IP Library Granted Patent US 11,463,042
Granted Patent B2
US 11,463,042 · App. 17/573,716 · Granted Oct 4, 2022

Photovoltaic module

Inventors: Husnu M. Kalkanoglu (Swarthmore, PA); Gregory F. Jacobs (Oreland, PA); Ming Liang Shiao (Collegeville, PA)
Assignee: CertainTeed LLC
H02S20/25B32B17/10788H01L31/02H01L31/0203H01L31/02168H01L31/048H01L31/18H02S20/23H02S40/20Y02B10/10Y02E10/50
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Quick Facts
Patent No.
US 11,463,042
App. No.
17/573,716
Granted
Oct 4, 2022
Kind
B2
Abstract

A photovoltaic module includes an encapsulated photovoltaic element and an infrared-transmissive decorative overlay simulating conventional roofing.

Claims (57)

1. A photovoltaic module having an upper surface and a lower surface, the photovoltaic module comprising:

a photovoltaic element comprising a plurality of active layers, the photovoltaic element having an upper surface; and

a three-dimensional surface disposed above the active layers of the photovoltaic element, wherein the three-dimensional surface is formed as a surface relief in a continuous body of material extending above the plurality of active layers of the photovoltaic element;

an encapsulant resin layer positioned above the upper surface of the photovoltaic element; and

an overlay embedded within the encapsulant resin layer, wherein the three-dimensional surface disposed above the active layers of the photovoltaic element is a surface of the overlay,

wherein the photovoltaic module is disposed on a roof.

2. The photovoltaic module of claim 1 , wherein the surface relief is an embossed or molded surface.

3. The photovoltaic module of claim 1 , wherein the three-dimensional surface is the upper surface of the photovoltaic module.

4. The photovoltaic module of claim 1 , wherein the surface relief simulates the appearance of a roofing material.

5. A photovoltaic module having an upper surface and a lower surface, the photovoltaic module comprising:

a photovoltaic element comprising a plurality of active layers, the photovoltaic element having an upper surface;

an encapsulant resin layer positioned above the upper surface of the photovoltaic element;

an overlay positioned above the upper surface of the photovoltaic element, the overlay being substantially transmissive of near infrared radiation and infrared radiation; and

a cover member disposed between the encapsulant resin layer and the overlay wherein the cover member is made of glass or of a polymer film or sheet,

wherein the photovoltaic module includes a three-dimensional surface disposed above the active layers of the photovoltaic element; and

wherein the overlay is positioned above the encapsulant resin layer, the three-dimensional surface being formed as an upper surface of the overlay, wherein the three-dimensional surface is the upper surface of the photovoltaic module,

wherein the photovoltaic module is installed on a roof.

6. A photovoltaic module having an upper surface and a lower surface, the photovoltaic module comprising:

a photovoltaic element comprising a plurality of active layers, the photovoltaic element having an upper surface;

an encapsulant resin layer positioned above the upper surface of the photovoltaic element; and

an overlay positioned above the encapsulant resin layer, the overlay being substantially transmissive of near infrared radiation and infrared radiation,

wherein the photovoltaic module includes a three-dimensional surface disposed above the active layers of the photovoltaic element, the three-dimensional surface being formed as a lower surface of the overlay,

wherein the photovoltaic module is installed on a roof.

7. The photovoltaic module of claim 6 , wherein the three-dimensional surface simulates the appearance of a roofing material.

8. The photovoltaic module of claim 6 , wherein three-dimensional surface is formed by embossing, or molding.

9. The photovoltaic module of claim 6 , wherein the overlay is disposed above the entirety of the photovoltaic element.

10. A photovoltaic module having an upper surface and a lower surface, the photovoltaic module comprising:

a photovoltaic element comprising a plurality of active layers, the photovoltaic element having an upper surface;

an encapsulant resin layer positioned above the upper surface of the photovoltaic element; and

an overlay positioned within the encapsulant resin layer, the overlay being substantially transmissive of near infrared radiation and infrared radiation,

wherein the photovoltaic module includes a three-dimensional surface disposed above the active layers of the photovoltaic element, the three-dimensional surface being formed as a surface of the overlay,

wherein the photovoltaic module is installed on a roof.

11. A photovoltaic module having an upper surface and a lower surface, the photovoltaic module comprising:

a photovoltaic element comprising a plurality of active layers, the photovoltaic element having an upper surface;

an encapsulant resin layer positioned above the upper surface of the photovoltaic element, and

an overlay positioned above the upper surface of the photovoltaic element, the overlay being substantially transmissive of near infrared radiation and infrared radiation,

wherein the photovoltaic module includes a three-dimensional surface disposed above the active layers of the photovoltaic element, wherein the three-dimensional surface is formed by embossing, or molding,

wherein the photovoltaic module is installed on a roof.

12. A decorative photovoltaic module comprising:

a photovoltaic module having a photovoltaic element and an upper surface above the photovoltaic element; and

an overlay film adhered to the upper surface of the module above the photovoltaic element, the overlay film being substantially transmissive of both near infrared radiation and infrared radiation, the overlay film including an infrared-transmissive carrier film and one or more coating layers or inks disposed thereon, each coating layer or ink comprising one or more pigments, the overlay film having a pattern of selective absorbance of visible radiation, the pattern of selective absorbance of visible radiation being formed by a pattern of the one or more pigments selectively absorbing portions of the visible spectrum, wherein the one or more pigments include least one infrared-transmissive pigment,

wherein the photovoltaic module is installed on a roof.

13. The photovoltaic module of claim 12 , wherein the photovoltaic module includes a cover plate at its upper surface, the overlay film being adhered to the cover plate.

14. The photovoltaic module of claim 12 , wherein the photovoltaic module includes an encapsulant encapsulating the photovoltaic element, the encapsulant having a top surface, the overlay film being adhered to the top surface of the encapsulant.

15. A decorative photovoltaic module comprising:

a photovoltaic module having a photovoltaic element and an upper surface above the photovoltaic element; and

an overlay film adhered to the upper surface of the module above the photovoltaic element, the overlay film having a pattern of selective absorbance of visible radiation, the pattern of selective absorbance of visible radiation being formed by a pattern of one or more pigments selectively absorbing portions of the visible spectrum,

wherein the overlay film includes a carrier film and one or more coating layers or inks disposed thereon, each coating layer or ink comprising one or more pigments and a binder,

wherein the photovoltaic module is installed on a roof.

16. The photovoltaic module of claim 15 , wherein the pattern of the one or more pigments is provided by an infrared-transmissive coating or ink at a first portion of the overlay film and an opaque coating or ink at a second portion of the overlay film.

17. A decorative photovoltaic module comprising:

a photovoltaic module having a photovoltaic element and an upper surface above the photovoltaic element; and

an overlay film adhered to the upper surface of the module above the photovoltaic element, the overlay film having a pattern of selective absorbance of visible radiation, the pattern of selective absorbance of visible radiation being formed by a pattern of one or more pigments selectively absorbing portions of the visible spectrum,

wherein the pattern of selective absorbance of visible radiation is formed by a pattern of regions of two or more differently-colored inks or coating compositions, the pattern having a frequency no more than 200 lines per inch,

wherein the photovoltaic module is installed on a roof.

18. A photovoltaic module comprising a photovoltaic element having an upper surface, an encapsulant resin layer above the upper surface of the photovoltaic element, a cover plate, and a decorative overlay positioned above the upper surface of the photovoltaic element, said overlay extending above at least the entire upper surface of the photovoltaic element, the overlay being substantially transmissive of near infrared radiation and infrared radiation, and at least portions of said overlay extending above the upper surface of the photovoltaic element reflecting or absorbing light in at least a portion of the visible range of the spectrum to produce a desired appearance, wherein the decorative overlay is positioned under the cover plate, wherein the photovoltaic module is installed on a roof.

19. A photovoltaic module according to claim 18 wherein the decorative overlay simulates the appearance of a conventional roofing shingle surface.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2022
From: MING LIANG SHIAO
To: CERTAINTEED CORPORATION
Reel/Frame 059891/0393 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2022
From: KALKANOGLU, HUSNU M.; JACOBS, GREGORY F.
To: CERTAINTEED CORPORATION
Reel/Frame 058627/0787 →
CONVERSION Recorded Jan 12, 2022
From: CERTAINTEED CORPORATION
To: CERTAINTEED LLC
Reel/Frame 058702/0523 →
CONVERSION, REVERSE MERGER, CONVERSION Recorded Jan 12, 2022
From: CERTAINTEED LLC
To: CERTAINTEED LLC
Reel/Frame 058702/0530 →
Continuity (9)
Continuation 17322592 · May 17, 2021
Continuation 16995448 · Aug 17, 2020
Continuation 16003853 · Jun 8, 2018
Continuation 15057396 · Mar 1, 2016
Continuation 14483107 · Sep 10, 2014
Continuation 13770480 · Feb 19, 2013
Continuation 12811493
Provisional Application 61019740 · Jan 8, 2008
Related Publication 20220140772A1 · May 5, 2022