EP3674596B1 - Ausgleichsvorrichtung zur verbesserung des haltens auf dem kopf einer stirnlampe - Google Patents

Ausgleichsvorrichtung zur verbesserung des haltens auf dem kopf einer stirnlampe Download PDF

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Publication number
EP3674596B1
EP3674596B1 EP19219943.8A EP19219943A EP3674596B1 EP 3674596 B1 EP3674596 B1 EP 3674596B1 EP 19219943 A EP19219943 A EP 19219943A EP 3674596 B1 EP3674596 B1 EP 3674596B1
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EP
European Patent Office
Prior art keywords
rigid
semi
band
strands
fixed
Prior art date
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Application number
EP19219943.8A
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English (en)
French (fr)
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EP3674596A1 (de
Inventor
Mathieu LE BOURHIS
Boris Bouffay
Philippe Berrel
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.)
Zedel SAS
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Zedel SAS
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Publication of EP3674596A1 publication Critical patent/EP3674596A1/de
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21LLIGHTING DEVICES OR SYSTEMS THEREOF, BEING PORTABLE OR SPECIALLY ADAPTED FOR TRANSPORTATION
    • F21L4/00Electric lighting devices with self-contained electric batteries or cells
    • F21L4/005Electric lighting devices with self-contained electric batteries or cells the device being a pocket lamp
    • 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
    • F21V21/14Adjustable mountings
    • F21V21/30Pivoted housings or frames
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21LLIGHTING DEVICES OR SYSTEMS THEREOF, BEING PORTABLE OR SPECIALLY ADAPTED FOR TRANSPORTATION
    • F21L4/00Electric lighting devices with self-contained electric batteries or cells
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B1/00Hats; Caps; Hoods
    • A42B1/24Hats; Caps; Hoods with means for attaching articles thereto, e.g. memorandum tablets or mirrors
    • A42B1/242Means for mounting detecting, signalling or lighting devices
    • A42B1/244Means for mounting lamps
    • 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
    • F21V21/08Devices for easy attachment to any desired place, e.g. clip, clamp, magnet
    • F21V21/084Head fittings
    • 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
    • F21V21/14Adjustable mountings
    • F21V21/145Adjustable mountings for portable lighting devices
    • 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
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • AHUMAN NECESSITIES
    • A42HEADWEAR
    • A42BHATS; HEAD COVERINGS
    • A42B3/00Helmets; Helmet covers ; Other protective head coverings
    • A42B3/04Parts, details or accessories of helmets
    • A42B3/10Linings
    • A42B3/14Suspension devices
    • A42B3/142Suspension devices with restraining or stabilizing means, e.g. nape straps

Definitions

  • the present invention relates to headlamps and in particular to a device for holding a headlamp headband.
  • Headlamps originally used in coal mines, have been very successful in the recreation industry, including caving and hiking. They also figure prominently in the range of professional tools.
  • the newer headlamps have a high-power light source located at the front and a heavy-duty battery pack located at the rear.
  • the figure 1 illustrates a first type of known headband, marketed by the applicant company, making it possible to ensure the attachment to the head of a user of a headlamp provided with a fairly large battery, attached to the belt.
  • the figure 2 illustrates a second example of a fairly large attachment device comprising several attachment bands, as described in the patent application EP2462825 , allowing the attachment of a protective helmet or a welding mask on the head of a user.
  • the figure 3 illustrates another example of a fastening system, as described in the patent FR3047570 allowing the fixing of the telescope
  • the document US 7,370,991 describes a headlamp comprising a headband, a light source located at the front of the headband and a load balancing device comprising two strands each having a first end fixed to a front point of the headband and a second end fixed on a rear point of the headband.
  • the object of the present invention is to provide a headlamp provided with a new type of rigid / semi-rigid headband allowing wide possibilities of adjustment on various users' heads.
  • Another object of the present invention is to provide a headlamp provided with a light retaining band and provided with a load balancing system between the weight of the lamp and that - more important - of the supply battery. .
  • the fixing elements are removable, for example by clipping.
  • the first ends (A, A ') of the first and second strands are fixed via a sliding element making it possible to vary the position of the points A and A' on the strip.
  • the second ends (B, B ') of the first and second strands are merged at the same point located close to the battery at the rear of the strip.
  • the band is of constant length, symmetrical with respect to a median sagittal plane, and comprises an alternation of rigid / semi-rigid elements to allow deformation in space and adjustment to the head of a user. .
  • the invention is particularly suited to the production of a compact lamp comprising the light module and a relatively heavy power source.
  • the load balancing device which will be described below is perfectly suited to the production of a headlamp comprising a rigid / semi-rigid support band offering a structure which is particularly easy to adjust, allowing perfect maintenance of the head. the lamp even when it comprises, in particular, a particularly heavy battery at the rear. It should be noted that the device could also be advantageous in the case of a remote battery to allow load balancing when the headband supports a particularly heavy headlamp and which would tend to destabilize the headlamp forward. Consequently, the embodiments which will be described later provide a significant solution for re-balancing loads which would appear either at the front or at the rear of the retaining band.
  • the balancing device described below proves to be usable for any type of headlamp, and any type of headband, elastic or not, the device will be described more specifically in relation to a specific headlamp, such as described in the European patent application EP3290785 , entitled “ Headlamp with a rigid or semi / rigid headband”, filed on August 28, 2017 by the applicant for the present patent application, which allows the production of a light, well-balanced and perfectly aesthetic headlamp.
  • This new type of headlamp comprises a rigid / semi-rigid headband making a “break” with conventional headbands, providing a new aesthetic but also new features for almost immediate adjustment of the headband on a user's head.
  • This headlamp uses for this purpose a specific headband having a combination of rigid / semi-rigid structures of constant length and belonging to a family of shapes three-dimensional likely to be deformed in space, following several planes.
  • This headband allows it to keep a constant length, while allowing deformations along the three planes, which allows the headband to conform to the shape of a user's head.
  • the front part 21, the side parts 24 and 22, and the rear part 23 which are completely semi-rigid, allow the strip to be deformed at constant length in the three planes (x, y), (x, z) and (y , z), thus causing the variability of the radii of curvatures R1, R2 and R3 allowing the fixing of the band 10 on a head of any dimension.
  • the figure 4b illustrates the positioning of the headband on a user's head, without the lamp power supply battery, while the figure 4c shows the headband with a power supply battery 38 at the back, as well as a device 39 for fixing the elastic tightening.
  • the figure 4d illustrates a front perspective of the same strip shown in the figures 4a-4c , where we can distinctly see the lamp 40 located at the front and the battery 38 in the rear position.
  • FIGS. 5a and 5b show more specifically the detail of a first simplified embodiment of a strip 50 comprising an alternation of deformable semi-rigid elements (in dark) and rigid elements (in light), allowing the strip to be deformed at constant length in the three planes (x, y), (x, z) and (y, z) and the variability of the angles of curvature R1, R2 and R3, respectively.
  • the figure 5a shows more specifically the left branch of the first embodiment which comprises a semi-rigid front part 100, on which is fixed a rigid part called "plate” serving as a support, via a pivot connection, for a lamp 101 comprising one or more LEDs (s) associated with an optical system and a corresponding electronic circuit.
  • the front part can be extruded.
  • the band further comprises a rigid rear part 116 (clear) forming a rear part of the band.
  • the element 116 could become semi-rigid to adapt to the xy plane.
  • the strip comprises, on its left branch, a first rigid element 111 (of greater rigidity than the semi-rigid element 100) having a first lower end fixed to a first end of the front part 100, as well as a second end upper attached to a second semi-rigid element 112 (dark, therefore more flexible).
  • the rigid element 111 comprises, respectively at its two lower and upper ends, two passage elements 111a and 111b for a first elastic clamp 150.
  • the second semi-rigid member 112 has a first end attached to the second end of the first member 111 and a second end attached to a first end of a third rigid member 113 serving as a point of passage for the elastic 150 coming from the elements 111b of the left branch.
  • the band then comprises a fourth flexible element (semi-rigid) 114 having a first upper end fixed to a second end of the third element 113 and a second end fixed to a fifth rigid element 115 allowing the fixing of the first elastic 150. coming from waypoint 111a.
  • a fourth flexible element (semi-rigid) 114 having a first upper end fixed to a second end of the third element 113 and a second end fixed to a fifth rigid element 115 allowing the fixing of the first elastic 150. coming from waypoint 111a.
  • the left branch of the strip is finally fixed to a first end of the rigid or semi-rigid element 116 forming the rear part of the rigid / semi-rigid strip, via a second end of the rigid element 115.
  • the rear part 116 may be rigid or semi-rigid so that the elements 115 and 116 may or may not be manufactured. When the rear part 116 will be semi-rigid (dark), then the fifth rigid element 115 will be distinct from the latter. On the contrary, if the rear part 116 is rigid, the elements 115 and 116 may be identical.
  • the figure 5b illustrates the detail of the right branch of the headband which is, as can be seen, perfectly symmetrical with respect to the left branch.
  • the right branch comprises a sixth rigid element 121 having a first lower end fixed to a second end of the front part 100 as well as a second upper end fixed to a first end of a seventh flexible (semi-rigid) element 122.
  • the rigid element 121 comprises, respectively at its two lower and upper ends, two passage elements 121a and 121b for a second elastic clamp 151.
  • the flexible element 122 has a first end fixed to the element 121 and a second end fixed to an eighth rigid element 123 serving as a point of passage for the elastic 151 coming from the elements 121b of the left branch.
  • the band then comprises a ninth flexible (semi-rigid) element 124 having a first upper end fixed to a second end of the element 123 and a second lower end located at a first end of a tenth rigid element 125 and allowing the fixing of the second elastic 151 coming from the passage point 121a.
  • a ninth flexible (semi-rigid) element 124 having a first upper end fixed to a second end of the element 123 and a second lower end located at a first end of a tenth rigid element 125 and allowing the fixing of the second elastic 151 coming from the passage point 121a.
  • the right branch of the strip is finally fixed to the rear (semi-rigid) element 116 which forms the rear of the rigid / semi-rigid strip via a second end of the rigid element 125.
  • the rigid element 121 comprises, at its two ends 121a and 121b, the points of passage of the elastic 151 allowing the stress on the radius of curvature R2 and, consequently, the deformation of the band. in the sagittal plane (x, z).
  • the figure 5c shows the positioning of the rigid / semi-rigid band on the head of a user with, highlighted, the role of the tightening elastics 150 and 151, making it possible to constrain the deformation of the rigid / semi-rigid band according to the three planes , by reducing the radii of curvature R1-R3 and finally adjusting the tightness of the headband on the head of a user.
  • This first embodiment of a rigid / semi-rigid strip illustrated in detail in the figures 5a and 5b is perfectly suited for producing a light headlamp, capable of holding in place a headlamp 101 located at the front and, at the rear, a power supply battery 130, even bulky.
  • the rigid / semi-rigid headband is equipped, as we will see now with the figures 6 and following, of a perfectly specific balancing device which, if it proves to be perfectly suited to the type of rigid / semi-rigid strip, could nevertheless be installed on any type of more conventional strip.
  • the figure 6 illustrates a top view of a first preferred embodiment of a rigid / semi-rigid strip provided with a load balancing device.
  • the device comprises two strands 200 and 300, non-extensible, each provided with a first end (resp. 210, 310) and a second end (resp. 220, 320).
  • the first end 210 (point A) of the strand 200 is fixed to a front part of the left branch of the band while the second end 220 (point B) of the strand 200 is fixed to a rear element of the band.
  • the first end 310 (point A ') of the strand 300 is fixed to a front part of the right branch of the headband while the second end 320 (point B') of the strand 300 is fixed to a rear member. of the headband.
  • the fixing points A, B, A 'and B' may be permanent or removable, for example by clipping, knot, etc.
  • the strip may include a plurality of clipping positions making it possible to fix the fastening elements at several possible locations.
  • the two strands are threaded inside an element 400, preferably sliding, making it possible to produce a junction C between the two strands 200 and 300.
  • the sliding element 400 may be made of any material (plastic , metal, textile) of various shapes (ring, textile).
  • the sliding element may consist of two pulleys whose axes are parallel and substantially vertical.
  • the figure 7 illustrates the operating principle of the balancing device based on the sliding element 400 which makes it possible to bring the two strands 200 and 300 closer together at a point C. It will also be observed that the ends B and B 'are close, while the ends A and A 'are relatively distant.
  • strands 200 and 300 will be chosen which are slightly elastic, wide enough to ensure comfort for the user, and thin enough not to excessively increase the weight of the headband.
  • the sliding element 400 may be made of injected plastic with a shape designed for the comfort of the user, in particular exposing large surfaces that are refined and curved for optimum contact with the user's head.
  • the sliding element 400 is provided with a mechanism for tightening the strands 200 and 300, which makes it possible to further accentuate the possibilities of adjusting the band.
  • the ends A, B, A 'and B' are equipped with fixing elements on the rigid / semi-rigid strip respectively 210, 220, 310 and 320 which can be fixed or removable by clipping for example, so that the device balancing element based on the sliding element 400 may itself be a removable accessory, useful for certain activities.
  • the headlamp in its “refined” form, as shown in the figures 5a and 5b .
  • the user wishes to engage in a more "dynamic” activity, such as for example running, he will find an appreciable advantage in the implementation of the balancing device based on the two legs 200 and 300. and the sliding element 400.
  • the fixing points will be positioned on the rigid elements making up the rigid / semi-rigid strip. Alternatively, they can be positioned on more flexible elements.
  • FIGS. 8a, 8b , 8c, 8d and 8th illustrate several perspective views of a second embodiment of a more sophisticated rigid / semi-rigid strip, comprising fixing points A and A 'respectively fixed on the front part, while the two rear fixing points B and B 'are arranged on the elements 113 and 123 of the left and right branches of the strip.
  • the fixing points are made by means of clips which are configured to be able to be placed in one or more notches arranged on the sides of the band so as to allow an adjustable fixing.
  • the attachment points could also be produced by means of sliders allowing lateral displacement of the attachment points on each side of the headlamp retaining strip.
  • the figure 9 illustrates how to obtain, as the sliding element 400 (point C) slides, various possibilities for adjusting the headband on the user's head.
  • the strands 200 and 300 gradually come to match the shape of the head. The forces are thus distributed in good part on the top of the head, increasing the comfort and the stability of the headlamp.
  • the figures 10, 11 and 12 illustrate how a user can, thanks to the advantageous arrangement of the invention, position the headlamp on his head and cause the headband to be adjusted by manipulating the sliding element 400 with one hand.
  • the figure 13 illustrates a third embodiment in which the attachment points B and B 'are made to coincide on the battery 130, when the latter is disposed at the rear of the headlamp.
  • this arrangement could be provided even in the absence of a battery at the rear, when the headlamp comprises, for example, a remote battery.
  • the attachment points may advantageously be fixed to rear attachment points of the strip.
  • the load balancing device comprises an attachment point at the rear which is based on the “tanka” usually used to adjust the headband.
  • the sliding element 400 can be replaced by a seam, as in the example of figures 16a and 16b , and it is the same "tanka" which is used to adjust the headband which also allows the adjustment of the load balancing device. It is thus also possible to obtain a balancing of the loads and this in a particularly simple way, without having to resort to the sliding element 400.
  • the figure 15a to 15c illustrate three different variants of the sliding element 400.
  • the figure 15a recalls the preferred form of the sliding element 400 which is the form used in the embodiments which have been described in relation to the preceding figures.
  • the figure 15b illustrates a second variant in which the sliding element 500 comprises two independent slides, respectively based on two parts 510 and 520, respectively left and right, into which each of the two strands 200 and 300 would slip.
  • Each of the parts 510 and 520 could thus slide along the two strands, in order to reveal two junction points C and C '.
  • Such an arrangement proves to be particularly advantageous when the rear attachment points are particularly far apart, as illustrated in the second embodiment of the figures 8a-8e , since it becomes possible to adjust the device by independently sliding each of the parts 510 and 520.
  • a double possibility of adjustment at the front and at the rear, with a "triangle opening" both front than back.
  • the double slide formed by the parts 510 and 520 is made of deformable plastic material, which makes it possible to obtain two slides which can be deformed under the tension of the strands 200 and 300, which could thus facilitate the clamping of the clamping device. load distribution by simple friction or friction on the deformable parts 510 and 520.
  • the slide element comprises three distinct undeformable parts, namely a left element 610, a central element 620 and a right element 630, making it possible to cause significant changes in direction of each of the two strands 800 and 900 used to connect the points of 'attachments A, A', B and B 'on the support band. So we get thanks in this configuration a crossing of the links and a fairly high friction allowing the device to be tightened on the user's skull.
  • FIGS. 16a and 16b illustrate a fifth embodiment of a load balancing device, in which there is, instead of the slide 400 present on the two strands 200 and 300 - only the strand 200 being shown in the figure.
  • figure 16b - a seam 1010 to connect the two strands 200 and 300 at a fixed point C.
  • the attachment point A is embodied, in this embodiment, by a textile placed on the retaining band comprising a loop 1020 in which comes s 'Thread the strand 200 to then go to join a binding on a sliding element 1030 positioned on the band.

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

Claims (10)

  1. Scheinwerfer,umfassend:
    - ein Halteband;
    - eine Lichtquelle (40, 101), die sich an der Vorderseite des Haltebands befindet; und
    eine Lastausgleichsvorrichtung mit zwei Strängen (200, 300), die Folgendes umfasst:
    - einen erstenStrang (200) mit einem ersten Ende (A) und einem zweiten Ende (B), die jeweils an einem vorderen Punkt (210) und einem linken hinteren Punkt (220) des Bandes befestigt sind;
    - einen zweiten Strang (300) mit einem ersten Ende (A') und einem zweiten Ende (B'), die jeweils an einem vorderen Punkt (310) und einem rechten hinteren Punkt (320) des Bandes befestigt sind;
    - ein Element (400, 500), in das der erste und der zweite Strang (200, 300) eingesetzt sind, um die beiden Stränge an einem Punkt C zusammenzubringen,
    dadurch gekennzeichnet, dass der Scheinwerfer ferner eine Batterie (38, 130) umfasst, die sich an der Rückseite des Haltebands befindet, und in der das Element (400, 500) ein Gleitelement ist, in das der erste und der zweite Strang (200, 300) eingefädelt sind, um die beiden Stränge an einem Punkt C zusammenzubringen
  2. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass das Element (500) ein erstes (510) und ein zweites Gleitelement (520) entlang des ersten und zweiten Strangs (200, 300) umfasst, wodurch die Einstellmöglichkeit der Lastausgleichsvorrichtung verdoppelt werden kann..
  3. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass er Befestigungselemente aufweist, die abnehmbar sind, z. B. durch Clipsen.
  4. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass die ersten Enden (A, A') der ersten und zweiten Stränge (200, 300) über ein Schiebeelement befestigt sind, das es ermöglicht, die Position der Punkte A und A' auf dem Band zu verändern.
  5. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass die zweiten Enden (B, B') der ersten und zweiten Stränge (200, 300) zu einem einzigen Punkt geschlossen sind, der sich nahe der Batterie an der Rückseite des Bandes befindet.
  6. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass die Befestigungselemente abnehmbar sind, z. B. durch Clipsen.
  7. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass das Band eine konstante Länge aufweist, symmetrisch in Bezug auf eine mittlere Sagittalebene ist und eine Abwechslung von starren/halbstarren Elementen umfasst, um eine Verformung im Raum und eine Anpassung an den Kopf eines Benutzers zu ermöglichen.
  8. Scheinwerfer nach Anspruch 6, dadurch gekennzeichnet, dass die Leiste umfasst:
    - ein starres/halbstarres Vorderteil, das eine Verformbarkeit entlang einer ersten Ebene (x, y) ermöglicht;
    - ein starres/halbstarres Zwischenteil, das eine Verformbarkeit entlang einer zweiten Ebene (x, z) ermöglicht;
    - ein starres/halbstarresHinterteil, das eine Verformbarkeit entlang einer dritten Ebene (y, z) ermöglicht;
    wobei das Band Elemente umfasst, die die Befestigung und den Durchgang eines Spanngummis ermöglichen, um die Verformung des starren/halbstarren Bandes gemäß den drei Ebenen zu begrenzen.
  9. Scheinwerfer nach Anspruch 8, dadurch gekennzeichnet, dass das Band umfasst:
    - ein Vorderteil (100), das aus einem ersten halbstarren Element besteht;
    - ein Hinterteil (116), bestehend aus einem starren oder halbstarren Element
    - einen linken Zweig, bestehend aus:
    - einem ersten starren Element (111) mit einem ersten unteren Ende und einem zweiten oberen Ende,
    wobei das erste starre Element (111) eine größere Steifigkeit aufweist als die der Vorder- (100) oder Hinterteile (116),
    wobei das erste Ende des ersten starren Elements (111) an einem ersten Ende des Vorderteils (100) befestigt ist, wobei das erste starre Element (111) jeweils an seinen beiden unteren und oberen Enden ein erstes und ein zweites Durchgangselement (111a, 111b) für ein erstes Spanngummi (150) aufweist;
    - ein zweites halbstarres Element (112) mit einem ersten Ende und einem zweiten Ende,
    wobei das erste Ende des zweiten Elements (112) an dem zweiten Ende des ersten Elements (111) befestigt ist;
    - ein drittes starres Element (113), das ein erstes Ende und ein zweites Ende hat und eine Durchgangsöffnung für das erste Spanngummi (150) aufweist, das von dem zweiten Durchgangselement (111b) des ersten Elements (111) kommt;
    wobei das erste Ende des dritten Elements (113) an dem zweiten Ende des zweiten Elements (112) befestigt ist;
    - ein viertes halbstarres Element (114) mit einem ersten Ende und einem zweiten Ende;
    wobei das erste Ende des vierten Elements (114) an dem zweiten Ende des dritten Elements (113) befestigt ist;
    - ein fünftes starres Element (115) mit einem ersten Ende und einem zweiten Ende;
    wobei das erste Ende des fünften Elements (115) an dem zweiten Ende des vierten Elements (114) befestigt ist;
    wobei das zweite Ende des fünften Elements (115) an einem ersten Ende des Hinterteils (116) befestigt ist;
    wobei das fünfte Element (115) die Befestigung des Spanngummis (150) vom Punkt des ersten Durchgangselements (111a) des ersten Elements (111) aus ermöglicht;
    einen rechten Zweig, bestehend aus:
    - einem sechsten starren Element (121) mit einem ersten unteren Ende und einem zweiten oberen Ende,
    wobei das sechste starre Element (121) eine größere Steifigkeit aufweist als die der Vorder- (100) oder Hinterteile (116),
    wobei das erste Ende des sechsten Elements (121) an einem zweiten Ende des Vorderteils (100) befestigt ist, wobei das sechste Element (121) jeweils an seinen beiden unteren und oberen Enden ein erstes Durchgangselement (121a) und ein zweites Durchgangselement (121b) für ein zweites Spanngummi (151) aufweist;
    - ein siebtes halbstarres Element (122) mit einem ersten Ende und einem zweiten Ende,
    wobei das erste Ende des siebten Elements (122) an dem zweiten Ende des sechsten Elements (121) befestigt ist;
    - ein achtes starres Element (123), das ein erstes Ende und ein zweites Ende hat und eine Durchgangsöffnung für das zweite Spanngummi (151) aufweist, das von dem zweiten Durchgangselement (121b) des sechsten Elements (121) kommt;
    wobei das erste Ende des achten Elements (123) an dem zweiten Ende des siebten Elements (122) befestigt ist;
    - ein neuntes halbstarres Element (124) mit einem ersten Ende und einem zweiten Ende;
    wobei das erste Ende des neunten Elements (124) an dem zweiten Ende des achten Elements (123) befestigt ist;
    - ein zehntes starres Element (125) mit einem ersten Ende und einem zweiten Ende;
    wobei das erste Ende des zehnten Elements (125) an dem zweiten Ende des neunten Elements (124) befestigt ist;
    wobei das zweite Ende des zehnten Elements (125) an einem zweiten Ende des hinteren Teils (116) befestigt ist;
    wobei das zehnte Element (125) die Befestigung des zweiten Spanngummis (151) ermöglicht, das von dem Punkt des ersten Durchgangselements (121a) des sechsten Elements (121) ausgeht;
  10. Scheinwerfer nach Anspruch 1, dadurch gekennzeichnet, dass das Band so konfiguriert ist, dass es die Befestigung des ersten und/oder zweiten Endes des ersten und zweiten Stranges an verschiedenen Positionen des Bandes ermöglicht.
EP19219943.8A 2018-12-31 2019-12-28 Ausgleichsvorrichtung zur verbesserung des haltens auf dem kopf einer stirnlampe Active EP3674596B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1874422A FR3091328A1 (fr) 2018-12-31 2018-12-31 Dispositif d’équilibrage améliorant le maintien sur la tête d’une lampe frontale

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EP3674596A1 EP3674596A1 (de) 2020-07-01
EP3674596B1 true EP3674596B1 (de) 2021-09-01

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US (1) US11268681B2 (de)
EP (1) EP3674596B1 (de)
CN (1) CN111473257B (de)
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FR (1) FR3091328A1 (de)

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USD936878S1 (en) * 2019-05-29 2021-11-23 Energizer Brands, Llc Lighting device
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USD939120S1 (en) 2019-09-18 2021-12-21 Energizer Brands, Llc Lighting device
USD998201S1 (en) 2020-10-23 2023-09-05 Energizer Brands, Llc Lighting device
EP4047261A1 (de) * 2021-02-23 2022-08-24 Zedel Stirnband für stirnlampe
USD1030107S1 (en) 2021-07-16 2024-06-04 Energizer Brands, Llc Lighting device

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Publication number Publication date
ES2899589T3 (es) 2022-03-14
EP3674596A1 (de) 2020-07-01
US20200208818A1 (en) 2020-07-02
FR3091328A1 (fr) 2020-07-03
US11268681B2 (en) 2022-03-08
CN111473257B (zh) 2024-05-14
CN111473257A (zh) 2020-07-31

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