This invention is directed generally to switchgear, and, more particularly, to a lug assembly having radiused slots.
In the electrical industry, electrical cables are mounted to different types of electrical devices using cable lugs. Generally, electrical devices that use cables with lugs include low voltage and medium voltage devices (e.g., 600 volts to 69 kVolts), such as circuit breakers and switches. For example, switches or circuit breakers are typically electrically and physically connected to electrical cables via cable lugs. In some devices, lug pads are used to further facilitate the connection to the cables, which are typically difficult to bend.
Present lug pads are limited to configurations in which only holes are used for connecting cable lugs to electrical devices. For example, a current configuration requires lug pads to have a double-hole pattern that is identical to a bolt-hole pattern of respective cable lugs. The double-hole pattern, in contrast to a single hole, is required to provide necessary mounting strength and additional current paths between the lug pads and the cable lugs. Accordingly, to mount cable lugs to lug pads, the double-hole cable lugs and the lug pads must be positioned such that the two patterns are aligned with each other. This requirement proves difficult in the field, because it forces an installer to bend and maneuver cables in tight spaces of electrical cubicles for achieving necessary alignment between the holes of the lug pad and the bolts of the cable lug.
Bending space in confined spaces, such as electrical cubicles, is a limited and very expensive commodity. The minimum bending radii of cable is defined by the National Electrical Code (“NEC”). In accordance with NEC calculations, the cable bending required by present electrical cubicles, to align cable lugs and lug pads, unnecessarily increases the required bending space, and, consequently, the size of the electrical cubicle. Space is always at a premium for enclosed electrical equipment. Additionally, cable cost is unnecessarily increased by requiring cables of longer length for bending the cable lug in position relative to the lug pad.
In an implementation of the present invention, at least one slot of a lug pad or a cable lug is radiused to provide a positional mount of the cable lug to the lug pad. The radiused slot helps reduce cable bending space inside an electrical enclosure.
In another implementation of the present invention, an electrical system includes an electrical device mounted within an electrical enclosure. An electrical cable is coupled to an electrical junction of the electrical device via a cable lug, the cable lug having at least two lug holes. A lug pad attaches the cable lug to the electrical device and has at least two pad holes. Each of the pad holes is aligned with a respective one of the lug holes, and at least one of the lug holes and the pad holes is a slotted hole for permitting angular adjustable positioning of the cable lug relative to the lug pad.
In another alternative implementation of the present invention, an electrical system includes an electrical device and a cable lug. The cable lug is attached to the electrical cable. The cable lug has a barrel, in which an end of the electrical cable is insertably attached, and a tang with at least two holes. A lug pad has at least two slotted holes with a radiused shape, the slotted holes being symmetrically oriented on the lug pad and permitting angular adjustment of the cable lug relative to the lug pad throughout a plurality of mountable positions. At least two fasteners mount the cable lug to the lug pad such that the barrel of the cable lug is angled relative to a linear distance between the two slotted holes.
In yet another alternative implementation of the present invention, a method is directed to attaching an electrical cable to an electrical junction of an electrical device. The method includes providing a cable lug and a lug pad, the cable lug being attached to an electrical cable and having at least two lug holes, the lug pad having at least two pad holes. The method further includes adjusting the cable lug in an angled position relative to the lug pad while each of the at least two lug holes is aligned with a respective one of the at least two pad holes. The cable lug is secured to the lug pad in the angled position.
Additional aspects of the invention will be apparent to those of ordinary skill in the art in view of the detailed description of various embodiments, which is made with reference to the drawings, a brief description of which is provided below.
The invention may best be understood by reference to the following description taken in conjunction with the accompanying drawings.
Referring to
For ease of understanding, only the left connection between the left electrical cable 102a and the left pad 106a will be described. However, it is understood that the right connection between the right cable 102b and the right pad 106b and the center connection between the center cables 102c, 102d and the center pad 106c are substantially similar, if not identical, to the left connection.
The left cable 102a has a cable lug 108 that is fastened directly to the left pad 106a via a plurality of bolts 110. Specifically, the bolts 110 are inserted through respective lug holes of the cable lug 108 and are received by respective circular holes 112 of the left pad 106a. To provide adequate mounting strength, the connection between the cable lug 108 and the left pad 106a is required to have at least two bolts 110 fastened within respective circular holes 112 with respective nuts (not shown).
The connection of the cable lug 108 to the left pad 106a requires a field installer to maneuver the left cable 102a in position, by twisting or bending the left cable 102a such that the pattern of bolts 110 is aligned with the pattern of circular holes 112. For example a vertical distance B between a pair of bolts 110 must be vertically overlapping with a vertical distance C between a pair of corresponding circular holes 112.
The required vertical alignment between corresponding bolts 110 and circular holes 112 can be achieved only by having a connecting end 103 of the left cable 102a placed in a vertical position relative to the bottom end (or floor) of the electrical enclosure 100. The connecting end 103 is received within a barrel 109 of the cable lug 108. The vertical position of the connecting end 103 and the barrel 109 is required over a distance D. In-between the distances D (of the connecting end 103 and barrel 109) and L (of the vertical linear portion of the right conduit 104a), the left cable 102a is angularly bent to achieve the required mounting between the cable lug 108 and the left pad 106a.
Referring to
Based on the angular adjustable positioning, the right connection (with the slotted pad 200) can be much closer to the bottom end of the electrical enclosure 100. Specifically, bending space required within the electrical enclosure 100 for mounting the right cable 102b decreases in accordance with a distance X when using radiused slotted holes 202, instead of using circular holes 112. The requirement of vertical alignment over distances B and C when using circular holes 112 is no longer necessary. The radiused slotted holes, as explained in more detail below, removes that requirement and provides several advantages.
For example, one advantage provided by the radiused slotted holes 202 is that it eliminates one of the bends in the right cable 102b. In turn, this reduces the required height in the electrical enclosure 100, between the bottom end (or floor) of the electrical enclosure 100 and the position of the slotted pad 200. For example, using conventional cable bending space allowance calculations and assuming a cable size of 500 kcmil with a cable outside diameter of 1.53 inches, creating an inside bend radius of 18.36 inches, and having the right pad 106b spaced apart from the center pad 106c at a distance of 7.88 inches, the height reduction X is approximately 16.62 inches, reducing an initial height of 46 inches to 29.39 inches. Assuming a total enclosure height of about 90 inches, such a reduction can free up to 18.5% of the space in the enclosure.
Another advantage provided by the radiused slotted holes 202 is that it reduces load stresses on attachment between the slotted pad 200 and a bus bar (such as the bus bar 515 shown in
Referring to
The slotted pad 200 includes a mounting portion 204 for mounting the slotted pad 200 to one or more electrical junctions (as illustrated in
Referring to
According to one example, the angles α and β are each symmetrically angled at 30° relative to the vertical central axis, having a total angle θ of 60° between the two angles α and β. These angle sizes are adequate for a standard bolt spacing in which the bolt size is 0.5 inches and the bolt spacing Y is 1.75 inches.
Referring to
Referring to
The lug pads are mounted to the cable lugs 508 via a plurality of bolts 510. The lug pads are further mounted to insulators 511 and, as described below, to the electrical devices 505.
Referring to
According to other examples, a slotted pad can include other optional features. For example, one feature can include bearings to allow rotation of the cable relative to the slotted pad during installation.
While particular embodiments, aspects, and applications of the present invention have been illustrated and described, it is to be understood that the invention is not limited to the precise construction and compositions disclosed herein and that various modifications, changes, and variations may be apparent from the foregoing descriptions without departing from the spirit and scope of the invention as defined in the appended claims.
Number | Name | Date | Kind |
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5195912 | Lintott | Mar 1993 | A |
6971926 | Walton | Dec 2005 | B1 |
7780488 | Robertson | Aug 2010 | B2 |
Number | Date | Country | |
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20130273771 A1 | Oct 2013 | US |