Reconfigurable LED array and use in lighting system
View Patent ↗A light-emitting device capable of being powered by an AC power supply or an unregulated DC power supply is disclosed. The light-emitting device, in an aspect, is coupled to a controller, a light-emitting diode (“LED”) array, and a power supply, wherein the power supply can be an AC power source or an unregulated DC power source. While the power supply provides electrical power, the controller generates various LED control signals in response to power fluctuation of the electrical power. The LED array allows at least a portion of LEDs to be activated in accordance with the logic states of the LED control signals.
1. A light-emitting device, comprising:
first and second power terminals;
an array of LED based light sources comprising a plurality of sections connected in series, including a first section, a last section, each section comprising an LED, said first section comprising first and second switches, said first switch connecting a first terminal of said LED in that section to a first power rail, said second switch connecting a second terminal of said LED to a second power rail, said last section comprises first and second switches, said first switch connecting one terminal of said LED to said first power rail and said second switch connecting said first terminal of said LED to a second terminal of an LED in an adjacent section; and
a controller that controls said switches in response to a time-varying potential difference between said first and second power terminals.
2. The light-emitting device of claim 1 further comprising one or more intermediate sections,
each intermediate section comprising an LED and a plurality of switches, said intermediate sections comprising first, second, and third switches, said first switch connecting a first terminal of said LED in that section to said first power terminal, said second switch connecting a second terminal of said LED to said second power terminal, and said third switch interrupting a serial connection between said LED and an LED in an adjacent section.
3. The light-emitting device of claim 1 wherein each configuration is characterized by a number of LEDs that are connected in series across said first and second power terminals and wherein said controller sets said switches such that said number of LEDs is matched to said potential difference.
4. The light-emitting device of claim 1 wherein said controller sets said switches to maximize total light output from said array as said potential difference varies with time.