IP Library Granted Patent US 8,723,370
Granted Patent B2
US 8,723,370 · App. 13/221,615 · Granted May 13, 2014

Photovoltaic string sub-combiner

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Quick Facts
Patent No.
US 8,723,370
App. No.
13/221,615
Granted
May 13, 2014
Kind
B2
Abstract

An improved method of collecting DC power in solar photovoltaic systems is disclosed where series string overcurrent protection is provided at distributed series string terminus locations and a tap connection is made to higher current conductors carrying the combined currents of a number of series strings. A number of related string combiner methods and embodiments are disclosed.

Claims (25)

1. A photovoltaic string combiner comprising an enclosure, at least two photovoltaic string input connectors, at least one output connector and at least two fuses for coupling the at least two photovoltaic string input connectors to the at least one output connector wherein;

said at least two fuses are internal to said enclosure and wherein;

said enclosure is environmentally sealed, touch safe contains no user serviceable parts, and is designed to support plug and play replacement of the photovoltaic combiner when a fuse is cleared and wherein;

said at least two fuses provide means for overcurrent protection and wherein;

said enclosure comprises a means for preventing user access to said fuses and wherein if said means for preventing user access is breached, then the enclosure will no longer be environmentally sealed and said means for overcurrent protection will be compromised and wherein;

said at least two photovoltaic string input connectors and said at least one output connector are accessible external to the enclosure.

2. The photovoltaic string combiner according to claim 1 further comprising a power collection bus input connector coupled to said at least one output connector.

3. The photovoltaic string combiner according to claim 2 comprising two photovoltaic string input connectors, one power collection bus input connector and one output connector.

4. The photovoltaic string combiner according to claim 2 comprising four photovoltaic string input connectors, one power collection bus input connector and one output connector.

5. The photovoltaic string combiner according to claim 1 wherein said photovoltaic string input connectors are coupled to said at least two fuses without the use of fuse holders or fuse clips.

6. The photovoltaic string combiner according to claim 1 further comprising a printed circuit board wherein said at least two fuses are soldered to the printed circuit board.

7. The photovoltaic string combiner according to claim 1 wherein at least one connector is a bulkhead mounted connector which mates with industry standard photovoltaic module connectors.

8. The photovoltaic string combiner according to claim 1 wherein the enclosure is environmentally sealed at the time of manufacture by gluing, welding or otherwise permanently affixing a cover.

9. The photovoltaic string combiner according to claim 1 further comprising an electrically insulating material applied to the interior of the enclosure.

10. The photovoltaic string combiner according to claim 1 further comprising an electrically insulating potting, casting or molding material used as a portion of the enclosure.

11. The photovoltaic string combiner according to claim 1 further comprising a tap connector, where the tap connector is coupled to said at least one output connector and is an insulation displacement type comprising a means for coupling to an external electrical buss or electrical conductor without breaking that buss or conductor.

12. A photovoltaic power system comprising at least one photovoltaic string combiners according to claim 1 wherein a plurality of photovoltaic series strings are combined within said at least one photovoltaic string combiner at a field terminus location of said plurality of photovoltaic series strings.

13. The photovoltaic power system according to claim 12 wherein the outputs of a plurality of photovoltaic string combiners are coupled in a daisy chain configuration.

14. The photovoltaic power system according to claim 12 wherein the outputs of a plurality of the photovoltaic string combiners are coupled to an external power collection bus.

15. A method for collecting DC power in a photovoltaic power system comprising at least one photovoltaic string combiner according to claim 1 , the method combining a plurality of photovoltaic series strings within said at least one photovoltaic string combiner at a field terminus location of said plurality of photovoltaic series strings, and providing an output at at least one of the at least one output connectors.

16. A method for collecting DC power in a photovoltaic power system according to claim 15 wherein the outputs of a plurality of photovoltaic string combiners are combined using a daisy chain configuration.

17. A method for collecting DC power in a photovoltaic power system according to claim 15 wherein the outputs of a plurality of photovoltaic string combiners are coupled to an external power collection bus.

18. The photovoltaic string combiner according to claim 1 comprising two photovoltaic string input connectors, two fuses and one output connector.

19. The photovoltaic string combiner according to claim 1 comprising two photovoltaic string input connectors, two fuses and one output connector and wherein the enclosure is made of injection molded plastic.

20. The photovoltaic string combiner according to claim 1 comprising four photovoltaic string input connectors, four fuses and one output connector.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2018
From: PARKER-HANNIFIN CORPORATION
To: PARKER INTANGIBLES, LLC
Reel/Frame 045843/0859 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2017
From: RENEWABLE POWER CONVERSION, INC.
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 042764/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2017
From: WEST, RICHARD TRAVIS
To: RENEWABLE POWER CONVERSION, INC.
Reel/Frame 041585/0805 →