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USRE41715E1 - Glazing with electrical terminal - Google Patents

Glazing with electrical terminal
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Publication number
USRE41715E1
USRE41715E1US11/500,517US50051701AUSRE41715EUS RE41715 E1USRE41715 E1US RE41715E1US 50051701 AUS50051701 AUS 50051701AUS RE41715 EUSRE41715 EUS RE41715E
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United States
Prior art keywords
glazing
adhesive
terminal
base part
solder
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Expired - Lifetime
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US11/500,517
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Luigi Capriotti
Ciro Paudice
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Pilkington Italia SpA
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Pilkington Italia SpA
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Abstract

A glazing provided with an electric circuit includes an electrically conducting substrate and a terminal for making electrical connection thereto. The terminal is attached to the glazing by an adhesive, rather than solely by solder, and the electrical connection between the terminal and the substrate is provided by means other than, or additional to, physical contact between the terminal and the substrate. For instance, the adhesive may be electrically conducting, or a soldered joint may additionally be provided if the adhesive is electrically insulating, or of insufficient conductivity for the type of circuit in question. The adhesive may be pre-applied to the terminal, and may be a tack-free adhesive activated or cured by heat. The terminal may be in two parts, with the base part of a standardized design. The glazing is suitable for use in buildings, appliances or vehicles, especially automotive vehicles.

Description

DESCRIPTION
The present invention relates to a glazing provided with an electric circuit including an electrically conducting substrate and a terminal for making electrical connection thereto. In particular, the circuit may be a heating element for defrosting or demisting the glazing, or an antenna circuit. The glazing may be for a vehicle window, or a window for an appliance or a building; in the case of a vehicle it may be a windscreen or rear window.
Various techniques are known for making electrical connection to a terminal. For instance, it is known from GB-A-2 223 385 to solder a terminal to a busbar or current collector. Alternatively, EP-A-410 766 discloses an electrical device comprising a substrate supporting a film-type heater track formed of conductive polymer ink. A connector member is bonded to the substrate by means of adhesive, and the heater track overlies at least an end portion of the connector member to provide an electrical contact between them.
It is also known from EP 278 611 A1 to employ an electrically conductive adhesive to bond a busbar onto a conductive layer formed on a substrate, which may be used as a window. Furthermore, inGB 1 393 887, the use of steel filings to make electrical contact through an adhesive coating is disclosed in the context of a rear window heating circuit.
However, FR 2 519 477 teaches that electrically conductive adhesives have various disadvantages, for example, they are not sufficiently durable under the conditions to which a vehicle window is typically subjected, and they are expensive. Instead,FR 2 519 477 suggests that it is preferable to employ a non-conductive adhesive to maintain a suitably configured terminal in intimate contact with an electrically conducting substrate so as to ensure electrical continuity.
Unfortunately, the invention ofFR 2 519 477 is also not without disadvantages; it has been found that the inevitable mismatch of the thermal expansion coefficients of glass, metal and adhesive results in a weakening of the adhesive bond to the extent that electrical contact is adversely affected. Consequently, soldering remains a widely used technique for attaching electrical terminals to glazings, although the strength of the bonds produced is not always satisfactory, and there are increasing environmental concerns about metals, such as lead, which are commonly used in solders. Furthermore, the actual soldering operation is inclined to produce thermal stresses in the glass, which sometimes lead to damage.
It would be desirable to improve the attachment of electrical terminals to glazings, avoiding the disadvantages described above.
According to the present invention there is provided a glazing with an electric circuit including an electrically conducting substrate and a terminal for making electrical connection thereto, wherein the terminal is attached to the substrate by adhesive, characterised in that the electrical connection between the terminal and the substrate is provided by means other than, or additional to, physical contact between the terminal and the substrate.
The provision of a secure and reliable electrical connection between the terminal and the substrate allows adhesives to replace solder without attendant problems of electrical continuity. Modern adhesives are able to offer many advantages over solder. They may be flexible in the cured or set condition, and thereby absorb stresses generated in, or exerted on, the terminal. Adhesives are available which do not require to be heated in order to form a bond, or only need to be heated to a modest temperature, and yet which still provide a strong bond. Furthermore, it is usually possible to arrange the manufacturing operation so that the adhesive is heated just before it contacts the glazing, thereby avoiding the need to heat the glazing directly. Durable electrically conducting adhesives are now available, thereby allowing the adhesive to fulfil both the mechanical and electrical functions of a conventional soldered joint. Generally, such adhesives contain finely dispersed metal powder to make them conductive. Providing that the electric current to be carried is not large, the adhesive constitutes a sufficient electrical connection. A further important advantage is that suitable adhesives are available which have fewer health and safety hazards and less adverse environmental impact than the conventionally used solders.
Preferably the terminal comprises separate base and connector parts which are adapted to mutually engage, and the base part of the terminal is attached to the glazing by adhesive.
Advantageously, especially in the automotive industry, the base may be of a standardised design of general applicability, whereas the connector part may be tailored to the specific requirements of a particular glazing, vehicle or vehicle manufacturer. That is, the base is preferably usable with a variety of differing designs of connector part.
Means of electrical connection between the terminal and the substrate may, for example, include the use of an electrically conducting adhesive, and/or a soldered connection. In high current applications, a joint soldered directly between the terminal and the substrate is preferable as the additional means of electrical connection, in order to obtain a low resistance connection. In this situation the solder complements the adhesive, as the latter bears the mechanical load and stresses, leaving the solder to provide, or enhance, electrical continuity without being compromised. This makes it possible, for instance, to use solders which are less environmentally aggressive, even if there is some loss in bond strength.
The invention also provides a method of making a glazing with an electric circuit including an electrically conducting substrate and a terminal for making electrical connection thereto, comprising the steps of:
    • providing a pane carrying the electric circuit and substrate, and
    • attaching the terminal to the substrate with adhesive, characterised by
    • providing the electrical connection between the terminal and the substrate by means other than or additional to, physical contact between the terminal and the substrate.
Improvements can also be made in the type and method of application of the adhesive.
Preferably the adhesive is provided in the form of a tack-free tablet which is placed in contact with the terminal. The use of a tack-free (i.e. non-sticking) form of adhesive is advantageous because handling of the adhesive is greatly facilitated.
It is also preferable for the adhesive to be pre-shaped to match the part of the terminal that the tablet is in contact with. This increases the area of the terminal that is bonded, and hence the strength of the bond, while reducing the likelihood of adhesive escaping from underneath the terminal and becoming visible, which is likely to be unsightly. It also results in less waste and hence a cost reduction.
Advantageously the adhesive is pre-applied to the terminal, e.g. the terminals may be supplied with adhesive already applied to the requisite part of the terminal.
Optionally the adhesive may be heated to activate or cure it. The term “activating” an adhesive is used to refer to any process which initiates the bonding process, e.g. one which makes a previously tack-free adhesive sticky, or one which starts the curing process. Activation may involve melting the adhesive (at least on its surface), initiating a heat-dependent chemical reaction, or removing or destroying a barrier which separates two reactants. The extent of heating an adhesive is frequently less than is required for solder, and with regard to heating for activation, the adhesive need not necessarily be in contact with the glazing at the time of heating.
In this specification, the term “solder” is used to denote a fusible alloy of metals. The term “adhesive” is used to denote a substance employed to bond other substances together, but does not include a solder as such. An adhesive may be wholly non-metallic or may contain a metallic component.
The invention will now be further described by way of the following specific embodiments, which are given by way of illustration and not of limitation, and with reference to the accompanying drawings in which:
FIG. 1 is a perspective view of part of a glazing which includes an electric circuit and has a terminal attached;
FIG. 2 is a perspective view of a terminal which comprises separate base and connector portions;
FIG. 3 is a perspective view of a one-part terminal;
FIG. 4 is a plan view of the terminal ofFIG. 3; and
FIGS. 5 (a)-(c) are perspective views of pre-shaped tablets of adhesive.
FIG. 1 illustrates aglazing1 including anelectric circuit2. In this case the electric circuit is a resistive heating circuit printed on apane3 of glazing material in a conductive ink. Such circuits are used for defrosting and demisting, e.g. in vehicles, and as they are well known they need not be described further. Other equally well-known heating circuits comprise fine wires or a thin electroconductive coating on the pane. Alternatively the circuit may be an antenna circuit, again as is well-known.
Thepane3 of glazing material may be a sheet of glass, which may be annealed or toughened, or a composite pane made up of two or more plies of glass (or other glazing material) laminated together. In the case of an automotive glazing, the glass would be safety glass, i.e. toughened or laminated glass. There are alternative glazing materials to glass including various plastics such as polycarbonate for example.
Attached to the glazing, or more precisely, to an electrically conductingsubstrate4 which forms part of the-electric circuit2, is aterminal5. The embodiment ofterminal5 shown inFIG. 1 comprises abase part6 and an upper (as illustrated) orconnector part7, which are adapted to mutually engage, as will be explained in more detail below in connection with FIG.2. Thebase part6 is attached to theglazing1 byadhesive8, again as will be explained in more detail below. The terminal may be in intimate physical contact with the substrate, but this is not necessary since an alternative means of electrical connection is provided, as described below.
In this embodiment, the electrically conductingsubstrate4 constitutes a busbar supplying current to heating elements of theelectric circuit2. The substrate may be composed of thin sheet metal, such as a foil, or may be made from an ink which is applied to the pane (e.g. by screen printing), dried, and fired to provide a durable conducting path. For example, silver-containing inks are widely used in the manufacture of electrically heated rear windows for vehicles.
Theterminal5 includes aspade connector9, to which an electrical lead (not shown) may be attached in conventional fashion by a corresponding female connector. Many variations on the type and embodiment of connector are possible; for example, it may be cranked, or otherwise bent, to facilitate access or to improve its aesthetic aspect. Alternative forms of connector, e.g. the press stud type, may also be used. The terminal may be manufactured from thin sheet metal; in particular, copper sheet, preferably tinned to prevent oxidation, is a suitable material.
FIG. 2 shows more details of theterminal5. As already mentioned, theterminal5 comprises abase part6 and aconnector part7, which are adapted to mutually engage each other. For example,base part6 may be provided withtabs20, which are bent around theconnector part7, e.g. around thespade9.
It has already been mentioned that it is convenient for the terminals to be supplied with the adhesive pre-applied, especially in a tack-free form. The tablet of adhesive (generally comprising pre-mixed components) is pressed onto the surface of the terminal with just sufficient heat to cause it to adhere to the surface. When the terminal is in two (or more parts) as inFIGS. 1 and 2, it is especially convenient for thebase part6 to be of a standard universal design, with the adhesive pre-applied to it. This means that only one design of base part need be purchased, which is then used with a connector part which suits the particular vehicle glazing being manufactured. The base part may either be attached to the glazing first, or to the connector first, whichever is more convenient. InFIG. 2, a tablet ofadhesive8 is applied to theterminal base part6, as indicated by arrow A. The base part is then attached to theconnector part7 by means oftabs20, as indicated by arrow B. Finally the terminal is attached to the glazing, as will be described below.
The adhesive may be electrically conducting, in which case no further electrical connection may be necessary. However, if the adhesive is non-conducting, or if the electric circuit has a high power requirement, a means of electrical connection will be required between the terminal and the electric circuit. This may conveniently be provided by a soldered joint between the terminal and the electrically conducting substrate. InFIG. 2, the application of solder is diagrammatically represented by arrows C andsolder21. For an antenna, which of course only produces a very small current, the use of a conducting adhesive may often provide sufficient electrical connection.
FIG. 3 shows an alternative embodiment ofterminal30. This is a one-part terminal, i.e. it is a single piece, and it corresponds to theconnector part7 of the terminal of the first embodiment. The terminal is attached to the glazing by means of adhesive8; preferably a tablet of tack-free adhesive is used as described above. The tablet may be applied to the terminal as indicated by arrow D. Again, an auxiliary connection may be made withsolder21.
FIG. 4 shows the one-part terminal30 in plan view, withadhesive8 andsolder21 applied. It is advantageous for the tablet of adhesive to be positioned near the base of thespade connector40, where it can resist any bending moment created during application of a corresponding female connector to themale spade40, when the spade can act as a lever. The solder joint is thereby protected from damage.
FIGS. 5 (a)-(c) show shapedtablets50,51,52 of adhesive, the tablet being pre-shaped to suit the shape of the terminal. Pre-shaping reduces waste, improves conformity to the terminal surface and improves flow control during application of adhesive. A stronger and neater bond is thereby obtained, and this technique may be used with either embodiment of terminal.
In FIG.5(a), a T-shapedblock50 of adhesive is shown, which is suitable for use in the correspondingly T-shaped part of the terminal (i.e. where the limbs of the “T” cross, one limb being the spade). FIG.5(b) shows a thinrectangular block51 of adhesive and FIG.5(c) shows a thincylindrical tablet52 of adhesive.
There are many suitable adhesives for attaching terminals to glazing. Polyurethanes are a suitable class of adhesives, including moisture-cured polyurethane (e.g. Betaseal HV3 available from Gurit-Essex AG of Freienbach, Germany), moisture/heat cured polyurethane (e.g. Sika 360 HC available from Sika AG of Switzerland), reactive hot melt polyurethane (e. g, PUR-FECT 310 available from National Starch & Chemical Company of Bridgewater, N.J., USA, a member of the ICI Group), two component polyurethane, and other polyurethane-based compositions (such as Techbond PUR available from A. Raybond SARL of 68300 Saint-Louis, France). A further suitable class of adhesives is that of epoxy based compositions, e.g. Raybond's Techbond EPO. Also suitable are structural adhesive tapes (e.g. 3M 9214 available from the Minnesota Mining and Manufacturing Company of St. Paul, Minn., USA). Suitable conducting adhesives contain finely dispersed metallic particles in sufficient quantity to pass the required current density.
The preferred tack-free adhesives in tablet form are available from A. Raybond SARL in both epoxy and polyurethane compositions (Techbond EPO and PUR), and terminal base parts can be supplied with the adhesive preapplied. In a polyurethane-based composition such as Techbond PUR, the polyol and isocyanate reactants are pre-mixed in stoichiometric ratio, but the isocyanate is “end capped” or micro-encapsulated to prevent contact with the polyol. The adhesive is solid at room temperature. Application of heat activates the adhesive by destroying, e.g. melting, the capping or encapsulating membrane and allowing the isocyanate component into contact with the surrounding polyol so that the curing reaction starts. The method of use of these adhesives is as follows.
A pane of glass carrying an electric circuit is provided and cleaned with a cleaner such as Betaseal VP-04604 from Gurit-Essex; a terminal, or terminal base part, with tack-free adhesive pre-applied is also provided. The terminal is positioned over the pane, and rapidly heated to a temperature in the range 100°-140° C. Suitable rapid heating techniques include infra-red lamps, hot air jets, inductive heating or radio frequency dielectric heating. The heat activates the adhesive, and the terminal is pressed into position on the pane. During the initial cooling period the terminal should be held in place, until the temperature has reduced to a value in the region of 60°-80° C. The pane may then be moved, but the bond does not develop full strength until post polymerisation has been completed, which may require up to 20 minutes at room temperature. Note that the pane need not be directly heated, thereby reducing thermal stresses.
As mentioned above, in many cases it will be necessary to make a separate electrical connection between the terminal and the circuit, and a preferred method involves soldering. In this case, the heat of soldering may advantageously also be used to activate the adhesive and eliminate a separate operation. The locations on the terminal body to which solder is applied should be close to those to which adhesive is applied. A soldering tool (which may be automated, e.g. robot-controlled) is then used to solder the terminal in position, and simultaneously heat the adhesive to activate it. The soldering tool may be one which contacts the work, or a hot air soldering technique may be used. Generally, soldering requires a higher temperature than activation of the adhesive, so the temperature attained may be governed by soldering considerations. However, one of the advantages of the invention is that the mechanical bond is provided by the adhesive, so that the solder solely provides an electrical connection. Consequently, solders may be used which have a lower melting point than those used in the prior art, where both mechanical and electrical considerations apply.
In practice, certain types of adhesive are activated by melting them, and so the heat used to melt the solder preferably also melts the adhesive. It is therefore advantageous to select an adhesive and a solder which have similar melting points. Suitably, the adhesive and solder have melting points within 20° C., preferably 10° C., most preferably 5° C. of each other.

Claims (33)

1. A glazing provided with an electric circuit including an electrically conducting substrate and a terminal for making electrical connection thereto, the glazing comprising a pane of sheet glazing material which carries the electric circuit,
wherein the terminal is attached to the substrate by both adhesive and solder, such that the adhesive bears the mechanical load on the terminal and the solder provides the electrical connection between the terminal and the substrate,
wherein the terminal comprises a base part and a connector part,
wherein the base part and the connector part are separate,
wherein the base part and the connector part are adapted to mutually engage,
wherein the connector part directly contacts the solder, which solder directly contacts the electrically conducting substrate,
wherein the base part directly contacts the adhesive, which adhesive directly contacts the glazing.
7. A method of making a glazing provided with an electric circuit including an electrically conducting substrate and a terminal for making electrical connection thereto, comprising the steps of:
providing a pane of sheet glazing material carrying the electric circuit and substrate, and
attaching the terminal, which comprises a base part and a connector part, wherein the base part and the connector part are separate, and wherein the base part and the connector part are adapted to mutually engage one another, to the substrate with both adhesive and solder, such that the adhesive bears the mechanical load on the terminal and the solder provides the electrical connection between the terminal and the substrate, such that the connector part directly contacts the solder, which solder directly contacts the electrically conducting substrate, and such that the base part directly contacts the adhesive, which adhesive directly contacts the glazing.
US11/500,5172000-01-252001-01-25Glazing with electrical terminalExpired - LifetimeUSRE41715E1 (en)

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
EP008300432000-01-25
EP008300432000-01-25
PCT/IT2001/000038WO2001056334A1 (en)2000-01-252001-01-25Glazing with electrical terminal

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US10/181,887ReissueUS6774342B2 (en)2000-01-252001-01-25Glazing with electrical terminal

Publications (1)

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USRE41715E1true USRE41715E1 (en)2010-09-21

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US11/500,517Expired - LifetimeUSRE41715E1 (en)2000-01-252001-01-25Glazing with electrical terminal
US10/181,887CeasedUS6774342B2 (en)2000-01-252001-01-25Glazing with electrical terminal

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US10/181,887CeasedUS6774342B2 (en)2000-01-252001-01-25Glazing with electrical terminal

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US (2)USRE41715E1 (en)
EP (1)EP1256261B2 (en)
JP (1)JP4532805B2 (en)
KR (1)KR100824222B1 (en)
CN (1)CN1177512C (en)
AT (1)ATE280486T1 (en)
AU (1)AU2001235981A1 (en)
BR (1)BR0107834A (en)
DE (1)DE60106568T3 (en)
ES (1)ES2231449T5 (en)
MX (1)MXPA02007040A (en)
WO (1)WO2001056334A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20100200293A1 (en)*2006-02-102010-08-12Radiant Glass Industries, LlcHeated glass panels
US20140057501A1 (en)*2012-08-272014-02-27GM Global Technology Operations LLCElectrical-mechanical fastening device for motor vehicles

Families Citing this family (38)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US7265323B2 (en)2001-10-262007-09-04Engineered Glass Products, LlcElectrically conductive heated glass panel assembly, control system, and method for producing panels
WO2006016588A1 (en)*2004-08-102006-02-16Asahi Glass Company, LimitedWindow glass for vehicle
US8299400B2 (en)2005-08-042012-10-30Guardian Industries Corp.Heatable vehicle window utilizing silver inclusive epoxy electrical connection and method of making same
DE102005040812A1 (en)*2005-08-272007-03-15Few Fahrzeugelektrikwerk Gmbh & Co. Kg Electrical connection and method for its connection to the window of a motor vehicle
CA2533859A1 (en)*2006-01-252007-07-25Prelco Inc.System for attaching an electrical cable outer jacket to a window to provide power to same
GB0605883D0 (en)2006-03-242006-05-03Pilkington PlcElectrical connector
GB0605884D0 (en)2006-03-242006-05-03Pilkington PlcElectrical connector
JP2010509133A (en)2006-11-152010-03-25ピルキントン オートモーティヴ ドイチェラント ゲーエムベーハー Window glass
JP5399256B2 (en)2006-11-152014-01-29ピルキントン オートモーティヴ ドイチェラント ゲーエムベーハー Antenna connector
CN101601327B (en)2006-12-212012-02-08皮尔金顿汽车法国股份有限公司Electrical connector
CN101682938B (en)*2007-05-072015-07-22埃克阿泰克有限责任公司Electrical connections for plastic panels having conductive grids
JP2009064579A (en)*2007-09-042009-03-26Nippon Sheet Glass Co LtdTerminal structure for platy body with conduction function and platy body with conduction function
JP2010020918A (en)*2008-07-082010-01-28Nippon Sheet Glass Co LtdTerminal structure and glass panel with terminal for vehicle
EP2340587A1 (en)*2008-09-162011-07-063M Innovative Properties CompanyTerminal mounting structure and method
JP5208816B2 (en)*2009-03-062013-06-12日本板硝子株式会社 Glass with terminal and vehicle with glass with terminal
DE102009016686A1 (en)2009-04-072009-10-29Daimler AgWindow pane i.e. side window pane, of motor vehicle, has controller for controlling electrical functional element i.e. electrical resistance heater, and holding device provided at window pane edge for holding controller
DE102010051670B4 (en)*2010-11-172019-09-12Few Fahrzeugelektrikwerk Gmbh & Co. Kg Contacting arrangement for on flat structures, namely glass panes, existing ladder
EP2670560B1 (en)2011-02-042016-01-13Antaya Technologies Corp.Lead-free solder composition
JP2014096198A (en)*2011-03-022014-05-22Central Glass Co LtdMethod of bonding window pane for automobiles and feeding terminal
JP6008945B2 (en)*2011-05-032016-10-19ピルキントン グループ リミテッド Glazing with soldered connectors
PT2708093T (en)*2011-05-102020-02-21Saint GobainPane comprising an electrical connection element
ES2769640T3 (en)2011-05-102020-06-26Saint Gobain Glass panel with an electrical connection element
DE202012013150U1 (en)2011-05-102015-02-09Saint-Gobain Glass France Washer with an electrical connection element
EA028795B1 (en)*2012-08-012017-12-29Сэн-Гобэн Гласс ФрансComposite pane with electrical contact-making means
US9504174B2 (en)*2012-08-092016-11-22A. Raymond Et CieElectrical connector for attachment to vehicle glass
JP6210820B2 (en)*2013-09-302017-10-11日本板硝子株式会社 Terminal structure and glass body for vehicle
US10129932B2 (en)*2015-06-232018-11-13Ppg Industries Ohio, Inc.Sensing element
GB201514397D0 (en)*2015-08-132015-09-30Pilkington Group LtdElectrical Connector
JP6551324B2 (en)*2016-07-062019-07-31株式会社豊田自動織機 Resin window
CN107690249A (en)*2016-08-042018-02-13苏政纬Waterproof method for high-voltage assembly of portable electronic device
WO2018104149A1 (en)2016-12-062018-06-14Saint-Gobain Glass FranceFlat conductor connection element
KR102761432B1 (en)*2016-12-122025-02-03삼성전자주식회사Planar-type heating apparatus and Electric Oven comprising the same
US10601148B2 (en)2017-10-232020-03-24Illinois Tool Works Inc.High wattage solderless flexible connector for printed conductors
GB201804622D0 (en)2018-03-222018-05-09Central Glass Co LtdMethod of producing a vehicle glass assembly
DE202019004359U1 (en)2019-10-222019-11-27Saint-Gobain Glass France Beam lead element
CN113498566B (en)2020-02-072025-09-30法国圣戈班安全玻璃公司 Flat conductor connection element
US12424807B2 (en)2022-07-082025-09-23Agc Automotive Americas Co.Method of manufacturing a window assembly with a solderless electrical connector
WO2025186142A1 (en)2024-03-042025-09-12Saint-Gobain Sekurit FranceFlat conductor connection element for a conductor structure of a pane

Citations (41)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2526327A (en)*1944-09-251950-10-17Lockheed Aircraft CorpWindshield deicer
US3658618A (en)*1968-10-251972-04-25Telefunken PatentMethod of providing individual bodies on a basic body
US3757087A (en)*1970-09-111973-09-04Smiths Industries LtdHeating elements
US3849880A (en)*1969-12-121974-11-26Communications Satellite CorpSolar cell array
GB1393887A (en)*1971-04-301975-05-14Smiths Industries LtdMethods of establishing electrical connections
US3918783A (en)*1974-04-171975-11-11Essex International IncApparatus for electrically connecting conductors on glass substrates
US4102722A (en)*1975-06-271978-07-25Ppg Industries, Inc.Method of making heated laminated window
US4388522A (en)*1980-12-081983-06-14Ford Motor CompanyElectrically heated backlite structure
FR2519477A1 (en)*1982-01-061983-07-08Siv Soc Italiana VetroConnecting electrical terminals in windscreen heater elements - by using contact pad with matrix of raised projections and conventional insulating adhesives
US4396826A (en)*1981-08-131983-08-02Ppg Industries, Inc.Lightweight heated plastic window element with unique bus bar system
US4488033A (en)*1982-09-231984-12-11Interdynamics, Inc.Heater assembly for heating glass surface
US4635415A (en)*1985-01-181987-01-13Daimler-Benz AktiengesellschaftGlass pane glued into the frame of an automobile body by means of an elastomeric polymerized adhesive
US4721845A (en)1985-09-101988-01-26Saint-Gobain VitrageElectrically heatable vehicle glass pane
US4755659A (en)*1987-02-031988-07-05Chomerics, Inc.Combined busbar and electrical lead assembly
US4865998A (en)*1983-03-111989-09-12Sloan-Kettering Institute For Cancer ResearchMonoclonal antibodies to human lung cancers and method
US4874930A (en)*1983-09-071989-10-17Sierracin CorporationElectroconductive film system for aircraft windows
GB2223385A (en)*1988-06-221990-04-04Splintex Belge SaVitreous substrate bearing electric circuit components and method of manufacturing same
US4920254A (en)*1988-02-221990-04-24Sierracin CorporationElectrically conductive window and a method for its manufacture
EP0410766A1 (en)*1989-07-261991-01-30THORN EMI plcImprovement in or relating to electrical devices incorporating electrical connectors
US5006179A (en)*1989-05-241991-04-09Solarex CorporationInterconnect for electrically connecting solar cells
US5026752A (en)*1987-04-031991-06-25Minnesota Mining And Manufacturing CompanyAmorphous-polypropylene-based hot melt adhesive
US5260549A (en)*1991-12-231993-11-09Methode Electronics, Inc.Automobile windshield heater connector
US5521357A (en)*1992-11-171996-05-28Heaters Engineering, Inc.Heating device for a volatile material with resistive film formed on a substrate and overmolded body
US5539186A (en)*1992-12-091996-07-23International Business Machines CorporationTemperature controlled multi-layer module
US5543601A (en)*1990-11-011996-08-06Ppg Industries Inc.Multiple connection terminal assembly for an electrically heated transparency
US5565261A (en)*1994-10-311996-10-15Motorola, Inc.Selective call radio having a ceramic substrate for circuit device interconnection
US5587236A (en)*1991-10-091996-12-24Donnelly CorporationInterior rear view mirror mounting system utilizing one-package structural adhesive
US5705983A (en)*1996-01-221998-01-06Ford Motor CompanyGlazing unit security system
US5867128A (en)*1995-09-281999-02-02Saint Gobain VitrageMulticontact for antenna window
JP2000030847A (en)*1998-07-072000-01-28Asahi Glass Co Ltd Electric heating window glass and manufacturing method thereof
DE19829151C1 (en)*1998-06-302000-02-10Sekurit Saint Gobain DeutschElectrical contacting of a conductive film, especially a heating layer for laminated automobile glazing, comprises connecting a collector bar to solder deposits by energy supply through the pane and-or an adhesive film on the thin film
US6043782A (en)*1995-12-182000-03-28Ppg Industries Ohio, Inc.Antenna connector arrangement
US6075708A (en)*1997-09-042000-06-13Rohm Co., Ltd.Partly bent electric circuit substrate and method for manufacturing the same
EP1009060A2 (en)1998-12-092000-06-14Saint-Gobain VitrageContact device for a functional electrical element fitted on glass
US6079343A (en)*1994-05-172000-06-27Taltech Ltd.Pucker free garment side seam and method for production
US20010004534A1 (en)*1999-05-242001-06-21Carrie Carter-ComanDiffusion barrier for increased mirror reflectivity in reflective solderable contacts on high power led chip
US6320159B1 (en)*1997-11-202001-11-20Robert Bosch GmbhWindow heater
US6386741B1 (en)*1999-05-062002-05-14Polymore Circuit Technologies, L.P.Method and apparatus for supplying power to an electrical or electronic device in conjunction with a vanity mirror
US20020063311A1 (en)*1996-10-292002-05-30Oleg SiniaguineIntegrated circuits and methods for their fabrication
EP0763869B1 (en)*1995-09-132002-11-27PPG Industries Ohio, Inc.On-glass antenna and connector arrangement
US6512203B2 (en)*1999-05-062003-01-28Polymore Circuit TechnologiesPolymer thick film heating element on a glass substrate

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
JPS5251271Y2 (en)*1972-09-121977-11-21
FR2212734B1 (en)*1972-12-281976-07-23Saint Gobain
JPS578620Y2 (en)*1977-03-291982-02-18
JPS6021884Y2 (en)*1980-08-061985-06-29セントラル硝子株式会社 conductive glass terminal plate
JPS5824977U (en)*1981-08-111983-02-17セントラル硝子株式会社 conductive glass terminal plate
JPS5928973U (en)*1982-08-191984-02-23セントラル硝子株式会社 Terminal structure provided on the plate glass surface
JPH03237753A (en)*1990-02-151991-10-23Nippon Avionics Co Ltd Hybrid IC, its manufacturing method and lead frame
JP2874483B2 (en)*1992-10-051999-03-24松下電器産業株式会社 Semiconductor device
JPH11307215A (en)*1998-04-241999-11-05Rohm Co LtdMethod for surface mounting electronic component having terminal to be soldered and surface mounting structure therefor
JP3760642B2 (en)*1998-10-132006-03-29株式会社村田製作所 Electronic components
JP3246904B2 (en)*1999-10-082002-01-15北川工業株式会社 Conductive material

Patent Citations (44)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US2526327A (en)*1944-09-251950-10-17Lockheed Aircraft CorpWindshield deicer
US3658618A (en)*1968-10-251972-04-25Telefunken PatentMethod of providing individual bodies on a basic body
US3849880A (en)*1969-12-121974-11-26Communications Satellite CorpSolar cell array
US3757087A (en)*1970-09-111973-09-04Smiths Industries LtdHeating elements
GB1393887A (en)*1971-04-301975-05-14Smiths Industries LtdMethods of establishing electrical connections
US3918783A (en)*1974-04-171975-11-11Essex International IncApparatus for electrically connecting conductors on glass substrates
US4102722A (en)*1975-06-271978-07-25Ppg Industries, Inc.Method of making heated laminated window
US4388522A (en)*1980-12-081983-06-14Ford Motor CompanyElectrically heated backlite structure
US4396826A (en)*1981-08-131983-08-02Ppg Industries, Inc.Lightweight heated plastic window element with unique bus bar system
FR2519477A1 (en)*1982-01-061983-07-08Siv Soc Italiana VetroConnecting electrical terminals in windscreen heater elements - by using contact pad with matrix of raised projections and conventional insulating adhesives
US4488033A (en)*1982-09-231984-12-11Interdynamics, Inc.Heater assembly for heating glass surface
US4865998A (en)*1983-03-111989-09-12Sloan-Kettering Institute For Cancer ResearchMonoclonal antibodies to human lung cancers and method
US4874930A (en)*1983-09-071989-10-17Sierracin CorporationElectroconductive film system for aircraft windows
US4635415A (en)*1985-01-181987-01-13Daimler-Benz AktiengesellschaftGlass pane glued into the frame of an automobile body by means of an elastomeric polymerized adhesive
US4721845A (en)1985-09-101988-01-26Saint-Gobain VitrageElectrically heatable vehicle glass pane
EP0278611A1 (en)*1987-02-031988-08-17Chomerics, Inc.Combined busbar and electrical lead
US4755659A (en)*1987-02-031988-07-05Chomerics, Inc.Combined busbar and electrical lead assembly
US5026752A (en)*1987-04-031991-06-25Minnesota Mining And Manufacturing CompanyAmorphous-polypropylene-based hot melt adhesive
US4920254A (en)*1988-02-221990-04-24Sierracin CorporationElectrically conductive window and a method for its manufacture
GB2223385A (en)*1988-06-221990-04-04Splintex Belge SaVitreous substrate bearing electric circuit components and method of manufacturing same
US5006179A (en)*1989-05-241991-04-09Solarex CorporationInterconnect for electrically connecting solar cells
EP0410766A1 (en)*1989-07-261991-01-30THORN EMI plcImprovement in or relating to electrical devices incorporating electrical connectors
US5543601A (en)*1990-11-011996-08-06Ppg Industries Inc.Multiple connection terminal assembly for an electrically heated transparency
US5587236A (en)*1991-10-091996-12-24Donnelly CorporationInterior rear view mirror mounting system utilizing one-package structural adhesive
US5260549A (en)*1991-12-231993-11-09Methode Electronics, Inc.Automobile windshield heater connector
US5521357A (en)*1992-11-171996-05-28Heaters Engineering, Inc.Heating device for a volatile material with resistive film formed on a substrate and overmolded body
US5539186A (en)*1992-12-091996-07-23International Business Machines CorporationTemperature controlled multi-layer module
US6079343A (en)*1994-05-172000-06-27Taltech Ltd.Pucker free garment side seam and method for production
US5565261A (en)*1994-10-311996-10-15Motorola, Inc.Selective call radio having a ceramic substrate for circuit device interconnection
EP0763869B1 (en)*1995-09-132002-11-27PPG Industries Ohio, Inc.On-glass antenna and connector arrangement
US5867128A (en)*1995-09-281999-02-02Saint Gobain VitrageMulticontact for antenna window
DE19536131C2 (en)1995-09-282002-05-02Saint Gobain Sekurit D Gmbh Diversity antenna disc for vehicles with connection elements
US6043782A (en)*1995-12-182000-03-28Ppg Industries Ohio, Inc.Antenna connector arrangement
US5705983A (en)*1996-01-221998-01-06Ford Motor CompanyGlazing unit security system
US20020063311A1 (en)*1996-10-292002-05-30Oleg SiniaguineIntegrated circuits and methods for their fabrication
US6075708A (en)*1997-09-042000-06-13Rohm Co., Ltd.Partly bent electric circuit substrate and method for manufacturing the same
US6320159B1 (en)*1997-11-202001-11-20Robert Bosch GmbhWindow heater
DE19829151C1 (en)*1998-06-302000-02-10Sekurit Saint Gobain DeutschElectrical contacting of a conductive film, especially a heating layer for laminated automobile glazing, comprises connecting a collector bar to solder deposits by energy supply through the pane and-or an adhesive film on the thin film
JP2000030847A (en)*1998-07-072000-01-28Asahi Glass Co Ltd Electric heating window glass and manufacturing method thereof
US6307515B1 (en)*1998-12-092001-10-23Saint-Gobain VitrageContact device for an electrical functional element disposed on a window
EP1009060A2 (en)1998-12-092000-06-14Saint-Gobain VitrageContact device for a functional electrical element fitted on glass
US6386741B1 (en)*1999-05-062002-05-14Polymore Circuit Technologies, L.P.Method and apparatus for supplying power to an electrical or electronic device in conjunction with a vanity mirror
US6512203B2 (en)*1999-05-062003-01-28Polymore Circuit TechnologiesPolymer thick film heating element on a glass substrate
US20010004534A1 (en)*1999-05-242001-06-21Carrie Carter-ComanDiffusion barrier for increased mirror reflectivity in reflective solderable contacts on high power led chip

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
EP opposition against EP 1 256 261-Provisional Opinion from the EPO.
EP Opposition against patent EP 1 256 261 (English language translation included).
Response to EP Opposition against patent EP 1 256 261.

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20100200293A1 (en)*2006-02-102010-08-12Radiant Glass Industries, LlcHeated glass panels
US20140057501A1 (en)*2012-08-272014-02-27GM Global Technology Operations LLCElectrical-mechanical fastening device for motor vehicles

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CN1397146A (en)2003-02-12
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DE60106568T3 (en)2010-06-24
JP2003521093A (en)2003-07-08
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ES2231449T5 (en)2010-04-19
WO2001056334A1 (en)2001-08-02
ES2231449T3 (en)2005-05-16
EP1256261B2 (en)2009-11-18
AU2001235981A1 (en)2001-08-07
US20030180545A1 (en)2003-09-25
EP1256261A1 (en)2002-11-13
US6774342B2 (en)2004-08-10
EP1256261B1 (en)2004-10-20
BR0107834A (en)2003-01-14

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