EP4610547A1 - Retrofitting mounting ring and system for a recessed luminaire - Google Patents

Retrofitting mounting ring and system for a recessed luminaire

Info

Publication number
EP4610547A1
EP4610547A1 EP24160617.7A EP24160617A EP4610547A1 EP 4610547 A1 EP4610547 A1 EP 4610547A1 EP 24160617 A EP24160617 A EP 24160617A EP 4610547 A1 EP4610547 A1 EP 4610547A1
Authority
EP
European Patent Office
Prior art keywords
ring
millimetre
mounting
recess
mounting ring
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.)
Pending
Application number
EP24160617.7A
Other languages
German (de)
French (fr)
Inventor
Valeska SOMMER
Carsten Schmidt
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.)
Zumtobel Lighting GmbH Austria
Zumtobel Lighting GmbH
Original Assignee
Zumtobel Lighting GmbH Austria
Zumtobel Lighting GmbH
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 Zumtobel Lighting GmbH Austria, Zumtobel Lighting GmbH filed Critical Zumtobel Lighting GmbH Austria
Priority to EP24160617.7A priority Critical patent/EP4610547A1/en
Priority to PCT/EP2025/054546 priority patent/WO2025180935A1/en
Publication of EP4610547A1 publication Critical patent/EP4610547A1/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/02Wall, ceiling, or floor bases; Fixing pendants or arms to the bases
    • F21V21/04Recessed bases
    • F21V21/041Mounting arrangements specially adapted for false ceiling panels or partition walls made of plates
    • F21V21/042Mounting arrangements specially adapted for false ceiling panels or partition walls made of plates using clamping means, e.g. for clamping with panel or wall
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/02Lighting devices intended for fixed installation of recess-mounted type, e.g. downlighters
    • F21S8/026Lighting devices intended for fixed installation of recess-mounted type, e.g. downlighters intended to be recessed in a ceiling or like overhead structure, e.g. suspended ceiling
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/002Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages with provision for interchangeability, i.e. component parts being especially adapted to be replaced by another part with the same or a different function
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • F21V17/101Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening permanently, e.g. welding, gluing or riveting

Definitions

  • the invention relates to a mounting ring for a recessed luminaire that enables installation of the luminaire in a recess of an assembly structure, such as a wall, a ceiling or a floor.
  • Recessed luminaires are usually used in lighting systems in which there is a suspended ceiling, or a corresponding wall or floor, which has a recess in which the luminaire is installed.
  • mounting rings for recessed luminaires are integrally formed, so that the components such as the ring element and the two bars are formed integrally.
  • the bars enable the mounting ring to be clamped, as they form the guide elements for corresponding latch arms, which interact with an inner side (top surface) of a respective assembly structure, and thus press a flange-like section of the ring element against the visible outer side (bottom surface) of the mounting surface, thereby fixing the mounting ring.
  • the combination of the latch arms and the mounting ring hereby form a mounting system.
  • the mounting ring 1100 hereby comprises a ring element 1110 that comprises a flange portion 1112 that is configured to interact with the bottom surface of the assembly structure, and two bars 1120 that are arranged on the ring element 1110.
  • the mounting ring 1100 is hereby integrally formed, and protrudes from a circular base portion 1111 of the mounting ring 1100.
  • the mounting system 1010 further comprises respective latch arms 1200 that are coupled to the respective bars 1120, and are hereby height-adjustable along the height of the bars 1120, such that they can be moved to an operation position where they interact with the top surface and hereby press the flange portion 1112 of the ring element 1110 against the bottom surface, achieving a clamped fixation of the mounting ring 1100 and thus of the mounting system 1010.
  • the height-adjustability is hereby realized via coupling elements 1121 that are arranged on an outwardly facing surface of each bar 1120.
  • the latch arms 1200 are operable by a user via handles 1230 for pushing the respective latch arm 1200 downwardly towards the ring element 1110, such that a contact portion 1210 of the respective latch arm 1200 comes in contact with the top surface of the assembly structure.
  • the invention is concerned with the task of providing an improved mounting ring, and further a respective improved mounting system, and a respectively improved recessed luminaire, with a flexible configuration and adjustability concerning installation thereof.
  • This task is solved by the mounting ring according to independent claim 1, respectively the mounting system according to independent claim 11, and respectively the recessed luminaire according to independent claim 15.
  • the invention is defined in the respective independent claims. Additional features of the invention are provided in the respective dependent claims.
  • a mounting ring of a recessed luminaire is provided.
  • the mounting ring is hereby configured for mounting a luminaire unit of the recessed luminaire in a recess of an assembly structure, the assembly structure having a top surface and a bottom surface.
  • the mounting ring is further configured for insertion in the recess in an installation direction, and the mounting ring comprises:
  • an utmost flexible and situation-related operable mounting ring is achieved, that allows for a flexible and situation-related installation of a recessed luminaire in a respective recess.
  • different implementations of the plate shaped frame element may be provided depending on the respective installation situation, and in particular the dimensions of the respective recess.
  • different assembly situations are manageable.
  • the frame element different shapes and dimensions of the recess are manageable, whereas the same luminaire unit can be mounted within the mounting ring, respectively the mounting system, whereas the frame element covers the excessive gaps of the respective recess, and further provides a contact point on the bottom side of the assembly structure.
  • the such provided mounting ring achieves covering a respective recess with an integrated design, having an uniform appearance for a user, as from below only a respective bottom surface of the frame element is visible. Also less components are required resulting in a cost- and material reduction. Further, a slim design is achieved.
  • a mounting system of a recessed luminaire is provided.
  • the mounting system is for installing a luminaire unit of the recessed luminaire in a recess of an assembly structure, the assembly structure having a top surface and a bottom surface.
  • the mounting system per se is also configured for installation in the recess in an installation direction.
  • the mounting system hereby comprises:
  • the such configured mounting system benefits from the respective configured mounting ring analogously - as previously mentioned.
  • the mounting system is operable in various scenarios, providing a flexibility in terms of installation of the system.
  • the recessed luminaire for installation within a recess of an assembly structure.
  • the assembly structure still has the top surface and the bottom surface, as previously mentioned.
  • the recessed luminaire hereby comprises:
  • the such configured recessed luminaire benefits from the respective configured mounting system, respectively the mounting ring analogously - as previously mentioned.
  • the recessed luminaire is operable in various scenarios, providing a flexibility in terms of construction and installation of the luminaire.
  • the frame element is attached to the flange portion via an ultrasonic soldering coupling, and/or via an adhesive coupling, and/or a soldering coupling, and/or a welding coupling.
  • the such configured mounting ring has a further increased stability.
  • the coupling via ultrasonic soldering hereby is preferred as it provides an utmost durable and stable connection.
  • the frame element comprises a number of connection portions that are arranged proximal on the frame element on the surface of the frame element facing the ring element, wherein these connection portions are positioned in proximity of the flange portion.
  • connection portions are brought into contact with the latch portion of the ring element, providing a contact surface for coupling.
  • the connection portions are preferably configured to enlarge and define a respective coupling area of the coupling between the latch portion and the frame element.
  • the connection portions are configured for ultrasonic soldering, such that the latch portion and the connection portions of the frame element merge during soldering.
  • the flange portion may be formed by a continuous and smooth surface, or may alternatively be formed by a holey surface provided with holes, whereby the holes are in particular plastering holes.
  • the holey surface is considered for coupling, as the such configured surface further improves stability, durability and stiffness of the coupling.
  • the frame element is preferably attached to a flange portion having a holey surface (further preferred via the respective connection portions).
  • the frame element has an outer diameter of approximately 100 millimetre, or 150 millimetre, or 200 millimetre, or 250 millimetre, or any diameter in-between. This further improves retrofitting a recessed luminaire in a given (too) large recess, where the recess diameter extends the outer diameter of the flange portion, wherein depending on the dimensions a respective frame element is selected. Further preferably the frame element has an inner diameter essentially corresponding to the inner diameter of the ring element. This allows for an easy fitting of the luminaire unit inside the mounting ring / mounting system.
  • the ring element further comprises a circular base portion, wherein the circular base portion extends essentially parallel to the installation direction, and wherein the flange portion protrudes substantially distally from the circular base portion in a direction substantially perpendicularly to the installation direction.
  • the such configured structure of the mounting ring is utmost durable and stable, and provides an improved stiffness.
  • each bar is coupled with the ring element via a coupling mount.
  • the coupling mount may especially be built for a proper fitting attachment of the respective bar to the ring element, such that the respective bar is coupled utmost stiff and a play or even a jiggle of the bar is avoided.
  • the coupling mount allows for a latching connection. This further eases coupling and decoupling of the individual bars from the mounting ring, and thus improves assembly and maintenance of the mounting ring.
  • the coupling mount is arranged on the base portion. This further improves durability and stiffness of the connection between the bars and the ring element.
  • each bar has coupling elements for coupling to a latch arm, the coupling elements enabling a height-adjustable positioning of the respective latch arm along the height of the respective bar.
  • the coupling elements of the bar are formed by a height-adjustable latching mechanism. This further improves operability of the mounting system, and thus eases installation of the mounting ring. Also installation of the mounting system is simplified.
  • the flange portion has a width of approximately 5 to 10 millimetres. This width allows for a suitable contact face for connection with the frame element. Of course any width in-between, i.e., approximately 5, 6, 7, 8, 9, 10 millimetres are conceivable.
  • the mounting ring and in particular the ring element and further particular the flange portion, has an (inner) diameter in a range of approximately 50 to 250 millimetre, in particular in a range of approximately 50 to 100 millimetre, or 100 to 150 millimetre, or 150 to 200 millimetre, or 200 to 250 millimetre; and preferably in a range of 55 to 95 millimetre, or 105 to 145 millimetre, or 155 to 195 millimetre, or 205 to 245 millimetre; and further preferably has a diameter of 50 millimetre, 55 millimetre, 60 millimetre, 65 millimetre, 90 millimetre, 95 millimetre 100 millimetre, or 105 millimetre, or 145 millimetre, or 150 millimetre, or 155 millimetre, or 195 millimetre, or 200 millimetre, or 205 millimetre, or 245 millimetre, or 250 millimetre.
  • the mounting ring is for mounting in the recess of the assembly structure that is formed by a wall, by a ceiling, or by a floor.
  • the luminaire can thus be a wall-mounted luminaire, a ceiling-mounted luminaire, or a floor-mounted luminaire.
  • the luminaire can be used for a downlight, spotlight, or wall-washer scenarios, or the like.
  • the recess is circular, and in particular the frame element is further circular and thus ring shaped. This further eases installation of the mounting ring, and hence of the mounting system.
  • the aforementioned plate shaped circular frame can be used to cover the excess corner portions of the recess.
  • the mounting ring, and thus the mounting system have a circular base area.
  • the frame element may also have a squared or oval base area, while maintaining the frame / ring shape for insertion of the respective luminaire unit.
  • the mounting ring is made out of plastic, and in particular the frame element is made out of plastic.
  • the frame element is made out of plastic. This allows for an utmost cheap but still steady, durable and stiff configuration of the mounting ring, and the mounting system. Also, the weight of the respective mounting ring, mounting system and thus of the recessed luminaire can be reduced with this implementation.
  • the components of the mounting ring are formed by injection molding.
  • the ring element and the frame element (as well as potentially the bars) can be formed by injection molding. This allows for a cost- and material-saving, and further repeatable production of the mounting ring.
  • the mounting system comprises a ring-shaped support element, wherein the ring-shaped support element is positioned on the top surface of the assembly structure of the recess.
  • the respective latch arms are configured to interact with the ring-shaped support element in the operating position clamping the mounting system inside the recess with the frame element of the mounting ring interacting with the bottom surface.
  • This ring-shaped support element is necessary when the configuration of the latch arms are not suitable to get in contact with the top surface of the assembly structure, i.e., when the recess is too big.
  • the ring-shaped support element hereby bridges the respective gap and allows for a stable and secure contact of the latch arm, such that a durable clamping of the mounting system is ensured.
  • the ring-shaped support element has an outer diameter larger than the recess and further has an inner diameter smaller than the recess, providing a support surface for interaction with the respective latch arms.
  • the ring-shaped support element has an outer diameter larger than the recess and further has an inner diameter smaller than the recess, providing a support surface for interaction with the respective latch arms.
  • the ring-shaped support element is positioned centred in the recess. This provides a further stable arrangement.
  • the outer diameter of the ring-shaped support element approximately corresponds to the outer diameter of the frame element. This further increases stability and operational safety of the clamping performed by the mounting system, and further eases installation of the mounting system..
  • the inner diameter of the ring-shaped support element approximately corresponds to the inner diameter of the frame element. This further improves operational safety of the clamping performed by the mounting system, and further eases installation of the mounting system.
  • the ring-shaped support element comprises a hinge portion that allows a folded shape of the ring-shaped support element during installation of the ring-shaped support element in the recess. This provides an utmost compact form of the support element, further easing installation thereof.
  • the bars are configured to position the portion of the respective latch arm interacting with the ring-shaped support element in a certain distance spaced from the frame element along the installation direction.
  • different heights of the respective latch arm relative to the mounting ring, and in particular relative to the flange portion are achievable, such that different thicknesses / width of the assembly structure can be dealt with.
  • the flange portion and the respective portion of the latch arm are the interacting elements of the mounting system concerning the clamped fixation of the mounting ring / mounting system within the recess, the distance in-between these portions along the installation direction corresponds to the respective width of the assembly structure.
  • this distance is a distance range from approximately 1 to 25 millimetre, or from approximately 1 to 40 millimetre, or from approximately 1 to 100 millimetre, or from approximately 35 to 100 millimetre.
  • each latch arm of the mounting system comprises a coupling portion and a contact portion, wherein the coupling portion is the portion of the latch arm being attached to the respective bar, and the contact portion is arranged on an end of the latch arm opposite to the coupling portion, whereas the contact portion is the portion of the respective latch arm interacting with the top surface of the assembly structure or the respective support element that is positioned on the top surface of the assembly surface.
  • the such configured latch arm further facilitates assembly of the mounting system and installation of the mounting system in the recess.
  • the mounting ring further comprises a part of a reversible securing mechanism that is configured to interact with a respective counterpart that is arranged on the luminaire unit.
  • the luminaire unit is coupled to the mounting system by means of a reversible securing mechanism, in particular by means of a bayonet connection.
  • the luminaire unit of the recessed luminaire is inserted in the mounting system after the mounting system is installed in the recess.
  • this method of first inserting the mounting ring, then positioning the latch arms in the operation position for a fixed arrangement of the mounting system within the recess and subsequently coupling the luminaire unit, to form the complete recessed luminaire, an utmost easy installation process is realized.
  • the respectively required bars with their respective configuration, in particular in terms of height
  • an utmost flexible recessed luminaire and respective mounting system / mounting ring thereof are provided.
  • Figure 1 shows a recessed luminaire 1 with the luminaire unit 20 being installed in the mounting ring 100, respectively in the mounting system 10.
  • the Figures 2A to 2E show different exemplary embodiments of mounting systems 10 further showing an exemplary variety of implementations of the bars 120 with regard to their heights h, h 1 , h 2 , h 3 .
  • each bar 120 may be a separate element that is preferably toollessly attached to the ring element 110 of the mounting ring 100.
  • Figures 3A and 3B focus on an exemplary installation process of an exemplary mounting ring 100, respectively of an exemplary mounting system 10, inside a recess 990 of a respective assembly structure 900.
  • Figure 4 further provides an enlarged detail view of the coupling between the ring element 110 and the respective bars 120, showing an exemplary implementation of the coupling mount 113.
  • An exemplary coupling process for attaching a respective separate bar 120 to the ring element 110 is shown in detail in Figures 12A to 12C .
  • the clamping of the mounting ring 100, respectively of the mounting system 10 at the assembly structure 900 is shown in Figure 4 and 12C , as the interaction between a respective latch arm 200, that is coupled to a respective bar 120, and the optional ring-shaped support element 400, that is arranged on the top surface 991 of the assembly structure 900, as well as the coupling of the flange portion 112 with the plate shaped frame element 300 that is in contact with the bottom surface 992 of the assembly structure 900 is illustrated.
  • the plate shaped frame element 300, and the latch arm 200, respectively the latch arm 200 in combination with the ring-shaped support element 400 perform a clamping fixation of the mounting system 10 inside the recess 990.
  • the plate shaped frame element 300 being attached to a lower surface of the flange portion 112 of the mounting ring 100 is shown in detail in Figures 4 and 8 .
  • the plate shaped frame element 300 is welded by ultrasonic soldering 500 onto the flange portion 112, forming an enlarged flange portion 112x.
  • the ultrasonic soldering coupling 500 between the flange portion 112 and the frame element 300 is further shown in more detail in Figure 8 .
  • the frame element 300 is separately shown in Figure 10 .
  • the frame element 300 is of circular shape, however other shapes are also conceivable, such as an oval or rectangular shape.
  • the recessed luminaire 1 may be inserted in a recess 990 of the assembly structure 900 that has a larger diameter than the outer diameter of the flange portion 112, hence a coupling between the bottom surface 992 of the assembly structure 900 and the top surface 991 of the flange portion 112 would not be possible over the whole length of the flange portion 112.
  • a counterpart is necessary on the top surface 991 of the assembly structure 900 as well, such that the clamping can be reliably performed.
  • a ring-shaped support element 400 may be inserted into the recess 990 and placed on the top surface 991, such that the inner diameter of the contact face for the respective latch arms 200 is reduced, as illustrated in Figure 4 , as well as in Figures 5 , 6A and 6B .
  • Figures 7 to 9 further illustrate the attachment of the plate shaped frame element 300 to the flange element 112.
  • the shown embodiments hence provide implementations of the mounting system 10, respectively of the mounting ring 100, and thus as well of the recessed luminaire 1 that improve operation flexibility thereof.
  • the different implementations of the mounting system 10, and of the mounting ring 100, as well as the recessed luminaire 1, are compatible with each other but are not necessarily combined with each other. However, they may synergistically interact with each other when combined.
  • the application hereby focuses on structures of the mounting system 10, respectively of the mounting ring 100, to improve the insertion and installation of the mounting ring 100, respectively of the respective mounting system 10, in a recess 990, to further simplify installation of a respective recessed luminaire 1, whose luminaire unit 20 is attached to the respective mounting system 10 after it is installed within the recess 990.
  • focus lays in particular on retrofitting such recessed luminaires 1 into recesses 990 that are too large for common recessed luminaires.
  • bars 120 of different heights, and in particular bars 120 that are separate components that may be (reversibly) attached to the ring element 110 may additionally improve retrofitting of respective luminaires, and allow for operational flexibility of the respective mounting ring 100, mounting system 10 and luminaire 1.
  • FIG 1 shows a complete setup of a recessed luminaire 1 according to an exemplary embodiment.
  • the luminaire unit 20 is attached to the mounting system 10.
  • the mounting system 10, and in particular the mounting ring 100 comprises a component of a securing mechanism 117, in particular of a reversible securing mechanism 117.
  • this securing mechanism 117 is realized via a bayonet connection 117.
  • the luminaire unit 20 comprises respective corresponding components of the securing mechanism 117, such as a bolt or the like, that is configured for interaction with the recess at an inner surface of the mounting ring 100, as shown, e.g., in Figures 2A to 2E , 7 or 9 .
  • the mounting ring 100 is inserted in the recess 990 in an installation direction D, as illustrated in particular in Figures 3A and 3B .
  • the luminaire unit 20 is then likewise inserted in the installation direction D into the installed mounting system 10, where it is then fastened via the securing mechanism 117.
  • the mounting system 10 comprises the mounting ring 100 (in any herein disclosed embodiment) and the respective latch arms 200 that interact with the bars 120 in order to clamp the mounting ring 100, respectively the mounting system 10, inside the recess 990.
  • each latch arm 200 is arranged on one of the bars 120 and is movable from a mounting position M into an operating position O, whereas each latch arm 200 is movable along the bars 120 height h, h 1 , h 2 , h 3 to reach the operating position O.
  • the bars 120 of the mounting ring 100 allow for a height-adjustable positioning of their respective latch arm 200, wherein the respective latch arms 200 are configured to interact with the top surface 991 in the operating position O, clamping the mounting system 10 inside the recess 990 with the enlarged flange portion 112x - realized via the frame element 300 being attached to the flange portion 112 - interacting with the bottom surface 992 of the recess 990.
  • the recessed luminaire 1 comprises the luminaire unit 20, having a housing and light emission elements, and the mounting system 10 (in any herein disclosed embodiment), wherein the luminaire unit 20 is coupled to the mounting system 10.
  • the mounting ring 100 comprises the ring element 110, and at least two bars 120 that are arranged on the ring element 110.
  • FIG 2A (and in the respective right-hand-side exemplary embodiments of Figures 6A and 6B ) also an implementation with three bars 120 is conceivable.
  • - and in particular with a further growing diameter of the recessed luminaires 1 - implementations with four bars 120, and so forth, are also conceivable.
  • the other exemplary implementations shown in Figures 1 , 2B to 2E , 3A, 3B , 5 , 6A, 6B, 7 and 9 show respective implementations with two bars 120. Further shown, each bar 120 is attached to the ring element 110 as a separate element, whereas this attachment is performed toollessly.
  • the ring element 110 hereby has a flange portion 112, that is configured to interact with the bottom surface 992, wherein in the shown exemplary embodiments of Figures 1 , 4 , 5 , 6A, 6B, 7 , 8 and 9 the respective mounting rings 100 are designed for installation in a recess 990 that has a larger diameter than the outer diameter of the flange portion 112, such that in these scenarios the aforementioned plate shaped circular frame element 300 is used to realize the interaction with the bottom surface 992.
  • the circular frame element 300 hereby enlarges the flange element 112, resulting in an enlarged flange portion 112x that is configured to interact with the bottom surface 992.
  • the ring element 110 may comprise a circular base portion 111 that extends essentially parallel to the installation direction D.
  • the flange portion 112 protrudes substantially distally from the circular base portion 111 in a direction substantially perpendicularly to the installation direction D, and forms a contact surface (upper surface of the flange portion 112) for interaction with the bottom surface 992 - or at least forms an attachment surface (lower surface of the flange portion 112) for attaching the previously mentioned frame element 300 thereto for interaction with the bottom surface 992.
  • Each bar 120 may be arranged substantially perpendicularly on the ring element 110 projecting substantially parallel in installation direction D from the ring element 110 over a height h, h 1 , h 2 , h 3 .
  • different heights h, h 1 , h 2 , h 3 of the bars 120 are possible. While the exemplary implementations shown in Figures 2A to 2E tend to be used only in special exceptional situations, these illustrations serve mainly to show that the bars 120 can have different heights h, h 1 , h 2 , h 3 .
  • the design of the ring element 110 with the bars 120 mounted on it as separate components makes the mounting ring 100, and therefore the mounting system 10, particularly flexible. This makes it particularly easy to react to correspondingly limited installation depths or particularly thick or thin thicknesses w of the assembly structure 900 and to create and use a correspondingly designed mounting ring 100 or mounting system 10.
  • bars 120 of different heights h, h 1 , h 2 , h 3 are couplable to the ring element 110.
  • the height h, h 1 , h 2 , h 3 of a bar 120 is in the range of 20 to 120 millimetre, preferably in the range of 25 to 100 millimetre, further preferably 20, 25, 30, 35, 40, 45, 50, 95, 100, 105, or 110 millimetre.
  • An example in which bars 120 with different heights are actually used in a mounting ring 100 is a scenario in which the installation depth of the assembly structure 990 (i.e. the distance of the assembly structure 990 from an underlying surface) and/or the thickness w of the assembly structure 990 itself is not constant, whereby the different heights h, h 1 , h 2 , h 3 of the bars 120 can be used to react to this in a particularly flexible and simple manner.
  • each bar 120 is configured for coupling with a latch arm 200 that interacts with the top surface 991 and holds the mounting ring 100 within the recess 990.
  • a latch arm 200 that interacts with the top surface 991 and holds the mounting ring 100 within the recess 990.
  • the recessed luminaire 1 is inserted in a too large recess 990, i.e., with a recess diameter extending the outer diameter of the flange portion 112
  • the respective latch arms 200 are long enough to reach the top surface 991 even in the respective scenario where the outer diameter of the flange portion 112 is smaller than the diameter of the recess 990, the addition of the respective ring-shaped support element 400 may not be necessary.
  • each bar 120 may have coupling elements 121 for coupling with a respective associated latch arm 200.
  • the coupling elements 121 enable a height-adjustable positioning of the respective latch arm 200 along the height h, h 1 , h 2 , h 3 of the respective bar 120.
  • the coupling elements 121 of a respective bar 120 may be formed by a height-adjustable latching mechanism, as exemplary illustrated in more detail in the enlarged view of Figure 4 .
  • each bar 120 has two slim side faces extending along the height h, h 1 , h 2 , h 3 of a respective bar 120, wherein these slim side faces form guide rails 129 for guiding a respective latch arm 200.
  • the bars 120 each may have an elongated slot 123 that extends in a direction parallel to the height h, h 1 , h 2 , h 3 of the respective bar 120, whereas the elongated slot 123 may divide the coupling elements 121 of the respective bar 120, and hereby may form a duct for a guide pin 240 of a respective latch arm 200.
  • each latch arm 200 may comprise a coupling portion 220 and a contact portion 210, wherein the coupling portion 220 is the portion of the latch arm 200 being attached to the respective bar 120, and the contact portion 210 is arranged on an end of the latch arm 200 opposite to the coupling portion 220, whereas the contact portion 210 is the portion of the respective latch arm 200 interacting with the top surface 991 of the assembly structure 900 (or at least interacting with the aforementioned ring-shaped support element 400 in the respective scenarios).
  • the contact portion 210 may be provided with a grip surface 211 that provides a special hold of the mounting system 10 on the top surface 991, respectively on the support element 400.
  • the coupling elements 121 of the bars 120 can be configured to position the portion of the respective latch arm 200 interacting with the top surface 991 (or the respective support element 400) in a certain distance spaced from the flange portion 112 along the installation direction D.
  • the coupling elements 121 hereby allow the respective latch arms 200 to latch in a respective position where the contact portion 210 of the respective latch arm 200 contacts the top surface 992 (or at least the support element 400 that is arranged on the top surface 992).
  • the distance between the portion of the respective latch arm 200 interacting with the top surface 991 (or the respective support element 400) - i.e., the contact portion 210 - and the flange portion 112 essentially corresponds to the width w of the respective assembly structure 900.
  • different bars 120 in particular differing with regard to their height h, h 1 , h 2 , h 3 ) allow for different width w of the assembly structure 900. It may be in particular desired to be able to handle certain distance ranges (respectively to enable a clamping on different assembly structures 900 with respective width w, and thus provide an adaptability in terms of the width range w of the assembly structure 900).
  • this distance preferably is a distance range (respectively a width range w) from approximately 1 to 25 millimetre, or from approximately 1 to 40 millimetre, or from approximately 1 to 100 millimetre, or from approximately 35 to 100 millimetre.
  • This distance hereby further relates to the corresponding setting height of the respective bar 120 for coupling with the respective latch arm 200, whereas the difference of the possible range of the setting height of the respective bar 120 minus the height of the respective latch arm 200 corresponds to the width w of the respective assembly structure 900, as shown in Figure 4 .
  • the respective range of the setting height may be in the range from 1 to 25 millimetre, or from 1 to 40 millimetre, or from 35 to 100 millimetre, or the like.
  • each latch arm 200 may also comprise respective guide elements 230 for guiding the movement along the height h, h 1 , h 2 , h 3 of the respective bar 120, wherein preferably the guide elements 230 interact with the guide rails 129 of the respective bar 120.
  • the exemplary configuration of the latch arm 200 comprising a guide pin 240 that interacts with the respective bar 120, and preferably interacts with the respective slot 123 of the respective bar 120.
  • the guide pin 240 may further be configured to not only guide the movement of the latch arm 200 in a direction parallel (or inverse) to the installation direction D but also to realize a decoupling of the respective latch arm 200 from the coupling elements 121 of the respective bar 120 upon actuation of the guide pin 240.
  • a former configured positioning of the respective latch arm 200 can be re-adjusted either by further moving the latch arm 200 towards the top surface 991 (respectively towards the aforementioned ring-shaped support element 400 in the respective scenario) or by moving the latch arm 200 in the installation direction D, i.e., upwardly to release a former performed clamping of the mounting ring 100, respectively of the mounting system 10.
  • the position of the latch arm 200 being in contact with the top surface 991 (respectively the support element 400), and hereby clamping the mounting ring 100, respectively of the mounting system 10 in the recess 990 is also referenced as the operation position O of the respective latch arm 200. This is in particular shown in Figure 3B .
  • the mounting position M of a respective latch arm 200 - as exemplary shown in Figure 3A - is a position of the latch arm 200 where mounting of the mounting system 10 inside the recess 990 is enabled. As exemplary shown in Figure 3A this may be realized via a back folding of the respective latch arm 200 in a proximal direction, i.e., towards the center of the mounting ring 100, respectively the mounting system 10. With this exemplary implementation it is achieved that the mounting system 10 can be further easily inserted in a respective recess 990 without colliding with respective edges of the assembly structure 900 that may prevent an insertion of the mounting system 10. Hence, the outer dimensions of the respective mounting system 10 in the mounting position M of the latch arms 200 may be mainly influenced by the mounting ring 100, such that the insertion is further simplified.
  • the shown bars 120 each have a holding mechanism on their top side 122.
  • the holding mechanism is for holding a respective latch arm 200 in its respective mounting position M, wherein the top side 122 is arranged opposite to the side of the bar 120 being connected to the ring element 110.
  • the diameter of the mounting system 10 at the largest point may be realized by the plate shaped circular frame element 300 attached thereto, forming an enlarged flange portion 112x.
  • the diameter of the mounting system 10 at the largest point may still be realized by the frame element 300 (respectively an analogously dimensioned ring-shaped support element 400).
  • the holding mechanism may further be configured to realize a folding movement of the respective latch arm 200 from its mounting position M into an outwardly facing position where the respective latch arm 200 is movable along the height h, h 1 , h 2 , h 3 of the respective bar 120.
  • the latch arm 200 upon movement of the respective latch arm 200 along the height h, h 1 , h 2 , h 3 of the respective bar 120 (i.e., in essentially inverse direction to the installation direction D) the latch arm 200 is brought into its respective operation position O, where it interacts with the top surface 991 (or the support element 400 that interacts with the top surface 991).
  • the holding mechanism may be configured to realize the folding movement by a tilt of the latch arm 200.
  • the tilt starting from the mounting position M may have an angle of approximately 270°, of approximately 180°, of approximately 160°, or of any angle between 160° and 270°.
  • the tilt angle realized in the illustrated exemplary implementation is approximately 180°.
  • FIG. 5 shows an exemplary implementation of the mounting system 10, whereas the mounting system 10 is inserted into a recess 990 where the use of the support element 400 is necessary, as the recess diameter is too large for the mounting ring 100, and thus the mounting system 10.
  • This scenario in particular is given, when old recessed luminaires are replaced with modern recessed luminaires, that require particular less space - in these scenarios the support element 400 and the frame element 300 allow for a fitting installation of such a modern recessed luminaire 1, as the excessive gaps of the recess 990 are bridged on the top surface side via the support element 400 and on the bottom surface side via the frame element 300. This also improves aesthetics of the recessed luminaire 1.
  • each bar 120 may be reversibly coupled to the base portion 111, whereas as displayed the bars 120 can be coupled with the ring element 110 via a respective coupling mount 113 that is positioned on the base portion 111 in the presented exemplary embodiment.
  • the coupling mount 113 allows for a particular simple and straightforward connection between the respective bar 120 and the ring element 110, and further improves stiffness of the structure of the mounting ring 100.
  • the bar 120 hereby comprises respective conjunction elements 124 at its lower end portion that is for coupling with the ring element 110. These conjunction elements 124 hereby interact with the coupling mount 113 for a durably and stiff coupling.
  • the bar 120 may be inserted into the respective coupling mount 113 with the conjunction elements 124 ahead, whereas further the conjunction elements 124 may interact with the ring element 110 preferably in a latching manner, e.g., via a snap-in fit, and thus secure the bar 120.
  • the coupling mount 113 may in particular allow for a latching connection between the respective bar 120 and the ring element 110, which configures the connection in particular stiff and steady, but also preferably reversible.
  • the coupling mount 113 may hereby further comprise an actuator for decoupling the respective connected bar 120 from the ring element 110.
  • Figures 12A, 12B and 12C show an exemplary embodiment of such a coupling process between a respective exemplary embodiment of a separate bar 120 and a respective exemplary embodiment of a ring element 110 of a mounting ring 100.
  • the bar 120 may be installed from a bottom side of the mounting ring 100 (wherein the bottom side hereby is the side of the mounting ring 100, respectively the mounting system 10, respectively the luminaire 1 visible for a user when installed in the recess 990).
  • the coupling mount 113 may be formed as a duct, having locking elements.
  • the bar 120 first enters the coupling mount 113 of the ring element 110 with its top side 122 - as shown in Figure 12A -, wherein the entire bar 120 subsequently passes through the coupling mount 113 - as shown in Figure 12B .
  • the coupling process is completed - as shown in Figure 12C .
  • the bar 120 is then fixedly attached to the ring element 110 with the such configured coupling process and the interaction of the conjunction elements 124 and the coupling mount. This is applicable to the various implementations of the bar 120 having different heights h, h 1 , h 2 , h 3 .
  • the coupling mount 113 may have a release element to release the connection between the bar 120 and the ring element 110, such that the connection is reversible.
  • the guide rails 129 formed by the slim side faces of a respective bar 120 may further aid in the installation process of the respective bar 120. For removing a previously installed bar 120 the aforementioned steps are to be performed in reverse, such that the bar 120 is moved in a downward direction.
  • the number of coupling mounts 113 may be selected.
  • a larger mounting ring 100 is equipped with a larger number of bars 120, and thus may consequently be equipped with a larger number of coupling mounts 113.
  • a smaller mounting ring 100 is equipped with a higher number of bars 120 (and thus possibly coupling mounts 113) if a particular heavy luminaire unit 20 (e.g., due to a heavy heat sink or other electronic equipment) is to be inserted in the respective mounting ring 100 - and vice versa.
  • respective bars 120 can be selected with regard to their height h, h 1 , h 2 , h 3 and their respective possible range of their setting height of the coupling with the respective latch arm 200. Hence, a situational selection of the configuration of the respective mounting ring 100 is possible.
  • the frame element 300 may provide an additional contact face for interaction with the lower side surface of a respective bar 120 further enhancing stability and stiffness of the connection between the bar 120 and the ring element 110.
  • the conjunction elements 124 of the bar 120 may be provided with certain contact elements to not only provide a stiff coupling to the ring element 110 but also to further interact with the frame element 300.
  • the flange portion 112 may be available in different configuration.
  • the flange portion 112 may be equipped with holes 119, and thus has a holey surface 112b, or as an alternative may be provided with a continuous and smooth surface 112a.
  • the smooth surface 112a is preferred in scenarios, where the flange portion 112 is visible for a user
  • the holey surface 112b is preferred in scenarios where the assembly structure 900, and in particular the bottom side 992 of the assembly structure 900 is to be plastered after installation of the mounting system 10, respectively of the recessed luminaire 1.
  • the holes 119 may be plastering holes 119.
  • Both configurations of the surface of the flange portion 112 are suitable for attaching a respective plate shaped circular frame element 300.
  • the coupling between these components may hereby be performed via an adhesive coupling, a soldering coupling, a welding coupling, or preferred via an ultrasonic soldering coupling 500.
  • the implementation of the coupling is hereby dependent on the respective materials of the components. As the components are preferably made out of plastic material, the ultrasonic soldering coupling 500 provides an utmost durable and stiff coupling.
  • the frame element 300 is preferably mounted on the flange portion 112 having a holey structure 112b.
  • This further benefits durability of the coupling.
  • this in particular applies with regard to an ultrasonic soldering coupling 500, as the holes 119 hereby provide a particular further beneficial conjunction between the flange portion 112 and the frame element 300.
  • a holey surface 112b is present.
  • the frame element 300 then extends the flange portion 112 distally and thus forms a contact surface for interaction with the bottom surface 992.
  • the frame element 300 may be available in different sizes, wherein the sizes differ with regard to their diameter d, d 1 , d 2 , d 3 .
  • the frame element 300 may have an outer diameter d, d 1 , d 2 , d 3 of approximately 100 millimetre (e.g. diameter di), or 150 millimetre (e.g. diameter d 2 ), or 200 millimetre (e.g. diameter d 3 ).
  • the frame element 300 has an inner diameter essentially corresponding to the inner diameter of the ring element 110.
  • the diameter d, d 1 , d 2 , d 3 of the frame element 300 may hereby essentially correspond to the respective diameter d, d 1 , d 2 , d 3 of the support element 400, as also exemplary illustrated in Figures 4, 5 , 6A, and 6B .
  • the frame element 300 is necessary in situations where the recess 990 is larger than the outer diameter of the flange portion 112, as otherwise a clamping at the bottom surface 992 is not possible, the necessity of the support element 400 is not always given.
  • the necessity of the support element 400 being present is dependent on the configuration of the respective latch arm 200.
  • the latch arm 200 is long enough to reach the top surface 991 of the recess structure 900.
  • the support element 400 is required to ensure a proper clamping of the mounting system 10, respectively the mounting ring 100, and thus of the recessed luminaire 1 inside the recess 990.
  • the flange portion 112 may have a width of approximately 5 to 10 millimetres, whereas this width is sufficient for providing a stable clamping contact to the bottom surface 992, and further is aesthetically pleasant for a user. Also with this width a sufficient surface is provided for a connection to a respective frame element 300.
  • the inner portion of the mounting ring 100 (respectively of the mounting system 10) is for accommodating the luminaire unit 20, to form the recessed luminaire 1.
  • the inner diameter of the mounting ring 100, and in particular of the ring element 110 and further particular of the flange portion 112 is adapted to common diameters of such luminaire units 20.
  • the respective inner diameter may be approximately in a range of 50 to 250 millimetre, in particular in a range of 50 to 100 millimetre, or 100 to 150 millimetre, or 150 to 200 millimetre, or 200 to 250 millimetre; and preferably in a range of 55 to 95 millimetre, or 105 to 145 millimetre, or 155 to 195 millimetre, or 205 to 245 millimetre; and further preferably in a diameter of 50 millimetre, 55 millimetre, 60 millimetre, 65 millimetre, 90 millimetre, 95 millimetre 100 millimetre, or 105 millimetre, or 145 millimetre, or 150 millimetre, or 155 millimetre, or 195 millimetre, or 200 millimetre, or 205 millimetre, or 245 millimetre, or 250 millimetre.
  • Figure 10 shows the plate shaped circular frame element 300 that is possibly attached to the flange portion 112 of the mounting ring 100 - depending on the respective scenario.
  • the frame element 300 may comprise a number of connection portions 310 that are arranged proximal on the frame element 300 on the surface of the frame element 300 facing the ring element 110, wherein these connection portions 310 are positioned in proximity of the flange portion 112.
  • connection portions 310 are provided, with little gaps between them.
  • connection portions 310 are provided, with little gaps between them.
  • connection portions 310 are used for the ultrasonic soldering connection 500 between the flange portion 112 and the frame element 300.
  • the ultrasonic soldering 500 is exemplary shown in the combined view of Figures 7 , 8 and 9 showing the attachment of the frame element 300 to the flange portion 112, enlarging the flange portion 112x.
  • the frame element 300 may be provided with a projecting edge 320 that is positioned distally and thus on an outer edge of the frame element 300.
  • the projecting edge 320 may form the outer face of the frame element 300 defining the outer diameter of the frame element 300.
  • the edge 320 projects in installation direction D towards a respective bottom surface 992, such that the projecting edge 320 is in contact with the assembly structure 900 when the mounting ring 100, respectively the mounting system 10, is installed within the recess 990.
  • this may close off the bottom side of the recessed luminaire 1, respectively the mounting system 10, respectively the mounting ring 100, towards the assembly structure 900.
  • the frame element 300 may further be provided with braces 330 that extend in a radial direction of the frame element 300 from a proximal region towards a distal region thereof.
  • the braces 330 may extend from the connection portions 310 to the projecting edge 320.
  • the braces 330 hereby provide additional stiffness to the frame element 300 and further their upper surfaces (that face the recess 990, respectively the bottom surface 992) may provide further contact faces of the frame element 300 towards the bottom surface 992, whereas preferably the braces 330 at least partially are in contact with the bottom surface 992 when the mounting ring 100, respectively the mounting system 10 is installed in the recess 990.
  • the frame element 300 is circular and thus ring shaped, however also other frame shapes as rectangular, oval, or the like are conceivable.
  • the shape of the frame element 300 may be adapted to the shape of the respective recess 990.
  • the ring-shaped support element 400 reference is in particular made to Figures 4, 5 , 6A, and 6B .
  • this support element 400 forms a part of the mounting system 10.
  • the ring-shaped support element 400 then shall be positioned on the top surface 991 of the assembly structure 900 of the recess 990, to enlarge a respective contact surface for the respective latch arms 200.
  • the respective latch arms 200 are configured to interact with the ring-shaped support element 400 in the operating position O clamping the mounting system 10 inside the recess 990 with the frame element 300 of the mounting ring 100 interacting with the bottom surface 992.
  • the ring-shaped support element 400 has an outer diameter larger than the recess 990 and further has an inner diameter smaller than the recess 990, providing a support surface for interaction with the respective latch arms 200.
  • the inner diameter may be configured to allow an insertion of the mounting ring 100, respectively its bars 120 with the latch arms 200 preferably being attached thereto in a mounting position, in the installation direction D.
  • the outer diameter d, d 1 , d 2 , d 3 of the ring-shaped support element 400 may correspond approximately to the outer diameter d, d 1 , d 2 , d 3 of the frame element 300, as previously mentioned.
  • the inner diameter of the ring-shaped support element 400 may correspond approximately to the inner diameter of the frame element 300.
  • the ring-shaped support element 400 may comprise a hinge portion 410 that allows a folded shape of the ring-shaped support element 400 during installation of the ring-shaped support element 400 in the recess 990.
  • the support element 400 may be folded in a compact manner so that it can be inserted in the recess 990.
  • the support element 400 is larger than the recess 990, this implementation provides a simple possibility for configuration.
  • the hinge portion 410 may be realized via a material weakening, e.g., by a respective notch, or alternatively may be realized via an element that couples a respective two-parted support element 400.
  • the bars 120 are configured to position the portion of the respective latch arm 200 interacting with the ring-shaped support element 400 (i.e., the contact portion 210) in a certain distance spaced from the frame element 300 along the installation direction D.
  • This distance essentially corresponds to the width w of the assembly structure 900, whereas in this scenario also the width of the support element 400 is taken into account.
  • this distance is a distance range from approximately 1 to 25 millimetres, or from approximately 1 to 40 millimetres, or from approximately 1 to 100 millimetres, or from approximately 35 to 100 millimetres.
  • the ring-shaped support element 400 is positioned centred in the recess 990, such that the mounting system 10 is then equally arranged centred in the recess 990.
  • Components of the mounting ring 100, respectively the mounting system 10, may be produced via injection molding. This in particular applies to the ring element 110 and the respective bars 120.
  • the recess 990 may be circular, but can of course be of other shapes as well. Depending on the dimensions of the recess 990 individual or combined implementations of the herein disclosed embodiments of the mounting ring 100, the mounting system 10 and the recessed luminaire 1 can be selected for application.
  • the assembly structure 900 may form a wall, a floor or a ceiling of a respective environment or room, whereas the assembly structure 900 has a respective recess 990 with a certain diameter.
  • the mounting system 10, and the mounting ring 100 improved insertion and installation thereof in the respective recess is provided.
  • different application scenarios of the such configured recessed luminaire 1 (and thus equally of the respective mounting ring 100 and mounting system 10) are conceivable.
  • the recessed luminaire 1 is operated as a wall-washer, a downlight luminaire, a spotlight luminaire and the like are possible.

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Abstract

A recessed luminaire (1), having a mounting system (10) comprising a mounting ring (100) for mounting a luminaire unit (20) of the recessed luminaire (1) in a recess (990) of an assembly structure (900), the assembly structure (900) having a top surface (991) and a bottom surface (992). The mounting ring (100) and the mounting system (10) are likewise configured for insertion and installation in the recess (990) in an installation direction (D). The mounting ring (100) comprises a ring element (110), wherein the ring element (110) comprises a flange portion (112) that is configured to interact with the bottom surface (992); and at least two bars (120) that are arranged on the ring element (110). Each bar (120) is configured for coupling with a latch arm (200) of the mounting system (10), wherein each latch arm (200) interacts with the top surface (991) and holds the mounting ring (100) within the recess (990). Furthermore, the mounting ring (100) comprises a plate shaped frame element (300) that is attached to the flange portion (112), wherein the frame element (300) is arranged on a surface of the flange portion (112) opposite to the surface facing the bottom surface (992) of the assembly structure (900), and wherein the frame element (300) extends the flange portion (112) distally and thus forms a contact surface for interaction with the bottom surface (992).

Description

  • The invention relates to a mounting ring for a recessed luminaire that enables installation of the luminaire in a recess of an assembly structure, such as a wall, a ceiling or a floor.
  • Recessed luminaires are usually used in lighting systems in which there is a suspended ceiling, or a corresponding wall or floor, which has a recess in which the luminaire is installed. Currently known mounting rings for recessed luminaires are integrally formed, so that the components such as the ring element and the two bars are formed integrally. The bars enable the mounting ring to be clamped, as they form the guide elements for corresponding latch arms, which interact with an inner side (top surface) of a respective assembly structure, and thus press a flange-like section of the ring element against the visible outer side (bottom surface) of the mounting surface, thereby fixing the mounting ring. The combination of the latch arms and the mounting ring hereby form a mounting system.
  • The general principle of installation of recessed luminaires via a mounting ring that is inserted in a recess prior to coupling the luminaire unit of the recessed luminaire thereto is described in EP 3 141 799 B1 .
  • Such a currently known mounting ring and such a known mounting system are shown in Figure 11. The mounting ring 1100 hereby comprises a ring element 1110 that comprises a flange portion 1112 that is configured to interact with the bottom surface of the assembly structure, and two bars 1120 that are arranged on the ring element 1110. The mounting ring 1100 is hereby integrally formed, and protrudes from a circular base portion 1111 of the mounting ring 1100. The mounting system 1010 further comprises respective latch arms 1200 that are coupled to the respective bars 1120, and are hereby height-adjustable along the height of the bars 1120, such that they can be moved to an operation position where they interact with the top surface and hereby press the flange portion 1112 of the ring element 1110 against the bottom surface, achieving a clamped fixation of the mounting ring 1100 and thus of the mounting system 1010. The height-adjustability is hereby realized via coupling elements 1121 that are arranged on an outwardly facing surface of each bar 1120. Hereby the latch arms 1200 are operable by a user via handles 1230 for pushing the respective latch arm 1200 downwardly towards the ring element 1110, such that a contact portion 1210 of the respective latch arm 1200 comes in contact with the top surface of the assembly structure.
  • With modernization of existing lighting systems often older recessed luminaires are exchanged with more modern ones. However, such known modern recessed luminaires generally have smaller dimensions than the older recessed luminaires. Hence, the existing recesses of respective assembly structures may not be reused, as the diameter of the recess is too large. Hence, currently known recessed luminaries and their mounting system and thus their mounting ring per se are inflexible in terms of adaptability of the mounting ring / mounting system to given scenarios. Currently known workarounds with additional elements being placed between the flange portion and the bottom surface of the assembly structure, do not have a nice appearance in particular with regard to matching colours of the respective setup and are further unstable.
  • Thus, the invention is concerned with the task of providing an improved mounting ring, and further a respective improved mounting system, and a respectively improved recessed luminaire, with a flexible configuration and adjustability concerning installation thereof. This task is solved by the mounting ring according to independent claim 1, respectively the mounting system according to independent claim 11, and respectively the recessed luminaire according to independent claim 15. The invention is defined in the respective independent claims. Additional features of the invention are provided in the respective dependent claims.
  • According to the invention a mounting ring of a recessed luminaire is provided. The mounting ring is hereby configured for mounting a luminaire unit of the recessed luminaire in a recess of an assembly structure, the assembly structure having a top surface and a bottom surface. The mounting ring is further configured for insertion in the recess in an installation direction, and the mounting ring comprises:
    • a ring element, wherein the ring element comprises a flange portion, wherein the flange portion is configured to interact with the bottom surface; and
    • at least two bars, wherein each bar is arranged substantially perpendicularly on the ring element projecting substantially parallel in installation direction from the ring element over a height, and each bar is configured for coupling with a latch arm that interacts with the top surface or with a ring-shaped support element that is arranged on the top surface, and holds the mounting ring within the recess;
    • a plate shaped frame element that is attached to the flange portion, wherein the frame element is arranged on a surface of the flange portion opposite to the surface facing the bottom surface of the assembly structure, and wherein the frame element extends the flange portion distally and thus forms a contact surface for interaction with the bottom surface.
  • With the such configured mounting ring an utmost flexible and situation-related operable mounting ring is achieved, that allows for a flexible and situation-related installation of a recessed luminaire in a respective recess. Hereby, different implementations of the plate shaped frame element may be provided depending on the respective installation situation, and in particular the dimensions of the respective recess. Hence, different assembly situations are manageable. In particular with the frame element, different shapes and dimensions of the recess are manageable, whereas the same luminaire unit can be mounted within the mounting ring, respectively the mounting system, whereas the frame element covers the excessive gaps of the respective recess, and further provides a contact point on the bottom side of the assembly structure. Hence, with the such provided mounting ring operational flexibility is highly improved, and retrofitting of recessed luminaires in existing recesses are enabled. The such provided mounting ring, achieves covering a respective recess with an integrated design, having an uniform appearance for a user, as from below only a respective bottom surface of the frame element is visible. Also less components are required resulting in a cost- and material reduction. Further, a slim design is achieved.
  • Moreover, a mounting system of a recessed luminaire is provided. Likewise, the mounting system is for installing a luminaire unit of the recessed luminaire in a recess of an assembly structure, the assembly structure having a top surface and a bottom surface. The mounting system per se is also configured for installation in the recess in an installation direction. The mounting system hereby comprises:
    • a mounting ring according to any herein described or shown exemplary implementations of a mounting ring according to the invention; and
    • at least two latch arms, wherein each latch arm is arranged on one of the bars of the mounting ring and is movable from a mounting position into an operating position, whereas each latch arm is movable along the bars height to reach the operating position.
  • Hereby, the at least two bars of the mounting ring allow for a height-adjustable positioning of their respective latch arm, wherein the respective latch arms are configured to interact with the top surface or with a ring-shaped support element that is provided on the top surface in the operating position, clamping the mounting system inside the recess frame element of the mounting ring interacting with the bottom surface.
  • The such configured mounting system benefits from the respective configured mounting ring analogously - as previously mentioned. Hereby, the mounting system is operable in various scenarios, providing a flexibility in terms of installation of the system.
  • Furthermore, a recessed luminaire for installation within a recess of an assembly structure is proposed. Hereby the assembly structure still has the top surface and the bottom surface, as previously mentioned. The recessed luminaire hereby comprises:
    • a luminaire unit, having a housing and light emission elements; and
    • a mounting system according to any herein described or shown exemplary implementations of a mounting system, wherein the luminaire unit is coupled to the mounting system.
  • The such configured recessed luminaire benefits from the respective configured mounting system, respectively the mounting ring analogously - as previously mentioned. Hereby, the recessed luminaire is operable in various scenarios, providing a flexibility in terms of construction and installation of the luminaire.
  • Optionally, the frame element is attached to the flange portion via an ultrasonic soldering coupling, and/or via an adhesive coupling, and/or a soldering coupling, and/or a welding coupling. The such configured mounting ring has a further increased stability. The coupling via ultrasonic soldering hereby is preferred as it provides an utmost durable and stable connection.
  • Optionally, the frame element comprises a number of connection portions that are arranged proximal on the frame element on the surface of the frame element facing the ring element, wherein these connection portions are positioned in proximity of the flange portion. These connection portions are brought into contact with the latch portion of the ring element, providing a contact surface for coupling. In particular, the connection portions are preferably configured to enlarge and define a respective coupling area of the coupling between the latch portion and the frame element. In particular the connection portions are configured for ultrasonic soldering, such that the latch portion and the connection portions of the frame element merge during soldering.
  • Optionally, the flange portion may be formed by a continuous and smooth surface, or may alternatively be formed by a holey surface provided with holes, whereby the holes are in particular plastering holes. In a preferred implementation the holey surface is considered for coupling, as the such configured surface further improves stability, durability and stiffness of the coupling. In particular concerning a coupling via ultrasonic soldering the frame element is preferably attached to a flange portion having a holey surface (further preferred via the respective connection portions).
  • Optionally, the frame element has an outer diameter of approximately 100 millimetre, or 150 millimetre, or 200 millimetre, or 250 millimetre, or any diameter in-between. This further improves retrofitting a recessed luminaire in a given (too) large recess, where the recess diameter extends the outer diameter of the flange portion, wherein depending on the dimensions a respective frame element is selected. Further preferably the frame element has an inner diameter essentially corresponding to the inner diameter of the ring element. This allows for an easy fitting of the luminaire unit inside the mounting ring / mounting system.
  • Optionally, the ring element further comprises a circular base portion, wherein the circular base portion extends essentially parallel to the installation direction, and wherein the flange portion protrudes substantially distally from the circular base portion in a direction substantially perpendicularly to the installation direction. The such configured structure of the mounting ring is utmost durable and stable, and provides an improved stiffness.
  • Optionally, each bar is coupled with the ring element via a coupling mount. With the provision of specific elements for coupling of the separate components of the mounting ring, the assembly of the mounting ring and also durability of the mounting ring is further improved. Hereby the coupling mount may especially be built for a proper fitting attachment of the respective bar to the ring element, such that the respective bar is coupled utmost stiff and a play or even a jiggle of the bar is avoided. Preferably the coupling mount allows for a latching connection. This further eases coupling and decoupling of the individual bars from the mounting ring, and thus improves assembly and maintenance of the mounting ring. Further preferably the coupling mount is arranged on the base portion. This further improves durability and stiffness of the connection between the bars and the ring element.
  • Optionally, each bar has coupling elements for coupling to a latch arm, the coupling elements enabling a height-adjustable positioning of the respective latch arm along the height of the respective bar. Hereby, an utmost simple yet effective holding and positioning of the respective latch arms is provided, ensuring a proper coupling between the components and thus improving stability of the mounting ring. Further preferably the coupling elements of the bar are formed by a height-adjustable latching mechanism. This further improves operability of the mounting system, and thus eases installation of the mounting ring. Also installation of the mounting system is simplified.
  • Optionally, the flange portion has a width of approximately 5 to 10 millimetres. This width allows for a suitable contact face for connection with the frame element. Of course any width in-between, i.e., approximately 5, 6, 7, 8, 9, 10 millimetres are conceivable.
  • Optionally, the mounting ring, and in particular the ring element and further particular the flange portion, has an (inner) diameter in a range of approximately 50 to 250 millimetre, in particular in a range of approximately 50 to 100 millimetre, or 100 to 150 millimetre, or 150 to 200 millimetre, or 200 to 250 millimetre; and preferably in a range of 55 to 95 millimetre, or 105 to 145 millimetre, or 155 to 195 millimetre, or 205 to 245 millimetre; and further preferably has a diameter of 50 millimetre, 55 millimetre, 60 millimetre, 65 millimetre, 90 millimetre, 95 millimetre 100 millimetre, or 105 millimetre, or 145 millimetre, or 150 millimetre, or 155 millimetre, or 195 millimetre, or 200 millimetre, or 205 millimetre, or 245 millimetre, or 250 millimetre. With these configuration of the mounting ring flexibility is further improved, as a variety of recess dimensions are operable. With the frame element attached thereto a huge variety from small to big recesses can be used for installation of a respective recessed luminaire. Hence, flexibility of assembly and installation of the recessed luminaire is further improved.
  • Optionally, the mounting ring is for mounting in the recess of the assembly structure that is formed by a wall, by a ceiling, or by a floor. Hence, no limitations are given in terms of positioning and orientation of the recessed luminaire. The luminaire can thus be a wall-mounted luminaire, a ceiling-mounted luminaire, or a floor-mounted luminaire. Hence, the luminaire can be used for a downlight, spotlight, or wall-washer scenarios, or the like.
  • Optionally, the recess is circular, and in particular the frame element is further circular and thus ring shaped. This further eases installation of the mounting ring, and hence of the mounting system. In scenarios where the recess is squared the aforementioned plate shaped circular frame can be used to cover the excess corner portions of the recess. Preferably the mounting ring, and thus the mounting system have a circular base area.
  • However, the frame element may also have a squared or oval base area, while maintaining the frame / ring shape for insertion of the respective luminaire unit.
  • Optionally, the mounting ring is made out of plastic, and in particular the frame element is made out of plastic. This allows for an utmost cheap but still steady, durable and stiff configuration of the mounting ring, and the mounting system. Also, the weight of the respective mounting ring, mounting system and thus of the recessed luminaire can be reduced with this implementation.
  • Optionally, the components of the mounting ring are formed by injection molding. In particular the ring element and the frame element (as well as potentially the bars) can be formed by injection molding. This allows for a cost- and material-saving, and further repeatable production of the mounting ring.
  • Optionally, the mounting system comprises a ring-shaped support element, wherein the ring-shaped support element is positioned on the top surface of the assembly structure of the recess. Hereby the respective latch arms are configured to interact with the ring-shaped support element in the operating position clamping the mounting system inside the recess with the frame element of the mounting ring interacting with the bottom surface. This ring-shaped support element is necessary when the configuration of the latch arms are not suitable to get in contact with the top surface of the assembly structure, i.e., when the recess is too big. The ring-shaped support element hereby bridges the respective gap and allows for a stable and secure contact of the latch arm, such that a durable clamping of the mounting system is ensured.
  • Optionally, the ring-shaped support element has an outer diameter larger than the recess and further has an inner diameter smaller than the recess, providing a support surface for interaction with the respective latch arms. Hereby a further stable arrangement is ensured.
  • Optionally, the ring-shaped support element is positioned centred in the recess. This provides a further stable arrangement.
  • Optionally, the outer diameter of the ring-shaped support element approximately corresponds to the outer diameter of the frame element. This further increases stability and operational safety of the clamping performed by the mounting system, and further eases installation of the mounting system..
  • Optionally, the inner diameter of the ring-shaped support element approximately corresponds to the inner diameter of the frame element. This further improves operational safety of the clamping performed by the mounting system, and further eases installation of the mounting system.
  • Optionally, the ring-shaped support element comprises a hinge portion that allows a folded shape of the ring-shaped support element during installation of the ring-shaped support element in the recess. This provides an utmost compact form of the support element, further easing installation thereof.
  • Further optionally, the bars are configured to position the portion of the respective latch arm interacting with the ring-shaped support element in a certain distance spaced from the frame element along the installation direction. Hereby different heights of the respective latch arm relative to the mounting ring, and in particular relative to the flange portion, are achievable, such that different thicknesses / width of the assembly structure can be dealt with. As the flange portion and the respective portion of the latch arm are the interacting elements of the mounting system concerning the clamped fixation of the mounting ring / mounting system within the recess, the distance in-between these portions along the installation direction corresponds to the respective width of the assembly structure. Hence, it is further beneficial to allow for a certain range, to further increase flexibility. Preferably, this distance is a distance range from approximately 1 to 25 millimetre, or from approximately 1 to 40 millimetre, or from approximately 1 to 100 millimetre, or from approximately 35 to 100 millimetre.
  • Optionally, each latch arm of the mounting system comprises a coupling portion and a contact portion, wherein the coupling portion is the portion of the latch arm being attached to the respective bar, and the contact portion is arranged on an end of the latch arm opposite to the coupling portion, whereas the contact portion is the portion of the respective latch arm interacting with the top surface of the assembly structure or the respective support element that is positioned on the top surface of the assembly surface. The such configured latch arm further facilitates assembly of the mounting system and installation of the mounting system in the recess.
  • Optionally, the mounting ring further comprises a part of a reversible securing mechanism that is configured to interact with a respective counterpart that is arranged on the luminaire unit. Hereby preferably the luminaire unit is coupled to the mounting system by means of a reversible securing mechanism, in particular by means of a bayonet connection. This respectively allows for an utmost easy and flexible coupling of the luminaire unit of the recessed luminaire with the mounting ring, and thus with the mounting system, such that installation of the recessed luminaire is further facilitated.
  • Optionally, the luminaire unit of the recessed luminaire is inserted in the mounting system after the mounting system is installed in the recess. With this method, of first inserting the mounting ring, then positioning the latch arms in the operation position for a fixed arrangement of the mounting system within the recess and subsequently coupling the luminaire unit, to form the complete recessed luminaire, an utmost easy installation process is realized. Hereby prior to inserting the mounting ring, the respectively required bars (with their respective configuration, in particular in terms of height) can be selected and coupled to the ring element. Hence, an utmost flexible recessed luminaire and respective mounting system / mounting ring thereof are provided.
  • The invention is explained in detail below with reference to examples of embodiments and with reference to the drawing. The figures show:
  • Figure 1
    a schematic illustration in an angled view from above of an exemplary embodiment of a recessed luminaire according to the invention comprising an exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention;
    Figure 2A
    a schematic illustration in an angled view from above of an exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with three bars and respective latch arms;
    Figure 2B
    a schematic illustration in an angled view from above of an other exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with two bars and respective latch arms;
    Figure 2C
    a schematic illustration in an angled view from above of a further exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with two bars and respective latch arms;
    Figure 2D
    a schematic illustration in an angled view from below of the exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with two bars and respective latch arms known from Figure 2B;
    Figure 2E
    a schematic illustration in an angled view from below of the exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with two bars and respective latch arms known from Figure 2C;
    Figure 3A
    a schematic illustration in a side view of an exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention, wherein the latch arms of the mounting system are in a mounting position;
    Figure 3B
    a schematic illustration in a side view of an exemplary embodiment of a recessed luminaire comprising an exemplary embodiment of a mounting system known from Figure 3A, wherein the latch arms of the mounting system are in an operation position, and the luminaire unit is inserted in the mounting system;
    Figure 4
    an enlarged view of the coupling region of an exemplary embodiment of a mounting system according to the invention with the respective assembly structure;
    Figure 5
    a schematic illustration in an angled view from above of an exemplary embodiment of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with a plate shaped frame element attached to the flange portion, a ring-shaped support element arranged at a top surface of the assembly structure, bars and respective latch arms, in a transparent view;
    Figure 6A
    schematic illustrations in an angled view from above of different exemplary embodiments of a mounting system according to the invention having an exemplary embodiment of a mounting ring according to the invention with a plate shaped frame element attached to the flange portion, a ring-shaped support element arranged at a top surface of the assembly structure, bars and respective latch arms;
    Figure 6B
    schematic illustrations in an angled view from below of different exemplary embodiments of a mounting system according to the invention, as known from Figure 6A;
    Figure 7
    a schematic illustration in an angled view from above of an exemplary embodiment of a mounting ring according to the invention having a plate shaped frame element arranged at the flange portion;
    Figure 8
    an enlarged view of the coupling region of the flange portion and the plate shaped frame of an exemplary embodiment of a mounting ring according to the invention;
    Figure 9
    a schematic illustration in an angled view from above of an exemplary embodiment of a mounting ring according to the invention having a plate shaped frame element attached to the flange portion;
    Figure 10
    a schematic illustration in an angled view from above of an exemplary embodiment of a plate shaped frame element;
    Figure 11
    a schematic illustration in an angled view from above of a known mounting system having a known mounting ring
    Figure 12Aa
    schematic illustration in an angled view from below of an exemplary first step of the coupling process between a respective bar and a respective ring element of an exemplary embodiment of a mounting ring according to the invention;
    Figure 12B
    a schematic illustration in an angled view from below of an exemplary second step of the coupling process between a respective bar and a respective ring element of an exemplary embodiment of a mounting ring according to the invention;
    Figure 12C
    a schematic illustration in an angled view from below of an exemplary third step of the coupling process between a respective bar and a respective ring element of an exemplary embodiment of a mounting ring according to the invention.
  • Figure 1 shows a recessed luminaire 1 with the luminaire unit 20 being installed in the mounting ring 100, respectively in the mounting system 10. The Figures 2A to 2E show different exemplary embodiments of mounting systems 10 further showing an exemplary variety of implementations of the bars 120 with regard to their heights h, h1, h2, h3. Hereby each bar 120 may be a separate element that is preferably toollessly attached to the ring element 110 of the mounting ring 100. Figures 3A and 3B focus on an exemplary installation process of an exemplary mounting ring 100, respectively of an exemplary mounting system 10, inside a recess 990 of a respective assembly structure 900. While not explicitly shown in Figures 3A and 3B the same process is performed with the frame element 300 (and potentially the support element 400) provided, as indicated in Figures 4 and 5. Figure 4 further provides an enlarged detail view of the coupling between the ring element 110 and the respective bars 120, showing an exemplary implementation of the coupling mount 113. An exemplary coupling process for attaching a respective separate bar 120 to the ring element 110 is shown in detail in Figures 12A to 12C. Also, the clamping of the mounting ring 100, respectively of the mounting system 10 at the assembly structure 900 is shown in Figure 4 and 12C, as the interaction between a respective latch arm 200, that is coupled to a respective bar 120, and the optional ring-shaped support element 400, that is arranged on the top surface 991 of the assembly structure 900, as well as the coupling of the flange portion 112 with the plate shaped frame element 300 that is in contact with the bottom surface 992 of the assembly structure 900 is illustrated. Hereby the plate shaped frame element 300, and the latch arm 200, respectively the latch arm 200 in combination with the ring-shaped support element 400 perform a clamping fixation of the mounting system 10 inside the recess 990.
  • Furthermore the plate shaped frame element 300 being attached to a lower surface of the flange portion 112 of the mounting ring 100 is shown in detail in Figures 4 and 8. Hereby, in the exemplary embodiment, the plate shaped frame element 300 is welded by ultrasonic soldering 500 onto the flange portion 112, forming an enlarged flange portion 112x. The ultrasonic soldering coupling 500 between the flange portion 112 and the frame element 300 is further shown in more detail in Figure 8. The frame element 300 is separately shown in Figure 10. In the shown embodiments the frame element 300 is of circular shape, however other shapes are also conceivable, such as an oval or rectangular shape. With the plate shaped frame element 300 the recessed luminaire 1 may be inserted in a recess 990 of the assembly structure 900 that has a larger diameter than the outer diameter of the flange portion 112, hence a coupling between the bottom surface 992 of the assembly structure 900 and the top surface 991 of the flange portion 112 would not be possible over the whole length of the flange portion 112. Depending on the size of the latch arms 200 a counterpart is necessary on the top surface 991 of the assembly structure 900 as well, such that the clamping can be reliably performed. Hereby - if the latch arms 200 are not long enough to get in contact with the top surface 991, a ring-shaped support element 400 may be inserted into the recess 990 and placed on the top surface 991, such that the inner diameter of the contact face for the respective latch arms 200 is reduced, as illustrated in Figure 4, as well as in Figures 5, 6A and 6B. Figures 7 to 9 further illustrate the attachment of the plate shaped frame element 300 to the flange element 112.
  • The shown embodiments hence provide implementations of the mounting system 10, respectively of the mounting ring 100, and thus as well of the recessed luminaire 1 that improve operation flexibility thereof.
  • The different implementations of the mounting system 10, and of the mounting ring 100, as well as the recessed luminaire 1, are compatible with each other but are not necessarily combined with each other. However, they may synergistically interact with each other when combined.
  • The application hereby focuses on structures of the mounting system 10, respectively of the mounting ring 100, to improve the insertion and installation of the mounting ring 100, respectively of the respective mounting system 10, in a recess 990, to further simplify installation of a respective recessed luminaire 1, whose luminaire unit 20 is attached to the respective mounting system 10 after it is installed within the recess 990. Hereby focus lays in particular on retrofitting such recessed luminaires 1 into recesses 990 that are too large for common recessed luminaires. Further, the exemplary implementation with bars 120 of different heights, and in particular bars 120 that are separate components that may be (reversibly) attached to the ring element 110 may additionally improve retrofitting of respective luminaires, and allow for operational flexibility of the respective mounting ring 100, mounting system 10 and luminaire 1.
  • Figure 1 shows a complete setup of a recessed luminaire 1 according to an exemplary embodiment. Hereby the luminaire unit 20 is attached to the mounting system 10. As shown in other Figures, the mounting system 10, and in particular the mounting ring 100, comprises a component of a securing mechanism 117, in particular of a reversible securing mechanism 117. In the shown exemplary embodiments this securing mechanism 117 is realized via a bayonet connection 117. Hereby the luminaire unit 20 comprises respective corresponding components of the securing mechanism 117, such as a bolt or the like, that is configured for interaction with the recess at an inner surface of the mounting ring 100, as shown, e.g., in Figures 2A to 2E, 7 or 9.
  • The mounting ring 100, respectively the mounting system 10, is inserted in the recess 990 in an installation direction D, as illustrated in particular in Figures 3A and 3B. The luminaire unit 20 is then likewise inserted in the installation direction D into the installed mounting system 10, where it is then fastened via the securing mechanism 117.
  • In general, the mounting system 10 comprises the mounting ring 100 (in any herein disclosed embodiment) and the respective latch arms 200 that interact with the bars 120 in order to clamp the mounting ring 100, respectively the mounting system 10, inside the recess 990. Hereby each latch arm 200 is arranged on one of the bars 120 and is movable from a mounting position M into an operating position O, whereas each latch arm 200 is movable along the bars 120 height h, h1, h2, h3 to reach the operating position O. Thus, the bars 120 of the mounting ring 100 allow for a height-adjustable positioning of their respective latch arm 200, wherein the respective latch arms 200 are configured to interact with the top surface 991 in the operating position O, clamping the mounting system 10 inside the recess 990 with the enlarged flange portion 112x - realized via the frame element 300 being attached to the flange portion 112 - interacting with the bottom surface 992 of the recess 990. The recessed luminaire 1 comprises the luminaire unit 20, having a housing and light emission elements, and the mounting system 10 (in any herein disclosed embodiment), wherein the luminaire unit 20 is coupled to the mounting system 10.
  • The mounting ring 100 comprises the ring element 110, and at least two bars 120 that are arranged on the ring element 110. As shown in Figure 2A (and in the respective right-hand-side exemplary embodiments of Figures 6A and 6B) also an implementation with three bars 120 is conceivable. Likewise - and in particular with a further growing diameter of the recessed luminaires 1 - implementations with four bars 120, and so forth, are also conceivable. The other exemplary implementations shown in Figures 1, 2B to 2E, 3A, 3B, 5, 6A, 6B, 7 and 9, show respective implementations with two bars 120. Further shown, each bar 120 is attached to the ring element 110 as a separate element, whereas this attachment is performed toollessly.
  • The ring element 110 hereby has a flange portion 112, that is configured to interact with the bottom surface 992, wherein in the shown exemplary embodiments of Figures 1, 4, 5, 6A, 6B, 7, 8 and 9 the respective mounting rings 100 are designed for installation in a recess 990 that has a larger diameter than the outer diameter of the flange portion 112, such that in these scenarios the aforementioned plate shaped circular frame element 300 is used to realize the interaction with the bottom surface 992. Hence, the circular frame element 300 hereby enlarges the flange element 112, resulting in an enlarged flange portion 112x that is configured to interact with the bottom surface 992.
  • With regard to the shown embodiments of the mounting ring 100, the ring element 110 may comprise a circular base portion 111 that extends essentially parallel to the installation direction D. Hereby the flange portion 112 protrudes substantially distally from the circular base portion 111 in a direction substantially perpendicularly to the installation direction D, and forms a contact surface (upper surface of the flange portion 112) for interaction with the bottom surface 992 - or at least forms an attachment surface (lower surface of the flange portion 112) for attaching the previously mentioned frame element 300 thereto for interaction with the bottom surface 992.
  • Each bar 120 may be arranged substantially perpendicularly on the ring element 110 projecting substantially parallel in installation direction D from the ring element 110 over a height h, h1, h2, h3. As in particular illustrated in the various exemplary embodiments of Figures 2A to 2E different heights h, h1, h2, h3 of the bars 120 are possible. While the exemplary implementations shown in Figures 2A to 2E tend to be used only in special exceptional situations, these illustrations serve mainly to show that the bars 120 can have different heights h, h1, h2, h3. The design of the ring element 110 with the bars 120 mounted on it as separate components makes the mounting ring 100, and therefore the mounting system 10, particularly flexible. This makes it particularly easy to react to correspondingly limited installation depths or particularly thick or thin thicknesses w of the assembly structure 900 and to create and use a correspondingly designed mounting ring 100 or mounting system 10.
  • Hence, bars 120 of different heights h, h1, h2, h3 are couplable to the ring element 110. Preferably the height h, h1, h2, h3 of a bar 120 is in the range of 20 to 120 millimetre, preferably in the range of 25 to 100 millimetre, further preferably 20, 25, 30, 35, 40, 45, 50, 95, 100, 105, or 110 millimetre.
  • An example in which bars 120 with different heights are actually used in a mounting ring 100 is a scenario in which the installation depth of the assembly structure 990 (i.e. the distance of the assembly structure 990 from an underlying surface) and/or the thickness w of the assembly structure 990 itself is not constant, whereby the different heights h, h1, h2, h3 of the bars 120 can be used to react to this in a particularly flexible and simple manner.
  • As shown in the figures each bar 120 is configured for coupling with a latch arm 200 that interacts with the top surface 991 and holds the mounting ring 100 within the recess 990. In embodiments where the recessed luminaire 1 is inserted in a too large recess 990, i.e., with a recess diameter extending the outer diameter of the flange portion 112, it usually is further required to extend the top surface 991 via a respective ring-shaped support element 400 of the mounting system 10, as previously mentioned. In embodiments where the respective latch arms 200 are long enough to reach the top surface 991 even in the respective scenario where the outer diameter of the flange portion 112 is smaller than the diameter of the recess 990, the addition of the respective ring-shaped support element 400 may not be necessary.
  • Furthermore, as shown in the exemplary embodiments, each bar 120 may have coupling elements 121 for coupling with a respective associated latch arm 200. Hereby, the coupling elements 121 enable a height-adjustable positioning of the respective latch arm 200 along the height h, h1, h2, h3 of the respective bar 120. In particular the coupling elements 121 of a respective bar 120 may be formed by a height-adjustable latching mechanism, as exemplary illustrated in more detail in the enlarged view of Figure 4.
  • In the shown exemplary embodiments each bar 120 has two slim side faces extending along the height h, h1, h2, h3 of a respective bar 120, wherein these slim side faces form guide rails 129 for guiding a respective latch arm 200.
  • As also exemplary shown, the bars 120 each may have an elongated slot 123 that extends in a direction parallel to the height h, h1, h2, h3 of the respective bar 120, whereas the elongated slot 123 may divide the coupling elements 121 of the respective bar 120, and hereby may form a duct for a guide pin 240 of a respective latch arm 200.
  • In view of the presented Figures, but in particular in view of Figure 4, it is apparent that in the shown exemplary embodiments each latch arm 200 may comprise a coupling portion 220 and a contact portion 210, wherein the coupling portion 220 is the portion of the latch arm 200 being attached to the respective bar 120, and the contact portion 210 is arranged on an end of the latch arm 200 opposite to the coupling portion 220, whereas the contact portion 210 is the portion of the respective latch arm 200 interacting with the top surface 991 of the assembly structure 900 (or at least interacting with the aforementioned ring-shaped support element 400 in the respective scenarios).
  • As shown in the enlarged view of Figure 4 the contact portion 210 may be provided with a grip surface 211 that provides a special hold of the mounting system 10 on the top surface 991, respectively on the support element 400.
  • In view of Figures 3A, 3B and 4 it is apparent that the coupling elements 121 of the bars 120 can be configured to position the portion of the respective latch arm 200 interacting with the top surface 991 (or the respective support element 400) in a certain distance spaced from the flange portion 112 along the installation direction D. In particular the coupling elements 121 hereby allow the respective latch arms 200 to latch in a respective position where the contact portion 210 of the respective latch arm 200 contacts the top surface 992 (or at least the support element 400 that is arranged on the top surface 992). Hereby the distance between the portion of the respective latch arm 200 interacting with the top surface 991 (or the respective support element 400) - i.e., the contact portion 210 - and the flange portion 112 essentially corresponds to the width w of the respective assembly structure 900. Hence, different bars 120 (in particular differing with regard to their height h, h1, h2, h3) allow for different width w of the assembly structure 900. It may be in particular desired to be able to handle certain distance ranges (respectively to enable a clamping on different assembly structures 900 with respective width w, and thus provide an adaptability in terms of the width range w of the assembly structure 900). Hereby, this distance (respectively this width w) preferably is a distance range (respectively a width range w) from approximately 1 to 25 millimetre, or from approximately 1 to 40 millimetre, or from approximately 1 to 100 millimetre, or from approximately 35 to 100 millimetre. This distance hereby further relates to the corresponding setting height of the respective bar 120 for coupling with the respective latch arm 200, whereas the difference of the possible range of the setting height of the respective bar 120 minus the height of the respective latch arm 200 corresponds to the width w of the respective assembly structure 900, as shown in Figure 4. Hereby it is also conceivable that the respective range of the setting height may be in the range from 1 to 25 millimetre, or from 1 to 40 millimetre, or from 35 to 100 millimetre, or the like.
  • Furthermore, each latch arm 200 may also comprise respective guide elements 230 for guiding the movement along the height h, h1, h2, h3 of the respective bar 120, wherein preferably the guide elements 230 interact with the guide rails 129 of the respective bar 120.
  • Also shown in the exemplary embodiments is the exemplary configuration of the latch arm 200 comprising a guide pin 240 that interacts with the respective bar 120, and preferably interacts with the respective slot 123 of the respective bar 120. Hereby, the guide pin 240 may further be configured to not only guide the movement of the latch arm 200 in a direction parallel (or inverse) to the installation direction D but also to realize a decoupling of the respective latch arm 200 from the coupling elements 121 of the respective bar 120 upon actuation of the guide pin 240. Hence, a former configured positioning of the respective latch arm 200 can be re-adjusted either by further moving the latch arm 200 towards the top surface 991 (respectively towards the aforementioned ring-shaped support element 400 in the respective scenario) or by moving the latch arm 200 in the installation direction D, i.e., upwardly to release a former performed clamping of the mounting ring 100, respectively of the mounting system 10.
  • The position of the latch arm 200 being in contact with the top surface 991 (respectively the support element 400), and hereby clamping the mounting ring 100, respectively of the mounting system 10 in the recess 990 is also referenced as the operation position O of the respective latch arm 200. This is in particular shown in Figure 3B.
  • The mounting position M of a respective latch arm 200 - as exemplary shown in Figure 3A - is a position of the latch arm 200 where mounting of the mounting system 10 inside the recess 990 is enabled. As exemplary shown in Figure 3A this may be realized via a back folding of the respective latch arm 200 in a proximal direction, i.e., towards the center of the mounting ring 100, respectively the mounting system 10. With this exemplary implementation it is achieved that the mounting system 10 can be further easily inserted in a respective recess 990 without colliding with respective edges of the assembly structure 900 that may prevent an insertion of the mounting system 10. Hence, the outer dimensions of the respective mounting system 10 in the mounting position M of the latch arms 200 may be mainly influenced by the mounting ring 100, such that the insertion is further simplified.
  • In this regard, the shown bars 120 each have a holding mechanism on their top side 122. The holding mechanism is for holding a respective latch arm 200 in its respective mounting position M, wherein the top side 122 is arranged opposite to the side of the bar 120 being connected to the ring element 110. Hereby, in a respective mounting position M of the latch arms 200 the diameter of the mounting system 10 at the largest point may be realized by the plate shaped circular frame element 300 attached thereto, forming an enlarged flange portion 112x. Also in the operation position O of the latch arms 200 the diameter of the mounting system 10 at the largest point may still be realized by the frame element 300 (respectively an analogously dimensioned ring-shaped support element 400).
  • As in particular shown in the Figures 3A and 3B, and their synopsis, the holding mechanism may further be configured to realize a folding movement of the respective latch arm 200 from its mounting position M into an outwardly facing position where the respective latch arm 200 is movable along the height h, h1, h2, h3 of the respective bar 120. Hereby, upon movement of the respective latch arm 200 along the height h, h1, h2, h3 of the respective bar 120 (i.e., in essentially inverse direction to the installation direction D) the latch arm 200 is brought into its respective operation position O, where it interacts with the top surface 991 (or the support element 400 that interacts with the top surface 991). As exemplary shown the holding mechanism may be configured to realize the folding movement by a tilt of the latch arm 200. Hereby different tilt angles are conceivable, wherein in particular the tilt starting from the mounting position M may have an angle of approximately 270°, of approximately 180°, of approximately 160°, or of any angle between 160° and 270°. As shown in the Figures 3A and 3B the tilt angle realized in the illustrated exemplary implementation is approximately 180°.
  • Figure 5 shows an exemplary implementation of the mounting system 10, whereas the mounting system 10 is inserted into a recess 990 where the use of the support element 400 is necessary, as the recess diameter is too large for the mounting ring 100, and thus the mounting system 10. This scenario in particular is given, when old recessed luminaires are replaced with modern recessed luminaires, that require particular less space - in these scenarios the support element 400 and the frame element 300 allow for a fitting installation of such a modern recessed luminaire 1, as the excessive gaps of the recess 990 are bridged on the top surface side via the support element 400 and on the bottom surface side via the frame element 300. This also improves aesthetics of the recessed luminaire 1.
  • In particular shown in Figure 4 each bar 120 may be reversibly coupled to the base portion 111, whereas as displayed the bars 120 can be coupled with the ring element 110 via a respective coupling mount 113 that is positioned on the base portion 111 in the presented exemplary embodiment. The coupling mount 113 allows for a particular simple and straightforward connection between the respective bar 120 and the ring element 110, and further improves stiffness of the structure of the mounting ring 100. The bar 120 hereby comprises respective conjunction elements 124 at its lower end portion that is for coupling with the ring element 110. These conjunction elements 124 hereby interact with the coupling mount 113 for a durably and stiff coupling. The bar 120 may be inserted into the respective coupling mount 113 with the conjunction elements 124 ahead, whereas further the conjunction elements 124 may interact with the ring element 110 preferably in a latching manner, e.g., via a snap-in fit, and thus secure the bar 120. As can be seen in Figure 4 the coupling mount 113 may in particular allow for a latching connection between the respective bar 120 and the ring element 110, which configures the connection in particular stiff and steady, but also preferably reversible. The coupling mount 113 may hereby further comprise an actuator for decoupling the respective connected bar 120 from the ring element 110.
  • Figures 12A, 12B and 12C show an exemplary embodiment of such a coupling process between a respective exemplary embodiment of a separate bar 120 and a respective exemplary embodiment of a ring element 110 of a mounting ring 100. Hereby it is shown that the bar 120 may be installed from a bottom side of the mounting ring 100 (wherein the bottom side hereby is the side of the mounting ring 100, respectively the mounting system 10, respectively the luminaire 1 visible for a user when installed in the recess 990). The coupling mount 113 may be formed as a duct, having locking elements. Hereby the bar 120 first enters the coupling mount 113 of the ring element 110 with its top side 122 - as shown in Figure 12A -, wherein the entire bar 120 subsequently passes through the coupling mount 113 - as shown in Figure 12B. With the conjunction elements 124 of the bar 120 reaching the bottom side of the coupling mount 113, and interlocking with the respective elements of the coupling mount 113, the coupling process is completed - as shown in Figure 12C. The bar 120 is then fixedly attached to the ring element 110 with the such configured coupling process and the interaction of the conjunction elements 124 and the coupling mount. This is applicable to the various implementations of the bar 120 having different heights h, h1, h2, h3. As further exemplary shown the coupling mount 113 may have a release element to release the connection between the bar 120 and the ring element 110, such that the connection is reversible. The guide rails 129 formed by the slim side faces of a respective bar 120 may further aid in the installation process of the respective bar 120. For removing a previously installed bar 120 the aforementioned steps are to be performed in reverse, such that the bar 120 is moved in a downward direction.
  • Depending on the size of the mounting ring 100 the number of coupling mounts 113 may be selected. As exemplary illustrated in Figures 6A and 6B and the synopsis of Figures 2A to 2E, a larger mounting ring 100 is equipped with a larger number of bars 120, and thus may consequently be equipped with a larger number of coupling mounts 113. However, it is also conceivable, that a smaller mounting ring 100 is equipped with a higher number of bars 120 (and thus possibly coupling mounts 113) if a particular heavy luminaire unit 20 (e.g., due to a heavy heat sink or other electronic equipment) is to be inserted in the respective mounting ring 100 - and vice versa. Likewise the respective bars 120 can be selected with regard to their height h, h1, h2, h3 and their respective possible range of their setting height of the coupling with the respective latch arm 200. Hence, a situational selection of the configuration of the respective mounting ring 100 is possible.
  • As also exemplary illustrated in Figures 4 and 8 the frame element 300 may provide an additional contact face for interaction with the lower side surface of a respective bar 120 further enhancing stability and stiffness of the connection between the bar 120 and the ring element 110. Hereby the conjunction elements 124 of the bar 120 may be provided with certain contact elements to not only provide a stiff coupling to the ring element 110 but also to further interact with the frame element 300.
  • As further illustrated in the different Figures the flange portion 112 may be available in different configuration. Hereby the flange portion 112 may be equipped with holes 119, and thus has a holey surface 112b, or as an alternative may be provided with a continuous and smooth surface 112a. While the smooth surface 112a is preferred in scenarios, where the flange portion 112 is visible for a user, the holey surface 112b is preferred in scenarios where the assembly structure 900, and in particular the bottom side 992 of the assembly structure 900 is to be plastered after installation of the mounting system 10, respectively of the recessed luminaire 1. Hence, the holes 119 may be plastering holes 119.
  • Both configurations of the surface of the flange portion 112 are suitable for attaching a respective plate shaped circular frame element 300. The coupling between these components may hereby be performed via an adhesive coupling, a soldering coupling, a welding coupling, or preferred via an ultrasonic soldering coupling 500. The implementation of the coupling is hereby dependent on the respective materials of the components. As the components are preferably made out of plastic material, the ultrasonic soldering coupling 500 provides an utmost durable and stiff coupling.
  • Hereby, as exemplary illustrated in Figures 1, 4, 5, 6A, 7, 8, and 9 the frame element 300 is preferably mounted on the flange portion 112 having a holey structure 112b. This further benefits durability of the coupling. As shown in Figures 4 and 8 this in particular applies with regard to an ultrasonic soldering coupling 500, as the holes 119 hereby provide a particular further beneficial conjunction between the flange portion 112 and the frame element 300. Hence, in a preferred embodiment of the frame element 300 being coupled via ultrasonic soldering 500 to the flange portion 112, a holey surface 112b is present.
  • The such configured mounting ring 100 with its flange portion 112 being coupled to a plate shaped circular frame element 300 that is arranged on a surface of the flange portion 112 opposite to the surface facing the bottom surface 992 of the assembly structure 900, thus comprises an enlarged flange portion 112x with the frame element 300 extending the flange portion 112. Hereby the frame element 300 then extends the flange portion 112 distally and thus forms a contact surface for interaction with the bottom surface 992.
  • As exemplary illustrated in Figures 6A and 6B the frame element 300 may be available in different sizes, wherein the sizes differ with regard to their diameter d, d1, d2, d3. Hereby it is conceivable that the frame element 300 may have an outer diameter d, d1, d2, d3 of approximately 100 millimetre (e.g. diameter di), or 150 millimetre (e.g. diameter d2), or 200 millimetre (e.g. diameter d3). Further preferably the frame element 300 has an inner diameter essentially corresponding to the inner diameter of the ring element 110. The diameter d, d1, d2, d3 of the frame element 300 may hereby essentially correspond to the respective diameter d, d1, d2, d3 of the support element 400, as also exemplary illustrated in Figures 4, 5, 6A, and 6B. While the frame element 300 is necessary in situations where the recess 990 is larger than the outer diameter of the flange portion 112, as otherwise a clamping at the bottom surface 992 is not possible, the necessity of the support element 400 is not always given. In particular, the necessity of the support element 400 being present is dependent on the configuration of the respective latch arm 200. Hereby implementations are conceivable where the latch arm 200 is long enough to reach the top surface 991 of the recess structure 900. However, in scenarios where the latch arm 200 is not long enough, the support element 400 is required to ensure a proper clamping of the mounting system 10, respectively the mounting ring 100, and thus of the recessed luminaire 1 inside the recess 990.
  • The flange portion 112 may have a width of approximately 5 to 10 millimetres, whereas this width is sufficient for providing a stable clamping contact to the bottom surface 992, and further is aesthetically pleasant for a user. Also with this width a sufficient surface is provided for a connection to a respective frame element 300.
  • The inner portion of the mounting ring 100 (respectively of the mounting system 10) is for accommodating the luminaire unit 20, to form the recessed luminaire 1. Hereby, the inner diameter of the mounting ring 100, and in particular of the ring element 110 and further particular of the flange portion 112 is adapted to common diameters of such luminaire units 20. In particular the respective inner diameter may be approximately in a range of 50 to 250 millimetre, in particular in a range of 50 to 100 millimetre, or 100 to 150 millimetre, or 150 to 200 millimetre, or 200 to 250 millimetre; and preferably in a range of 55 to 95 millimetre, or 105 to 145 millimetre, or 155 to 195 millimetre, or 205 to 245 millimetre; and further preferably in a diameter of 50 millimetre, 55 millimetre, 60 millimetre, 65 millimetre, 90 millimetre, 95 millimetre 100 millimetre, or 105 millimetre, or 145 millimetre, or 150 millimetre, or 155 millimetre, or 195 millimetre, or 200 millimetre, or 205 millimetre, or 245 millimetre, or 250 millimetre.
  • Figure 10 shows the plate shaped circular frame element 300 that is possibly attached to the flange portion 112 of the mounting ring 100 - depending on the respective scenario. Hereby, the frame element 300 may comprise a number of connection portions 310 that are arranged proximal on the frame element 300 on the surface of the frame element 300 facing the ring element 110, wherein these connection portions 310 are positioned in proximity of the flange portion 112. In particular six connection portions 310 are provided, with little gaps between them. This is in particular shown in Figures 4, 7, and 8. Preferably, if such connection portions 310 are present, these are used for the ultrasonic soldering connection 500 between the flange portion 112 and the frame element 300. This provides a further stable and stiff connection. The ultrasonic soldering 500 is exemplary shown in the combined view of Figures 7, 8 and 9 showing the attachment of the frame element 300 to the flange portion 112, enlarging the flange portion 112x.
  • Moreover, the frame element 300 may be provided with a projecting edge 320 that is positioned distally and thus on an outer edge of the frame element 300. In particular the projecting edge 320 may form the outer face of the frame element 300 defining the outer diameter of the frame element 300. Hereby the edge 320 (preferably slightly) projects in installation direction D towards a respective bottom surface 992, such that the projecting edge 320 is in contact with the assembly structure 900 when the mounting ring 100, respectively the mounting system 10, is installed within the recess 990. Hence, this may close off the bottom side of the recessed luminaire 1, respectively the mounting system 10, respectively the mounting ring 100, towards the assembly structure 900.
  • As further shown in various figures, the frame element 300 may further be provided with braces 330 that extend in a radial direction of the frame element 300 from a proximal region towards a distal region thereof. In particular the braces 330 may extend from the connection portions 310 to the projecting edge 320. The braces 330 hereby provide additional stiffness to the frame element 300 and further their upper surfaces (that face the recess 990, respectively the bottom surface 992) may provide further contact faces of the frame element 300 towards the bottom surface 992, whereas preferably the braces 330 at least partially are in contact with the bottom surface 992 when the mounting ring 100, respectively the mounting system 10 is installed in the recess 990.
  • In the shown embodiments the frame element 300 is circular and thus ring shaped, however also other frame shapes as rectangular, oval, or the like are conceivable. Hereby, the shape of the frame element 300 may be adapted to the shape of the respective recess 990.
  • With regard to the ring-shaped support element 400 reference is in particular made to Figures 4, 5, 6A, and 6B. As previously mentioned, scenarios are conceivable where the ring-shaped support element 400 is required. Hereby this support element 400 forms a part of the mounting system 10. The ring-shaped support element 400 then shall be positioned on the top surface 991 of the assembly structure 900 of the recess 990, to enlarge a respective contact surface for the respective latch arms 200. Hereby the respective latch arms 200 are configured to interact with the ring-shaped support element 400 in the operating position O clamping the mounting system 10 inside the recess 990 with the frame element 300 of the mounting ring 100 interacting with the bottom surface 992. Furthermore, the ring-shaped support element 400 has an outer diameter larger than the recess 990 and further has an inner diameter smaller than the recess 990, providing a support surface for interaction with the respective latch arms 200. The inner diameter may be configured to allow an insertion of the mounting ring 100, respectively its bars 120 with the latch arms 200 preferably being attached thereto in a mounting position, in the installation direction D.
  • Hereby, the outer diameter d, d1, d2, d3 of the ring-shaped support element 400 may correspond approximately to the outer diameter d, d1, d2, d3 of the frame element 300, as previously mentioned. Also, the inner diameter of the ring-shaped support element 400 may correspond approximately to the inner diameter of the frame element 300.
  • As further exemplary sketched in the Figures 5, 6A and 6B the ring-shaped support element 400 may comprise a hinge portion 410 that allows a folded shape of the ring-shaped support element 400 during installation of the ring-shaped support element 400 in the recess 990. Hence the support element 400 may be folded in a compact manner so that it can be inserted in the recess 990. As in the unfolded configuration the support element 400 is larger than the recess 990, this implementation provides a simple possibility for configuration. The hinge portion 410 may be realized via a material weakening, e.g., by a respective notch, or alternatively may be realized via an element that couples a respective two-parted support element 400.
  • As previously mentioned with regard to the interaction of the latch arms 200 and the top surface 991 it is likewise conceivable that the bars 120 are configured to position the portion of the respective latch arm 200 interacting with the ring-shaped support element 400 (i.e., the contact portion 210) in a certain distance spaced from the frame element 300 along the installation direction D. This distance essentially corresponds to the width w of the assembly structure 900, whereas in this scenario also the width of the support element 400 is taken into account. Preferably this distance is a distance range from approximately 1 to 25 millimetres, or from approximately 1 to 40 millimetres, or from approximately 1 to 100 millimetres, or from approximately 35 to 100 millimetres.
  • Furthermore, it may be desired that the ring-shaped support element 400 is positioned centred in the recess 990, such that the mounting system 10 is then equally arranged centred in the recess 990.
  • Components of the mounting ring 100, respectively the mounting system 10, may be produced via injection molding. This in particular applies to the ring element 110 and the respective bars 120.
  • The recess 990 may be circular, but can of course be of other shapes as well. Depending on the dimensions of the recess 990 individual or combined implementations of the herein disclosed embodiments of the mounting ring 100, the mounting system 10 and the recessed luminaire 1 can be selected for application.
  • As previously mentioned the assembly structure 900 may form a wall, a floor or a ceiling of a respective environment or room, whereas the assembly structure 900 has a respective recess 990 with a certain diameter. With the presented implementations of the recessed luminaire 1, the mounting system 10, and the mounting ring 100 improved insertion and installation thereof in the respective recess is provided. Hereby, different application scenarios of the such configured recessed luminaire 1 (and thus equally of the respective mounting ring 100 and mounting system 10) are conceivable. Furthermore, in particular scenarios where the recessed luminaire 1 is operated as a wall-washer, a downlight luminaire, a spotlight luminaire and the like are possible.

Claims (15)

  1. A mounting ring (100) of a recessed luminaire (1) for mounting a luminaire unit (20) of the recessed luminaire (1) in a recess (990) of an assembly structure (900), the assembly structure (900) having a top surface (991) and a bottom surface (992); wherein the mounting ring (100) is configured for insertion in the recess (990) in an installation direction (D);
    the mounting ring (100) comprising:
    - a ring element (110), wherein the ring element (110) comprises a flange portion (112),
    wherein the flange portion (112) is configured to interact with the bottom surface (992); and
    - at least two bars (120), wherein each bar (120) is arranged substantially perpendicularly on the ring element (110) projecting substantially parallel in installation direction (D) from the ring element (110) over a height (h, h1, h2, h3),
    wherein each bar (120) is configured for coupling with a latch arm (200) that interacts with the top surface (991) or with a ring-shaped support element (400) that is arranged on the top surface (991), and holds the mounting ring (100) within the recess (990);
    - a plate shaped frame element (300) that is attached to the flange portion (112), wherein the frame element (300) is arranged on a surface of the flange portion (112) opposite to the surface facing the bottom surface (992) of the assembly structure (900), and wherein the frame element (300) extends the flange portion (112) distally and thus forms a contact surface for interaction with the bottom surface (992).
  2. Mounting ring according to claim 1,
    wherein the frame element (300) is attached to the flange portion (112) via an ultrasonic soldering coupling (500), and/or via an adhesive coupling, and/or a soldering coupling, and/or a welding coupling.
  3. Mounting ring according to claim 1 or 2,
    wherein the frame element (300) comprises a number of connection portions (310) that are arranged proximal on the frame element (300) on the surface of the frame element (300) facing the ring element (110), wherein these connection portions (310) are positioned in proximity of the flange portion (112).
  4. Mounting ring according to any of the preceding claims 1 to 3,
    wherein the flange portion (112) is formed by a continuous and smooth surface (112a), or
    the flange portion (112) is formed by a holey surface (112b) provided with holes (119), whereby the holes are in particular plastering holes (119),
    wherein preferably the frame element (300) is attached to the flange portion (112) via ultrasonic soldering connection (500) of the holey surface (112b) and the connection portions (310).
  5. Mounting ring according to any of the preceding claims 1 to 4,
    wherein the frame element (300) has an outer diameter of approximately 100 millimetre, or 150 millimetre, or 200 millimetre, or 250 millimetre, or any diameter in-between; and
    wherein further the frame element (300) has an inner diameter essentially corresponding to the inner diameter of the ring element (110).
  6. Mounting ring according to any of the preceding claims 1 to 5,
    wherein the ring element (110) further comprises a circular base portion (111); wherein the circular base portion (111) extends essentially parallel to the installation direction (D);
    wherein the flange portion (112) protrudes substantially distally from the circular base portion (111) in a direction substantially perpendicularly to the installation direction (D).
  7. Mounting ring according to any of the preceding claims 1 to 6,
    wherein each bar (120) is coupled with the ring element (110) via a coupling mount (113),
    whereas preferably the coupling mount (113) allows for a, in particular reversible, latching connection,
    whereas further preferably the coupling mount (113) is arranged on the base portion (111).
  8. Mounting ring according to any of the preceding claims 1 to 7,
    wherein each bar (120) has coupling elements (121) for coupling to a latch arm (200), the coupling elements (121) enabling a height-adjustable positioning of the respective latch arm (200) along the height (h, h1, h2, h3) of the respective bar (120);
    wherein preferably the coupling elements (121) of the bar (120) are formed by a height-adjustable latching mechanism.
  9. Mounting ring according to any of the preceding claims 1 to 8,
    wherein the flange portion (112) has a width of approximately 5 to 10 millimetre; and/or
    wherein the mounting ring (100), and in particular the ring element (110) and further particular the flange portion (112), has a diameter in a range of approximately 50 to 250 millimetre, in particular in a range of approximately 50 to 100 millimetre, or 100 to 150 millimetre, or 150 to 200 millimetre, or 200 to 250 millimetre; and preferably in a range of 55 to 95 millimetre, or 105 to 145 millimetre, or 155 to 195 millimetre, or 205 to 245 millimetre; and further preferably has a diameter of 50 millimetre, 55 millimetre, 60 millimetre, 65 millimetre, 90 millimetre, 95 millimetre 100 millimetre, or 105 millimetre, or 145 millimetre, or 150 millimetre, or 155 millimetre, or 195 millimetre, or 200 millimetre, or 205 millimetre, or 245 millimetre, or 250 millimetre.
  10. Mounting ring according to any of the preceding claims 1 to 9,
    wherein the mounting ring (100) is for mounting in the recess (990) of the assembly structure (900) that is formed by a wall, by a ceiling, or by a floor; and/or
    wherein the frame element (300) is further circular and thus ring shaped; and/or
    wherein the recess (990) is circular; and/or
    wherein the frame element (300) is made out of plastic; and/or
    wherein the mounting ring (100) is made out of plastic; and/or
    wherein the components of the mounting ring (100) are formed by injection molding.
  11. A mounting system (10) of a recessed luminaire (1) for installing a luminaire unit (20) of the recessed luminaire (1) in a recess (990) of an assembly structure (900), the assembly structure (900) having a top surface (991) and a bottom surface (992); wherein the mounting system (10) is configured for installation in the recess (990) in an installation direction (D);
    the mounting system (10) comprising:
    - a mounting ring (100) according to one of the preceding claims 1 to 10; and
    - at least two latch arms (200), wherein each latch arm (200) is arranged on one of the bars (120) of the mounting ring (100) and is movable from a mounting position (M) into an operating position (O), whereas each latch arm (200) is movable along the bars (120) height (h, h1, h2, h3) to reach the operating position (O);
    wherein the at least two bars (120) of the mounting ring (100) allow for a height-adjustable positioning of their respective latch arm (200),
    wherein the respective latch arms (200) are configured to interact with the top surface (991) or with a ring-shaped support element (400) that is provided on the top surface (991) in the operating position (O), clamping the mounting system (10) inside the recess (990) with the frame element (300) of the mounting ring (100) interacting with the bottom surface (992).
  12. Mounting system according to claim 11,
    wherein the mounting system (10) comprises a ring-shaped support element (400); wherein the ring-shaped support element (400) is positioned on the top surface (991) of the assembly structure (900) of the recess (990),
    wherein the respective latch arms (200) are configured to interact with the ring-shaped support element (400) in the operating position (O) clamping the mounting system (10) inside the recess (990) with the frame element (300) of the mounting ring (100) interacting with the bottom surface (992).
  13. Mounting system according to claim 12,
    wherein the ring-shaped support element (400) has an outer diameter larger than the recess (990) and further has an inner diameter smaller than the recess (990), providing a support surface for interaction with the respective latch arms (200); and/or
    wherein the ring-shaped support element (400) is positioned centred in the recess (990); and/or
    wherein the outer diameter of the ring-shaped support element (400) approximately corresponds to the outer diameter of the frame element (300); and/or
    wherein the inner diameter of the ring-shaped support element (400) approximately corresponds to the inner diameter of the frame element (300); and/or
    wherein the ring-shaped support element (400) comprises a hinge portion (410) that allows a folded shape of the ring-shaped support element (400) during installation of the ring-shaped support element (400) in the recess (990);
    wherein preferably the bars (120) are configured to position the portion of the respective latch arm (200) interacting with the ring-shaped support element (400) in a certain distance spaced from the frame element (300) along the installation direction (D);
    wherein this distance preferably is a distance range from approximately 1 to 25 millimetre, or from approximately 1 to 40 millimetre, or from approximately 1 to 100 millimetre, or from approximately 35 to 100 millimetre.
  14. Mounting system according to any one of the preceding claims 11 to 13, wherein each latch arm (200) comprises a coupling portion (220) and a contact portion (210), wherein the coupling portion (220) is the portion of the latch arm (200) being attached to the respective bar (120), and the contact portion (210) is arranged on an end of the latch arm (200) opposite to the coupling portion (220),
    whereas preferably the contact portion (210) is the portion of the respective latch arm (200) interacting with the top surface (991) of the assembly surface (900) or with the ring-shaped support element (400) that is positioned on the top surface (991) of the assembly surface (900).
  15. A recessed luminaire (1) for installation within a recess (990) of an assembly structure (900), the assembly structure (900) having a top surface (991) and a bottom surface (992);
    the recessed luminaire (1) comprising:
    - a luminaire unit (20), having a housing and light emission elements; and
    - a mounting system (10) according to one of the preceding claims 11 to 14, wherein the luminaire unit (20) is coupled to the mounting system (10);
    wherein preferably the luminaire unit (20) is coupled to the mounting system (10) by means of a reversible securing mechanism (117), in particular by means of a bayonet connection (117);
    wherein further preferably the luminaire unit (20) is inserted in the mounting system (10) after the mounting system (10) is installed in the recess (990).
EP24160617.7A 2024-02-29 2024-02-29 Retrofitting mounting ring and system for a recessed luminaire Pending EP4610547A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP24160617.7A EP4610547A1 (en) 2024-02-29 2024-02-29 Retrofitting mounting ring and system for a recessed luminaire
PCT/EP2025/054546 WO2025180935A1 (en) 2024-02-29 2025-02-20 Retrofitting mounting ring and system for a recessed luminaire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP24160617.7A EP4610547A1 (en) 2024-02-29 2024-02-29 Retrofitting mounting ring and system for a recessed luminaire

Publications (1)

Publication Number Publication Date
EP4610547A1 true EP4610547A1 (en) 2025-09-03

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ID=90123278

Family Applications (1)

Application Number Title Priority Date Filing Date
EP24160617.7A Pending EP4610547A1 (en) 2024-02-29 2024-02-29 Retrofitting mounting ring and system for a recessed luminaire

Country Status (2)

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EP (1) EP4610547A1 (en)
WO (1) WO2025180935A1 (en)

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060101741A1 (en) * 2004-11-12 2006-05-18 Andrew Rae Recess light fixture adapter and method
KR101058921B1 (en) * 2010-11-11 2011-08-23 오길식 Down light and manufacturing method
KR101144550B1 (en) * 2010-09-18 2012-05-11 이재순 LED Light Apparatus
US8403533B1 (en) * 2011-01-28 2013-03-26 Cooper Technologies Company Adjustable LED module with stationary heat sink
US20150241038A1 (en) * 2014-02-27 2015-08-27 Juno Manufacturing Llc Recessed luminaire vice-like mounting system
EP3141799A1 (en) 2015-09-11 2017-03-15 Zumtobel Lighting GmbH Operating device for supplying a recessed light fitting
JP2017130380A (en) * 2016-01-21 2017-07-27 コイズミ照明株式会社 Support device
CN114877294A (en) * 2022-03-29 2022-08-09 赛尔富照明科技有限公司 Narrow side lighting installation frame
US20220325858A1 (en) * 2021-04-06 2022-10-13 Ch Lighting Technology Co., Ltd. Recessed lamp and mounting structure thereof

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060101741A1 (en) * 2004-11-12 2006-05-18 Andrew Rae Recess light fixture adapter and method
KR101144550B1 (en) * 2010-09-18 2012-05-11 이재순 LED Light Apparatus
KR101058921B1 (en) * 2010-11-11 2011-08-23 오길식 Down light and manufacturing method
US8403533B1 (en) * 2011-01-28 2013-03-26 Cooper Technologies Company Adjustable LED module with stationary heat sink
US20150241038A1 (en) * 2014-02-27 2015-08-27 Juno Manufacturing Llc Recessed luminaire vice-like mounting system
EP3141799A1 (en) 2015-09-11 2017-03-15 Zumtobel Lighting GmbH Operating device for supplying a recessed light fitting
JP2017130380A (en) * 2016-01-21 2017-07-27 コイズミ照明株式会社 Support device
US20220325858A1 (en) * 2021-04-06 2022-10-13 Ch Lighting Technology Co., Ltd. Recessed lamp and mounting structure thereof
CN114877294A (en) * 2022-03-29 2022-08-09 赛尔富照明科技有限公司 Narrow side lighting installation frame

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