IP Library Granted Patent US 8,701,360
Granted Patent B2
US 8,701,360 · App. 12/151,806 · Granted Apr 22, 2014

Method and apparatus for assembling photovoltaic modules

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 8,701,360
App. No.
12/151,806
Granted
Apr 22, 2014
Kind
B2
Abstract

A method of assembling a solar array includes forming at least one substrate member that includes an upper surface and a lower surface. The lower surface is contoured with a shape that at least partially conforms to at least a portion of a contoured roof. The upper surface includes at least one elevated portion and a plurality of substantially planar regions. The at least one elevated portion is offset a predetermined height above at least one other portion of the substrate member. Each of the plurality of substantially planar regions is a distance above the at least one elevated portion and is oriented to receive at least one photovoltaic laminate. The method also includes coupling the at least one substrate member to at least a portion of the contoured roof.

Claims (49)

1. A method of assembling a solar array, said method comprising:

forming at least one substrate member that includes an upper surface and a lower surface, at least the lower surface is contoured with a shape that at least partially conforms to at least a portion of a contoured roof, wherein the upper surface includes a first arcuate portion and a second arcuate portion that form a substantially sinusoidal shape, and a plurality of substantially planar regions, wherein the first arcuate portion includes a first end and a second end such that the first arcuate portion extends arcuately from the first end to the second end, wherein the first arcuate portion is offset a predetermined height above the second arcuate portion, wherein each of the plurality of substantially planar regions extends from the first arcuate portion a distance above the first arcuate portion and is oriented to receive at least one photovoltaic laminate; and

coupling the at least one substrate member to at least a portion of the contoured roof.

2. A method in accordance with claim 1 wherein forming the at least one substrate member comprises one of:

forming the at least one substrate member with a shape that includes a plurality of alternating first arcuate portions and a plurality of second arcuate portions; and

forming at least one cutout area within the at least one substrate member.

3. A method in accordance with claim 1 further comprising coupling a photovoltaic laminate to the plurality of substantially planar regions.

4. A method in accordance with claim 2 wherein forming the at least one substrate member further comprises forming the at least one substrate member with a contoured shape that at least partially defines at least one of:

at least one upper cooling channel;

at least one lower cooling channel; and

at least one warm air vent channel that is coupled in flow communication with at least one of the at least one upper cooling channel and the at least one lower cooling channel.

5. A method in accordance with claim 2 wherein forming the plurality of alternating first arcuate portions and plurality of second arcuate portions comprises:

coupling a first of said at least one substrate member to a second of said at least one substrate member at a perimeter of at least one of the first and second substrate members; and

coupling at least one of the first of said at least one substrate member and the second of said at least one substrate member at a perimeter of at least one of the first and second substrate member to the roof using at least one of the perimeter portion of the first and second substrate members.

6. A method in accordance with claim 1 further comprising:

forming at least one wiring slot within at least a portion of the at least one substrate member; and

forming a cutout at least within one of the first and second arcuate portions that is sized to receive at least a portion of a junction box therein.

7. A photovoltaic module comprising:

at least one substrate member that includes an upper surface and a lower surface, at least said lower surface is contoured with a shape that at least partially conforms to at least a portion of a contoured roof, wherein said upper surface includes a first arcuate portion and a second arcuate portion that form a substantially sinusoidal shape, and a plurality of substantially planar regions, wherein said first arcuate portion comprises a first end and a second end such that said first arcuate portion extends arcuately from said first end to said second end, wherein said first arcuate portion is offset a predetermined height above said second arcuate portion, wherein each of said plurality of substantially planar regions extends from said first arcuate portion to a distance above said first arcuate portion and is oriented to receive at least one photovoltaic laminate; and

said at least one photovoltaic laminate coupled to said plurality of substantially planar regions.

8. A photovoltaic module in accordance with claim 7 wherein said at least one substrate member is configured to conform to at least a portion of a S-tiled roof.

9. A photovoltaic module in accordance with claim 8 wherein said at least one substrate member is formed with a contoured shape that comprises a plurality of the first arcuate portions and a plurality of the second arcuate portions.

10. A photovoltaic module in accordance with claim 9 wherein at least one of said plurality of the first arcuate portions and said plurality of the second arcuate portions comprises:

at least one wiring slot defined therein; and

a cutout sized to receive at least a portion of a junction box therein.

11. A photovoltaic module in accordance with claim 9 wherein at least some of said plurality of the first arcuate portions and said plurality of the second arcuate portions at least partially define at least one perimeter portion, said at least one perimeter portion is configured to couple at least one of:

a first of said at least one substrate member to a second of said at least one substrate member; and

at least one of said first of said at least one substrate member and said second of said at least one substrate member to the roof.

12. A photovoltaic module in accordance with claim 7 further comprising at least one cooling channel; wherein said at least one cooling channel comprises at least one of:

at least one upper cooling channel coupled in flow communication with at least one warm air vent channel; and

at least one lower cooling channel coupled in flow communication with said at least one warm air vent channel.

13. A solar array comprising:

at first photovoltaic module; and

a second photovoltaic module coupled to said first photovoltaic module, said first photovoltaic module and said second photovoltaic module each comprise:

at least one substrate member that includes an upper surface and a lower surface, at least said lower surface is contoured with a shape that at least partially conforms to at least a portion of a contoured roof, wherein said upper surface includes first arcuate portion and a second arcuate portion that form a substantially sinusoidal shape, and a plurality of substantially planar regions, wherein said first arcuate portion comprises a first end and a second end such that said first arcuate portion extends arcuately from said first end to said second end, wherein said first arcuate portion is offset a predetermined height above said second arcuate portion, wherein each of said plurality of substantially planar regions extends from said first arcuate portion to a distance above said first arcuate portion and is oriented to received at least one photovoltaic laminate; and

said at least one photovoltaic laminate coupled to said plurality of substantially planar regions.

14. A solar array in accordance with claim 13 wherein said at least one substrate member is configured to conform to at least a portion of a S-tiled roof.

15. A solar array in accordance with claim 14 wherein said at least one substrate member is formed with a contoured shape that comprises a plurality of the first arcuate portions and a plurality of the second arcuate portions.

16. A solar array in accordance with claim 15 wherein at least one of said plurality of the first arcuate portions and said plurality of the second arcuate portions comprises:

at least one wiring slot defined therein; and

a cutout sized to receive at least a portion of a junction box therein.

17. A solar array in accordance with claim 15 wherein at least some of said plurality of the first arcuate portions and said plurality of the second arcuate portions at least partially define at least one perimeter portion, said at least one perimeter portion is configured to couple at least one of:

a of said at least one first substrate member to at least one of said at least one second substrate member; and

at least one of said of said at least one first substrate member and said of said at least one second substrate member to the roof.

18. A solar array in accordance with claim 17 wherein each of said first substrate member and said at least one second substrate member comprise at least a first perimeter portion and second perimeter portion, at least a portion of said first perimeter portion of said first substrate member is coupled at a first joint to at least a portion of said second perimeter portion of said at least one second substrate member.

19. A solar array in accordance with claim 18 wherein each of said first substrate member and said at least one second substrate member further comprise at least a third perimeter portion and a fourth perimeter portion, a portion of said fourth perimeter portion of said first substrate member is coupled at a second joint to at least a portion of the roof, at least a portion of said third perimeter portion of said first substrate member is coupled at a third joint to at least a portion of a fourth perimeter portion of said at least one second substrate member.

20. A method in accordance with claim 1 wherein the at least one substrate member is configured to overlay at least a portion of the contoured roof.

21. A photovoltaic module in accordance with claim 11 wherein the at least one of said first of said at least one substrate member and second of said at least one substrate member is configured to overlay at least one existing roof tile.

22. A solar array in accordance with claim 17 wherein the at least one of said first of said at least one substrate member and second of said at least one substrate member is configured to overlay at least one existing roof tile.

Assignments (5)
QUITCLAIM ASSIGNMENT Recorded Sep 18, 2025
From: EDISON INNOVATIONS LLC
To: BLUE RIDGE INNOVATIONS, LLC
Reel/Frame 072938/0793 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2025
From: GENERAL ELECTRIC COMPANY
To: GE INTELLECTUAL PROPERTY LICENSING, LLC
Reel/Frame 070636/0815 →
CHANGE OF NAME Recorded Mar 26, 2025
From: GE INTELLECTUAL PROPERTY LICENSING, LLC
To: DOLBY INTELLECTUAL PROPERTY LICENSING, LLC
Reel/Frame 070643/0907 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2025
From: DOLBY INTELLECTUAL PROPERTY LICENSING, LLC
To: EDISON INNOVATIONS, LLC
Reel/Frame 070293/0273 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2008
From: RESSLER, STEPHEN DANIEL
To: GENERAL ELECTRIC COMPANY
Reel/Frame 020985/0334 →