[0002] There are currently known LEDs (acronym for light emitting diode) recently used to
light various spaces, such as: domestic spaces, offices, open spaces such as squares
and gardens and the like.
[0003] LED lighting devices have various advantages with respect to more conventional lighting
devices, such as incandescent lamps and fluorescent lamps.
[0004] In particular, LEDs have a very small volume, even less than one cm
3, very high efficiency, produce a light that can obtain a desired colour, switch on
very quickly when energized by electrical current and so forth.
[0005] As well as said advantages, LED lighting devices also have some considerable drawbacks.
[0006] In fact, LEDs produce a diffused lighting which is not suitable for particular atmospheres
or for indoor spaces.
[0007] It is possible to vary said lighting by means of lenses outside the LED, but these
require the production of a complex structure, which is aesthetically unappealing
and above all reduces heat dissipation of these LEDS and therefore the lifespan thereof.
[0008] In this situation the technical aim of the present invention is to devise a lighting
device including a LED capable of substantially overcoming the aforesaid drawbacks.
[0009] Within said technical aim an important object of the invention is to achieve a lighting
device including a LED which produces diffused lighting.
[0010] The technical aim and the objects specified are achieved by a lighting device including
a LED as described in the appended Claim 1.
[0011] Preferred embodiments are highlighted in the dependent claims.
[0012] Preferred embodiments of the invention are shown by way of example in the accompanying
drawings. In particular:
Fig. 1 shows a top view of the lighting device according to the invention;
Fig. 2 shows a side view of the lighting device; and
Fig. 3 shows a side view of the lighting device in a different configuration.
[0013] With reference to the Figures, the lighting device according to the invention is
indicated as a whole with the number 1.
[0014] It comprises at least one LED 2, a support structure 3 for the LED 2 and a lens 4,
placed over the LED 2, supported by the support structure 3 and suitable to modify
the lighting of the LED 2 in particular to create diffused lighting.
[0015] In detail, the lens 4 is conveniently made of crystal or alternatively glass, or
generally vitreous material, polymer or silicone.
[0016] It conveniently has a substantially spherical cap shape having the lower part with
a substantially flat surface.
[0017] In particular, the lens 4 has a base diameter preferably of between 1 cm and 10 cm
and more preferably between 1 cm and 5 cm, a height of between 0.4 cm and 6 cm and
more preferably between 1 cm and 3 cm and a diameter to height ratio preferably between
2 and 4 and more preferably between 2.5 and 3.5.
[0018] In detail, two sizes of lens 4 are provided, one with a diameter of between 18 mm
and 22 mm and a height between 6 mm and 9 mm and the other with a diameter of between
30 mm and 36 mm and a height between 9 mm and 12 mm. In both cases, a grinding of
between 1 mm and 3 mm is also provided on the flat base to avoid the creation of sharp
corners.
[0019] The LED 2 is realized by a printed circuit
2a and a bulb, or primary lens
2b. The printed circuit 2a is conveniently substantially rectangular and flat and has
base dimensions of between 1 mm and 5 mm.
[0020] The bulb 2b, or primary lens, is made of polymer or silicone material, or glass and
preferably has an external diameter of between 0.3 mm and 3 mm and more preferably
between 1.5 mm and 2 mm. Moreover, it has a substantially semi-spherical shape.
[0021] The LED 2 has a power of between 1 W and 50 W and more preferably between 1 W and
20 W and even more preferably around 20 W.
[0022] The support structure 3 is conveniently a rod extending prevalently along a single
direction and comprising a curved portion, as specified below.
[0023] In particular, the support structure 3 comprises an elongated body
6, preferably a rod, tubular and hollow and therefore comprising a cavity
6a.
[0024] It is made of metal, preferably nickel plated copper, preferably with a substantially
circular normal section, and with a diameter preferably of between 1 mm and 30 mm,
more preferably between 2 mm and 6 mm.
[0025] The elongated body 6 comprises support means 7 of the LED 2. They include a support
surface
7a, part of the elongated body 6 and preferably defined by a flattened portion of this
elongated body 6, and a plate
8 fixed to the support surface 7a and suitable to support the LED 2 directly.
[0026] The plate 8 is conveniently rectangular and made of aluminium alloy; moreover, it
has a thickness close to the diameter of the elongated body 6, a length of between
2 and 3 cm and a height between 0.5 mm and 3 mm.
[0027] The elongated body 6 allows optimum dispersion of the heat coming from the LED 2
and houses therein electrical connections
9 for the LED 2.
[0028] The support structure 3 also preferably comprises a support element 5, suitable to
support the lens 4.
[0029] The support element 5 is part of the support structure 3 and is suitable to support
the lens 4 so that this is placed in proximity of the LED 2 but not in direct contact
therewith, as shown in Fig. 2.
[0030] In this regard, the support element 5 is conveniently realized by an extension of
the end portion of the elongated body 6, conveniently bent in a U, as shown in Fig.
2.
[0031] In particular, the support element 5 allows support of the lens 4, preferably placed
in a direction parallel to the direction of the plane on which the circuit 2a of the
LED 2 lies, and at a distance therefrom.
[0032] In detail, the distance between the LED 2 and the lens 4 is between 0.5 mm and 10
mm, and more preferably between 1 mm and 4 mm, therefrom. Moreover, the lens 4 is
preferably disposed so that the centre of the circumference is aligned vertically
to the LED 2, as shown in Fig. 1. The upper part of the support element 5 therefore
has a greater length in the case in which the lens 4 has a smaller diameter.
[0033] The lens 4 is then connected using a specific glue to the support element 5, for
a length of less than on centimetre.
[0034] The elongated body 6 is also preferably flattened at the support element 5, so as
to form an ellipsoidal section with a ratio between dimensions of around one half
and with the major axis parallel to the plate 8.
[0035] Moreover, the support element 5 is preferably provided separable from the elongated
body 6.
[0036] For this purpose, releasable mechanical connection means
10 are provided between the element 5 and the elongated body 6.
[0037] In particular, the elongated body 6 comprises a preferably circular hollow terminal
end
6b.
[0038] Between the terminal end 6b and the support surface 7a, the tubular body 6 has a
length preferably greater than 5 mm, as shown in Fig. 1, and more preferably of between
0.8 cm and 2 cm.
[0039] This end section of the tubular body 6 realizes part of the connection means 10,
which are completed by a circular pin
11, integral with the support element 5 and counter-shaped to the cavity 6a, therefore
circular and having a diameter preferably of between 1 mm and 3 mm.
[0040] Engagement between the element 5 and the tubular body 6 is therefore preferably forced
coupling.
[0041] Alternatively, connection means 10 can be provided, equipped with directional elements
which prevent rotation of the support element 5 inside the cavity 6a in the direction
parallel thereto.
[0042] The lighting device 1 according to the invention achieves important advantages. In
fact, by means of the presence of the lens 4, the device 1 produces a particular bubble
or bulb lighting, optimal for lighting both indoor and outdoor spaces.
[0043] Moreover, the arrangement of the lens 4, not in direct contact with the LED 2, allows
high dissipation of the heat that is created in the LED 2.
[0044] Furthermore, the lens 2 is releasable from the LED 2 and thus allows the latter to
be used in different modes and situations. The support element 5 can in fact be removed
and replaced immediately and with another support element provided with a different
lens 4.
[0045] Finally, the structure is simple and solid, as well as easy to produce.
[0046] In particular, fixing of the lens 4 on the support element 5, by means of a simple
glue, is immediate and can be performed with precision, without the need for further
elements.
[0047] The invention is susceptible to modifications and variants falling within the inventive
concert, as defined in the claims.
1. A lighting device (1) comprising at least one LED (2), at least one lens (4), a support
structure (3) for said LED (2) and for said lens (4), said support structure (3) is
a rod and being suitable to support said lens (4) at a distance from said LED (2)
in a manner suitable to modify the lighting of said LED (2) and comprising: an elongated
body (6) extending along a single prevalent direction of extension and support means
(7) suitable to support said LED (2) characterized in that said support structure (3) further comprises a support element (5) suitable to support
said lens (4) and realized by an extension of said elongated body (6) bent in a U.
2. A device according to claim 1, wherein said support structure (3) supports said lens
(4) at a distance of between 1 mm and 4 mm from said LED (4).
3. A device according to one or more of the preceding claims, wherein said support structure
(3) is made of copper alloy.
4. A device according to one or more of the preceding claims, wherein said elongated
body (6) is tubular and at least prevalently hollow.
5. A device according to claim 4, wherein said lens (4) is engaged by gluing to said
support element (5).
6. A device according to one or more of claims 5 and 6, wherein said support structure
(5) is separable from said elongated body (6) and wherein said support structure (3)
comprises releasable mechanical connection means (10) between said support element
(5) and said elongated body (6).
7. A device according to claim 6, wherein said connection means (10) comprise a cavity
(6a) and a circular pin (11) defining a coupling between said support element (5)
and said elongated body (6).
8. A device according to claim 7, wherein said elongated body (6) is tubular and at least
prevalently hollow and has open ends, and wherein said support element (5) can engage
with one of said open ends.
9. A device according to one or more of the preceding claims, wherein said lens (4) is
substantially realized by a spherical cap having a flat lower surface.
10. A device according to claim 9, wherein said lens (4) has a base diameter of between
1 cm and 5 cm.
11. A device according to one or more of the claims 9-10, wherein said lens (4) has a
diameter to height ratio preferably of between 2.5 and 3.5.
12. A device according to one or more of the preceding claims, wherein said lens is made
of crystal.
13. A device according to one or more of the preceding claims, wherein said LED (4) has
an external diameter of between 0.3 mm and 3 mm.
1. Beleuchtungsvorrichtung (1), die mindestens eine LED (2), mindestens eine Linse (4)
und eine Trägerstruktur (3) der genannten LED (2) und der genannten Linse (4) umfasst,
wobei es sich bei der genannten Trägerstruktur (3) um einen Stab handelt, der geeignet
ist, die genannte Linse (4) so im Abstand zu der genannten LED (2) zu halten, dass
die Beleuchtung der genannten LED (2) geändert wird, und einen länglichen Körper (6)
umfasst, der entlang einer einzigen vorrangigen Verlaufsrichtung verläuft und Trägervorrichtungen
(7) umfasst, die geeignet sind, die genannte LED (2) zu tragen und dadurch gekennzeichnet ist, dass die genannte Trägerstruktur (3) ein Trägerelement (5) umfasst, das geeignet ist,
die genannte Linse (4) zu tragen und aus einer zu einem U gebogenen Verlängerung des
genannten länglichen Körpers (6) besteht.
2. Vorrichtung nach Anspruch 1, bei der die genannte Trägerstruktur (3) die genannte
Linse (4) in einem Abstand zwischen 1 mm und 4 mm von der genannten LED (2) hält.
3. Vorrichtung nach einer oder mehreren der vorangegangenen Ansprüche, bei der die genannte
Trägerstruktur (3) aus Kupferlegierung besteht.
4. Vorrichtung nach einer oder mehreren der vorangegangenen Ansprüche, bei der der genannte
längliche Körper (6) rohrförmig und zumindest vorrangig hohl ist.
5. Vorrichtung nach Anspruch 6, bei der die genannte Linse (4) durch Verkleben mit dem
genannten Trägerelement (5) verbunden ist.
6. Vorrichtung nach einem oder mehreren der Ansprüche 5 und 6, bei der das genannte Trägerelement
(5) von dem genannten länglichen Körper (6) getrennt werden kann und bei der die genannte
Trägerstruktur (3) mechanische und lösbare Verbindungselemente (10) zwischen dem genannten
Trägerelement (5) und dem genannten länglichen Körper (6) umfasst.
7. Vorrichtung nach Anspruch 6, bei der die genannten Verbindungselemente (10) eine Vertiefung
(6a) und einen runden Stift (11) umfassen, die eine Verbindung zwischen dem genannten
Trägerelement (5) und dem genannten länglichen Körper (6) definieren.
8. Vorrichtung nach Anspruch 7, bei der der genannte längliche Körper (6) rohrförmig
und zumindest vorrangig hohl ist und offene Enden aufweist und bei der das genannte
Trägerelement (5) mit einem der genannten beiden Enden verbunden werden kann.
9. Vorrichtung nach einem oder mehreren der vorangegangenen Ansprüche, bei der die genannte
Linse (4) im Wesentlichen aus einer kugelförmigen Kappe mit einer flachen unteren
Fläche besteht.
10. Vorrichtung nach Anspruch 9, bei der die genannte Linse (4) einen Basisdurchmesser
zwischen 1 cm und 5 cm aufweist.
11. Vorrichtung nach einem oder mehreren der Ansprüche 9-10, bei der die genannte Linse
(4) vorzugsweise ein Verhältnis zwischen Durchmesser und Höhe zwischen 2,5 und 3,5
aufweist.
12. Vorrichtung nach einer oder mehreren der vorangegangenen Ansprüche, bei der die genannte
Linse aus Kristall besteht.
13. Vorrichtung nach einem oder mehreren der vorangegangenen Ansprüche, bei der die genannte
LED (4) einen Außendurchmesser zwischen 0,3 mm und 3 mm aufweist.
1. Dispositif d'éclairage (1) comprenant au moins une DEL (2), au moins une lentille
(4), une structure de support (3) de ladite DEL (2) et de ladite lentille (4), ladite
structure de support (3) est une tige apte à soutenir ladite lentille (4) à distance
de ladite DEL (2) de façon apte à modifier l'éclairage de ladite DEL (2) et comprenant
un corps allongé (6) se développant le long d'une seule direction de développement
prédominante et comprenant des moyens de support (7) aptes à soutenir ladite DEL (2)
et caractérisé en ce que ladite structure de support (3) comprend un élément de soutien (5) apte à soutenir
ladite lentille (4) et constitué d'un prolongement replié en U dudit corps allongé
(6).
2. Dispositif selon la revendication 1, dans lequel ladite structure de support (3) soutient
ladite lentille (4) à une distance comprise entre 1 mm et 4 mm de ladite DEL (2).
3. Dispositif selon une ou plusieurs des revendications précédentes, dans lequel ladite
structure de support (3) est en alliage de cuivre.
4. Dispositif selon une ou plusieurs des revendications précédentes, dans lequel ledit
corps allongé (6) est tubulaire et au moins en majorité creux.
5. Dispositif selon la revendication 6, dans lequel ladite lentille (4) est engagée par
collage dans ledit élément de support (5).
6. Dispositif selon une ou plusieurs des revendications 5 et 6, dans lequel ledit élément
de support (5) est séparable dudit corps allongé (6) et dans lequel ladite structure
de support (3) comprend des moyens de liaison (10) mécaniques et pouvant être relâchés
entre ledit élément de support (5) et ledit corps allongé (6).
7. Dispositif selon la revendication 6, dans lequel lesdits moyens de liaison (10) comprennent
un évidement (6a) et une goupille circulaire (11) définissant un enclenchement entre
ledit élément de support (5) et ledit corps allongé (6).
8. Dispositif selon la revendication 7, dans lequel ledit corps allongé (6) est tubulaire
et au moins en majorité creux et présente des extrémités ouvertes, et dans lequel
ledit élément de support (5) est engageable dans une desdites extrémités ouvertes.
9. Dispositif selon une ou plusieurs des revendications précédentes, dans lequel ladite
lentille (4) est essentiellement constituée d'une calotte sphérique ayant une surface
inférieure plate.
10. Dispositif selon la revendication 9, dans lequel ladite lentille (4) a un diamètre
de base compris entre 1 cm et 5 cm.
11. Dispositif selon une ou plusieurs des revendications 9-10, dans lequel ladite lentille
(4) a un rapport entre diamètre et hauteur compris de préférence entre 2,5 et 3,5.
12. Dispositif selon une ou plusieurs des revendications précédentes dans lequel ladite
lentille est en cristal.
13. Dispositif selon une ou plusieurs des revendications précédentes, dans lequel ladite
DEL (4) a un diamètre extérieur compris entre 0,3 mm et 3 mm.