EP4311983B1 - Elektrischer heizkörper mit seitlichem elektrischem anschluss - Google Patents

Elektrischer heizkörper mit seitlichem elektrischem anschluss

Info

Publication number
EP4311983B1
EP4311983B1 EP23183725.3A EP23183725A EP4311983B1 EP 4311983 B1 EP4311983 B1 EP 4311983B1 EP 23183725 A EP23183725 A EP 23183725A EP 4311983 B1 EP4311983 B1 EP 4311983B1
Authority
EP
European Patent Office
Prior art keywords
manifold
radiator
heating
heating member
electrical connector
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP23183725.3A
Other languages
English (en)
French (fr)
Other versions
EP4311983A1 (de
Inventor
Taner SIMSIRLER
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Groupe Atlantic Izmir Radyatoer Sistemleri Sanayi Ve Ticaret AS
Original Assignee
Groupe Atlantic Izmir Radyatoer Sistemleri Sanayi Ve Ticaret AS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Groupe Atlantic Izmir Radyatoer Sistemleri Sanayi Ve Ticaret AS filed Critical Groupe Atlantic Izmir Radyatoer Sistemleri Sanayi Ve Ticaret AS
Publication of EP4311983A1 publication Critical patent/EP4311983A1/de
Application granted granted Critical
Publication of EP4311983B1 publication Critical patent/EP4311983B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24—HEATING; RANGES; VENTILATING
    • F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00—Details
    • F24D19/0002—Means for connecting central heating radiators to circulation pipes
    • F24D19/0026—Places of the inlet on the radiator
    • F24D19/0034—Places of the inlet on the radiator on a bottom corner
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24—HEATING; RANGES; VENTILATING
    • F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00—Details
    • F24D19/0002—Means for connecting central heating radiators to circulation pipes
    • F24D19/0039—Places of the outlet on the radiator
    • F24D19/0051—Places of the outlet on the radiator on the bottom on the opposite corner
    • A—HUMAN NECESSITIES
    • A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47K—SANITARY EQUIPMENT; ACCESSORIES THEREFOR, e.g. TOILET ACCESSORIES
    • A47K10/00—Body-drying implements; Toilet paper; Holders therefor
    • A47K10/04—Towel racks; Towel rails; Towel rods; Towel rolls, e.g. rotatable
    • A47K10/06—Towel racks; Towel rails; Towel rods; Towel rolls, e.g. rotatable combined with means for drying towels
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24—HEATING; RANGES; VENTILATING
    • F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00—Components of central heating installations excluding heat sources
    • F24D2220/20—Heat consumers
    • F24D2220/2009—Radiators
    • F24D2220/2036—Electric radiators
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24—HEATING; RANGES; VENTILATING
    • F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00—Components of central heating installations excluding heat sources
    • F24D2220/20—Heat consumers
    • F24D2220/2009—Radiators
    • F24D2220/2045—Radiators having horizontally extending tubes
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24—HEATING; RANGES; VENTILATING
    • F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H3/00—Air heaters
    • F24H3/002—Air heaters using electric energy supply
    • F24H3/004—Air heaters using electric energy supply with a closed circuit for a heat transfer liquid
    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28—HEAT EXCHANGE IN GENERAL
    • F28D—HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D21/00—Heat-exchange apparatus not covered by any of the groups F28D1/00 - F28D20/00
    • F28D2021/0019—Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for
    • F28D2021/0035—Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for for domestic or space heating, e.g. heating radiators
    • F28D2021/0036—Radiators for drying, e.g. towel radiators

Definitions

  • the present invention relates to a radiator with a collector and radiant elements connected to the collector.
  • the present invention relates to such a radiator further comprising a heating element disposed inside said radiator.
  • a radiator may be of the towel-drying type.
  • the documents GB2451256A And US2008/138054 A1 disclose such radiators.
  • radiator configurations include two manifolds and elongated radiant elements, each mechanically and fluidically connected to the manifolds. There are also radiators with a single manifold mechanically and fluidically connected to the radiant elements. These elongated radiant elements typically extend transversely to the manifold(s).
  • the manifold(s) and radiant elements form a heating circuit that receives a heating fluid.
  • the radiator also includes a heating element located within a manifold to heat the heating fluid inside the heating circuit. This heating element is electrically powered. It is generally located at one end of the lower section of a manifold. The heating element thus extends along the length of the manifold.
  • the radiator also includes an electrical connection so that the heating element can be powered by connecting it to an electrical power source.
  • This electrical connection opens at the end of the manifold, extending from the heating element.
  • the first type of radiator is the simple electric radiator, i.e., without the possibility of connecting to a heating water circuit. In this case, the heating fluid remains confined inside the radiator.
  • a radiator 10 comprises two manifolds 12 and a plurality of radiant elements 14.
  • a heating element 16 is disposed at a lower end 13 of a manifold 12 with an electrical connection 18 connected to this heating element 16.
  • the heating element 16 and the electrical connection 18 extend along a main direction A of extension of the collector 12.
  • a control box 20 is located at this lower end 13. The control box 20 is replaced by a protective device for the electrical connection when the radiator does not have a control box 20 or when it is located remotely.
  • This type of electric radiator arrangement necessarily includes a control box 20 or a protective device protruding from the lower end 13 of the manifold. In this position, the risk of damage to the control box 20, the protective device, and/or the electrical connection is significant.
  • the control box 20, the protective device, and/or the electrical connection thus form an unsightly protrusion on the lower part of the radiator 10, disrupting the radiator's rectangular profile. This protrusion can also cause handling and packaging difficulties.
  • a second type of radiator is a dual-energy radiator.
  • the heating fluid can be heated by means of an electric heating element and an external hot water circuit.
  • the radiator also includes a heating element to heat the heating fluid inside the manifold(s) and radiant element(s).
  • the radiator further includes an inlet and an outlet fitting that allow the heating fluid to circulate through it. These inlet and outlet fittings connect the radiator to a hot water circuit.
  • the two heating energy sources are therefore the electrical energy supplied by the heating element and the thermal energy supplied by the hot water entering the radiator.
  • the radiator 10 comprises two collectors 12 and radiant elements 14. Similar to the example of figures 1 and 2
  • the heating element 16 and the electrical connection 18 are arranged at the lower end 13 of a manifold 12.
  • the radiator 10 also includes a first inlet or outlet connection 22 arranged at a lower end 13 of the other manifold 12 opposite the manifold 12 receiving the heating element 16.
  • a second inlet or outlet connection 24 is also connected to one of the radiant elements 14 via a circulation duct 26.
  • This second type of radiator requires the addition of a circulation duct to connect the second inlet or outlet fitting 24 to the heating circuit of the radiator 10. This addition is costly and increases the number of manufacturing operations required to produce the radiator.
  • the invention proposes a dual-energy radiator according to claim 1, the radiator comprising at least one manifold extending along a principal direction and a plurality of elongated radiant elements which are each mechanically and fluidically connected to said at least one manifold, said at least one manifold and the plurality of elongated radiant elements forming a heating circuit configured to receive a heating fluid, said radiator further comprising a heating element for the heating fluid disposed inside said at least one manifold and/or one of the radiant elements, and an electrical connection disposed through a wall of said at least one manifold, said electrical connection being electrically connected to the heating element to provide an electrical supply to said heating element, said at least one manifold comprising at least two end walls and at least one side wall extending along the principal direction between the end walls, the electrical connection opening at said at least one side wall.
  • each manifold includes a hydraulic connection at its lower end.
  • the lateral positioning of the electrical connection reduces its visibility to the user, thus improving the radiator's aesthetics.
  • the risks associated with the electrical connection are also reduced because it is less accessible to the user.
  • the electrical connection extends along a connection direction transverse to the main direction.
  • the heating element is supported by the electrical connection.
  • the electrical connection opens at at least one side wall of the manifold.
  • the electrical connection opens at an external wall of the manifold.
  • the heating element can extend along the main direction A, along a manifold, or transversely to the main direction A, along a radiant element.
  • the heating element extends along a radiant element and at least partially across a manifold.
  • the heating element thus extends in a direction perpendicular to the main direction A.
  • the electrical connection is positioned opposite the radiant element.
  • An opening is formed opposite this radiant element to allow the heating element to be inserted in a direction perpendicular to the main direction A of the manifold.
  • the heating element is not in contact with the end walls of said at least one manifold.
  • said at least one side wall of said at least one manifold comprises a front portion and a rear portion, the radiant elements being connected to said manifold at the front portion, said electrical connection opening between the front portion and the rear portion so as to open behind the radiant elements.
  • the heating element extends along the main direction.
  • the electrical connection comprises a fixing ring attached to at least one side wall and a support member for the heating element disposed between the heating element and the ring of fixing, said support member and the fixing ring forming an internal channel for the passage of at least one electrical cable from the heating member to the outside of said at least one manifold.
  • the radiator also includes a first and a second hydraulic connection allowing the radiator to be connected to a heating water circuit.
  • one of the first and second hydraulic fittings is disposed at an end wall of said at least manifold to permit circulation of the heating fluid through one of the first and second hydraulic fittings along the main direction.
  • one of the first and second hydraulic fittings is fixed to said at least one manifold at the level of a lower end wall.
  • the radiator comprising a first and a second manifold, the first manifold extending along the main direction, the plurality of elongated radiant elements being each connected mechanically and fluidically to said first and second manifolds, the first and second manifolds and the plurality of elongated radiant elements forming the heating circuit, the heating element being disposed inside said first manifold, the electrical connection opening at the level of a side wall of the first manifold, each of the first and second manifolds carrying one of the first and second hydraulic connections.
  • the heating element is either a heating cartridge or a tubular heating element.
  • the heating element is therefore generally a cylinder inserted into a manifold or along a radiant element. In this case, the heating element is not a heating cable running through the manifold and/or the radiant elements.
  • an embodiment means that a particular functionality, structure, or feature described in relation to an embodiment is included in at least one embodiment of the present invention.
  • the appearance of the expression “ “In an embodiment” at various locations throughout the specification does not necessarily refer to the same embodiment.
  • features, structures, or particular characteristics may be combined in any suitable way in one or more embodiments.
  • the term “including” does not exclude other elements or steps.
  • a radiator 30 comprises a manifold 32 extending along a principal direction A.
  • the radiator 30 also comprises a plurality of elongated radiant elements 34, each mechanically and fluidically connected to at least one manifold 32.
  • the radiant elements 34 may extend transversely to the manifold 32 or perpendicularly to the manifold 32.
  • the manifold 32 and the plurality of radiant elements 34 form a heating circuit configured to receive a heating fluid.
  • This heating fluid can be water or oil. Additives can be added to the heating fluid.
  • the manifold 32 comprises a lower end wall 40, an upper end wall (not shown), and a side wall 42 extending between the lower end walls 40 and the upper end walls.
  • the lower end walls 40 and the upper end walls correspond to a plug or fitting disposed across the end of the manifold 32.
  • the manifold 32 is, in fact, a tube having an opening at each end. Therefore, the term "lower or upper end wall” refers to the wall or part obstructing one of these openings.
  • the side wall 42 can be cylindrical as shown in figure 4 or flat.
  • the manifold 32 can have a circular, square, or rectangular cross-section.
  • the manifold can be of any shape extending along the principal direction A, allowing for the mechanical and fluidic connection of the radiating elements 34.
  • the side wall 42 defines a front portion 44, a rear portion 46, and at least two side portions 48 arranged between the front portion 44 and the rear portion 46.
  • the front portion 44, rear portion 46, and side portion 48 are cylindrical portions. adjacent forming together a cylinder.
  • the collector 32 has a square or rectangular cross-section, the front portion 44, rear portion 46 and side portion 48 are faces of this square or rectangle.
  • the radiating elements 34 can be mechanically and fluidly connected to the collector 32 at the face portion 44 or at a side portion 48 of the lateral wall 42. When the radiating elements 34 are connected to the face portion 44, they can extend in front of said collector 32, as shown in figure 4 .
  • the radiator 30 also includes a heating element 36 for the heating fluid.
  • the heating element 36 is located inside the manifold 32.
  • the heating element 36 is an electric element.
  • the heating element 36 extends along the main direction A.
  • the radiator 30 further includes an electrical connection 38 electrically connected to the heating element 36.
  • the electrical connection 38 is intended to be connected to an electrical power source to supply the heating element 36 with electrical energy.
  • the electrical connection 38 is arranged to open at the side wall 42 of the manifold.
  • the lower end 33 is free of the electrical connection 38.
  • this frees the lower end wall 40.
  • this allows a hydraulic connection to be placed at this lower end wall 40, as shown in the figure. figure 6 .
  • the electrical fitting 38 is fixed to the manifold 32 at an opening 50 formed in the manifold 32.
  • the electrical connection 38 extends transversely to the manifold 32, i.e., to the main direction A.
  • the electrical connection 38 extends along a connection direction B.
  • This connection direction B corresponds to the direction perpendicular to the opening 50 made in the manifold 32 and through which the electrical connection 38 extends.
  • the connection direction B is transverse to the main direction A, preferably perpendicular to this main direction A.
  • the electrical connection 38 preferably extends along a portion of the side 48 of the side wall 42.
  • the electrical connection can be positioned behind the radiant elements 34, particularly between a support wall on which the radiator 30 is mounted and the radiant elements 34. This allows the electrical connection 38 to be concealed for aesthetic purposes.
  • the electrical connection 38 preferably exits between the two manifolds.
  • the electrical connection 38 preferably exits on that same side of the manifold 32.
  • the heating element 36 is supported by the electrical connection 38.
  • the weight of the heating element 36, as well as any potential forces applied to it, are borne by the electrical connection 38. These forces are transmitted by the electrical connection 38 to the manifold 32 at the opening 50 where the electrical connection 38 is attached to the manifold 32.
  • the heating element 36 is thus not in contact with the lower end walls 40 and upper end walls of at least one manifold 32.
  • the heating element is mounted on the side wall 42 by means of the electrical connection 38.
  • the electrical connection 38 includes a fixing ring 52 attached to the side wall 42 and a support member 54 for the heating element 36.
  • the support member 54 is positioned between the heating element 36 and the fixing ring 52.
  • the fixing ring 52 and the support member 54 form an elbow allowing a connection along the connection direction B and the heating element 36 to extend along the main direction A.
  • the fixing ring 52 extends along the connection direction B, and the support member 54 extends along the main direction A.
  • the fixing ring 52 and the support member 54 form an internal channel 56 for the passage of at least one electrical cable 58 from the heating member 36 to the outside of said at least one collector 32.
  • the support member 54 is, for example, screwed to the fixing ring 52.
  • This configuration of the two-part electrical connection 38 allows for easy assembly by inserting the heating element 36 connected to the support element 54 along the main direction A through the open end 33 of the manifold 32.
  • the support element 54 is positioned opposite the opening 50.
  • the fixing ring 52 is then inserted along the connection direction B through the opening 50 to be fixed to the support member 54.
  • the 30 radiator is a dual-energy radiator.
  • the radiator 30 of the figure 6 incorporates all the features and advantages described in connection with the 30 radiator of the figures 4 And 5
  • the radiator 30 of the figure 6 includes an additional manifold and two hydraulic fittings allowing the radiator to be connected to a heating water circuit.
  • the radiator 30 comprises a first manifold 32 and a second manifold 62.
  • the elongated radiant elements 34 are each mechanically and fluidically connected to the first 32 and second 62 manifolds.
  • the first 32 and second 62 manifolds and the plurality of elongated radiant elements 34 form the heating circuit.
  • the heating element 36 is located inside the first manifold 32.
  • the electrical connection 38 terminates at the side wall 42 of the first manifold 32.
  • the radiator 30 of the figure 6 It further includes a first 64 and a second 66 hydraulic fittings to allow the connection of the radiator 30 to a heating water circuit.
  • Each of the first 32 and second 62 manifolds carries one of the first 64 and second 66 hydraulic fittings.
  • the first hydraulic fitting 64 is located at the lower end wall 40 of the first manifold 32
  • the second hydraulic fitting 66 is located at a lower end wall 63 of the second manifold 62.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Conditioning For Vehicles (AREA)
  • Central Heating Systems (AREA)
  • Instantaneous Water Boilers, Portable Hot-Water Supply Apparatuses, And Control Of Portable Hot-Water Supply Apparatuses (AREA)
  • Resistance Heating (AREA)
  • Domestic Hot-Water Supply Systems And Details Of Heating Systems (AREA)

Claims (11)

  1. Heizkörper (30), umfassend mindestens einen Kollektor (32), der sich entlang einer Hauptrichtung (A) erstreckt, und eine Mehrzahl von langgestreckten abstrahlenden Elementen (34), die jeweils mechanisch und fluidisch mit dem mindestens einen Kollektor (32) verbunden sind, wobei der mindestens eine Kollektor (32) und die Mehrzahl von langgestreckten abstrahlenden Elementen (34) einen Heizkreislauf bilden, der dazu ausgestaltet ist, eine Heizflüssigkeit aufzunehmen, wobei der Heizkörper (30) ferner ein Heizorgan (36) für die Heizflüssigkeit umfasst, das im Inneren des mindestens einen Kollektors (32) und/oder eines der abstrahlenden Elemente (34) angeordnet ist, und einen elektrischen Anschluss (38), der durch eine Wand des mindestens einen Kollektors (32) hindurch angeordnet ist, wobei der elektrische Anschluss (38) elektrisch mit dem Heizorgan (36) verbunden ist, um dem Heizorgan (36) eine elektrische Versorgung bereitzustellen, wobei der mindestens eine Kollektor (32) mindestens zwei Endwände (40) und mindestens eine sich entlang der Hauptrichtung (A) zwischen den Seitenwänden (40) erstreckende Seitenwand (42) umfasst, wobei der elektrische Anschluss (38) im Bereich der mindestens einen Seitenwand (42) mündet, dadurch gekennzeichnet, dass der Heizkörper ein Hybrid-Heizkörper ist und dass jeder Kollektor (32) im Bereich seines unteren Endes einen hydraulischen Anschluss (64,66) umfasst.
  2. Heizkörper (30) nach Anspruch 1, wobei der elektrische Anschluss (38) sich entlang einer Anschlussrichtung (B) erstreckt, die quer zu der Hauptrichtung (A) verläuft.
  3. Heizkörper (30) nach Anspruch 1 oder 2, wobei das Heizorgan (36) von dem elektrischen Anschluss (38) getragen wird.
  4. Heizkörper (30) nach einem der Ansprüche 1 bis 3, wobei das Heizorgan (36) keinen Kontakt zu den Endwänden des mindestens einen Kollektors (32) hat.
  5. Heizkörper (30) nach einem der vorhergehenden Ansprüche, wobei die mindestens eine Seitenwand (42) des mindestens einen Kollektors (32) einen frontalen Abschnitt (44) und einen rückwärtigen Abschnitt (46) umfasst, wobei die abstrahlenden Elemente (34) mit dem Kollektor (32) im Bereich des frontalen Abschnitts (44) verbunden sind, wobei der elektrische Anschluss (38) zwischen dem frontalen Abschnitt (44) und dem rückwärtigen Abschnitt (46) mündet, so das er hinter den abstrahlenden Elementen (34) mündet.
  6. Heizkörper (30) nach einem der vorhergehenden Ansprüche, wobei das Heizorgan (36) sich entlang der Hauptrichtung (A) erstreckt.
  7. Heizkörper (30) nach einem der vorhergehenden Ansprüche, wobei der elektrische Anschluss (38) einen Befestigungsring (52) umfasst, der an der mindestens einen Seitenwand (42) befestigt ist, und ein Stützorgan (54) des Heizorgans (36), das zwischen dem Heizorgan (36) und dem Befestigungsring (52) angeordnet ist, wobei das Stützorgan (54) und der Befestigungsring (52) einen inneren Kanal (56) zum Durchführen mindestens eines Stromkabels (58) von dem Heizorgan (36) nach außerhalb des mindestens einen Kollektors (32) bilden.
  8. Heizkörper (30) nach einem der vorhergehenden Ansprüche, umfassend einen ersten (64) und einen zweiten (66) hydraulischen Anschluss, die ein Anschließen des Heizkörpers (30) an einen Heizungswasserkreislauf ermöglichen.
  9. Heizkörper (30) nach Anspruch 8, wobei einer von den ersten (64) und zweiten (66) hydraulischen Anschlüssen im Bereich einer Endwand (40) des mindestens einen Kollektors (32) angeordnet ist, um eine Zirkulation der Heizflüssigkeit durch den einen von den ersten (64) und zweiten (66) hydraulischen Anschlüssen entlang der Hauptrichtung (A) zu ermöglichen.
  10. Heizkörper (30) nach Anspruch 9, wobei einer von den ersten (64) und zweiten (66) hydraulischen Anschlüssen an dem mindestens einen Kollektor (32) im Bereich einer unteren Endwand (40) befestigt ist.
  11. Heizkörper (30) nach einem der Ansprüche 8 bis 10, umfassend einen ersten (32) und einen zweiten (62) Kollektor, wobei sich der erste Kollektor (32) entlang der Hauptrichtung (A) erstreckt, wobei die Mehrzahl von langgestreckten abstrahlenden Elementen (34) jeweils mechanisch und fluidisch mit den ersten (32) und zweiten (62) Kollektoren verbunden sind, wobei die ersten (32) und zweiten (62) Kollektoren und die Mehrzahl von langgestreckten abstrahlenden Elementen (34) den Heizkreislauf bilden, wobei das Heizorgan (36) im Inneren des ersten Kollektors (32) angeordnet ist, wobei der elektrische Anschluss im Bereich einer Seitenwand (42) des ersten Kollektors (32) mündet, wobei jeder der ersten (32) und zweiten (62) Kollektoren einen von den ersten (64) und zweiten (66) hydraulischen Anschlüssen trägt.
EP23183725.3A 2022-07-29 2023-07-05 Elektrischer heizkörper mit seitlichem elektrischem anschluss Active EP4311983B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR2207917A FR3138506B1 (fr) 2022-07-29 2022-07-29 Radiateur électrique avec raccord électrique latéral

Publications (2)

Publication Number Publication Date
EP4311983A1 EP4311983A1 (de) 2024-01-31
EP4311983B1 true EP4311983B1 (de) 2025-11-05

Family

ID=83355143

Family Applications (1)

Application Number Title Priority Date Filing Date
EP23183725.3A Active EP4311983B1 (de) 2022-07-29 2023-07-05 Elektrischer heizkörper mit seitlichem elektrischem anschluss

Country Status (4)

Country Link
EP (1) EP4311983B1 (de)
ES (1) ES3061660T3 (de)
FR (1) FR3138506B1 (de)
PT (1) PT4311983T (de)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT232484Y1 (it) * 1994-10-24 2000-01-10 Agis Spa Radiatore del tipo cosiddetto "asciugasalviette".
DE29908737U1 (de) * 1999-05-18 1999-11-18 August Brötje GmbH, 26180 Rastede Heizkörper
EP2028983B1 (de) * 2006-05-24 2011-03-30 MacLaren-Taylor, Andrew Keith Handtuchheizkörper
NZ551614A (en) * 2006-11-24 2009-04-30 Dc Short Ltd Modular heated towel rail
GB2451256B (en) * 2007-07-25 2010-12-29 Basic Holdings Towel rail
ITMI20140315U1 (it) * 2014-10-14 2016-04-14 Tonon Forty Spa Struttura di scaldasalviette con elevata efficienza termica

Also Published As

Publication number Publication date
ES3061660T3 (en) 2026-04-06
EP4311983A1 (de) 2024-01-31
PT4311983T (pt) 2026-02-05
FR3138506B1 (fr) 2024-09-06
FR3138506A1 (fr) 2024-02-02

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