EP3819992B1 - Connecteur enfichable - Google Patents

Connecteur enfichable Download PDF

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Publication number
EP3819992B1
EP3819992B1 EP20199621.2A EP20199621A EP3819992B1 EP 3819992 B1 EP3819992 B1 EP 3819992B1 EP 20199621 A EP20199621 A EP 20199621A EP 3819992 B1 EP3819992 B1 EP 3819992B1
Authority
EP
European Patent Office
Prior art keywords
contact
arrangement
component
connector
force
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.)
Active
Application number
EP20199621.2A
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German (de)
English (en)
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EP3819992A1 (fr
Inventor
David NGAN
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.)
Yamaichi Electronics Deutschland GmbH
Original Assignee
Yamaichi Electronics Deutschland GmbH
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Filing date
Publication date
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Publication of EP3819992A1 publication Critical patent/EP3819992A1/fr
Application granted granted Critical
Publication of EP3819992B1 publication Critical patent/EP3819992B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • 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
    • H01R12/77Coupling devices for flexible printed circuits, flat or ribbon cables or like structures
    • H01R12/79Coupling devices for flexible printed circuits, flat or ribbon cables or like structures connecting to rigid printed circuits or like structures
    • 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
    • H01R12/77Coupling devices for flexible printed circuits, flat or ribbon cables or like structures
    • H01R12/778Coupling parts carrying sockets, clips or analogous counter-contacts
    • 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
    • H01R13/02Contact members
    • H01R13/03Contact members characterised by the material, e.g. plating, or coating materials
    • 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
    • H01R13/02Contact members
    • H01R13/22Contacts for co-operating by abutting
    • H01R13/24Contacts for co-operating by abutting resilient; resiliently-mounted
    • H01R13/2442Contacts for co-operating by abutting resilient; resiliently-mounted with a single cantilevered beam
    • 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
    • H01R13/405Securing in non-demountable manner, e.g. moulding, riveting
    • H01R13/41Securing in non-demountable manner, e.g. moulding, riveting by frictional grip in grommet, panel or base

Definitions

  • the present invention relates to an electrical connector.
  • US 2015 / 214 644 A1 describes a flexible flat cable connector comprising: an insulating housing having a plurality of first terminal holes in a front end of the insulating housing and having a plurality of second terminal holes in a rear end of the insulating housing, the first terminal holes and the second terminal holes being arranged up and down, respectively, around a first insertion space or to form a second insertion space; and a plurality of terminals having a first elastic portion and may have a second elastic portion, wherein the terminals are fixed inside the insulating case in an up/down two-row configuration, the first elastic portions are inserted into the first insertion space, and in the are arranged in the up/down double-row configuration, and the second elastic portions are inserted into the second insertion space and arranged in the up/down double-row configuration.
  • U.S. 5,934,932A describes an electrical connector for a flat cable, comprising: an elongate dielectric housing defining an elongate opening for receiving a flat electrical cable, with a plurality of terminals attached to the housing and having a row of contact portions in a row which are spaced along the opening; and an actuator attached to the housing for movement between a first position allowing free insertion of the flat cable into the opening and a second position in which a pressure plate of the actuator biases the cable against the contact portions of all terminals, and including at least one narrow one Projection at a front end of the pressure plate for temporarily gripping a narrow portion of the flat cable to preload the cable.
  • U.S. 7,247,047 B2 describes a motor vehicle glazing having an electrical device with conductor connection areas, which are arranged side by side on a surface of the window, and a connecting element which is connected to the conductor connection areas and serves to connect the electrical device to a signal processing or power supply device located on the Motor vehicle is located to be connected, the connecting element comprising a plug-in or clamp connection for a flat cable, the cable having a number of mutually insulated conductors, the plug-in or clamp connection having at least the following parts: an insulating flat housing with a groove-shaped cable fixation which is arranged essentially parallel to the surface of the pane and into which a flat cable with a free end can be detachably inserted, a number of connection conductors, the cable-side ends of which lead into the cable fixation and the glass-side ends of which can be connected to the conductor connection areas.
  • the present invention is a plug connector, in particular for electrically connecting a first component, in particular a ribbon cable, to a second component, in particular a printed circuit board, comprising: an insulating housing body which has a contact receptacle for receiving a contact area of the first component along a receiving direction, and a plurality of identical, arranged side by side and through the case body mutually electrically insulated and resilient contact clips, which are designed in such a way to electrically contact the contact region of the first component in a contact state of the plurality of contact clips and to electrically connect the second component to the first component, the plurality of contact clips being in a first arrangement relative to is arranged in the receiving direction and/or in a second arrangement relative to the receiving direction, and wherein the contact receptacle is positioned on the housing body in such a way that when the housing body is identical in the contact state of the plurality of contact clips, each of the plurality of contact clips in the first arrangement has a first predeterminable Contact force can be exerted on the contact
  • the contact area of the first component is inserted or pushed along the receiving direction into the contact receptacle formed in the housing body by an insertion depth or penetration depth predetermined by the shape of the contact receptacle pushed until the contact area of the first component touches or contacts all of the plurality of contact clips and is in a plug-in position predetermined by the shape of the contact receptacle and/or by the shape of the individual contact clips.
  • the plurality of contact straps are in a contact state.
  • the contact area is that area within which the electrical contacts of the first component extend in an exposed manner.
  • the receiving direction is to be understood as the direction in which the first component, in particular the contact area of the first component, is inserted or pushed into the contact receptacle of the housing body in order to bring the contact area of the first component into contact with all of the plurality of contact clips ( contact state).
  • the receiving direction can be or run parallel to a direction of extent of the contact receptacle and/or to the direction of extent of the multiplicity of contact clips.
  • the contact is to be understood as a recess in the housing body.
  • the contact area of the first component presses against an end area of each contact clip of the plurality of contact clips, which extends into the contact receptacle, and presses the end area in a direction transverse to the receiving direction .
  • the end region is moved by a certain amount, the contact force, depending on the position of the contact socket relative to the housing body and the arrangement of each contact clip of the plurality of contact clips relative to the housing body and the receiving direction or contact socket is required to produce an electrical contact connection between the contact area of the first component and the contact clips, corresponding path in the direction transverse to the recording direction is pressed or deflected.
  • predeterminable contact force means the force that corresponds to the force to establish an electrical contact connection between the contact area of the first component and the end areas of the contact straps in the contact state of the plurality of contact straps by means of contacting.
  • the force acting on the contact area of the first component or the end area of the contact clip depends on the deflection of the contact clip, in particular the end area of the contact clip, when the contact area of the first component is pushed in or plugged into the contact receptacle in the receiving direction.
  • the contact force can be determined if the contact material or the contact type of the contact area of the first component and the material from which the plurality of contact straps is formed or with which each contact strap of the plurality of contact straps is known are known.
  • the plug connector described so far reduces wear, in particular abrasion, of the electrical contacts of both the first component and the plug connector, with the plug connector bringing about an ideal electrical contact connection between the first component and the second component.
  • each contact strap of the plurality of contact straps has spring properties.
  • the contact brackets have different spring deflections.
  • the plurality of contact straps are arranged either exclusively in the first arrangement or exclusively in the second arrangement, or the plurality of contact straps are arranged partly in the first arrangement and partly in the second arrangement. A subset of the plurality of contact straps may be arranged in the first array, and the remainder of the plurality of contact straps may be arranged in the second array.
  • the contact clips are curved transversely to the receiving direction or are designed in the shape of a clip along the receiving direction.
  • the geometry of the contact brackets in their end regions contributes to the fact that the first contact force and the second contact force can be influenced, in particular adjusted.
  • Those contact clips of the plurality of contact clips that are in the first arrangement exert the first contact force on the contact area of the first component in the contact state of the plurality of contact clips
  • those contact clips of the plurality of contact clips that are in the second arrangement exercise in the contact state of the plurality of contact clips, the second contact force exerts itself on the contact area of the first component. If the contact clips are only in the first arrangement, they only exert the first contact force on the contact area of the first component in the contact state. If, on the other hand, the contact clips are only in the second arrangement, they only exert the second contact force on the contact area of the first component in the contact state.
  • the contact straps in the first arrangement practice the first arrangement in the contact state
  • Contact force on the contact area of the first component and the contact straps in the second arrangement exert the second contact force on the contact area of the first component in the contact state.
  • a connector can be implemented that can be used in a simple and cost-effective manner for a plurality of contact materials or contact types of the contact area of the first component.
  • the connector described above can be manufactured for various applications using a simple modular principle.
  • the first predeterminable contact force corresponds to the contact force of gold-plated contacts and the second predeterminable contact force corresponds to the contact force of tin-plated contacts.
  • the first predeterminable contact force corresponds to the contact force of tin-plated contacts and the second predeterminable contact force corresponds to the contact force of gold-plated contacts.
  • the connector described can thus be used in a simple and cost-effective manner for different contact material groups, such as e.g. As precious metals, but also other heavy metals use.
  • the connector can be designed, for example, for two contact materials or contact types of the contact area of the first component, namely for gold and/or tin contacts or gold-plated and/or tin-plated contacts.
  • the multiplicity of contact clips in particular each of the multiplicity of contact clips, is displaced either partially or completely from the contact receptacle, depending on the penetration depth of the contact region of the first component into the contact receptacle.
  • the end regions of the contact clips are either partially or completely displaced or pressed out of the contact receptacle transversely to the receiving direction.
  • each of the plurality of contact clips in the first arrangement when receiving the contact area of the first component in the contact receptacle, is deflected by a first amount dependent on the first arrangement. More preferably, when receiving the contact area of the first component in the contact receptacle, each of the plurality of contact clips in the second arrangement is deflected by a second amount dependent on the second arrangement. In this case, the first amount and the second amount are different from one another.
  • the first magnitude can be mathematically related to the first contact force and the second magnitude can be mathematically related to the second contact force.
  • the first contact force can be directly proportional to the first magnitude and the second contact force can be directly proportional to the second magnitude.
  • the first contact force can also depend quadratically, cubically or polynomially on the first amount.
  • the second contact force can also depend quadratically, cubically or polynomially on the second amount.
  • each of the plurality of contact straps in the first arrangement extends further into the contact receptacle than in the second arrangement without the contact portion of the first component being received in the contact receptacle.
  • each of the plurality of contact straps in the second arrangement without the contact portion of the first component received in the contact receptacle, extends further into the contact receptacle than in the first arrangement.
  • Each of the contact straps may be shaped such that in the condition in which there is no electrical contact between the first component and the contact straps, ie. H. if the contact area of the first component is not located or is not completely located in the contact receptacle of the housing body, partially, in particular at its end region, protrudes into the contact receptacle.
  • Each of the multiplicity of contact clips can also be designed in such a way that it has a curvature or a kink counter to the receiving direction.
  • the bend or kink may be concave in the first configuration and convex in the second configuration.
  • the curvature or the kink in the first arrangement may be convex and in the second arrangement concave.
  • the curvature or kink has an extreme point.
  • the curvature or kink can be bow-shaped and the extreme point can be a bow maximum or a bow minimum.
  • Each of the plurality of contact clips and the housing body can be designed in such a way that the extreme point of the curvature or the kink of each contact clip in the first arrangement has a first predeterminable and/or predetermined distance from a first inner surface of the contact receptacle and the extreme point of the curvature or the kink of each contact clip in the second arrangement has a second predefinable and/or predefinable distance from a second inner surface of the contact receptacle opposite the first inner surface.
  • the first distance can be greater than the second distance.
  • the second distance can be greater than the first distance.
  • the contact straps can protrude by 0.1 mm into the contact receptacle, i. H. the first distance can be 0.1 mm, the contact straps in the second arrangement being able to protrude into the contact receptacle by 0.2 mm, ie. H. the second distance can be 0.2 mm.
  • the multiplicity of contact clips is preferably designed in such a way that the housing body can be soldered to the second component in an upright or horizontal position.
  • this allows the connector to be used in areas that have or require little space. Since the connector can be connected to the second component in different ways, the connector can be installed flexibly.
  • the housing body may be molded from an electrically insulating material such as plastic.
  • the housing body can be designed in one piece or in multiple pieces and it can be manufactured in whole or in part by injection molding or by means of a 3D printer.
  • the plurality of contact straps is stamped.
  • each contact clip of the plurality of contact clips is stamped or a stamped part.
  • the multiplicity of contact clips is preferably electroplated, with the multiplicity of contact clips being electroplated in particular by means of a gold bath or by means of a tin bath.
  • each contact clip of the multiplicity of contact clips is electroplated, with each contact clip of the multiplicity of contact clips being electroplated in particular by means of a gold bath or by means of a tin bath.
  • the housing body is preferably designed asymmetrically relative to the contact receptacle.
  • the first contact force in the first arrangement and the second contact force in the second arrangement can advantageously be further influenced, in particular adjusted.
  • the first array and the second array are not mirror symmetrical relative to the contact receptacle.
  • the first arrangement and the second arrangement are arrangements rotated relative to one another, with the second arrangement in particular being an arrangement rotated by 180° with respect to the first arrangement relative to the recording direction.
  • the second arrangement can be an arrangement rotated by 180° with respect to the first arrangement about an axis along the recording direction.
  • this further contributes to the fact that the first contact force in the first arrangement differs from the second contact force in the second arrangement is different.
  • the storage effort can be reduced and different plug and connector configurations can be made possible with identical components.
  • the first predeterminable contact force corresponds to a force to bring the contact region of the first component formed from a first material or coated with a first material into electrical contact with one of the plurality of contact clips
  • the second predeterminable contact force corresponds to a force to a second material molded or coated with a second material contact portion of the first component in electrical contact with one of the plurality of contact straps.
  • the first material can be gold and the second material can be tin.
  • the first material can also be tin and the second material can be gold.
  • the first component is preferably a ribbon cable and the second component is a printed circuit board.
  • Figures 1 to 5 equipped with a Cartesian xyz coordinate system, the coordinate system being oriented in such a way that the x-axis of the coordinate system runs in the direction of the recording direction.
  • FIG. 1 shows a perspective rear view of an embodiment of the connector 10.
  • the housing body 12 is formed in two parts and accordingly has a front part 12a, which includes the contact clips 16, and a rear part 12b.
  • the housing body 12 is formed in two parts in order to achieve a plastic-compatible design of the housing body 12 and no jumps in wall thickness.
  • the contact receptacle 14 extends along the receiving direction AR from the rear part 12b to the front part 12a.
  • the rear part 12b is designed in such a way that two latching grooves 13 extend above the contact receptacle 14 in the receiving direction AR, which serve to latch an optional stiffener or a stiffening element, which is not shown in the figures.
  • the front part 12a and the rear part 12b of the housing body 12 can, for example, be plugged or screwed together and thus form the housing body 12.
  • the contact straps 16 extend from the interior of the front part 12a of the housing body 12 in the direction of the receiving direction AR and protrude substantially from a central region of the front part 12a of the housing body 12, so that the protruding ends of the contact straps 16 are connected to a second component 20 such as a circuit board or circuit board (not shown here, see below figure 4 and 5 ) can be electrically connected or can be brought into electrical contact with the second component 20 such as a printed circuit board or a circuit board.
  • a second component 20 such as a circuit board or circuit board (not shown here, see below figure 4 and 5 ) can be electrically connected or can be brought into electrical contact with the second component 20 such as a printed circuit board or a circuit board.
  • the contact brackets 16 are in the y-direction, ie perpendicular to the recording direction, all parallel to one another in the arrangement A1 (see also figures 3 , 4 , 5 and 6 ) and arranged electrically insulated and separated from each other by the shape of the front part 12a of the case body 12 (see also figure 2 ).
  • figure 2 shows a perspective front view of FIG figure 1 shown embodiment of the connector 10. Compared to figure 1 is the in figure 2 shown rotated by 90° around the z-axis.
  • figure 3 shows a cross section of in the figures 1 and 2 shown connector 10 along the receiving direction AR by a contact clip 16.
  • the cross section of the connector 10 shown shows that the contact clip 16 (the same applies to all other contact clips 16 not shown) is arranged in the arrangement A1.
  • the contact clips 16 extend counter to the receiving direction AR into the front part 12a of the housing body 12 and have a curvature or a kink 26 in their end region counter to the receiving direction AR in the xz plane. Due to the curvature or the kink 26, the contact brackets 16 are curved to form a bracket.
  • bracket maxima 28 differ from the shape of the housing body 12 and the contact receptacle 14 dependent distance d between bracket maximum 26 and related to the z-axis, lower inner surface 22 of contact receptacle 14 in contact receptacle 14.
  • the contact bracket 16 would protrude into the contact receptacle 14 by a distance different from the distance d between the extreme point 28 of the curvature or the kink 26 and the upper inner surface 24 of the contact receptacle 14.
  • a first component 18 such as. B. a ribbon cable
  • the area around the clip maxima around a dependent on the curvature and the material of the contact clip 16 and the material of the contact area KB path in the z-direction is pressed or deflected downwards. This reduces the distance d.
  • FIG. 3 shows the z-component of the counterforce F1.
  • the counterforce F1 corresponds to the contact force F1, which is required in order to bring the contact clip 16 and the contact area KB into electrical contact, that is to say in order to produce an electrical contact connection.
  • the contact area KB is made of a specific material, such as. B. gold, formed or coated with this.
  • the contact force F1 is consequently the contact force that is essential for gold.
  • FIGS. 4 and 5 show the cross section of the connector 10 as in figure 3 shown once standing and once lying down with a second component 20, such as. B. a printed circuit board (indicated by the dashed rectangle 20), soldered.
  • figure 4 shows that the circuit board 20 can be soldered standing to the housing body 12
  • FIG figure 5 shows that the printed circuit board 20 can also be soldered to the housing body 12 lying flat.
  • figure 6 shows the first arrangement A1 and the second arrangement A2 of the contact clip 16 in comparison.
  • the arrangement A1 corresponds to that in figure 3 shown arrangement A1 of the contact clip 16, with the contact area KB being pushed or inserted in the receiving direction AR of the contact clip 16 shown being pushed away or deflected in the first arrangement A1 and the contact force F1 thus acting on the contact area KB.
  • the second arrangement A2 is rotated 180° to the first arrangement A1 about an axis along the recording direction AR.
  • the second array A2 is mirrored vertically to the first array A1.
  • the area around the clip minimum around the shown contact clip 16 can be pushed or deflected upwards by a distance that is greater in the z-direction than in the first arrangement A1. This results in a corresponding counterforce F2 of the contact clip 16 on the contact area KB, which is different from the force F1.
  • the forces F1 and F2 which are also dependent on the arrangement of the contact clips 16 in the first arrangement A1 or the second arrangement A2, can be set in such a way that that they correspond to the contact forces F1 and F2 for different contact types and materials.
  • the force F1 can correspond to the contact force F1 for gold and the force F2 to the contact force F2 for tin, or the force F1 can correspond to the contact force F1 for tin and the force F2 correspond to the contact force F2 for gold.
  • the plug connector 10 can be used easily and with little effort in terms of production costs and storage for the electrical connection of two different types of, for example, flat ribbon cables, which have either gold-shaped or gold-plated or tin-shaped or tinned contact areas. be provided with a printed circuit board or circuit board. i.e.
  • the plug connector 10 reduces the wear, in particular the abrasion, of the electrical contacts of both the first component 18 and the connector 10, the connector 10 causing an ideal electrical contact connection between the first component 18 and the second component 20 and a reliable electrical connection or electrical contact is guaranteed.
  • the connector 10 can be used in areas that have or require little space. Since the connector 10 can be connected to the second component 20 in different ways, the connector 10 can be installed flexibly.

Landscapes

  • Coupling Device And Connection With Printed Circuit (AREA)

Claims (15)

  1. Connecteur enfichable (10), en particulier destiné à raccorder de manière électrique un premier composant (18), en particulier un câble plat, à un deuxième composant (20), en particulier une carte de circuits imprimés, comprenant :
    - un corps de boîtier (12) isolant, lequel présente un logement de contact (14) destiné à loger une zone de contact (KB) du premier composant (18) le long d'une direction de logement (AR), et
    - une pluralité d'étriers de contact (16) disposés côte à côte et isolés électriquement les uns des autres par le corps de boîtier (12) et présentant une possibilité de rappel, laquelle est réalisée de manière à mettre en contact électriquement la zone de contact (KB) du premier composant (18) et de manière à raccorder électriquement le deuxième composant (20) au premier composant (18),
    dans lequel la pluralité d'étriers de contact (16) est disposée selon une première disposition (A1) par rapport à la direction de logement (AR) et/ou selon une deuxième disposition (A2) par rapport à la direction de logement (AR), et
    dans lequel le logement de contact (14) est positionné sur le corps de boîtier (12) de telle manière qu'en cas de corps de boîtier identique
    chaque étrier de contact de la pluralité d'étriers de contact (16) peut exercer dans la première disposition (A1) une première force de contact (F1) pouvant être prédéfinie sur la zone de contact (KB) du premier composant (18), et
    chaque étrier de contact de la pluralité d'étriers de contact (16) peut exercer dans la deuxième disposition (A2) une deuxième force de contact (F2) pouvant être prédéfinie sur la zone de contact (KB) du premier composant (18),
    dans lequel la première force de contact (F1) est différente de la deuxième force de contact (F2), caractérisé en ce que les étriers de contact (16) sont identiques.
  2. Connecteur enfichable (10) selon la revendication 1, dans lequel la première force de contact (F1) pouvant être prédéfinie correspond à la force de contact de contacts revêtus d'or de la zone de contact (KB) du premier composant (18) et la deuxième force de contact (F2) pouvant être prédéfinie correspond à la force de contact de contacts revêtus d'étain de la zone de contact (KB) du premier composant (18), ou
    dans lequel la première force de contact (F1) pouvant être prédéfinie correspond à la force de contact de contacts revêtus d'étain de la zone de contact (KB) du premier composant (18) et la deuxième force de contact (F2) pouvant être prédéfinie correspond à la force de contact de contacts revêtus d'or de la zone de contact (KB) du premier composant (18).
  3. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel selon la profondeur de pénétration de la zone de contact (KB) du premier composant (18) dans le logement de contact (14), la pluralité d'étriers de contact (16), en particulier chaque étrier de contact de la pluralité d'étriers de contact (16), est repoussé soit en partie soit en totalité hors du logement de contact.
  4. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel lors du logement de la zone de contact (KB) du premier composant (18) dans le logement de contact (14), chaque étier de contact de la pluralité d'étriers de contact (16) dans la première disposition (A1) est dévié d'une première valeur dépendant de la première disposition (A1) et dans lequel lors de la réception de la zone de contact (KB) du premier composant (18) dans le logement de contact (14), chaque étrier de contact de la pluralité d'étriers de contact (16) est dévié dans la deuxième disposition (A2) d'une deuxième valeur dépendant de la deuxième disposition (A2),
    dans lequel la première valeur et la deuxième valeur sont différentes.
  5. Connecteur enfichable (10) selon la revendication 4, dans lequel la première valeur se trouve dans une relation mathématique par rapport à la première force de contact (F1), dans lequel la première force de contact (F1) est directement proportionnelle par rapport à la première valeur, et
    dans lequel la deuxième valeur se trouve dans une relation mathématique par rapport à la deuxième force de contact (F2), dans lequel la deuxième force de contact (F2) est directement proportionnelle par rapport à la deuxième valeur.
  6. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel chaque étrier de contact de la pluralité d'étriers de contact (16) s'étend dans la première disposition (A1) davantage dans le logement de contact (14) que dans la deuxième disposition (A2), ou
    dans lequel chaque étrier de contact de la pluralité d'étriers de contact (16) s'étend dans la deuxième disposition (A2) davantage dans le logement de contact (14) que dans la première disposition (A1).
  7. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la pluralité d'étriers de contact (16) est réalisée de telle manière que le corps de boîtier (12) peut être lié par soudage à la verticale ou à l'horizontale au deuxième composant (20).
  8. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la pluralité d'étriers de contact (16) est estampée.
  9. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la pluralité d'étriers de contact (16) est galvanisée, dans lequel la pluralité d'étriers de contact (16) est galvanisée en particulier au moyen d'un bain d'or ou au moyen d'un bain d'étain.
  10. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel le corps de boîtier (12) est réalisé de manière asymétrique par rapport au logement de contact (14).
  11. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la première disposition (A1) et la deuxième disposition (A2) ne sont pas symétriques en miroir par rapport au logement de contact (14).
  12. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la première disposition (A1) et la deuxième disposition (A2) sont des dispositions tournées l'une par rapport à l'autre, dans lequel en particulier la deuxième disposition (A2) est une disposition tournée de 180° à l'encontre de la première disposition (A1) par rapport à la direction de logement (AR).
  13. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel la première force de contact (F1) pouvant être prédéfinie correspond à une force pour amener la zone de contact (KB) du premier composant (18) formée à partir d'un premier matériau ou revêtue d'un premier matériau en contact électrique avec un étier de contact de la pluralité d'étriers de contact (16), et dans lequel la deuxième force de contact (F2) pouvant être prédéfinie correspond à une force pour amener en contact la zone de contact (KB) du premier composant (18) formée à partir d'un deuxième matériau ou revêtue d'un deuxième matériau en contact électrique avec un étier de contact de la pluralité d'étriers de contact (16).
  14. Connecteur enfichable (10) selon la revendication 13, dans lequel le premier matériau est de l'or et le deuxième matériau est de l'étain, ou
    dans lequel le premier matériau est de l'étain et le deuxième matériau est de l'or.
  15. Connecteur enfichable (10) selon l'une quelconque des revendications précédentes, dans lequel le premier composant (18) est un câble plat et le deuxième composant (20) est une carte de circuits imprimés.
EP20199621.2A 2019-11-11 2020-10-01 Connecteur enfichable Active EP3819992B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102019007798.9A DE102019007798A1 (de) 2019-11-11 2019-11-11 Steckverbinder

Publications (2)

Publication Number Publication Date
EP3819992A1 EP3819992A1 (fr) 2021-05-12
EP3819992B1 true EP3819992B1 (fr) 2023-08-30

Family

ID=72717767

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Application Number Title Priority Date Filing Date
EP20199621.2A Active EP3819992B1 (fr) 2019-11-11 2020-10-01 Connecteur enfichable

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Country Link
EP (1) EP3819992B1 (fr)
DE (1) DE102019007798A1 (fr)

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3025948B2 (ja) * 1996-06-21 2000-03-27 モレックス インコーポレーテッド 平型柔軟ケーブル用コネクタ
US6575774B2 (en) * 2001-06-18 2003-06-10 Intel Corporation Power connector for high current, low inductance applications
US6478597B1 (en) * 2001-08-16 2002-11-12 Miraco, Inc. Zero insertion force connector for flat flexible cable
US6840809B2 (en) * 2002-07-11 2005-01-11 Hon Hai Precision Ind. Co., Ltd. Electrical connector having improved contacts
DE20215634U1 (de) * 2002-10-11 2004-02-19 Pilkington Automotive Deutschland Gmbh Fahrzeugglasscheibe
DE10318890B4 (de) * 2003-04-17 2014-05-08 Ami Doduco Gmbh Elektrische Steckkontakte und ein Halbzeug für deren Herstellung
US7896661B2 (en) * 2009-06-11 2011-03-01 Hon Hai Precision Ind. Co., Ltd. Card edge connector with improved soldering portions of terminals
JP4741018B2 (ja) * 2009-07-02 2011-08-03 山一電機株式会社 カードコネクタ
US9373903B2 (en) * 2014-01-28 2016-06-21 Wei Sun Chang Flexible flat cable connector and flexible flat cable thereof
JP5814411B2 (ja) * 2014-03-20 2015-11-17 イリソ電子工業株式会社 コネクタ
US10355385B1 (en) * 2018-07-27 2019-07-16 Miraco, Inc. High reliability zero insertion force connector and assembly

Also Published As

Publication number Publication date
EP3819992A1 (fr) 2021-05-12
DE102019007798A1 (de) 2021-05-12

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