystem includes a plurality of buck regulators, each buck regulator being associated with a respective LED string of the plurality of LED strings. 6. The underwater light of claim 1 , wherein the plurality of LED strings include red, blue, green and white LEDs. 7. The underwater light of claim 1 , wherein the LED PCBA is encapsulated in an optically-transparent potting compound and is replaceable by removing a rear housing of the underwater light. 8. The underwater light of claim 1 , wherein the LED PCBA further includes a plurality of thermistors in communication with the microcontroller subsystem, the plurality of thermistors measuring temperatures of the plurality of LED strings and communicating a plurality of LED temperature signals to the microcontroller subsystem via the connector, the microcontroller subsystem controlling operation of the LED driver subsystem in response to the plurality of LED temperature signals. 9. The underwater light of claim 8 , wherein the microcontroller subsystem controls the operation of the LED driver subsystem to reduce a light output of the plurality of LED strings when the plurality of LED temperature signals exceed a predetermined temperature threshold. 10. The underwater light of claim 1 , wherein the LED PCBA further includes a programmable memory in communication with the microcontroller subsystem and powered by the power subsystem, the programmable memory storing a plurality of color table values for controlling colors of light emitted by the plurality of LED strings, the microcontroller subsystem reading the plurality of color table values from the programmable memory and controlling the LED driver subsystem in response to the plurality of color table values. 11. The underwater light of claim 1 , wherein the LED PCBA further includes a high- temperature shutdown circuit in communication with the microcontroller subsystem and powered by the power subsystem, the high-temperature shutdown circuit issuing a shutdown signal to the microcontroller subsystem via the connector in response to a temperature threshold of the LED PCBA being exceeded. 12. The underwater light of claim 1 , wherein the connector is a surface mount connector. 13. An underwater light, comprising: a controller printed circuit board assembly (PCBA) including a microcontroller, the microcontroller generating pulse-width modulated (PWM) signals; an LED printed circuit board assembly (PCBA) in communication with the controller PCBA, the LED PCBA being replaceable and including a plurality of LED strings in communication with and driven by the microcontroller; and a connector connecting the controller PCBA to the LED PCBA, the connector establishing bidirectional communication between the controller PCBA and the LED PCBA and communicating the PWM signals between the microcontroller and the plurality of LED strings. 14. The underwater light of claim 13 , wherein the controller PCBA further includes a thermistor in communication with the microcontroller, the thermistor measuring a temperature of the controller PCBA and communicating a controller PCBA temperature signal to the microcontroller, the microcontroller reducing a light output of the plurality of LED strings when the controller PCBA temperature signal exceeds a predetermined threshold. 15. The underwater light of claim 13 , further including a plurality of buck regulators, each buck regulator being associated with a respective LED string of the plurality of LED strings. 16. The underwater light of claim 13 , wherein LEDs of the plurality of LED strings include red, blue, green and white LEDs. 17. The underwater light of claim 13 , wherein the LED PCBA is encapsulated in an optically-transparent potting compound and is replaceable by removing a rear housing of the underwater light. 18. The underwater light of claim 13 , wherein the LED PCBA further includes a plurality of thermistors in communication with the microcontroller, the plurality of thermistors measuring temperatures of the plurality of LED strings and communicating a plurality of LED temperature signals to the microcontroller via the connector, the microcontroller reducing, based on the communicated plurality of LED temperature signals, a light output of the plurality of LED strings when the plurality of LED temperature signals exceed a predetermined threshold. 19. The underwater light of claim 13 , wherein the LED PCBA further includes a memory in communication with the microcontroller, the memory storing a plurality of color table values for controlling colors of light emitted by the plurality of LED strings, the microcontroller controlling the plurality of LED strings based on the plurality of color table values read from the memory. 20. The underwater light of claim 13 , wherein the LED PCBA further includes a shutdown circuit in communication with the microcontroller, the shutdown circuit issuing a shutdown signal to the microcontroller via the connector in response to a threshold of the LED PCBA being exceeded.
using temperature feedback · CPC title
the substrate is supporting also the light source · CPC title
Power factor correction [PFC]; Reactive power compensation · CPC title
using buck topology · CPC title
Linear regulators · CPC title
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