Solar cell with connecting sheet, solar cell module, and fabrication method of solar cell with connecting sheet
Abstract
A method of fabricating a solar cell with a connecting sheet includes a temporary fixing step of bonding at least a portion of a peripheral region of a back electrode type solar cell to a connecting sheet. A method of fabricating a solar cell module includes the step of sealing the solar cell with a connecting sheet obtained by the method on a transparent substrate by a sealing material. A solar cell with a connecting sheet has a first adhesive arranged between a back electrode type solar cell and a connecting sheet, and a second adhesive arranged at least a portion of a peripheral region of the back electrode type solar cell to bond a back electrode type solar cell with a connecting sheet. A solar cell module has the solar cell with a connecting sheet sealed on a transparent substrate by a sealing material.
Claims
exact text as granted — not AI-modified1 . A method of fabricating a solar cell with a connecting sheet including a back electrode type solar cell having a semiconductor substrate where an impurity diffusion region for first conductivity type and an impurity diffusion region for second conductivity type are formed, an electrode for first conductivity type formed at one face side of said semiconductor substrate corresponding to said impurity diffusion region for first conductivity type, and an electrode for second conductivity type formed at said one face side of said semiconductor substrate corresponding to said impurity diffusion region for second conductivity type, and
a connecting sheet having an insulative base material, a wire for first conductivity type arranged at said insulative base material, and a wire for second conductivity type arranged at said insulative base material, said method comprising the steps of: applying a first adhesive to said back electrode type solar cell and/or said connecting sheet, arranging said back electrode type solar cell on said connecting sheet to sandwich said first adhesive therebetween such that said electrode for first conductivity type of said back electrode type solar cell is arranged on said wire for first conductivity type of said connecting sheet, and said electrode for second conductivity type of said back electrode type solar cell is arranged on said wire for second conductivity type of said connecting sheet, and temporary fixing at least a portion of a peripheral region of said back electrode type solar cell to said connecting sheet.
2 . (canceled)
3 . The method of fabricating a solar cell with a connecting sheet according to claim 1 , wherein said temporary fixing step includes the step of curing said first adhesive located at least a portion of the peripheral region of said back electrode type solar cell.
4 . The method of fabricating a solar cell with a connecting sheet according to claim 1 , wherein said temporary fixing step includes the step of curing a second adhesive including ultraviolet curable resin arranged between at least a portion of the peripheral region of said back electrode type solar cell and said connecting sheet.
5 . The method of fabricating a solar cell with a connecting sheet according to claim 1 , wherein said temporary fixing step includes the step of attaching an adhesive tape between at least a portion of a peripheral region of said back electrode type solar cell and said connecting sheet.
6 . The method of fabricating a solar cell with a connecting sheet according to claim 1 , wherein said back electrode type solar cell takes substantially an octagon shape having four corners corresponding to short sides or arcs, and the peripheral region of said back electrode type solar cell includes said four corners.
7 . A method of fabricating a solar cell module, comprising the step of sealing a solar cell with a connecting sheet produced by the method of fabricating a solar cell with a connecting sheet defined in claim 1 , on a transparent substrate by a sealing material.
8 . A solar cell with a connecting sheet, comprising:
a back electrode type solar cell including a semiconductor substrate where an impurity diffusion region for first conductivity type and an impurity diffusion region for second conductivity type are formed, an electrode for first conductivity type formed at one face side of said semiconductor substrate corresponding to said impurity diffusion region for first conductivity type, and an electrode for second conductivity type formed at said one face side of said semiconductor substrate corresponding to said impurity diffusion region for second conductivity type, and a connecting sheet including an insulative base material, a wire for first conductivity type arranged at said insulative base material, and a wire for second conductivity type arranged at said insulative base material, said back electrode type solar cell being arranged on said connecting sheet such that said electrode for first conductivity type of said back electrode type solar cell is arranged on said wire for first conductivity type of said connecting sheet, and said electrode for second conductivity type of said back electrode type solar cell is arranged on said wire for second conductivity type of said connecting sheet, and having a first adhesive arranged between said back electrode type solar cell and said connecting sheet, and a second adhesive arranged at least a portion of a peripheral region of said back electrode type solar cell to bond said back electrode type solar cell with said connecting sheet.
9 . A solar cell module having the solar cell with a connecting sheet defined in claim 8 sealed on a transparent substrate by a sealing material, wherein said first adhesive bonds and fixes said one face side of said back electrode type solar cell to said connecting sheet.
10 . The method of fabricating a solar cell module according to claim 7 , wherein said step of sealing includes a step of fixing said back electrode type solar cell to said connecting sheet by curing said first adhesive.Join the waitlist — get patent alerts
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