WO2012146754A1 - Connecteur encliquetable à contact stable - Google Patents

Connecteur encliquetable à contact stable Download PDF

Info

Publication number
WO2012146754A1
WO2012146754A1 PCT/EP2012/057853 EP2012057853W WO2012146754A1 WO 2012146754 A1 WO2012146754 A1 WO 2012146754A1 EP 2012057853 W EP2012057853 W EP 2012057853W WO 2012146754 A1 WO2012146754 A1 WO 2012146754A1
Authority
WO
WIPO (PCT)
Prior art keywords
contact
connecting means
web
locking elements
circuit carrier
Prior art date
Application number
PCT/EP2012/057853
Other languages
German (de)
English (en)
Inventor
Erik SIMON
Original Assignee
Technische Universität Berlin
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 Technische Universität Berlin filed Critical Technische Universität Berlin
Publication of WO2012146754A1 publication Critical patent/WO2012146754A1/fr

Links

Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K3/00Apparatus or processes for manufacturing printed circuits
    • H05K3/30Assembling printed circuits with electric components, e.g. with resistor
    • H05K3/32Assembling printed circuits with electric components, e.g. with resistor electrically connecting electric components or wires to printed circuits
    • H05K3/325Assembling printed circuits with electric components, e.g. with resistor electrically connecting electric components or wires to printed circuits by abutting or pinching, i.e. without alloying process; mechanical auxiliary parts therefor
    • 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
    • H01R12/50Fixed connections
    • H01R12/59Fixed connections for flexible printed circuits, flat or ribbon cables or like structures
    • H01R12/62Fixed connections for flexible printed circuits, flat or ribbon cables or like structures connecting to rigid printed circuits or like structures
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/02Details
    • H05K1/03Use of materials for the substrate
    • H05K1/038Textiles
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2201/00Indexing scheme relating to printed circuits covered by H05K1/00
    • H05K2201/10Details of components or other objects attached to or integrated in a printed circuit board
    • H05K2201/10227Other objects, e.g. metallic pieces
    • H05K2201/10393Clamping a component by an element or a set of elements
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2201/00Indexing scheme relating to printed circuits covered by H05K1/00
    • H05K2201/10Details of components or other objects attached to or integrated in a printed circuit board
    • H05K2201/10431Details of mounted components
    • H05K2201/1059Connections made by press-fit insertion
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2203/00Indexing scheme relating to apparatus or processes for manufacturing printed circuits covered by H05K3/00
    • H05K2203/02Details related to mechanical or acoustic processing, e.g. drilling, punching, cutting, using ultrasound
    • H05K2203/0278Flat pressure, e.g. for connecting terminals with anisotropic conductive adhesive

Definitions

  • the invention relates to a connection means for producing an electrical contact between an electrical conductor encompassed by a textile surface and an electrically conductive contact surface arranged on a circuit carrier.
  • the bodies In order to establish an electrical contact between two conductive bodies, it is necessary to bring the surfaces of the bodies at a distance from each other, from which an electron transfer between the bodies is possible. This is the case for a distance in the lower nanometer range due to the tunnel effect.
  • solders or conductive epoxy adhesives are used for the electrical contacting, via which a mechanical fixation of a respective circuit substrate on a textile surface can also take place.
  • mechanical fixation also push buttons or crimping are used.
  • Connecting means according to the described prior art have the disadvantage that the temperatures necessary for soldering and for curing epoxy adhesives can damage a textile fabric.
  • a permanent, mechanically loadable fixation of a respective circuit carrier, in particular a large-area circuit carrier, on a textile surface is not possible in this way according to previous findings. Accordingly, the low electrical contact resistance which is desirable for an electrical connection is not ensured over the entire service life of a smart textile.
  • a mechanical fixation via push buttons or crimp eyelets has the disadvantage that they deform plastically during installation and are not readily destructible again solvable.
  • connection means which enables long-term stable electrical contact between an electrical conductor encompassed by a textile surface and an electrically conductive contact surface arranged on a circuit carrier and at the same time mechanically fixes a respective circuit carrier to a respective textile surface ,
  • a connecting means in that the connecting means comprises paired locking elements, a contact stamp and an elastically deformable web, wherein the locking elements and the contact stamp are connected by the web and spaced from each other and project from the web in the same direction and the latching elements are designed to engage in a recess of a circuit carrier, wherein the latching elements in the engaged state through a respective textile surface and the web covers at least a portion of a respective textile surface such that a circuit substrate is mechanically fixed to a respective textile surface, and wherein the web is elastically deformed with latched latching elements, such that the contact stamp comprises an electrical conductor encompassed by a respective textile surface directly against an electrically conductive Pressing contact surface and so establishes and maintains an electrical contact between an electrical conductor and a contact surface, wherein the connecting means comprises a plurality of contact stamps and paired locking elements which are arranged alternately on a surface of the connecting means.
  • a locking element pair includes at least one contact between a punch and are connected to each other via a web.
  • the web does not have to be narrow, but may also have the shape of a larger-area connection bridge between the locking elements of a pair of locking elements.
  • the bridge can also connect several locking elements together.
  • the latching elements may be arranged annularly on a surface of the connecting means - more precisely: the web - and / or in pairs between each include at least one contact stamp.
  • the solution according to the invention includes the knowledge that many of the usual in electrical contacting techniques for use in smart textiles are not or only partially applicable.
  • the solution according to the invention thus has the advantage that a long-term stable electrical contact between an electrical conductor encompassed by a texturized surface and an electrically conductive contact surface arranged on a circuit carrier is made possible, and at the same time a respective circuit carrier can be mechanically fixed to a respective texturized surface.
  • the web of the connecting means may have a planar surface element whose surface normal is oriented opposite to the Abstehraum the contact stamp. This ensures that an inserted in a smart textile fasteners is only slightly raised from the text area of the smart textile and is perceived as hardly disturbing.
  • a web is to be understood as meaning both a narrow bridge-like element and a planar element, that is to say, for example, a circular disk-like or a rectangular element.
  • a web may for example also be formed as a base plate of the connecting means.
  • the planar surface element can make up a predominant part of a projection surface of the connection means.
  • the projection surface of the connecting means is defined by a parallel projection whose rays run parallel to the surface normal of the plane surface element.
  • a flat surface element extending in this way has the advantage that it can be applied cost-effectively, for example by means of a vice or a pair of pliers.
  • the connecting means has a plurality of contact punches and paired locking elements. These are arranged annularly and alternately on a surface of the connecting means, whereby the connecting means is suitable for the electrical contacting and mechanical fixing of a large-area circuit carrier. This can be fixed in one step and all electrically conductive contact surfaces can be contacted simultaneously.
  • the locking elements may include in pairs between each at least one contact stamp.
  • the locking elements in pairs include exactly one contact punch between them.
  • a contact stamp between two latching elements can be given in the circumferential direction of the connecting means. If, for example, a connecting means has a circular disk shape, then a contact stamp is considered to be enclosed between two latching elements when latching elements and plungers alternately follow one another along the circumference of the connecting means. Alternatively or additionally, a trapping of a contact stamp between two locking elements can be provided in a straight direction.
  • a straight direction can be defined for example by the diameter of a circular disk-shaped connecting means, but also by a side-parallel section through a rectangular connecting means.
  • the contact stamp and the paired locking elements are strung together over a width of the connecting means.
  • the con- clock stamp and the locking elements can be strung together single-row but also multi-row.
  • a latching element and a contact stamp are diametrically opposite. As a result, an optimal stress distribution within the connecting means is ensured.
  • a contact stamp In order to be able to provide a substantially constant contact pressure independent of a respective conductor thickness, it has proved to be advantageous to design a contact stamp itself as resilient.
  • a contact stamp can be sprung or resilient in the direction of its Abstehraum, in particular in the direction of its electrical functional surface.
  • a surface of the contact stamp of a connection means may be configured to open an insulation layer of an electrical conductor enclosed by a textile surface. A possibly required process of stripping the electrical conductor can thus be omitted.
  • the transitions between the contact stamp and the web and / or the edges of the contact stamp can each be rounded or chamfered.
  • the connecting means is made monolithic, whereby a particularly cost-effective provision of the connecting means is given.
  • a further cost savings may result from the fact that the connecting means is made of an injection-moldable plastic.
  • the connecting means can also be made of a metallic material or FR4 - a material from which standard circuit boards are produced.
  • a particular advantage of manufacturing the connecting means from a standard printed circuit board material is that the mechanical and thermodynamic properties of connecting means and circuit carriers are the same.
  • connection means of the prescribed type together with a circuit carrier form a structural unit.
  • the circuit carrier may have an electrically conductive contact surface which faces on a contact stamp Surface arranged and assigned to the contact stamp.
  • the circuit carrier can have a recess matched to the latching element.
  • the circuit carrier can have a region matched to the detent element, in which, upon application of the connection means, that is to say when the circuit carrier penetrates by means of the detent elements, a recess is created.
  • the circuit carrier can be perforated or otherwise structurally prepared within the area matched to the latching element.
  • the structural unit has a plurality of connection means and the circuit carrier has a plurality of electrically conductive contacts.
  • This configuration allows mechanical fixing and electrical contacting of a large area circuit substrate to a textile surface.
  • a matched to the locking element recess can be provided by milling, punching or other common manufacturing processes in the circuit board.
  • connection means of the prescribed type is used to establish an electrical contact between an electrical conductor encompassed by a textile surface and an electrical contact surface arranged on a circuit carrier.
  • a connection means of the prescribed type is used to establish an electrical contact between an electrical conductor encompassed by a textile surface and an electrical contact surface arranged on a circuit carrier.
  • a textile surface which is referred to in this context and comprises an electrical conductor can be any textile surface which contains electrically conductive material through textile production techniques.
  • a conductive material may be a wire, a stranded wire, a cable or a conductive made, for example, silvered thread of the textile itself. Accordingly, the conductive material may be within the tissue or on the surface of the tissue.
  • a textile surface itself is understood to mean a flat, flexible material, preferably a mesh-stable fabric.
  • tissues are suitable since they remain mechanically stable when they are penetrated by a latching element of the type described.
  • An important feature of the textile surface is a limited elasticity, so as to absorb the mechanical forces can. Furthermore, a more closely meshed design of the textile surface is desirable.
  • a textile surface may have openings which are congruent with the recesses of a circuit carrier.
  • openings can also only be created by the application of a bonding agent.
  • a circuit carrier has electrical components and electrical contact surfaces, wherein the electrical components are preferably applied to a surface of the circuit carrier, which is opposite to a surface carrying the electrical contact surfaces.
  • An electrical contact surface can be applied or embedded on the circuit carrier, for example, by a metallization process. But alternative methods for producing such, in electrical engineering common electrical contact surfaces are conceivable.
  • a cross-section of a strand-like electrical conductor encompassed by a textile surface may typically be between 100 and 500 ⁇ m.
  • a contact stamp of a connecting means which is adapted to such a strand, can have a pressing surface of usually 1 mm 2 to 10 mm 2 .
  • a dimensioning of the connecting means is carried out according to usual mechanical calculation methods, in particular the dimensioning is based on a bending beam calculation.
  • the connecting means is adapted to transmit a force of typically 5 to 10 N on the conductor via the contact stamp. With this contact force, an acceptably low resistance value of the electrical contact between the conductor and the conductive contact surface is already achieved.
  • a connecting means designed as a clamp and made of FR4 typically has an outer dimension of 10 mm ⁇ 5 mm ⁇ 5 mm.
  • the textile surface comprising the electrical conductor, about 300 ⁇ to 500 ⁇ strong. If the connecting means in the circuit carrier, which typically can be between 300 ⁇ m and 1 mm thick, is latched, it is achieved that the textile surface is compressed by 50 to 70%.
  • the connecting means may be made of FR4 and be disk-shaped and may typically have an outer dimension of 30mm x 5mm.
  • a disk-shaped connecting means usually has a plurality of, for example, 5 contact punches. With regard to the dimensioning of the connecting means and the contact forces achieved the same applies.
  • a connecting means 1 in Fig. 1 has paired locking elements 6, a contact stamp 8 and an elastically deformable web 9. The locking elements 6 and the contact stamp 8 are interconnected by the web.
  • the connecting means 1 is monolithically made of an injection-moldable plastic.
  • the connecting means 1 corresponds to that described with reference to FIG. 1, shown from a different perspective.
  • the web 9 of the connecting means 1 has a planar surface element 1 1.
  • the surface normal of this planar surface element 1 1 is opposite to the direction of the Abstehraum the contact stamp 8 oriented.
  • the circuit carrier 4 has two recesses 7, which are associated with the locking elements 6 of the connecting means 1.
  • the spacing of the recesses 7 in the circuit carrier 4 is dimensioned such that the latching elements 6 can engage in the respective recesses 7 under elastic deformation of the web 9.
  • the circuit carrier 4 comprises an electrically conductive contact surface 5, this is, according to the arrangement of the contact stamp 8 between the paired locking elements 6 of the connecting means, arranged between the paired recesses in the circuit carrier.
  • the planar surface element 1 1 of the web 9 makes up a predominant portion of a projection surface of the connecting means 1.
  • the projection surface results from a parallel projection whose rays run parallel to the surface normal of the planar surface element 11.
  • FIG. 3 shows a connection means 1 which represents an electrical contact between an electrical conductor 3 encompassed by a textile surface 2 and an electrically conductive contact surface 5 (not shown in this figure) enclosed by a circuit carrier.
  • the web 9 of the connecting means 1 covers a part of a respective textile surface 2, in particular a plurality of textile fibers arranged laterally within this textile surface.
  • the contact stamp 8 exerts an immediate pressing action on the electrical conductor 3.
  • the connecting means 1 has paired locking elements 6, a contact stamp 8 and an elastically deformable web 9, wherein the locking elements 6 and the contact stamp 8 are interconnected by the web and are spaced apart and project from the web 9 in the same direction.
  • the locking elements 6 are formed to engage in a corresponding recess 7 of a circuit substrate 4, wherein the locking elements 6 in the engaged state through the textile surface 2.
  • the web 9 covers at least part of the textile surface 2, so that a circuit substrate 4 is mechanically fixed to the textile surface 2.
  • the web 9 is elastically deformed, so that the contact stamp 8 presses an electrical conductor 3 encompassed by the textile surface 2 directly against an electrically conductive contact surface 5.
  • the web 9 of the connecting means 1 has a planar surface element 1 1, the surface normal opposite to the Abstehraum the contact stamp 8 is oriented.
  • the planar surface element 1 1 occupies a predominant part of a projection surface of the connecting means 1.
  • the projection surface is defined by a parallel projection whose rays run parallel to the surface normal of the planar surface element 11. According to the pairwise arrangement of the locking elements 6, the recesses 7 are provided in the circuit carrier 4.
  • the paired locking elements 6 are approximated and can engage in the recesses 7.
  • the illustrated locked position of the elastically deformable web 9 is elastically deformed by the amount that is required to exert the corresponding pressing action on the electrical conductor 3.
  • connection means 1 shown in FIG. 5 has the same features as the connection means 1 described with reference to FIG.
  • the connecting means 1 shown in Fig. 5 is in the form of a clamp and has typical dimensions of 10 mm x 5 mm x 5 mm.
  • the connecting means 1 is optimized according to manufacturing considerations. Rounded transitions between the locking element 6 and the elastically deformable web 9 results in an improved voltage curve.
  • a structural unit 100 shown in FIG. 6 comprises a connecting means 1 and a circuit carrier 4.
  • the connecting means 1 has latching elements 6 arranged in pairs, a contact stamp 8 and an elastically deformable web 9.
  • the locking elements 6 and the contact stamp 8 are connected to each other by the web 9 and spaced from each other and stand from the web 9 in the same direction.
  • the locking elements 6 are trained to engage in a corresponding recess 7 of a circuit substrate 4.
  • the web 9 of the connecting means 1 has a planar surface element 1 1, the surface normal opposite to the Abstehraum the contact stamp 8 is oriented.
  • the planar surface element 1 1 makes up a predominant part of a projection surface of the connection means 1.
  • the projection surface is defined by a parallel projection whose rays run parallel to the surface normal of the planar surface element.
  • the contact stamps 8 and the latching elements 6 are arranged annularly and alternately on a surface of the connecting means 1. In each case, a latching element 6 and a contact punch 8 are diametrically opposed to each other.
  • the connecting means 1 is monolithically made of an injection-moldable plastic.
  • the circuit carrier 4 in this case has a plurality of electrically conductive contact surfaces 5 and a plurality of matched to the locking elements 6 recesses 7.
  • the electrical contact surfaces 5 and the recesses 7 are annular and arranged alternately. In each case a recess 7 and a contact surface 5 are diametrically opposite each other.
  • the connecting means 1 shown in FIG. 6 is structurally matched to the circuit carrier 4.
  • Each contact stamp 8 is a corresponding conductive contact surface 5, each latching element 6 associated with a corresponding recess 7.
  • FIGS. 7 to 1 show a plan view of the connecting means, b) a section through the connecting means along the section line A-A, and c) a perspective view of the connecting means.
  • the connecting means 1 in Fig. 7 has exactly three contact pins 8 ', 8 "and 8"', and exactly three locking elements 6 ', 6 "and 6"' on.
  • the three locking elements 6 ', 6 "and 6"' are arranged in pairs. In this case, the locking elements 6 'and 6 "form a first locking element pair, the locking elements 6" and 6 "' a second locking element pair and the locking elements 6 '' and 6 'a third locking element pair. Furthermore, the locking elements 6 ', 6 "and 6"' and the contact pins 8 ', 8 “and 8”' are arranged alternately on the circumference of the connecting means.
  • each at least one contact stamp specifically closes the first pair consisting of the locking elements 6 'and 6 "between the contact punch 6" a etc.
  • each a locking element and a contact stamp are diametrically opposite.
  • the locking elements 6 'the contact stamp 8 "opposite, etc.
  • Well recognizable in Fig. 8 is the surface round formation of the web 9.
  • a planar surface element 1 1 extends over the entire web.
  • FIG. 8 differs from that shown in FIG. 7 only in that it has five contact punches and five locking elements. Again, the locking elements 6 'and 6 "form a first locking element pair, the locking elements 6" and 6 "' a second locking element pair, etc. In principle, any high number of circumferentially distributed contact stamping and locking elements is conceivable.
  • FIG. 9 A further embodiment of a connecting means in Fig. 9, which, like the one shown in Fig. 7 exactly three contact stamp and exactly three locking elements has.
  • the contact punches 8 ', 8 "and 8"' are of a resilient design, ie resiliently or parallel to their direction of departure A from the web 9.
  • FIG. 10 Another embodiment of a connecting means is shown in FIG. 10.
  • the connecting means 1 has exactly one contact stamp 8 and exactly four locking elements 6, 6 ', 6 "and 6"'.
  • the latching elements are arranged annularly around the contact stamp 8 and on a surface of the connecting means 1.
  • the mutually opposed latching elements 6 and 6 form a first pair which includes the contact punch 8 in the straight direction of the diameter D.
  • the opposing latching elements 6 'and 6"' form a second first pair running in the straight direction of the Diameter D, the contact stamp 8 also includes.
  • a rectangular connecting means is shown in Fig. 1 1.
  • the latching elements 6 and 6 ' here form a first pair, which in the direction of a first side-parallel section S1 through the rectangular connecting means 1 includes a contact punch 8.
  • the latching elements 6 "and 6" ' form a second latching element pair, which encloses a contact punch 8' in a straight direction of a second, side-parallel cut S2 through the rectangular connecting means 1.

Abstract

L'invention concerne un moyen de connexion (1) permettant de produire un contact électrique entre un conducteur électrique (3) entouré par une surface textile (2) et une surface de contact électroconductrice (5) entourée par un support de circuit (4), le moyen de connexion (1) présentant des éléments d'encliquetage (6) agencés en paire, un poinçon de contact (8) et un élément de liaison (9) déformable élastiquement, les éléments d'encliquetage (6) et le poinçon de contact (8) étant reliés l'un à l'autre et écartés l'un de l'autre par l'élément de liaison (9) et faisant saillie depuis ce dernier dans la même direction, et les éléments d'encliquetage (6) étant configurés pour s'encliqueter dans un évidement correspondant (7) du support de circuit (4). A l'état encliqueté, les éléments d'encliquetage (6) traversent une surface textile (2) respective, l'élément de liaison (9) recouvrant au moins une partie de la surface textile (2) concernée de telle manière que le support de circuit (4) soit fixé mécaniquement à la surface textile (2) concernée et l'élément de liaison (9) étant déformé élastiquement, lorsque les éléments d'encliquetage (6) sont encliquetés, de telle manière que le poinçon de contact (8) presse le conducteur électrique (3) entouré par la surface textile (2) concernée directement contre la surface de contact électroconductrice (5) et établisse ainsi un contact électrique entre le conducteur électrique (3) et la surface de contact (5) et le maintienne.
PCT/EP2012/057853 2011-04-29 2012-04-27 Connecteur encliquetable à contact stable WO2012146754A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102011075034A DE102011075034A1 (de) 2011-04-29 2011-04-29 Kontaktstabiler Schnappverbinder
DE102011075034.7 2011-04-29

Publications (1)

Publication Number Publication Date
WO2012146754A1 true WO2012146754A1 (fr) 2012-11-01

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ID=46022254

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2012/057853 WO2012146754A1 (fr) 2011-04-29 2012-04-27 Connecteur encliquetable à contact stable

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DE (1) DE102011075034A1 (fr)
WO (1) WO2012146754A1 (fr)

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EP3302008A1 (fr) * 2016-09-30 2018-04-04 BAE Systems PLC Procédé et appareil améliorés
US20200022266A1 (en) * 2016-09-30 2020-01-16 Bae Systems Plc An improved method and apparatus
EP3364731A1 (fr) * 2017-02-20 2018-08-22 IMEC vzw Système comprenant un textile conducteur, une unité de circuit électronique et procédé
DE102017214286A1 (de) * 2017-08-16 2019-02-21 Robert Bosch Gmbh Textil- und/oder Bekleidungsvorrichtung

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WO2002012788A1 (fr) * 2000-08-09 2002-02-14 Relume Corporation Systeme de montage de diode electroluminescente (del)
DE102005012147A1 (de) * 2005-03-16 2006-05-11 Siemens Ag Vorrichtung zum Herstellen einer thermischen und mechanischen Verbindung
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US20080198619A1 (en) * 2007-02-15 2008-08-21 K-Bridge Electronics Co., Ltd. Backlight module with tubes
WO2008120138A1 (fr) * 2007-03-29 2008-10-09 Koninklijke Philips Electronics N.V. Ensemble électronique pour une fixation à un substrat de tissu, textile électronique, et procédé de fabrication d'un tel textile électronique
WO2009150570A1 (fr) * 2008-06-10 2009-12-17 Koninklijke Philips Electronics N.V. Textile électronique

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DE102008023137A1 (de) * 2008-04-04 2009-10-15 Amphenol-Tuchel Electronics Gmbh Verbindungsanordnung und Verfahren zur Kontaktierung von leitfähigen textilen Halbzeugen

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2002012788A1 (fr) * 2000-08-09 2002-02-14 Relume Corporation Systeme de montage de diode electroluminescente (del)
DE102005012147A1 (de) * 2005-03-16 2006-05-11 Siemens Ag Vorrichtung zum Herstellen einer thermischen und mechanischen Verbindung
DE202006017583U1 (de) * 2006-11-17 2008-03-27 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Beleuchtungsvorrichtung
US20080198619A1 (en) * 2007-02-15 2008-08-21 K-Bridge Electronics Co., Ltd. Backlight module with tubes
WO2008120138A1 (fr) * 2007-03-29 2008-10-09 Koninklijke Philips Electronics N.V. Ensemble électronique pour une fixation à un substrat de tissu, textile électronique, et procédé de fabrication d'un tel textile électronique
WO2009150570A1 (fr) * 2008-06-10 2009-12-17 Koninklijke Philips Electronics N.V. Textile électronique

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Publication number Publication date
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