IP Library › Granted Patent US 11,791,429
Granted Patent B2
US 11,791,429 · App. 17/056,271 · Granted Oct 17, 2023

Lightweight and flexible photovoltaic module comprising a front layer consisting of a polymer and a rear layer consisting of a composite material

Inventors: Julien Gaume (Grenoble, FR); Thomas Guerin (Grenoble, FR); Yannick Veschetti (Grenoble, FR)
Assignee: COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
H01L31/0481B32B7/12B32B9/045C08J5/244H01L31/18B32B2307/732B32B2457/12C08J2363/00
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Quick Facts
Patent No.
US 11,791,429
App. No.
17/056,271
Granted
Oct 17, 2023
Kind
B2
Abstract

The invention relates to a lightweight photovoltaic module ( 1 ) comprising: a transparent first layer ( 2 ) forming the front face, photovoltaic cells ( 4 ), an assembly ( 3 ) encapsulating the photovoltaic cells ( 4 ), and a second layer ( 5 ), the encapsulating assembly ( 3 ) and the photovoltaic cells ( 4 ) being arranged between the first ( 2 ) and the second ( 5 ) layer. The invention is characterised in that the first layer ( 2 ) comprises a polymer material and has a thickness (e 2 ) of less than 50 μm, in that the second layer ( 5 ) comprises at least one composite material of the prepreg type containing polymer resin and fibres and has a areal weight of less than 150 g/m 2 , and in that the encapsulating assembly ( 3 ) has a maximum thickness (e 3 ) of less than 150 μm.

Claims (23)

1. A photovoltaic module, comprising:

a first transparent layer forming a front face of the photovoltaic module, for receiving a luminous flux;

a plurality of photovoltaic cells disposed side by side and electrically connected to each other;

an encapsulant assembly encapsulating the plurality of photovoltaic cells,

a second layer, wherein the encapsulant assembly and the plurality of photovoltaic cells is located between the first and second layers, and the first transparent layer comprises at least one polymeric material and has a thickness lower than 50 μm; and

an additional layer forming a rear face of the photovoltaic module, the second layer being located between the additional layer and the encapsulant assembly, wherein

the second layer comprises at least one polymeric resin and fibers based-pre-preg-type composite material having a weight per unit area lower than 150 g/m 2 ,

the encapsulant assembly has a maximum thickness lower than 150 μm,

the additional layer consists of a same material as that making up the first layer forming the front face of the photovoltaic module,

the additional layer has a thickness lower than or equal to that of the first layer,

the second laver includes a plurality of holes, each hole is circular and formed under a center of a corresponding one of the photovoltaic cells, and

a material of the first transparent layer and a material of the additional layer are each a fluoropolymer material.

2. The module according to claim 1 , wherein said at least one pre-preg-type composite material has a polymeric resin impregnation rate between 30 and 70 mass %.

3. The module according to claim 1 , wherein said at least one material composite of the second layer is a polymeric resin and fibers based pre-preg, the polymer being selected from polyester, epoxy, and/or acrylic, and the fibers being selected from glass, carbon, and/or aramid fibers.

4. The module according to claim 1 , wherein the module has a weight per unit area lower than 1 kg/m 2 .

5. The module according to claim 1 , wherein the encapsulant assembly has a maximum thickness between 20 μm and 100 μm.

6. The module according to claim 1 , wherein the encapsulant assembly is formed by at least one layer comprising at least one polymer type encapsulation material selected from: acid copolymers, ionomers, poly(ethylene-vinyl acetate), vinyl acetals, polyvinylbutyrals, polyurethanes, polyvinyl chlorides, polyethylenes, low density linear polyethylenes, copolymer elastomer polyolefins, α-olefin and α,β-ethylenic carboxylic acid ester copolymers, ethylene-methyl acrylate copolymers, ethylene-butyl acrylate copolymers, silicone elastomers, and epoxy resins.

7. The module according to claim 1 , wherein the photovoltaic cells are selected from: single crystal-based or multi crystalline-based homojunction or heterojunction photovoltaic cells, IBC-type photovoltaic cells, and photovoltaic cells comprising at least one material from amorphous silicon, microcrystalline silicon, cadmium telluride, copper-indium selenide and copper-indium/gallium diselenide.

8. The module according to claim 1 , wherein the photovoltaic cells have a thickness between 1 and 300 μm.

9. The module according to claim 1 , wherein the additional layer consists of the same material as that making up the first layer forming the front face of the photovoltaic module, the material being ethylene chlorotrifluoroethylene.

10. A method for making a photovoltaic module according to claim 1 , the method comprising:

hot laminating the constituent layers of the photovoltaic module, at a temperature between 130° C. and 170° C., for a time period of the lamination cycle of at least 10 minutes.

11. The method according to claim 10 , further comprising laminating the constituent layers of the photovoltaic module between two anti-adhesive damping layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2020
From: GAUME, JULIEN; GUERIN, THOMAS; VESCHETTI, YANNICK
To: COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
Reel/Frame 054452/0193 →
Priority Claims (1)
FR 18 54260 · May 22, 2018 · national
Continuity (1)
Related Publication 20210249549A1 · Aug 12, 2021