EP0216623B1 - Connector assembly - Google Patents

Connector assembly Download PDF

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Publication number
EP0216623B1
EP0216623B1 EP19860307269 EP86307269A EP0216623B1 EP 0216623 B1 EP0216623 B1 EP 0216623B1 EP 19860307269 EP19860307269 EP 19860307269 EP 86307269 A EP86307269 A EP 86307269A EP 0216623 B1 EP0216623 B1 EP 0216623B1
Authority
EP
European Patent Office
Prior art keywords
carrier
terminal
housing
wire
assembly
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
EP19860307269
Other languages
German (de)
French (fr)
Other versions
EP0216623A3 (en
EP0216623A2 (en
Inventor
Arnold A. Case
Robert Deross
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Molex LLC
Original Assignee
Molex LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Molex LLC filed Critical Molex LLC
Publication of EP0216623A2 publication Critical patent/EP0216623A2/en
Publication of EP0216623A3 publication Critical patent/EP0216623A3/en
Application granted granted Critical
Publication of EP0216623B1 publication Critical patent/EP0216623B1/en
Expired legal-status Critical Current

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Classifications

    • 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
    • H01R13/40Securing contact members in or to a base or case; Insulating of contact members
    • H01R13/42Securing in a demountable manner
    • H01R13/424Securing in base or case composed of a plurality of insulating parts having at least one resilient insulating part
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2107/00Four or more poles

Definitions

  • the present invention pertains to connector assemblies comprising intermating dielectric housing and conductive terminal members.
  • the present invention pertains to connector assemblies having two-piece housings, and crimp-type terminals.
  • electrical connectors must have often been made to exhibit a high mating force, for a variety of reasons. For example, in contaminated environments, a high mating force ensures the removal of any oxide coating or the like contamination, which is necessary for a reliable electrical contact, and a gas-type seal at the point of electrical connection. Also, if a significant number of circuits are provided in a given electrical connector, high insertion and withdrawal forces will necessarily tend mating and unmating of two interengaging connector members. Accordingly, an arrangement must be provided to ensure that a terminal is retained within its dielectric housing.
  • This terminal retention feature is often required during mating of an electrical connector pair to prevent terminal push-out, as well as during unmating of an electrical connector pair when a terminal may be pulled out by either the force of unmating, or an operator applying tension to the wires connected to one mating connector part.
  • some connector arrangement has terminals with mating portions located off center from the axis of the remaining terminal body.
  • Other terminals have asymmetric cross sectional configuration, such as blade or flag-type terminals.
  • the relative angular orientation of the terminal with respect to its dielectric housing is crucial for successful connector operation. A ready visual indication of angular terminal orientation is desired.
  • the present invention provides an electrical connector assembly as defined in claim 1.
  • the carrier includes first and second opposed outside surfaces spaced-apart to form a predetermined width of the carrier, the open carrier receiving end having a width substantially equal to the carrier width so as to permit passage of the carrier therethrough, the carrier channel having a predetermined depth extending from the open side at the first surface, a terminal-crimp-portion engaging member having a predetermined height extending into the channel which, when combined with the terminal crimp portion cross sectional height, presents a minimum combined height equal to the depth, to allow insertion of the carrier within the housing open end, whereby a ready visual indication of excessive crimp portion cross sectional height is provided during assembly of the connector, with the terminal interfering with the housing to prevent insertion of the carrier within the housing.
  • the terminal crimp portion cross section has a minimum height only at a predetermined angular orientation to the terminal-crimp-portion-engaging member which, when combined with the terminal engaging member, presents the minimum combined height equal to the depth, whereby other angular orientations of the terminal present an increased combined height which causes the terminal to interfere with the housing during assembly of the connector.
  • Assembly 10 includes a terminated wire subassembly 12 comprising a terminal 14 engaging an insulation clad wire 16.
  • Terminal 14 has a crimp-type engaging portion and wire 16 has a leading bared end, suitable for a conventional crimp connection.
  • the terminated wire subassembly 12 is mounted in a two-piece housing assembly comprising a carrier member 18 and a cover-like housing 20.
  • the connector assembly shown in FIG. 1 comprises a single planar array of terminated wires, whereas the embodiment of FIG. 2 has a second planar array of wires arranged back to back with the arrangement of FIG. 1.
  • the carrier member 18' of FIG. 2 is conveniently integrally molded to contain both planar arrays but in other features is identical to the arrangement of FIG. 1.
  • the features of the carrier and housing members of FIG. 2 bear the same numerals as in FIG. 1, but have a prime designation when geometrically different. That is e.g. the numeral 20' is applied to the housing member of FIG. 2 since it differs only in relative size from housing 20 of FIG. 1.
  • the terminal 14 of subassembly 12 comprises a forward mating part 30, a rear strain relief portion 32, and an intermediate crimp-type wire engaging portion 34.
  • mating part 30 has a cross-sectional height roughly equal to the sum of the vertical dimensions HT and HP, whereas the wire engaging portion 34 has a reduced cross-sectional height equal to HT alone.
  • the trailing strain relief portion 32 has a cross sectional height substantially greater than that of wire engaging portion 34.
  • wire engaging portion 34 and strain relief portion 32 are simultaneously formed in a single die to comprise a crimp part of repeatable size and shape.
  • wire engaging portion 34 is conveniently applied to a bared leading portion 16' of wire 16, and is inwardly deformed and compressed about that bared portion. As indicated in FIG. 4, wire engaging portion 34 when terminated to wire 16 has an elongated cross section, a feature which is relied upon to provide a ready visual indication of the terminal's angular orientation. As is appreciated by those skilled in the art, the amount of inward deformation or compression of wire engaging portion 34 about wire 16 is crucial to the proper electrical connection between the terminal and wire.
  • the wire-engaging portion is formed by placing terminal 14 on an anvil-like die, inserting the bared leading end 16' of wire 16, and lowering an opposed crimping die so as to deform wire-engaging portion 34, compressing it so as to establish mechanical and electrical engagement with the conductor portion of wire 16.
  • One problem that may affect connector performance, is the inadequate compression of the wire-engaging crimp portion by the mating die members. Inadequate compression of the wire-engaging crimp portion would result in a "crimp height" HT greater than the desired amount.
  • the connector assembly being described provides a ready visual indication of such improperly enlarged crimp height.
  • housing 20 has a mating end 40, and opposed open carrier receiving end 42, and a carrier receiving cavity 44 extending between those ends.
  • carrier receiving cavity 44 has a constant cross-sectional dimension throughout the length of housing 20, although this is not essential.
  • Housing 20 is conveniently provided with a pair of opposed locking windows 46 to maintain the engagement between carrier 18 and housing 20.
  • Carrier 18 includes a plurality of terminal receiving channels 50 having a depth d (see FIG. 3) extending between opposed outside surfaces 52, 54.
  • Channels 50 have an open side 58 which, open to surface 52, allow transverse loading of terminated subassemblies 12.
  • the depth of channel 50 is less than the overall width of the carrier WC only by an amount equal to the thickness of the bottom channel wall 60 which opposes the open side 58.
  • terminated subassemblies 12 are loaded in a transverse direction into terminal receiving channels 50, and are temporarily held therein during connector assembly by resilient finger portions 64.
  • Carrier 18 is thereafter telescopically inserted in the open end 42 of housing 20.
  • Outwardly projecting locking portions 68, formed adjacent the trailing end of carrier 18 are received in locking windows 46, to maintain the engagement between dielectric members 18, 20.
  • carrier 18 designated WC in FIG, 1
  • the width of carrier 18, designated WC in FIG, 1 is closely held to the internal width WH of the open end 42 of housing 20 to provide a close tolerance interfitting relationship.
  • any protrusion of terminal 14 beyond carrier surface 52 will interfere with the side wall 70 of housing 20 preventing a complete insertion of carrier 18 within the housing.
  • a terminal engaging member 74 projecting a predetermined cross-sectional height HP into channel 50.
  • the height HP of engaging member 74 is chosen such that when added to the thickness of bottom wall 60, and the height HT of wire-engaging portion 34, the combined total of these heights equals the width WC of carrier 18. Therefore, if the crimp height HT of wire-engaging portion 34 exceeds its specified value, the overall width of the installed terminal and carrier will exceed WC, preventing insertion of carrier 18 in housing 20. Thus, a ready visual indication of a proper crimp height is provided.
  • terminal engaging member 74 the above-described features of terminal engaging member 74 are advantageously employed to provide a ready visual indication of the angular orientation of terminal 14 relative to carrier 18.
  • the cross section of wire-engaging portion 34 is elongated in an amount greater than HT, the maximum crimp height allowed by the complete carrier insertion in housing 20.
  • any angular displacement of wire-engaging portion 34 (and hence of mating portion 30) will result in a protrusion above carrier surface 52. Therefore, the wire-engaging portion 34 is provided with a unique angular orientation at which the crimp height HT is a minimum.
  • terminal engaging member 74 closely approximates the gap of reduced terminal width appearing between terminal portions 30, 32. Any axial displacement of terminated subassembly 12 will cause an interference with engaging member 74.
  • the arrangement described offers greatly enhanced retention capability. Terminal retention is ensured in the direction of terminal push-out, as well as terminal pull-out, the terminal being held captive in its engagement with member 74 by the closely fitting housing member 20.

Landscapes

  • Connector Housings Or Holding Contact Members (AREA)
  • Multi-Conductor Connections (AREA)

Description

    1. Field of the Invention
  • The present invention pertains to connector assemblies comprising intermating dielectric housing and conductive terminal members. In particular, the present invention pertains to connector assemblies having two-piece housings, and crimp-type terminals.
  • 2. DESCRIPTION OF THE PRIOR ART
  • Although many improvements have been made generally to electrical connector assemblies, for example as described in the application FR-A-2 377 715, further refinements are still being sought. For example, electrical connectors must have often been made to exhibit a high mating force, for a variety of reasons. For example, in contaminated environments, a high mating force ensures the removal of any oxide coating or the like contamination, which is necessary for a reliable electrical contact, and a gas-type seal at the point of electrical connection. Also, if a significant number of circuits are provided in a given electrical connector, high insertion and withdrawal forces will necessarily tend mating and unmating of two interengaging connector members. Accordingly, an arrangement must be provided to ensure that a terminal is retained within its dielectric housing. This terminal retention feature is often required during mating of an electrical connector pair to prevent terminal push-out, as well as during unmating of an electrical connector pair when a terminal may be pulled out by either the force of unmating, or an operator applying tension to the wires connected to one mating connector part. Some connector applications, for example, those found in moving vehicles, require that terminal retention be assured despite unforeseen circumstances or environmental conditions.
  • Although electrical terminals having crimp-type wire engaging portions have been known for some time, improvements in crimp-type connectors have been sought. Engagement with a conductive wire in a crimp-type terminal is satisfactory only for a given, rather narrow range of terminal compression about the wire. If the wire engaging crimp portion is insufficiently compressed, the necessary low resistance electrical connection between terminal and wire will not be realized. A ready visual indication of improper height of the crimp portion is desired.
  • Further, some connector arrangement has terminals with mating portions located off center from the axis of the remaining terminal body. Other terminals have asymmetric cross sectional configuration, such as blade or flag-type terminals. For these arrangements, the relative angular orientation of the terminal with respect to its dielectric housing is crucial for successful connector operation. A ready visual indication of angular terminal orientation is desired.
  • SUMMARY OF THE INVENTION
  • The present invention provides an electrical connector assembly as defined in claim 1.
  • A further embodiment of the electrical connector assembly of the type described above is provided wherein the carrier includes first and second opposed outside surfaces spaced-apart to form a predetermined width of the carrier, the open carrier receiving end having a width substantially equal to the carrier width so as to permit passage of the carrier therethrough, the carrier channel having a predetermined depth extending from the open side at the first surface, a terminal-crimp-portion engaging member having a predetermined height extending into the channel which, when combined with the terminal crimp portion cross sectional height, presents a minimum combined height equal to the depth, to allow insertion of the carrier within the housing open end, whereby a ready visual indication of excessive crimp portion cross sectional height is provided during assembly of the connector, with the terminal interfering with the housing to prevent insertion of the carrier within the housing.
  • Preferably, the terminal crimp portion cross section has a minimum height only at a predetermined angular orientation to the terminal-crimp-portion-engaging member which, when combined with the terminal engaging member, presents the minimum combined height equal to the depth, whereby other angular orientations of the terminal present an increased combined height which causes the terminal to interfere with the housing during assembly of the connector.
  • Some ways of carrying out the present invention will now be described in detail by way of example, and not by way of limitation, with reference to drawings which show specific embodiments of the present invention in all of its aspects.
  • In the drawings, wherein like elements are referenced alike,
    • FIG. 1 is a perspective view of an electrical connector assembly according to the present invention;
    • FIG. 2 is a perspective view of an alternative embodiment of a connector assembly according to the present invention;
    • FIG. 3 is a partial perspective view of the carrier and terminated wire assembly shown just prior to connector assembly;
    • FIG. 4 is a partial cross sectional view of a completed electrical connector assembly according to the present invention; and
    • FIG. 5 is a longitudinal sectional view of the completed connector assembly of FIG. 4.
    DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENTS
  • Turning now to FIG. 1, the connector assembly is indicated generally at 10. Assembly 10 includes a terminated wire subassembly 12 comprising a terminal 14 engaging an insulation clad wire 16. Terminal 14 has a crimp-type engaging portion and wire 16 has a leading bared end, suitable for a conventional crimp connection. These features will be described in greater detail herein.
  • The terminated wire subassembly 12 is mounted in a two-piece housing assembly comprising a carrier member 18 and a cover-like housing 20. The connector assembly shown in FIG. 1 comprises a single planar array of terminated wires, whereas the embodiment of FIG. 2 has a second planar array of wires arranged back to back with the arrangement of FIG. 1. The carrier member 18' of FIG. 2 is conveniently integrally molded to contain both planar arrays but in other features is identical to the arrangement of FIG. 1.
  • Accordingly, the features of the carrier and housing members of FIG. 2 bear the same numerals as in FIG. 1, but have a prime designation when geometrically different. That is e.g. the numeral 20' is applied to the housing member of FIG. 2 since it differs only in relative size from housing 20 of FIG. 1.
  • Referring now to FIGS 4 and 5, the terminal 14 of subassembly 12 comprises a forward mating part 30, a rear strain relief portion 32, and an intermediate crimp-type wire engaging portion 34. As shown most clearly in FIG. 5, mating part 30 has a cross-sectional height roughly equal to the sum of the vertical dimensions HT and HP, whereas the wire engaging portion 34 has a reduced cross-sectional height equal to HT alone. The trailing strain relief portion 32 has a cross sectional height substantially greater than that of wire engaging portion 34. In practice, wire engaging portion 34 and strain relief portion 32 are simultaneously formed in a single die to comprise a crimp part of repeatable size and shape.
  • As is known in the art, wire engaging portion 34 is conveniently applied to a bared leading portion 16' of wire 16, and is inwardly deformed and compressed about that bared portion. As indicated in FIG. 4, wire engaging portion 34 when terminated to wire 16 has an elongated cross section, a feature which is relied upon to provide a ready visual indication of the terminal's angular orientation. As is appreciated by those skilled in the art, the amount of inward deformation or compression of wire engaging portion 34 about wire 16 is crucial to the proper electrical connection between the terminal and wire. Typically, the wire-engaging portion is formed by placing terminal 14 on an anvil-like die, inserting the bared leading end 16' of wire 16, and lowering an opposed crimping die so as to deform wire-engaging portion 34, compressing it so as to establish mechanical and electrical engagement with the conductor portion of wire 16. One problem that may affect connector performance, is the inadequate compression of the wire-engaging crimp portion by the mating die members. Inadequate compression of the wire-engaging crimp portion would result in a "crimp height" HT greater than the desired amount. The connector assembly being described provides a ready visual indication of such improperly enlarged crimp height.
  • Referring now to the interengagement of the two dielectric members 18, 20, the terminated wire assemblies 12 are mounted to carrier portion 18, which is then inserted in the cover-like housing 20. Housing 20 has a mating end 40, and opposed open carrier receiving end 42, and a carrier receiving cavity 44 extending between those ends. In a present embodiment, carrier receiving cavity 44 has a constant cross-sectional dimension throughout the length of housing 20, although this is not essential. Housing 20 is conveniently provided with a pair of opposed locking windows 46 to maintain the engagement between carrier 18 and housing 20.
  • Carrier 18 includes a plurality of terminal receiving channels 50 having a depth d (see FIG. 3) extending between opposed outside surfaces 52, 54. Channels 50 have an open side 58 which, open to surface 52, allow transverse loading of terminated subassemblies 12. As will be seen in the figures, the depth of channel 50 is less than the overall width of the carrier WC only by an amount equal to the thickness of the bottom channel wall 60 which opposes the open side 58.
  • As indicated in FIG. 1, terminated subassemblies 12 are loaded in a transverse direction into terminal receiving channels 50, and are temporarily held therein during connector assembly by resilient finger portions 64. Carrier 18 is thereafter telescopically inserted in the open end 42 of housing 20. Outwardly projecting locking portions 68, formed adjacent the trailing end of carrier 18 are received in locking windows 46, to maintain the engagement between dielectric members 18, 20.
  • The width of carrier 18, designated WC in FIG, 1, is closely held to the internal width WH of the open end 42 of housing 20 to provide a close tolerance interfitting relationship. Thus, any protrusion of terminal 14 beyond carrier surface 52, will interfere with the side wall 70 of housing 20 preventing a complete insertion of carrier 18 within the housing.
  • Visible in some of the figures, is a terminal engaging member 74 projecting a predetermined cross-sectional height HP into channel 50. As indicated in FIGS. 4 and 5, the height HP of engaging member 74 is chosen such that when added to the thickness of bottom wall 60, and the height HT of wire-engaging portion 34, the combined total of these heights equals the width WC of carrier 18. Therefore, if the crimp height HT of wire-engaging portion 34 exceeds its specified value, the overall width of the installed terminal and carrier will exceed WC, preventing insertion of carrier 18 in housing 20. Thus, a ready visual indication of a proper crimp height is provided.
  • Referring now to FIG. 4, the above-described features of terminal engaging member 74 are advantageously employed to provide a ready visual indication of the angular orientation of terminal 14 relative to carrier 18. As shown in FIG. 4, the cross section of wire-engaging portion 34 is elongated in an amount greater than HT, the maximum crimp height allowed by the complete carrier insertion in housing 20. As can be seen in FIG. 4, any angular displacement of wire-engaging portion 34 (and hence of mating portion 30) will result in a protrusion above carrier surface 52. Therefore, the wire-engaging portion 34 is provided with a unique angular orientation at which the crimp height HT is a minimum.
  • As indicated in FIG. 5, terminal engaging member 74 closely approximates the gap of reduced terminal width appearing between terminal portions 30, 32. Any axial displacement of terminated subassembly 12 will cause an interference with engaging member 74. Compared to other terminal retention arrangements employed to date, such as locking lances struck out from a terminal wall, the arrangement described offers greatly enhanced retention capability. Terminal retention is ensured in the direction of terminal push-out, as well as terminal pull-out, the terminal being held captive in its engagement with member 74 by the closely fitting housing member 20.

Claims (6)

  1. An electrical connector assembly including
       a dielectric housing (20; 20') having a mating end (40; 40') and an opposed open carrier receiving end (42; 42'), a carrier receiving cavity (44) between the ends, and at least one locking window (46),
       an electrical terminal (14) engageable with a wire conductor (16), said terminal including an elongated body having a forward mating part (30) and a crimp part, the crimp part having a rear portion (32) and a wire engaging portion (34) intermediate and recessed with respect to said rear portion (32) and said forward mating part (30), said wire engaging portion being formable about a wire conductor (16') for electrical engagement therewith;
       a dielectric carrier (18; 18') telescopically insertable in the carrier receiving end of said housing (20; 20'), and including a locking tab (68) receivable in said locking window to maintain engagement of said carrier with said housing upon insertion therein,
       whereby said terminal is substantially enclosed by the carrier and housing upon insertion of said carrier within said housing,
       characterized in that said carrier (18) is open on one longitudinal side (52), forming a channel (50) for receiving said terminal, and has means (64) for retaining the terminal in the channel during assembly of said connector, and in that
       said carrier includes a terminal engaging member (74) projecting into the recessed wire engaging portion to interfere with said forward mating part (30) and said rear portion (32) such that said carrier and said housing cooperate to prevent longitudinal movement of said terminal.
  2. The assembly of claim 1 wherein:
       said wire engaging portion (34) has a predetermined cross-sectional height;
       said carrier includes first and second opposed outside surfaces (52, 54) spaced-apart to form a predetermined width of said carrier;
       said open carrier receiving end having a width (WH) substantially equal to said carrier width so as to permit passage of said carrier therethrough;
       said terminal receiving channel having a predetermined depth (d) extending from said open side;
       said terminal engaging member having a predetermined height (HP) extending into said channel which, when combined with said wire engaging portion cross-sectional height, presents a minimum combined height equal to said depth, to allow insertion of said carrier within said housing open end,
       whereby a ready visual indication of excessive wire-engaging portion cross-sectional height is provided during assembly of said connector, with said terminal projecting beyond said carrier so as to interfere with said housing, preventing insertion of said carrier therewithin.
  3. The assembly of claim 2 wherein said wire-engaging portion cross-section has a minimum height only at a predetermined angular orientation to said terminal engaging member which, when combined with said terminal engaging member height, presents said minimum combined height equal to said depth, whereby other angular orientations of said terminal present an increased combined height which causes said terminal to interfere with said housing during assembly of said connector.
  4. The assembly of any preceding claim wherein said open housing end and said carrier have complementary rectangular shapes, thereby limiting possible orientations of said carrier within said housing.
  5. The assembly of claim 4 wherein said open housing end and said carrier have complementary-shaped-interengaging polarizing means to limit said connector assembly to a single orientation of said carrier within said housing.
  6. The assembly of any preceding claim wherein said retaining means (64) comprises resilient terminal engaging tabs formed at a leading end of said carrier when telescopically inserted into said housing.
EP19860307269 1985-09-20 1986-09-22 Connector assembly Expired EP0216623B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US77847685A 1985-09-20 1985-09-20
US778476 1985-09-20

Publications (3)

Publication Number Publication Date
EP0216623A2 EP0216623A2 (en) 1987-04-01
EP0216623A3 EP0216623A3 (en) 1988-11-23
EP0216623B1 true EP0216623B1 (en) 1992-05-27

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP19860307269 Expired EP0216623B1 (en) 1985-09-20 1986-09-22 Connector assembly

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EP (1) EP0216623B1 (en)
JP (1) JPS6276176A (en)
DE (1) DE3685468D1 (en)

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB8827756D0 (en) * 1988-11-28 1988-12-29 Amp Great Britain Electrical connector housing assembly
FR2651382A1 (en) * 1989-08-31 1991-03-01 Francelco Sa Plug-in electrical connection block, with locking
EP0516028A3 (en) * 1991-05-28 1993-07-28 Woven Electronics Corporation Coax connector assembly
JP2585155B2 (en) * 1991-11-19 1997-02-26 英朗 茂治 Pole holding member for multi-pole terminal type connector
JP3000876B2 (en) * 1995-01-19 2000-01-17 住友電装株式会社 Terminal fitting backlash structure
ES2184365T3 (en) * 1998-04-02 2003-04-01 Whitaker Corp ELECTRICAL CONNECTOR TO MAKE CONTACT WITH AT LEAST A FLAT METAL SHEET DRIVER.
GB2364779A (en) 2000-07-14 2002-02-06 Bw Technologies Ltd Toxic gas sensor with monitoring of diffusion barrier
JP5598849B2 (en) * 2010-08-05 2014-10-01 古河電気工業株式会社 Connector, connector housing, and connector manufacturing method
JP2016054057A (en) * 2014-09-03 2016-04-14 株式会社ユニゾン connector
JP7280693B2 (en) * 2018-12-21 2023-05-24 日本航空電子工業株式会社 Method for manufacturing an electrical connector

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1313583A (en) * 1961-02-04 1962-12-28 Amp Inc Electrical connection device
US3582863A (en) * 1969-03-12 1971-06-01 Tektronix Inc Electrical terminal housing having hinge and adjacent lock projection
US3944312A (en) * 1975-04-04 1976-03-16 General Electric Company Locking device for spade-type electrical connectors
FR2377715A1 (en) * 1977-01-13 1978-08-11 Seima Plug coupling system for two conductors - has plug and socket with suitable contacts, each made of two parts, and has body with protective cover
JPS582774Y2 (en) * 1980-09-18 1983-01-18 東洋クラウン株式会社 Bottle lid with stopper

Also Published As

Publication number Publication date
DE3685468D1 (en) 1992-07-02
EP0216623A3 (en) 1988-11-23
EP0216623A2 (en) 1987-04-01
JPS6276176A (en) 1987-04-08

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