The invention relates to a portable lighting device comprising at least one light-emitting diode for emitting a light beam, a fixing and connecting element of said diode, and means for adjusting the light beam.
A light-emitting diode LED comprises in conventional manner a semi-conducting component in conjunction with a reflector inside an enclosure made of transparent plastic material, for example epoxide resin-based. The front part of the molded enclosure forms an internal lens or magnifying glass through which the light ray produced by the light-emitting diode passes when the latter has been connected to a power supply source. The visualization angle emitted by the diode depends on the shape of the reflector and on the internal distance between the component and the lens. This visualization angle is constant for a LED type diode, for example 20°, and concentrates most of the useful light flux.
To make the intensity of the light flux emitted by a LED diode vary, it is conventional to supply it by means of an adjustable current electronic circuit, for example a DC-DC converter, or a microcontroller connected to a disposable or rechargeable battery. This adjustment of the supply current causes a variation of the lighting power, but does not act on the radiation of the useful light flux. A conventional reflector of an incandescent lamp does not enable the visualization angle of a LED diode to be varied either, as it acts in a zone where the lamp emits very little light.
The document U.S. Pat. No. 6,474,837 concerns a lighting lamp with light-emitting diodes, comprising a rotating plate in the form of a diaphragm drilled with holes and equipped with lenses placed facing the holes.
The document WO 01/57,431 describes a lighting device composed of a LED diode in front of which there is permanently arranged a lens movable in translation to modify the relative distance with respect to the diode.
The object of the invention is to provide a portable lighting lamp with a LED diode enabling the angle of the lighting cone of said LED diode to be easily adjusted to adjust the concentration of the light flux.
According to the invention, this object is achieved by the fact that the adjustment means comprise at least one optical focussing device able to be moved manually by a mobile support in front of the LED diode to make the visualization angle of the light beam vary. It is thus possible to obtain either broad lighting with a short range or narrow lighting with a long range.
The optical focussing device comprises a lens or magnifying glass mounted on a bistable support arranged as a swivelling or sliding plate, or a rotary knob.
According to a preferred embodiment, the lenses of Fresnel type are integrated in a transparent support to form a monoblock part. The support is made in particular of polycarbonate, resin or any other integrated optics material.
The rotary knob is movable axially on the end-part to make the axial distance arranged between the end of the knob and a stop of the fixing element vary resulting in a continuous adjustment of the angle of the lighting cone of the beam emitted by the diode.
Other advantages and features will become more clearly apparent from the following description of particular embodiments of the invention, given as non-restrictive examples only and represented in the accompanying drawings in which:
With reference to
The fixing and connecting element 12, which is shown as a rectangular-shaped element, is secured to a base 13 equipped with a pair of slots 14 designed to receive the fixing strap (not shown) of the headlamp.
To make the angle of the lighting cone emitted by the LED diodes 11 vary, the adjustment means comprise an optical focussing device 15 able to be moved manually by the user in front of each LED diode. Two settings of the lighting cone are therefore obtained, either a broad lighting beam with a short range or a narrow lighting beam with a long range.
The optical focussing device 15 advantageously comprises two Fresnel lenses 16 fixedly secured to a mobile support movable between an inactive position situated outside the light emission field of the diodes 11 (
The lenses 16 are borne by a fold-down plate of the support 17 which is mounted swivelling around a horizontal spindle 18 arranged at the top part of the base 13. In the inactive position, the plate of the support 17 bears on the top edge of the element 12 letting the diodes 11 appear. In the active position, the user folds the plate of the mobile support 17 down in front of the front face of the lighting device 10 (arrow F1,
It is clear that the mobile element 12 can comprise a plurality of lenses corresponding to the same number of LED diodes. The latter can be arranged in alignment, staggered, or distributed angularly at regular intervals around the periphery of the optical focussing device 15.
In the alternative embodiment of
In
With reference to
According to the alternative embodiment according to
The rack 33 forms a monoblock part having a preset focal distance. This part is easily interchangeable after the cap 34 has been removed.
Number | Date | Country | Kind |
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03 00980 | Jan 2003 | FR | national |
This is a Continuation of application Ser. No. 10/532,812 filed Apr. 26, 2005, now U.S. Pat. No. 7,192,165 which in turn is a National Stage of PCT/FR04/000199 filed Jan. 28, 2004. The disclosure of the prior applications is hereby incorporated by reference herein in its entirety.
Number | Name | Date | Kind |
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3705983 | Yamada | Dec 1972 | A |
6474837 | Belliveau | Nov 2002 | B1 |
Number | Date | Country |
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283 441 | Apr 1915 | DE |
U1 85 15 726.0 | Aug 1985 | DE |
0 111 818 | Jun 1984 | EP |
2 745 627 | Sep 1997 | FR |
2 264 164 | Aug 1993 | GB |
WO 0157431 | Aug 2001 | WO |
Number | Date | Country | |
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20070097674 A1 | May 2007 | US |
Number | Date | Country | |
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Parent | 10532812 | US | |
Child | 11637902 | US |