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EP 0 713 065 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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10.01.2001 Bulletin 2001/02 |
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Date of filing: 17.11.1994 |
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International Patent Classification (IPC)7: F25D 21/02 |
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Compact-dimension device for sensing frost on a refrigerator evaporator
In Abmessungen kompakte Vorrichtung zum Fühlen der Eisbildung an einem Kühlschrankverdampfer
Dispositif compact en dimension - pour détecter le givre sur un évaporateur d'un réfrigérateur
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Designated Contracting States: |
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DE ES FR GB |
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Date of publication of application: |
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22.05.1996 Bulletin 1996/21 |
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Proprietor: WHIRLPOOL EUROPE B.V. |
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5507 SK Veldhoven (NL) |
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Inventor: |
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- Turetta, Daniele,
Whirlpool Italia s.r.l.
I-21024 Biandronno (VA) (IT)
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Representative: Guerci, Alessandro |
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Whirlpool Europe S.r.l.
Patent Department
Viale G. Borghi 27 21025 Comerio (VA) 21025 Comerio (VA) (IT) |
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References cited: :
EP-A- 0 203 669 EP-A- 0 563 751 US-A- 4 347 709
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EP-A- 0 310 101 WO-A-94/20819
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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 device in accordance with the preamble of the main claim.
[0002] Frost sensors in particular of capacitive type are known. Such sensors are usually
positioned within a refrigerator compartment in correspondence with the evaporator
(either directly on it or on a wall of the refrigerator compartment behind which the
evaporator is situated, depending on the type of construction of this latter). A frost
sensor of the above type is disclosed in US-A-4347709. During normal operation of
the refrigerator the frost deposits on the sensor, of which, as the frost thickness
on it varies, a suitable intrinsic electrical characteristic, in this case its capacitance,
changes. This change in the said characteristic or capacitance is proportional to
the variation in the frost layer. Said variation is sensed by a control unit which
in known manner calculates the frost layer present on the evaporator and, when necessary,
proceeds to halt this latter and defrost it. In order to enable the control unit to
accept the signals emitted by the frost sensor, a known interface unit is provided
between said sensor and said control unit.
[0003] In known arrangements, the frost sensor is positioned within the refrigerator compartment
as stated, whereas the interface unit is positioned outside this compartment to prevent
it suffering any problems connected with the low temperature, moisture and condensate
present within the compartment. This constructional choice implies the use of electrical
connection cables (generally of coaxial type) for connecting the sensor to said unit.
[0004] However the presence of said cables gives rise to problems of both a constructional
character and a purely electrical character. In this respect, in the cables the signals
emitted by the frost sensor can be distorted or modified by spurious signals or by
interference arising within the cables. In such a case the handling of these signals
becomes problematic and reliable refrigerator operation is not assured.
[0005] An object of the present invention is to provide a device which overcomes the drawbacks
of analogous known devices. A particular object of the invention is to provide a device
which is easy to construct and mount within a refrigerator, and which allows reliable
control of the evaporator defrosting.
[0006] These and further objects which will be apparent to the expert of the art are attained
by a device in accordance with the accompanying claims.
[0007] The present invention will be more apparent from the accompanying drawing, which
is provided by way of non-limiting example and in which:
Figure 1 is a longitudinal section through a part of the refrigerator in which the
device of the invention is mounted;
Figure 2 is a front view of the device according to the invention; and
Figure 3 is a front view of part of the device according to the invention.
[0008] With reference to said figures a refrigerator comprises a known evaporator 1 mounted,
in the example shown in the figures, in correspondence with a wall 2 of a refrigerator
compartment 3. The device 6 according to the invention is positioned on one side 5
of said wall 2 and comprises a frost sensor 7 of capacitive type directly associated
with an interface unit 8 connected by an electric cable 9 to a control unit (of known
type, not shown) at least able to defrost the evaporator when an excessive frost presence
is detected on it by the sensor 7. The unit 8 converts the electrical signals from
the sensor 7 into signals acceptable by the control unit (for example into logic signals).
This unit is specifically arranged to polarize the sensor 7 so as to determine its
capacitance change and make this acceptable by the unit controlling the defrosting
of the evaporator 1.
[0009] The sensor 7 and unit 8 are associated with a support 10 of flexible material. This
support is preferably of plastics material and can advantageously consist for example
of a material known commercially as KAPTON or other materials such as that known as
MYLAR. This sensor and the unit 8 are associated with the flexible support by known
methods for forming printed circuits.
[0010] Specifically, the capacitive sensor 7 comprises a plurality of mutually facing flexible
plates deposited on the support 10, which is positioned on a flexible insulating plate
14 connected to earth. The plates 12 and 13 are connected directly to the interface
unit 8 supported by a layer of flexible material which can also be the continuation
of that carrying the sensor 7 or can be a layer physically different from the layer
10 and formed of a material the same as or different from this latter.
[0011] As stated, the device obtained in this manner is associated with the wall 2 of the
refrigerator compartment 3, this being achieved by known means, such as a known biadhesive
layer 20 of high thermal conductivity.
[0012] Alternatively the device can be directly embedded into the wall 2 or by placed in
another position in the refrigerator such as to cooperate directly or indirectly with
the evaporator, depending on the type of this latter.
[0013] If it is positioned on the wall 2 it has to be suitably protected because the device
is subjected to the moisture and ice present in said compartment. This protection
must also protect against the abrasive effect exerted on said device during the cleaning
of said wall by the user.
[0014] For this purpose, ie to provide the device 6 with the necessary protection, the sensor
is coated with a layer of known adhesive film 21, for example of polyurethane or the
like. Likewise the unit 8 is embedded in a layer of epoxy resin 23 (or similar material)
and, advantageously, protected by a plastics box structure 24 fixed to the wall 2
of the compartment 3 in any known manner, for example mechanically by screws (not
shown).
[0015] The invention provides a very compact device, formed from the sensor 7 and the unit
8, which is simple to mount in a refrigerator and is suitably protected against user
cleaning and against environmental agents such as the moisture, condensate, water
and temperature change produced by the defrosting and cooling.
1. A device (6) for sensing frost on a refrigerator evaporator (1), comprising at least
one frost sensor (7), preferably of capacitive type, and an interface unit (8) arranged
to polarize the sensor (7) so as to determine its capacitance change and convert the
determined capacitance into a signal which is acceptable by a unit for controlling
the defrosting of the evaporator (1), characterised in that said frost sensor (7)
and said interface unit (8) are arranged on a flexible support (10) and are directly
connected together.
2. A device as claimed in claim 1, characterised in that the flexible support is of plastics
material.
3. A device as claimed in claim 2, characterised by being fixed to a wall (2) of an internal
compartment of the refrigerator by biadhesive tape (20) of high thermal conductivity.
4. A device as claimed in claim 2, characterised by being embedded in the wall (2) of
a refrigerator internal compartment (3) in proximity to which the evaporator (1) is
present.
5. A device as claimed in claim 1, characterised in that the flexible support (10) is
in one piece.
6. A device as claimed in claim 1, characterised in that the flexible support (10) is
in two parts, a first one supporting the frost sensor (7) and a second one being physically
different from the first one and supporting the interface unit (8).
7. A device as claimed in claim 1, characterised by comprising protection members (21,
23, 24) positioned in correspondence with the frost sensor (7) and interface unit
(8) and arranged to protect these latter against environmental agents such as moisture,
water, ice and temperature changes, and against the abrasive action exerted by the
user during the cleaning of the refrigerator.
8. A device as claimed in claim 7, characterised in that the interface unit (8) is embedded
in epoxy resin (23) and is advantageously covered by a rigid body (24) fixed in known
manner to the wall (2) of the refrigerator compartment (3), the frost sensor (7) being
coated with an adhesive film, for example of polyurethane, polyethylene or a similar
plastics material.
1. Vorrichtung zur Feststellung von Eis auf einem Kühlgerät-Verdampfer (1) mit mindestens
einem Eissensor (7), vorzugsweise der kapazitiven Art, und mit einem Interface (8),
das so ausgebildet ist, dass es den Eissensor (7) so polarisiert, dass es dessen Kapazitätsänderung
feststellt, und dass es dessen festgestellte Kapazität in ein Signal umwandelt, das
von einer Einheit zur Steuerung der Enteisung des Verdampfers (1) aufgenommen werden
kann,
dadurch gekennzeichnet,
dass der Eissensor (7) und das Interface (8) auf einem flexiblen Träger (10) angeordnet
und unmittelbar miteinander verbunden sind.
2. Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
dass der flexible Träger (10) aus Kunststoff besteht.
3. Vorrichtung nach Anspruch 2,
dadurch gekennzeichnet,
dass sie an einer Wand (2) eines Innenfachs des Kühlgeräts mittels eines Doppelklebebands
(20) hoher thermischer Leitfähigkeit befestigt ist.
4. Vorrichtung nach Anspruch 2,
dadurch gekennzeichnet,
dass sie in der Wand (2) eines Innenfachs des Kühlgeräts in der Nähe des Verdampfers
(1) eingebettet ist.
5. Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
dass der flexible Träger (10) aus einem Stück besteht.
6. Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
dass der flexible Träger (10) aus zwei Stücken besteht, wobei ein erstes Stück den
Eissensor (7) trägt und ein zweites Stück, das physikalisch unterschiedlich zum ersten
Stück ist, das Interface (8) trägt.
7. Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
dass in Bezug zum Eissensor (7) und Interface (8) Schutzglieder (21, 23, 24) vorgesehen
sind, die derart ausgebildet sind, dass sie den Eissensor (7) und das Interface (8)
gegen Umwelteinflüsse, wie Feuchtigkeit, Wasser, Eis, Temperaturänderungen und Abriebwirkungen
schützen, die vom Benutzer während der Reinigung des Kühlgeräts ausgeübt werden.
8. Vorrichtung nach Anspruch 7,
dadurch gekennzeichnet,
dass das Interface (8) in Epoxidharz (23) eingebettet und in vorteilhafter Weise von
einem festen Körper (24) abgedeckt ist, der in bekannter Weise an der Wand (2) des
Kühlgerätfachs (3) befestigt ist, und dass der Eissensor (7) mit einem Klebefilm abgedeckt
ist, der beispielsweise aus Polyurethan, Polyethylen oder einem ähnlichen Kunststoff
besteht.
1. Dispositif (6) destiné à détecter le givre sur un évaporateur de réfrigérateur (1),
comportant au moins un capteur de givre (7), de préférence du type capacitif, et une
unité d'interface (8) prévue pour polariser le capteur (7) de façon à déterminer son
changement de capacité et convertir la capacité déterminée en un signal qui est acceptable
par une unité pour la commande de dégivrage de l'évaporateur (1), caractérisé en ce
que ledit capteur de givre (7) et ladite unité d'interface (8) sont disposés sur un
support flexible (10) et sont directement reliés ensemble.
2. Dispositif (6) selon la revendication 1, caractérisé en ce que le support flexible
est en matière plastique.
3. Dispositif selon la revendication 2, caractérisé en ce qu'il est fixé sur une paroi
(2) d'un compartiment interne du réfrigérateur par un adhésif double face (20) de
grande conductivité thermique.
4. Dispositif selon la revendication 2, caractérisé en ce qu'il est noyé dans la paroi
(2) d'un compartiment de réfrigérateur (3) à proximité duquel se trouve l'évaporateur
(1).
5. Dispositif selon la revendication 1, caractérisé en ce que le support flexible (10)
est d'une seule pièce.
6. Dispositif selon la revendication 1, caractérisé en ce que le support flexible (10)
est en deux parties, une première qui supporte le capteur de givre (7) et une deuxième
qui est physiquement différente de la première et qui supporte l'unité d'interface
(8).
7. Dispositif selon la revendication 1, caractérisé en ce qu'il comporte des éléments
de protection (21, 23, 24) positionnés en correspondance avec le capteur de givre
(7) et l'unité d'interface (8) et prévus pour protéger ces derniers contre des agents
d'environnement tels que l'humidité, l'eau, la glace et les changements de température,
et contre l'action abrasive exercée par l'utilisateur pendant le nettoyage du réfrigérateur.
8. Dispositif selon la revendication 7, caractérisé en ce que l'unité d'interface (8)
est noyée dans de la résine époxyde (23) et est recouverte avantageusement par un
corps rigide (24) fixé d'une manière connue sur la paroi (2) du compartiment de réfrigérateur
(3), le capteur de givre (7) étant revêtu avec un film adhésif, par exemple de polyuréthanne,
de polyéthylène ou d'une matière plastique similaire.

