Low leakage electrical joints and wire harnesses, and method of making the same
Low leakage electrical joints and wire harnesses for simplifying the electrical infrastructure associated with solar energy utilities are disclosed. The low leakage electrical joints include fused wires that have been sealed, encased and configured to plug into other joints to form wire harnesses. The wire harnesses are particularly well suited for coupling a plurality of solar collector junction boxes to a combiner box.
1. A low leakage electrical joint, said joint comprising:
a. a first exposed portion of a first insulated wire welded to a second exposed portion of a second insulated wire;
b. cured synthetic rubber sealant directly surrounding said weld at a substantially uniform thickness of approximately 20 mils; and
c. an overmolded polypropylene encasement surrounding said sealant, said encasement including a plurality of protrusions and having a profile selected from the group consisting of T-shaped, cross-shaped and Y-shaped, said encasement defining at least one securing aperture positioned at the vertex of two of said protrusions.
2. The joint of claim 1 wherein said first insulated wire includes copper.
3. The joint of claim 2 wherein said first insulated wire is capable of carrying DC current up to 1000V.
4. The joint of claim 1 wherein said synthetic rubber sealant is a silicone based rubber sealant.
5. The joint of claim 1 wherein said encasement includes a UV stabilization agent.
6. The joint of claim 1 wherein said at least one securing aperture is positioned within the spatial confines of said profile.
7. The joint of claim 1 wherein said encasement defines at least one channel, said first insulated wire protruding outwardly from said encasement through said channel.
8. A wire harness, said harness comprising:
a. at least one joint comprising a first exposed portion of a first insulated wire welded to a second exposed portion of a second insulated wire; cured synthetic rubber sealant directly surrounding said weld, said sealant at a substantially uniform thickness of approximately 20 mils; and an overmolded polypropylene encasement surrounding said sealant, said encasement including a plurality of protrusions and having a profile selected from the group consisting of T-shaped, cross-shaped and Y-shaped, said encasement defining at least one securing aperture positioned at the vertex of two of said protrusions; and
b. at least one female connector attached to said first insulated wire.
9. The wire harness of claim 8 wherein said insulated wire comprises at least one photovoltaic wire.
10. The wire harness of claim 9 wherein the gauge of said photovoltaic wire includes at least one gauge selected from the group consisting of 8, 10, and 12 AWG.
11. The wire harness of claim 8 further comprising at least one male connector in communication with said second insulated wire.
12. The joint of claim 7 wherein said encasement further defines a second channel, said second insulated wire protruding outwardly from said encasement through said second channel.