US3474386A - Electrical connector - Google Patents

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US3474386A
US3474386A US748142*A US3474386DA US3474386A US 3474386 A US3474386 A US 3474386A US 3474386D A US3474386D A US 3474386DA US 3474386 A US3474386 A US 3474386A
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sleeve
recess
plug
conductive element
insulating
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Edwin A Link
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/53Bases or cases for heavy duty; Bases or cases for high voltage with means for preventing corona or arcing

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  • the invention disclosed herein provides an electrical connector for disconnecting high voltage cables that can be used with a maximum of safety for disconnecting any high voltage cable.
  • This electrical connector includes a plug having an insulated follower associated with the end of an electrically conductive member and a receptacle having an insulated sleeve positioned at the entry end of an electrically conductive sleeve.
  • the insulated follower and insulated sleeve are both made of an arc extinguishing material which is activated on drawing an arc across the gap between the two conductive members on disconnection of the electrically conductive members.
  • the heat of the arc is dissipated by the arc extinguishing material, setting up a de-ionized zone in the small space remaining between the follower and sleeve. This de-ionized zone will interrupt current flow in two to four cycles after separation is made at the plug and as a consequence extinguishes the arc.
  • the plug hood is molded from an elastomer material having elastic characteristics which are important in several respects
  • a hook-eye provided in the hood provides ice an energy storage in disconnecting the plug from the receptacle due to the elasticity of the material similar to the action of a spring once the other end is released.
  • An annular groove is provided on the end of the receptacle which cooperates with a ring in the plug to provide a holding action on disconnection of the plug from the receptacle.
  • the plug and receptacle are further designed for a close moisture-tight fit that adds some holding force due to the vacuum set up between the plug and receptacle on disconnection. On release of the plug from the receptacle, a snap action occurs which results in practically instantaneous disconnection.
  • Cable termination at the plug is made by stripping the concentric stranding back from the end of the cable and removing the conductive sleeve to bare the high voltage insulation.
  • a terminal lug is crimped to the end of the conductor and inserted into a recess molded in the plug hood.
  • the recess is filled with a grease-like insulating material which will fill the voids around the end of the cable in the recess.
  • An electrically conductive member is screwed into the terminal lug within the plug and conductive tape is wrapped around the end of the preformed stress cone in the plug. Termination is then complete.
  • This termination arrangement has been found to be particularly advantageous because of its low cost and simplicity while providing a maximum of safety for handling the plug after termination.
  • FIG. 1 is a side View of an electrical connector in section with the plug and receptacle in engagement.
  • FIG. 2 is a view similar to FIG. 1 showing the plug and receptacle disengaged.
  • FIG. 3 is a view of a modified connector showing the electrically conductive members electrically connected and the insulated members disengaged.
  • FIG. 4 is similar to FIG. 3 showing the electrically conductive members disengaged and the insulated members engaged.
  • the electrical connector shown is described in connection with its adaption for use with a ground level transformer. It should be obvious that the use of such a connector is not so limited. The concept of this electrical connector can be used in any application where it is desirable to eliminate the hazard of an electrical are when breaking or disconnecting a high voltage electric cable.
  • High voltage as used herein refers to cables designed to carry one thousand volts or more.
  • an electrical connector which includes a plug assembly 10 and a receptacle assembly 12 each having a surface that produces a seal on connection.
  • Each assembly includes an electrically conductive element which produces an arc on disconnection from the other element and is provided with means for extinguishing the are produced on disconnection of the electrically conductive elements mounted in the assembly.
  • the plug assembly includes a first member or hood 14- molded from an insulating material such as elastomer rubber and is providedwith a hook eye 17, an electrical connection recess 16 and a cable termination recess 18.
  • the receptacle assembly includes second member or bushing 40 made from any of the known organic insulating materials as well as the inorganic materials such as glass or porcelain.
  • the bushing is provided with a central recess 42 and a flange 44 having a threaded section 46 for mounting on a panel 52.
  • Cable termination is made in the plug assembly by inserting the end of a high voltage cable 22 into the cable termination recess.
  • the cable is prepared for termination by stripping the concentric stranding 23 back from the end of the cable and grounding it by any appropriate means.
  • the conductive sleeve 25 is removed to bare the high voltage insulation 27.
  • a terminal lug 24 is crimped to the end of the cable and has a nut 28 secured to the end.
  • the cable termination recess is filled with a grease-like material prior to insertion of the cable and upon insertion will fill the voids around the cable.
  • the terminal lug is secured in the recess by screwing a first electrically conductive element or member 26 into nut 28 so that it projects into recess 16.
  • An electrically conductive tape is then wrapped around the end of the recess which forms a stress cone with the preformed shape of end of the hood.
  • an insulating means or member 30 is secured to the end of the electrical conductive element 26.
  • the insulating member 30 can be made from any of the well-known arc extinguishing insulating materials, such as hard vulcanized fiber, and the family of plastics known as acrylics, and polytetrafiuoroethylene.
  • the electrical element 26 and insulating member 30 are both cylindrical and have substantially the same diameter.
  • the insulating member 30 is secured to the element by means of a ball shaped connector 32 which is inserted into an opening 34 in the end of the electrical element 26. This type of connection is shown by way of example only since any means may be used to secure the insulating member 30 on the element 26.
  • the bushing is mounted on a panel or wall by inserting elongated end 48 through an opening 50 in a wall 52 and screwing a nut 51 onto the threaded section 46.
  • a gasket 53 may be provided between the wall and bushing to seal the bushing to the Wall.
  • An O-ring seal may be provided on the end of the threaded section to provide a fluid-type mounting if the bushing is mounted in the side Wall of an oil-filled transformer.
  • An electrically conductive conductor 54 is coaxially mounted in the bushing and is provided with a threaded recess 56 for connection to a high voltage line.
  • a second electrically conductive element or sleeve '58 is positioned within recess 42 and is connected to conductor 54 by a screw 60.
  • a small diameter section 62 is provided at the end of the sleeve 58 to electrically engage the conductive element or member 26.
  • Slots 64 may be provided in the sleeve 58 to allow for a certain amount of flexure at the reduced diameter section of the sleeve 58.
  • An arc extinguishing electrically non-conductive sleeve or insulating means 66 is positioned at the end of the recess and abuts the end of the electrically conductive sleeve 58.
  • the inside diameter of the sleeve 58 is slightly larger than the outside diameter of the member 26 to provide a snug fit between the two insulating members 14 and 16.
  • the elongated section of the bushing is tapered at the same angle as the taper in recess 16 in the plug.
  • a snug fit is, therefore, provided between the receptacle and plug and is moisture proofed by coating the surfaces with a grease-like material prior to connection of the plug and receptacle.
  • a groove 38 may be provided near the end of the elongate section which engages annular projection 36 in recess 16 to hold the plug and receptacle in engagement. The annular groove cooperates with the ring in the plug to provide a holding or looking action when the plug is fully seated in the receptacle.
  • the snug fit between the plug and receptacle will also provide some holding action due to the vacuum set up between the plug and receptacle when a force is applied to disconnect them.
  • a force will be applied to the hook eye and either the ring and groove or the snug fit of the plug and receptacle or both will initially prevent disconnection, causing a slight elongation of the plug due to its elastic characteristic.
  • the disconnecting force is sufiicient to overcome this holding action, the plug will disconnect from the receptacle with a snap action due to the energy stored in elongating the lug.
  • insulating member 30 is telescopically inserted in sleeve 66 and the elongated section 48 is aligned with recess 16.
  • the plug is then pushed onto the receptacle until the end of member 26 is telescoped into mating engagement with the reduced diameter section 62 of the sleeve 58 and electrically engages the end of member 26.
  • the inner end of the elongated section will then be seated in the recess with the inwardly projecting section seated in the groove of the receptacle.
  • FIGS. 3 and 4 a modified arrangement is shown which can be used to accomplish the same result.
  • the receptacle is shown in phantom and is provided within a non-conductive insulating sleeve 70 forming an extension of the end of an electrically conductive sleeve or element 72 within recess 74.
  • An electrically non-conductive cap 76 is positioned within the electrically conductive sleeve 72 and is biased by spring 78 outwardly of the sleeve 72.
  • An outwardly projecting flange 80 is provided at the open end of the cap 72 to engage the reduced diameter section 82 of the sleeve to retain the cap within the sleeve.
  • the end of electrically conductive element 84 will force the cap 76 into the sleeve 72 against the compressive force of the spring 78. No electrical connection will be made until the end of the conductive element engages the reduced diameter section of the sleeve 72.
  • the electrically-conductive element 84 is withdrawn from the sleeve 72 and the cap follows the motion of the conductor as it is pulled out of the sleeve 72. The cap will, therefore, provide a high dielectric medium in the gap between the two conductors, extinguishing any arc produced.
  • An electrical connector for disconnecting high voltage conductors comprising a first insulating member having a connection recess with an inner surface
  • said conductive element being adapted for connection to a high voltage conductor
  • connection inlet having a connection inlet and an outer surface conforming to said connection recess inner surface to produce a seal on insertion of said second member into said connection recess
  • a second electrically conductive element positioned in said connection inlet for engagement with said first conductive element on insertion of said first electrically conductive element into said inlet
  • An electrical connector according to claim- 1 Wherein said insulating means includes a. cap mountedfor reciprocal motion within said conductive sleeve and: spring means for biasing the cap outward from said second conductive element. 1 4. An-electrical connector according to claim 1 wherein said interior surface is'tapered and said outer-surface is tapered. 5.
  • An electrical connector comprising t ea-first insulating member having a recess-with an inne 'surface, I a firstelectrically conductive element mounted in said first member and projecting axially'into said recess, means for connecting said-first conductive element to a high voltage conductor, 1 a second insulating member having an elongate section shaped for insertion into said recess :and having an: opening for receiving said first conductive element, saidelongate section havingan oute'rsurface conformable to-said inner surface of said recess to form a seal'on connection,
  • a first insulating means of arc extinguishing material positioned adjacent to the entry end of said opening for initial engagement with said first conductive element on insertion into said opening
  • An electrical connector comprising a first insulating member having a first recess
  • a second insulating member having an elongate section shaped for mating engagement with said first recess, said second member including an electrically conductive sleeve adapted to be connected to a high voltage apparatus,
  • first insulating means of arc extinguishing material mounted :adjacent to the entry end of said sleeve for engagement with said conductive element on insertion of said conductive element into said sleeve, and
  • a second insulating means of arc extinguishing material mounted on said conductive element for engagement with said first insulating means on insertion of said conductive element into said sleeve and for engagement vwith said first insulating means last on withdrawal of said conductive element from said sleeve.
  • said first insulating member is formed from an elastic insulating material and includes holding means for engaging said second insulating member,
  • a connector according to claim 10 wherein said holding means comprises an :annular ring in said recess and an annular groove in said elongate shaped section located in a position to engage said ring on insertion of said section into said recess.
  • connection connector comprising :a pair of insulating members, one of said members having a connection recess with an inner surface and the other of said members having a connection inlet and an outer surface conforming to said inner surface of said connection recess to produce a seal on insertion of said other of said members into said connection recess,
  • a pair of telescopically mating elements of arc extinguishing material associated with said pair of conductive contacts to momentarily move into the arc path between said conductive contacts when separated, one of said elements being a sleeve and the other of said elements being insertable into said sleeve,
  • At least one of said insulating members being of an elastomeric material to form the seal with the other insulating member
  • a second insulating member having an elongate section shaped to sealingly engage said recess and a connection inlet to receive said first electrically conductive element
  • a sleeve of arc extinguishing material positioned adjacent to the entry end of said connection inlet to engage said are extinguishing member first on insertion of said first conductive element into said conductive sleeve.

Description

Oct. 21, 1969 E. A. LINK 3,474,386
ELECTRICAL CONNECTOR Filed June 10, 1968 INVENTOR.
Edwin A. Link 22 BY L020 8 Barry Attorneys United States Patent US. Cl. 339-60 16 Claims ABSTRACT OF THE DISCLOSURE Disclosed herein is an electrical connector for high voltage cables having arc extinguishing devices associated with the ends of electrically conductive elements mounted in insulating members having cooperating surfaces to produce a seal on connection of said elements.
RELATED APPLICATION This application is a continuation of my copending application on the Electrical Connector, Ser. No. 343,527, filed Feb. 10, 1964, and now abandoned.
BACKGROUND OF THE INVENTION The electrical hazards commonly associated with the maintenance and repair of high voltage cables are well known. One of the principal hazards is the electric are which results on disconnection or breaking of a high voltage cable. This hazard has been particularly significant in the development of underground power distribution systems where the transformers are mounted at ground level and permanent type cable terminations have been made in order to obtain maximum safety. This has complicated the maintenance and repair of such systems because specially designed switch gear had to be located within the inaccessible compartment of the transformer in order to safely interrupt load current. It had been long recognized that faster and simpler means was required in order to interrupt load current with a minimum of interruption of customers service. If the interruption of load current could be made at the cable termination in the accessible compartment, then cable faults could be isolated in a matter of minutes once they have been located.
SUMMARY OF THE INVENTION The invention disclosed herein provides an electrical connector for disconnecting high voltage cables that can be used with a maximum of safety for disconnecting any high voltage cable. This electrical connector includes a plug having an insulated follower associated with the end of an electrically conductive member and a receptacle having an insulated sleeve positioned at the entry end of an electrically conductive sleeve. The insulated follower and insulated sleeve are both made of an arc extinguishing material which is activated on drawing an arc across the gap between the two conductive members on disconnection of the electrically conductive members. The heat of the arc is dissipated by the arc extinguishing material, setting up a de-ionized zone in the small space remaining between the follower and sleeve. This de-ionized zone will interrupt current flow in two to four cycles after separation is made at the plug and as a consequence extinguishes the arc.
The plug hood is molded from an elastomer material having elastic characteristics which are important in several respects A hook-eye provided in the hood provides ice an energy storage in disconnecting the plug from the receptacle due to the elasticity of the material similar to the action of a spring once the other end is released. An annular groove is provided on the end of the receptacle which cooperates with a ring in the plug to provide a holding action on disconnection of the plug from the receptacle. The plug and receptacle are further designed for a close moisture-tight fit that adds some holding force due to the vacuum set up between the plug and receptacle on disconnection. On release of the plug from the receptacle, a snap action occurs which results in practically instantaneous disconnection.
Cable termination at the plug is made by stripping the concentric stranding back from the end of the cable and removing the conductive sleeve to bare the high voltage insulation. A terminal lug is crimped to the end of the conductor and inserted into a recess molded in the plug hood. The recess is filled with a grease-like insulating material which will fill the voids around the end of the cable in the recess. An electrically conductive member is screwed into the terminal lug within the plug and conductive tape is wrapped around the end of the preformed stress cone in the plug. Termination is then complete. This termination arrangement has been found to be particularly advantageous because of its low cost and simplicity while providing a maximum of safety for handling the plug after termination.
Other objects and advantages will become more readily apparent from the following detailed description when read in conjunction with the accompanying drawings, in which:
FIG. 1 is a side View of an electrical connector in section with the plug and receptacle in engagement.
FIG. 2 is a view similar to FIG. 1 showing the plug and receptacle disengaged.
FIG. 3 is a view of a modified connector showing the electrically conductive members electrically connected and the insulated members disengaged.
FIG. 4 is similar to FIG. 3 showing the electrically conductive members disengaged and the insulated members engaged.
For purposes of illustration and description, the electrical connector shown is described in connection with its adaption for use with a ground level transformer. It should be obvious that the use of such a connector is not so limited. The concept of this electrical connector can be used in any application where it is desirable to eliminate the hazard of an electrical are when breaking or disconnecting a high voltage electric cable. High voltage as used herein refers to cables designed to carry one thousand volts or more.
Referring more particularly to the drawing, an electrical connector is shown which includes a plug assembly 10 and a receptacle assembly 12 each having a surface that produces a seal on connection. Each assembly includes an electrically conductive element which produces an arc on disconnection from the other element and is provided with means for extinguishing the are produced on disconnection of the electrically conductive elements mounted in the assembly.
More specifically, the plug assembly includes a first member or hood 14- molded from an insulating material such as elastomer rubber and is providedwith a hook eye 17, an electrical connection recess 16 and a cable termination recess 18. In the drawing, these recesses are shown transverse to each other but they could be coaxially arranged if desired. The receptacle assembly includes second member or bushing 40 made from any of the known organic insulating materials as well as the inorganic materials such as glass or porcelain. The bushing is provided with a central recess 42 and a flange 44 having a threaded section 46 for mounting on a panel 52.
Cable termination is made in the plug assembly by inserting the end of a high voltage cable 22 into the cable termination recess. The cable is prepared for termination by stripping the concentric stranding 23 back from the end of the cable and grounding it by any appropriate means. The conductive sleeve 25 is removed to bare the high voltage insulation 27. A terminal lug 24 is crimped to the end of the cable and has a nut 28 secured to the end. The cable termination recess is filled with a grease-like material prior to insertion of the cable and upon insertion will fill the voids around the cable. The terminal lug is secured in the recess by screwing a first electrically conductive element or member 26 into nut 28 so that it projects into recess 16. An electrically conductive tape is then wrapped around the end of the recess which forms a stress cone with the preformed shape of end of the hood.
In the embodiment shown in FIGS. 1 and 2, an insulating means or member 30 is secured to the end of the electrical conductive element 26. The insulating member 30 can be made from any of the well-known arc extinguishing insulating materials, such as hard vulcanized fiber, and the family of plastics known as acrylics, and polytetrafiuoroethylene. The electrical element 26 and insulating member 30 are both cylindrical and have substantially the same diameter. In the figures, the insulating member 30 is secured to the element by means of a ball shaped connector 32 which is inserted into an opening 34 in the end of the electrical element 26. This type of connection is shown by way of example only since any means may be used to secure the insulating member 30 on the element 26.
The bushing is mounted on a panel or wall by inserting elongated end 48 through an opening 50 in a wall 52 and screwing a nut 51 onto the threaded section 46. A gasket 53 may be provided between the wall and bushing to seal the bushing to the Wall. An O-ring seal may be provided on the end of the threaded section to provide a fluid-type mounting if the bushing is mounted in the side Wall of an oil-filled transformer. An electrically conductive conductor 54 is coaxially mounted in the bushing and is provided with a threaded recess 56 for connection to a high voltage line. A second electrically conductive element or sleeve '58 is positioned within recess 42 and is connected to conductor 54 by a screw 60. A small diameter section 62 is provided at the end of the sleeve 58 to electrically engage the conductive element or member 26. Slots 64 may be provided in the sleeve 58 to allow for a certain amount of flexure at the reduced diameter section of the sleeve 58. An arc extinguishing electrically non-conductive sleeve or insulating means 66 is positioned at the end of the recess and abuts the end of the electrically conductive sleeve 58. The inside diameter of the sleeve 58 is slightly larger than the outside diameter of the member 26 to provide a snug fit between the two insulating members 14 and 16.
The elongated section of the bushing is tapered at the same angle as the taper in recess 16 in the plug. A snug fit is, therefore, provided between the receptacle and plug and is moisture proofed by coating the surfaces with a grease-like material prior to connection of the plug and receptacle. A groove 38 may be provided near the end of the elongate section which engages annular projection 36 in recess 16 to hold the plug and receptacle in engagement. The annular groove cooperates with the ring in the plug to provide a holding or looking action when the plug is fully seated in the receptacle. The snug fit between the plug and receptacle will also provide some holding action due to the vacuum set up between the plug and receptacle when a force is applied to disconnect them. When the plug is disconnected from the receptacle, a force will be applied to the hook eye and either the ring and groove or the snug fit of the plug and receptacle or both will initially prevent disconnection, causing a slight elongation of the plug due to its elastic characteristic. When the disconnecting force is sufiicient to overcome this holding action, the plug will disconnect from the receptacle with a snap action due to the energy stored in elongating the lug.
p In connecting the plug and receptacle, insulating member 30 is telescopically inserted in sleeve 66 and the elongated section 48 is aligned with recess 16. The plug is then pushed onto the receptacle until the end of member 26 is telescoped into mating engagement with the reduced diameter section 62 of the sleeve 58 and electrically engages the end of member 26. The inner end of the elongated section will then be seated in the recess with the inwardly projecting section seated in the groove of the receptacle.
Normally, when the plug is withdrawn from the receptacle, a gap will occur between the electrically conductive element 26 and the electrically conductive sleeve 58 across which a high voltage arc will be established. With the insulating member 30 being pulled into the insulating sleeve 66 as the plug is withdrawn from the elongated section, the heat of the are drawn between the conductive members will be confined to the small space between the insulating member and sleeve. The heat of the arc will generate a de-ionized atmosphere from the insulating member 30 and sleeve 66 which will interrupt the load current in the gap, thus extinguishing the arc.
In FIGS. 3 and 4 a modified arrangement is shown which can be used to accomplish the same result. The receptacle is shown in phantom and is provided within a non-conductive insulating sleeve 70 forming an extension of the end of an electrically conductive sleeve or element 72 within recess 74. An electrically non-conductive cap 76 is positioned within the electrically conductive sleeve 72 and is biased by spring 78 outwardly of the sleeve 72. An outwardly projecting flange 80 is provided at the open end of the cap 72 to engage the reduced diameter section 82 of the sleeve to retain the cap within the sleeve. When the plug is pushed onto the receptacle, the end of electrically conductive element 84 will force the cap 76 into the sleeve 72 against the compressive force of the spring 78. No electrical connection will be made until the end of the conductive element engages the reduced diameter section of the sleeve 72. In disconnection, the electrically-conductive element 84 is withdrawn from the sleeve 72 and the cap follows the motion of the conductor as it is pulled out of the sleeve 72. The cap will, therefore, provide a high dielectric medium in the gap between the two conductors, extinguishing any arc produced.
Although only two modifications of the invention have been shown and described, it should be obvious that changes in the design of the plug and receptacle and the cooperation of the insulated members can be made Without departing from the scope of the disclosed invention.
What is claimed is:
1. An electrical connector for disconnecting high voltage conductors comprising a first insulating member having a connection recess with an inner surface,
a first electrically conductive element mounted in said first member and projecting in said recess,
said conductive element being adapted for connection to a high voltage conductor, and
a second insulating member having a connection inlet and an outer surface conforming to said connection recess inner surface to produce a seal on insertion of said second member into said connection recess,
a second electrically conductive element positioned in said connection inlet for engagement with said first conductive element on insertion of said first electrically conductive element into said inlet,
an electrically non-conductive sleeve positioned adjacent to the entry end of said inlet,
and insulating means of arc extinguishing material associatedewith said first conductive element in aposition 'to'cooperate' with said non-conductive sleeve r when 'said' first "conductive element. is being. withdrawn from said second conductiveelement-to inter.- rupt the. load currentin the :gap between'the two elements. 2. An electrical connector according to-claim l 'wherein said insulating means includes an elongate member Secured to said first conductive element-to follow said first conductive element through said sleeve when said first insulating member, is disconnected from-said second insulatingmember.
'3. An electrical connector according to claim- 1 Wherein said insulating means includes a. cap mountedfor reciprocal motion within said conductive sleeve and: spring means for biasing the cap outward from said second conductive element. 1 4. An-electrical connector according to claim 1 wherein said interior surface is'tapered and said outer-surface is tapered. 5. An electrical connector comprising t ea-first insulating member having a recess-with an inne 'surface, I a firstelectrically conductive element mounted in said first member and projecting axially'into said recess, means for connecting said-first conductive element to a high voltage conductor, 1 a second insulating member having an elongate section shaped for insertion into said recess :and having an: opening for receiving said first conductive element, saidelongate section havingan oute'rsurface conformable to-said inner surface of said recess to form a seal'on connection,
an electrically conductive sleeve positioned within said opening for electrical engagement with said first conductive element,
a first insulating means of arc extinguishing material positioned adjacent to the entry end of said opening for initial engagement with said first conductive element on insertion into said opening,
and a second insulating means of arc extinguishing .ma-
terial mounted on the end of said first conductive element to engage said first insulating means first on insertion of said first conductive element into said conductive sleeve and to engage said first insulating means last \as said conductive element is withdrawn from said conductive sleeve.
6. An electrical connector according to claim 5 wherein said inner surface of said recess and said outer surface of said elongate section are coated with a grease-like material thereby to improve the moisture seal formed around said electrically conductive element and sleeve.
7. An electrical connector according to claim 5 wherein said first insulating member has a stress cone-shaped section for cable termination.
8. An electrical connector according to claim 5 wherein said inner surface is tapered and said outer surface is tapered.
9. An electrical connector comprising a first insulating member having a first recess,
an electrically conductive element mounted in said first member and projecting in said recess, said element being connected to a high voltage conductor,
a second insulating member having an elongate section shaped for mating engagement with said first recess, said second member including an electrically conductive sleeve adapted to be connected to a high voltage apparatus,
first insulating means of arc extinguishing material mounted :adjacent to the entry end of said sleeve for engagement with said conductive element on insertion of said conductive element into said sleeve, and
a second insulating means of arc extinguishing material mounted on said conductive element for engagement with said first insulating means on insertion of said conductive element into said sleeve and for engagement vwith said first insulating means last on withdrawal of said conductive element from said sleeve. 10. An electrical connector according to claim 9 wherein said first insulating member is formed from an elastic insulating material and includes holding means for engaging said second insulating member,
whereby on withdrawal of said first member from said second member, a snap action disconnection will be provided between the conductive member and the sleeve.
11. A connector according to claim 10 wherein said holding means comprises an :annular ring in said recess and an annular groove in said elongate shaped section located in a position to engage said ring on insertion of said section into said recess.
connector comprising :a pair of insulating members, one of said members having a connection recess with an inner surface and the other of said members having a connection inlet and an outer surface conforming to said inner surface of said connection recess to produce a seal on insertion of said other of said members into said connection recess,
a pair of telescopically mating electrically conductive contacts supported by said insulating members,
a pair of telescopically mating elements of arc extinguishing material associated with said pair of conductive contacts to momentarily move into the arc path between said conductive contacts when separated, one of said elements being a sleeve and the other of said elements being insertable into said sleeve,
at least one of said insulating members being of an elastomeric material to form the seal with the other insulating member, and
means for connecting said conductive pair of contacts to high voltage conductors.
13. A connector according to claim 12 wherein said inner surface is tapered and said outer surface is tapered for mating engagement with said inner surface.
14. In combination, a first insulating member having a recess,
a first electrically conductive element supported by said first member and projecting into said recess,
means for connecting said first conductive element to a high voltage conductor,
an arc extinguishing member secured to said first electrically conductive element, and
a second insulating member having an elongate section shaped to sealingly engage said recess and a connection inlet to receive said first electrically conductive element,
a second electrically conductive element positioned in said inlet to electrically engage said first conductive element,
means for connecting said second electrically conductive element to a second high voltage conductor,
a sleeve of arc extinguishing material positioned adjacent to the entry end of said connection inlet to engage said are extinguishing member first on insertion of said first conductive element into said conductive sleeve.
15. The combination according to claim 14 wherein said elongate section forms a vacuum seal on disconnection of said section from said recess and one of said insulating members is formed from a resilient material which elongates on disconnection to 7 provide a snap release of the electrically conductive elements on disconnection. 16. The combination according to claim 14 including an annular ring in said recess and an annular groove in said section.
2,677,115 4/1954 Stevens 339--111 X 4/1943 Triplett 200-449 8 3,124,405 3/1964 Massa 339-75 X 3,277,424 10/1966 Nelson 33994 3,281,560 10/1966 Nava 200149 X FOREIGN PATENTS 1,273,012 8/1961 France.
RICHARD E. MOORE, Primary Examiner US. Cl. X.R. 339-111
US748142*A 1964-02-10 1968-06-10 Electrical connector Expired - Lifetime US3474386A (en)

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US74814268A 1968-06-10 1968-06-10

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Cited By (64)

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US3617987A (en) * 1969-03-10 1971-11-02 Rte Corp Magnetic safe break terminator arc suppressor
US3622940A (en) * 1968-12-21 1971-11-23 Neidecker & Co Fa Connector assembly for electrical apparatus
US3629792A (en) * 1969-01-28 1971-12-21 Bunker Ramo Wire seals
US3662296A (en) * 1970-04-20 1972-05-09 Kdi Sealtron Corp Safety electrical connector
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EP0951099A2 (en) * 1998-04-15 1999-10-20 Sumitomo Wiring Systems, Ltd. Electrical connector plug
US6168447B1 (en) 1997-07-30 2001-01-02 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US20020164896A1 (en) * 1997-07-30 2002-11-07 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
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US20090149069A1 (en) * 2007-12-11 2009-06-11 Lasen Development Llc Electrical-connection device, particularly for photovoltaic-cell solar panels
US20090145425A1 (en) * 2007-12-11 2009-06-11 Lasen Development Llc Photovoltaic panel and solar-panel unit made using photovoltaic panels of the same sort
US7568927B2 (en) 2007-04-23 2009-08-04 Cooper Technologies Company Separable insulated connector system
US7572133B2 (en) 2005-11-14 2009-08-11 Cooper Technologies Company Separable loadbreak connector and system
US7578682B1 (en) 2008-02-25 2009-08-25 Cooper Technologies Company Dual interface separable insulated connector with overmolded faraday cage
US7633741B2 (en) 2007-04-23 2009-12-15 Cooper Technologies Company Switchgear bus support system and method
US7632120B2 (en) 2005-07-29 2009-12-15 Cooper Technologies Company Separable loadbreak connector and system with shock absorbent fault closure stop
US7661979B2 (en) 2007-06-01 2010-02-16 Cooper Technologies Company Jacket sleeve with grippable tabs for a cable connector
US7666012B2 (en) 2007-03-20 2010-02-23 Cooper Technologies Company Separable loadbreak connector for making or breaking an energized connection in a power distribution network
US20100048046A1 (en) * 2008-08-25 2010-02-25 Cooper Industries, Ltd. Electrical connector including a ring and a ground shield
US7670162B2 (en) 2008-02-25 2010-03-02 Cooper Technologies Company Separable connector with interface undercut
US7695291B2 (en) 2007-10-31 2010-04-13 Cooper Technologies Company Fully insulated fuse test and ground device
US7811113B2 (en) 2008-03-12 2010-10-12 Cooper Technologies Company Electrical connector with fault closure lockout
US7854620B2 (en) 2007-02-20 2010-12-21 Cooper Technologies Company Shield housing for a separable connector
US7878849B2 (en) 2008-04-11 2011-02-01 Cooper Technologies Company Extender for a separable insulated connector
US7905735B2 (en) 2008-02-25 2011-03-15 Cooper Technologies Company Push-then-pull operation of a separable connector system
US20110111613A1 (en) * 2009-11-10 2011-05-12 Hon Hai Precision Industry Co., Ltd. Rotatable power adapter
US7950940B2 (en) 2008-02-25 2011-05-31 Cooper Technologies Company Separable connector with reduced surface contact
US7950939B2 (en) 2007-02-22 2011-05-31 Cooper Technologies Company Medium voltage separable insulated energized break connector
US7958631B2 (en) 2008-04-11 2011-06-14 Cooper Technologies Company Method of using an extender for a separable insulated connector
US20110177722A1 (en) * 2008-09-10 2011-07-21 Claude Casses Electrical contact, set of electrical contact, product and assembly comprising such an electrical contact, its method of manufacture and method of electrical connection
US8056226B2 (en) 2008-02-25 2011-11-15 Cooper Technologies Company Method of manufacturing a dual interface separable insulated connector with overmolded faraday cage
US8100715B2 (en) * 2010-04-02 2012-01-24 William E. Whitlock RCA-compatible connectors for balanced and unbalanced interfaces
US8109776B2 (en) 2008-02-27 2012-02-07 Cooper Technologies Company Two-material separable insulated connector
US20140193991A1 (en) * 2013-01-04 2014-07-10 Anderson Power Products, Inc. Electrical connector with anti-arcing feature
US9166326B1 (en) 2013-11-08 2015-10-20 Rockwell Automation Technologies, Inc. Electrical connector with contact guard
US9660402B2 (en) * 2014-04-10 2017-05-23 S&C Electric Company Conductor assembly for power distribution equipment
US20170149160A1 (en) * 2015-11-25 2017-05-25 Odu Gmbh & Co. Kg Damping element for providing axial damping in a plug-in connector
WO2017190828A1 (en) * 2016-05-04 2017-11-09 Rosenberger Hochfrequenztechnik Gmbh & Co. Kg High-voltage connector
EP3457500A4 (en) * 2016-06-15 2019-05-15 Yazaki Corporation Waterproof connector structure and method for producing connector housing

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Cited By (95)

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US3835439A (en) * 1967-08-15 1974-09-10 Joslyn Mfg & Supply Co Grounded surface distribution apparatus
US3622940A (en) * 1968-12-21 1971-11-23 Neidecker & Co Fa Connector assembly for electrical apparatus
US3629792A (en) * 1969-01-28 1971-12-21 Bunker Ramo Wire seals
US3617987A (en) * 1969-03-10 1971-11-02 Rte Corp Magnetic safe break terminator arc suppressor
US3688244A (en) * 1969-07-03 1972-08-29 Nottingham & Co Inc J B Replaceable intermediate socket and plug member
US3663928A (en) * 1970-01-09 1972-05-16 Westinghouse Electric Corp Electrical bushing assembly
US3668614A (en) * 1970-02-02 1972-06-06 Kearney National Inc Separable electrical connectors
US3860321A (en) * 1970-02-02 1975-01-14 Kearney National Inc Separable electrical connectors
US3662296A (en) * 1970-04-20 1972-05-09 Kdi Sealtron Corp Safety electrical connector
US3670287A (en) * 1970-08-17 1972-06-13 Westinghouse Electric Corp Electrical connector assembly
US3699501A (en) * 1970-11-23 1972-10-17 Minnesota Mining & Mfg Conductive probe assembly and method of using
US3720904A (en) * 1971-02-04 1973-03-13 Amp Inc Self-actuating loadbreak connector
US3747048A (en) * 1971-08-19 1973-07-17 Amp Inc High voltage connector
US3860322A (en) * 1972-01-03 1975-01-14 Rte Corp Sealed electrical connector
US4084875A (en) * 1975-01-10 1978-04-18 International Telephone And Telegraph Corporation Electrical connector
US4260214A (en) * 1979-07-23 1981-04-07 International Telephone And Telegraph Corporation Fault-closable electrical connector
US4895529A (en) * 1982-12-27 1990-01-23 Amp Incorporated Environmentally sealed connector
US4609247A (en) * 1983-07-11 1986-09-02 Houston Geophysical Products, Inc. Connector having two seal-rings of different diameters
US4601528A (en) * 1985-08-20 1986-07-22 Spier Martin I Hermetic self-locking electrical connector
US4767351A (en) * 1986-08-13 1988-08-30 G & W Electric Company High voltage externally-separable bushing
US5133680A (en) * 1990-09-18 1992-07-28 Hewlett-Packard Company Slotless female contact
US8399771B2 (en) 1993-03-19 2013-03-19 Cooper Technologies Company Visual latching indicator arrangement for an electrical bushing and terminator
US6504103B1 (en) 1993-03-19 2003-01-07 Cooper Industries, Inc. Visual latching indicator arrangement for an electrical bushing and terminator
US20100068907A1 (en) * 1993-03-19 2010-03-18 Cooper Technologies Company Visual latching indicator arrangement for an electrical bushing and terminator
US6984791B1 (en) 1993-03-19 2006-01-10 Cooper Technologies Company Visual latching indicator arrangement for an electrical bushing and terminator
US7642465B2 (en) 1994-06-20 2010-01-05 Cooper Technologies Company Visual latching indicator arrangement for an electrical bushing and terminator
US8541684B2 (en) 1994-06-20 2013-09-24 Cooper Technologies Company Visual latching indicator arrangement for an electrical bushing and terminator
US20070023201A1 (en) * 1994-06-20 2007-02-01 Cooper Technologies Company Visual Latching Indicator Arrangement for an Electrical Bushing and Terminator
US5681187A (en) * 1995-08-29 1997-10-28 Yazaki Corporation Connector with movable contact member and resilient contact band
US20020164896A1 (en) * 1997-07-30 2002-11-07 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US5957712A (en) * 1997-07-30 1999-09-28 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US6168447B1 (en) 1997-07-30 2001-01-02 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US7524202B2 (en) 1997-07-30 2009-04-28 Thomas & Betts International, Inc. Separable electrical connector assembly
US20040192093A1 (en) * 1997-07-30 2004-09-30 Thomas & Betts International, Inc. Separable electrical connector assembly
US6939151B2 (en) 1997-07-30 2005-09-06 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US6585531B1 (en) 1997-07-30 2003-07-01 Thomas & Betts International, Inc. Loadbreak connector assembly which prevents switching flashover
US7044760B2 (en) 1997-07-30 2006-05-16 Thomas & Betts International, Inc. Separable electrical connector assembly
US7216426B2 (en) 1997-07-30 2007-05-15 Thomas & Betts International, Inc. Method for forming a separable electrical connector
EP0951099A3 (en) * 1998-04-15 2002-01-02 Sumitomo Wiring Systems, Ltd. Electrical connector plug
US6113436A (en) * 1998-04-15 2000-09-05 Sumitomo Wiring Systems, Ltd. Shock preventing electrical connector plug
EP0951099A2 (en) * 1998-04-15 1999-10-20 Sumitomo Wiring Systems, Ltd. Electrical connector plug
EP1362392A4 (en) * 2001-02-20 2007-11-14 G & W Electric Universal power connector for joining flexible cable to rigid devices in any of many configurations
EP1362392A1 (en) * 2001-02-20 2003-11-19 G & W ELECTRIC COMPANY Universal power connector for joining flexible cable to rigid devices in any of many configurations
US6485318B1 (en) 2001-11-13 2002-11-26 Delphi Technologies, Inc. Electrical shuttle connector
US6641421B1 (en) 2002-09-09 2003-11-04 Reynolds Industries, Inc. High-voltage electrical connector and related method
US7182647B2 (en) 2004-11-24 2007-02-27 Cooper Technologies Company Visible break assembly including a window to view a power connection
US20060110983A1 (en) * 2004-11-24 2006-05-25 Muench Frank J Visible power connection
US7632120B2 (en) 2005-07-29 2009-12-15 Cooper Technologies Company Separable loadbreak connector and system with shock absorbent fault closure stop
US8038457B2 (en) 2005-11-14 2011-10-18 Cooper Technologies Company Separable electrical connector with reduced risk of flashover
US7901227B2 (en) 2005-11-14 2011-03-08 Cooper Technologies Company Separable electrical connector with reduced risk of flashover
US7572133B2 (en) 2005-11-14 2009-08-11 Cooper Technologies Company Separable loadbreak connector and system
US7494355B2 (en) 2007-02-20 2009-02-24 Cooper Technologies Company Thermoplastic interface and shield assembly for separable insulated connector system
US7854620B2 (en) 2007-02-20 2010-12-21 Cooper Technologies Company Shield housing for a separable connector
US7950939B2 (en) 2007-02-22 2011-05-31 Cooper Technologies Company Medium voltage separable insulated energized break connector
US7862354B2 (en) 2007-03-20 2011-01-04 Cooper Technologies Company Separable loadbreak connector and system for reducing damage due to fault closure
US7666012B2 (en) 2007-03-20 2010-02-23 Cooper Technologies Company Separable loadbreak connector for making or breaking an energized connection in a power distribution network
US7568927B2 (en) 2007-04-23 2009-08-04 Cooper Technologies Company Separable insulated connector system
US7633741B2 (en) 2007-04-23 2009-12-15 Cooper Technologies Company Switchgear bus support system and method
US7883356B2 (en) 2007-06-01 2011-02-08 Cooper Technologies Company Jacket sleeve with grippable tabs for a cable connector
US7909635B2 (en) 2007-06-01 2011-03-22 Cooper Technologies Company Jacket sleeve with grippable tabs for a cable connector
US7661979B2 (en) 2007-06-01 2010-02-16 Cooper Technologies Company Jacket sleeve with grippable tabs for a cable connector
US7695291B2 (en) 2007-10-31 2010-04-13 Cooper Technologies Company Fully insulated fuse test and ground device
US20090149069A1 (en) * 2007-12-11 2009-06-11 Lasen Development Llc Electrical-connection device, particularly for photovoltaic-cell solar panels
US20090145425A1 (en) * 2007-12-11 2009-06-11 Lasen Development Llc Photovoltaic panel and solar-panel unit made using photovoltaic panels of the same sort
US7641522B2 (en) * 2007-12-11 2010-01-05 Lasen Development Llc Electrical-connection device, particularly for photovoltaic-cell solar panels
US7578682B1 (en) 2008-02-25 2009-08-25 Cooper Technologies Company Dual interface separable insulated connector with overmolded faraday cage
US7905735B2 (en) 2008-02-25 2011-03-15 Cooper Technologies Company Push-then-pull operation of a separable connector system
US7670152B2 (en) * 2008-02-25 2010-03-02 Cooper Technologies Company Dual interface separable insulated connector with overmolded faraday cage
US7950940B2 (en) 2008-02-25 2011-05-31 Cooper Technologies Company Separable connector with reduced surface contact
US20090275223A1 (en) * 2008-02-25 2009-11-05 Cooper Technologies Company Dual Interface Separable Insulated Connector with Overmolded Faraday Cage
US7670162B2 (en) 2008-02-25 2010-03-02 Cooper Technologies Company Separable connector with interface undercut
US8056226B2 (en) 2008-02-25 2011-11-15 Cooper Technologies Company Method of manufacturing a dual interface separable insulated connector with overmolded faraday cage
US8109776B2 (en) 2008-02-27 2012-02-07 Cooper Technologies Company Two-material separable insulated connector
US8152547B2 (en) 2008-02-27 2012-04-10 Cooper Technologies Company Two-material separable insulated connector band
US7811113B2 (en) 2008-03-12 2010-10-12 Cooper Technologies Company Electrical connector with fault closure lockout
US7878849B2 (en) 2008-04-11 2011-02-01 Cooper Technologies Company Extender for a separable insulated connector
US7958631B2 (en) 2008-04-11 2011-06-14 Cooper Technologies Company Method of using an extender for a separable insulated connector
US20100048046A1 (en) * 2008-08-25 2010-02-25 Cooper Industries, Ltd. Electrical connector including a ring and a ground shield
US7708576B2 (en) 2008-08-25 2010-05-04 Cooper Industries, Ltd. Electrical connector including a ring and a ground shield
US20110177722A1 (en) * 2008-09-10 2011-07-21 Claude Casses Electrical contact, set of electrical contact, product and assembly comprising such an electrical contact, its method of manufacture and method of electrical connection
US8597062B2 (en) * 2008-09-10 2013-12-03 Delphi International Operations Luxembourg, S.A.R.L. Electrical contact
US20110111613A1 (en) * 2009-11-10 2011-05-12 Hon Hai Precision Industry Co., Ltd. Rotatable power adapter
US8100715B2 (en) * 2010-04-02 2012-01-24 William E. Whitlock RCA-compatible connectors for balanced and unbalanced interfaces
US20140193991A1 (en) * 2013-01-04 2014-07-10 Anderson Power Products, Inc. Electrical connector with anti-arcing feature
US8808017B2 (en) * 2013-01-04 2014-08-19 Anderson Power Products, Inc. Electrical connector with anti-arcing feature
US9166326B1 (en) 2013-11-08 2015-10-20 Rockwell Automation Technologies, Inc. Electrical connector with contact guard
US9660402B2 (en) * 2014-04-10 2017-05-23 S&C Electric Company Conductor assembly for power distribution equipment
US20170149160A1 (en) * 2015-11-25 2017-05-25 Odu Gmbh & Co. Kg Damping element for providing axial damping in a plug-in connector
CN106961046A (en) * 2015-11-25 2017-07-18 欧度有限责任两合公司 Damping element for providing axially damping in plug-in connector
US9941617B2 (en) * 2015-11-25 2018-04-10 Odu Gmbh & Co. Kg Damping element for providing axial damping in a plug-in connector
CN106961046B (en) * 2015-11-25 2019-07-26 欧度有限责任两合公司 For providing the damping element axially damped in plug-in connector
WO2017190828A1 (en) * 2016-05-04 2017-11-09 Rosenberger Hochfrequenztechnik Gmbh & Co. Kg High-voltage connector
US10608364B2 (en) 2016-05-04 2020-03-31 Rosenberger Hochfrequenztechnik Gmbh High-voltage connector
EP3457500A4 (en) * 2016-06-15 2019-05-15 Yazaki Corporation Waterproof connector structure and method for producing connector housing
US10566732B2 (en) 2016-06-15 2020-02-18 Yazaki Corporation Waterproof connector structure and method for producing connector housing

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