IP Library Granted Patent US 9,651,243
Granted Patent B1
US 9,651,243 · App. 15/195,357 · Granted May 16, 2017

Multi-purpose lightbulb

Inventor: Shaun Springer (Brooklyn, NY)
Assignee: ASTRO, INC.
F21V33/0056F21K9/232F21K9/238F21V3/02F21V19/006F21V23/04F21V29/74F21V29/80H04W4/008H05B33/0809H05B33/0845H05B33/0857H05B37/0272F21Y2115/10H04R1/028H04W84/12
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Quick Facts
Patent No.
US 9,651,243
App. No.
15/195,357
Granted
May 16, 2017
Kind
B1
Abstract

A lighting device for use with one or more other networked devices is disclosed. In embodiments, the lighting device may comprise an outer globe, a diffuser, a plurality of light pipes, an outer cowling, a power input connector, a power control printed circuit board, a communication and control printed circuit board, an indicator printed circuit board, one or more microprocessors, an auxiliary device, and an LED lighting printed circuit board. In embodiments, the lighting device may communicate with one or more other networked devices, such as second lighting devices, mobile phones, servers, remote controls, and/or home or office automation equipment. The lighting device may be powered through a light socket.

Claims (80)

1. A lighting device for use with one or more other networked devices, comprising:

(a) an outer globe comprised of an at least partially transparent rigid material and forming the exterior of a head portion of the lighting device;

(b) a diffuser within the outer globe configured to receive light from one or more light sources and emit diffused light;

(c) a speaker comprising a speaker driver, the speaker mounted within the lighting device closer to the head of the lighting device than one or more printed circuit boards;

(d) an LED lighting printed circuit board comprising a plurality of LEDs configured to deliver light through the diffuser;

(e) an outer cowling forming the exterior of a base portion of the lighting device;

(f) a power input connector located at the base of the lighting device and configured to mate with a standard lightbulb socket;

(g) a power control printed circuit board within the lighting device operatively connected to the power input connector and disposed at least partially within a heat sink configured to dissipate heat, the power control printed circuit board comprising:

(i) a power converter configured to convert alternating current to direct current;

(ii) a voltage regulator configured to output steady direct current power at one or more voltages;

(iii) an LED driver configured to control output of power to a plurality of LEDs;

(iv) current control components comprising at least one output current controller configured to control the output of electric current to the one or more other components within the lighting device; and

(v) an output power connector configured to output power to one or more other components within the lighting device; and

(h) one or more printed circuit boards within the lighting device operatively connected to the power control printed circuit board and comprising:

(i) a first wireless communications module operatively connected to a first communications antenna and configured to communicate wirelessly with one or more mobile user devices;

(ii) a speaker control unit configured to control the speaker; and

(iii) one or more microprocessors operatively connected to first non-transitory computer-readable memory having stored thereon first processing instructions readable by at least one of the one or more microprocessors to control the plurality of LEDs.

2. The lighting device of claim 1 , wherein the speaker control unit comprises at least one of the one or more microprocessors, which is configured to control the speaker.

3. The lighting device of claim 1 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Wi-Fi protocol.

4. The lighting device of claim 1 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Bluetooth protocol.

5. The lighting device of claim 1 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Bluetooth Low Energy protocol.

6. The lighting device of claim 1 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a mesh network communications protocol.

7. The lighting device of claim 1 , wherein the other networked devices include a second lighting device comprising:

(a) a second outer globe comprised of an at least partially transparent rigid material and forming the exterior of a respective head portion of the second lighting device;

(b) a second diffuser within the second outer globe configured to receive light from one or more light sources and emit diffused light;

(c) a second speaker comprising a respective speaker driver, the second speaker mounted within the second lighting device closer to the head of the second lighting device than one or more second printed circuit boards;

(d) an LED lighting printed circuit board comprising a plurality of LEDs configured to deliver light through the diffuser;

(e) a second outer cowling forming the exterior of a respective base portion of the second lighting device;

(f) a second power input connector located at the base of the second lighting device and configured to mate with a standard lightbulb socket;

(g) a second power control printed circuit board within the second lighting device operatively connected to the second power input connector and disposed at least partially within a second heat sink configured to dissipate heat, the second power control printed circuit board comprising:

(i) a second power converter configured to convert alternating current to direct current;

(ii) a second voltage regulator configured to output steady direct current power at one or more voltages;

(iii) a second output power connector to output power to one or more other components within the second lighting device; and

(iv) a second output current controller configured to control the output of electric current to the one or more other components within the second lighting device; and

(h) one or more second printed circuit boards within the second lighting device operatively connected to the second power control printed circuit board and comprising:

(i) a second wireless communications module operatively connected to a second communications antenna and configured to communicate wirelessly with the one or more mobile user devices and the lighting device;

(ii) a second speaker control unit configured to control the second speaker; and

(iii) one or more second microprocessors operatively connected to second non-transitory computer-readable memory having stored thereon second processing instructions readable by at least one of the one or more second microprocessors to control the second plurality of LEDs.

8. The lighting device of claim 1 , wherein the one or more printed circuit boards further comprise a second wireless communications module.

9. The lighting device of claim 1 , wherein the first wireless communications module is located on a first printed circuit board and the speaker control unit is located on a second printed circuit board.

10. The lighting device of claim 9 , wherein the LED lighting printed circuit board, the first printed circuit board, and the second printed circuit board comprise a stacked circuit board configuration within the lighting device.

11. A lighting device for use with one or more other networked devices, comprising:

(a) an outer globe comprised of an at least partially transparent rigid material and forming the exterior of a head portion of the lighting device;

(b) a diffuser within the outer globe configured to receive light from one or more light sources and emit diffused light;

(c) a camera mounted within the lighting device closer to the head of the lighting device than one or more printed circuit boards;

(d) an LED lighting printed circuit board comprising a plurality of LEDs configured to deliver light through the diffuser;

(e) an outer cowling forming the exterior of a base portion of the lighting device;

(f) a power input connector located at the base of the lighting device and configured to mate with a standard lightbulb socket;

(g) a power control printed circuit board within the lighting device operatively connected to the power input connector and disposed at least partially within a heat sink configured to dissipate heat, the power control printed circuit board comprising:

(i) a power converter configured to convert alternating current to direct current;

(ii) a voltage regulator configured to output steady direct current power at one or more voltages;

(iii) an LED driver configured to control output of power to the plurality of LEDs;

(iv) current control components comprising at least one output current controller configured to control the output of electric current to the one or more other components within the lighting device; and

(v) an output power connector configured to output power to one or more other components within the lighting device; and

(h) one or more printed circuit boards within the lighting device operatively connected to the power control printed circuit board and comprising:

(i) a first wireless communications module operatively connected to a first communications antenna and configured to communicate wirelessly with one or more mobile user devices;

(ii) camera control circuitry configured to control a camera; and

(iii) one or more microprocessors operatively connected to first non-transitory computer-readable memory having stored thereon first processing instructions readable by at least one of the one or more microprocessors to control the plurality of LEDs.

12. The lighting device of claim 11 , wherein the camera control circuitry comprises at least one of the one or more microprocessors, which is configured to control the camera.

13. The lighting device of claim 11 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Wi-Fi protocol.

14. The lighting device of claim 11 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Bluetooth protocol.

15. The lighting device of claim 11 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a Bluetooth Low Energy protocol.

16. The lighting device of claim 11 , wherein the first wireless communications module is configured to communicate with one or more of the one or more other networked devices using a mesh network communications protocol.

17. The lighting device of claim 11 , wherein the other networked devices include a second lighting device comprising:

(a) a second outer globe comprised of an at least partially transparent rigid material and forming the exterior of a respective head portion of the second lighting device;

(b) a second diffuser within the second outer globe configured to receive light from one or more light sources and emit diffused light;

(c) an LED lighting printed circuit board comprising a plurality of LEDs configured to deliver light through the diffuser;

(d) a second outer cowling forming the exterior of a respective base portion of the second lighting device;

(e) a second power input connector located at the base of the second lighting device and configured to mate with a standard lightbulb socket;

(f) a second power control printed circuit board within the second lighting device operatively connected to the second power input connector and disposed at least partially within a second heat sink configured to dissipate heat, the second power control printed circuit board comprising:

(i) a second power converter configured to convert alternating current to direct current;

(ii) a second voltage regulator configured to output steady direct current power at one or more voltages;

(iii) a second output power connector to output power to one or more other components within the second lighting device; and

(iv) a second output current controller configured to control the output of electric current to the one or more other components within the second lighting device; and

(g) one or more second printed circuit boards within the second lighting device operatively connected to the second power control printed circuit board and comprising:

(i) a second wireless communications module operatively connected to a second communications antenna and configured to communicate wirelessly with the one or more mobile user devices and the lighting device; and

(ii) one or more second microprocessors operatively connected to second non-transitory computer-readable memory having stored thereon second processing instructions readable by at least one of the one or more second microprocessors to control the second plurality of LEDs.

18. The lighting device of claim 11 , wherein the one or more printed circuit boards further comprise a second wireless communications module.

19. The lighting device of claim 11 , wherein the first wireless communications module is located on a first printed circuit board and the camera control circuitry is located on a second printed circuit board.

20. The lighting device of claim 19 , wherein the LED lighting printed circuit board, the first printed circuit board, and the second printed circuit board comprise a stacked circuit board configuration within the lighting device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2017
From: SPRINGER, SHAUN
To: ASTRO, INC.
Reel/Frame 043489/0578 →
SECURITY INTEREST Recorded Oct 31, 2016
From: ASTRO, INC.
To: VENTURE LENDING & LEASING VII, INC.; VENTURE LENDING & LEASING VIII, INC.
Reel/Frame 040523/0607 →
Continuity (3)
Continuation 14805316 · Jul 21, 2015
Provisional Application 62027125 · Jul 21, 2014
Provisional Application 62183276 · Jun 23, 2015