EP3543606B1 - Luminaire rectiligne - Google Patents

Luminaire rectiligne Download PDF

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Publication number
EP3543606B1
EP3543606B1 EP19163272.8A EP19163272A EP3543606B1 EP 3543606 B1 EP3543606 B1 EP 3543606B1 EP 19163272 A EP19163272 A EP 19163272A EP 3543606 B1 EP3543606 B1 EP 3543606B1
Authority
EP
European Patent Office
Prior art keywords
luminaire
longitudinal direction
device carrier
carrier
profile
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP19163272.8A
Other languages
German (de)
English (en)
Other versions
EP3543606A1 (fr
Inventor
Michael Krajka
Dirk Mania
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.)
RIDI Leuchten GmbH
Original Assignee
RIDI Leuchten 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 RIDI Leuchten GmbH filed Critical RIDI Leuchten GmbH
Priority to PL19163272T priority Critical patent/PL3543606T3/pl
Publication of EP3543606A1 publication Critical patent/EP3543606A1/fr
Application granted granted Critical
Publication of EP3543606B1 publication Critical patent/EP3543606B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • F21V15/00Protecting lighting devices from damage
    • F21V15/01Housings, e.g. material or assembling of housing parts
    • F21V15/013Housings, e.g. material or assembling of housing parts the housing being an extrusion
    • 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
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • 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
    • F21V17/16Fastening 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 by deformation of parts; Snap action mounting
    • F21V17/164Fastening 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 by deformation of parts; Snap action mounting the parts being subjected to bending, e.g. snap joints
    • 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
    • F21V21/025Elongated bases having a U-shaped cross section
    • 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
    • F21V31/00Gas-tight or water-tight arrangements
    • F21V31/005Sealing arrangements therefor
    • 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
    • F21V19/00Fastening of light sources or lamp holders
    • F21V19/001Fastening of light sources or lamp holders the light sources being semiconductors devices, e.g. LEDs
    • F21V19/003Fastening of light source holders, e.g. of circuit boards or substrates holding light sources
    • F21V19/0035Fastening of light source holders, e.g. of circuit boards or substrates holding light sources the fastening means being capable of simultaneously attaching of an other part, e.g. a housing portion or an optical component
    • 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
    • F21V5/00Refractors for light sources
    • F21V5/04Refractors for light sources of lens shape
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2103/00Elongate light sources, e.g. fluorescent tubes
    • F21Y2103/10Elongate light sources, e.g. fluorescent tubes comprising a linear array of point-like light-generating elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Definitions

  • the invention relates to a rectilinear luminaire extending in the longitudinal direction for a light strip according to the preamble of claim 1.
  • Luminaires for a light strip are already known from the prior art.
  • the light band usually comprises several straight luminaires that are mounted in a row on a wall or on a ceiling.
  • the respective luminaire usually comprises a support profile with a power supply rail, on which a device carrier with a light source plate is fixed.
  • the light source plate with several light sources is supplied with power via the power supply rail and controlled by a control device in the support profile.
  • the device carrier is usually closed with an optics cover through which the light generated by the light sources is scattered.
  • the light source plate with the multiple light sources must be sealed to the outside in order to protect the light sources from contamination. Such a seal can be complex and costly.
  • many components have to be assembled in the luminaire, which makes them more difficult and increases the manufacturing costs.
  • the prior art of the generic type is known from EP 2 375 128 A2 , DE 20 2014 104 797 U1 , EP 2 827 053 A1 and DE 20 2011 001 690 U1 .
  • the object of the invention is to provide an improved or at least alternative embodiment for the luminaire of the generic type in which the disadvantages described are overcome.
  • a generic rectilinear luminaire extending in the longitudinal direction is provided for a light band and has an elongated U-shaped support profile and an elongated U-shaped device carrier which is positively attached to the support profile.
  • the device carrier closes the support profile transversely to the longitudinal direction at least in some areas with a profile locking base and a profile interior is thereby formed in the support profile.
  • the luminaire also has at least one elongated optics cover that is attached to the device carrier.
  • the at least one optics cover closes the device carrier transversely to the longitudinal direction and a carrier interior is thereby formed in the device carrier.
  • the lamp also has at least one elongated light support plate with several light sources, which is fixed in the carrier interior of the device carrier.
  • an elastic seal extending in the longitudinal direction is arranged between the at least one optics cover and the device carrier.
  • the seal is supported on one side on the device carrier and on the other side on the at least one optical system cover and presses the at least one optical system cover onto the device carrier towards the support profile.
  • the seal fixes the at least one optics cover to the support profile in the carrier interior.
  • the seal can advantageously press the luminous support plate onto the device carrier towards the support profile.
  • the optics cover can be securely attached to the equipment rack and an undesired detachment of the optics cover from the equipment rack can be prevented.
  • the seal is elastic in order to compensate for any deformation of the optics cover or of the device carrier as a result of thermal expansion during operation of the lamp.
  • the seal can advantageously be injection molded onto the at least one optics cover in order to reduce the manufacturing costs.
  • the support profile can have a current guide rail with several electrical conductors, which can supply the several light sources on the luminous support plate with power.
  • an electrical connection element can be provided on the luminous support plate, by means of which the multiple light sources on the luminous support plate can be connected to the power supply rail.
  • the electrical connection element can engage in the power supply rail and in this way electrically connect the multiple light sources to at least one of the conductors of the power supply rail.
  • the connection element can also be electrically connected to a control device that can control the multiple light sources individually or in groups.
  • the plurality of light sources are arranged on a front side of the luminous support plate, which is arranged facing the optics cover in the carrier interior. The electrical connection element can then appropriately be fixed on a rear side of the luminous support plate facing away from the front side and thereby facing the profile interior.
  • the device carrier is closed with at least one optical cover.
  • the at least one optical cover is expediently designed to be at least partially and at least partially light-transparent.
  • the luminaire can, for example, have a single optics cover that closes the device carrier transversely to the longitudinal direction.
  • several - and preferably two - optical covers can be provided, which are arranged next to one another transversely to the longitudinal direction and close the device carrier transversely to the longitudinal direction.
  • the carrier interior can be divided in the longitudinal direction by at least one intermediate flange of the device carrier and the respective optics cover can then be fixed on one side between a flange of the device carrier and the respective intermediate flange adjacent to the flange or alternatively between two adjacent intermediate flanges.
  • the respective intermediate flange can appropriately on both sides in each case Have the inner contour of the facing flange, so that the optics cover can be fixed to this.
  • the distance between the flanges in an equipment rack without an intermediate flange and the distance between the flanges and the respective intermediate flange and the intermediate flanges from one another in an equipment rack with the respective intermediate flange can be the same.
  • the optics cover, the luminous support plate as well as further components arranged in the device carrier can then remain configured in the same way in a device carrier with and without the at least one intermediate flange.
  • the lamp has at least two elongated V-shaped retaining clips, each with a first support wing and a second support wing, which are each connected to one another by a support edge.
  • the respective retaining clip is supported in the carrier interior with the first support wing on the luminous support plate, with the second support wing on the at least one optics cover and with the support edge on an elongated support contour of the device carrier.
  • the luminous support plate and the optics cover are advantageously fixed together in the carrier interior and additional fastening means are not required. This allows both the production costs to be reduced and the assembly of the light to be simplified.
  • the retaining clip according to the invention makes it difficult to dismantle the optics cover, so that the risk of injury to a person who is not responsible is reduced.
  • the respective retaining clip presses the luminous support plate in the carrier interior onto the device carrier towards the carrier profile through the first support wing.
  • the light support plate lies on the equipment rack and the heat generated in the light mounting plate can be dissipated to the equipment rack.
  • the respective retaining clip presses the at least one optics cover in the carrier interior onto the luminous carrier plate towards the carrier profile.
  • the luminous support plate is pressed against the device carrier and the optics cover on the luminous support plate is pressed towards the support profile.
  • the optics cover thereby encloses the light sources fixed on the light support plate transversely to the longitudinal direction and the light sources on the light support plate can thereby be better protected from contamination.
  • the first support wing of the respective retaining clip has at least one first beveled bevel region and at least one second beveled bevel region.
  • the respective folding areas are folded transversely to the longitudinal direction and extend in the longitudinal direction.
  • the at least one first folded area can fix the luminous support plate towards the supporting profile on the device carrier and the at least one second folded zone can fix the luminous supporting plate parallel to the supporting profile and laterally transversely to the longitudinal direction.
  • the at least one first folding area and the at least one second folding area both act transversely to the longitudinal direction, so that the luminous support plate is fixed on the device carrier such that it can be displaced in the longitudinal direction.
  • a thermal expansion of the luminous support plate in and transversely to the longitudinal direction can thereby be compensated and a distortion of the luminous support plate during operation of the lamp can advantageously be prevented.
  • a retaining clip can be arranged on both sides of the light support plate, so that the light support plate lies against the device carrier and is fixed transversely to the longitudinal direction through the bevel areas of the first support wing of the respective retaining clips.
  • the respective Second folded areas of the first support wing of the respective retaining clips do not prevent any thermal expansion of the luminous support plate transversely to the longitudinal direction, so that distortion of the luminous support plate during operation of the lamp can advantageously be prevented.
  • the second support wing of the respective retaining clip has at least one third beveled bevel region, which is beveled transversely to the longitudinal direction and extends in the longitudinal direction.
  • the third edging area defines the at least one optics cover in relation to the luminous support plate.
  • the third folding area of the second support wing of the respective retaining clip can rest against a support surface of the optics cover that extends in the longitudinal direction in order to enable a large-area contact of the second support wing with the optics cover.
  • a plurality of tips can be integrally formed on the support edge of the respective retaining clip.
  • the tips fix the retaining clip in the longitudinal direction on the respective support contour of the device carrier.
  • the device carrier has a light support base which is arranged parallel to and at a distance from the profile locking base and extends in the longitudinal direction.
  • the light support base divides the support interior into a light interior with the at least one light support plate and a heat insulating space which is arranged in the longitudinal direction between the profile interior and the light interior.
  • the luminous support plate with the plurality of light sources is then arranged in the luminous interior adjacent to the luminous support base and can be fixed - for example pressed - to it by the respective retaining clips.
  • the heat-insulating space is arranged between the light interior and the profile interior and isolates the profile interior and the light interior from one another.
  • the direct heat transfer between the luminous support plate with the multiple light sources and electrical or electronic components in the profile interior - such as a control device, for example - can be minimized.
  • the heat generated in the luminaire can preferably be dissipated to the outside and the functionality of the luminaire can advantageously be retained.
  • the profile locking base is integrally formed by at least one projection facing the support profile on the luminous support base of the device carrier, the projection having a T-shaped cross section transversely to the longitudinal direction and extending in the longitudinal direction.
  • the profile locking base can be integrally formed by two lateral projections on the luminous support base of the device carrier, the projections facing one another and extending in the longitudinal direction.
  • Both the support profile and electrical or electronic components in the profile interior - such as a control device - can be supported on the respective projections.
  • the respective projection expediently extends in the longitudinal direction over an entire length of the device carrier, so that the profile interior and the light interior are separated from one another in a heat-insulating manner over an entire length of the lamp.
  • the light support base has at least one guide formation for centering the light support plate.
  • the guide formation is directed into the light interior and extends in the longitudinal direction.
  • the guide formation facilitates a centered fixing of the luminous support plate with the several Light sources in the light interior, whereby the assembly of the light is simplified.
  • the equipment carrier can advantageously be clamped in the support profile on both sides in the longitudinal direction.
  • the assembly and disassembly of the device carrier on the support profile can be simplified as a result.
  • flanges of the device carrier can be arranged in the profile interior and clamped between flanges of the support profile in the longitudinal direction over an entire length of the support profile or the device carrier.
  • a clamping arrangement with a clamping groove and a clamping spring which extend in the longitudinal direction and can be brought into engagement with one another transversely to the longitudinal direction, can be provided on both sides.
  • the respective clamping spring or clamping groove are then integrally formed on the outside on the flanges of the device carrier and the respective clamping groove or clamping spring on the inside on the flanges of the support profile.
  • the device carrier can have a handle groove arrangement on both sides with a plurality of preferably parallel handle grooves.
  • the respective grip groove arrangement extends on the outside on a flange of the device carrier in the longitudinal direction.
  • the device carrier is an extruded part formed from aluminum in an extrusion process.
  • the equipment carrier can be a shaped sheet metal part formed from sheet steel.
  • the at least one optics cover is centered on the device carrier by a centering arrangement in and transverse to the longitudinal direction and is fixed so that it can be extended in the longitudinal direction.
  • Centering arrangement can, for example, be a centering formation and a centering recess which can be brought into engagement with one another transversely to the longitudinal direction.
  • the respective centering recess or centering formation can then be formed on the optics cover and the respective centering formation or centering recess can be formed, for example, on the luminous support plate.
  • an optics arranged in the optics cover can be aligned relative to the multiple light sources of the light support plate, thereby reducing optical losses in the luminaire.
  • the centering arrangement does not prevent thermal expansion of the optics cover in the longitudinal direction and distortion of the optics cover during operation of the lamp can advantageously be prevented.
  • the at least one optics cover has a plurality of integrally formed prisms.
  • the optical cover is then preferably produced in an extrusion process.
  • the at least one optics cover can have a plurality of integrally formed lenses.
  • the optics cover is then preferably produced in an injection molding process.
  • the at least one optics cover can advantageously consist of several optics cover parts which are arranged one behind the other on the device carrier in the longitudinal direction. In particular, this can simplify the production of an elongated optical cover in an injection molding process.
  • the optics cover can then advantageously have a centering arrangement which is integrated into the lens.
  • one of the lenses can have a centering recess and the luminous support plate can have a centering formation which interlock and fix the lens on the luminous support plate in and transversely to the longitudinal direction.
  • the optics cover or also the optics cover parts can have at least one identification arrangement which is integrally formed on both sides of the optics cover transversely to the longitudinal direction.
  • the identification arrangement can, for example, have an identification projection and an identification recess that can be brought into engagement with the identification projection, which prevents incorrect installation of the optical covers or the optical cover parts on one another in the longitudinal direction and also simplifies the installation of the lamp.
  • the interior of the lamp in the lamp according to the invention can be protected from dirt particles by the seal and the optical cover can be securely attached to the device carrier; the retaining clip avoids additional fastening means and thereby simplifies assembly; the heat generated in the luminaire is preferably dissipated to the outside through the heat insulation space and the functionality of the luminaire is advantageously preserved; and the centering arrangement on the optics cover compensates for the thermal expansion of the optics cover and advantageously reduces optical losses.
  • Fig. 1 shows a view of a luminaire 1 according to the invention.
  • the luminaire 1 has an elongated U-shaped support profile 2 and an elongated U-shaped device carrier 3, which is fixed to the support profile 2 in a form-fitting manner.
  • the equipment carrier 3 closes the support profile 2 transversely to the longitudinal direction 4 with a profile locking base 5, so that a profile interior 6 is formed in the support profile 2.
  • the luminaire 1 also has an elongated optics cover 7, which is fixed to the device carrier 3.
  • the optics cover 7 has a plurality of prisms 8a formed integrally in the optics cover 7 and can be produced in an extrusion process.
  • the optics cover 7 closes the device carrier 3 transversely to the longitudinal direction 4, so that a carrier interior 9 is formed in the device carrier 3.
  • the device carrier 3 has a luminous support base 10 which is arranged parallel to and at a distance from the profile locking base 5 and extends in the longitudinal direction 4.
  • the light support base 10 divides the support interior 9 into a light interior 9a and a heat insulating space 9b.
  • a luminous support plate 11 In the luminous interior 9a or in the profile interior 9 is on the luminous support base 10 a luminous support plate 11 with a plurality of light sources 12 fixed on both sides by a retaining clip 13 in each case.
  • a seal 14 is arranged on both sides, which is supported on the optics cover 7 and on the device carrier 3 and seals the light interior 9a or the profile interior 9 to the outside.
  • the support profile 2 has a current guide rail 15 with several electrical conductors 15a, which supply the several light sources 12 on the luminous support plate 11 with power.
  • an electrical connection element - not visible here - is provided on the luminous support plate 11, by means of which the multiple light sources 12 on the luminous support plate 11 are electrically conductively connected to the conductors 15a of the power supply rail 15 via a control device 16.
  • the control device 16 can control the multiple light sources 12 individually or in groups.
  • the control device 16 is arranged in the profile interior 6 and is supported on the profile locking base 5.
  • the profile interior 6 with the control device 16 is thermally insulated from the luminous interior 9a with the luminous support plate 11 through the heat insulating space 9b.
  • the device carrier 3 is a molded sheet metal part and the profile locking base 5 is integrally formed by two lateral projections 17a on the luminous support base 10 of the device carrier 3.
  • the projections 17a face one another and extend in the longitudinal direction 4 over an entire length of the device carrier 3.
  • the equipment rack 3 is clamped in the support profile 2 on both sides.
  • flanges 18 of the device carrier 3 are arranged in the profile interior 6 and between flanges 19 of the support profile 2 in the longitudinal direction 4 over a whole Clamped length of the support profile 2 or the device carrier 3.
  • a clamping arrangement 20 with a clamping spring 20a and a clamping groove 20b is integrally formed on both sides.
  • the clamping spring 20a and the clamping groove 20b engage one another and extend in the longitudinal direction 4.
  • the support profile 2 is supported on the device carrier 3 on both sides on a respective support formation 21.
  • the device carrier 3 has a handle groove arrangement 22 on both sides with a plurality of preferably parallel handle grooves 23.
  • the respective grip groove arrangement 22 extends on the outside on the respective flange 18 of the device carrier 3 in the longitudinal direction 4.
  • the luminous support plate 11 with the light sources 12 is arranged in the luminous interior 9a adjacent to the luminous support base 10 and is pressed against the latter on both sides by the retaining clips 13. As a result, the luminous support plate 11 rests against the luminous support base 10 and the heat generated in the luminous support plate 11 by the light sources 12 can be dissipated to the outside through the device carrier 3. In this case, the light support base 10 is separated from the control device 16 by the heat insulating space 9b, so that a direct heat transfer between the light support plate 11 and the control device 16 is advantageously prevented.
  • a guide formation 24 which is aligned in the luminous interior 9a and centers the luminous support plate 11 in the luminous interior 9a is integrally formed.
  • the respective retaining clip 13 has a first support wing 25a and a second support wing 25b, which are connected to one another by a support edge 26.
  • the respective retaining clip 13 is supported with the first support wing 25a on the luminous support plate 11, with the second support wing 25b on the optics cover 7 and with the support edge 26 on an elongated support contour 27 of the device carrier 3.
  • the respective retaining clip 13 presses the luminous support plate 11 onto the luminous support base 10 and through the first support wing 25a
  • the optics cover 7 is attached to the luminous support plate 11 by the second support wing 25b. In this way, the luminous support plate 11 is fixed to the luminous support base 10 and the optics cover 7 is clamped to the luminous support plate 11.
  • the optics cover 7 is pressed onto the luminous support plate 11 by the seal 14, which is supported on one side on the device carrier 3 and on the other side on the optics cover 7.
  • the retaining clip 13 is fixed to the support contour 27 of the device carrier 3 in the longitudinal direction 4 by a plurality of tips 28 formed integrally on the support edge 26.
  • the optics cover 7 encloses the light sources 12 fixed on the luminous support plate 11 transversely to the longitudinal direction 4 and the light sources 12 are thereby protected from contamination.
  • the luminous interior 9a is also sealed off from the outside by the seal 14.
  • the seal 14 is elastic and can, for example, be injection molded onto the optics cover 7.
  • Fig. 2 shows a view of the lamp 1 according to the invention in a different embodiment.
  • the equipment rack 3 has a structure that differs from the equipment rack 3 in FIG Fig. 1 on. Otherwise, the structure of the lamp 1 shown here corresponds to the structure of the in Fig. 1 shown lamp 1.
  • the equipment carrier 3 is an extruded part formed from aluminum in an extrusion process.
  • the profile locking base 5 is integrally formed by two T-shaped projections 17b facing the support profile 2 on the luminous support base 10 of the device carrier 3.
  • the equipment rack 3 has different from that in Fig. 1
  • the device carrier 3 shown has an intermediate flange 18a which divides the light interior 9a in the longitudinal direction 4 and is closed by two optics covers 7 arranged next to one another.
  • the respective optics cover 7 is fixed on one side between the flange 18 and the intermediate flange 18a of the device carrier 3.
  • the intermediate flange 18a has an inner contour of the facing flange 18 on both sides.
  • the device carrier 3 is shaped in such a way that the respective optics cover 7, the support profile 2 and other components of the lamp 1 according to the invention remain the same.
  • the equipment rack 3 shown here and the one in FIG Fig. 1 Device carrier 3 shown in the lamp 1 according to the invention can be interchanged with one another.
  • Fig. 3 shows a view of the lamp 1 according to the invention in a different embodiment.
  • the optics cover 7 has a structure that differs from the optics cover 7 in FIG Fig. 1 on. Otherwise, the structure of the lamp 1 shown here corresponds to the structure of the in Fig. 1 shown lamp 1.
  • the optics cover 7 differs from the optics cover in FIG Fig. 1 a plurality of lenses 8b formed integrally on the optical cover 7.
  • the optics cover 7 also has a centering recess 29b of a centering arrangement 29 on one of the lenses 8b, into which a centering recess 29a - here the light source 12 on the luminous support plate 11 - engages and in this way centers the lens 8b on the light source 12 and in and across to the longitudinal direction 4 on the light source 12.
  • the thermal expansion of the optics cover 7 in the longitudinal direction 4 is not prevented and distortion of the optics cover 7 is advantageously avoided.
  • the optics cover 7 can for example be produced in an injection molding process and consist of several optics cover parts arranged one behind the other in the longitudinal direction 4.
  • the optics cover 7 is shaped in such a way that the support profile 2, the device carrier 3 and other components of the lamp 1 according to the invention remain the same.
  • the optics cover 7 shown here are corresponding and the in FIGS. 1 and 2 Optical covers 7 shown in the lamp 1 according to the invention are interchangeable with one another.
  • Fig. 4 shows a view of the lamp 1 according to the invention in a different embodiment.
  • the optics cover 7 has a structure that differs from the optics cover 7 in FIG Fig. 2 on. Otherwise, the structure of the lamp 1 shown here corresponds to the structure of the in Fig. 2 1.
  • the device carrier 3 has a structure that differs from the device carrier 3 in FIG Fig. 3 on. Otherwise, the structure of the lamp 1 shown here corresponds to the structure of the in Fig. 3 shown lamp 1.
  • the equipment carrier 3 is an extruded part formed from aluminum in an extrusion process.
  • the profile locking base 5 is integrally formed by the T-shaped projections 17b facing the support profile 2 on the luminous support base 10 of the device carrier 3.
  • the device carrier 3 also has different from that in Fig. 3
  • the device carrier 3 shown has the intermediate flange 18a which divides the luminous interior 9a in the longitudinal direction 4.
  • the respective optics cover 7 with the lenses 8b is fixed on one side between the flange 18 and the intermediate flange 18a of the device carrier 3.
  • the device carrier 3 is shaped in such a way that the respective optics cover 7, the support profile 2 and other components of the lamp 1 according to the invention remain the same.
  • the equipment rack 3 shown here and the one in FIG Fig. 3 Device carrier 3 shown in the lamp 1 according to the invention can be interchanged with one another.
  • the optics cover 7 shown has a plurality of lenses 8b formed integrally on the optics cover 7.
  • the optics cover 7 also has the centering recess on one of the lenses 8b 29b of the centering arrangement 29, by means of which the optics cover 7 is centered on the luminous support plate 11.
  • the optics cover 7 can for example be produced in an injection molding process and consist of several optics cover parts arranged one behind the other in the longitudinal direction 4.
  • the optics cover 7 is shaped in such a way that the support profile 2, the device carrier 3 and other components of the lamp 1 according to the invention remain the same.
  • the optical cover 7 shown here and the one in FIG Fig. 2 Optical covers 7 shown in the lamp 1 according to the invention are interchangeable with one another.
  • FIG. 11 shows a partial view of the device carrier 3 with the retaining clip 13 in a first embodiment, as shown in FIGS. 1 to 4 is shown.
  • Fig. 6 is a view of the in Fig. 5 shown retaining clip.
  • the retaining clip 13 has the first support wing 25a and the second support wing 25b, which are connected to one another by the support edge 26.
  • the respective retaining clip 13 is supported with the first support wing 25a on the luminous support plate 11, with the second support wing 25b on the optics cover 7 and with the support edge 26 on the elongated support contour 27 of the device carrier 3.
  • the respective retaining clip 13 presses the luminous support plate 11 against the luminous support base 10 through the first support wing 25a and the optics cover 7 against the luminous support plate 11 through the second support wing 25b. In this way, the luminous support plate 11 is fixed to the luminous support base 10 and the optics cover 7 is clamped to the luminous support plate 11. As a result of the plurality of tips 28 formed integrally on the support edge 26, the retaining clip 13 is also fixed to the support contour 27 of the device carrier 3 in the longitudinal direction 4.
  • the first support wing 25a has a first beveled bevel region 30 and two second beveled bevel regions 31.
  • the folded areas 30 and 31 are folded transversely to the longitudinal direction 4 and extend in the longitudinal direction 4.
  • the first folded region 30 presses the luminous support plate 11 towards the luminous support base 10 and the two second folded regions 31 fix the luminous support plate 11 laterally on the luminous support base 10.
  • the folded regions 30 and 31 act transversely to the longitudinal direction 4, so that the luminous support plate 11 is fixed on the luminous support base 10 so that it can be displaced in the longitudinal direction 4.
  • a thermal expansion of the luminous support plate 11 in the longitudinal direction 4 can thereby be compensated and a distortion of the luminous support plate 11 during operation can advantageously be prevented.
  • the second support wing 25b of the retaining clip 13 has a beveled bevel region 32 which is beveled transversely to the longitudinal direction 5 and extends in the longitudinal direction 4.
  • the folded area 32 presses the optics cover 7 towards the luminous support plate 11 and rests on a support surface 33 of the optics cover 7 that extends in the longitudinal direction 4.
  • FIG. 11 shows a partial view of the device carrier 3 with the retaining clip 13 in a second embodiment, as shown in FIGS. 1 to 4 is shown.
  • Fig. 8 is a view of the in Fig. 7 retaining clip 13 shown.
  • the second folded areas 31 of the first support wing 25a of the retaining clip 13 are different from the folded areas 31 in FIG FIGS. 5 and 6 shown retaining clip configured.
  • the structure of the retaining clip 13 here corresponds to the structure of the retaining clip in the first embodiment.
  • FIG. 11 shows a view of the device carrier 3 like this one in FIG Fig. 1 and Fig. 3 is shown.
  • the device carrier 3 is here a shaped sheet metal part made of sheet steel.
  • Fig. 10 shows a view of the device carrier 3, which differs from the device carrier 3 from Fig. 9 is an extrusion made of aluminum. Otherwise, the equipment rack 3 shown here corresponds to that in Fig. 9 Device carrier 3 shown. Both device carriers 3 are interchangeable in the light 1.
  • FIG. 11 shows a view of the device carrier 3 like this one in FIG Fig. 2 and Fig. 4 is shown.
  • the device carrier 3 is here an extruded part made of aluminum.
  • the light interior 9a is divided by the intermediate flange 18a and two optical covers 7 with prisms 8a or with lenses 8b can be fixed on the device carrier 3.
  • the equipment rack 3 shown here corresponds to the equipment racks 3 from Fig. 9 and Fig. 10 so that they can be interchanged in the lamp 1.
  • Fig. 12 shows a view of the optics cover 7 with the prisms 8a.
  • Fig. 12 and in Fig. 13 are views of the in Fig. 12 shown optics cover 7 is shown, which is built into the differently configured equipment carrier 3.
  • the optical cover 7 shown here can, for example, be produced in an extrusion process and the prisms 8a can be coextruded.
  • the seal 14 is injection molded onto the optics cover 7 and seals the interior 9 a of the light from the outside and additionally presses the optics cover 7 onto the light support base 10.
  • the optics cover 7 with the prisms 8a is built into the variously configured equipment mounts 3.
  • the device carrier 3 corresponds to that in Fig.
  • Device carrier 3 shown and is a shaped sheet metal part made of sheet steel.
  • the device carrier 3 corresponds to that in Fig. 2 , Fig. 4 or Fig. 11 Device carrier 3 shown and is an extruded part made of aluminum.
  • Fig. 15 shows a view of the optics cover 7 with the lenses 8b.
  • Fig. 16 and in Fig. 17 are views of the in Fig. 15 shown optics cover 7 is shown, which is built into the differently configured equipment carrier 3.
  • the optics cover 7 shown here can for example be produced in an injection molding process and consist of several optics cover parts.
  • the seal 14 is injection molded onto the optics cover 7 and seals the interior 9 a of the light from the outside and additionally presses the optics cover 7 onto the light support base 10.
  • Fig. 16 and in Fig. 17 is the optics cover 7 with the lenses 8b in the differently designed equipment carrier 3 installed.
  • the device carrier 3 corresponds to that in Fig. 1 , Fig. 3 or Fig.
  • the device carrier 3 corresponds to that in Fig. 2 , Fig. 4 or Fig. 11 Device carrier 3 shown and is an extruded part made of aluminum.
  • the respective retaining clip 13 simplifies the assembly of the lamp 1 and additional fastening means can advantageously be dispensed with.
  • the heat insulating space 9b prevents a direct heat transfer between the light support plate 11 and the control device 16, whereby the functionality of the lamp 1 is advantageously preserved.
  • the seal 14 advantageously seals the light interior 9a or the profile interior 9 to the outside and additionally supports the optics cover 7 in the device carrier 3.
  • the centering arrangement 29 on the optics cover 7 enables the lenses 8b to be centered on the light sources 12 and prevents thermal expansion of the optics cover 7 in the longitudinal direction 4 not. In particular, a distortion of the luminous support plate 11 can thereby be prevented and optical losses in the luminaire 1 can advantageously be reduced.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Claims (17)

  1. Lampe (1) rectiligne et s'étendant dans le sens longitudinal pour une bande de lumière,
    - dans laquelle la lampe (1) présente un profil porteur (2) en forme de U oblong et un support d'appareil (3) en forme de U oblong qui est fixé à complémentarité de forme au profil porteur (2),
    - dans laquelle le support d'appareil (3) ferme le profil porteur (2) transversalement au sens longitudinal (4) au moins par endroits avec un fond de fermeture de profil (5) et ainsi un espace intérieur de profil (6) est formé dans le profil porteur (2),
    - dans laquelle la lampe (1) présente au moins un recouvrement optique (7) oblong qui est fixé au support d'appareil (3),
    - dans laquelle l'au moins un recouvrement optique (7) ferme le support d'appareil (3) transversalement au sens longitudinal (4) et ainsi un espace intérieur de support (9) est formé dans le support d'appareil (3), et
    - dans laquelle la lampe (1) présente au moins une plaque porteuse de lampe (11) oblongue avec plusieurs sources de lumière (12) qui est fixée dans l'espace intérieur de support (9) du support d'appareil (3),
    caractérisée en ce qu'
    un joint d'étanchéité (14) élastique et s'étendant dans le sens longitudinal (4) est agencé entre l'au moins un recouvrement optique (7) et le support d'appareil (3), lequel s'appuie d'un côté contre le support d'appareil (3) et de l'autre côté contre l'au moins un recouvrement optique (7) et presse l'au moins un recouvrement optique (7) contre le support d'appareil (3) vers le profil porteur (2) et le fixe ainsi dans l'espace intérieur de support (9).
  2. Lampe selon la revendication 1,
    caractérisée en ce que
    - le joint d'étanchéité (14) presse la plaque porteuse de lampe (11) contre le support d'appareil (3) vers le profil porteur (2), et/ou
    - le joint d'étanchéité (14) est moulé par injection contre l'au moins un recouvrement optique (7).
  3. Lampe selon la revendication 1 ou 2,
    caractérisée en ce que
    - la lampe (1) présente au moins deux étriers de retenue (13) en forme de V oblongs avec respectivement une première aile d'appui (25a) et avec une seconde aile d'appui (25b) qui sont reliées entre elles respectivement par une arête d'appui (26), et
    - l'étrier de retenue (13) respectif s'appuie dans l'espace intérieur de profil (9) avec la première aile d'appui (25a) contre la plaque porteuse de lampe (11), avec la seconde aile d'appui (25b) contre l'au moins un recouvrement optique (7) et avec l'arête d'appui (26) contre un contour d'appui (27) oblong du support d'appareil (3).
  4. Lampe selon la revendication 3,
    caractérisée en ce que
    - l'étrier de retenue (13) respectif par la première aile d'appui (25a) presse la plaque porteuse de lampe (11) contre le support d'appareil (3) vers le profil porteur (2), et
    - l'étrier de retenue (13) respectif par la seconde aile d'appui (25b) presse l'au moins un recouvrement optique (7) contre la plaque porteuse de lampe (11) vers le profil porteur (2).
  5. Lampe selon la revendication 3 ou 4,
    caractérisée en ce que
    - la première aile d'appui (25a) de l'étrier de retenue (13) respectif présente au moins une première zone de repli (30) repliée et au moins une deuxième zone de repli (31) repliée, dans laquelle les zones de repli (30, 31) respectives sont repliées transversalement au sens longitudinal (4) et s'étendent dans le sens longitudinal (4), et
    - l'au moins une première zone de repli (30) fixe la plaque porteuse de lampe (11) vers l'espace intérieur de profil (6) et l'au moins une deuxième zone de repli (31) fixe la plaque porteuse de lampe (11) parallèlement à l'espace intérieur de profil (6) et transversalement au sens longitudinal (4) latéralement.
  6. Lampe selon l'une quelconque des revendications 3 à 5,
    caractérisée en ce que
    - la seconde aile d'appui (25b) de l'étrier de retenue (13) respectif présente au moins une troisième zone de repli (32) repliée qui est repliée transversalement au sens longitudinal (4) et s'étend dans le sens longitudinal (4), et
    - la troisième zone de repli (32) fixe l'au moins un recouvrement optique (7) vers la plaque porteuse de lampe (11).
  7. Lampe selon l'une quelconque des revendications 3 à 6,
    caractérisée en ce que
    - plusieurs pointes (28) sont formées d'un seul tenant au niveau de l'arête d'appui (26) de l'étrier de retenue (13) respectif, lesquelles fixent l'étrier de retenue (13) dans le sens longitudinal (4) au contour d'appui (27) respectif du support d'appareil (3).
  8. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - le support d'appareil (3) présente un fond porteur de lampe (10) qui est agencé parallèlement et à distance du fond de fermeture de profil (5) et s'étend dans le sens longitudinal (4), et
    - le fond porteur de lampe (10) divise l'espace intérieur de support (9) en un espace intérieur de lampe (9a) avec l'au moins une plaque porteuse de lampe (11) et un espace thermoisolant (9b) qui est agencé dans le sens longitudinal (4) entre l'espace intérieur de profil (6) et l'espace intérieur de lampe (9a).
  9. Lampe selon la revendication 8,
    caractérisée en ce que
    - le fond de fermeture de profil (5) est réalisé d'un seul tenant par deux saillies (17a) latérales au niveau du fond porteur de lampe (10) du support d'appareil (3), dans laquelle les saillies (17a) sont tournées l'une vers l'autre et s'étendent dans le sens longitudinal (4), ou
    - le fond de fermeture de profil (5) est réalisé d'un seul tenant par au moins une saillie (17b) tournée vers le profil porteur (2) au niveau du fond porteur de lampe (10) du support d'appareil (3), dans laquelle la saillie (17b) présente transversalement au sens longitudinal (4) une section transversale en forme de T et s'étend dans le sens longitudinal (4).
  10. Lampe selon la revendication 8 ou 9,
    caractérisée en ce que
    - le fond porteur de lampe (10) présente au moins une formation de guidage (24) pour le centrage de la plaque porteuse de lampe (11), dans laquelle la formation de guidage (24) est dirigée dans l'espace intérieur de lampe (10) et s'étend dans le sens longitudinal (4).
  11. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - le support d'appareil (3) est une pièce extrudée formée dans un procédé d'extrusion en aluminium, ou
    - le support d'appareil (3) est une pièce moulée en tôle d'acier.
  12. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    le support d'appareil (3) est serré des deux côtés dans le profilé porteur (2) dans le sens longitudinal (4).
  13. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    le support d'appareil (3) présente des deux côtés respectivement un agencement de rainures de saisie (21) avec plusieurs rainures de saisie (22) de préférence parallèles, dans laquelle l'agencement de rainures de saisie (21) respectif s'étend côté extérieur au niveau d'une bride (18) du support d'appareil (3) dans le sens longitudinal (4).
  14. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    l'au moins un recouvrement optique (7) se compose de plusieurs parties de recouvrement optique qui sont agencées les unes derrière les autres au niveau du support d'appareil (3) dans le sens longitudinal (4).
  15. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - l'au moins un recouvrement optique (7) est fixé de manière centrée au support d'appareil (3) par un agencement de centrage (29) dans et transversalement au sens longitudinal (4) et de manière extensible dans le sens longitudinal (4), et/ou
    - que le recouvrement optique (7) présente au moins un agencement caractéristique pour l'exclusion du montage erroné, dans laquelle l'agencement caractéristique est réalisé d'un seul tenant au niveau du recouvrement optique (7) des deux côtés transversalement au sens longitudinal (4).
  16. Lampe selon l'une quelconque des revendications précédentes,
    caractérisée en ce que
    - l'au moins un recouvrement optique (7) présente plusieurs prismes (8a) formés d'un seul tenant et est fabriqué de préférence dans un procédé d'extrusion, ou
    - que l'au moins un recouvrement optique (7) présente plusieurs lentilles (8b) formées d'un seul tenant et est fabriqué de préférence dans un procédé de moulage par injection.
  17. Lampe selon la revendication 16,
    caractérisée en ce que
    l'au moins un recouvrement optique (7) présente les plusieurs lentilles (8b), dans laquelle une des lentilles (8b) est fixée par l'agencement de centrage (29) dans et transversalement au sens longitudinal (4) à la platine de lampe (11).
EP19163272.8A 2018-03-16 2019-03-15 Luminaire rectiligne Active EP3543606B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL19163272T PL3543606T3 (pl) 2018-03-16 2019-03-15 Oprawa oświetleniowa prostoliniowa

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202018101485.4U DE202018101485U1 (de) 2018-03-16 2018-03-16 Geradlinige Leuchte

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EP3543606B1 true EP3543606B1 (fr) 2021-12-08

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EP (1) EP3543606B1 (fr)
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PL (1) PL3543606T3 (fr)

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DE102021212616A1 (de) 2021-11-09 2023-05-11 Ridi Leuchten Gmbh Leuchte mit Tragprofil, Stromführungsschiene und Stecker

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202011001690U1 (de) * 2011-01-19 2011-03-24 Lidl Asia Pacific Sourcing Ltd. LED-Lichtleiste

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Publication number Priority date Publication date Assignee Title
DE102010003805A1 (de) * 2010-04-09 2011-10-13 Zumtobel Lighting Gmbh Leuchte mit LEDs und den LEDs zugeordneten Linsen
DE102013216275B4 (de) * 2013-07-15 2015-07-02 Ridi Leuchten Gmbh Leuchte
DE202014104797U1 (de) * 2014-10-07 2016-01-11 Zumtobel Lighting Gmbh Längliche LED-Leuchte mit optischem Element

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202011001690U1 (de) * 2011-01-19 2011-03-24 Lidl Asia Pacific Sourcing Ltd. LED-Lichtleiste

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EP3543606A1 (fr) 2019-09-25
DE202018101485U1 (de) 2018-04-20

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