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WO2011077264A2 - Connecteur flottant et système - Google Patents

Connecteur flottant et système Download PDF

Info

Publication number
WO2011077264A2
WO2011077264A2 PCT/IB2010/003520 IB2010003520W WO2011077264A2 WO 2011077264 A2 WO2011077264 A2 WO 2011077264A2 IB 2010003520 W IB2010003520 W IB 2010003520W WO 2011077264 A2 WO2011077264 A2 WO 2011077264A2
Authority
WO
WIPO (PCT)
Prior art keywords
housing
floating
receptacle
fixed
connector
Prior art date
Application number
PCT/IB2010/003520
Other languages
English (en)
Other versions
WO2011077264A3 (fr
Inventor
Kunihiro Higuchi
Original Assignee
Fci
Fci Connectors Singapore Pte Ltd
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 Fci, Fci Connectors Singapore Pte Ltd filed Critical Fci
Publication of WO2011077264A2 publication Critical patent/WO2011077264A2/fr
Publication of WO2011077264A3 publication Critical patent/WO2011077264A3/fr

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/71Coupling devices for rigid printing circuits or like structures
    • H01R12/72Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures
    • H01R12/722Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures coupling devices mounted on the edge of the printed circuits
    • H01R12/724Coupling devices for rigid printing circuits or like structures coupling with the edge of the rigid printed circuits or like structures coupling devices mounted on the edge of the printed circuits containing contact members forming a right angle
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R12/00Structural associations of a plurality of mutually-insulated electrical connecting elements, specially adapted for printed circuits, e.g. printed circuit boards [PCB], flat or ribbon cables, or like generally planar structures, e.g. terminal strips, terminal blocks; Coupling devices specially adapted for printed circuits, flat or ribbon cables, or like generally planar structures; Terminals specially adapted for contact with, or insertion into, printed circuits, flat or ribbon cables, or like generally planar structures
    • H01R12/70Coupling devices
    • H01R12/91Coupling devices allowing relative movement between coupling parts, e.g. floating or self aligning

Definitions

  • the present invention relates to an electrical connector.
  • it relates to an electrical connector for connecting circuit boards together and an electrical connector system.
  • Circuit boards used in automobiles are generally subject to vibrations resulting in differences in the natural frequencies of the circuit boards, and it is not infrequent for several connected circuit boards to vibrate at different modes of vibration. Electrical contacts of connectors connecting the circuit boards move relative to one another due to the vibration at different modes, and this results in a phenomenon where the electrical resistance of the electrical contact portions is increased (fretting corrosion). Therefore, it is necessary to prevent relative movement between contact points of the connectors by either fixing the
  • the present invention provides contact terminals for electrical connectors, each terminal comprising a first electrode to be connected to an electrode of a plug connector, and a second electrode to be connected to a planar circuit board.
  • the first electrode is connected to the second electrode via an elastically deformable flexible connecting portion, and the flexible connecting portion is provided with one or more straight portions and curved portions within a plane defined by the first electrode and the second electrode.
  • the flexible connecting portion may have the shape of a wave.
  • the present invention further provides a receptacle connector into which the terminals are disposed.
  • the receptacle connector has a fixed receptacle housing having the second electrode to be connected to a circuit board, and a floating housing having the first electrode to be connected to the electrode of the plug connector.
  • the fixed housing and the floating housing can be coupled so as to be capable of relative movement due to elastic deformation of the flexible connecting portion of the terminals.
  • a stopper provided in the fixed housing and/or the floating housing of the receptacle connector prevents relative movement between the fixed receptacle housing and the floating receptacle housing in a direction orthogonal to the insertion direction of the plug connector.
  • a channel portion which accommodates the flexible connecting portion is formed in the floating housing of the receptacle, in a direction parallel to the insertion direction of the plug, and the flexible connecting portion is capable of elastic deformation within the channel portion in the insertion direction of the plug.
  • the channel portion prevents deformation of the terminals along a direction orthogonal to the insertion direction.
  • the fixed housing of the receptacle connector has a fixing tab which projects in a direction which intersects the insertion direction.
  • the floating housing of the receptacle connector has a floating restriction block which projects toward the fixing tab in the direction orthogonal to the insertion direction.
  • the floating housing of the receptacle connector is capable of moving in the insertion direction of the plug connector between a position where the floating restriction block makes contact with a floating stopper provided in the fixing tab and a position where the floating housing makes contact with the fixed housing of the receptacle connector.
  • a locking blade having a recess portion forming a recess in a surface parallel to the insertion direction is formed in the receptacle connector.
  • the plug connector has a locking spring at a position corresponding to the locking blade.
  • a projecting portion which engages with the recess portion due to contact with a portion of the receptacle connector is formed in the locking spring, and elastically deforms the locking spring in a direction away from the recess portion by moving toward the insertion direction of the plug.
  • the receptacle connector may have a rotation prevention spring which projects in a direction orthogonal to the insertion direction.
  • the plug connector may have a rotation prevention tab having a surface which faces the direction orthogonal to the direction of projection of the rotation prevention spring at a position corresponding to the rotation prevention spring.
  • the present invention further provides a connector system comprising any of the receptacle connectors described above, and a plug connector to be mated with the receptacle connector.
  • the plug connector has a fixed plug housing and a floating plug housing.
  • the floating plug housing is to be connected to the receptacle connector and capable of relative movement in a direction orthogonal to the insertion direction of the plug connector in a predetermined floating range, but not movable in the direction of insertion.
  • the floating plug housing and the floating receptacle housing are integrally coupled together to form a joint floating housing.
  • the fixed receptacle housing and the joint floating housing can move relative to one another within a prescribed floating range in the insertion direction, they cannot move relative to one another exceeding a prescribed tolerance range in the direction orthogonal to the insertion direction.
  • the fixed plug housing and the joint floating housing can move relative to one another within a prescribed floating range in the direction orthogonal to the insertion direction, they cannot move relative to one another exceeding a prescribed tolerance range in the insertion direction.
  • the prescribed floating range is restricted by a stopper provided in each of the fixed housing and floating housing of the receptacle and the fixed housing and floating housing of the plug.
  • Figure 1 is a perspective view showing an electrical connector system of an embodiment of the present invention.
  • Figures 2A and 2B are a perspective views showing the receptacle connector of an embodiment of the present application.
  • Figure 2A is a view as seen from the insertion surface P1 side
  • Figure 2B is a view as seen from the side of the surface opposite the insertion surface P1 .
  • Figures 3A and 3B are perspective views showing a plug connector of an embodiment of the present invention.
  • Figure 3A is a view as seen from the insertion surface P1 side
  • Figure 3B is a view as seen from the side of the surface opposite the insertion surface P1 .
  • Figure 4 is an enlarged partial perspective view of Fig. 2A.
  • Figure 4B is an exploded view of Figure 4A and a circuit board on which the receptacle connector is to be mounted.
  • Figure 5 is an enlarged partial perspective view Fig. 2A.
  • Figure 6 is an enlarged partial perspective view of Fig. 3A viewing from a different angle.
  • Figures 7A and 7B are perspective views showing terminals of the receptacle connector of an embodiment of the present invention.
  • Figure 7A shows a terminal of a first type
  • Figure 7B shows a terminal of a second type
  • Figure 8 is a perspective view showing a terminal of the plug connector of an embodiment of the present invention.
  • Figures 9A, 9B and 9C are cross sectional views along A-A of Figure 1 .
  • Figure 9A shows the state prior to mating of the plug connector and the receptacle connector
  • Figure 9B shows the state during mating
  • Figure 9C shows the state after mating is completed.
  • FIGS 1 to 9 are diagrams showing a connector system 100 of the embodiments of the present invention.
  • receptacle connector 1 comprises a fixed receptacle housing 2, a floating receptacle housing 3, and terminals 4, 4'.
  • Fixed receptacle housing 2 and floating receptacle housing 3 are formed by resin molding, and the terminals 4, 4' are formed from an electrically conductive material such as a copper alloy.
  • Plug connector 40 to be connected to receptacle connector 1 to form the connector system.
  • Plug connector 40 comprises a fixed plug housing 41 , a floating plug housing 42, and terminals 43.
  • Fixed plug housing 41 and floating plug housing 42 are formed by resin molding, and terminals 43 are formed from an electrically conductive material such as a copper alloy.
  • the longitudinal direction of receptacle connector 1 i.e., the direction along which terminals 4 are arranged, is defined as X direction.
  • the direction along which plug connector 40 is inserted into and retracted from receptacle connector 1 is defined as Z direction.
  • the height direction of receptacle connector 1 i.e., the direction orthogonal to X and Z directions, is defined as Y direction.
  • the X, Y, and Z directions are mutually orthogonal.
  • FIGS 7A and 7B show terminals 4 and 4' of receptacle connector 1 .
  • Each of terminals 4, 4' comprises a first electrode 6, a second electrode 7, and a flexible connection portion 8 connecting first and second electrodes 6 and 7.
  • first electrode 6 When first electrode 6 is coupled with plug connector 40 (refer to Figures 3A and 3B), it forms an electrical connection between receptacle connector 1 and plug connector 40 by making contact with a first electrode 44 of terminal 43 of plug connector 40.
  • Flexible connection portion 8 electrically and mechanically connects first electrode 6 and second electrode 7, and relative displacement is possible between first electrode 6 and second electrode 7 due to flexible connection portion 8 being electrically conductive and elastically deformable.
  • terminals 4, 4' are formed when an electrically conductive metal sheet of a prescribed thickness is punched out by press working or the like, and then by bending first electrode 6 at an approximately 90° angle in the thickness direction of the metal sheet.
  • Flexible connection portion 8 is punched in the shape of a wave, thereby becoming elastically deformable in the thickness direction and surface direction of the metal sheet, i.e., along X, Y, and Z directions.
  • Fixed receptacle housing 2 is of an approximate C shape when viewed from the Y direction, and is to be fixed to an underneath circuit board (not shown).
  • a plurality of support channels 10 (Fig. 2B) for supporting second electrodes 7 is formed in fixed receptacle housing 2. Channels 10 are arranged parallel to X direction distally from the insertion surface P1 .
  • Both ends of fixed receptacle housing 2 in X direction have a shoulder portion 12 (only one is shown in Figs. 4A and 4B) which projects in Z direction toward insertion surface P1 .
  • a fixing tab 14 is formed in an approximately C- shaped cross section so as to cover the outer periphery of shoulder portion 12, when shoulder portion 12 is inserted into fixing tab 14.
  • Fixing tab 14 is formed from a material such as a metal sheet.
  • a portion of fixing tab 14 constitutes a floating stopper 13, which cooperates with a floating restriction block 22 (to be described later) of floating receptacle housing 3, and restricts the amount of displacement of floating receptacle housing 3 toward plug connector 40 in the Z direction.
  • Figures 4A and 4B show the state where floating stopper 13 and floating restriction block 22 do not contact with each other, but separated by space z1 in Z direction.
  • floating receptacle housing 3 has a cavity or opening portion 16 for receiving plug connector 40, and floating housing 3 is connected to fixed receptacle housing 2 via terminals 4, 4'.
  • Opposite walls in X direction which constitute floating receptacle housing 3 extend such that a leg portion 18 (Figs. 4A and 4B) projects toward the bottom side.
  • a plurality of support channels 21 which receives first electrodes 6 is formed parallel to X direction between the inner surfaces of two opposite walls in the Y direction which form opening portion 16.
  • Disposing channels 20 are formed in which flexible connection portion 8 of terminal 4 are arranged.
  • Disposing channel 20 has a width the same or slightly greater than the thickness of flexible connection portion 8, to allow deformation of flexible connection portion 8 in Z direction, while restricting deformation of flexible connection portion 8 in X and Y directions.
  • Terminals 4, 4' are fixed to floating receptacle housing 3 by press-fitting first electrode 6 into support channel 21 .
  • Second electrode 7 is fixed in support channel 10 of fixed receptacle housing 2, whereby an electrical connection is formed between floating receptacle housing 3 and fixed receptacle housing 2. Displacement of floating receptacle housing 3 relative to fixed receptacle housing 2 is possible in Z direction.
  • a floating restriction block 22 projects from each side of floating receptacle housing 3 outwardly in X direction.
  • Space z1 is set between floating stopper 13 and floating restriction block 22. Therefore, floating receptacle housing 3 becomes movable relative to fixed receptacle housing 2 until floating restriction block 22 makes contact with floating stopper 13.
  • displacement of floating receptacle housing 3 away from plug connector 40 in Z direction is restricted when leg portion 18 contacts fixed receptacle housing 2.
  • a predetermined clearance x1 may be set in X direction between floating receptacle housing 3 and shoulder portion 12.
  • Clearance x1 ensures assembly of fixed receptacle housing 2 and floating receptacle housing 3 together and meanwhile, restricts the relative displacement of fixed receptacle housing 2 and floating receptacle housing 3 to the amount of clearance x1 in X direction.
  • fixed receptacle housing 2 and floating receptacle housing 3 are considered not movable relative to each other along X direction.
  • a clearance y1 is set in Y direction between floating restriction block 22 and shoulder portion 12 for the purpose of assembling fixed receptacle housing 2 and floating receptacle housing 3 together, by which floating receptacle housing 3 can only be displaced with respect to fixed receptacle housing 2 approaching the circuit board in Y direction, referred to in the context as first orthogonal direction 33a, by the amount of clearance y1 .
  • a prescribed clearance y2 is set in Y direction between floating restriction block 22 and fixing tab 14.
  • a connector system may include a rotation-prevention mechanism, one part of which is formed on the inner surface of the two opposing walls in Y direction of floating receptacle housing 3 (refer to Figure 5).
  • a rotation-prevention guide channel 24, a rotation- prevention spring 26, and a channel into which rotation-prevention spring 26 is to be inserted and supported, are provided.
  • Rotation-prevention spring 26 extends in Z direction inside opening portion 16.
  • a projecting portion 27 which projects toward the inside of opening portion 16 is provided at a position inside opening portion 16 up to where projecting portion 27 is inserted inside the opening portion 16, by a prescribed distance from insertion surface P1 .
  • Projection portion 27 projects from the sliding surface between plug connector 40 and receptacle connector 1 .
  • the same number of rotation prevention mechanisms is provided on each of the two opposing walls.
  • a corresponding part of the rotation-prevention mechanism is provided at a position of plug connector 40, for preventing rotation of plug connector 40 around X axis in the Y-Z plane with respect to receptacle connector 1 , by coupling to the rotation-prevention mechanism part of receptacle connector 1 when the plug 40 is displaced in Y direction after coupling the connector (refer to Figure 3).
  • This part of the rotation prevention mechanism is constituted by a rotation prevention projection 48 to be inserted into the rotation prevention guide channel 24 of receptacle connector 1 and a rotation prevention tab 50 which is disposed therein on rotation prevention projection 27 and which slides while making contact with projection 27 of rotation prevention spring 26.
  • a locking mechanism is provided on the inner surface of the two opposing walls in X direction which form opening portion 16 of floating receptacle housing 3, for preventing plug connector 40 from falling out of receptacle connector 1 , and for preventing relative displacement between first electrode 6 of receptacle connector 1 and first electrode 44 of plug connector 40, after mating of the plug and receptacle connectors is completed by insertion of plug connector 40 into receptacle connector 1 .
  • the locking mechanism has a locking blade 30 disposed on the inner surfaces of opening portion 16.
  • Locking blade 30 is an approximately rectangular member which extends in Z direction. Locking blade 30 has a hole or a recess portion 32.
  • a locking mechanism is provided at a position on plug connector 40 corresponding to the locking mechanism of receptacle connector 1 , for locking plug connector 40 and receptacle connector 1 , by moving together with the locking mechanism of receptacle connector 1 .
  • the locking mechanism has a locking spring 52 which extends in Z direction on the outer surface of floating plug housing 42.
  • a projecting portion 54 is provided at a position on locking spring 52 in Z direction toward fixed plug housing 41 away from insertion surface P2 by a prescribed distance.
  • Figure 8 is a diagram showing terminal 43 which is used in plug connector 40.
  • Terminal 43 has a first electrode 44, a second electrode 45, and a flexible connecting portion 46.
  • first electrode 44 is coupled to counterpart electrode 6 of receptacle connector 1
  • Second electrode 45 forms an electrical connection between plug connector 40 and the circuit board by mounting or soldering to the circuit board.
  • Flexible connecting portion 46 electrically and mechanically connects first electrode 44 and second electrode 45. Relative displacement is possible between first electrode 44 and second electrode 45 since flexible connecting portion 46 is elastically deformable.
  • terminal 43 is formed when an electrically conductive metal sheet of a prescribed thickness is punched out by press working or the like or by bending them by press working or the like.
  • Flexible connecting portion 46 is punched in the shape of a wave, thereby becoming elastically deformable in the thickness direction and surface direction of the metal sheet, i.e., X, Y, and Z directions.
  • Fixed plug housing 41 is of a shape having an approximately rectangular cross section, viewing from Z direction, and may be mounted to a circuit board (not shown).
  • a plurality of support channels 56 for supporting second electrodes 45 is formed on fixed plug housing 41 .
  • Support channels 56 (Fig. 3A) are arranged parallel to X direction on the two opposing walls in Y direction which form fixed plug housing 41 .
  • a shoulder portion 58 (Fig. 6) is formed on both sides of fixed plug housing 41 in X direction.
  • a fixing tab 60 is formed with an approximately C-shaped cross section to cover the outer periphery of shoulder portion 58 by insertion of shoulder portion 58 into the central space of fixing tab 60.
  • Fixing tab 60 is formed from a material such as a metal sheet. Fixing tab 60 restricts the amount of
  • floating plug housing 42 is formed in the shape of a hollow box which has an opening portion facing fixed plug housing 41 , and has a complementary plug shape for insertion into opening portion 16 of receptacle connector 1 .
  • a floating restriction block 62 having an approximately L- shaped cross section which projects outwardly in X direction is formed in the walls which constitute floating plug housing 42 at both ends in X direction.
  • a plurality of disposing walls 64 is provided inside the hollow box, and a disposing channel 66 is formed between each neighboring disposing wall separated by a prescribed gap.
  • a support channel 68 for supporting first electrode 44 is formed at a position corresponding to disposing channel 66 on the opposing walls in Y direction which form floating plug housing 42.
  • First electrode 44 is fixed inside support channel 68 of floating plug housing 42.
  • Second electrode 45 is fixed inside support channel 56 of fixed housing 41 .
  • terminal 43 connects floating plug housing 42 and fixed plug housing 41 .
  • Flexible connecting portion 46 of terminal 43 is disposed inside disposing channel 66, and can be elastically deformed in X, Y, and Z directions within the space of disposing channel 66. As such, the floating plug housing 42 can be displaced with respect to fixed plug housing 41 in X, Y, and Z directions.
  • a space y3 is set in Y direction between floating restriction block 62 provided in floating plug housing 42 and shoulder portion 58 provided in fixed housing 41 . Therefore, floating plug housing 42 can be displaced along Y direction up to each of the positions where floating restriction block 62 makes contact with shoulder portion 58.
  • a space x3 is set between each of the two opposing walls in X direction which form floating plug housing 42 and fixing tab 60 provided at both ends of fixed plug housing 41 in X direction. Therefore, floating plug housing 42 can be displaced in X direction up to each point where two opposing walls in the X direction make contact with fixing tab 60.
  • a portion of floating restriction block 62 is disposed between fixing tab 60 and the circuit board.
  • a clearance z3 is set between floating restriction block 62 and fixing tab 60, and between floating housing 42 and the circuit board.
  • floating plug housing 42 can be displaced in Z direction from the position where floating housing 42 and the circuit board make contact, up to the position where floating restriction block 62 and fixing tab 60 make contact.
  • FIG. 9A is a cross-sectional view of the connector system of the present invention before receptacle connector 1 and plug connector 40 are coupled to each other.
  • Circuit board R to which receptacle connector 1 is attached extends in X-Z plane
  • circuit board P to which plug connector 40 is attached extends in X-Y plane. Therefore, Circuit board R and Circuit board P are orthogonal to one another.
  • plug connector 40 is inserted into the opening portion 16 of receptacle connector 1 in Z direction.
  • rotation prevention projection 48 is inserted into rotation prevention guide channel 24, and then first electrode 44 of terminal 43 and first electrode 6 of terminal 4 make contact with one another.
  • first electrode 44 of terminal 43 elastically deforms toward the inside of plug connector 40 within Y-Z plane, and slides on first electrode 6.
  • rotation prevention projection 48 makes contact with the projection of rotation prevention spring 26 (refer to Figure 9B).
  • Pug connector 40 is inserted into receptacle connector 1 by further application of a force in Z direction.
  • Rotation prevention spring 26 is elastically deformed toward the outside of the opening portion in Y-Z plane, and slides on rotation prevention tab 50 while making contact therewith.
  • projecting portion 54 of locking spring 52 makes contact with an edge on the inner surface of the two opposing walls in X direction which form opening portion 16 of receptacle connector 1 .
  • locking spring 52 elastically deforms toward the inside of plug connector 40 in the X-Z plane, and projecting portion 54 makes contact with locking blade 30.
  • Plug connector 40 slides in that state thereby causing projecting portion 54 to slide on locking blade 30.
  • R and circuit board P can be displaced relative to each other via joined floating housings 3, 42 and flexible connecting portions 8, 46 of the respective terminals.
  • flexible connection portion 8 of terminal 4 on receptacle connector 1 can be displaced in Z direction
  • flexible connecting portion 46 of terminal 43 of plug connector 40 can be displaced in X and Y directions.

Landscapes

  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Coupling Device And Connection With Printed Circuit (AREA)

Abstract

La présente invention concerne un connecteur de réceptacle et un système de connecteur utilisant le connecteur de réceptacle. Le connecteur de réceptacle comprend une première électrode devant être connectée à une fiche de connexion, et une seconde électrode devant être connectée à une carte de circuits imprimés. La première électrode est connectée à la seconde électrode par le biais d'une partie de connexion souple qui est élastiquement déformable le long de la direction d'insertion de la fiche de connexion. Dans un mode de réalisation, un connecteur électrique possède un premier logement pour un montage sur une carte de circuits imprimés et un second logement pour un accouplement avec un connecteur homologue. Le connecteur possède des bornes comportant chacune une première extrémité fixée au premier logement, une seconde extrémité fixée au second logement et une partie connexion entre les première et seconde extrémités. Les premier et second logements sont mobiles l'un par rapport à l'autre le long de directions prédéfinies afin d'absorber les vibrations et d'assurer une connexion électrique fiable.
PCT/IB2010/003520 2009-12-22 2010-12-16 Connecteur flottant et système WO2011077264A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IBPCT/IB2009/056050 2009-12-22
IB2009056050 2009-12-22

Publications (2)

Publication Number Publication Date
WO2011077264A2 true WO2011077264A2 (fr) 2011-06-30
WO2011077264A3 WO2011077264A3 (fr) 2011-10-27

Family

ID=44196204

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2010/003520 WO2011077264A2 (fr) 2009-12-22 2010-12-16 Connecteur flottant et système

Country Status (2)

Country Link
TW (1) TW201145707A (fr)
WO (1) WO2011077264A2 (fr)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2806502A1 (fr) * 2013-05-20 2014-11-26 Iriso Electronics Co., Ltd. Connecteur
JP2018092760A (ja) * 2016-12-01 2018-06-14 株式会社フジクラ 電気コネクタ
JP2019160698A (ja) * 2018-03-15 2019-09-19 イリソ電子工業株式会社 可動コネクタ
CN113661614A (zh) * 2019-04-10 2021-11-16 松下知识产权经营株式会社 连接器、连接装置及连接方法
EP3955391A4 (fr) * 2019-04-10 2022-06-01 Panasonic Intellectual Property Management Co., Ltd. Connecteur, structure de connexion et procédé de connexion

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7467234B2 (ja) * 2020-05-28 2024-04-15 日本航空電子工業株式会社 フローティングコネクタ

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW488116B (en) * 2000-03-31 2002-05-21 Matsushita Electric Works Ltd Receptacle for coaxial plug connector
US7192296B1 (en) * 2006-07-03 2007-03-20 Hon Hai Precision Ind. Co., Ltd. Latchable electrical connector

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2806502A1 (fr) * 2013-05-20 2014-11-26 Iriso Electronics Co., Ltd. Connecteur
JP2018092760A (ja) * 2016-12-01 2018-06-14 株式会社フジクラ 電気コネクタ
JP2019160698A (ja) * 2018-03-15 2019-09-19 イリソ電子工業株式会社 可動コネクタ
JP7154782B2 (ja) 2018-03-15 2022-10-18 イリソ電子工業株式会社 可動コネクタ
CN113661614A (zh) * 2019-04-10 2021-11-16 松下知识产权经营株式会社 连接器、连接装置及连接方法
EP3955391A4 (fr) * 2019-04-10 2022-06-01 Panasonic Intellectual Property Management Co., Ltd. Connecteur, structure de connexion et procédé de connexion

Also Published As

Publication number Publication date
WO2011077264A3 (fr) 2011-10-27
TW201145707A (en) 2011-12-16

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