The present invention relates to electrical grounding and bonding, and more particularly to a ground fitting for easily grounding or bonding a ground wire carried in spiral metal sheathing (e.g., an armored cable) at an endpoint to a pipe extending a short distance from a wall.
Ground wires frequently require protection from damage. The ground wire is generally a heavy gauge wire, for example eight gauge or six gauge solid, or four gauge stranded, and is generally uninsulated. A common method for protecting a ground wire is to carry the ground wire in a spiral metal sheathing (e.g., armored cable), thereby creating an armored ground wire. Such spiral metal sheathing provides the desired protection to the ground wire.
It is often necessary to connect the ground wire to a ground member (or ground point) such as a water spigot extending from the side of a structure. Unfortunately, known grounding clamps do not allow the clamp to be attached to the pipe between the wall and spigot, and allow the ground wire to be attached in the most desirable manner parallel to the wall to keep the ground wire close to the wall.
Therefore, a need remains for a ground fitting (or clamp) and method of use which clamps to a spigot pipe and facilitates running the ground wire parallel to the wall for the entire length of the ground wire.
The present invention addresses the above and other needs by providing a ground fitting which allows simplified electrical connection between a ground wire carried in a metal sheathing, and a ground point such as a water spigot on a short pipe extending from a wall, or to a ground rod. The ground fitting comprises a wire clamp and a pipe clamp. The metal sheathing is cut and a short length removed to expose a short length of ground wire. The ground wire is inserted axially into the wire clamp, and the end of the metal sheathing carrying the ground wire is inserted axially between a clamping plate and clamp seat at a near end of the wire clamp. A ground screw is tightened against the ground wire to hold the ground wire in the wire clamp and plate screws securing the clamping plate are tightened to secure the sheathing between the clamping plate and clamp seats. The pipe clamp is tightened on the short pipe or ground rod, and the ground clamp is attached to the pipe clamp parallel to the short pipe or ground rod, or perpendicular to the short pipe or ground rod.
In accordance with one aspect of the invention, there is provided an end point ground fitting. The ground fitting includes a wire clamp and a pipe clamp. The wire clamp includes an armored cable entry, an armored cable clamp, a ground cable passage, and a ground wire screw. The armored cable clamp comprises a clamp seat facing a clamping plate for sandwiching the armored cable end inserted into the armored cable entry. The clamp seat and the clamping plate include interior concave dished portions including interior ridges for engaging an exterior spiral surface of the armored cable to retain the armored cable end in the armored cable entry. The ground wire passage allows axial inserting of the ground wire into the ground wire passage. The ground wire screw intersects the ground wire passage and is approximately perpendicular to the ground wire passage to intersect and thereby clamp the ground wire in wire clamp. The pipe clamp and the wire clamp include cooperating faces providing four attaching alignments allowing the ground cable to be aligned either parallel to, or perpendicular to, the short pipe.
In accordance with another aspect of the invention, there is provided a method for connecting an armored ground wire to a short pipe carrying a spigot. The method includes: attaching a pipe clamp to the short pipe; cutting a short length of the metal armored cable sheath surrounding a ground wire to expose a short length of the ground cable, axially inserting the exposed ground wire into a ground cable mouth of a wire clamp while inserting the armored cable end between a clamping plate and clamp seat at the near end of the wire clamp; tightening a wire clamp screw to grip the ground wire in place in the ground wire passage, tightening the armored cable clamp screws to grip the armored cable end between the clamping plate and clamp seat; and attaching the wire clamp to the pipe clamp with the ground wire perpendicular to the short pipe. Tightening the armored cable clamp may comprise tightening the clamping plate to sandwich the armored cable end between a concave dished portion of the clamping plate and clamp seat and intersecting at least one ridge on the concave dish portion with exterior spiral surfaces of the armored cable end to retain the armored cable end in the wire clamp. In one embodiment, ridges are provided on both the clamping plate and clamp seat to further secure the end of the metal sheathing sufficiently to meet code requirements.
The above and other aspects, features and advantages of the present invention will be more apparent from the following more particular description thereof, presented in conjunction with the following drawings wherein:
Corresponding reference characters indicate corresponding components throughout the several views of the drawings.
The following description is of the best mode presently contemplated for carrying out the invention. This description is not to be taken in a limiting sense, but is made merely for the purpose of describing one or more preferred embodiments of the invention. The scope of the invention should be determined with reference to the claims.
An armored (or sheathed) ground wire 30 suitable for use with the present invention is shown in
A top view of a pipe clamp top portion 14a according to the present invention is shown in
A bottom view of a pipe clamp bottom portion 14b according to the present invention is shown in
A side view of a wire clamp 12 according to the present invention is shown in
The wire clamp 12 includes a downward facing horizontal cross first mating surface 40b for cooperation with the recessed cross shape 40b on the pipe clamp top portion 14a for attachment of the wire clamp 12 to the pipe clamp top portion 14a. A screw passage 19a is provided for the screw 19 to secure the wire clamp 12 to the pipe clamp top portion 14a. The cross shape of the horizontal crosses 40a and 40b allow the wire clamp to be positioned in any one of four directions for routing the sheathed ground wire 30.
A top view of a clamping plate 20 according to the present invention for holding the armored cable sheath 32. is shown in
A front view of the ground fitting 10 according to the present invention attached to a ground rod 60 is shown in
The screws 18 and 24 and the clamping plates 20 are preferably zinc coated steel, and more preferably have a minimum approximately 0.001 inch thick zinc coating. The ground wire grasping portion 12 and the ground point plate 14 are preferably made of a copper alloy and are more preferably approximately 80 percent copper. The screws 22 are preferably 10-24 stainless steel screws for additional strength.
While the invention herein disclosed has been described by means of specific embodiments and applications thereof, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope of the invention set forth in the claims.
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