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EP 1 536 436 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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25.01.2017 Bulletin 2017/04 |
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Date of filing: 23.06.2003 |
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International Patent Classification (IPC):
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International application number: |
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PCT/ES2003/000309 |
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International publication number: |
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WO 2004/003947 (08.01.2004 Gazette 2004/02) |
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METHOD OF PRODUCING PLANAR TRANSFORMERS AND PLANAR TRANSFORMER THUS PRODUCED
VERFAHREN ZUR HERSTELLUNG VON PLANARTRANSFORMATOREN UND SO HERGESTELLTER PLANARTRANSFORMATOR
PROCEDE DE FABRICATION DE TRANSFORMATEURS PLANAIRES ET TRANSFORMATEUR PLANAIRE FABRIQUE
SELON LEDIT PROCEDE
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Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IT LI LU MC NL PT RO SE SI SK TR |
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Priority: |
26.06.2002 ES 200201465
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Date of publication of application: |
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01.06.2005 Bulletin 2005/22 |
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Proprietor: Premo, S.L. |
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08028 Barcelona (Barcelona) (ES) |
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Inventor: |
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- GAZO PASTOR, Javier
E-08028 Barcelona (ES)
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Representative: Juncosa Miro, Jaime |
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Torner, Juncosa i Associates, S.L.
Gran Via de les Corts
Catalanes, 669 bis, 1º, 2ª 08013 Barcelona 08013 Barcelona (ES) |
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References cited: :
EP-A1- 0 267 822 US-A- 5 010 314 US-A- 6 000 128 US-A1- 5 317 300 US-B1- 6 380 834
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EP-A1- 0 767 473 US-A- 5 929 734 US-A1- 4 622 627 US-B1- 6 211 767
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- GUNEWARDENA T.R.: "Manufacturing design considerations for planar magnetics", ELECTRICAL
INSULATION CONFERENCE, 1997, AND ELECTRICAL MANUFACTURING & COIL WINDING CONFERENCE.
PROCEEDINGS ROSEMONT, IL, USA 22-25 SEPT. 1997, NEW YORK, NY, USA,IEEE, US, 22 September
1997 (1997-09-22), pages 309-311, XP010265713, ISBN: 978-0-7803-3959-0
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] This invention relates to a process for the manufacture of planar transformers and
a planar transformer manufactured by means of said process.
[0002] The object of this invention is to provide planar transformers of very small size
and with a large capacity for insulation between layers, in particular between windings,
offering the further possibility that they may be manufactured economically.
[0003] In order to achieve its object this invention discloses the manufacture of planar
transformers comprising solely of windings and insulating layers of variable thickness
according to the insulation between integrated circuits and/or windings manufactured
by the punching of copper sheets or wound copper, ensuring that there is dielectric
strength in the vertical direction.
[0004] Document
US 5,010,314 discloses a planar condenser of the type comprising separate insulating planar printed
circuit layers and copper windings. This transformer, of the same type as the transformer
to which this invention relates, does not resolve the problem of obtaining adequate
insulation in the horizontal direction, while occupying the least space possible,
in a wholly satisfactory way.
[0005] Document
US 5,929,743 discloses a flat coil member formed from a plurality of printed circuits stacked
one above the other in which pillars interconnect the conducting strips of the printed
circuit along at least one of the edges and also have connections to the exterior.
This document does not relate to the type of transformer to which this invention relates.
[0006] Document
US 6,000,128 describes a process for the manufacture of a stack of flat printed circuits prepared
for connection by pillars on two sides of the stack and with two cores which are located
at the base and top of the stack of circuits. Again this document does not relate
to the type of transformer to which this invention relates.
[0007] Document
US 5,317,300 describes a wholly conventional non-planar transformer with a coil, windings and
terminals and a core formed by retention plates. Therefore it relates in fact to a
transformer which belongs to a wholly separate stage in the development of transformers.
It is cited because unlike the documents mentioned above it describes the total or
partial encapsulation of the transformer with a thermoplastic material by injection.
[0008] US 6 211 767 discloses an example of planar transferences according to the precharacterising portion
of claim 1.
[0009] EP 0 267 822 discloses a flat transformer with a resin encapsulation. However, the transformer
being of a different structure, therefore applicable in other fields.
[0010] Also, Document XP010265713 ISBN: 978-0-7803-3959-0 discloses a method for increasing
the insulation in planar magnetics such as void-free encapsulation using an insulating
resin.
[0011] Document
US6380834 discloses planar transformers that comprise stacked circuit boards and windings with
insulating layers between them.
[0012] The process of manufacture in accordance with this invention satisfactorily provides
insulation in the horizontal direction in which the distance called "creepage" is
conventionally defined as the minimum distance between the windings or winding and
the core over the insulating surface area through air, occupying the least space possible.
[0013] In accordance with the process in accordance with this invention manufacture of the
planar transformer is effected through a series of successive operations which in
total comprise:
- a) successive stacking of the laminar members constituting the windings with interleaved
insulating layers on both sides and including the laminar members of multilayer printed
circuits or printed circuits with double printed circuits or circuits printed on only
one side,
- b) fitting of the connecting plugs or pins inserted into aligned openings in the laminar
members forming the windings and the winding printed circuit boards (PCB), proceeding
to attach the pins both to the terminals of the copper windings and those of the printed
circuits, simultaneously making an electrical connection between the said pins and
the spatial mounting of the printed circuits, imparting high rigidity to the assembly,
- c)casting a mass of resin, for example using a reusable or shell mould, forming a
block, or fitting the assembly comprising the different stacked windings together
with the interleaved insulating layers within a box substantially matching the external
shape of the said stacked and previously unified assembly, then proceeding to pour
the insulating polyurethane resin at a very slow rate so as to allow it to enter between
the windings until the desired depth within the box is reached, which might be the
depth at which it is flush, after which and after the resin has hardened there is
obtained a wholly compact assembly which is well insulated as a result of the resin's
penetration between the layers of windings, providing great dielectric strength as
well as small external dimensions.
[0014] In order to achieve good penetration by the resin between the windings, it is necessary
for the interleaved insulating layers to be of sufficient size to permit such penetration,
in order to leave a larger region for penetration by the insulating resin.
[0015] Finally the externally attached ferrites are incorporated with the assembly formed
by the windings, interleaved insulating layers, printed circuits and connecting rods,
all embedded in a mass of insulating polyurethane resin.
[0016] The box for moulding the assembly of windings, interleaved insulating layers and
printed circuits may be incorporated in the transformer for the purpose of acting
as an envelope for the assembly, although the transformer may be manufactured in the
manner indicated within a metal or shell mould, in which case there is no outer box
moulding the polyurethane resin.
[0017] For better understanding some drawings illustrating this invention are appended by
way of an explanatory but not restrictive example.
Figure 1 illustrates the set of parts forming a planar transformer manufactured according
to this invention, in which the relative position of a resin moulding box and the
ferrite cores can be seen.
Figure 2 shows a cross-section of the planar transformer on a larger scale in which
the moulding box is arranged in the form of a protective envelope.
Figure 3 illustrates a second cross-section of the planar transformer along a plane
parallel to that in Figure 2.
Figure 4 shows a plan view.
[0018] As illustrated in these figures, a planar transformer according to this invention
comprises a set of windings and interleaved insulating layers stacked into an assembly
joined together by a set of connecting pins as seen in Figure 1, in which may be seen
the printed circuit boards -1- and -2- and intermediate windings -3- and -4-, punched
from copper sheet or wound from the same material, the interleaved insulating layers
-5-, -6-, -7-, -8- and -9- being located on each side of the said members and having
surface dimensions which are smaller than those of printed circuit windings -1- and
-2-. The arrangement is that which may be seen in Figures 2 and 3, in which the arrangement
of the windings, printed circuit boards and interleaved insulating layers can be seen,
fixed in position through a variable number of through pins, with the pins represented
by the numbers -10-, -10'-, -10"- ..., as may be seen in Figure 1, it being understood
that their number and arrangement will depend on the circuits enclosed. These pins
are inserted in the corresponding orifices in the printed circuit boards and winding
boards as indicated for example by numbers -11-, -11'-, -11"- ... in printed circuit
board -1- and numbers -12- and -12'- in winding -3-.
[0019] These pins are attached to the said panels and windings in ways which are known in
the art, for example by cold welding, cementing masses or other means.
[0020] Once the set of windings with their interleaved insulating layers and fixing pins
has been assembled, the assembly is embedded in a mass of insulating polyurethane
resin which can be achieved by casting in an external or "shell" mould or using a
box of appropriate structure -13-, which has an external shape matching that of the
printed circuit boards, with lateral steps such as -14- and -15- to match lateral
notches -16- and -17- of the said printed circuit boards and an extended central core
-18- designed to coincide with the central openings of the said stacked members, that
is, printed circuit boards, windings and interleaved insulating layers.
[0021] In order to achieve a satisfactory result it is essential that the thickness of the
interleaved insulating layers which form the passages for the resin must be adequate.
[0022] Once the insulating resin, preferably polyurethane resin, has been cured, ferrite
cores -19- and -20- are attached, being joined by laminar insulating members fitted
externally thereto or by any other means known in the art.
[0023] Figure 4 illustrates a plan view of an embodiment of a planar transformer manufactured
in accordance with this invention, in which will be seen enclosing box -13-incorporated
in the mass of polyurethane resin, forming end blocks -21- and -34- which are interconnected
by portions -22- and -23- of which only the beginning can be seen in Figure 4, edging
the central opening -25-. The ends of the connecting pins extend beyond the block
of polyurethane resin, being represented by the numbers -26-, -27-, -28- and -29-
in the case of block -34- and pins -30-, -31-, -32-and -33- in the case of block -21-,
although it should be understood that the number and arrangement of the said pins
may vary with the specific design of the planar transformer.
1. A planar transformer, of the type comprising a ferrite core (19, 20) and a succession
of windings in a stack comprising a variable number of printed circuit boards (1,
2) and copper windings (3, 4), punched from sheet or wound, with interleaved insulating
laminar members (5, 6, 7, 8, 9) in contact with all the surfaces of the windings and
of variable thickness to adjust the gaps between the windings, said windings being
connected together by connecting pins (10, 10', 10", 26-33) inserted there through,
characterized in that the connecting pins are inserted in aligned orifices (11, 11', 11", 12) of the printed
circuit boards (1, 2) and the copper windings (3, 4) and the transformer comprises
a single preassembled block (21, 22, 23, 34) as a result of the stacking of the printed
circuit boards and the copper windings with inserted connection pins and the interleaved
insulating laminar members that are embedded in a single mass of insulating polyurethane
resin which covers the assembly of said stacked elements externally and which enters
the gaps between the windings, leaving the ferrite core outside and attached to the
preassembled block.
2. A planar transformer according to Claim 1 , characterised in that the resin block containing the windings, the interleaved insulating laminar members
and the inserted connecting pins (10, 10', 10", 26-33) of the transformer are incorporated
within an open insulating box (13) which fits the base and the lateral profile of
said block and its central opening.
3. A process for the manufacture of planar transformers according to Claims 1 and 2,
proceeding through a first stage of vertically stacking the printed circuit boards,
the copper windings and the interleaved insulating laminar members in both upper and
lower parts of the stack, characterised in that these are fastened by inserting connecting pins fitted in aligned orifices of the
windings, securing the pins with said windings and finally proceeding to pour a mass
of polyurethane resin into a mould which surrounds the previously assembled stack
comprising the windings, interleaved insulating laminar members and inserted connecting
pins, pouring the resin at a suitable rate to permit the insulating resin to penetrate
the gaps between the windings.
4. A process according to Claim 3, characterised in that the mass of polyurethane resin is poured within a surrounding box (13) which has
a sealed bottom and is open at the top which externally matches the shape of the preassembled
stack of the printed circuit boards, the copper windings and the interleaved insulating
laminar members, filling with resin until flush with the upper surface in order to
form a block.
1. Planartransformator, der Art umfassend einen Ferritkern (19, 20) und eine Reihenfolge
von Wicklungen in einem Stapel, umfassend eine variable Anzahl von gedruckten Leiterplatten
(1, 2) und Kupferwicklungen (3, 4), gestanzt aus einer Folie oder gewickelt, mit verschachtelten
isolierenden flächigen Elementen (5, 6, 7, 8, 9) in Kontakt mit allen Oberflächen
der Wicklungen und mit einer variablen Dicke, um die Lücken zwischen den Wicklungen
einzustellen, wobei die genannten Wicklungen mittels Verbindungsstiften (10, 10',
10", 26-33) miteinander verbunden sind, welche durch diese eingesteckt werden, dadurch gekennzeichnet, dass die Verbindungsstifte in ausgerichteten Löcher (11, 11', 11", 12) der gedruckten
Leiterplatten (1, 2) und der Kupferwicklungen (3, 4) eingesteckt werden, und der Transformator
einen einzigen vormontierten Block (21, 22, 23, 34) umfasst, infolge der Stapelung
der gedruckten Leiterplatten und der Kupferwicklungen mit eingesteckten Verbindungsstiften
und den verschachtelten isolierenden flächigen Elementen, welche in einer einzigen
Masse aus isolierendem Polyurethanharz eingebettet sind, welche die Baugruppe aus
gestapelten Elementen äußerlich deckt und welche in die Lücken zwischen den Wicklungen
eindringt, wobei der äußerliche Ferritkern außen und an dem vormontierten Block befestigt
bleibt.
2. Planartransformator nach Anspruch 1, dadurch gekennzeichnet, dass der Harzblock, welcher die Wicklungen, die verschachtelten isolierenden flächigen
Elemente und die eingesteckten Verbindungsstifte (10, 10', 10", 26-33) des Transformators
enthält, innerhalb eines offenen Isolierkastens (13) eingegliedert wird, welcher in
die Basis, das seitliche Profil des genannten Blocks und dessen zentrale Öffnung einpasst.
3. Verfahren zur Herstellung von Planartransformatoren nach den Ansprüchen 1 und 2, ausgeführt
durch einen ersten Schritt des vertikalen Stapelns der gedruckten Leiterplatten, der
Kupferwicklungen und der verschachtelten isolierenden flächigen Elementen sowohl in
oberen als auch in unteren Teilen des Stapels, dadurch gekennzeichnet, dass diese mittels des Einsteckens von Verbindungsstiften, welche in ausgerichtete Löcher
der Wicklungen einpassen, fixiert werden, wobei die Stifte mit den genannten Wicklungen
befestigt werden und schließlich eine Masse aus Polyurethanharz in eine Form eingegossen
wird, welche den zuvor montierten Stapel umfassend die Wicklungen, die verschachtelten
isolierenden flächigen Elemente und die eingesteckten Verbindungsstifte umgibt, wobei
das Harz bei einer geeigneten Geschwindigkeit eingegossen wird, um zu ermöglichen,
dass das isolierende Harz in die Lücken zwischen den Wicklungen eindringt.
4. Verfahren nach Anspruch 3, dadurch gekennzeichnet, dass die Masse aus Polyurethanharz in einen umgebenden Kasten (13) eingegossen wird, welches
einen versiegelten Boden aufweist und im oberen Teil offen ist, welcher äußerlich
der Gestalt des vormontierten Stapels der gedruckten Leiterplatten, der Kupferwicklungen
und der verschachtelten isolierenden flächigen Elementen entspricht, sodass er mit
Harz gefüllt wird, bis es bündig mit der oberen Oberfläche ist, im einen Block zu
bilden.
1. Un transformateur planaire du type comportant un noyau de ferrite (19, 20) et une
suite de bobinages dans une pile comportant un nombre variable de cartes de circuit
imprimé (1,2) et des bobinages en cuivre (3, 4), découpés dans une lame ou enroulés
ayant des éléments laminaires isolant entrelacés (5, 6, 7, 8, 9) en contact avec toutes
les surfaces des bobinages et ayant une grosseur variable pour régler les écarts entre
les bobinages , ces bobinages étant reliés entre eux par des broches de raccordement
(10, 10', 10", 26-33) insérées à travers eux, caractérisé en ce que les broches de raccordement sont insérées dans des trous alignés (11, 11', 11", 12)
des cartes de circuit imprimé (1,2) et les bobinages en cuivre (3, 4) et le transformateur
comporte un seul bloc pré-assemblé (21, 22, 23, 34) suite à l'empilement des cartes
de circuit imprimé et des bobinages en cuivre ayant des broches de raccordement insérées
et les éléments laminaires isolants entrelacés qui sont incorporés dans une seule
masse de résine de polyuréthane isolante qui couvre l'ensemble de ces éléments empilés
et qui entre dans les écarts entre les bobinages, en laissant le noyau en ferrite
à l'extérieur et attaché au bloc pré-assemblé.
2. Un transformateur planaire conformément à la revendication 1, caractérisé en ce que le bloc en résine contenant les bobinages, les éléments laminaires isolants entrelacés
et les broches de raccordement insérées (10, 10', 10", 26-33) du transformateur sont
incorporés à l'intérieur d'un boîtier isolant ouvert (13) qui s'adapte à la base et
au profil latéral de ce bloc et de son ouverture centrale.
3. Une méthode pour la fabrication de transformateurs planaires conformément aux revendications
1 et 2, et passant par une première étape d'empilage vertical des cartes de circuit
imprimé , des bobinages en cuivre et des membres laminaires isolants entrelacés sur
les deux parties supérieure et inférieure de la pile, caractérisé en ce qu'ils sont fixés en insérant des broches de raccordement adaptées dans les trous alignés
des bobinages, en assurant les broches avec ces bobinages et finalement en versant
une masse de résine de polyuréthane dans un moule qui entoure la pile préalablement
assemblée comportant les bobinages, les éléments laminaires isolants entrelacés et
les broches de raccordement insérées, en versant la résine à un débit adapté pour
permettre que la résine pénètre dans les écarts entre les bobinages.
4. Une méthode conformément à la revendication 3, caractérisée en ce que la masse de résine de polyuréthane est versée à l'intérieur d'un boîtier enveloppant
(13) qui possède une base scellée et qui est ouvert en haut qui s'adapte à l'extérieur
à la forme de la pile pré-assemblée de cartes de circuit imprimé, de bobinages de
cuivre et d'éléments laminaires isolants entrelacés, en remplissant avec la résine
jusqu'à ce qu'elle soit au même niveau que la surface supérieure afin de former un
bloc.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description