Photovoltaic module having scattering patterns
A photovoltaic module (1) having photovoltaic cells (2) positioned in a space between a front and a back sheet (4, 5), the space comprising an encapsulant material (6). A plurality of ribbons (3) provide an electrical interconnection of the photovoltaic cells (2). A scattering layer (7) is present 5...
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creator | EVERT EUGÈNE BENDE |
description | A photovoltaic module (1) having photovoltaic cells (2) positioned in a space between a front and a back sheet (4, 5), the space comprising an encapsulant material (6). A plurality of ribbons (3) provide an electrical interconnection of the photovoltaic cells (2). A scattering layer (7) is present 5 having a radiation scattering pattern with first and/or second surface areas (7a, 7b), in combination with third surface areas (7c). The first surface areas (7a) are aligned above the ribbons (3), and the second surface areas (7b) with spaces between adjacent photovoltaic cells (2). The third surface areas (7c) are aligned with a perimeter surface area of the photovoltaic module (1) outside of a surface area formed by the photovoltaic cells (2). Furthermore, a method 10 for assembling a photovoltaic module (1) comprises printing the radiation scattering pattern on a surface ofthe front sheet (4) and/or back sheet (5). |
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A plurality of ribbons (3) provide an electrical interconnection of the photovoltaic cells (2). A scattering layer (7) is present 5 having a radiation scattering pattern with first and/or second surface areas (7a, 7b), in combination with third surface areas (7c). The first surface areas (7a) are aligned above the ribbons (3), and the second surface areas (7b) with spaces between adjacent photovoltaic cells (2). The third surface areas (7c) are aligned with a perimeter surface area of the photovoltaic module (1) outside of a surface area formed by the photovoltaic cells (2). 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A plurality of ribbons (3) provide an electrical interconnection of the photovoltaic cells (2). A scattering layer (7) is present 5 having a radiation scattering pattern with first and/or second surface areas (7a, 7b), in combination with third surface areas (7c). The first surface areas (7a) are aligned above the ribbons (3), and the second surface areas (7b) with spaces between adjacent photovoltaic cells (2). The third surface areas (7c) are aligned with a perimeter surface area of the photovoltaic module (1) outside of a surface area formed by the photovoltaic cells (2). 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USINGPHOTOVOLTAIC [PV] MODULES</topic><topic>SEMICONDUCTOR DEVICES</topic><toplevel>online_resources</toplevel><creatorcontrib>EVERT EUGÈNE BENDE</creatorcontrib><collection>esp@cenet</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>EVERT EUGÈNE BENDE</au><format>patent</format><genre>patent</genre><ristype>GEN</ristype><title>Photovoltaic module having scattering patterns</title><date>2019-04-03</date><risdate>2019</risdate><abstract>A photovoltaic module (1) having photovoltaic cells (2) positioned in a space between a front and a back sheet (4, 5), the space comprising an encapsulant material (6). A plurality of ribbons (3) provide an electrical interconnection of the photovoltaic cells (2). A scattering layer (7) is present 5 having a radiation scattering pattern with first and/or second surface areas (7a, 7b), in combination with third surface areas (7c). The first surface areas (7a) are aligned above the ribbons (3), and the second surface areas (7b) with spaces between adjacent photovoltaic cells (2). The third surface areas (7c) are aligned with a perimeter surface area of the photovoltaic module (1) outside of a surface area formed by the photovoltaic cells (2). Furthermore, a method 10 for assembling a photovoltaic module (1) comprises printing the radiation scattering pattern on a surface ofthe front sheet (4) and/or back sheet (5).</abstract><oa>free_for_read</oa></addata></record> |
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subjects | BASIC ELECTRIC ELEMENTS CONVERSION OR DISTRIBUTION OF ELECTRIC POWER ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR ELECTRICITY GENERATION GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-REDRADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USINGPHOTOVOLTAIC [PV] MODULES SEMICONDUCTOR DEVICES |
title | Photovoltaic module having scattering patterns |
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