EP2740852B1 - Dachfenster - Google Patents

Dachfenster Download PDF

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Publication number
EP2740852B1
EP2740852B1 EP13196129.4A EP13196129A EP2740852B1 EP 2740852 B1 EP2740852 B1 EP 2740852B1 EP 13196129 A EP13196129 A EP 13196129A EP 2740852 B1 EP2740852 B1 EP 2740852B1
Authority
EP
European Patent Office
Prior art keywords
frame
sash
roof window
hood
sub
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
EP13196129.4A
Other languages
English (en)
French (fr)
Other versions
EP2740852A2 (de
EP2740852A3 (de
Inventor
Sean Coyle
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.)
Keystone Lintels Ltd
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Keystone Lintels Ltd
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 Keystone Lintels Ltd filed Critical Keystone Lintels Ltd
Priority to PL13196129T priority Critical patent/PL2740852T3/pl
Publication of EP2740852A2 publication Critical patent/EP2740852A2/de
Publication of EP2740852A3 publication Critical patent/EP2740852A3/de
Application granted granted Critical
Publication of EP2740852B1 publication Critical patent/EP2740852B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/03Sky-lights; Domes; Ventilating sky-lights
    • E04D13/035Sky-lights; Domes; Ventilating sky-lights characterised by having movable parts
    • E04D13/0357Sky-lights; Domes; Ventilating sky-lights characterised by having movable parts the parts pivoting about an axis supported on a hinged frame or arms

Definitions

  • the present invention relates to roof window and in particular to a top hung roof window.
  • Roof windows have become a commonly used building and architectural tool to provide additional light and ventilation to rooms having pitched roofs.
  • the centrally pivoted window is extremely easy to clean as when it is rotated to or beyond a horizontal or near horizontal position, the exterior pane of glass can be easily reached for cleaning.
  • the exterior pane of glass only moves away from the user as it is opened and as a result is extremely difficult to clean properly without the ability to be present on the roof.
  • the upper hood H on many centrally pivoted roof windows covers a 3-5 inch portion of the upper outer frame F and sash S and the gap therebetween which does not cause issue as the upper portion of the window rotates inward.
  • the sash S rotates outward from its upper pivot point and as a result, the outward moving sash S can interfere with the hood H structure as it moves. For this reason a hood H must be designed to be fitted to the sash S and move with it through its range of motion.
  • hood H requirements result in the need for two separate hoods H to be designed and manufactured, one to suit a top pivoting model and another to fit a centrally pivoting model, resulting in additional manufacturing expense and complexity.
  • a hood H that moves with the sash can causes issues regarding water ingress at the rear joint about which the hood H rotates and methods to attempt to address this issue give rise to additional sealing requirements in a multi-part hood (see figures A, B, C, and D) which further add to the complexity and cost of the component.
  • a gutter G and movable hood H are required for this type of design with the gutter G mounted on the frame F and the movable hood H mounted on the sash S.
  • GB 810 255 A disclose a roof window according to the preamble of claim 1.
  • the present invention provides a roof window according to claim 1 comprising a frame, a sash pivotably mounted on the frame via a first sash pivot means located proximal to an end of the frame, a hood fixable to the frame at or about this end for weather proofing the end of the frame and the gap between the frame and the sash, the hood being fixed so that no part of the hood is movable with the sash, the first sash pivot means being located between the frame and the sash so that the sash is openable through its full range of movement about the first sash means without interfering with or contacting the hood.
  • the first sash pivot means is located proximal to the upper end of the frame in use.
  • the roof window having a first sash pivot means located proximal to the top end of the frame means that the top pivoting roof window can be fitted with the same hood as used on a centrally pivoted roof window. Even with a hood that is completely fixed to the frame, the sash can still open freely to its full extent without contacting the hood structure.
  • This universal hood results in a significant reduction in manufacturing complexity and cost associated with producing two hoods.
  • the first sash pivot means is located between the frame and the sash proximal to the upper main planar surface of the frame and the sash.
  • the frame comprises at least four elongate frame members joined about their ends forming a quadrangular shaped frame defining a central aperture.
  • the perimeter of the hood is mechanically coupled to a surface of the frame having a plane substantially parallel to the main plane of the roof window.
  • the main body and the free edge of the hood is spaced apart a distance from the main plane of the upward facing surface of the roof window, the distance being measured in a plane substantially perpendicular to the main plane of the roof window.
  • the first sash pivot means is locatable a pre-determined distance from the top of the frame in a direction parallel to the main plane of the roof window sufficient to allow full range of motion of the sash pivoting about the first sash pivot means without contact with the hood.
  • the axis of rotation of the first sash pivot means is located the same distance from the end of the frame in a direction parallel to the main plane of the roof window as the free edge of the hood.
  • the axis of rotation of the first sash pivot means is located a short distance in front of or behind the free edge of the hood, again the distance being measured from the end of the frame in a plane parallel to the main plane of the roof window.
  • the axis of rotation of the first sash pivot means is located less than 30mm in front of or behind the bottom edge of the hood, the distance being measured from the end of the frame in a plane parallel to the main plane of the roof window.
  • the axis of rotation of the first sash pivot means is located less than 20mm in front of or behind the bottom edge of the hood, the distance being measured from the end of the frame in a plane parallel to the main plane of the roof window.
  • the axis of rotation of the first sash pivot means is located less than 10mm in front of or behind the bottom edge of the hood, the distance being measured from the end of the frame in a plane parallel to the main plane of the roof window.
  • the sash comprises a sub-frame and inner sash.
  • the inner sash comprises at least four elongate frame members joined about their ends forming a quadrangular shaped sub-frame defining a central aperture.
  • the inner sash is mountable on the sub-frame.
  • the inner sash is movably attached to the sub-frame.
  • the first sash pivot means is operable between the frame and the sub-frame.
  • the frame has a pivotal coupling component.
  • the sub-frame has a correspondingly located pivotal coupling component.
  • the first sash pivot means comprises the frame pivotal coupling component and the sub-frame pivotal coupling component.
  • the frame and sub-frame are adapted to allow the part of the sub-frame above the first sash pivot means to rotate into a room.
  • the sub-frame has two lateral members and a cross member connected between one end of each lateral member.
  • the lateral members have a means for coupling the inner sash thereto at their other ends.
  • the lateral members have the sub-frame pivotal coupling component mounted thereon between their ends.
  • the part of the lateral members above the first sash pivot means are stepped inwards towards each other.
  • the sub-frame pivotal coupling component is a bracket.
  • the bracket is fixable at a first end to the lateral member of the sub-frame at or about the frame pivotal coupling component.
  • the lateral member is integral with the bracket.
  • the bracket is disposed between each lateral member and the cross member.
  • the bracket is fixable to the cross member of the sub-frame at a second end of the bracket.
  • the cross member carries a latch component of a latch operable between the inner sash and the sub-frame.
  • this latch retains the sub frame and the inner sash together so that they pivot about the first sash pivot means as a single unit.
  • both brackets are stepped laterally inwards away from the lateral member of the sub-frame.
  • the cross member of the sub-frame and at least part of the bracket are rotatable into the room about the first sash pivot means.
  • the frame has relief means on at least part of at least two mutually opposing internal surfaces of the frame.
  • the relief means prevents the sub frame from being pulled inwards beyond a point where damage to the roof window could occur. It provides a support surface for at least part of the sash to contact and rest against in the closed position.
  • the relief means is provided by a shoulder protruding into the opening from at least two mutually opposing internal surfaces of the frame.
  • the shoulder is provided on both pairs of mutually opposing internal surfaces of the frame.
  • the step of the lateral member/bracket allows the sash to be pivotally connected to the frame a distance away from the ends of the frame and sash while still allowing free movement of the portion of the sash above the first sash pivot means past the relief means of the frame at its top end where the sash and in particular the cross member carrying the latch component must move inwards.
  • the relief has a cut-out for allowing movement of the portion of the sash above the first sash pivot means past the frame at its top end where this portion of the sash must move inwards into the room.
  • the roof window has a first latching means.
  • the first latching means is operable between the frame and the sash to releasably connect the frame and the sash.
  • the first latching means has an open position wherein the sash is free to rotate about the first sash pivot means.
  • the first latching means allows the sash to open from its top pivoted position, but also secures the frame and sash together in a window closed position.
  • the first latching means is locatable at the end of the frame and sash distal the first sash pivot means, preferably the bottom end.
  • the first latching means is a latching handle on the sash and handle keeper on the frame.
  • the roof window has a second inner sash hinge means located below the first sash pivot means.
  • the second inner sash hinge means is located between the sub-frame and inner sash frame.
  • the second inner sash hinge means is locatable in a substantially central position of the frame.
  • the second inner sash hinge means is a two part hinge.
  • the two part hinge has a sub frame mounted component.
  • the two part hinge has an inner sash mounted component.
  • the inner sash mounted component is movably engagable with the sub frame mounted component.
  • the inner sash mounted component is rotatably engagable with the sub frame mounted component.
  • the inner sash mounted component is pivotably engagable with the sub frame mounted component.
  • the sub-frame mounted component is mounted on the ends of each lateral member distal the cross member.
  • the second inner sash hinge means work in a similar way to the two part hinge of a centrally mounted roof window.
  • the roof window has a second latching means.
  • the second latching means is operable between the inner sash and the sub-frame.
  • the second latching means has an engaged position wherein the inner sash and sub-frame are connected together.
  • the sub-frame and inner sash remain connected and are moveable together.
  • the second latching means has a released position wherein the inner sash and sub-frame are disconnected and the inner sash is rotatable about the second inner sash hinge means.
  • the first latching means can be engaged while the second latching means is disengaged, allowing the inner sash to be pivoted and rotated about the second inner sash hinge means permitting easy cleaning of the outer glass.
  • the second latching means is locatable between the top of the inner sash frame and the cross member of the sub-frame.
  • the second latching means is operable by a vent flap on the inner sash.
  • means for assisting the opening of the sash are coupled between the frame and the sash to assist a user with opening the sash.
  • the window when the window is opened by disengaging the first latching means and combined rotation of the sub-frame and inner sash about the first sash pivot means, the movement of the sash is aided by the assisting means.
  • the sash assist means are hydraulic rams.
  • a roof window indicated generally by the reference numeral 1 comprising a frame 2, a sash 3 pivotally mounted on the frame 2 via a first sash pivot 4 located proximal to an end 5 of the frame 2.
  • a hood 6 is fixed to the frame 2 at or about this end for weather proofing the end of the frame 2 and the gap 7 between the frame 2 and the sash 3.
  • the hood 6 is fixed so that no part of it is movable with the sash 3.
  • the first sash pivot 4 is located on the frame 2 and the sash 3 so that the sash 3 can be opened through its full range of movement without interfering with or contacting the hood 6 (see figures 4 , 5 , and 6 ).
  • the first sash pivot 4 is located on the frame 2 and the sash 3 proximal to the upper main planar surface of these components.
  • the roof window 1 having a first sash pivot 4 located proximal to the top end 5 of the frame 2 means that the top pivoting roof window 1 can be fitted with the same hood 6 as used on a centrally pivoted roof window. Even with a hood 6 that is completely fixed to the frame 2, the sash 3 can still open freely to its full extent without contacting the hood 6.
  • This universal hood 6 results in a significant reduction in manufacturing complexity and cost associated with producing two hoods.
  • the frame 2 has four elongate frame members 8, 9, 10, 11 joined about their ends forming a quadrangular shaped frame 2 defining a central aperture 12.
  • the perimeter of the hood 6 is mechanically coupled to a surface of the frame 2 (see figure 5 ) having a plane substantially parallel to the main plane of the roof window 1.
  • the first sash pivot 4 is locatable a pre-determined distance 14 from the top 5 of the frame 2 in a direction parallel to the main plane of the roof window 1 sufficient to allow full range of motion of the sash 3 without contact with the hood 6.
  • the axis of rotation of the first sash pivot 4 is located the same distance from the end 5 of the frame 2 in a direction parallel to the main plane of the roof window 1 as the free edge 15 of the hood 6.
  • the sash 3 has a sub-frame 16 and inner sash 17, see figure 7 .
  • the inner sash 17 comprises at least four elongate frame members 18 joined about their ends forming a quadrangular shaped sub-frame defining a central aperture 19 for carrying a pane of glass 13.
  • the inner sash 17 is movably mounted on the sub-frame 16 and the first sash pivot 4 is operable between the frame 2 and the sub-frame 16.
  • the first sash pivot 4 comprises the frame pivotal coupling component (not shown) and the sub-frame pivotal coupling bracket 20.
  • the sub-frame 16 is adapted to allow the part of the sub-frame 16 above the first sash pivot 4 to rotate into a room when the sash 3 is pivoted about pivot 4.
  • the sub-frame 16 has two lateral members 22 and a cross member 23 connected between one end of each lateral member 22.
  • the lateral members 22 have a hinge component 32, 33 for coupling the inner sash 17 thereto at their other ends and have the sub-frame pivotal coupling bracket 20 mounted thereon between their ends.
  • the part of the lateral members 25 above the first sash pivot 4 are stepped inwards towards each other.
  • the sub-frame pivotal coupling bracket 20 is fixed at a first end 26 to the lateral member 22 of the sub-frame 16 at or about the frame pivotal coupling component (not shown) or alternatively the two components are formed from the same piece of material.
  • the bracket 20 is fixed to the cross member 23 of the sub-frame 16 at the second end 27 of the bracket 20.
  • the cross member 23 carries a second latch component 24 of a second latch 41 operable between the inner sash 17 and the sub-frame 16.
  • This second latch 41 retains the sub frame 16 and the inner sash 17 together so that they pivot about the first sash pivot 4 as a single unit.
  • both brackets 20 are stepped laterally inwards away from the lateral member 22 of the sub-frame 16 and at least part of the brackets 20 and the cross member 23 are rotatable into the room about the first sash pivot 4.
  • the frame 2 has relief members 28 on at least two mutually opposing internal surfaces 29 of the frame 2.
  • the relief members 28 prevent the lateral members of the sub-frame 16 from being pulled inwards beyond a point where damage to the roof window 1 could occur. It provides a support surface for the sub-frame 16 to contact and rest against in the closed position.
  • the relief members 28 are provided by a shoulder 28 protruding into the opening from one or both pairs of mutually opposing internal surfaces 29 of the frame 2.
  • the step of the bracket 20 allows the sash 3 to be pivotally connected to the frame 2 a distance away from the ends of the frame 2 and sash 3 while still allowing free movement of the portion of the sash 3 and sub-frame 16 above the first sash pivot 4 past the relief members 28 of the frame 2 at its top end 5 where the sash 3 and in particular the cross member 23 carrying the second latch component 24 must move inwards.
  • the roof window 1 also has a first latching member 31, see figure 7 , operable between the frame 2 and the sash 3 to releasably connect the frame 2 and the sash 3 allowing the sash 3 to open from its top pivoted position (see figure 4 , 5 , and 6 ), but also securing the frame 2 and sash 3 together in a window closed position.
  • the first latching member has a latching handle 31 on the sash 3 and handle keeper (not shown) on the frame 2.
  • the roof window 1 has a second inner sash hinge 32 locatable below the first sash pivot 4 in a generally central position on the frame 2 and between the sub-frame 16 and inner sash frame 17.
  • the second inner sash hinge 32 is a two part hinge having a sub frame mounted component 33, see figure 2 , and an inner sash mounted component (not shown), the two hinge components 33 being rotatably engaged with one another.
  • the sub-frame mounted component 33 is mounted on the ends of each lateral member 22 distal the cross member 23.
  • the second latch 41 is operable between the inner sash 17 and the sub-frame 16.
  • the first latching member 31 can be dis-engaged while the second latch 41, 24 is also disengaged, allowing the inner sash 17 to be pivoted and rotated about the second inner sash hinge 32 permitting easy cleaning of the outer glass 33, see superimposed view in figure 7 .
  • the second latch 41, 24 is located between the top of the inner sash frame 17 and the cross member 23 of the sub-frame 16 and can be released by a vent flap 34, see figure 6 , on the inner sash 17.
  • FIG. 8 there is shown a detail perspective view with the frame 51 partially cut away showing the relationship between the first sash pivot member 52, the sash subframe 53 and a c-channel covering member 54 and the hood 55 with the sash subframe 53 in a closed position.
  • the pivotal axis of the first sash pivot member 52 is located proximal to the free edge of the hood 55.
  • the proximity of the axis of rotation of the first sash pivot member 52 is one aspect of the geometry of the roof window which allows the sash to pivot about this top hung position without interfering in any way with the hood 55.
  • Figure 9 illustrates this technical function where the sash pivots about the first sash pivot member 52 into a fully open position without interfering with the hood 55.
  • Figure 10 is a section view showing the relationship between the first sash pivot member 52, the sash subframe 53 and the hood 55 with the sash in a closed position.
  • the c-channel covering member 54 is designed with an arcuate section located between the first sash pivot member 52 and the hood 55 so that this portion of the c-channel covering member 54 can rotate past the free edge of the hood 55 without interfering or engaging therewith as the sash pivots open from the top hung position.
  • Figure 11 is a section view showing the relationship between the first sash pivot member 52, the sash subframe 53 and the hood 55 with the sash in a closed position.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Wing Frames And Configurations (AREA)
  • Window Of Vehicle (AREA)

Claims (13)

  1. Dachfenster (1), umfassend einen Rahmen (2), einen Flügel (3), der über ein erstes Flügeldrehmittel (4), das in der Nähe eines Endes (5) des Rahmens (2) angeordnet ist, drehbar an dem Rahmen (2) montiert ist, eine Haube (6), die an dem Rahmen (2) an diesem Ende oder um dieses Ende befestigt ist, um das Ende des Rahmens (2) und den Spalt (7) zwischen dem Rahmen (2) und dem Flügel (3) wetterfest zu machen, wobei die Haube (6) so befestigt ist, dass kein Teil der Haube (6) mit dem Flügel (3) bewegbar ist, wobei das erste Flügeldrehmittel (4) zwischen dem Rahmen (2) und dem Flügel (3) angeordnet ist, sodass der Flügel (3) über seinen vollen Bereich von Bewegung um das erste Flügeldrehmittel (4) öffenbar ist, ohne mit der Haube (6) in Konflikt zu geraten oder sie zu kontaktieren, wobei der Flügel (3) einen Teilrahmen (16) und einen Innenflügel (17) umfasst, wobei der Innenflügel (17) bewegbar an dem Teilrahmen (16) angebracht ist, wobei das Dachfenster (1) dadurch gekennzeichnet ist, dass der Rahmen (2) und der Teilrahmen (16) dazu ausgelegt sind, dem Teil des Teilrahmens (16) über dem ersten Flügeldrehmittel (4) zu gestatten, sich in einen Raum unter dem Dachfenster zu drehen, und dadurch, dass das Dachfenster (1) ferner ein zweites Innenflügelscharniermittel (32) umfasst, das unter dem ersten Flügeldrehmittel (4) angeordnet ist und zwischen dem Teilrahmen (16) und dem Innenflügel (17) angeordnet ist.
  2. Dachfenster (1) nach Anspruch 1, wobei das erste Flügeldrehmittel (4) im Gebrauch in der Nähe eines oberen Endes (5) des Rahmens (2) angeordnet ist.
  3. Dachfenster (1) nach Anspruch 1 oder Anspruch 2, wobei das erste Flügeldrehmittel (4) zwischen dem Rahmen (2) und dem Flügel (3) in der Nähe der oberen ebenen Hauptoberfläche des Rahmens (2) angeordnet ist.
  4. Dachfenster (1) nach einem der vorangehenden Ansprüche, wobei ein Umfang der Haube (6) an den Rahmen (2) gekoppelt ist.
  5. Dachfenster (1) nach einem der vorangehenden Ansprüche, wobei der Hauptkörper und die freie Kante (15) der Haube (6) um eine Entfernung von der Hauptebene der nach oben weisenden Oberfläche des Dachfensters (1) beabstandet sind, wobei der Abstand in einer Ebene gemessen wird, die im Wesentlichen senkrecht zu der Hauptebene des Dachfensters (1) ist.
  6. Dachfenster (1) nach einem der vorangehenden Ansprüche, wobei das erste Flügeldrehmittel (4) um einen vordefinierten Abstand von der Oberseite (5) des Rahmens (2) in einer Richtung parallel zu der Hauptebene des Dachfensters (1) anordenbar ist, ausreichend, um einen vollen Bereich von Bewegung des Flügels (3), sich drehend um das erste Flügeldrehmittel (4), zu gestatten, ohne dass der Flügel (3) in Kontakt mit der Haube (6) kommt.
  7. Dachfenster (1) nach Anspruch 5 oder Anspruch 6, wenn abhängig von Anspruch 5, wobei eine Drehachse des ersten Flügeldrehmittels (4) in demselben Abstand von dem Ende (5) des Rahmens (2) in einer Richtung parallel zu der Hauptebene des Dachfensters (1) wie die freie Kante (15) der Haube (6) angeordnet ist.
  8. Dachfenster (1) nach Anspruch 5 oder Anspruch 6, wenn abhängig von Anspruch 5, wobei eine Drehachse des ersten Flügeldrehmittels (4) in einem kurzen Abstand vor oder hinter der freien Kante (15) der Haube (6) angeordnet ist, wobei der Abstand wiederum von dem Ende (5) des Rahmens (2) in einer Ebene parallel zu der Hauptebene des Dachfensters (1) gemessen wird.
  9. Dachfenster (1) nach Anspruch 8, wobei die Drehachse des ersten Flügeldrehmittels (4) weniger als 30 mm vor oder hinter der freien Kante (15) der Haube (6) angeordnet ist, wobei der Abstand von dem Ende (5) des Rahmens (2), an dem die Haube (6) montiert ist, in einer Ebene parallel zu der Hauptebene des Dachfensters (1) gemessen wird.
  10. Dachfenster (1) nach einem der vorangehenden Ansprüche, wobei das erste Flügeldrehmittel (4) zwischen dem Rahmen (2) und dem Teilrahmen (16) betätigbar ist.
  11. Dachfenster (1) nach einem der vorangehenden Ansprüche, wobei der Rahmen (2) eine Drehkupplungskomponente aufweist, der Teilrahmen (16) eine entsprechend angeordnete Drehkupplungskomponente (20) aufweist, und das erste Flügeldrehmittel (4) die Rahmendrehkupplungskomponente und die Teilrahmen-(16)-Drehkupplungskomponente (20) umfasst.
  12. Dachfenster (1) nach einem Anspruch 11, wobei der Teilrahmen (16) zwei seitliche Elemente (22) und ein Querelement (23) aufweist, verbunden zwischen einem Ende jedes seitlichen Elements (22), wobei an den seitlichen Elementen zwischen ihren Enden die Teilrahmen-(16)-Drehkupplungskomponente (20) montiert ist.
  13. Dachfenster (1) nach einem der Ansprüche 12, wobei die Teile (25) der seitlichen Elemente (22) über dem ersten Flügeldrehmittel (4) nach innen aufeinander zu abgestuft sind, sodass sie in den Raum über den entsprechend positionierten Abschnitt des Rahmens (2) darunter hinaus drehbar sind.
EP13196129.4A 2012-12-06 2013-12-06 Dachfenster Active EP2740852B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13196129T PL2740852T3 (pl) 2012-12-06 2013-12-06 Okno dachowe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB201222003 2012-12-06

Publications (3)

Publication Number Publication Date
EP2740852A2 EP2740852A2 (de) 2014-06-11
EP2740852A3 EP2740852A3 (de) 2016-09-28
EP2740852B1 true EP2740852B1 (de) 2019-10-09

Family

ID=49911123

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13196129.4A Active EP2740852B1 (de) 2012-12-06 2013-12-06 Dachfenster

Country Status (2)

Country Link
EP (1) EP2740852B1 (de)
PL (1) PL2740852T3 (de)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB810255A (en) * 1957-05-22 1959-03-11 Ernst Rickard Improvements in or relating to roof-lights
DE2201097A1 (de) * 1972-01-11 1973-07-19 Alfred Mueller Dachfenster
DE2658463A1 (de) * 1976-12-23 1978-06-29 Alfred Mueller Dach-wohnraumfenster
PL1685304T3 (pl) * 2003-08-20 2014-12-31 Vkr Holding As Ulepszone okno obrotowe z co najmniej jednym pomocniczym urządzeniem otwierającym i środkami zatrzymującymi
EP2472026B1 (de) * 2010-12-29 2018-07-11 VKR Holding A/S Fenstersystem mit einer Rahmen- und Flügelrahmenstruktur in schmaler Ausführung

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
EP2740852A2 (de) 2014-06-11
EP2740852A3 (de) 2016-09-28
PL2740852T3 (pl) 2020-07-13

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