FIELD OF THE INVENTION
[0001] The present invention concerns a protective helmet provided with an acoustic communication
device and a half-chinbar, used when driving automobiles or motor vehicles, in particular
but not exclusively in the field of automobile races and sports competitions, specifically
but not restrictively in the field of rallies. However, it is not to be excluded that
the present invention can also be used in the field of sports motorcycling or in other
fields which envisage the use of protective helmets.
BACKGROUND OF THE INVENTION
[0002] It is known for the driver and/or passengers to use a protective helmet in automobile
races. Generally, a helmet of the type in question is provided with a protective cover
or shell for the head, which has a lower aperture in which the head is inserted, and
a front aperture of which at least one function is to allow the wearer of the helmet
to see.
[0003] Protective helmets are also known which include an acoustic communication device
which includes a microphone and transceiver means to receive and communicate with
the outside and inside.
[0004] In so-called integral helmets, the front aperture is limited to a front band which
substantially affects the zone around the eyes, while at the lower part there is a
continuous chinstrap on one side and the other of the cover, or shell, of the helmet,
and integral therewith, which closes the lower front part of the cover to give greater
protection to the user: the front and lower apertures are therefore distinct and separate
from each other.
[0005] On the contrary, in the case of so-called open helmets, or jet helmets, the chinstrap
is not normally provided and the helmet is open at the front, with a single continuous
aperture constituting the front and lower aperture. Such open or jet helmets on the
one hand can protect the wearer to a lesser degree, but on the other hand they give
greater comfort and freedom, especially considering the high temperatures that can
be reached for example in a close cockpit during an automobile race.
[0006] In particular, in rally races it is known to make a helmet in which there is a half-chinbar
which does not extend from one side of the cover to the other, but is formed by an
arm which extends cantilevered only partly on one side of the front aperture, and
during use terminates substantially in correspondence with the user's mouth.
[0007] The half-chinbar is normally used to position the microphone in front of the mouth
of the wearer, or in any case to facilitate their use. Generally, the driver and the
passengers, for example the navigator, can communicate easily, using the microphones.
[0009] One problem in using microphones of the type discussed here is the disturbance to
the audio communication coming from environmental noise, in particular coming from
the drive members during driving, as well as from the movement of the vehicle on the
road surface.
[0010] Purpose of the present invention is to obtain a helmet provided with an acoustic
communication device and a half-chinbar which guarantees greater acoustic comfort
in communication operations using the microphone, reducing the acoustic disturbances
due to environmental noise during use, damping and dissipating the environmental noise
and the echoes which can interfere with communication.
[0011] The Applicant has devised, tested and embodied the present invention to overcome
the shortcomings of the state of the art and to obtain these and other purposes and
advantages.
SUMMARY OF THE INVENTION
[0012] The present invention is set forth in independent claim 1, while the dependent claims
describe other characteristics of the invention or variants to the main inventive
idea.
[0013] In accordance with the above purpose, a helmet according to the present invention
is provided with an acoustic communication device which includes at least a microphone.
[0014] The helmet comprises a protective cover or shell which has at least a front aperture
and a half-chinbar which extends cantilevered from one side of the front aperture
so as to have a free end disposed in an intermediate position in the front aperture,
to which the microphone is associated.
[0015] The helmet of the present invention comprises an anechoic device associated to the
free end of the half-chinbar and configured to cooperate with the microphone.
[0016] In this way, thanks to the position of the anechoic device and its configuration,
it is possible to guarantee greater acoustic comfort in communication operations using
the microphone to the user wearing the helmet, reducing acoustic disturbances due
to environmental noise during use, damping and dissipating the environmental noise
and echoes which can interfere with communication.
[0017] Advantageously, the anechoic device is included in the half-chinbar. This guarantees
an optimal acoustic coordination with the position of the microphone.
[0018] In one form of embodiment, the half-chinbar is formed by an arm, which has an internal
surface facing toward the front aperture and extends cantilevered from one side of
the front aperture toward the inside of the front aperture itself, having the free
end in an intermediate position in the front aperture, so that, when in use, it is
substantially in correspondence to the mouth of the user of the helmet.
[0019] In particular, the anechoic device is made in the free end of the arm of the half-chinbar,
thus guaranteeing the possibility of functional integration, and in some conditions
of use, also physical integration, with the microphone.
[0020] In one form of embodiment, the anechoic device comprises a plurality of acoustic
dissipator elements which reflect with respect to each other, gradually damping, the
sound energy associated to the acoustic waves of the environmental noise, dissipating
the unwanted echoes. Advantageously the acoustic dissipator elements are made of a
sound absorbing material, so as to increase the speed of abatement of the sound energy
associated to the acoustic wave of the noise.
[0021] In one form of embodiment, the anechoic device comprises an anechoic chamber made
in the half-chinbar, with which the microphone is associated.
[0022] In a variant, the anechoic chamber is made inside the internal surface of the half-chinbar.
In this way, the anechoic device has a limited bulk also from the aesthetic point
of view, and in any case performs its functions of reducing noise, and shields the
microphone form the outside.
[0023] In a variant of the present invention, the acoustic dissipator elements are included
in the anechoic chamber. This has the advantage of a direct cooperation of the acoustic
dissipator elements with the microphone, with the purpose of reducing noise.
[0024] In one form of embodiment, the anechoic chamber is formed by a first lowered seating
delimited by a first bottom and configured to develop around the microphone, reducing
the surrounding noise disturbances in an optimal manner.
[0025] In one form of embodiment, the anechoic chamber comprises a second seating to completely
or partly house the microphone. This can be advantageous so as to at least partly
include the microphone, in some conditions of use, directly in the anechoic device,
surrounding it and shielding it at the front and the side.
[0026] In a variant, the second seating is made on the first bottom of the anechoic chamber
and is delimited by a second bottom. Advantageously, in one form of embodiment, a
plurality of the acoustic dissipator elements extend protruding from the second bottom.
This can be advantageous so as to limit the environmental noise even when the microphone
is used distanced from the half-chinbar.
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] These and other characteristics of the present invention will become apparent from
the following description of a preferential form of embodiment, given as a non-restrictive
example with reference to the attached drawings wherein:
- fig. 1 is a three-dimensional view of a helmet according to the present invention;
- fig. 2 is a three-dimensional view of a part of the helmet in fig. 1;
- fig. 3 is a three-dimensional view of an enlarged detail of the helmet in fig. 1;
- fig. 4 is a three-dimensional view of another enlarged detail of the helmet in fig.
1;
- fig. 5 is another three-dimensional view of the detail in fig. 4.
[0028] To facilitate comprehension, the same reference numbers have been used, where possible,
to identify identical common elements in the drawings.
DETAILED DESCRIPTION OF A PREFERENTIAL FORM OF EMBODIMENT
[0029] With reference to the attached drawings, a helmet 10 according to the present invention
can be used for example, but not only, during sports motor races and competitions,
typically during rallies. Basically the helmet 10 in question is the open or jet helmet,
provided with a half-chinbar as will be explained more fully hereafter.
[0030] The helmet 10 comprises a protective cover or shell 12 which has a front aperture
14, through which the user can see, and a lower aperture 15 into which the head is
inserted; due to the open nature of the helmet, the apertures 14, 15 are a single
whole.
[0031] The front aperture 14 is delimited laterally by two lateral lobes 17 of the shell
12.
[0032] The helmet 10 comprises a half-chinbar 13 which is associated to the shell 12 in
substantial correspondence with one side of the front aperture 14.
[0033] In particular, the half-chinbar 13 is formed by an arm 16 which has an internal surface
19 facing toward the front aperture 14, and an external surface 21 opposite the internal
surface 19.
[0034] The arm 16 is associated only to one of the two lateral lobes 17 of the shell 12
and extends cantilevered toward the inside of the front aperture 14.
[0035] In this case, the arm 16 has a first free end 20, in an intermediate position in
the front aperture 14, so that during use it is substantially in correspondence to
the mouth of the user of the helmet, and a second end 22 associated to the lobe 17
of the shell 12.
[0036] The helmet 10 comprises an acoustic communication device associated to the half-chinbar
13 to allow communication toward the outside.
[0037] In this case, the acoustic communication device includes a microphone 30.
[0038] The acoustic communication device of the helmet 10 can also be equipped with earphones,
a signal amplifier and means to transmit and receive the audio signal, for example
a transceiver antenna.
[0039] The microphone 30 can be positioned in correspondence to the first free end 20 of
the arm 16 of the half-chinbar 13, generally in correspondence to the mouth of the
user, on the side of the internal surface 19 of the half-chinbar 13, between the latter
and the front aperture 14 of the shell 12.
[0040] The microphone 30 can be partly or completely housed in the half-chinbar 13, or it
can be positioned distanced from it, but always between the half-chinbar 13 and the
front aperture 14 of the shell 12 in order to receive the communications issued locally
by the user.
[0041] The microphone 30 can be connected by means of an oblong connector 32, possibly to
the signal amplifier and to the audio signal transceiver means.
[0042] In the case in point, the oblong connector 32 internally includes connection and
transmission cables for the electric and/or acoustic signals coming from the microphone
30.
[0043] For example the oblong connector 32 can be made as a pipe or similar tubular element,
and its position can be adjusted by the user according to needs, method of use or
specific habits. Advantageously the oblong connector 32 is a flexible tubular element,
for example a corrugated pipe made of plastic material as shown in the drawings, or
which has articulation elements, so as to give the user the possibility of easily
positioning the microphone 30 in the position which is most congenial and comfortable
for him, at a desired distance from the mouth.
[0044] Advantageously, the oblong connector 32 can be completely or partly housed in an
open positioning channel 36 made along the half-chinbar 13, in the case in point along
the internal surface 19 of the half-chinbar 13. In this case the positioning channel
36 has a substantially U-shaped cross section.
[0045] According to the present invention, the helmet 10 comprises an anechoic device 40
associated to the microphone 30.
[0046] The anechoic device 40 is advantageously included in the half-chinbar 13, in particular,
in this case it is made in correspondence to the first free end 20 of the arm 16.
[0047] The anechoic device 40 is configured to damp and dissipate the echoes of the noise
from the surrounding environment, so that the acoustic signal received by the microphone
30 is less disturbed, in order to transmit the voice of the user as clearly as possible.
[0048] In this case, the anechoic device 40 comprises an anechoic chamber 42 made in the
half-chinbar 13, to which the microphone 30 is associated.
[0049] In particular, the anechoic chamber 42 is built into the internal surface 19 of the
half-chinbar 13.
[0050] The microphone 30 can thus be completely or partly housed or built into the anechoic
chamber 42, as shown in fig. 2, or it can be positioned distanced from it.
[0051] Preferably the anechoic chamber 42 has a height, width and depth suitable to cover
and protect the microphone 30 at the front with its bulk, and in some conditions of
use selected by the user, also to house the microphone 30 inside it.
[0052] Advantageously, the half-chinbar 13 and in particular the arm 16 have a curvilinear
cross section, at least in correspondence to the first free end 20 of the arm 16,
where the anechoic device 40 is made, in particular with a concavity facing toward
the front aperture 14 of the shell 12.
[0053] In this way, the anechoic device 40, and in particular the anechoic chamber 42, in
their turn have a curvilinear section with a concavity facing toward the front aperture
14, and are able to frontally surround the microphone 30 which is associated to the
first free end 20 of the arm 16, thus efficiently carrying out the function of reducing
the acoustic disturbances and also shielding and protecting the microphone 30, both
physically and acoustically, from the outside.
[0054] In some forms of embodiment, the anechoic device 40 comprises a plurality of acoustic
dissipator elements 46, advantageously made in the anechoic chamber 42.
[0055] In the form of embodiment described in the example, each of the acoustic dissipator
elements 46 is shaped with a tapered conformation, for example shaped like a cone
or truncated cone, to exploit the damping and reflection properties of the acoustic
waves of this conformation. In other variants, the acoustic dissipator elements 46
could be shaped like a pyramid or truncated pyramid.
[0056] The number, disposition and distribution of the acoustic dissipator elements 46 is
optimized according to the sizes of the anechoic chamber 42, both in depth and in
surface extension, in order to determine the desired damping and dissipation of the
noise.
[0057] In this case the anechoic chamber 42 is formed by a first lowered seating delimited
by a first bottom 48 and configured to develop around the microphone 30, whether the
latter is partly or completely housed in the anechoic chamber 42, or is distanced
from the anechoic chamber 42.
[0058] In some forms of embodiment, a plurality of the acoustic dissipator elements 46 extend
protruding from the first bottom 48. Advantageously, the acoustic dissipator elements
46 are distributed homogeneously on the first bottom 48, substantially covering all
the area.
[0059] Advantageously the acoustic dissipator elements 46 are made of a sound proofing material.
[0060] In the solution where the acoustic dissipator elements 46 are tapered, their larger
base is in correspondence to the first bottom 48.
[0061] Preferably, the first bottom 48 is also made of a sound proofing material.
[0062] Advantageously, the whole of the anechoic chamber 42, or a suitable part of it, is
made of the sound proofing material.
[0063] Furthermore, in the case in point, advantageously in a position similar to the central
one, the anechoic chamber 42 has a second seating 44 to completely or partly house,
in some conditions of use, the microphone 30. To this end, the second seating is shaped
with a shape mating to that of the microphone 30.
[0064] In the case in point, the second seating 44 is made on the first bottom 48 of the
anechoic chamber 42, thus lowered with respect to it, and is delimited by a second
bottom 52. A plurality of the acoustic dissipator elements 46 can extend protruding
from the second bottom 52. Advantageously, the acoustic dissipator elements 46 are
distributed homogeneously on the second bottom 52 as well, substantially covering
all the area.
[0065] In one form of embodiment of the anechoic device 40, the ratio between the pitch,
or interaxis, between two adjacent acoustic dissipator elements 46, for example on
the first bottom 48 and/or on the second bottom 52, and the nominal size, for example
the nominal diameter of one acoustic dissipator element 46, is comprised between about
0.5 and about 2.5, preferably between about 1 and about 2.
[0066] When the ratio is comprised between about 0.5 and about 1, two adjacent acoustic
dissipator elements 46 reciprocally overlap. The ratio can be constant in the anechoic
device 40 or can progressively vary from the center to the periphery, or also have
a different variable development according to requirements.
[0067] In one form of embodiment of the anechoic device 40, all the acoustic dissipator
elements 46 have the same shape and size. In another form of embodiment, the shape
and/or size can be different according to requirements.
[0068] Advantageously, the anechoic chamber 42 has a lateral aperture 54 for direct communication
with the positioning channel 36. As can be seen in figs. 3-5, the positioning channel
36 extends as far as the anechoic chamber 42 where, thanks to the lateral aperture
54, it faces inside the latter.
[0069] In this way, the oblong connector 32 can be easily positioned, according to requirements,
completely or partly in the positioning channel 36, and the microphone 30 provided
at the end of the oblong connector 32 can be put in the anechoic chamber 42, completely
or partly housed inside it, in particular in the second seating 44, or can be distanced
from the anechoic chamber 42, positioned at the front of it, in this case too, according
to the user's requirements.
[0070] The microphone, 30, in some conditions or particular requirements or methods of use
or preferred habits of the user, could be disposed closer to or farther from the mouth.
[0071] The present invention thus allows to put the microphone 30 where it is needed, remaining
associated in any case, even at a distance, to the anechoic chamber 42, which thus
carries out, in all the positions in which the microphone 30 can be placed, its function
of dissipating noises and eliminating acoustic disturbances. This is particularly
thanks to the curvilinear cross section of the anechoic chamber 42 as described above,
which shields the microphone 30 at the front.
[0072] The solution in which the second seating 44 also comprises the acoustic dissipator
elements 46 is advantageous particularly during conditions of use in which the microphone
30 is placed, during use, distanced from the anechoic chamber 42, since the acoustic
dissipator elements 46 provided on the second bottom 52 damp and dissipate the noise
which could possibly be propagated in the free space from the back part of the microphone
20 toward the second bottom 52.
1. Helmet provided with a half-chinbar and acoustic communication device which includes
at least a microphone (30), comprising a protective shell (12) which has at least
a front aperture (14) and a half-chinbar (13) which extends cantilevered from one
side (17) of said front aperture (14) so as to have a free end (20) disposed in an
intermediate position in said front aperture (14), to which said microphone (30) is
associated, characterized in that said half chinbar (13) comprises an anechoic device (40) associated to its free end
(20) configured to cooperate with said microphone (30).
2. Helmet as in claim 1, characterized in that the half-chinbar (13) is formed by an arm (16), which has an internal surface (19)
facing toward the front aperture (14) and extends cantilevered from one side (17)
of said front aperture (14) toward the inside of the front aperture (14), having said
free end (20) in an intermediate position in the front aperture (14), so that, during
use, said free end (20) is substantially in correspondence to the mouth of the user
of the helmet.
3. Helmet as in claim 1 or 2, characterized in that said anechoic device (40) comprises a plurality of acoustic dissipator elements (46).
4. Helmet as in any claim hereinbefore, characterized in that said anechoic device (40) comprises an anechoic chamber (42) made in the half-chinbar
(13), to which the microphone (30) is associated.
5. Helmet as in claim 2 and 4, characterized in that said anechoic chamber (42) is built into the internal surface (19) of the half-chinbar
(13).
6. Helmet as in claims 3 and 4 or 3 and 5, characterized in that the acoustic dissipator elements (46) are included in said anechoic chamber (42).
7. Helmet as in claims 4, 5 or 6, characterized in that said anechoic chamber (42) is formed by a first lowered seating delimited by a first
bottom (48) and configured to develop around the microphone (30).
8. Helmet as in claims 3 and 7, characterized in that a plurality of said acoustic dissipator elements (46) extend protruding from said
first bottom (48).
9. Helmet as in any claim from 4 to 8, characterized in that at least part of said anechoic chamber (42) is made of sound proofing material.
10. Helmet as in any claim from 4 to 9, characterized in that said anechoic chamber (42) comprises a second seating (44) to completely or partly
house said microphone (30).
11. Helmet as in claims 7 and 10 or 8 and 10, characterized in that the second seating (44) is made on the first bottom (48) of said anechoic chamber
(42) and is delimited by a second bottom (52).
12. Helmet as in claims 3 and 11, characterized in that a plurality of said acoustic dissipator elements (46) extend protruding from said
second bottom (52).
13. Helmet as in any claim hereinbefore, characterized in that said acoustic communication device includes a connector (32) to connect the microphone
(30) possibly to a signal amplifier and to transceiver means of the audio signal.
14. Helmet as in claim 13, characterized in that it comprises an open positioning channel (36) made along the half-chinbar (13) to
house the connector (32).
15. Helmet as in claims 4 and 14, characterized in that the anechoic chamber (42) has a lateral aperture (54) for direct communication with
the positioning channel (36).
1. Helm bereitgestellt mit einem Halbkinnbügel und einer akustischen Kommunikationsvorrichtung,
welche zumindest ein Mikrofon (30) enthält, aufweisend eine Schutzhülle (12), welche
zumindest eine vordere Öffnung (14) und einen Halbkinnbügel (13) hat, welcher sich
von einer Seite (17) der vorderen Öffnung (14) freitragend erstreckt, so dass ein
freies Ende (20) in einer Zwischenposition in der vorderen Öffnung (14) angeordnet
ist, welchem das Mikrofon (30) zugeordnet ist, dadurch gekennzeichnet, dass der Halbkinnbügel (13) eine dem freien Ende (20) zugeordneten reflexionsarme Vorrichtung
(40) aufweist, welche konfiguriert ist, um mit dem Mikrofon (30) zu kooperieren.
2. Helm nach Anspruch 1, dadurch gekennzeichnet, dass der Halbkinnbügel (13) durch einen Arm (16), welcher eine zur vorderen Öffnung (14)
zeigenden interne Oberfläche hat und sich freitragend von einer Seite (17) der vorderen
Öffnung (14) zur Innenseite der vorderen Öffnung (14) erstreckt, gebildet wird, dessen
freies Ende (20) in einer Zwischenposition in der vorderen Öffnung (14) angeordnet
ist, so dass das freie Ende (20), während des Verwendens, im Wesentlichem in Beziehung
zu dem Mund des Verwenders des Helms steht.
3. Helm nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die reflexionsarme Vorrichtung (40) eine Vielzahl von akustischen Ableitkörperelementen
(46) aufweist.
4. Helm nach einem der vorherigen Ansprüche, dadurch gekennzeichnet, dass die reflexionsarme Vorrichtung (40) einen in dem Halbkinnbügel (13), welchem das
Mikrofon (30) zugeordnet ist, gebildeten reflexionsarmen Raum (42) aufweist.
5. Helm nach Anspruch 2 und 4, dadurch gekennzeichnet, dass der reflexionsarme Raum (42) in der inneren Oberfläche (19) des Halbkinnbügels (13)
eingebaut ist.
6. Helm nach Anspruch 3 und 4 oder 3 und 5, dadurch gekennzeichnet, dass akustische Ableitkörperelemente (46) in dem reflexionsarmen Raum (42) enthalten sind.
7. Helm nach Anspruch 4, 5 oder 6, dadurch gekennzeichnet, dass der reflexionsarme Raum (42) durch eine erste vertiefte Aufnahme, welche durch einen
ersten Boden (48) begrenzt ist und konfiguriert ist, sich um das Mikrofon auszubilden,
gebildet ist.
8. Helm nach Anspruch 3 und 7, dadurch gekennzeichnet, dass eine Vielzahl akustischer Ableitkörperelementen (46) sich hervorstehend von dem ersten
Boden (48) erstrecken.
9. Helm nach einem der Ansprüche 4 bis 8, dadurch gekennzeichnet, dass zumindest ein Teil des reflexionsarmen Raums (42) aus schalldämmendem Material gebildet
ist.
10. Helm nach einem der Ansprüche 4 bis 9, dadurch gekennzeichnet, dass der reflexionsarme Raum (42) eine zweite Aufnahme (44) aufweist, um das Mikrofon
(30) komplett oder teilweise aufzunehmen.
11. Helm nach Anspruch 7 und 10 oder 8 und 10, dadurch gekennzeichnet, dass die zweite Aufnahme (44) auf dem ersten Boden (43) des reflexionsarmen Raums (42)
gebildet ist und von einem zweiten Boden (52) begrenzt ist.
12. Helm nach Anspruch 3 und 11, dadurch gekennzeichnet, dass eine Vielzahl der akustischen Ableitkörperelementen (46) sich hervorstehend von dem
zweiten Boden (52) erstrecken.
13. Helm nach einem der vorherigen Ansprüche, dadurch gekennzeichnet, dass die akustische Kommunikationsvorrichtung eine Buchse (32) enthaltet, um das Mikrofon
(30) möglicherweise mit einem Signalverstärker und Sendeempfängermitteln des Audiosignals
zu verbinden.
14. Helm nach Anspruch 13, dadurch gekennzeichnet, dass er einen zur Aufnahme der Buchse (32) entlang des Halbkinnbügels (13) gebildeten
offenen Positionierungskanal (36) aufweist.
15. Helm nach Anspruch 4 und 14, dadurch gekennzeichnet, dass der reflexionsarme Raum (42) eine seitliche Öffnung für direkte Kommunikation mit
dem Positionierungskanal (36) hat.
1. Casque muni d'une demi-mentonnière et d'un dispositif de communication acoustique
qui comprend au moins un microphone (30), comportant une enveloppe de protection (12)
qui présente au moins une ouverture avant (14) et une demi-mentonnière (13) qui se
prolonge en porte à faux à partir d'un côté (17) de ladite ouverture avant (14) de
manière à avoir une extrémité libre (20) disposée dans une position intermédiaire
dans ladite ouverture avant (14), à laquelle ledit microphone (30) est associé, caractérisé en ce que ladite demi-mentonnière (13) comprend un dispositif anéchoïque (40) associé à son
extrémité libre configuré pour coopérer avec ledit microphone (30).
2. Casque selon la revendication 1, caractérisé en ce que la demi-mentonnière (13) est formée par un bras (16), qui présente une surface interne
(19) faisant face vers l'ouverture avant (14) et qui s'étend en porte à faux d'un
côté (17) de ladite ouverture avant (14) vers l'intérieur de l'ouverture avant (14),
ayant ladite extrémité libre (20) dans une position intermédiaire dans l'ouverture
avant (14), de sorte que, pendant l'utilisation, ladite extrémité libre est sensiblement
en correspondance avec la bouche de l'utilisateur du casque.
3. Casque selon l'une des revendications 1 ou 2, caractérisé en ce que ledit dispositif anéchoïque (40) comprend une pluralité d'éléments de dissipation
acoustiques (46).
4. Casque selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit dispositif anéchoïque (40) comprend une chambre anéchoïque (42) agencée dans
la demi-mentonnière (13), à laquelle le microphone (30) est associé.
5. Casque selon les revendications 2 et 4, caractérisé en ce que ladite chambre anéchoïque (42) est intégrée dans la surface interne (19) de la demi-mentonnière
(13).
6. Casque selon les revendications 3 et 4 ou 3 et 5, caractérisé en ce que les éléments de dissipation acoustiques (46) sont inclus dans ladite chambre anéchoïque
(42).
7. Casque selon les revendications 4, 5 ou 6, caractérisé en ce que ladite chambre anéchoïque (42) est formée par une première assise abaissée délimitée
par un premier fond (48) et configurée de manière à se développer autour du microphone
(30).
8. Casque selon les revendications 3 et 7, caractérisé en ce qu'une pluralité desdits éléments de dissipation acoustiques (46) s'étendent en saillie
à partir dudit premier fond (48).
9. Casque selon l'une quelconque des revendications 4 à 8, caractérisé en ce qu'au moins une partie de ladite chambre anéchoïque (42) est réalisée dans un matériau
à isolation phonique.
10. Casque selon l'une quelconque des revendications 4 à 9, caractérisé en ce que ladite chambre anéchoïque (42) comprend une seconde assise (44) pour contenir complètement
ou partiellement ledit microphone interne (30).
11. Casque selon les revendications 7 et 10 ou 8 et 10, caractérisé en ce que la seconde assise (44) est réalisée sur le premier fond (48) de ladite chambre anéchoïque
(42) et est délimitée par un second fond (52).
12. Casque selon les revendications 3 et 11, caractérisé en ce qu'une pluralité desdits éléments de dissipation acoustiques (46) s'étendent en saillie
à partir dudit second fond (52).
13. Casque selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit dispositif de communication acoustique comprend un connecteur (32) pour relier
le microphone (30), éventuellement à un amplificateur de signal et à des moyens d'émission-réception
du signal audio.
14. Casque selon la revendication 13, caractérisé en ce qu'il comprend un canal de positionnement ouvert (36) réalisé le long de la demi-mentonnière
(13) pour loger le connecteur (32).
15. Casque selon les revendications 4 et 14, caractérisé en ce que la chambre anéchoïque (42) présente une ouverture latérale (54) pour une communication
directe avec le canal de positionnement (36).