EP3721505A1 - Connecteur - Google Patents

Connecteur

Info

Publication number
EP3721505A1
EP3721505A1 EP18808380.2A EP18808380A EP3721505A1 EP 3721505 A1 EP3721505 A1 EP 3721505A1 EP 18808380 A EP18808380 A EP 18808380A EP 3721505 A1 EP3721505 A1 EP 3721505A1
Authority
EP
European Patent Office
Prior art keywords
plug
carrier body
electrical
contact element
housing
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.)
Granted
Application number
EP18808380.2A
Other languages
German (de)
English (en)
Other versions
EP3721505B1 (fr
Inventor
Sebastian Mayer
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.)
TFFI GmbH and Co KG
Original Assignee
TFFI GmbH and Co KG
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 TFFI GmbH and Co KG filed Critical TFFI GmbH and Co KG
Publication of EP3721505A1 publication Critical patent/EP3721505A1/fr
Application granted granted Critical
Publication of EP3721505B1 publication Critical patent/EP3721505B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R4/00Electrically-conductive connections between two or more conductive members in direct contact, i.e. touching one another; Means for effecting or maintaining such contact; Electrically-conductive connections having two or more spaced connecting locations for conductors and using contact members penetrating insulation
    • H01R4/24Connections using contact members penetrating or cutting insulation or cable strands
    • H01R4/2404Connections using contact members penetrating or cutting insulation or cable strands the contact members having teeth, prongs, pins or needles penetrating the insulation
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/58Contacts spaced along longitudinal axis of engagement
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R27/00Coupling parts adapted for co-operation with two or more dissimilar counterparts
    • H01R27/02Coupling parts adapted for co-operation with two or more dissimilar counterparts for simultaneous co-operation with two or more dissimilar counterparts

Definitions

  • the invention relates to a plug for piercing in at least two layers of electrically conductive material and in a layer of light-conducting material, with a housing, at least two mutually insulated electrical Kunststoffele elements and a photoconductive optical contact element, wherein the at least two electrical contact elements and easily conductive optical contact element are arranged on at least one projecting from the housing pin, which is formed on the opposite end of Ge housing to at least one tip converging, wherein the electrical contact elements are arranged in un differential longitudinal positions on the at least one con nection pin.
  • the invention relates to a combination of a Stromkör pers with at least one such, inserted therein plug and a combination of a first such connector with a part of a second such connector.
  • Plugs of this type which are designed to be inserted into layers of electrically conductive material and in a layer of light waves conductive material, are known from the prior art.
  • EP 3 163 160 Al discloses a device for image presentation, with a carrier body, in which each egg ner drive unit connected, individually controllable
  • the carrier body has a first electrically conductive layer facing the luminous bodies, a second electrically conductive layer facing away from the luminous bodies, and a light-conducting layer arranged between the first and second electrically conductive layer for conducting light signals.
  • the drive units are connected via light-detecting terminals to the photoconductive layer, via first electrical connections to the first electrically conductive layer and via second electrical connections to the second electrically conductive layer.
  • the control units are to control the luminous bodies in depen dence of fed into the photoconductive layer Light signals formed.
  • the US 3,610,933 relates to a connecting device for pushing through a multi-layer flooring to tapping electrical power Leis or electrical or optical signals from the floor covering.
  • the flooring can u.a. have two separate electrical layers and an interposed insulating, designed as a dielectric or insulator layer over which laser signals or microwaves can be transmitted.
  • the connecting device has electrical or optical connections for insertion into the floor covering.
  • CA 2 684 819 discloses a device for receiving a photovoltaic module and a multilayer body, which has a first electrically conductive layer and a second electrically conductive layer between which an insulating layer is provided.
  • Layers can be connected to outputs of the photovoltaic module.
  • electronic units such as LEDs or battery chargers can be inserted.
  • US Pat. No. 3,809,966 discloses a multilayer floor covering having two electrically conductive layers which are insulated from one another by a layer.
  • the conductive layers transmit electrical energy to the power supply and signal information.
  • a connecting element can be inserted with two pointed pins.
  • Each of the pins carries an electrical contact element for connection to one of the electrically conductive layers of the floor covering.
  • the pins are connected to contacts of sockets for power or signal supply.
  • the US 3,860,317 discloses a device with a connection pins having base part which is releasably connectable ver with a housing.
  • the housing has electronic components and Plug on.
  • the device can be stabbed into a multilayer floor covering with electrically conductive layers which are separated by an insulating layer.
  • EP 2 690 233 A1 discloses a multilayer structure e.g. as a floor covering, with electrically conductive layers which are covered by insulation layers or thereby separated and in which a plug can be inserted.
  • the plug has for this purpose pierceable pins that end in electrical contacts or are connected to a power cable.
  • FR 2 694 322 discloses a panel having at least two electrically conductive layers which are separated by an insulating layer and in which a plug can be inserted.
  • the plug has a pierceable connection with two electrical contact elements or two piercable connections, each with an electrical contact element.
  • the invention has the goal of creating a plug of an initially mentioned type with the widest possible field of application.
  • the housing has at least one socket for a connector to connect to the pin to the electrical (or optical) device, wherein the socket has at least one connector which is connected to at least one of the electrical contact elements and the optical contact element and the housing has a control unit to which the electrical contact elements and / or the optical contact element are connected to the at least one connection.
  • the plug is in particular forms out to be inserted into a carrier body, the th two electrically insulated, electrically conductive Schich th and a photoconductive, preferably also electrically iso lating layer, for conducting light signals or
  • Light waves has.
  • the electrically conductive capable layers and the photoconductive layer each other at least at the puncture site of the plug.
  • the plug has a housing and at least one protruding from the housing Anschlußusss pin on which at least two electrical from each other iso profiled, electrically conductive contact elements and a
  • the connecting pin is at the end facing away from the housing depending on the imple mentation to a tip or a plurality of tips formed converging.
  • the pin has its smallest cross-sectional area at the tip.
  • the tip may be formed, for example, conical or bevelled, with a beveled tip may correspond to a section of the terminal pin with an oblique plane to the pin.
  • the terminal pin is preferably such stable, in particular substantially We sentlichen, formed and dimensioned such that a user, the terminal pin and thus the plug preferably without aids, i. preferably without tools, can pierce body in the carrier.
  • the con struction of the carrier body a simple insertion of the
  • connection pin in the carrier body is designed to be able to pierce the connecting pin without the prior introduction of a bore in the carrier body and only by pressure application by the loading user on the plug into the carrier body.
  • the connecting pin and the carrier body are designed to hold the plug in the inserted in the carrier body position in wesent union by frictional engagement.
  • the length of the terminal pin ie, its extension in the piercing direction
  • the pin may alternatively have a ecki ge cross-sectional shape.
  • the electrical contact elements (electrically conductive contact elements) and the light-conducting optical contact element are provided at positions on the connection pin, the connection of the optical contact element with the photoconductive layer, a compound of an electric booster contact element with a first electrically conductive layer and a connection of the other electrical Kunststoffele ments with a second electrically conductive layer of Trä- Gerissons produce, when the plug is stung in the carrier body. Therefore, the electrical contact elements are arranged in different longitudinal positions on the at least one con nection pin. The electrical contact elements may overlap in the longitudinal direction of the terminal pin.
  • the electrical contact elements in the longitudinal direction of the con nection pin against each staggered initial positions and ge staggered end positions have, between which initial positions and end positions, the electrical con tact elements extend to a Short circuit to avoid the spaced electrically conductive layers by the elec trical contact elements.
  • the longitudinal positions of the electrical contact elements on the at least one Anschlußusss pin are thus to be considered in the longitudinal direction of the terminal pin or in Einstechraum the terminal pin.
  • the housing has at least one socket for a connector of a pin to connect with the Anschlußusss electrical and / or optical device.
  • the socket has at least one connection, wel cher is connected to at least one of the electrical contact elements and with the optical contact element.
  • the connection can be an optical or an electrical connection.
  • the connection may in particular be a single electrical contact body, a group of electrical contact bodies or an optical contact body.
  • An example of a group of electrical contact bodies may be a positive pole and a negative pole in the case of providing direct current at the terminal pin or a contact body for a zero line and a contact body for a phase line in the case of provision of alternating current at the pin.
  • the contact body may be a contact pin or a, for example, tubular receiving device for a contact pin in a known manner.
  • the socket preferably has a holding device for releasable mechanical connection with the connector.
  • the shark tevoriques a clamping device to se in a known per se a connector plug into the socket can.
  • the connector may be a device plug for supplying the electrical and / or optical device with supply voltage, electrical data signals or optical signals.
  • the op table device can also be made to operate without electrical power and, for example, be a light-conducting or light-emitting body, in particular a photoconductive cable.
  • the embodiment of the invention makes it possible to connect the plug on one side with the carrier body and on the other side with various electrical and / or optical Ge devices that can be angeord net, for example, at a distance from the plug.
  • the plug thus enables a device to be connected to the electrically conductive and light-conducting lines, in particular webs or layers, of a carrier body by simple manual insertion of the plug into the carrier body.
  • the plug can advantageously be inserted into a freely selectable position in the carrier body.
  • the carrier body may be attached to suitable areas, for example on walls or floors ei Nes building or furniture, such as table tops.
  • connection of the electrical and / or optical device with the plug and the connection of the plug with the carrier body can be made particularly simple, fast and reliable.
  • the plug can be reliably fastened to the carrier body be. Due to the frictional connection between the con nection pin and the carrier body of the plug on
  • the plug may have, for example, the size of a Steckdo se, in a known manner for connecting a power supply plug of an electrical device to a
  • Power supply line in a household is used.
  • the housing has a drive unit, via which the electrical contact elements and / or the optical contact element are connected to the at least one terminal.
  • the drive unit for driving the terminal in response to detected with the optical contact element A input light signals and / or for driving the optical Kon clock element with output light signals in response to signals detected with the terminal to be formed
  • the on control unit is preferably connected to both the electrical contact elements and to the optical contact element and is ver over the electrical contact elements with power ensures.
  • the drive unit may be configured to control the optical or electrical connection of the socket in dependence on input light signals detected with the optical contact element or in dependence on electrical input signals detected with the electrical contact elements. Controlling the connection means a defined supply of the connection with current, voltage or light.
  • the on control unit can also be used to control the optical contact elements with output light signals or the electrical
  • Contact elements with electrical output signals as a function of speed can be formed with the optical or electrical connection detected optical or electrical signals. Accordingly, the drive unit for feeding electrical or opti cal energy can be formed in the connection of the socket or in the con nection pen.
  • the on control unit has a transmitter and / or a receiver for Lichtsi signals.
  • the transmitter and / or the receiver are preferably connected to the optical connection of the socket, if such is provided, and / or to the optical contact element of the connection pin.
  • the transmitter and / or the receiver may be or have a light-emitting or light-receiving electro-American component, which transmits or receives visible or invisible light for the human eye, for example.
  • the drive unit also has a connected to the transmitter or the receiver for light signals electrical processing unit, preferably before with an electrical data storage the Anêtein unit is connected.
  • the electrical processing unit can process the signals detected by the receiver for light signals and converted into electrical signals, optionally compare them with information stored in the data memory and control the connection of the socket or pin depending on the received light signals and the stored information. For example, the processing unit may control the port of the receptacle or pin via the light signal transmitter.
  • Control unit is preferably designed for individual control of one or more of the terminals of the sockets.
  • the plug can thus have multiple sockets. In this way, several or all terminals of a particular electrical device can be supplied via a single in the carrier body a pierced plug. For example, the device can be connected to the supply voltage and with the plug
  • a supply voltage and electrical or optical data signals from a device can be fed into a plurality of connectors connected to it and thus into a plurality of carrier bodies.
  • the drive unit for individual control of one or more of the terminals of the sockets is formed, for example, several devices connected to the plug Ge devices or multiple connections of a device connected to the plug individually and independently to be able to control.
  • the drive unit is designed to provide address information and control information.
  • the address information with a egg gen the socket assigned address to compare and in the case of a match of the detected address information with the own address the connection of the addressed socket in dependence on the control information , This allows multiple devices that are connected to one connector, or multiple devices with different addresses.
  • Sockets of a single connector are connected, or several re connections of a single device with different
  • Sockets of a single plug are connected, via a single carrier body with electrical and / or optical energy Ener, in particular with supply voltage or data signals, individually, i. individually or in groups.
  • the sockets can be addressed individually or, if several sockets have the same address, also in groups, i. to be selected.
  • the terminals of the address sated sockets can then be controlled in response to the control information received by the optical contact element.
  • the drive unit may also be designed to detect address information and control information in electrical signals detected with the electrical contact elements.
  • the drive unit is removable det to detect address information and control information in the detected with the connection of the socket signals to compare the address information with its own, the socket assigned address and in the case of a correspondence determination of the detected address information to control with its own address the optical contact element in dependence on the Steuerinfor information.
  • This allows multiple optical contact elements, i. a plurality of pins, which are inserted into a single carrier body or in different carrier body, via a single device, which is connected to a plurality of plugs, with optical energy, in particular with si signals, individually, i. individually or in groups, who supplies the.
  • the drive unit can also be designed
  • the drive unit can also be an asbil det, in the case of a match of the detected address information with the own address, the electrical
  • Control contact elements depending on the control information.
  • the housing is formed in two parts with a fixed contact elements with the Kon and the optical contact element Ba sisteil and separable from the base part and thus re-connectable head part is formed, which head has at least one female connector. Since the socket to take on a connector with the one to the plug
  • connecting device may be provided with different sockets for the connection of the plug with differently shaped connectors headboards, which sockets are formed corresponding to the connectors.
  • a headboard with socket sen can be exchanged for another headboard with other sockets.
  • the base part of the housing in the Trä gerenia remain stuck. The remaining of the base part in the carrier body reduces the number of puncturing operations in the carrier body and thus this by a user to he-bringing manual effort.
  • Base part and the head parts expediently a uniform mechanical, electrical and optical interface.
  • the Ba sisteil can also be pierced without a headboard in the carrier body.
  • the head part and the base part are designed for werkschwmaschinelo sen separation from each other and connection with each other.
  • the head part and the base part to the factory toolless plug together or screw together out forms.
  • connecting bodies for example connecting bodies of a ner plug connection or a screw connection, have.
  • the base part has the drive unit. In this way, a plurality of head parts to be connected to a single base part can be produced without the drive unit causing the costs. For a few applications, however, an arrangement of
  • Control unit in the headboard be appropriate.
  • the above object is also achieved by a combination of a first connector, which according to the above descrip tion has a two-part housing, with at least one head part of a housing of a second connector, which has a two-part housing according to the above description, which head part of the second Connector has a socket to the socket of the head part of the first connector different socket.
  • the invention thus also relates to a group of a first connector with a two-part housing and of at least one additional, with the base part of the first
  • the plug having a second electrically conductive layer and a light-conducting layer for conducting light signals, wherein the plug is connected by means of its optical contact element with the photoconductive layer is connected by means of a first ner ner electrical contact elements with the first electrically conductive layer and by means of a second its electrical contact elements is connected to the second electrically conductive layer.
  • the carrier body thus has at least three layers preferably connected to one another in a planar manner, of which the first and second electrically conductive layer serve to supply power to the plug, for example the drive units, and optionally to the electrical or optical device connected to the plug, while the photoconductive layer the transmission of light signals to the connector, for example.
  • the drive units or generally the transmission of light signals in Spanishkör by serves. If a plug has no drive unit, Kings can be supplied via the plug, a supply voltage or electrical data signals or optical signals from the carrier body to the electrical or optical device connected to the plug or to swept by the electrical or optical device in the Sukör by directly.
  • the light signals preferably contain information, in particular control and address information, for the operation of the device connected to the plug. This information is detected by the connected to the photoconductive layer connectors, in particular special from the drive units, the An
  • the address information also called addresses are unique, so that each address is assigned to a single plug, a single jack or a defi ned group of plugs or sockets.
  • the control information is assigned to the addresses, so that the drive units for controlling the respective ver connected terminal of the socket or pin only process those control information, which are assigned to the address of the plug or the socket.
  • the control information can include whether a device connected to the plug should be activated or deactivated, or whether and in what form data signals should be forwarded to the device or transmitted.
  • the control and address information for all devices connected to the carrier body is preferably transmitted via a single light-conducting layer and evaluated by the drive units.
  • the carrier body is preferably made of soft, by a Be user with simple tools manually severable material to allow for its manufacture, a reduction in its size. Since the measures provided for the power supply and the transmission of light signals layers are connected to each other, the function of the size of a subsection by reducing size of a carrier body is not affected.
  • the inventive combination of a Trä gerraj with at least one inserted plug he thus allows an individual blank of the carrier body, a simple and quick insertion of the plug into the carrier body and a simple connection of an electrical rule or optical device with the plug and thus with the electrically conductive layers and the photoconductive layer of the carrier body.
  • the photoconductive layer of the carrier body between the first and second electrically conductive layer of the carrier body can be arranged. In this way, the first and second elec trically conductive layer of the carrier body through the
  • photoconductive layer of the carrier body from each other and preferably, when the photoconductive layer consists of electrically insulating material, electrically insulated. Thus it can be dispensed with a separate insulating layer.
  • the carrier body is designed to be flexible, the carrier body can also be attached to uneven or curved surfaces who the.
  • a flexible running body can also be attached to uneven or curved surfaces who the.
  • the outer surfaces of the Sukör pers facing electrically conductive layers are covered with an electrically insulating layer.
  • the photoconductive layer of the carrier body between the first and the second electrically conductive layer of the carrier body is arranged, it is advantageous if at least one of the electrically conductive layers, preferably both electrically conductive layers, is covered on its side facing away from the photoconductive layer with an electrically insulating layer / are.
  • the carrier body can thus be mounted on electrically conductive or current-carrying surfaces.
  • the electrically insulating layer is preferably made of a thin, flexible plastic material.
  • the carrier body on its surface fastening means in particular a self-adhesive layer, has.
  • the fastening means are preferably designed for a releasable attachment of the carrier body.
  • fastening gungsstoff for example, screws, hooks, eyelets, Bän are, loops, hook and loop fasteners or double-sided adhesive tapes in question.
  • the at least one pin is formed by two pins each with an electrically conductive contact element and a pin with the photoconductive contact element.
  • the plug thus has three terminal pins protruding from the housing, which are designed for piercing into the carrier body.
  • the three connection pins are each formed to converge at a tip, in each case on the end facing away from the housing, i. the pins each have a tip.
  • the tip may be formed, for example, conical or bevelled.
  • a first connection pin has a first electrically conductive contact element
  • a second connection pin has a second electrically conductive contact element
  • a third connection pin has the light-conducting contact element.
  • the connecting pin with the photoconductive contact element be made of light-conducting material.
  • the light-conducting material may in particular be plastic or glass.
  • the light-conducting material should allow the production of a sufficiently rigid and solid pin, so that it does not bend when piercing the carrier body and does not break.
  • Fig. 1 is a schematic sectional view of an embodiment form of a plug according to the invention
  • Fig. 2 is a schematic sectional view of another imple mentation of a plug according to the invention.
  • Fig. 3 is a schematic sectional view of a plug with a two-part housing and a separate head part of a housing of a second connector.
  • Fig. 6 is a schematic sectional view of another imple mentation of a plug according to the invention, which is bolted to egg NEM carrier body.
  • Fig. 1 shows a connector 1, which has a housing 2 and at least one, in the example shown in Fig. 1 exactly one of the housing 2 projecting pin 3.
  • the housing 2 has a preferably flat housing bottom 2a and a circumferential side wall 2b protruding therefrom.
  • the housing bottom 2a is advantageously designed for flat or even support on a carrier body 4, of which in FIG. section is shown.
  • the connecting pin 3 is formed in the dargestell th example similar to a needle or a nail at its end facing away from the housing 2 3s to a tip S converging.
  • the plug 1, or the connecting pin 3, for piercing into the carrier body 4 is formed, which is constructed at least in the connecting region with the plug 1 from suitable for piercing, sufficiently soft materials.
  • the support body 4 has at least two layers 5, 6 of no electric conductive material and a layer 7 of light-conducting material.
  • the electrical layers 5, 6 are arranged so as to be electrically insulated from one another, the photoconductive layer 7 being provided in an electrically insulating manner and between the electrical layers 5, 6 for this purpose in the illustrated exemplary embodiments.
  • the electrical layer 5 is covered with an insulating layer 18.
  • the connecting pin 3 of the plug 1 is designed to be in contact with the electrically conductive layers 5, 6 and the photoconductive layer 7 in the state in which the plug 1 has been inserted into the carrier body 4.
  • the Anschlußusss tift 3 has on its surface at least two, in the example shown in Fig.
  • the electrical contact element 8 for connection to the electrically conductive layer 5
  • the elec trical contact element 9 for connection to the electrically lei border layer 6
  • the photoconductive contact element 10 is provided for connection to the photoconductive layer 7, when the plug 1 as in the example 1 in the carrier body 4 is a pricked.
  • the electrical contact elements 8, 9 are arranged in un ferent longitudinal positions L8, L9 on the at least one pin 3.
  • the longitudinal positions L8, L9 are those positions or regions on the connection pin 3, in which the electrical contact elements 8, 9 extend on the connection pin 3 in the longitudinal direction L of the connection pin 3.
  • the electrical contact elements 8, 9 may be in each other in the electrically insulating
  • the photoconductive optical contact element 10 may be made partially or entirely of photoconductive material.
  • the housing 2 has at least one socket 11, im in in Fig. 1st illustrated example, two sockets 11, for a fastex binder V (Fig. 5) to be connected to the pin 3 electrical and / or optical device G on.
  • the electrical and / or optical device G may be, for example, a household appliance, a computer, in particular a notebook, a controllable Leuchtkör by or a light source that requires a power supply to illuminate a room or to display a Statusin formation only a connection with the photoconductive Layer 7 needed.
  • the socket 11 has at least one terminal 12, in the example shown in FIG. 1, each socket 11 has exactly one terminal 12a, 12b, which is connected to at least one of the electrical contact elements 8, 9 or the optical con tact element 10.
  • the terminal 12a may, for example, two contact body 12al, 12a2 for receiving power supply pins of a connector V of the electrical and / or opti rule device G and may accordingly be directly connected to the electrical contact elements 8, 9 of the terminal pin 3, as interrupted lines is presented.
  • the terminal 12b may be a photoconductive contact body, for example a photoconductive contact pin 12bl, which is directly connected to the photoconductive contact element 10 of the terminal pin 3, as also shown by a broken connecting line.
  • the female connector 11 and the connector 12 can be used to accommodate power supply plugs, USB plugs, connections of sensors, a socket for luminaires, fiber optic connectors, connections to fiber optic repeaters, connections of optical
  • the housing 2 additionally has a drive unit 13, via which the electrical contact elements 8, 9 and / or the optical contact element 10 are connected to the at least one connection 12.
  • the connection of the electrical contact elements 8, 9 and the optical contact element 10 with the drive unit 13 is shown in Fig. 1 by connecting lines VI.
  • the connec tion of the drive unit 13 with the terminal 12a, 12b is shown in Fig. 1 by connecting lines V2.
  • the drive unit 13 for controlling the connection 12 in response to the optical contact element 10 he received input light signals and / or for driving the op-American contact element 10 with output light signals in
  • the drive unit 13 can have a transmitter 14 and / or a receiver 15 for light signals.
  • the Sen of 14 is for converting electrical signals into light signals and the receiver 15 is adapted to convert light signals into electrical signals.
  • the drive unit 13 can also have an electrical processing unit 16 connected to the transmitter 14 and / or the receiver 15.
  • the processing unit 16 may be connected to an electrical data memory 17 of the drive unit
  • the drive unit 13 for individual duelli i. single or joint control of
  • Connections 12a, 12b of the sockets 11 may be formed.
  • Fig. 2 shows a connector 1, which has a housing 2, the sockets 11 are formed differently in comparison to the example of FIG. 1, and from which three to terminal pins 3, 3 a, 3 b, 3 c protrude.
  • the three connection pins 3a, 3b, 3c are combined in one connection pin 3.
  • the three pins 3a, 3b, 3c as shown in FIG. 2, or the one Pin 3 of FIG. 1, perpendicular from the bottom 2a of the housing 2 from to facilitate the piercing process in the carrier body 4.
  • the at least one pin 3 is formed by a pin 3a with the electrically conductive contact element 8, by a pin 3b with the elec trically conductive contact element 9 and by a Anschlußusss pin 3c with the photoconductive contact element 10.
  • the connecting pin 3b has an insulating layer 19 on its surface, at least in the region of the electrically conductive layer 5. If the plug 1 is inserted as in the example of FIG. 2 in the carrier body 4, is the electrically conductive contact element 8 with the electrically conductive layer 5, the electrically conductive contact element 9 with the electrically conductive layer 6 and the conductive contact element 10 with the photoconductive layer 7 in contact.
  • the at least one pin 3 may be formed by at least two pins ge, on whose surfaces the electrically conductive contact elements 8, 9 and the photoconductive contact element 10 are arranged to.
  • FIG. 3 shows a plug 1 with a two-part housing 2.
  • the two-part housing 2 has a base part 20 and a head part 21 which can be separated from the base part 20 and thus can be connected again.
  • the base member 20 is fixed to the electrical contact elements 8, 9 and the optical contact element 10, that is fixedly connected to the pin 3 or the pins 3a, 3b, 3c.
  • the base part 20 may have the drive unit 13.
  • the head part 21 has the at least one socket 11.
  • the head part 21 and the base part 20 may also have corresponding connecting bodies 22, for example, connecting bodies 22a of a plug connection.
  • Fig. 3 also shows a head part 21a of a housing 2a of a second, not fully shown in Fig.
  • Fig. 4 shows a plug 1 in which an electrical and / or optical device G is directly, i. without a kausungska bel between the device G and the plug 1, plugged or screwed.
  • the housing 2 is one piece Darge presents, but it could also be formed in two parts.
  • Fig. 5 shows a combination of a carrier body 4, in which two plugs 1 are inserted with differently shaped, in particular differently shaped sockets 11.
  • the plug 1 are formed according to the invention.
  • the sockets 11 are provided for receiving a connector V of the Trä gerraj 4 to be connected electrical or optical device G.
  • the plug 1 can accommodate more than one connector V.
  • the socket 11 has at least one electrical or optical connection 12, which is connected to at least one of the electrical contact elements 8, 9 or to the optical contact element 10 of the terminal pin 3. Since the plug 1 in the example shown in Fig. 5 are pierced in the same electrically conductive layers 5, 6 and in the same photoconductive layer 7 of the support body 4, the devices G are connected to each other via the support body 4.
  • the carrier body 4 may have more than two electrically conductive layers 5, 6 and / or more than one photoconductive layer 7.
  • the Trä could gerenia 4 to a median plane, to the electrical
  • Layers 5, 6 runs parallel, be formed symmetrically, so that the plug 1 on opposite sides of the Carrier body 4 can be inserted in this.
  • Fig. 6 shows a further combination of a carrier body 4, in which a plug 1 is inserted.
  • the plug 1 can be screwed to the carrier body 4 by means of a screw SC ver.
  • the plug 1 hangs down from the carrier body 4, i. the plug 1 is arranged in the direction of gravity on the carrier body 4.
  • a ceiling of a room, attached, in particular glued be.
  • the plug 1 may also have a hook H, to which the device to be connected to the plug 1 G, for example. A Leuchtkör by, can be suspended.
  • Fig. 6 also shows a carrier body 4 and the plug 1 se parates controller C, which is provided for connection to the Sukör by 4 and for feeding electrical or optical signals into the carrier body 4 or for receiving electrical or optical signals from the carrier body 4.
  • the connection can be made via a connected to the control unit C and the carrier body 4 connectable feed device E.
  • the feed device E electrical connections El, E2 for connection to the electrically conductive layers 5, 6 of the carrier body 4 and / or an optical port E3 for connection to the photoconductive layer 7 of the carrier body 4 have.
  • the control unit C may have a memory CI for addresses and control information for the individually controllable devices G.
  • the control unit C can in particular for feeding the addresses and the control information containing STEU ersignalen in the feed device E, ie in the electrical rule layers 5, 6, but preferably in the photoconductive layer 7 of the carrier body 4 may be formed.
  • the control unit C contains the information necessary for the individual actuation of the device G or the drive units 13 and provides this information to the carrier body 4.
  • the control information contained in the memory CI can be a power-on command, a power-off command or data for the devices G include.
  • the control unit C expediently has a processing unit C2, for example a microprocessor, and input means for entering or storing the address information or the control information in the control unit C.
  • the control unit C favorably has a unit C3 for generating the Hur in the carrier body 4 dining electrical and optical signals and / or a receiving device Emp C4 for light signals.

Landscapes

  • Optical Couplings Of Light Guides (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

La présente invention concerne un connecteur (1) à enficher dans au moins deux couches (5, 6) d'un matériau électroconducteur et dans une couche (7) d'un matériau conduisant des ondes lumineuses. Le connecteur comprend un boîtier (2), au moins deux éléments de contact électriques (8, 9) isolés les uns des autres et un élément de contact optique (10) conducteur de lumière. Les deux éléments de contact électriques (8, 9) ou plus et l'élément de contact optique (10) conducteur de lumière sont disposés au niveau d'au moins une broche de raccordement (3, 3a, 3b, 3c) faisant saillie du boîtier (2), qui est formée à l'extrémité (3s) opposée au boîtier (2) pour converger en au moins une pointe (S). Les éléments de contact électriques (8, 9) sont disposés à des positions longitudinales différentes (L8, L9) au niveau de la ou des broches de raccordement (3, 3a, 3b, 3c). Le boîtier (2) comprend au moins une douille d'insertion (11) pour un connecteur à insérer (V) d'un appareil (G) électrique et/ou optique à relier à la broche de raccordement (3, 3a, 3b, 3c), la douille d'insertion (11) comprenant au moins un raccordement (12, 12a, 12b) qui est relié avec au moins un des éléments de contact électriques (8, 9) et avec l'élément de contact optique (10). Le boîtier (2) comprend une unité de commande (13) par le biais de laquelle les éléments de contact électriques (8, 9) et/ou l'élément de contact optique (10) sont reliés avec le ou les raccordements (12, 12a, 2b).
EP18808380.2A 2017-12-04 2018-12-04 Connecteur Active EP3721505B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP17205169.0A EP3493331A1 (fr) 2017-12-04 2017-12-04 Connecteur
PCT/EP2018/083412 WO2019110547A1 (fr) 2017-12-04 2018-12-04 Connecteur

Publications (2)

Publication Number Publication Date
EP3721505A1 true EP3721505A1 (fr) 2020-10-14
EP3721505B1 EP3721505B1 (fr) 2021-04-28

Family

ID=60569806

Family Applications (2)

Application Number Title Priority Date Filing Date
EP17205169.0A Withdrawn EP3493331A1 (fr) 2017-12-04 2017-12-04 Connecteur
EP18808380.2A Active EP3721505B1 (fr) 2017-12-04 2018-12-04 Connecteur

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP17205169.0A Withdrawn EP3493331A1 (fr) 2017-12-04 2017-12-04 Connecteur

Country Status (2)

Country Link
EP (2) EP3493331A1 (fr)
WO (1) WO2019110547A1 (fr)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3610933A (en) * 1968-08-08 1971-10-05 John A Shaver Coupling device for transmitting electromagnetic energy from floor covering
BE790390A (fr) * 1971-10-21 1973-04-20 Dole Electro Systems Systeme a structure stratifiee pour une distribution d'energie d'alimentation electrique et d'energie porteuse de signaux
US3809969A (en) * 1973-01-30 1974-05-07 Dole Electro Systems Probe connector receptacle device for area type electrical distribution system
FR2694322B1 (fr) * 1992-07-29 1997-08-22 Isolants Thermiques Expanses C Panneau modulaire pour la realisation d'un reseau conducteur et connecteurs associes.
CA2684819A1 (fr) * 2009-11-02 2011-05-02 Allen H. L. Su Installation photovoltaique interactive
EP2690233A1 (fr) * 2012-07-24 2014-01-29 Tarkett GDL S.A. Revêtement de surface multicouche
EP3163160A1 (fr) 2015-10-28 2017-05-03 Sebastian Mayer Dispositif de representation d'image

Also Published As

Publication number Publication date
WO2019110547A1 (fr) 2019-06-13
EP3721505B1 (fr) 2021-04-28
EP3493331A1 (fr) 2019-06-05

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