[0001] The present invention relates to an automotive light.
[0002] More specifically, the present invention relates to a rear light for cars, use to
which the following description refers purely by way of example without implying any
loss of generality.
[0003] As is known, the car rear lights are usually made up of a substantially basin-shaped,
rigid rear casing which is structured so as to be permanently recessed into a compartment
specifically made in the rear portion of the vehicle body; of at least one cup-shaped
body of substantially parabolic profile, which is located inside the rear casing with
the concave side facing the mouth of the rear casing, and has a mirror-finished inner
surface so as to reflect the incident light towards the mouth; of a light source which
is placed close to the bottom of the cup-shaped body, and is structured so as to emit
light when electricity powered; and of a front lenticular half-shell which is at least
partially made of a transparent or semi-transparent, also possibly colored, plastic
material and is arranged to close the mouth of the casing so as to emerge to the outside
of the vehicle body and be crossed by the light emitted from the light source underneath.
[0004] More specifically, the front lenticular half-shell is provided with at least one
transparent or semi-transparent, usually colored, portion, and is positioned immediately
over the body of the reflecting cup and, according to the features of the light beam
that the light must emit, may be shaped so as to have clear surfaces which do not
significantly modify the propagation of light and/or optical surfaces having the function
of either scattering or concentrating the light produced by the light source underneath.
[0005] Over the past years, after having integrated the rear light in the outer profile
of the vehicle body, some car manufacturers have decided to fit, on some new car models,
rear lights which have, either on the inner face of the lenticular half-shell or on
the inner surface of the reflecting cup-shaped body, relief decorative patterns which
are shaped so as to produce, when the light is turned on, certain special light effects
having the function of creating a unique and immediately recognizable light beam emitted
by the light. In this way, the model of car that adopts this particular type of light
can be easily recognized/ identified among all vehicles in circulation.
[0006] In other words, the light effects produced by the rear light are used to give greater
visibility and distinctive capacity to the car having said light installed.
[0007] Aim of the present invention is to make a rear light for cars, motor vehicles and
the like, which is capable of producing new aesthetically engaging and innovative
light effects greater than those currently known.
[0008] In compliance with the above aims, according to the present invention there is provided
an automotive light comprising at least one main cup-shaped body which has the inner
surface structured so as to direct the incident light towards the mouth of the main
cup-shaped body itself, and at least one light source which is located within the
main cup-shaped body, and is structured so as to emit light when electricity-powered;
the automotive light being characterized by comprising at least two additional optical
filters, which are made of a transparent or semi-transparent material, and are arranged
so as to be crossed in rapid sequence by the light produced by the light source; the
two additional optical filters being both provided with a respective optical surface
structured so as to have a decorative optical pattern which is cyclically repeated
with a predetermined spatial periodicity; the shape and/or spatial periodicity of
the decorative optical pattern on the first optical filter being different from the
shape and/or spatial periodicity of the decorative optical pattern on the second optical
filter, and such to cause, in the light coming out from the main cup-shaped body,
an inferometric effect with Moiré deterioration which generates a virtual decorative
optical pattern different from the decorative optical patterns on the two additional
optical filters.
[0009] A non-limiting embodiment of the present invention will now be described with reference
to the accompanying drawings, in which:
- Figure 1 shows in a partially exploded isometric view, and with parts removed for
clarity, a car rear light realized in accordance with the teachings of the present
invention;
- Figure 2 is a sectional view of the rear light shown in Figure 1; whereas
- Figures 3 to 8 schematically show corresponding variants of the Figure 1 rear light.
[0010] With reference to Figures 1 and 2, referral numeral 1 indicates as a whole an automotive
light specially structured to be fixed on the front or rear part of the vehicle body
of a car or other vehicle.
[0011] More specifically, in the example shown the automotive light 1 is preferably, though
not necessarily, structured to be fixed on the rear part of the car body, and comprises:
- a substantially basin-shaped, rigid rear casing 2 which is structured so as to be
recessed into a compartment specifically made in the vehicle body (not shown);
- at least one main cup-shaped body 3 preferably, though not necessarily, having a parabolic
profile and which is located in the rear casing 2 with the concave side facing the
mouth 2a of the rear casing 2, and has the inner surface 3i structured so to direct
the incident light towards the mouth 3i of the cup-shaped body 3 and, therefore, towards
the mouth 2a of the rear casing 2; and
- at least one light source 4 which is arranged close to the bottom of the cup-shaped
body 3, roughly in the center thereof, and is structured so as to emit light when
electricity powered.
[0012] In the example shown, in particular, the inner surface 3i of cup-shaped body 3 is
preferably, though not necessarily, metalized or otherwise mirror-finished, so as
to reflect the incident light towards the mouth 3a of cup-shaped body 3 and, therefore,
towards the mouth 2a of rear casing 2.
[0013] Automatic light 1 is further provided with a front lenticular half-shell 5 at least
partially made of a transparent or semi-transparent material, and which is arranged
to close the mouth 2a of the rear casing 2 so as to surface from the outside of the
vehicle body (not shown) and be crossed by the light emitted by the light source 4.
The cup-shaped body 3 is thus positioned in the rear casing 2 with the mouth 3a facing
the lenticular half-shell 5.
[0014] More specifically, the lenticular half-shell 5 is provided with at least one transparent
or semi-transparent, and optionally also colored, portion, and is arranged to close
the mouth 2a of rear casing 2, so that its transparent or semi-transparent portion
is crossed by at least part of the light that is emitted by the light source 4 and
is reflected towards the mouth 2a of the casing 2a of the cup-shaped body 3.
[0015] In the example shown, in particular, automotive light 1 is preferably, though not
necessarily, provided with only one cup-shaped body 3 completely recessed inside the
rear casing 2; while the lenticular half-shell 5 is preferably, though not necessarily,
made entirely of a transparent or semi-transparent plastic material, optionally also
colored, such as polycarbonate or polymethyl methacrylate.
[0016] More specifically, in the example shown the cup-shaped body 3 is preferably, though
not necessarily, made of an opaque plastic material via an injection molding process,
and has the inner surface 3i mirror-metalized so as to reflect the incident light.
The bottom of cup-shaped body 3 is furthermore rigidly anchored to the bottom of rear
casing 2 by means of pass-through screws that pass in sequence both elements.
[0017] Similarly, the rear casing 2 is preferably, though not necessarily, made of an opaque
plastic material via an injection molding process, and is provided with a number of
protruding fixing appendixes in plastic and/or metal material.
[0018] Obviously, in a different embodiment the cup-shaped body 3 can be made in one piece
with the rear casing 2 preferably, though not necessarily, via an injection molding
process.
[0019] With reference to Figure 2, light source 4 instead preferably, though not necessarily,
consists in a incandescent light bulb 4 or similar which is fitted in removable manner
into a light socket 6 which, in turn, is structured so as to be inserted and then
locked in a rigid and stable, though easily releasable, manner within a pass-through
hole 6a specifically realized on the bottom of cup-shaped body 3, so as to allow the
light bulb 4 to protrude into the cup-shaped body 3 while keeping said bulb substantially
coaxial to the longitudinal axis A of the cup-shaped body 3.
[0020] With reference to Figures 1 and 2, unlike the currently known automotive lights,
the automotive light 1 is also provided with two substantially lenticular-shaped,
neutral optical filters 7 and 8 which are made of transparent or semi-transparent
material and are arranged one on top of the other, immediately underneath the lenticular
half-shell 5, so as to be parallel and faced one other and to either partially or
completely cover the mouth 3a of the cup-shaped body 3 for being crossed by the light
coming out from the latter.
[0021] In the example shown, in particular, the optical filters 7 and 8 are made of transparent
or semi-transparent, optionally also colored, plastic material; lay on reference planes
locally and substantially perpendicular to the longitudinal axis A of cup-shaped body
3; and are dimensioned so as to completely cover the mouth 3a of the cup-shaped body
3, so as to be crossed by the whole of the light which is produced by the light bulb
4 and comes out from cup-shaped body 3.
[0022] Each optical filter 7, 8 is furthermore structured so as to have, on one of the two
faces, a decorative preferably, though not necessarily, bas-relief optical pattern
which is cyclically repeated on surface of the optical filter 7 or 8 with a predetermined
spatial periodicity. The decorative optical pattern on the optical filter 7 has, in
all cases, a shape/design and/or spatial periodicity which is slightly different from
that of the decorated optical pattern present on optical filter 8, so as to cause,
in the light coming out from of the main cup-shaped body 3, an inferometric effect
with Moiré deterioration that generates a virtual decorative optical pattern different
from the decorative optical patterns on the two additional optical filters 7 and 8.
[0023] The automotive light 1 is furthermore provided with an electrically-actuated moving
device 9 which is structured so as to be able to move, on command, the two optical
filters 7 and 8 one with respect to the other so as to be able to control the arising
of the interferometric effect with Moiré deterioration, and/or adjust/vary on command
the intensity of the interferometric effect with Moiré deterioration.
[0024] By movement of the two optical filters 7 and 8 to one another, it is also intended
even a temporary elastic deformation of one of the two optical filters 7, 8, while
the other filter remains preferably, though not necessarily, always of the same shape.
[0025] With reference to Figure 2, in the example shown, in particular, the optical filter
7 consists of a discshaped body made of a transparent or semi-transparent plastic
material, optionally also colored, which has a shape complementary to that of the
mouth 3a of cup-shaped body 3, and is rigidly fixed to the cup-shaped body 3, so as
to lie on a reference plane locally perpendicular to the axis A of the cup-shaped
body 3 and be crossed by the whole light coming out of cup-shaped body 3; whereas
the optical filter 8 consists of a discshaped body made of a transparent or semi-transparent
plastic material, optionally also colored, which is fixed in axially rotational manner
on an annular fifth wheel 10 which, in turn, is rigidly fixed to the mouth 3a of the
cup-shaped body 3, so as to lay on a reference plane locally orthogonal to the axis
A of the cup-shaped body 3, and so as to be coaxial to axis A of the cup-shaped body
3.
[0026] Alternatively, the annular fifth wheel 10 may also be fixed directly onto the rear
casing 2 or to the front half-shell 5, obviously always over the mouth 3a of the cup-shaped
body 3.
[0027] Thus the optical filter 8 can freely rotate around the axis A of cup-shaped body
3, immediately over the optical filter 7, and the optical-filter moving device 9 consists
of a small, permanent-magnets electric motor 9 or similar which is preferably, though
not necessarily, located in the gap formed by the cup-shaped body 3 within the rear
casing 2, so that its motor shaft overhangingly protrudes beyond the mouth 3a of the
cup-shaped body 3, and may mesh on a toothed annular crown 9a specifically realized
on the periphery of the optical filter 8, so as to be able to rotate the optical filter
8 about axis A within the fifth wheel 10, and consequently vary, on command, the angular
position of the optical filter 8 with respect to the optical filter 7.
[0028] Obviously, the rotation axis of optical filter 8 may also be parallel and distanced
from axis A of cup-shaped body 3. Similarly, the electric motor 9 may be replaced
by another type of electro-mechanical or piezoelectric actuator capable of varying,
on command, the angular position of the optical filter 8 with respect to the optical
filter 7.
[0029] As regards instead the decorative optical pattern present on the optical filters
7 and 8, the outer face of optical filter 7 is preferably, though not necessarily,
provided with a number of radially-oriented longitudinal recesses, which are angularly
equally spaced about the axis of the optical filter, i.e. about the axis A of cup-shaped
body 3, and which extend along the periphery of the optical filter 7 so as to form
a regular undulated profile with radial development.
[0030] The outer face of the optical filter 8, i.e. the face facing the front half-shell
5, is instead provided with a second series of transversal recesses which are locally
inclined and staggered with respect to the transversal recesses of the optical filter
7 underneath, and are angularly spaced about the reference axis of the optical filters,
i.e. about the axis A of cup-shaped body 3, so as to form, along the periphery of
the optical filter 8, a second regular undulated annular profile, the shape of which
slightly differs from that of the annular crown on the optical filter 7.
[0031] The functioning of rear light 1 is easily inferable from that description above and
needs no further explanations. Except to point out that the interferometric effect
with Moiré deterioration occurs when the decorative optical patterns present, respectively,
on the surfaces of the two optical filters 7 and 8 have a well-defined spatial distribution
with respect to each other, and that the interferometric effect with Moiré deterioration
allows the external observer to visualize a virtual decorative pattern having a shape
and a spatial periodicity completely different from that of the two decorative optical
patterns present on the optical filters 7 and 8.
[0032] In this particular context, the moving device 9 has the function of arranging, on
command, the optical filters 7 and 8 in the spatial configuration which causes the
manifesting of the inferometric effect with Moiré deterioration.
[0034] In addition to the above, experimental tests have shown that the interferometric
effect with Moiré deterioration may occur even when the two decorative patterns or
optical designs that are superimposed, are of identical shape but are slightly offset
and/or rotated one relative to the other so as to slightly change the spatial periodicity
thereof.
[0035] The advantages deriving from the particular structure of the automotive light 1 are
numerous. First, the use of the interferometric effect with Moiré deterioration allows
the automotive light 1 to produce virtual three-dimensional developed light effects,
i.e. virtually provided with depth, which are radically different, and much more visually
engaging, than those offered by the currently-installed rear lights on cars.
[0036] There are many advantages deriving from the particular structure of the automotive
light 1. Firstly, the use of the inferometric effect with Moiré deterioration allows
the automotive light 1 to produce light effects with virtual three-dimensional development,
i.e. virtually provided with depth, which are radically different, and aesthetically
much more pleasing, than those offered by the rear lights currently fitted on cars.
[0037] Furthermore, the considerable distance between the two optical filters 7 and 8 allows
to exploit the parallax effects to make more realistic the "depth" and three-dimensionality
of the light effects produced by the light.
[0038] And moreover, this particular structure allows the automotive light 1 to change appearance
when the light source 4 is turned on. If lighted from the outside, in fact, the automotive
light 1 shows to the viewer only the optical filter 8, with its relative ornamental
pattern.
[0039] Finally, the automotive light 1 has production costs that are only slightly higher
than those of a traditional automobile light, with all the commercial advantages that
this implies.
[0040] Clearly, changes may be made to the car automotive light 1 as described and illustrated
above without, however, departing from the scope of the present invention.
[0041] For example, in a non-shown, more sophisticated embodiment of the automotive light,
the automotive light 1 may be provided with a third optical filter arranged so as
to be crossed by the light produced by the light source 4, either upstream or downstream
of the optical filters 7 and 8. This third optical filter will be provided with an
optical surface structured so as to display a third decorated optical pattern which
is cyclically repeated with a predetermined special periodicity; the shape and/or
spatial periodicity will be different from the shape and/or the spatial periodicity
of the decorative optical patterns present on the optical filters 7 and 8, so that
the light coming out from the cup-shaped body 3 produces, again for inferometric effect
with Moiré deterioration, a virtual decorative optical pattern different from the
decorative optical patterns present on the three optical filters mentioned above.
[0043] Furthermore, in a second, non-shown and more sophisticated embodiment of the automotive
light, the light source 4 may be replaced by a series of light-emitting diodes which
are distributed on a supporting and power-supplying board which, in turn, is arranged
in the cup-shaped body 3 with the diodes facing the mouth 3a of the cup-shaped body
3. In this case, the inner surface 3i of the cup-shaped body 3 may also not be mirror-finished.
[0044] Furthermore, the optical-filters moving device 9 may also be structured so as to
be able to rotate, on command and in continuous manner, any one of the two optical
filters 7, 8 about the axis A of cup-shaped body 3, so as to seamlessly move in space
and/or to modify the virtual decorative optical pattern generated by inferometric
effect with Moiré deterioration over time.
[0045] With reference to figure 3, in a first alternative embodiment, the optical filter
7 consists of a lenticular body 7 made of transparent or semi-transparent, optionally
also colored, material which is directly fixed on the lenticular half-shell 5, over
the mouth 3a of the cup-shaped body 3; the optical filter 8 instead remains fixed
in axially rotating manner on the annular fifth wheel 10, so as to be rotated about
axis A of cup-shaped body 3 by the moving device 9.
[0046] With reference to Figure 4, in a second alternative embodiment, the optical filter
7 consists of a cup-shaped body 7 made of transparent or semi-transparent, possibly
also colored, material, which is arranged directly on the bottom of the cup-shaped
body 3, so as to be crossed by the light emitted by the light bulb 4 and reflected
towards the mouth 3a of the cup-shaped body 3; the optical filter 8 instead remains
fixed in axially rotational manner on the annular fifth wheel 10, so as to be rotated,
on command, about the axis A of the cup-shaped body by the moving device 9. The cup-shaped
body 7 may possibly be made also in one piece with the cup-shaped body 3.
[0047] With reference to Figure 5, in a third alternative embodiment, the optical filter
7 instead consists of a cap 7 of transparent or semi-transparent, possibly also colored,
material, which has the shape of a substantially cylindrical bell, extends coaxially
to the axis A of cup-shaped body 3 within said cup-shaped body 3, and is fitted directly
on the light bulb 4 so as to be first crossed by the light emitted by the light bulb
4. The cap 7 in transparent or semi-transparent material is furthermore rigidly fixed
on the light socket 6, and has, on its inner or outer cylindrical lateral surface,
a preferably, though not necessarily made, bas-relief, decorative optical pattern
having a predetermined spatial periodicity.
[0048] In the example shown, in particular, the outer cylindrical lateral surface of cap
7 has a regular undulated profile, wherein the crests of the waves are parallel to
each other and slightly inclined with respect to the longitudinal axis of the cap
7, i.e. slightly inclined with respect to the axis A of the cup-shaped body 3.
[0049] The light that crosses the cap 7 is reflected by the inner surface 3i of the cup-shape
body 3 and comes out of the mouth 3a of cup-shaped body 3 generating, due to the interferometric
effect with Moiré deterioration, a virtual decorative optical pattern which has a
shape/design and a spatial periodicity completely different from those of the two
decorative optical patterns present on the optical filters 7 and 8.
[0050] In this third alternative embodiment, the optical filter 8 remains preferably, though
not necessarily, fixed in axially rotational manner on the annular fifth wheel 10
so as to be able to rotate about the axis A of cup-shaped body 3 under the bias of
the moving device 9.
[0051] With reference to figure 6, in a fourth alternative embodiment the lenticular-shaped
optical filter 7 is fixed to the mouth 3a of the cup-shaped body 3, closing the latter;
the optical filter 8 instead consists of a cap 8 in transparent or semi-transparent,
possibly also colored, material, which has the shape of a substantially cylindrical
bell, extends coaxially to the axis A of cup-shaped body 3 within said cup-shaped
body 3, and is fitted directly on the light bulb 4 so as to be first crossed by the
light emitted by the light bulb 4. The cap 8 in transparent or semi-transparent material
has, on its inner or outer cylindrical lateral surface, a preferably, though not necessarily,
bas-relief, decorative optical pattern having a predetermined spatial periodicity;
and is fixed in axially rotational manner on an annular fifth wheel 11 which in turn
is rigidly fixed on the light socket 6, coaxial to the axis A of cup-shaped body 3.
[0052] Thus the cap 8 is therefore crossed by the light emitted from the light bulb 4 and
can rotate around the axis A of cup-shaped body 3.
[0053] In this fourth variant embodiment, the optical-filters moving device 9 consists of
a small permanent-magnets electric motor 9 or similar, which is fixed to the light
socket 6 next to the light bulb 4, so that its drive shaft protrudes inside the cup-shaped
body 3, and can mesh on a toothed annular crown specifically realized on the periphery
of cap 8, so as to be able to rotate cap 8 within the fifth wheel 11 about axis A,
and consequently vary, on command, the angular position of cap 8 with respect to the
optical filter 7.
[0054] Also in this case, the cylindrical outer or inner surface of cap 8 in transparent
or semi-transparent material is provided with a decorative optical pattern preferably,
though not necessarily, in bas-relief which is provided with a predetermined spatial
periodicity. More specifically, in the example shown the outer cylindrical surface
of the cap 8 has a regular undulated profile, in which the crests of the waves are
parallel to one another and slightly inclined with respect to the longitudinal axis
of the cap 8, i.e. slightly inclined with respect to the axis A of cup-shaped body
3.
[0055] The light which crosses the cap 8 is reflected by the inner surface 3i of the cup-shape
body 3 and comes out of the mouth 3a of cup-shaped body 3 generating, due to the interferometric
effect with Moiré deterioration, a virtual decorative optical pattern which has a
shape/ design and a spatial periodicity completely different from those of the two
decorative optical patterns present on the optical filters 7 and 8.
[0056] With reference to figure 7, in a first simplified embodiment, the optical filter
8 consists of a cup-shaped body 8 made of transparent or semi-transparent, possibly
colored, material, which is arranged directly on the bottom of the cup-shaped body
3, so as to be crossed by the light emitted by the light bulb 4 and reflected towards
the mouth 3a of the cup-shaped body 3; the optical filter 7 instead remains to close
the mouth 3a of the cup-shaped body 3.
[0057] In this simplified embodiment, obviously, the automotive light 1 lacks the moving
device 9.
[0058] With reference to Figure 8, in a second simplified embodiment, the optical filter
7 consists of a cup-shaped body 7 made of transparent or semi-transparent, possibly
also colored, material, which is arranged directly on the bottom of the cup-shaped
body 3, so as to be crossed by the light emitted by the light bulb 4 and reflected
towards the mouth 3a of the cup-shaped body 3; the optical filter 8 instead consists
of a lenticular body 8 made of transparent or semi-transparent, possibly also colored,
plastic material, which is fixed directly onto the lenticular half-shell 5, over the
mouth 3a of the cup-shaped body 3.
[0059] Once again, in this simplified embodiment, obviously, the automotive light 1 lacks
the moving device 9.
1. Automotive light (1) comprising at least one main cup-shaped body (3) having the inner
surface (3i) structured so to direct the incident light towards the mouth (3a) of
the same main cup-shaped body (3), and at least one light source (4) which is located
within the main cup-shaped body (3), and is structured so as to emit light when electricity
powered;
the automotive light (1) being characterized by comprising at least two additional optical filters (7, 8), which are made of a transparent or
semi-transparent material, and are arranged so to be crossed in sequence by the light
produced by the light source (4); the two additional optical filters (7, 8) being
both provided with a respective optical surface structured so to have a decorative
optical pattern which is cyclically repeated with a predetermined spatial periodicity;
the shape and/or spatial periodicity of the decorative optical pattern on the first
optical filter (7) being different from the shape and/or spatial periodicity of the
decorative optical pattern on the second optical filter (8), and such to cause, in
the light coming out from the main cup-shaped body (3), an inferometric effect with
Moiré deterioration which generates a virtual decorative optical pattern different
from the decorative optical patterns on the two additional optical filters (7, 8).
2. Automotive light according to Claim 1, characterized by further comprising electrically actuated moving means (9) which are structured for
moving, on command, said at least two optical filters (7, 8) one with respect to the
other.
3. Automotive light according to Claim 1 or 2, characterized in that at least one of said additional optical filters (7, 8) is substantially lenticular
in shape, and is located substantially at the mouth (3a) of the main cup-shaped body
(3), so to be crossed by the light which exits therefrom.
4. Automotive light according to any one of the foregoing Claims, characterized in that one of said optical filters (7, 8) consists of a cup-shaped body (7, 8) made of a
transparent or semi-transparent material, which is placed at the bottom of the main
cup-shaped body (3).
5. Automotive light according to any one of the foregoing Claims, characterized in that one of said optical filters (7, 8) consists of a cap made of a transparent or semi-transparent
material (7, 8), which is substantially bell-shaped and is fitted onto the light source
(4) so as to be crossed by the light emitted by the latter.
6. Automotive light according to Claim 5, characterized in that said cap (7, 8) made of a transparent or semi-transparent material is in the shape
of a substantially cylindrical bell, and is arranged substantially coaxial to the
longitudinal axis (A) of the main cup-shaped body (3).
7. Automotive light according to Claim 3, characterized in that the optical filters (7, 8) are substantially lens-shaped, and are located over each
other, at the mouth (3a) of the main cup-shaped body (3), so as to be locally substantially
perpendicular to the longitudinal axis (A) of the main cup-shaped body (3) and to
be crossed by the light coming out from the main cup-shaped body (3).
8. Automotive light according to any one of Claims 2-7, characterized in that one of said optical filters (7, 8) is able to rotate about a predetermined reference
axis (A), and in that the moving means (9) are structured for rotating this optical filter (7, 8) about
said reference axis (A).
9. Automotive light according to Claim 8, characterized in that said reference axis (A) is locally substantially coincident with the longitudinal
axis (A) of the main cup-shaped body (3).
10. Automotive light according to any one of the foregoing Claims,
characterized by further comprising:
- a substantially basin-shaped, rigid rear casing (2) which is structured so as to
be recessed into a compartment specifically made in the vehicle body; and
- a front lenticular half-shell (5) at least partially made of a transparent or semi-transparent
material, and which is placed to close the mouth (2a) of the rigid rear casing (2);
said at least one main cup-shaped body (3) being located inside the rigid rear casing
(2), with the mouth (3a) of the main cup-shaped body (3) facing the front lenticular
half-shell (5).
11. Automotive light according to Claims 3 and 10, characterized in that at least one of said additional optical filters (7, 8) is substantially lens-shaped,
and is fixed to the front lenticular half-shell (5) immediately over the mouth (3a)
of the main cup-shaped body (3).
12. Automotive light according to any one of the foregoing Claims, characterized in that the inner surface (3i) of the main cup-shaped body (3) is mirror-finished so as to
reflect the incident light towards the mouth (3a) of the same main cup-shaped body
(3).