Claims
- 1. An interconnection of two flat power cables each having at least one flat conductor therein, comprising:
- a first flat power cable having at least one flat conductor therein, and a second flat power cable having a corresponding at least one flat conductor therein;
- at least one interconnecting structure assembly corresponding to each said at least one conductor, each said assembly having an upper structure and a lower structure joined together with selected sections of said first and second cables disposed therebetween, each said assembly having an interconnection region including a plurality of wave shapes alternating with relief recesses along a cable-proximate surface of said upper structure, and a cooperating plurality of wave shapes and alternating relief recesses along a cable-proximate surface of said lower structure, each said wave shape being opposed by a said relief recess, and said wave shapes of said upper and lower structures being adapted to at least press associated overlying sheared conductor strips of identical width into said opposing relief recesses so that edges of said conductor strips are disposed against metal surfaces defining side edges of adjacent ones of said wave shapes for electrical connection therewith; and
- each said upper and associated lower assembly having a width to extend transversely across less than one-half the width of a said cable from an associated side edge thereof, such that the said interconnecting structures can be associated with a respective lateral portion of said cables and be positioned aligned transversely across the cable spaced from each other for electrical circuit isolation, to minimize the axial length of the resulting interconnection and be enclosed within housing means of corresponding minimal axial length.
- 2. An interconnection as set forth in claim 1 wherein said interconnection regions of each of said upper and lower structures are intermatable when opposed and aligned with wave shapes of one opposing relief recesses of the other, whereby said structures are identical and hermaphroditic.
- 3. An interconnection as set forth in claim 1 wherein each said upper and lower structure includes a pair of wave shapes alternating with a pair of relief recesses of equal width adapted to receive thereinto a pair of wave shapes of the opposing one of said upper and lower structure and conductor strips pressed out of the cable plane thereby upon termination.
- 4. An interconnection as set forth in claim 1 wherein each said upper and lower structure includes an adapter member disposed adjacent a major surface of one of said first and second cables, and an insert member disposed securely along a cable-remote surface of a respective said adapter member, wherein said insert members provide a substantial portion of the electrical engagement surface adjacent said edges of said conductor strips.
- 5. An interconnection as set forth in claim 1 wherein each of said first and second cables includes first and second flat conductors spaced from each other by a medial strip of insulative material, said first conductors interconnected together by a first said interconnecting structure assembly and said second conductors interconnected together by a second said interconnecting structure assembly.
- 6. An interconnection as set forth in claim 1 wherein said selected section of one of said first and second cables is an end section, and said interconnection defines a tap connection of a tap cable to a main cable.
- 7. An interconnection as set forth in claim 1 further including housing means enclosing said interconnection.
- 8. An interconnection as set forth in claim 7 wherein said housing means comprises a pair of housing covers self-securable together about said interconnection.
- 9. An interconnection as set forth in claim 7 wherein said housing means includes resilient cable-clamping means for firmly clamping major side surfaces of each at least one said first and second cables extending from said interconnection, providing assured insulation at the cable exits of the interconnection and vibration resistance for at least a limited range of cable thicknesses at said cable exits.
- 10. An interconnection as set forth in claim 1 wherein said cables include respective medial slots vertically aligned upon stacking prior to termination, and said interconnecting structure assemblies are terminated on respective sides of said medial slots.
- 11. An interconnection as set forth in claim 10 further including housing means enclosing said interconnection.
- 12. An interconnection as set forth in claim 11 wherein said housing means includes dielectric structure extending vertically through said aligned medial slots and between said interconnecting structure assemblies.
- 13. An assembly for interconnecting first and second flat power cables each having at least one flat conductor therein, comprising:
- at least one interconnecting structure assembly corresponding to each said at least one conductor, each said assembly having an upper structure and a lower structure adapted to be matable therewith to be joined together upon application to said first and second cables with selected sections of said first and second cables disposed therebetween, each said assembly having an interconnection region including a plurality of wave shapes alternating with relief recesses along a cable-proximate surface of said upper structure, and a cooperating plurality of wave shapes and alternating relief recesses along a cable-proximate surface of said lower structure, each said wave shape being opposed by a said relief recess, and said wave shapes of said upper and lower structures being adapted to at least press associated overlying sheared conductor strips of identical width into said opposing relief recesses so that edges of said conductor strips will be disposed against metal surfaces defining side edges of adjacent ones of said wave shapes for electrical connection therewith; and
- each said upper and associated lower assembly having a width to extend transversely across less than one-half the width of a said cable from an associated side edge thereof, such that the said interconnecting structures can be associated with a respective lateral portion of said cables and be positioned aligned transversely across the cable spaced from each other for electrical circuit isolation, to minimize the axial length of the resulting interconnection and be enclosed within housing means of corresponding minimal axial length.
- 14. An assembly as set forth in claim 13 wherein said interconnection regions of each of said upper and lower structures are intermatable when opposed and aligned with wave shapes of one opposing relief recesses of the other, whereby said structures are identical and hermaphroditic.
- 15. An assembly as set forth in claim 13 wherein each said upper and lower structure includes a pair of wave shapes alternating with a pair of relief recesses of equal width adapted to receive thereinto a pair of wave shapes of the opposing one of said upper and lower structure and conductor strips pressed out of the cable plane thereby upon termination.
- 16. An assembly as set forth in claim 13 further comprising a spaced apart pair of upper insert members associated with respective lateral sides of said first and second cables, both secured to respective lateral sections of an upper adapter member, said lateral sections thereof initially joined together by ligature means associated with narrow media regions of said first and second cables, and further comprising a spaced apart pair of lower insert members associated with respective lateral sides of said first and second cables, both secured to respective lateral sections of a lower adapter member, said lateral sections thereof initially joined together by ligature means associated with narrow media regions of said first and second cables, whereby removal of said ligature means after application of said upper and lower structures to said first and second cables separates the lateral sections of said upper and lower adapter members and defines electrically isolated structures interconnecting conductor means of said first and second cables along both lateral sides thereof.
- 17. An assembly as set forth in claim 13 wherein each said upper and lower structure includes an adapter member disposed adjacent a major surface of one of said first and second cables, and an insert member disposed securely along a cable-remote surface of a respective said adapter member, wherein said insert members provide a substantial portion of the electrical engagement surface adjacent said edges of said conductor strips.
- 18. An assembly as set forth in claim 17 wherein each of said adapter members of said upper and lower structures includes at least one end section extending axially from said interconnection region thereof, said at least one end section of each said adapter member associated with and opposed from said at least one end section of the other said adapter member for application to said cables such that said associated opposed end sections are disposed against major surfaces of said first and second flat cables, one said end section including at least one tab-receiving recess along a lateral edge thereof, and the other said end section including at least one tab section extending vertically from a lateral edge thereof toward an associated said tab-receiving recess of said one end section and adapted to be received therethrough upon said adapter members being applied to said cables and thereafter be bent over against the remote surface of said one end section, securing said adapter members together and to said first and second cables.
- 19. An assembly as set forth in claim 18 wherein each said adapter member includes two said end sections extending axially in opposed directions from said interconnection region thereof.
- 20. An assembly as set forth in claim 19 wherein each said adapter member includes a pair of said tab sections along a common firs lateral edge each extending from a respective one of said end sections, and further including a pair of said tab-receiving recesses along a common second lateral edge each along a respective one of said end sections, whereby said adapter members are identical and hermaphroditic.
- 21. An assembly asset forth in claim 13 further including housing means enclosing said interconnection.
- 22. An assembly as set forth in claim 21 wherein said interconnection includes dielectric structure extending vertically through aligned medial slots of said first and second cables and between said interconnecting structure assemblies.
- 23. An assembly as set forth in claim 21 wherein said housing means comprises a pair of housing covers self-securable together about said interconnection.
- 24. An assembly as set forth in claim 23 wherein said housing covers include dielectric structure extending vertically through aligned medial slots of said first and second cables and between said interconnecting structure assemblies.
- 25. An assembly as set forth in claim 23 wherein said housing covers are identical and hermaphroditic.
- 26. An assembly as set forth in claim 23 wherein said hermaphroditic housing covers include respective dielectric structures extending vertically through aligned medial slots of said first and second cables and between said interconnecting structure assemblies, said dielectric structures comprising axially extending wall sections laterally offset from the center, thereby being adapted to extend past each other upon said hermaphroditic housing covers being secured together about said interconnection.
- 27. An assembly as set forth in claim 23 wherein said housing covers include respective resilient cable-clamping means for firmly clamping major side surfaces of at least a first said cable extending from said interconnection and defining a first cable exit, providing assured insulation at said first cable exit of the interconnection and vibration resistance for at least a limited range of cable thicknesses at said cable exit.
- 28. An assembly as set forth in claim 27 wherein said cable-clamping means is integral with said housing covers and comprises cable-engaging platforms deflectable outwardly against spring bias upon cable engagement into relief slots therebehind.
- 29. A method of interconnecting a pair of flat cables, comprising the steps of:
- preparing the cables by forming an axially extending slot along the center of each said cable at a selected interconnection site;
- placing one said cable over the other parallel thereto and aligning said slots vertically, and aligning conductor means of an upper one of said stacked cables with a lower one thereof to be interconnected;
- applying on each lateral side of said slots a respective at least one pair of upper and lower conductive interconnecting structures to an upwardly facing surface of said upper one of said stacked cables and a downwardly facing surface of said lower one of said stacked cables respectively, for portions of said conductive interconnecting structures to enter electrical engagement with portions of associated said conductor means of upper and lower ones of said cables to be interconnected, thus electrically interconnecting said associated conductor means of said cables, said respective at least one pair of conductive interconnecting means on each side of said slot being spaced from the other thereof at said slots; and
- applying housing means about said interconnecting site enclosing said conductive interconnecting structures and said portions of said associated conductor means so that a vertical portion of said housing means extends through said slots between said conductive interconnecting structures, whereby the conductive interconnecting structures are electrically isolated by dielectric material of said housing means.
- 30. A method of interconnecting a pair of flat cables, comprising the steps of:
- placing one said cable over the other parallel thereto and aligning conductor means of an upper one of said stacked cables with a lower one thereof to be interconnected;
- selecting upper and lower conductive interconnecting structures each having lateral sections joined initially by ligature means to extends transversely across a width of said cable, with said ligature means associated with a narrow medial region of said cable;
- applying said upper and lower conductive interconnecting structures to an upwardly facing surface of said upper one of said stacked cables and a downwardly facing surface of said lower one of said stacked cables with said ligature means extending across said narrow medial regions of said stacked cables, for said lateral sections of said conductive interconnecting structures to enter electrical engagement with potions of associated said conductor means of upper and lower ones of said cables to be interconnected, thus electrically interconnecting said associated conductor means of said cables;
- shearing and thereby removing said ligature means and adjacent narrow medial portions of said stacked cables, thereby separating said lateral sections of said upper and lower conductive interconnecting structures and defining electrically isolated interconnecting means and forming aligned axially extending slots along the center of said stacked cables; and
- applying housing means about said interconnection site enclosing said conductive interconnecting structures and said portions of said associated conductor means so that a vertical portion of said housing means extends through said slots between said conductive interconnecting structures, whereby the conductive interconnecting structures are electrically isolated by dielectric material of said housing means.
- 31. A pair of adapter members for interconnecting selected portions of first and second flat cables with the selected potions being superposed and having aligned side edges defining a known common width and including associated conductor means to be electrically interconnected, comprising:
- first and second adapter members each having an electrical interconnection region, at least said first adapter member including a plurality of bosses extending from a cable-proximate surface thereof and at least said second adapter member including a like plurality of corresponding boss-receiving recesses, said bosses adapted to extend through the planes of said first and second flat cables and enter respective said boss-receiving to establish electrical connections between said cable conductors; and
- each of said first and second adapter members including end sections extending axially from opposing ends of said interconnection region thereof, said end sections having a transverse dimension at least as wide as said known common width of said selected cable portions and defined transversely between first and opposed second common lateral edges, said end sections of each said adapter ember associated with an opposed from said end sections of the other said adapter member for application to said selected cable portions such that said associated opposed end sections are disposed against major surfaces of said first and second flat cables, each said end section including at least one tab-receiving recess along and extending inwardly from said first lateral edge thereof, and including at least one tab section extending outwardly from said second lateral edge thereof and bent vertically toward an associated said tab-receiving recess of an associated said end section along said first lateral edge thereof, each said tab section thereby extending past said aligned side edges of said selected cable portions and adapted to be received therethrough said first and second adapter members have been pressed onto said cable portions interconnecting said conductors, and thereafter be bent over against a remote surface of said associated end section towards said second lateral edge of said associated adapter member, securing said adapter members together and to said first and second cables about said selected portions thereof without penetrating insulation of said cable portions, thereby not tending to relatively misalign said bosses and said boss-receiving recesses during termination to said cable portions.
- 32. A pair of adapter members as set forth in claim 31 wherein said interconnection region of each said adapter member includes a plurality of said bosses extending from a cable-proximate surface alternating with a like plurality of said boss-receiving recesses and is thus intermatable with a like interconnection region of the other adapter member when the firs and second adapter members are properly aligned with bosses of one opposing recesses of the other, whereby said first and second adapter members are identical and hermaphroditic.
REFERENCE TO RELATED APPLICATIONS
This is a Continuation-in-part of U.S. Pat. application Ser. No. 07/338,079 filed Apr. 14, 1989, now U.S. Pat. No. 4,915,650 and a Continuation-in-Part of U.S. Pat. application Ser. No. 07/341,864 filed Apr. 21, 1989, now U.S. Pat. No. 4,900,264.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2070347 |
Sep 1981 |
GBX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
338079 |
Apr 1989 |
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