A solar cell module includes a connecting member to be passed through a coating of a cable for electrically connecting a plurality of solar cell modules and to be electrically connected to a core wire of the cable. The solar cell module is connected to the cable by pressing the connecting member of
A solar cell module includes a connecting member to be passed through a coating of a cable for electrically connecting a plurality of solar cell modules and to be electrically connected to a core wire of the cable. The solar cell module is connected to the cable by pressing the connecting member of the solar cell module to pass through the coating of the cable and come into contact with the core wire of the cable. An electrical connection of the solar cell module with a ground wire is made by a similar technique.
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1. A solar cell module including a supporting surface on a supporting body, the solar cell module to be connected to a cable constructed by sealing a core wire with a coating, comprising:a solar cell portion provided on the supporting surface;a waterproof enclosure on said supporting surface, said e
1. A solar cell module including a supporting surface on a supporting body, the solar cell module to be connected to a cable constructed by sealing a core wire with a coating, comprising:a solar cell portion provided on the supporting surface;a waterproof enclosure on said supporting surface, said enclosure having openings positioned to allow the cable to pass continuously straight through said enclosure and consisting essentially of a main body and a lid; anda connecting member within said enclosure, constructed to be passed through the coating of said cable and electrically connected to the core wire of said cable in response to the placement of the lid on the main body. 2. The solar cell module of claim 1, wherein said supporting body supports said solar cell portion and said connecting member. 3. The solar cell module of claim 1, whereinsaid connecting member is a pair of positive and negative connecting members to be electrically connected to a pair of positive and negative core wires of said cable. 4. A method of connecting a solar cell module to a cable, comprising the steps of:preparing a solar cell module of claim 1; andconnecting the prepared solar cell module to said cable by placing the lid on the main body, causing the connecting member of the prepared solar cell module to pass through the coating of said cable and come into contact with the core wire of said cable. 5. A solar cell module including a supporting surface on a supporting body, the solar cell module to be connected to a cable constructed by sealing a core wire with a coating, comprising:a solar cell portion provided on the supporting surface;a waterproof enclosure on the supporting surface, said enclosure having openings positioned to allow the cable to pass straight through said enclosure and consisting essentially of a main body and a lid; anda pair of positive and negative connecting members, within said enclosure constructed to be passed through the coating of said cable and electrically connected to the core wire of said cable in response to the placement of the lid on the main body; anda cutting member, within said enclosure, for cutting the core wire of said cable connected to said pair of positive and negative connecting members between said pair of positive and negative connecting members. 6. The solar cell module of claim 5, wherein said supporting body supports said solar cell portion and said pair of positive and negative connecting members. 7. A method of connecting a solar cell module to a cable, comprising the steps of:preparing a solar cell module of claim 5, andconnecting the prepared solar cell module to said cable by placing the lid on the main body, causing the pair of positive and negative connecting members of the prepared solar cell module to pass through the coating of said cable and come into contact with the core wire of said cable. 8. A method of installing a plurality of solar cell modules to overlap each other on an installing body, at least one solar cell module receiving a cable and having a connecting member constructed to pass into the cable, comprising the steps of:arranging the solar cell modules so that a lower portion of a solar cell module on an upper side and an upper portion of said one solar cell module, which is on a lower side, overlap each other; andfixing each overlapped portion to said installing body by a screw fixation;wherein an electrical connection of the one solar cell module on the lower side with the cable is made by the screw fixation causing the connecting member to pass into the cable. 9. A solar cell module including a supporting surface on a supporting body, the solar cell module to be connected to a ground wire constructed by sealing a core wire with a coating, comprising:a solar cell portion provided on the supporting surface;a waterproof enclosure on said supporting surface, said enclosure having openings positioned to allow the ground wire to pass continuously straight through said enclos ure and consisting essentially of a main body and a lid; anda ground connecting member in said enclosure and positioned to be passed through the coating of said ground wire and electrically connected to the core wire of said ground wire in response to the placement of the lid on the main body. 10. The solar cell module of claim 9, wherein said supporting body is made of metal, for supporting said solar cell portion and said ground connecting member. 11. A method of connecting a solar cell module to a ground wire, comprising the steps of:preparing a solar cell module of claim 9; andconnecting the prepared solar cell module to said ground wire by placing the lid on the main body, causing the ground connecting member of the prepared solar cell module to pass through the coating of said ground wire and come into contact with the core wire of said ground wire. 12. A method of installing a solar cell module on an installing body, comprising the steps of:preparing a solar cell module to be connected to a ground wire constructed by sealing a core wire with a coating, said solar cell module comprising a solar cell portion, a waterproof enclosure having openings positioned to allow the ground wire to pass continuously straight through said enclosure, and a ground connecting member in said enclosure and positioned to be passed through the coating of said ground wire and electrically connected to the core wire of said ground wire, said module further comprising a supporting body, made of a metal, for supporting said solar cell portion and said ground connecting member; andperforming simultaneously a connection of said ground connecting member to said supporting body and an installation of the prepared solar cell module on said installing body by a screw fixation.
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이 특허에 인용된 특허 (8)
Czerlanis John A. (Solon Mills IL), Electrical cable connector.
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