IP Library Granted Patent US 9,247,623
Granted Patent B2
US 9,247,623 · App. 13/247,620 · Granted Jan 26, 2016

Switch sensing emergency lighting power supply

Inventors: Michael V. Recker (Gaithersburgh, MD); David B. Levine (Pepper Pike, OH)
Assignee: Wireless Environment, LLC
H05B37/03H05B33/0803H05B33/0854H05B37/0272F21S9/022F21V23/0442F21W2111/027F21Y2101/02Y02B20/383Y10S362/806
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Quick Facts
Patent No.
US 9,247,623
App. No.
13/247,620
Granted
Jan 26, 2016
Kind
B2
Abstract

In embodiments of the present invention improved capabilities are described for systems and methods that employ a control component and/or power source integrated in an LED based light source to control and/or power the LED light source wirelessly. In embodiments, the LED based light source may take the form of a standard light bulb that plugs into a standard lighting socket or fixture.

Claims (37)

1. A lighting power supply comprising:

a power input adapted to receive power via a power supply circuit, wherein the power supply circuit is adapted to receive a supply of power from a primary source of power through a switch and includes a secondary source of power;

a power output configured to condition power from the secondary source of power for at least one light emitting diode (LED), the power output comprising one or more of an uninterruptable power source inverter, a battery backup power supply, and a LED driver;

an impedance sensor configured to generate an output indicative of an impedance, resistance or capacitance associated with the power supply circuit; and

a controller configured to:

determine an operational state of the switch based on a comparison of one or more measurements of the output of the impedance sensor and a threshold impedance, wherein the threshold impedance is established by the controller; and

cause the power from the secondary source of power to be supplied to the at least one LED when power from the primary source is not present on the power input and the determined operational state of the switch indicates that the switch is in a closed state.

2. The lighting power supply of claim 1 , wherein the threshold impedance is set manually.

3. The lighting power supply of claim 1 , wherein establishing the threshold impedance level further includes dynamically setting the threshold impedance value according to at least one measurement relating to the operational state of the switch.

4. The lighting power supply of claim 1 , wherein the impedance sensor generates the output indicative of an impedance associated with the power supply circuit as part of a time domain reflectometry process.

5. The lighting power supply of claim 1 , wherein the secondary source of power includes a DC power source.

6. The lighting power supply of claim 5 , wherein the DC power source includes at least one of a rechargeable battery, a non-rechargeable battery, a photovoltaic cell, fuel cell, or super capacitor.

7. The lighting power supply of claim 5 , wherein DC power from the DC power source is converted to AC power to supply power to the at least one LED.

8. The lighting power supply of claim 1 , wherein the at least one LED is adapted to receive power via the power input.

9. The lighting power supply of claim 1 , wherein the lighting power supply provides power to a bulb, tube, lamp, lighting fixture, or retrofit fixture.

10. A switch sensing power supply comprising:

a power input adapted to receive power via a power supply circuit, wherein the power supply circuit is adapted to receive power from a primary source of power through a switch and includes a secondary source of power;

a power output configured to condition power from the secondary source of power for a device attached to the switch sensing power supply, the power output comprising one or more of an uninterruptable power source inverter, an adapter, a ballast, a battery backup power supply, and a light emitting diode (LED) driver;

a housing configured for connecting to the power input and to the device;

a sensor configured to generate an output indicative of an impedance, resistance or capacitance associated with the power supply circuit; and

a controller configured to:

determine an operational state of the switch based on a comparison of one or more measurements of the output of the sensor and a threshold impedance, wherein the threshold impedance is established by the controller; and

cause the power from the secondary source of power to be supplied to the device when power from the primary source is not present on the power input and the determined operational state of the switch indicates that the switch is in a closed state.

11. The switch sensing power supply of claim 10 , wherein the device is a light source.

12. The switch sensing power supply of claim 10 , wherein the threshold impedance is set one of manually or dynamically.

13. The switch sensing power supply of claim 10 , wherein the secondary source of power includes at least one of a rechargeable, a non-rechargeable battery, a photovoltaic cell, fuel cell, or super capacitor.

14. The switch sensing power supply of claim 10 , wherein the controller is further configured to control charging of the at least one rechargeable battery, fuel cell, or super capacitor.

15. A lighting adapter comprising:

a first connector configured to connect the adapter to a power supply circuit and a second connector configured to connect a lighting device to the adapter, wherein the first connector is configured for mounting to a first Edison socket, and the second connector includes a second Edison socket;

a power input configured to receive power via the power supply circuit through the first connector, wherein the power supply circuit is configured to receive a power from a primary source of power through a switch and includes a secondary source of power;

a power source inverter configured to condition power from the secondary source of power for the lighting device;

a sensor configured to sense an impedance, resistance or capacitance associated with the power supply circuit through the first connector and generate an output indicative of the sensed impedance, resistance or capacitance; and

a controller configured to:

determine an operational state of the switch based on a comparison of one or more generated outputs of the sensor and a threshold impedance, wherein the threshold impedance is established by the controller; and

cause power from the secondary source of power to be supplied to the lighting device when power from the primary source is not present on the power input and the determined operational state of the switch indicates that the switch is in a closed state, wherein the secondary source includes a battery, and the power source inverter is used to supply power to the lighting device.

16. The lighting adapter of claim 15 , wherein the lighting device comprises of a bulb, tube, lamp, lighting fixture, or retrofit fixture.

17. The lighting adapter of claim 15 , further comprising a relay configured to switch between the primary source of power and the secondary source of power to supply power to the lighting device.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2024
From: A9.COM, INC.
To: AMAZON TECHNOLOGIES, INC.
Reel/Frame 069114/0709 →
BILL OF SALE Recorded Dec 10, 2018
From: RING LLC
To: A9 COM, INC.
Reel/Frame 048695/0493 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: WIRELESS ENVIRONMENT, LLC
To: RING LLC
Reel/Frame 048737/0379 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME 042227/0832 Recorded Oct 10, 2017
From: CITIZENS BANK NATIONAL ASSOCIATION, SECURED PARTY
To: WIRELESS ENVIRONMENT, LLC
Reel/Frame 044166/0789 →
SECURITY AGREEMENT Recorded Apr 10, 2017
From: WIRELESS ENVIRONMENT, LLC
To: CITIZENS BANK, N. A.
Reel/Frame 042227/0832 →
Continuity (14)
Continuation 13231822 · Sep 13, 2011
Continuation 12626640 · Nov 26, 2009
Continuation In Part 11847509 · Aug 30, 2007
Continuation In Part 11692075 · Mar 27, 2007
Provisional Application 61118245 · Nov 26, 2008
Provisional Application 61118257 · Nov 26, 2008
Provisional Application 61150477 · Feb 6, 2009
Provisional Application 61167556 · Apr 8, 2009
Provisional Application 61167655 · Apr 8, 2009
Provisional Application 61186097 · Jun 11, 2009
Provisional Application 61234024 · Aug 14, 2009
Provisional Application 61246362 · Sep 28, 2009
Provisional Application 60786636 · Mar 28, 2006
Related Publication 20130063027A1 · Mar 14, 2013