EP3055874B1 - Régulateur de température - Google Patents

Régulateur de température Download PDF

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Publication number
EP3055874B1
EP3055874B1 EP14781246.5A EP14781246A EP3055874B1 EP 3055874 B1 EP3055874 B1 EP 3055874B1 EP 14781246 A EP14781246 A EP 14781246A EP 3055874 B1 EP3055874 B1 EP 3055874B1
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EP
European Patent Office
Prior art keywords
temperature controller
switching
spring switch
adjustment
spring
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EP14781246.5A
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German (de)
English (en)
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EP3055874A1 (fr
Inventor
Werner Reiter
Josef Reithofer
Peter Klaus SOUKUP
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Priority to PL14781246T priority Critical patent/PL3055874T3/pl
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H37/00Thermally-actuated switches
    • H01H37/02Details
    • H01H37/12Means for adjustment of "on" or "off" operating temperature
    • H01H37/22Means for adjustment of "on" or "off" operating temperature by adjustment of a member transmitting motion from the thermal element to contacts or latch
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0202Switches
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H37/00Thermally-actuated switches
    • H01H37/02Details
    • H01H37/32Thermally-sensitive members
    • H01H37/46Thermally-sensitive members actuated due to expansion or contraction of a solid
    • H01H37/48Thermally-sensitive members actuated due to expansion or contraction of a solid with extensible rigid rods or tubes
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0227Applications
    • H05B1/0252Domestic applications
    • H05B1/0258For cooking
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/20Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater
    • H05B3/22Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater non-flexible
    • H05B3/24Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater non-flexible heating conductor being self-supporting

Definitions

  • the invention relates to a temperature controller
  • Temperature controllers for electric radiators of hobs are known in various designs and come u.a. in electrical cooktops and especially in glass ceramic cooktops for use, namely for controlling or regulating the electric heating element of a hob.
  • the temperature controller usually have at least two electrical switching systems with different switching temperatures, i. Switching points on.
  • a switching system serves as overload or overtemperature protection for the electrical heating element and has a switching point between about 500 ° C to 600 ° C.
  • the second switching system serves to control a residual heat warning indication and has a switching point at about 50 ° C to 80 ° C, i. this additional switching system causes from its switching point to activate the residual heat warning indicator.
  • Each switching system includes i.a. a switch spring base and at least one switch spring with spring contact attached to one end of the switch spring base and cooperating with a stationary contact.
  • the known temperature regulators require a relatively complex method of adjustment, since rotating movements and adjusting tools or an additional locking by welding a Arret istsarms are required.
  • the object of the invention is to show a temperature controller, which allows a simplified adjustment with high precision with a simplified structural design. This object is achieved by the temperature controller according to independent claim 1. Further advantageous aspects, details and embodiments of the invention will become apparent from the dependent claims, the description and the drawings.
  • the present invention provides a temperature controller, in particular for electric heaters of hobs available.
  • the temperature controller comprises a temperature controller housing, a temperature sensor with expansion element, which generates a temperature-dependent movement stroke in a direction of action AT, at least one switching system having a switching spring base on a switching spring to which the expansion element or an element moved with this actuator for switching the Switching system acts, wherein the switching spring is fixed with a spring contact remote end to the Wegfederbasis, wherein the switch spring base fixed to one of the attachment of their switching spring end and not displaceable on the temperature controller housing is held and with an adjusting element cooperates, which is held with a portion or end to a region of the temperature control housing and rests with another portion or end against the Wegfederbasis and with which for adjusting the switching point of the switching system, the switching spring base together with the switching spring relative to the expansion element and / or Actuator is displaced by changing the distance between the region of the temperature controller housing and the switch spring base.
  • the adjusting element is an elongated
  • a temperature controller according to the invention is u.a. in that after adjustment, no further step for fixing the switching spring base is required that the adjustment can be done by means of a Justierstkovs solely by a translational movement, with high accuracy that a relatively large adjustment range in the adjustment or by reshaping the achieve curved area that the necessary temperature offset of the switching point of the switching system via a corresponding offset path or additional stroke of Justierstkovs can be considered, and that the position and orientation of the adjusting element can be selected within the temperature controller so that the Justierstkov easily on an open page of the temperature controller housing can act on the adjusting element.
  • the achievable with the adjusting element high accuracy is due in particular to the fact that in the deformation of the adjusting element by the Justierstempel a kind of "translation" is created.
  • the travel of the translational movement of the Justierstempels, by which a permanent deformation of the adjusting element is achieved by changing the distance between the sections or - ends of the adjusting element is significantly larger than the Justierweg the spring bearing. Therefore, the accuracy of the adjustment according to the translation is higher.
  • the adjustment by permanent deformation of the adjusting element can thus be carried out in a simple manner by linear or translational movements, using devices or positioning systems with which the translational movement is monitored during adjustment with high accuracy and / or controlled. An additional fixing of each setting made is not required.
  • the switch spring base is provided with a predetermined bending point in the form of a taper.
  • a taper of the switching spring base is understood to mean a reduced extent of the switching spring base in the direction of action (AT), which preferably has substantially the shape of a notch.
  • This predetermined bending point is provided in a portion of the switch spring base, which is adjacent to the end of the switch spring base, on which the switch spring base is held firmly and not displaceable on the temperature controller housing.
  • the switch spring base bends at this predetermined bending point. Since the predetermined bending point is outside the spring tension range, the spring force of the switching spring is not or only slightly changed by the adjustment.
  • the adjustment element can be designed to be permanently deformable while reducing or increasing the distance between its sections or ends.
  • embodiments are preferred in which the adjusting element is formed under a magnification of the distance between its sections or ends permanently deformable.
  • the adjusting element is formed between its sections or ends with a curved portion which is deformable for adjustment while changing the distance between the sections or ends.
  • This curved area is the adjusting element is then under magnification of the Distance formed between the sections or ends permanent deformable.
  • the curved portion of the adjusting element has a U- or V-shape, wherein the angle enclosed by the legs of the V can be substantially arbitrary, that is, only the conditions smaller than 180 ° and greater than 0 ° must meet.
  • the legs of the V include an angle between 45 ° and 135 °, more preferably an angle between 60 ° and 120 °.
  • the U- or V-shape of the domed portion results in a reproducible relationship between the deflection or the size of the stroke of the Justierst Zis and the resulting change or increase in the distance between the ends and thus the deflection of the spring switching base.
  • the temperature controller has at least two switching systems controlled by the temperature sensor, each of which has a switching spring on a switching spring base.
  • the adjusting element acts on the switching spring base of a second of the two switching systems.
  • the switching system which has the lower switching point and is used for example to control the residual heat warning indicator, adjusted by shifting its switching spring base with the adjusting element.
  • the at least two switching systems are preferably arranged consecutively in the temperature regulator housing in the effective direction of the expansion element.
  • the expansion element acts particularly effective on the switching springs of the switching systems.
  • the adjusting element abuts against one of the switching spring side facing away from the switching spring base with one end.
  • the adjusting element consists of a metallic material.
  • Metallic materials can be easily formed in the desired manner for the elongated adjustment element in the manufacture.
  • the adjusting element is permanently deformed in the desired manner when using a metallic material.
  • the temperature controller is thus clamped with its temperature controller housing in an adjusting device.
  • By moving the Justierstempels in the direction of the adjusting element comes to a contact with the curved portion of the adjusting element by increasing the distance between the ends of the adjusting element.
  • By advancing the Justierstempels the adjusting element is then deformed so that the switching system opens, so the spring contact lifts from the contact. This can be detected by an electrical contact test or with an electrical measuring circuit connected to the connections of the corresponding switching system.
  • the switching system opens ie if the electrical contact test indicates a negative signal
  • the current position of the calibration stamp is saved.
  • the Justierstempel is then back, ie away from the adjustment, moves, and it is again carried out an electrical contact test and thus checked whether the switching system remains open.
  • step g) The steps are preferred after step g)
  • step f) of the method the adjusting punch is again moved away from the adjusting element. Since always an elastic component also occurs during the reshaping of the curvature of the curved area of the adjusting element, this movement back of the adjusting temple generally leads again to a closing of the switching system.
  • the electrical contact test carried out in step g) then indicates a positive signal. If this is the case, then in a further adjustment step, the adjusting punch is moved in the direction of the adjusting element. In this repeated advancing the Justierstempels reached and stored in the previous adjustment step position of the Justierstkovs is exceeded by a small stroke or amount (offset).
  • steps h) to l) are preferably repeated several times until the electrical contact test carried out in step l) indicates a negative signal. If necessary, therefore, the forward and backward movement of the Justierstempels including the electrical contact tests can be repeated several times until the switching system remains open and thus a sufficient, non-elastic or permanent deformation of the adjusting element is achieved.
  • offset a small stroke or amount
  • an adjusting plate is arranged between the actuating element and the switching spring before step c) of the method.
  • This adjusting plate assumes the function of a spacer, wherein the thickness of the plate corresponds to the temperature difference (temperature offset) between the ambient temperature during adjustment and the temperature of the desired switching point.
  • the Justierplättchen arranged between the actuating element and the switching spring is removed as soon as the electrical contact test using the terminals of the switching system indicates a negative signal.
  • the adjustment is thus carried out in at least one or preferably in at least two steps such that the switching system remains open after adjusting and returning the Justierstempels.
  • the adjustment plate is then removed.
  • the ambient temperature during the adjustment can also be taken into account and compensated accordingly.
  • the Indian FIG. 1 generally designated 1 temperature controller is for example intended for use in an electric hob, for example in an electric glass ceramic hob and has for this purpose two temperature-controlled or actuated by a rod-shaped temperature sensor 2 electrical switching systems 3 and 4.
  • a first switching system 3 which serves, for example, as a protection for overheating of the hob or the respective electric heating element, a switching point, for example in the range between 500 ° C and 600 ° C.
  • the switching system 3 interrupts the electrical current flow to the heating element.
  • the second switching system 4 is used for example for controlling or switching a residual heat warning display of the hob and has a switching point, for example, between 50 ° C and 80 ° C. Only at a temperature below deisen point temperature opens the second switching system 4th
  • the temperature controller 1 comprises a temperature controller housing 5, which is made of an electrically insulating material, for example of ceramic, at least in those subregions in which electrical insulation is required.
  • the rod-shaped temperature sensor 2 is on the outside of the Temperature controller 5 housing out.
  • the temperature sensor 2 is formed in a known manner by a rod-shaped expansion element 6 and a pipe section 7, wherein the pipe section 7, the rod-shaped expansion element 6 surrounds such that a relative movement of the expansion element 6 within the pipe section 7 is possible. At one end, the pipe section 7 is fixed to the temperature controller housing 5.
  • the temperature controller housing 5 remote end of the temperature sensor 2, the expansion element 6 and the pipe section 7 are interconnected.
  • the rod-shaped expansion element 6 extends into the interior of the temperature control housing 5 and interacts there with the switching systems 3 and 4, via an attached to the free lower end of the expansion element 6 actuator 8.
  • the materials for the expansion element 6 and for the pipe section 7 are selected so that the thermal expansion coefficient of the rod-shaped expansion element 6 is significantly greater than the thermal expansion coefficient of the pipe section 7
  • the switching system 3 consists essentially of a trained as an elongated tongue switching spring base 9, which is made of a metallic material and oriented with its longitudinal extent transverse or perpendicular to an axis AT of the rod-shaped temperature sensor 2 oriented at their ends at 10 in the temperature controller housing 5.
  • One end of the switch spring base 9 is connected to an electrical terminal 11.
  • the switching system 3 further comprises a switching spring 12, which extends on the side facing the temperature sensor 2 side of the switching spring base 9 arranged almost over the entire length of the switching spring base 9 and is fixed at one end in the vicinity of one end of the switching spring base 9 thereto.
  • the switching spring 12 has at its other end to a switching or spring contact 13, which cooperates with a stationary, provided on the temperature controller housing 5 and connected to an electrical connection 15 contact 14.
  • the two led out of the temperature control housing 5 electrical connections 11 and 15 form the terminals of the switching system 3 and are eg part of a circuit for supplying the heating element of the hob.
  • the arrangement is further made such that the switching spring 12 is in the normal state, ie in its non-actuated by the temperature sensor state in its closing system 3 position, in which the spring contact 13 abuts against the stationary contact 14, and the switching spring 12 only upon reaching the temperature corresponding to the switching point, the switching system 3 opens by moving away or displacing the spring contact 13 from the contact 14.
  • the actuating element 8 acts on the switching spring 12 in the sense of approaching this spring to the spring base 9 a.
  • the switching system 4 comprises a spring base 16, which in turn is tongue-like or elongated made of a metallic material with spring properties and oriented with its longitudinal extent transverse or perpendicular to the axis AT.
  • the spring base 16 is fixed only at one end 16. 1 at 17 on the temperature controller housing 5 and there connected to an electrical, led out of the temperature control housing 5 port 18.
  • Das Gerissause 16 ist mit dem Gezzause 16sky.
  • the fastening 17 remote end 16.2 the one end of a second switching spring 19 is attached at 20 to the spring base 16.
  • the switching spring 19 is located on the side facing away from the temperature sensor 2 of the switching spring base 16 and has at its free end to a spring contact 21 which cooperates with a provided on the temperature controller housing 5 and connected to an electrical terminal 23 fixed contact 22.
  • the two terminals 18 and 23 form the terminals of the switching system 4.
  • the latter is designed so that after adjusting the temperature controller 1 and the switching system 4, this is opened in the initial state, i. the shift spring 19 is deflected by the actuator 8 so far or moved to its shift spring base 16, that the spring contact 21 is spaced from the stationary contact 22. Only from a temperature at the temperature sensor 2, which corresponds at least to the switching point of the switching system 4, the switching system 4 is closed, i. the spring contact 21 abuts against the contact 22.
  • the rod-shaped expansion element 6 extends through the switch spring base 16 and the switch spring 19 therethrough.
  • the patch on the lower end of the expansion element 6 actuator 8 is located between The latter each consist of an electrically conductive and suitable for switching springs metallic material and are also each designed for a snap movement or for a quick opening and closing of the switching systems 3 and 4.
  • 8.1 is a spring referred to in the FIG. 1 lower end of the actuating element 8 acts and the actuating element 8 by an axial and in the representation of FIG. 1 ensures upward spring force on the rod-shaped expansion element 6.
  • the peculiarity of the temperature controller 1 is in the biasing or adjusting element 24 for the switching spring base 16, which is made tab or strip-shaped made of a permanently deformable material, such as metal and with a portion or end 24.1 at a portion 5.1 of the temperature controller housing 5, for example by clamping is fixed and with its other portion or end 24.2 on the attachment 17 remote and thus the attachment 20 adjacent end of the switch spring base 16 acts.
  • the adjusting element 24 is executed in the illustrated embodiment so that it has between its two ends 24.1 and 24.2 a curved portion 24.3, which is executed in the illustrated embodiment angle or V-shaped, with two an angle of at least 90th °, preferably an angle greater than 90 ° with each other enclosing legs 24.3.1 and 24.3.2 and with a leg connecting this section 24.3.3.
  • this adjustment is made by partially reshaping the curvature of the area 24.3 with an adjusting die 25 acting on the convex side enlarging the distance between the ends 24.1 and 24.2, wherein the free end 16.2 of the switch spring base 16 is moved against the inherent elasticity of this base in the direction of the arrow A, ie in the direction of the actuating element 8 out.
  • the adjusting element 24 lies with its end 24.2 only against the temperature sensor 2 facing upper side of the switching spring base 16.
  • the adjustment of the switching point of the first switching system 3 is usually carried out by moving the rod-shaped expansion element 6 by a required, the desired switching point adjustment or Justierhub and then fixing the rod-shaped expansion element 6 on the pipe section 7. After adjusting the switching point of the first switching system 3 also the not yet adjusted switching system 4 in a closed state, although the temperature at the temperature sensor 2 is below the switching point of the switching system 4.
  • the temperature controller 1 is clamped with its temperature controller housing 5 in an adjustment and with the help of Justierstempels 25, the curved portion 24.3 of the adjusting element 24 by increasing the distance between the ends 24.1 and 24.2 as long as by advancing the Justierstempels 25 deformed until the switching system 4 opens, that is, the spring contact 21 lifts off the contact 22, which can be easily detected and / or controlled with an electrical contact test or with an electrical measuring circuit connected to the connections 18 and 23.
  • the switching system 4 opens, the current position of the Justierstkovs 25 is stored. The Justierstkovs 25 is moved back and it is checked whether the switching system 4 remains open.
  • the return movement of the Justierstempels 25 usually leads to a closing of the switching system 4.
  • the preceding Adjustment step reached and stored position of Justierstkovs 25 by a small stroke or amount (offset) exceeded. This is followed by saving the current position of the Justierstkovs 25 and the control of whether the switching system 4 remains open after moving back the Justierstkovs 25.
  • this method can be repeated several times until the switching system 4 remains open and thus a sufficient, non-elastic or permanent deformation of the adjusting element 24 is reached.
  • the switching system 4 would open at a temperature corresponding to the temperature that has the temperature sensor 2 during the adjustment. If this is, for example, the normal ambient temperature and if opening of the switching system 4 is already desired at a switching point above the normal ambient temperature, for example at the switching point between 50 ° C. and 80 ° C., then the adjustment takes place in such a way that in a first adjusting step the adjusting element 24 is only deformed to the extent that the switching system 4 initially opens, after the return of the Justierstkovs 25 but again closes.
  • a spacer for example in the form of a Justierplättchens 26 between the actuator 8 and the switch spring 19, the thickness of this plate then the temperature difference (temperature offset) between the ambient temperature when adjusting and the temperature of the desired Switching point corresponds.
  • the adjustment takes place in at least one or preferably in at least two steps such that the switching system 4 remains open after adjusting and returning the Justierstempels 25.
  • the spacer is then removed.
  • the ambient temperature during the adjustment can also be taken into account and compensated accordingly.
  • FIG. 3 shows in a partial view as a further embodiment, a temperature controller 1a, which differs from the temperature controller 1 essentially only in that the voltage applied to its lower end 24.2 against the upper side of the switch spring base 16 adjustment 24 with its longitudinal extent not oblique but perpendicular or substantially perpendicular is oriented to shift spring base 16.

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  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Thermally Actuated Switches (AREA)
  • Control Of Temperature (AREA)
  • Control Of Resistance Heating (AREA)

Claims (9)

  1. Régulateur de température, destiné notamment à des corps de chauffe électriques de tables de cuisson, doté d'un boîtier de régulateur de température (5), pourvu d'une sonde thermique (2), avec un élément de dilatation (6) qui génère une course de déplacement dépendant de la température dans une direction d'action (AT), doté d'au moins un système de commutation (4), qui sur une base de ressort de commutation (16) comporte un ressort de commutation (19) sur lequel l'élément de dilatation (6) ou un élément d'actionnement (8) déplacé par cet élément agit pour commuter le système de commutation (4), dans lequel le ressort de commutation (19) est fixé sur la base de ressort de commutation (16) par une extrémité (16.2) éloignée de son contact par ressort (21), dans lequel la base de ressort de commutation (16) est maintenue solidement et de manière non déplaçable sur le boîtier de régulateur de température (5) sur une extrémité (16.1) éloignée de la fixation de son ressort de commutation (19) et coopère avec un élément d'ajustage (24), lequel est maintenu par un segment ou une extrémité (24.1) sur une région (5.1) du boîtier de régulateur de température (5) et qui par un autre segment ou une autre extrémité (24.2) s'appuie contre la base de ressort de commutation (16) et à l'aide duquel, pour le réglage du point de commutation du système de commutation (4), la base de ressort de commutation (16) est déplaçable, en commun avec le ressort de commutation (19) par rapport à l'élément de dilatation (6) et/ou par rapport à l'élément d'actionnement (8), sous modification de l'écart entre la région (5.1) du boîtier de régulateur de température (5) et la base de ressort de commutation (16), caractérisé en ce que l'élément d'ajustage (24) est un élément conçu de forme oblongue, disposant d'une direction longitudinale (A), pour l'ajustage dans une direction d'ajustage (J) à la transversale de sa direction longitudinale (A), l'élément d'ajustage (24) étant déformable de manière permanente, en modifiant l'écart entre les segments ou extrémités (24.1, 24.2).
  2. Régulateur de température selon la revendication 1, caractérisé en ce qu'au moins deux systèmes de commutation (3, 4) commandés par la sonde thermique (2) sont prévus, qui comportent chacun un ressort de commutation (12, 19) sur une base de ressort de commutation (9, 16) et en ce que l'élément d'ajustage (24) agit sur la base de ressort de commutation (16) d'un deuxième des deux systèmes de commutation (3, 4).
  3. Régulateur de température selon l'une quelconque des revendications précédentes, caractérisé en ce que par une extrémité (24.2), l'élément d'ajustage (24) s'appuie contre un côté de la base de ressort de commutation (16) qui est opposé au ressort de commutation (19).
  4. Régulateur de température selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément d'ajustage (24) consiste dans une matière métallique.
  5. Régulateur de température selon l'une quelconque des revendications précédentes, caractérisé en ce qu'entre ses segments ou extrémités (24.1, 24.2), l'élément d'ajustage (24) est conçu avec une région (24.3) bombée, qui est déformable pour l'ajustage, en modifiant l'écart entre les segments ou extrémités (24.1, 24.2).
  6. Régulateur de température selon la revendication 5, caractérisé en ce que la région (24.3) bombée est déformable, en augmentant l'écart entre les segments ou extrémités (24.1, 24.2).
  7. Régulateur de température selon la revendication 5 ou 6, caractérisé en ce que la région (24.3) bombée présente une forme de U ou de V.
  8. Régulateur de température selon l'une quelconque des revendications 2 à 7, caractérisé en ce que dans la direction d'action de l'élément de dilatation (6), les systèmes de commutation (3, 4) sont placés successivement dans le boîtier de régulateur de température (5).
  9. Régulateur de température selon l'une quelconque des revendications 1 à 8, caractérisé en ce que la base de ressort de commutation (16) est équipée d'une zone de flexion de consigne, sous la forme d'un effilement, l'effilement étant prévu dans une région de la base de ressort de commutation (16) qui est voisine à l'extrémité (16.1) de la base de ressort de commutation, sur laquelle la base de ressort de commutation (16) est maintenue solidement et de manière non déplaçable sur le boîtier de régulateur de température (5).
EP14781246.5A 2013-10-10 2014-10-08 Régulateur de température Active EP3055874B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL14781246T PL3055874T3 (pl) 2013-10-10 2014-10-08 Regulator temperatury

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE201310111202 DE102013111202A1 (de) 2013-10-10 2013-10-10 Temperaturregler
PCT/EP2014/071553 WO2015052241A1 (fr) 2013-10-10 2014-10-08 Régulateur de température

Publications (2)

Publication Number Publication Date
EP3055874A1 EP3055874A1 (fr) 2016-08-17
EP3055874B1 true EP3055874B1 (fr) 2018-12-12

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EP14781246.5A Active EP3055874B1 (fr) 2013-10-10 2014-10-08 Régulateur de température

Country Status (7)

Country Link
US (1) US10609764B2 (fr)
EP (1) EP3055874B1 (fr)
CN (1) CN105612595B (fr)
DE (1) DE102013111202A1 (fr)
PL (1) PL3055874T3 (fr)
TR (1) TR201821235T4 (fr)
WO (1) WO2015052241A1 (fr)

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DE3516621A1 (de) 1985-05-09 1986-11-13 AKO-Werke GmbH & Co KG, 7988 Wangen Schalteinrichtung
DE3913289A1 (de) * 1989-04-22 1990-10-25 Ego Elektro Blanc & Fischer Temperatur-schaltgeraet
CN1058292A (zh) * 1990-07-12 1992-01-29 临沂市社会福利家用电器厂 过负荷自动断电装置
DE502004000953D1 (de) * 2004-02-24 2006-08-24 Electrovac Temperaturfühler
DE102009038960A1 (de) * 2009-08-19 2011-02-24 E.G.O. Elektro-Gerätebau GmbH Temperaturfühler und Verfahren zur Justierung eines solchen Temperaturfühlers

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Title
None *

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Publication number Publication date
DE102013111202A1 (de) 2015-04-16
TR201821235T4 (tr) 2019-01-21
EP3055874A1 (fr) 2016-08-17
WO2015052241A1 (fr) 2015-04-16
PL3055874T3 (pl) 2019-05-31
CN105612595B (zh) 2017-12-12
US20160255678A1 (en) 2016-09-01
US10609764B2 (en) 2020-03-31
CN105612595A (zh) 2016-05-25

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