Lighting device
The use of a flexible attachment with a diffusing envelope and lighting structure addresses the issues of weight and assembly complexity in illuminating balloons, improving portability and stability with reduced material usage.
Patent Information
- Application Number
- FR2023008451
- Authority / Receiving Office
- FR · FR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-08-03
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2043-08-03
AI Technical Summary
Existing illuminating balloons are heavy, bulky, and complex to assemble, lacking improvements in these areas.
A lighting device with a flexible attachment, such as a woven or non-woven fabric, is used to fix a diffusing envelope to a lighting structure, replacing rigid attachments to reduce weight and size, and incorporating a flexible attachment with at least three arms extending in non-parallel directions, such as an octopus shape, to maintain the envelope's position without tilting.
The flexible attachment reduces weight, simplifies assembly, and enhances portability while maintaining envelope stability, reducing environmental impact and manufacturing costs.
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Abstract
Description
Title of the invention: Lighting device Technical field
[0001] The present description relates generally to lighting devices, and more particularly to lighting devices of the illuminating balloon type, comprising a diffusing envelope inside which an illuminating structure is arranged. Prior art
[0002] Various architectures of lighting balloons have already been proposed.
[0003] It would however be desirable to be able to have an illuminating balloon which overcomes all or part of the disadvantages of known illuminating balloons.
[0004] In particular, it would be desirable to be able to have a lighting balloon that is less heavy, less bulky, and / or simpler to assemble than known lighting balloons. Summary of the invention
[0005] For this, one embodiment provides a lighting device comprising a lighting structure, a diffusing envelope surrounding the lighting structure, and, inside the diffusing envelope, a flexible attachment fixing the diffusing envelope to the lighting structure.
[0006] According to one embodiment, the flexible fastener comprises a piece of a woven or non-woven fabric or sheet of a flexible material.
[0007] According to one embodiment, the flexible material is a material from the group comprising plastic materials, polymer materials, rubber, leathers, foams, composite materials, and materials based on plant fibers.
[0008] According to one embodiment, the flexible attachment comprises one or more metallic or non-metallic ropes or cables.
[0009] According to one embodiment, the flexible attachment comprises at least one end fixed to the lighting structure and at least one other end fixed to the diffusing envelope.
[0010] According to one embodiment, the flexible attachment comprises at least three arms extending respectively in at least three non-parallel directions.
[0011] According to one embodiment, the flexible attachment has the shape of an octopus with at least three arms.
[0012] According to one embodiment, the flexible attachment has a conical or pyramidal shape.
[0013] According to one embodiment, the diffusing envelope is an inflatable envelope.
[0014] According to one embodiment, the device further comprises, inside the diffusing envelope, fixed to the lighting structure, a service stage comprising an inflation fan.
[0015] According to one embodiment, the diffusing envelope is a flexible envelope stretched over rigid or semi-rigid frames.
[0016] According to one embodiment, the diffusing envelope is a rigid shell.
[0017] According to one embodiment, the flexible attachment is fixed to an upper part of the lighting structure on the one hand and to an upper part of the diffusing envelope on the other hand.
[0018] According to one embodiment, a lower part of the diffusing envelope is further fixed to a lower part of the lighting structure by means of another fixing means, preferably removable.
[0019] According to one embodiment, the attachment of the flexible clip to the diffusing envelope is removable and / or the attachment of the flexible clip to the lighting structure is removable. Brief description of the drawings
[0020] These characteristics and advantages, as well as others, will be explained in detail in the following description of particular embodiments given without limitation in relation to the attached figures among which:
[0021] [Fig.l] is a schematic front view illustrating an example of the architecture of a lighting balloon;
[0022] [Fig.2] is a schematic front view illustrating an example of an illuminating balloon according to one embodiment;
[0023] [Fig. 3] is a top view schematically illustrating an exemplary embodiment of a flexible attachment of a lighting balloon according to one embodiment;
[0024] [Fig. 4] is a perspective view of an example of an illuminating balloon of the type described in relation to Figures 2 and 3; and
[0025] [Fig.5] schematically illustrates different variants of balloon architectures illuminating according to one embodiment. Description of the embodiments
[0026] The same elements have been designated by the same references in the different figures. In particular, the structural and / or functional elements common to the different embodiments may have the same references and may have identical structural, dimensional and material properties.
[0027] For the sake of clarity, only the steps and elements useful for understanding the embodiments described have been shown and are detailed. In particular, the mechanical and electronic production of the illuminating structure of the lighting balloons described has not been detailed, the embodiments described being compatible with known embodiments of lighting balloon lighting structures, for example as described in patent application WO2022 / 106108 previously filed by the applicant, or the production of such a lighting structure being within the reach of the person skilled in the art from the indications of the present description.
[0028] Unless otherwise specified, when referring to two elements connected to each other, this means directly connected without intermediate elements other than conductors, and when referring to two elements connected (in English "coupled") to each other, this means that these two elements can be connected or be connected by means of one or more other elements.
[0029] In the following description, when reference is made to absolute position qualifiers, such as the terms "front", "back", "top", "bottom", "left", "right", etc., or relative position qualifiers, such as the terms "above", "below", "upper", "lower", etc., or to orientation qualifiers, such as the terms "horizontal", "vertical", etc., reference is made, unless otherwise specified, to the orientation of the figures or to a device in a normal position of use.
[0030] Unless otherwise specified, the expressions "about", "approximately", "substantially", and "of the order of" mean to within 10%, preferably to within 5%.
[0031] [Fig.l] is a schematic front view illustrating an exemplary embodiment of a lighting balloon 100.
[0032] The lighting balloon 100 comprises a lighting structure 110, for example a light-emitting diode (LED) lighting structure. The lighting structure 110 is for example a modular structure of the type described in patent application WO2022 / 106108. By way of example, the lighting structure 110 comprises several elementary lighting modules (not detailed in the figure) each having the shape of a lighting panel, for example square or rectangular, fixed on the same support structure, for example metallic, and mechanically secured to this support structure. The modules define luminous faces of the lighting structure. Each elementary module comprises for example a printed circuit board (not detailed in the figure), on which are mounted a set of one or more LEDs and an electronic circuit for powering and controlling the set of LEDs (not detailed in the figure).
[0033] The number and arrangement of the elementary modules depends on the intended application and the desired total light output. For example, each elementary module has an emitted light output of between 1 and 10,000 lumens, for example between 10 and 5,000 lumens, for example between 100 and 1,000 lumens.
[0034] By way of non-limiting example, the lighting structure 110 comprises three superimposed stages each comprising several elementary modules, for example six elementary modules arranged in a hexagonal prism arrangement. The embodiments described are not, however, limited to this particular example.
[0035] The total luminous emission power of the lighting structure is for example between 50 and 1,000,000 lumens, for example between 5,000 and 500,000 lumens.
[0036] In the example shown, the lighting balloon 100 comprises, under the lighting structure 110, for example fixed on and mechanically secured to a lower plate of the lighting structure 110, a service stage 120 comprising for example electronic circuits for powering and controlling the lighting structure.
[0037] In this example, the lighting balloon 100 comprises an inflatable diffusing envelope 130, enveloping the lighting structure 100 and the service stage 120. The envelope 130 is a flexible envelope, for example a textile envelope. The envelope 130 is preferably watertight and airtight and makes it possible to protect all of the mechanical and electronic components of the lighting structure and the service stage against external aggressions. The envelope 130 also contributes to the wind resistance of the device. The envelope 130 is in particular adapted to resist the force of the wind, and may also have the role of distributing the forces of the wind on the internal mechanical structure. The envelope 130 may also act as an optical diffuser for the light emitted by the lighting structure. In other words, the envelope 130 is adapted to transmit, by diffusing it, the light emitted by the lighting structure.
[0038] To enable the envelope to be inflated, the service stage comprises a fan (not detailed in the figure), called an inflation fan, adapted to suck air into the lower part of the device, to inject it into the envelope. The service stage 120 may further comprise an additional fan (not shown), called a thermal fan, intended to stir the air located inside the envelope in order to facilitate the evacuation of the heat generated by the LEDs.
[0039] In the example shown, the device further comprises a support mast 140 fixed to a lower plate of the service stage 120.
[0040] The envelope 130 has, for example, in the inflated state, a spherical or flattened spherical globe shape, or a generally cylindrical shape. In this example, the envelope 130 comprises a lower central opening through which the assembly comprising the lighting structure 110 and the service stage 120 can be inserted or extracted. The lower opening of the envelope 130 has, for example, lateral dimensions substantially equal to the largest lateral dimensions of the assembly comprising the lighting structure 110 and the service stage 120. The lower opening of the envelope 130 is, for example, generally circular in shape. As a variant, the lower opening of the envelope may have a rectangular, square, or any other shape suitable for allowing the insertion of the lighting structure inside the envelope.
[0041] By way of example, the envelope is fixed, for example in a removable manner, in the lower part of the rigid structure formed by the assembly comprising the lighting structure 110 and the service floor 120.
[0042] More particularly, in the example shown, the envelope is fixed by the edge of its lower central opening, to a lower plate, for example of circular shape, of the service floor 120, by a fixing means 109, preferably removable, for example a zipper, a self-gripping fastener, a snap fastener, nuts or screws, magnets, or any other suitable fixing mechanism.
[0043] The inflation of the envelope 130 is ensured by the inflation fan present in the service stage 120, when the lighting device is put into service. Before the inflation phase, the envelope is initially deflated, and the inflation fan is stopped. During commissioning, the fan is controlled at its inflation power, for example at its maximum power so as to obtain rapid inflation of the envelope. At the end of the inflation phase, that is to say when the envelope is filled with air, the air pressure inside the balloon stabilizes at a value slightly higher than the external pressure.The fan can then be kept on but at a power lower than its inflation power, for the entire duration of use of the device, so as to maintain a substantially constant pressure in the balloon during the use phase, while limiting the electrical consumption and noise of the fan, for example as described in patent application WO2022 / 106108 previously filed by the applicant.
[0044] In use, the envelope is self-supporting due to the pressure maintained by the inflation fan. This makes it possible to permanently maintain a distance between the envelope and the side and upper walls of the lighting structure 110. This makes it possible in particular to avoid overheating of the envelope and degradation of the latter under the effect of the heat generated by the lighting structure 110. This also allows the envelope to ensure its function of optical diffusion of the light emitted by the lighting source, and thus to avoid any risk of dazzling users.
[0045] A lighting balloon of the type described above is particularly suitable for applications requiring a powerful, removable and transportable light source for occasional use, for example for lighting a construction site or an event, particularly in an outdoor environment.
[0046] In the example of [Fig. 1], to prevent the casing 130 from tilting laterally under the effect of the wind, the casing 130 is furthermore fixed to an upper plate of the lighting structure 120 by means of a rigid attachment 150, for example rigid metal rods or blades or a rigid central mast. In the example shown, the attachment 150 comprises several rigid metal blades each having a lower end fixed to the upper plate of the lighting structure 120 and an upper end fixed to an upper central region of the casing 130.
[0047] The fixing of the rods of the attachment 150 to the upper plate of the lighting structure 110 may be a permanent fixing, for example by welding, or removable, for example by means of screws or nuts.
[0048] The fixing of the rods of the attachment 150 to the casing 130 is preferably a removable fixing, for example by means of screws or nuts.
[0049] The attachment 150 has the particular function of preventing the casing 130 from tilting laterally under the effect of the wind until it touches the lateral faces of the lighting structure 110.
[0050] A limitation of the attachment system 150 of [Fig.l] however lies in the fact that it leads to an increase in the weight of the balloon, and the size of the structure in the deflated state of the balloon.
[0051] [Fig.2] is a schematic front view illustrating an example of an illuminating balloon 200 according to one embodiment.
[0052] The balloon 200 of [Fig. 2] comprises elements in common with the balloon 100 of [Fig. 1]. For the sake of simplification, the common elements will not be described again below and only the differences with the balloon 100 will be highlighted below.
[0053] The balloon 200 of [Fig. 2] differs from the balloon 100 of [Fig. 1] essentially in that, in the balloon 200, the rigid tether 150 securing the upper central region of the envelope 130 to the lighting structure 110 is replaced by a flexible tether 250.
[0054] By flexible, it is meant here that the attachment 250 bends and curves without breaking and reversibly, under the effect of its own weight or the weight of the envelope.
[0055] For example, the fastener 250 is made of a canvas or textile fabric, for example plastic, or a fastener based on flexible metal cables.
[0056] In the deflated state of the envelope, the flexible attachment 250 is collapsed on itself. The envelope 130 of the balloon is then, for example, in contact with the upper face of the lighting structure 110.
[0057] During inflation, the envelope 130 moves away from the upper face of the lighting structure 110 and the flexible attachment 250 unfolds and is tensioned.
[0058] In the inflated state, the flexible attachment 250 is unfolded and taut and makes it possible to prevent the envelope from tilting laterally under the effect of the wind. The attachment 250 then has an octopus shape in this example.
[0059] The provision of a flexible attachment to replace the rigid attachment 150 of [Fig.l] advantageously makes it possible to reduce the weight of the device.
[0060] In addition, this facilitates the storage and arrangement of the balloon, without having to dismantle the rigid elements of the attachment 150 of [Fig.l]. The flexible attachment 250 only takes on its full physical extent when tension is applied to it. The rest of the time, it can fold and be stored compactly inside the product.
[0061] This further increases resistance to drop impacts. By its nature, the flexible material of the clip 250 can conform / bend reversibly, unlike the rigid material of the clip 150 which can twist irreversibly and thus lose its physical properties.
[0062] The cost is also limited, as is the environmental impact, because the flexible attachment 250 requires less material and less processing for its manufacture than the rigid attachment 150.
[0063] [Fig.3] is a top view schematically illustrating an example of production of the flexible attachment 250 of the lighting balloon of [Fig.2].
[0064] In [Fig.3], the fastener 250 has been shown in an unfolded configuration on a flat surface, not fixed to the lighting structure and the balloon envelope.
[0065] In the example of [Fig. 3], the fastener 250 has the shape of a cross or a star with four branches or arms. More particularly, the fastener 250 comprises a central portion 251, and four branches 253a, 253b, 253c, 253d extending radially from the central portion 251 respectively in two-by-two orthogonal directions.
[0066] Each of the branches 253a, 253b, 253c, 253d, comprises, on the side of its end opposite the central part 251, one or more fixing eyelets 255 intended to allow the fixing of said end of the branch to the lighting structure 120. The provision of several fixing eyelets per branch advantageously makes it possible to adapt the same model of flexible attachment 250 to several sizes of envelope and / or lighting structure.
[0067] The attachment 250 further comprises a fixing eyelet 257 substantially in the center of its central part 251, intended to allow the fixing of said central part to an upper central part of the envelope 120 of the balloon.
[0068] In this example, the eyelets 255 and 257 are through openings which can be fixed respectively to the upper plate of the lighting structure 120 and to the envelope of the balloon by means of screws or nuts, or by any other suitable fixing means.
[0069] As a variant, the eyelets 255 and / or 257 can be replaced by any other suitable fastening means, preferably removable, for example a self-gripping fastening, a snap fastener, a magnetic fastening, etc.
[0070] More generally, the attachment may have any other shape suitable for fulfilling the desired function of fixing the envelope 120 to the lighting structure 110 to prevent lateral tilting of the envelope under the effect of the wind.
[0071] By way of example, the flexible attachment 250 may comprise a number of arms other than four. Preferably, the flexible attachment 250 comprises at least three arms oriented in three different directions respectively starting from the center of the central portion 251 of the attachment, to allow the envelope to be held at 360°C relative to the lighting structure 110.
[0072] Preferably, the attachment points of the arms of the flexible attachment 250 to the lighting structure 110 are offset laterally relative to the vertical central axis of the balloon. In other words, in the inflated state of the balloon, the arms of the flexible attachment 250 are inclined, that is to say they form a non-zero angle with the vertical axis, which makes it possible to promote the maintenance of the envelope in all horizontal directions.
[0073] In the example shown in the figures, the attachment 250 is made from a single piece, which has the advantage of facilitating the assembly of the balloon. As a variant, the attachment 250 may be made up of several separate flexible parts, for example several straps, cables, ropes or fixing ribbons each having one end fixed to the lighting structure 110 and another end fixed to the envelope 120.
[0074] [Fig. 4] is a perspective view of an example of an illuminating balloon of the type described above in relation to Figures 2 and 3.
[0075] In the example of [Fig.4], the lighting structure 110 comprises two stages each comprising four elementary lighting modules arranged respectively along the four lateral faces of a square-based prism.
[0076] [Fig. 5] schematically illustrates different possible configurations as to the positioning of the fixing points of the flexible attachment 250, shown in dotted lines in [Fig. 5], to the illuminating structure 110 and to the casing 120.
[0077] It will be noted in particular that the point(s) of attachment of the flexible attachment 250 to the casing 130 are not necessarily located in the center of the upper wall of the casing 130. As a variant, the flexible attachment 250 may be attached at several points of the casing 120, for example regularly distributed around the same horizontal section plane of the casing, for example as illustrated in views b), c) and d) of [Fig. 5]. View a) of [Fig. 5] corresponds to a configuration of the type shown in Figures 2 and 5.
[0078] To increase the angle of the arms of the flexible attachment 250 relative to the vertical, the arms of the attachment 250 may be crossed as shown in view c) of [Fig.5].
[0079] Various embodiments and variations have been described. Those skilled in the art will understand that certain features of these various embodiments and variants could be combined, and other variants will occur to those skilled in the art. In particular, although an exemplary embodiment applied to a lighting balloon with an inflatable envelope has been described above, the described embodiments are not limited to this particular case.
[0080] As a variant, the diffusing envelope may be a flexible envelope held in tension, not by means of an inflation air flow as described above, but by means of semi-rigid hoops or rods adapted to exert on the envelope a pressure or tension force towards the outside of the balloon. As a variant, the envelope may be stretched on rigid frames. As a variant, the diffusing envelope may be a rigid shell.
[0081] Furthermore, the embodiments described are not limited to the examples described above of a flexible attachment having an octopus shape in the unfolded state. As a variant, the flexible attachment 250 may have a conical or pyramidal shape, or any other shape suitable for allowing 360° maintenance of the envelope relative to the lighting structure.
[0082] Furthermore, although exemplary embodiments have been described above in which the balloon is held by a support mast fixed to a lower part of the balloon, the embodiments are not limited to this particular case. As a variant, the balloon may be suspended by a suspension ring fixed to the flexible attachment 250. In other words, in addition to the function of lateral support at 360°C of the envelope, the flexible attachment 250 may have a function of suspending the balloon.
[0083] Finally, the practical implementation of the embodiments and variants described is within the reach of the person skilled in the art from the functional indications given above. In particular, with regard to the manufacture of the flexible fastener 250, the person skilled in the art will be able to apply various manufacturing methods known from the teachings of the present description. For example, steps of cutting textile in the shape of a cross with three or more branches, in the shape of a rectangle that is sheared then deformed, and punched to be attached with screws, rods, nuts, etc., or sewn, or methods of stamping flexible sheets of polymer, rubber, leather, foam, composite, non-woven material, etc. may be used. Removable fasteners, for example quick fasteners, may be provided to be able to separate the envelope from the internal rigid structure.
Claims
Claims
1. Lighting device (200) comprising a lighting structure (110), a support mast (140) fixed to and mechanically secured to the lighting structure (110), a diffusing envelope (130) surrounding the lighting structure, and, inside the diffusing envelope (130), a flexible attachment (250) fixed on the one hand to the diffusing envelope and on the other hand to the lighting structure and ensuring lateral support of the diffusing envelope relative to the lighting structure.
2. The device (200) of claim 1, wherein the flexible fastener (250) comprises a piece of woven or non-woven fabric or sheet of flexible material.
3. Device (200) according to claim 2, wherein said flexible material is a material from the group comprising plastic materials, polymeric materials, rubber, leathers, foams, composite materials, and plant fiber-based materials.
4. The device (200) of claim 1, wherein the flexible attachment (250) comprises one or more flexible pieces.
5. Device (200) according to any one of claims 1 to 4, wherein the flexible attachment (250) comprises at least one end attached to the lighting structure (110) and at least one other end attached to the diffusing envelope (130).
6. Device (200) according to any one of claims 1 to 5, wherein the flexible attachment (250) comprises at least three arms extending respectively in at least three non-parallel directions.
7. Device (200) according to claim 6, wherein the flexible attachment (250) has the shape of an octopus with at least three arms.
8. Device (200) according to any one of claims 1 to 5, wherein the flexible attachment (250) has a conical or pyramidal shape.
9. Device (200) according to any one of claims 1 to 8, wherein the diffusing envelope (130) is an inflatable envelope.
10. The device (200) of claim 9, further comprising, within the diffusing envelope (130), attached to the structure
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15. lighting (110), a service stage (120) comprising an inflation fan. Device (200) according to any one of claims 1 to 8, in which the diffusing envelope (130) is a flexible envelope stretched over rigid or semi-rigid frames. Device (200) according to any one of claims 1 to 8, wherein the diffusing envelope (130) is a rigid shell. Device (200) according to any one of claims 1 to 12, wherein the flexible attachment (250) is fixed to an upper part of the lighting structure (110) on the one hand and to an upper part of the diffusing envelope (130) on the other hand. Device (200) according to claim 13, wherein a lower part of the diffusing envelope is further fixed to a lower part of the lighting structure by means of another fixing means (109), preferably removable. Device (200) according to any one of claims 1 to 14, wherein the attachment of the flexible clip (250) to the diffusing envelope (130) is removable and / or the attachment of the flexible clip (250) to the lighting structure (120) is removable.