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EP 2 811 495 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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11.01.2017 Bulletin 2017/02 |
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Date of filing: 05.06.2013 |
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International Patent Classification (IPC):
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Transformer
Wandler
Transformateur
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Date of publication of application: |
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10.12.2014 Bulletin 2014/50 |
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Proprietor: Delphi Automotive Systems Luxembourg SA |
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4940 Bascharage (LU) |
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Inventors: |
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- Heise, Volker
54292 Trier (DE)
- Aye, Andreas
8033 Strassen (LU)
- Kneppers, Gerard J.
6760 Virton (BE)
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Representative: Delphi France SAS |
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Patent Department
22, avenue des Nations
CS 65059 Villepinte 95972 Roissy CDG Cedex 95972 Roissy CDG Cedex (FR) |
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References cited: :
EP-A1- 0 283 354 EP-A1- 2 518 740 CN-U- 202 258 665 US-A1- 2004 085 174
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EP-A1- 0 913 841 EP-A2- 2 498 266 US-A1- 2004 085 173
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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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TECHNICAL FIELD
[0001] This disclosure relates to a transformer and has particular, but not exclusive application,
to a transformer for an ignition apparatus or coil, such as for, but not limited to,
automotive applications.
BACKGROUND OF THE INVENTION
[0002] Conventional ignition coils are realized with gapped transformers. The transformers
generally include a core of magnetic highly permeable material, around which primary
and secondary windings are located. A closed magnetic return path is provided by a
generally C or U shaped magnetic return path element, the magnetic core being located
between two end faces of the return path element. Preferred materials for the magnetic
core and for the magnetic return path element are laminated metal sheets.
[0003] Typically, one end of the magnetic core directly abuts or contacts one end face of
the magnetic return path element. Between the other end face of the magnetic return
path element and the other end of the core is typically located a magnet or simply
an air-gap. During the operation of such a coil transformer, heat is created dominantly
by ohmic losses in the primary and secondary winding.
[0004] Magnetic saturation zones can be created at interfaces between the magnetic return
path element and the magnetic core. Saturation is built-up inside the magnetic return
path element, around the interface region to the magnetic core. Generally such saturation
causes a problem in that it limits the performance of the entire magnetic circuit.
Known solutions are to increase the cross-sections of the magnetic path element or
use magnetic material with higher magnetic permeability. Either solution is not desired
because it increases weight, volume and/or cost. Documents
US 2004/085174A1 and
US 2004/085173A1 disclose a transformer device comprising bulk amorphous metal.
[0005] It is an object of the invention to provide an improved transformer that overcomes
such problems.
SUMMARY OF THE INVENTION
[0006] According to the present invention there is provided a transformer according to present
claim 1. Preferred features are specified in dependent claims 2 to 13.
[0007] Further features, uses and advantages of the invention will appear more clearly on
a reading of the following detailed description of the embodiments of the invention,
which is given by way of non-limiting example only and with reference to the accompanying
drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] This invention will be further described by way of example and with reference to
the accompanying drawings in which:
Figure 1 shows a schematic longitudinal section through transformer of an ignition
coil, in accordance with one basic example of the invention.
Figure 2 shows a schematic longitudinal section through transformer of an ignition
coil, in accordance with a further example of the invention.
Figure 3 shows a schematic longitudinal section through transformer of an ignition
coil, in accordance with another example of the invention.
DETAILED DESCRIPTION OF THE PREFFERED EMBODIMENTS
[0009] Figure 1 shows a simple transformer according to one embodiment of the invention.
The transformer comprises a magnetic core 12, a primary winding 14 and secondary winding
16, a magnetic return path element 18 and a first gap component 30. The magnetic core
12 extending along a longitudinal axis 'A' is generally cylindrical in overall shape
and includes two ends 20 and 22. The magnetic return path element 18 is configured
to provide a high permeability magnetic return path, and has a base section 24 and
two end faces 26 and 28. The typical width for gap component 30 is 0.5 to 2 mm. Gap
components could have different thickness.
[0010] A second gap component 34 is located symmetrically to the first gap component 30.
More precisely, the first and the second gap component 30 and 34 are located between
each end faces of section 26 and 28 of the magnetic return path element 18 and the
respective ends 20 and 22 of the magnetic core 12. The magnetic core 12 in combination
with the magnetic return path element 18, and gap components form a magnetic circuit
having a high magnetic permeability.
[0011] The two gap components 30 and 34 may be formed from ceramic or other material. Preferably
this material has a heat conductivity greater than 1 W/m/K. The choice of using heat
conducting material for one or two gap components 30 and 34 can be selected to dissipate
heat generated by the primary winding 14 and the secondary winding 16 from the magnetic
core 12 to the magnetic return path element 18 either with a preferential direction
or symmetrically. Preferably the gap components 30 and 34 are formed from materials
such as ceramics; for example ceramics including aluminum-oxide, aluminum-nitrides
or any similar materials. The additional second gap component 34, arranged symmetrically
about the transverse axis 'B' to the first gap component 30 in the magnetic core 12,
allows balancing of the magnetic circuit and by this allows an increase the total
flux of the circuit. As an example, one gap component could be realized by a permanent
magnetic material, whereas the second gap could be made out of any filling material,
preferably with high thermal conductivity. This transformer topology increases the
output performance of the transformer 10 and provides for a smaller more compact transformer.
[0012] Figure 2 shows a transformer according to another embodiment of the invention. The
transformer comprises again a magnetic core 12, a primary winding 14 and secondary
winding 16, a magnetic return path element 18 and two gap components 30 and 34. The
transformer is encapsulated within e.g. an epoxy material 32 with typical heat conductivities
in the range of 0.1 to 1 W/m/K, to provide electrical insulation. The two gap components
30 and 34 encapsulated inside the epoxy 32 potting material may be provided by spacers.
The two gap components allow balancing of the magnetic circuit and by this allow an
increase the total flux of the circuit. The spacers provide the advantage of a lighter
transformer.
[0013] The epoxy potting material 32 also provides protection from environmental factors
which may be encountered during the service life of the transformer. During the operation
of the transformer 10, heat is created dominantly by ohmic losses of the primary winding
14 and secondary winding 16. This heat is conducted through the epoxy 32 encapsulation
of the transformer to the surface. The transformer 10 mays have an insulating plastic
housing 38 in order to attach, for instance, connectors. This transformer topology
increases the output performance of the transformer 10 or to further miniaturize its
magnetic circuit.
[0014] Figure 3 illustrates a further refined and preferred embodiment of the invention.
The drawing shows similar components and reference numerals as before. The embodiment
further however includes a heat sink 36 and an electronic circuit board 40.
[0015] The heat sink 36 may be attached to the magnetic return path element 18 providing
a large surface to reduce the internal temperature of the primary winding 14 and secondary
winding 16 during transformer operation. The heat sink 36 can be attached by means
of an over-mold, welding, clamping directly or any similar method, to the magnetic
return path element18. The heat sink 36 is preferably made of magnetic or non-magnetic
metal material and allows heat to flow outside of the plastic housing 38. The heat
sink 36 may have additional means to attach to an integrated electronic circuit board
40 and serves by this for dissipating the heat from the electronic circuit board 40.
The electronic circuit board is preferably used as an electronic control board for
the ignition coil comprising the transformer 10.
[0016] The heat sink 36 may further be formed as a bracket that can be fixed to a vehicle
chassis. Optionally the bracket can be split into at least two individual elements.
The thickness and contact surface of the heat sink 36 can be varied so as to provide
desired heat dissipation requirements. The shape of the heat sink 36 is preferably
conforms to the shape of the outer surface of the magnetic return path element 18.
Within the invention, ignition coil topology allows balancing the magnetic circuit
and by this allows increasing the total flux of the circuit. This can be used either
to increase the output performance or to further miniaturize the magnetic circuit
1. A transformer (10) comprising:
a magnetic core (12) extending along a longitudinal axis (A), being cylindrical in
overall shape and including two ends (20, 22) forming two opposite radial surfaces;
a U shaped magnetic return path element (18) having a base (24) and two legs and providing
a magnetic return path for the magnetic core (12); said magnetic core (12) being located
between two internal end faces (26,28) of the two legs of the U shaped magnetic return
path element (18);
a primary coil or winding (14), surrounding the magnetic core (12);
a secondary coil or winding (16) surrounding the primary winding/coil (14);
a first gap component (30) located between one end (20) of the magnetic core (12)
and one corresponding internal end face (26) of the magnetic return path element (18);
a second gap component (34) is located between the other end (22) of the magnetic
core (12) and the corresponding other internal end face (28) of the magnetic return
path element (18).
2. A transformer (10) as claimed in claim 1 wherein said second gap component (34) is
located symmetrically to the first gap component (30) in the magnetic core (12) about
an axis perpendicular to the core axis.
3. A transformer (10) as claimed in any previous claims wherein the magnetic core (12),
the magnetic return path element (18), the primary winding (14) and the secondary
winding (16) are encapsulated.
4. A transformer (10) as claimed in claim 3 wherein the encapsulating material is an
epoxy resin (32).
5. A transformer (10) as claimed in any previous claims wherein at least one of the gap
components (30, 34) is formed from an electrical isolating material.
6. A transformer (10) as claimed in any previous claims wherein at least one of the gap
components (30, 34) are formed from a material with a thermal conductivity greater
than 1 W/m/K.
7. A transformer (10) as set in any of previous claims wherein the two gap components
(30, 34) are formed from a ceramic material.
8. A transformer (10) as claimed in claim 7 wherein said ceramic material includes aluminum-oxide
or aluminum-nitrides.
9. A transformer (10) as claimed in any of previous claims further including a heat sink
(36) surrounding a substantial portion of said transformer (10).
10. A transformer (10) as claimed in claim 9 wherein said heat sink includes a bracket.
11. A transformer (10) as claimed in claims 9 or 10 wherein an electronic board (40) is
attached to the heat sink (36).
12. A transformer (10) as claimed in any of previous claims including an insulating housing
(38).
13. An ignition coil including a transformer (10) as claimed in any preceding claim.
1. Ein Wandler (10), der aufweist:
einen Magnetkern (12), der sich entlang einer Längsachse (A) erstreckt, eine zylinderförmige
Gesamtform hat und zwei Enden (20, 22) umfasst, die zwei gegenüberliegende radiale
Oberflächen bilden;
ein U-förmiges magnetisches Rückpfadelement (18), das eine Basis (24) und zwei Schenkel
hat und einen magnetischen Rückpfad für den Magnetkern (12) vorsieht; wobei sich der
Magnetkern (12) zwischen zwei internen Endflächen (26, 28) der zwei Schenkel des U-förmigen
magnetischen Rückpfadelements (18) befindet;
eine Primärspule oder -wicklung (14), die den Magnetkern (12) umgibt;
eine Sekundärspule oder -wicklung (16), die die Primärwicklung/spule (14) umgibt;
eine erste Spaltkomponente (30), die sich zwischen einem Ende (20) des Magnetkerns
(12) und einer entsprechenden internen Endfläche (26) des magnetischen Rückpfadelements
(18) befindet;
eine zweite Spaltkomponente (34) befindet sich zwischen dem anderen Ende (22) des
Magnetkerns (12) und der entsprechenden anderen internen Endfläche (28) des magnetischen
Rückpfadelements (18).
2. Ein Wandler (10) gemäß Anspruch 1, wobei die zweite Spaltkomponente (34) symmetrisch
zu der ersten Spaltkomponente (30) in dem Magnetkern (12) um eine Achse senkrecht
zu der Kernachse angeordnet ist.
3. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, wobei der Magnetkern (12),
das magnetische Rückpfadelement (18), die Primärwicklung (14) und die Sekundärwicklung
(16) eingekapselt sind.
4. Ein Wandler (10) gemäß Anspruch 3, wobei das Einkapselungsmaterial ein Epoxidharz
(32) ist.
5. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, wobei zumindest eine der
Spaltkomponenten (30, 34) aus elektrisch isolierendem Material gebildet ist.
6. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, wobei zumindest eine der
Spaltkomponenten (30, 34) aus einem Material mit einer Wärmeleitfähigkeit von mehr
als 1 W/m/K gebildet ist.
7. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, wobei die zwei Spaltkomponenten
(30, 34) aus einem keramischen Material gebildet sind.
8. Ein Wandler (10) gemäß Anspruch 7, wobei das keramische Material Aluminium-Oxid oder
Aluminium-Nitride umfasst.
9. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, der weiter eine Wärmesenke
(36) umfasst, die einen wesentlichen Teil des Wandlers (10) umgibt.
10. Ein Wandler (10) gemäß Anspruch 9, wobei die Wärmesenke eine Klammer umfasst.
11. Ein Wandler (10) gemäß Anspruch 9 oder 10, wobei eine elektronische Platine (40) an
der Wärmesenke (36) angebracht ist.
12. Ein Wandler (10) gemäß einem der vorhergehenden Ansprüche, der ein isolierendes Gehäuse
(38) umfasst.
13. Eine Zündspule mit einem Wandler (10) gemäß einem vorhergehenden Anspruch.
1. Transformateur (10) comprenant:
un noyau magnétique (12) s'étendant le long d'un axe longitudinal (A), ayant une forme
globale cylindrique et incluant deux extrémités (20, 22) formant deux surfaces radiales
opposées ;
un élément formant trajet de retour magnétique (18) en forme de U ayant une base (24)
et deux branches et réalisant un trajet de retour magnétique pour le noyau magnétique
(12) ; ledit noyau magnétique étant placé entre deux faces d'extrémité internes (26,
28) des deux branches de l'élément formant trajet de retour magnétique (18) en forme
de U ;
un bobinage ou enroulement primaire (14) qui entoure le noyau magnétique (12) ;
un bobinage ou enroulement secondaire (16) qui entoure le bobinage/enroulement primaire
(14) ;
un premier composant formant intervalle (30) placé entre une extrémité (20) du noyau
magnétique (12) et une face d'extrémité interne correspondante (26) de l'élément formant
trajet de retour magnétique (18) ;
un second composant formant intervalle (34) placé entre l'autre extrémité (22) du
noyau magnétique (12) et l'autre face d'extrémité interne correspondante (28) de l'élément
formant trajet de retour magnétique (18).
2. Transformateur (10) selon la revendication 1, dans lequel ledit second composant formant
intervalle (34) est situé symétriquement au premier composant formant intervalle (30)
dans le noyau magnétique (12) par rapport à un axe perpendiculaire à l'axe du noyau.
3. Transformateur (10) selon l'une quelconque des revendications précédentes, dans lequel
le noyau magnétique (12), l'élément formant trajet de retour magnétique (18), l'enroulement
primaire (14) et l'enroulement secondaire (16) sont encapsulés.
4. Transformateur (10) selon la revendication 3, dans lequel le matériau d'encapsulation
est une résine époxy (32).
5. Transformateur (10) selon l'une quelconque des revendications précédentes, dans lequel
l'un au moins des composants formant intervalle (30, 34) est formé d'un matériau électriquement
isolant.
6. Transformateur (10) selon l'une quelconque des revendications précédentes, dans lequel
l'un au moins des composants formant intervalle (30, 34) est formé d'un matériau avec
une conductivité thermique plus élevée que 1 W/m/K.
7. Transformateur (10) selon l'une quelconque des revendications précédentes, dans lequel
les deux composants formant intervalle (30, 34) sont formés d'un matériau céramique.
8. Transformateur (10) selon la revendication 7, dans lequel ledit matériau céramique
inclut un oxyde d'aluminium ou des nitrures d'aluminium.
9. Transformateur (10) selon l'une quelconque des revendications précédentes, incluant
en outre un puits de chaleur (36) entourant une portion substantielle dudit transformateur
(10).
10. Transformateur (10) selon la revendication 9, dans lequel ledit puits de chaleur inclut
une monture.
11. Transformateur (10) selon les revendications 9 ou 10, dans lequel une carte électronique
(40) est attachée au puits de chaleur (36).
12. Transformateur (10) selon l'une quelconque des revendications précédentes, incluant
un boîtier isolant (38).
13. Bobine d'allumage incluant un transformateur (10) selon l'une quelconque des revendications
précédentes.
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