IP Library Patent Application 13031029
Patent Application
App. No. 13/031,029

METHOD AND APPARATUS FOR MOUNTING PHOTOVOLTAIC MODULES TO SHINGLED SURFACES

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Quick Facts
Patent No.
US None
App. No.
13/031,029
Abstract

A photovoltaic module for mounting to a roof overlying rafters, wherein the rafters have a given spacing, and wherein the photovoltaic module is to be mounted to the roof with a desired spacing between horizontally-adjacent photovoltaic modules, the photovoltaic module having a width which is a multiple of the given spacing between rafters, after taking into account the desired spacing between horizontally-adjacent photovoltaic modules.

Claims (27)

1 . A photovoltaic module for mounting to a roof overlying rafters, wherein the rafters have a given spacing, and wherein the photovoltaic module is to be mounted to the roof with a desired spacing between horizontally-adjacent photovoltaic modules, the photovoltaic module having a width which is a multiple of the given spacing between rafters, after taking into account the desired spacing between horizontally-adjacent photovoltaic modules.

2 . A method for mounting an array of photovoltaic modules to a roof overlying rafters, wherein the rafters have a given spacing, the method comprising:

determining a desired spacing between horizontally-adjacent photovoltaic modules;

providing a plurality of photovoltaic modules each having a width which is a multiple of the given spacing between rafters, after taking into account the desired spacing between horizontally-adjacent photovoltaic modules; and

mounting each photovoltaic module to the roof by securing each photovoltaic module to a rafter underlying the roof, with each photovoltaic module being spaced from a horizontally-adjacent photovoltaic module by the desired spacing.

3 . A photovoltaic module for mounting to a roof overlying rafters, wherein the rafters have a spacing R, and wherein the photovoltaic module is to be mounted to the roof with a spacing H between horizontally-adjacent photovoltaic modules, the photovoltaic module having a width W, wherein:

W=xR−H

and further wherein x is an integer value of 1 or more.

4 . A method for mounting an array of photovoltaic modules to a roof overlying rafters, wherein the rafters have a spacing of R, the method comprising:

determining a desired spacing H between horizontally-adjacent photovoltaic modules;

determining a preferred width W for each photovoltaic module in the array according to the formula:

W=xR−H

where x is an integer value of 1 or more;

providing a plurality of photovoltaic modules of width W; and

mounting each photovoltaic module to the roof by securing each photovoltaic module to a rafter underlying the roof, with each photovoltaic module being spaced from a horizontally-adjacent photovoltaic module by a distance H.

5 . A photovoltaic module for mounting to a roof comprising shingles, wherein each of the shingles has a face of a given length, and wherein the photovoltaic module is to be mounted to the roof with a north foot and a south foot, wherein the north foot has a given effective length and the south foot has a given effective length, the photovoltaic module having a length which, when added to the length of the north foot and the south foot, is a multiple of the given length of a shingle face.

6 . A method for mounting an array of photovoltaic modules to a roof comprising shingles, wherein each of the shingles has a face of a given length, and wherein each of the photovoltaic modules is to be mounted to the roof with a north foot and a south foot, wherein the north foot has a given effective length and the south foot has a given effective length, the method comprising:

providing a plurality of photovoltaic modules each having a length which, when added to the effective length of its associated north foot and associated south foot, is a multiple of the given length of a shingle face; and

mounting each photovoltaic module to the roof by securing the north foot of that photovoltaic module to a single shingle face and securing the south foot of that photovoltaic module to a single shingle face.

7 . A photovoltaic module for mounting to a roof comprising shingles, wherein each of the shingles has a face of length F, and wherein the photovoltaic module is to be mounted to the roof with a north foot having a effective length N′ and a south foot having a effective length S′, the photovoltaic module having a length L, wherein:

L=xF−N′−S′

and further wherein x is an integer value of 1 or more.

8 . A method for mounting an array of photovoltaic modules to a roof comprising shingles, wherein each of the shingles has a face of length F, and wherein each of the photovoltaic modules is to be mounted to the roof with a north foot having a effective length N′ and a south foot having a effective length S′, the method comprising:

providing a plurality of photovoltaic modules of length L, wherein

L=xF−N′−S′

where x is an integer value of 1 or more; and

mounting each photovoltaic module to the roof by securing the north foot of that photovoltaic module to a single shingle face and securing the south foot of that photovoltaic module to a single shingle face.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2015
From: GREENRAY, INC.
To: SUNEDISON, INC
Reel/Frame 034945/0698 →
RELEASE OF SECURITY INTEREST Recorded Dec 26, 2013
From: GOLDMAN SACHS BANK USA
To: NVT, LLC; SUN EDISON LLC; SOLAICX; SUNEDISON, INC. (F/K/A MEMC ELECTRONIC MATERIALS, INC.)
Reel/Frame 031870/0092 →
SECURITY AGREEMENT Recorded Oct 1, 2012
From: NVT, LLC; SUN EDISON LLC; SOLAICX, INC.; MEMC ELECTRONIC MATERIALS, INC.
To: GOLDMAN SACHS BANK USA
Reel/Frame 029057/0810 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2011
From: KING, ZACHARY A; MURILLO, ANDRES
To: GREENRAY INC.
Reel/Frame 026326/0141 →