IP Library Granted Patent US 11,674,682
Granted Patent B2
US 11,674,682 · App. 17/464,417 · Granted Jun 13, 2023

Elongated modular heatsink with coupled light source

Inventor: Daniel S. Spiro (Scottsdale, AZ)
Assignee: EXPOSURE ILLUMINATION ARCHITECTS, INC.
F21V29/763F21K9/275F21S4/28
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 11,674,682
App. No.
17/464,417
Granted
Jun 13, 2023
Kind
B2
Abstract

An elongated heatsink structure retaining single and/or bi-directional light sources that receive variable power input(s) through at least one endcap coupled to the elongated heatsink structure.

Claims (41)

1. A structure comprising:

an elongated heatsink that is unitarily formed and displays a solid core with a longitudinal opening extending from one end of the elongated heatsink to the other end;

a plurality of heat dissipating fins unitarily coupled to the core of the elongated heatsink;

a plurality of light sources coupled to at least one exterior surface of the elongated heatsink;

a conductor that extends a length of the longitudinal opening of the elongated heatsink; and

an endcap that is electrically coupled to at least one end of the elongated heatsink, wherein

a portion of heat generated by at least one of the plurality of light sources is conveyed through the core of the elongated heatsink directly to most of the plurality of the heat dissipating fins, and

the endcap includes a circuitry that conveys power and/or data to at least one of the plurality of light sources.

2. The elongated heatsink structure of claim 1 , wherein intensity output of at least one of the plurality of light sources exceeds intensity output of another one of the plurality of light sources of a common elongated heatsink structure.

3. The elongated heatsink structure of claim 1 , wherein at least one of the plurality of light sources can be independently controlled for at least one of on/off, dimming, and/or color operation modulation.

4. The elongated heatsink structure of claim 1 , wherein at least one of: a color temperature and/or a color rendering index (CRI) of one of the plurality of light sources is different from that of another one of the plurality of light sources.

5. The elongated heatsink structure of claim 1 , wherein at least one of the plurality of light sources emits photonic energy having wavelength within the ultraviolet spectrum.

6. The elongated heatsink structure of claim 5 , further comprising at least one processor coupled to at least one of: a communication device, a sensing device, a power storage device, and an output device.

7. The elongated heatsink structure of claim 6 , wherein the at least one processor is coupled to the communication device and at least one of: the sensing device, the power storage device, and the output device, such that the at least one of the sensing device, the power storage device, and the output device is addressable by the communication device for at least one of power, data, or a combination of both.

8. A structure comprising:

an elongated heatsink that is unitarily formed and displays a solid core with a longitudinal opening extending from one end of the elongated heatsink to the other end;

a plurality of heat dissipating fins unitarily coupled to the core of the elongated heatsink;

a plurality of light sources coupled to at least one exterior surface of the elongated heatsink;

at least one conductor that extends a length of the opening in the elongated heatsink; and

an endcap that is electrically coupled to at least one end of the elongated heatsink, wherein

a portion of heat generated by the at least one of the plurality of light sources is conveyed through the solid core of the elongated heatsink directly to most of the plurality of the heat dissipating fins, and

the endcap provides electrical connectivity to the elongated heatsink, and conveys power and/or data to at least two of the plurality of light sources which are disposed at opposing sides of the elongated heatsink.

9. The elongated heatsink structure of claim 8 , wherein at least one light source output exceeds another coupled light source of a common elongated heatsink structure.

10. The elongated heatsink structure of claim 8 , wherein at least one light source can be independently controlled for at least one of on/off, dimming, and/or color operation modulation.

11. The elongated heatsink structure of claim 8 , wherein at least one of: a light color temperature and/or a color rendering index (CRI) of one of the at least one light source of the plurality of light sources is different from that of another of the at least one light source of the plurality of light sources.

12. The elongated heatsink structure of claim 8 , wherein at least one light source of the plurality of light sources at least one light source emits photonic energy in an the bandwidth of ultraviolet band.

13. The elongated heatsink structure of claim 8 , wherein further comprising at least one processor coupled to at least one of: a communication device, a sensing device, a power storage device, and an output device, as at least one coupled device.

14. The elongated heatsink structure of claim 13 , wherein the at least one coupled device is addressable by the communication device.

15. An elongated heatsink structure comprising:

a heatsink that is unitarily formed and displays a solid core with a longitudinal opening extending from one end of the heatsink to the other end;

a plurality of heat dissipating fins unitarily coupled to the core of the heatsink;

a plurality of light sources coupled to at least one exterior surface of the heatsink;

at least one conductor that extends the length of the opening in the heatsink; and

an endcap that electrically is electrically coupled to at least one end of the heatsink,

wherein a portion of heat generated by the at least one light source of the plurality of light sources is conveyed through the solid core of the heatsink directly to most of the plurality of the heat dissipating fins, and

the endcap provides electrical connectivity to the elongated heatsink structure, and conveys power and/or data to different light sources of the plurality of light sources that are disposed on a same retaining surface of the elongated heatsink structure.

16. The elongated heatsink structure of claim 15 , wherein the at least one light source can be independently controlled for at least one of on/off, dimming, and/or color operation modulation.

17. The elongated heatsink structure of claim 15 , wherein at least one of: a light color temperature and/or a color rendering index (CRI) of one of the at least one light source of the plurality of light sources is different from that of another of the at least one light source of the plurality of light sources.

18. The elongated heatsink structure of claim 15 , wherein at least one light source of the plurality of light sources at least one light source emits photonic energy in an the bandwidth of ultraviolet band.

19. The elongated heatsink structure of claim 15 , wherein further comprising at least one processor coupled to at least one of: a communication device, a sensing device, a power storage device, and an output device, as at least one coupled device.

20. The elongated heatsink structure of claim 19 , wherein the at least one coupled device is addressable by the communication device for at least one of power, data, or a combination of both.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2022
From: SPIRO, DANIEL S.
To: EXPOSURE ILLUMINATION ARCHITECTS, INC.
Reel/Frame 059058/0613 →
Continuity (5)
Continuation In Part 17397508 · Aug 9, 2021
Continuation In Part 16672218 · Nov 1, 2019
Continuation In Part 16019329 · Jun 26, 2018
Provisional Application 62674431 · May 21, 2018
Related Publication 20210396381A1 · Dec 23, 2021