Pad extending member
10673190 ยท 2020-06-02
Assignee
Inventors
Cpc classification
H01R11/07
ELECTRICITY
H01R11/01
ELECTRICITY
H01R25/168
ELECTRICITY
H01R25/162
ELECTRICITY
International classification
H01R25/16
ELECTRICITY
H01R11/07
ELECTRICITY
Abstract
A pad extender for connecting a conductor cable to a transformer. The pad extender includes a planar body including a first portion and a second portion, the first portion having a first portion length. The pad extender further includes an elongate slot defined in the first portion of the planar body, the elongate slot extending along a majority of the first portion length. The pad extender further includes at least one aperture defined in the second portion of the planar body. Wherein the planar body is slidable relative to the transformer along the elongate slot.
Claims
1. A pad extender for connecting a conductor cable to a transformer, the pad extender comprising: a planar body including a first portion and a second portion, the first portion having a first portion length; an elongate slot defined in the first portion of the planar body, the elongate slot extending along a majority of the first portion length; and at least one aperture defined in the second portion of the planar body; wherein the planar body is linearly slidable along the elongate slot at a fixed distance from the transformer.
2. The pad extender of claim 1, wherein the elongate slot is a first elongate slot, and further comprising a second elongate slot defined in the first portion of the planar body extending along a majority of the first portion length.
3. The pad extender of claim 2, wherein the first elongate slot and the second elongate slot are parallel to one other.
4. The pad extender of claim 1, wherein the second portion of the planar body includes at least two apertures defined therein, the two apertures spaced apart in a direction parallel to the elongate slot.
5. The pad extender of claim 4, wherein the second portion of the planar body includes at least four apertures defined therein, two of the four apertures spaced apart in the direction parallel to the elongate slot, and two of the four apertures spaced apart in a direction perpendicular to the elongate slot.
6. The pad extender of claim 1, wherein the first portion of the planar body has a first axis along a longest dimension of the first portion and the second portion of the planar body has a second axis along a longest dimension of the second portion, the first axis and the second axis being perpendicular to one another.
7. The pad extender of claim 6, wherein the planar body is T-shaped.
8. A pad extender for connecting a conductor cable to a transformer, the pad extender comprising: a body including a first transformer connection portion and a second conductor cable connection portion, the first transformer connection portion having a first portion length; a first linear elongate slot defined in the first transformer connection portion of the body, the elongate slot extending along a majority of the first portion length; at least one aperture defined in the second conductor cable connection portion of the body; and a second linear elongate slot defined in the first transformer connection portion of the body, the second linear elongate slot extending parallel to the first linear elongate slot.
9. The pad extender of claim 8, wherein the body is a planar body.
10. The pad extender of claim 9, wherein the planar body is T-shaped.
11. The pad extender of claim 8, wherein the at least one aperture defined in the second conductor cable connection portion includes at least two apertures, the two apertures spaced apart in a direction parallel to the first linear elongate slot.
12. The pad extender of claim 8, wherein the at least one aperture defined in the second conductor cable connection portion includes a plurality of apertures arranged in a grid having columns and rows of apertures.
13. The pad extender of claim 12, wherein the rows of apertures are spaced apart from one another by an aperture row spacing extending in a direction parallel to the first linear elongate slot, and the columns of apertures are spaced apart from one another by an aperture column spacing extending in a direction perpendicular to the first linear elongate slot.
14. The pad extender of claim 12, wherein the apertures are uniform relative to one another.
15. The pad extender of claim 8, wherein the first linear elongate slot and the second linear elongate slot each extend linearly along the majority of the first portion length.
16. The pad extender of claim 15, wherein the first transformer connection portion has a first axis arranged along a longest dimension of the first transformer connection portion, and the first linear elongate slot extends parallel to the first axis.
17. The pad extender of claim 8, wherein each of the first linear elongate slot and the second linear elongate slot each extend along a slot length, and the first linear elongate slot and the second linear elongate slot are spaced apart from one another by a slot spacing extending in a direction perpendicular to the slot length.
18. The pad extender of claim 17, wherein the first linear elongate slot and the second linear elongate slot have the same slot length.
19. An extender assembly connecting a conductor cable to a transformer, the extender assembly comprising: a lug terminal member connected to the transformer, the lug terminal member extending from the transformer in a first direction and including a terminal aperture defined therein; a pad extender having a first portion and a second portion, the first portion including an elongate slot defined therein, the elongate slot having a longest dimension extending in a second direction perpendicular to the first direction, the second portion including a second portion aperture defined therein; a first fastener extending through both the terminal aperture and the elongate slot to connect the lug terminal member to the first portion of the pad extender; a connector coupled to a free end of the conductor cable, the connector including a connector aperture defined therein; and a second fastener extending through both the second portion aperture and the connector aperture to connect the second portion of the pad extender to the connector.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(11) Before any embodiments are explained in detail, it is to be understood that the disclosure is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The disclosure is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. Use of including and comprising and variations thereof as used herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. Use of consisting of and variations thereof as used herein is meant to encompass only the items listed thereafter and equivalents thereof. Unless specified or limited otherwise, the terms mounted, connected, supported, and coupled and variations thereof are used broadly and encompass both direct and indirect mountings, connections, supports, and couplings.
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(13) With continued reference to
(14) With reference to
(15) With continued reference to
(16) Each of the slots 20 also has a slot length 32. In the illustrated embodiment, the slot length 32 of each of the slots 20 is within a range of approximately 7 inches to approximately 9 inches (e.g., approximately 8 inches). In other embodiments, the overall length may be another suitable length.
(17) With continued reference to
(18) In some embodiments, the pad extender 10 may be made from copper (e.g., C110 Copper), aluminum (e.g., 6061-T6 Aluminum), or any other suitable conductive material. In some embodiments, the pad extender 10 is extruded. In some embodiments, the pad extender 10 may be tin plated.
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(20) With reference to
(21) Dimensions of the pad extender 210 of
(22) Dimensions of the pad extender 310 of
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(25) Referring to
(26) In order to couple the conductor cable 56 to the replacement transformer 90 without splicing in additional conductor cable, each of the slots 20 of the first portion 16 of the pad extender 10 is aligned with one of two columns of the terminal apertures 76 of the flat plate portion 74 of the lug terminal member 70. Once aligned, the slots 20 and the terminal apertures 76 may receive first fasteners 84 (e.g., bolts) to couple the first portion 16 of the pad extender 10 to the flat plate portion 74 of the lug terminal member 70.
(27) The connector 50 may be coupled to the free end of the conductor cable 56 by the cable clamping portion 52. The connector apertures 60 of the connector 50 may then be aligned with two vertically aligned apertures 22 of the second portion 18 of the pad extender 10. Once aligned, the connector apertures 60 of the flat pad lug portion 54 and the apertures 22 of the second portion 18 of the pad extender 10 may receive second fasteners 86 (e.g., bolts) to couple the connector 50 to the second portion 18 of the pad extender 10.
(28) However, if the connector 50 does not reach the second portion 18 of the pad extender 10 such that the connector apertures 60 of the flat pad lug portion 54 cannot be aligned with two vertically aligned terminal apertures 76 of the lug terminal member 70, a position of the pad extender 10 may be adjusted by sliding the pad extender 10 relative to the lug terminal member 70 along the slots 20 between an upper position relative to the lug terminal member 70 (see
(29) Alternatively, the connector 50 may be connected to the second portion 18 of the pad extender 10 via the second fasteners 86 before connecting the first portion 16 of the pad extender 10 to the lug terminal member 70 via the first fasteners 84 extending through the slots 20.
(30) Once the first portion 16 of the pad extender 10 is coupled to the flat plate portion 74 of the lug terminal member 70 and the connector 50 is coupled to the second portion 18 of the pad extender 10, an electrical connection between the conductor cable 56 and the transformer 90 is established.
(31) Additionally, in some embodiments, when the pad extender 10 is coupled to the lug terminal member 70, the first axis A of the first portion 16 extends substantially perpendicular to the longitudinal axis C of the lug terminal member 70, while the second axis B of the second portion 18 extends substantially parallel to and offset from the longitudinal axis C of the lug terminal member 70. This allows the connectors 50 to be aligned with the apertures 22 of the second portion 18 in the same orientation as if they were aligned with the terminal apertures 76 of the lug terminal member 70. Accordingly, an offset distance 94 (
(32) Although not shown, in some embodiments, stacking-type terminal lugs can also be used where more conductor connections are required than available mounting positions.
(33) In addition, the pad extender may be made to meet performance requirements of ANSI C119.4.
(34) In general, the pad extender includes a pair of slots that allow the pad extender to be adjusted up and down, eliminating the need for splicing in additional conductor cable to the existing conductor cable to increase the conductor cables length.
(35) Although aspects have been described in detail with reference to certain preferred embodiments, variations and modifications exist within the scope and spirit of one or more independent aspects as described. Further information concerning additional embodiments of the application may be found in the attached Appendix. Various features and advantages are set forth in the following claims.