IP Library Granted Patent US 11,646,692
Granted Patent B2
US 11,646,692 · App. 17/477,754 · Granted May 9, 2023

Waterproofing mounting system for attaching solar modules to a roof

Inventors: Claudia Wentworth (Alamo, CA); Stuart Wentworth (San Antonio, CA)
Assignee: Quick Mount PV
H02S20/23F24S25/33F24S25/61F24S25/636F24S25/70F24S2025/6008F24S2025/803F24S2025/807Y02B10/10Y02B10/20Y02E10/47
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Quick Facts
Patent No.
US 11,646,692
App. No.
17/477,754
Granted
May 9, 2023
Kind
B2
Abstract

A roof mounting system for the attachment of an article to a roof, the system comprising a plurality of PV modules each having at least one corner and a frame member, a flashing member having a top surface; an upstanding sleeve attached to the top surface of the flashing member; an elevated water seal having a borehole formed therethrough, the elevated water seal further comprising at least one screw for providing a waterproof seal between the article and the roof structure; and whereby the plurality of PV modules are interlocked in a way to provide a corner-to-corner coupling arrangement supported above the roof through the frame members of the plurality of PV modules.

Claims (35)

1. A rail-less roof mounting system comprising:

a plurality of PV modules each having frame members forming at least one corner, the frame members supported by a first and a second clamp assembly, the clamp assemblies each supported above a roof via a base mount assembly, the base mount assembly comprising a block slider and a top slider ( 124 ), wherein the block slider has an upstanding portion ( 114 ) having at least one pair of outwardly opposing ridges, and wherein the top slider has a downwardly extending portion and at least one pair of inwardly facing recesses making up a sliding groove ( 136 ) and which mates complimentarily with the outwardly opposing ridges of the block slider upstanding portion ( 114 );

a fastener securing the top slider to the block slider by securing the block slider upstanding portion ( 114 ) within the sliding groove ( 136 );

a third clamp assembly having a clamp member and a plate member, the clamp assembly in contact with a first PV module frame member and at least one adjacent PV module frame member, interconnecting said first PV module frame member to said at least one adjacent PV module frame member;

whereby the plurality of PV modules are interlocked in a way to provide a corner-to-corner coupling arrangement which enables the connection of at least one PV module corner to at least one corner of an adjacent PV module by sandwiching above and beneath said frame members of the plurality of PV modules wherein said corner-to-corner coupling arrangement is supported above the roof through the frame members of the plurality of PV modules; and

wherein the third clamp assembly is supported above the roof via the frame members.

2. The rail-less roof mounting system of claim 1 , wherein the downwardly extending portion comprises two opposing side portions.

3. The rail-less roof mounting system of claim 1 wherein the outwardly opposing ridges are clamped within the inwardly facing recesses.

4. The rail-less roof mounting system of claim 1 wherein the first corner and the second corner are adjacent and between the clamp member and the plate member.

5. The rail-less roof mounting system of claim 1 whereby the third clamp assembly is supported above the roof via the frame members and the first and second clamp assemblies and the first and second base mount assemblies.

6. The rail-less roof mounting system of claim 1 wherein the block slider comprises a first portion parallel to the roof and a second portion integral to the block slider, perpendicular to the roof, and comprising an opening.

7. The roof mounting system of claim 6 wherein the block slider first portion and the block slider second portion extend away from each other at an approximately 90-degree angle.

8. The roof mounting system of claim 6 wherein the block slider second portion opening has a length that is greater than its width.

9. The roof mounting system of claim 1 wherein a structural member supports the at least one PV module above the roof and comprises a top portion having a track extending the entire length of the top portion and a bottom portion connecting to the block member second portion.

10. The roof mounting system of claim 1 wherein the frame member of at least one PV module frame member is clamped between a top clamp member and the structural member.

11. A rail-less roof mounting system comprising:

a plurality of PV modules each having frame members forming at least one corner, the frame members supported by a first and a second clamp assembly, the clamp assemblies each supported above a roof via a base mount assembly, the base mount assembly comprising a block slider and a top slider ( 124 ), wherein the block slider has an upstanding portion ( 114 ) having at least one pair of outwardly opposing ridges, and wherein the top slider has a downwardly extending portion and at least one pair of inwardly facing recesses making up a sliding groove ( 136 ) and is configured to cooperate with the outwardly opposing ridges of the block slider upstanding portion ( 114 );

a fastener securing the top slider to the block slider by clamping the outwardly opposing ridges within the inwardly facing recesses;

a third clamp assembly having a clamp member and a plate member, the clamp member and the plate member cooperating to clamp a first corner formed of the frame members of a first PV module and a second corner formed of the frame members of a second PV module, interconnecting said first PV module frame member to said second PV module frame member;

whereby the plurality of PV modules are interlocked in a way to provide a corner-to-corner coupling arrangement which enables the connection of at least one PV module corner to at least one corner of an adjacent PV module by sandwiching above and beneath said frame members of the plurality of PV modules wherein said corner-to-corner coupling arrangement is supported above the roof through the frame members of the plurality of PV modules; and

wherein the third clamp assembly is supported above the roof via the frame members.

12. The rail-less roof mounting system of claim 11 wherein the block slider upstanding portion is secured within the sliding groove.

13. The rail-less roof mounting system of claim 11 wherein the downwardly extending portion comprises two opposing side portions.

14. The rail-less roof mounting system of claim 11 wherein the first corner and the second corner are adjacent and between the clamp member and the plate member.

15. The rail-less roof mounting system of claim 11 whereby the third clamp assembly is supported above the roof via the frame members and the first and second clamp assemblies and the first and second base mount assemblies.

16. The rail-less roof mounting system of claim 11 wherein the block slider comprises a first portion parallel to the roof and a second portion integral to the block slider, perpendicular to the roof, and comprising an opening.

17. The roof mounting system of claim 16 wherein the block slider first portion and the block slider second portion extend away from each other at an approximately 90-degree angle.

18. The roof mounting system of claim 16 wherein the block slider second portion opening has a length that is greater than its width.

19. The roof mounting system of claim 11 wherein a structural member supports the at least one PV module above the roof and comprises a top portion having a track extending the entire length of the top portion and a bottom portion connecting to the block member second portion.

20. A rail-less roof mounting system comprising:

a plurality of PV modules each having frame members forming at least one corner, the frame members supported by a first and a second clamp assembly, the clamp assemblies each supported above a roof via a base mount assembly, the base mount assembly comprising a block slider and a top slider ( 124 ), wherein the block slider has an upstanding portion ( 114 ) having at least one pair of outwardly opposing ridges, and wherein the top slider has a downwardly extending portion and at least one pair of inwardly facing recesses making up a sliding groove ( 136 ) and which mates complimentarily with the outwardly opposing ridges of the block slider upstanding portion ( 114 );

a third clamp assembly having a clamp member and a plate member, the clamp assembly in contact with a first PV module frame member and at least one adjacent PV module frame member, interconnecting said first PV module frame member to said at least one adjacent PV module frame member;

whereby the plurality of PV modules are interlocked in a way to provide a corner-to-corner coupling arrangement which enables the connection of at least one PV module corner to at least one corner of an adjacent PV module by sandwiching above and beneath said frame members of the plurality of PV modules wherein said corner-to-corner coupling arrangement is supported above the roof through the frame members of the plurality of PV modules;

wherein the downwardly extending portion comprises two opposing side portions; and

wherein the third clamp assembly is supported above the roof via the frame members.

Continuity (11)
Continuation 17096839 · Nov 12, 2020
Continuation 16539134 · Aug 13, 2019
Continuation 16380918 · Apr 10, 2019
Continuation 16160504 · Oct 15, 2018
Continuation 15803656 · Nov 3, 2017
Continuation 15225704 · Aug 1, 2016
Continuation 15045434 · Feb 17, 2016
Continuation 14605368 · Jan 26, 2015
Continuation 14166633 · Jan 28, 2014
Provisional Application 61916046 · Dec 13, 2013
Related Publication 20220077815A1 · Mar 10, 2022
Cited By (18)
US 1,075,493 US 1,109,686 US 1,113,406 US 1,127,727 US 1,128,411 US 1,134,953 US 12,203,496 US 12,231,081 US 12,305,397 US 12,320,375 US 12,473,736 US 12,483,185 US 12,486,668 US 12,516,848 US 12,519,418 US 12,534,916 US 12,631,028 US 12,669,267