[0001] The present invention relates to an electronic flute.
[0002] Electronic wind instruments are known according to the prior art, which are provided
with controls to modify (improve) and control the emission of sounds. Electronic wind
instruments are extremely expensive because of the difficulties encountered during
production and because of the technology.
[0003] US2015/0101477 discloses an electronic flute that comprises a PCB that supports a plurality of proximity
sensors disposed in the holes of the body of the flute. The PCB is disposed inside
the tubular channel defined by the body of the flute. Obviously, the PCB interferes
with the air that flows in the channel of the flute and negatively affects the sound
emitted by the flute.
US2015/0101477 discloses infrared LEDs that have no signaling function and does not disclose the
possibility of using pressure sensors and inclination sensors.
[0004] US2006/0283312 discloses a wind instrument, such a transverse flute, which is substantially different
from the recorder. In fact, such a wind instrument is provided with keys that are
used to cover holes. A position sensor is integrated in each key to detect the closure
of the hole. Therefore, the position sensors are not mounted on a PCB.
US2006/0283312 generically mentions a pressure sensor, which is not indicated in the drawings, without
specifying the place where it is mounted. A system composed of sensors, receptors,
and emitters is disposed inside the empty body of the wind instrument in order to
detect the keys that are pushed by the user.
[0005] US2006/0283312 and
US2015/0101477 disclose an electronic instrument that cannot be used as an acoustic instrument because
the sensors are disposed inside the empty body of the instrument and interfere with
the air flow.
[0006] In particular, the instrument disclosed in
US2006/0283312 should be equipped with two different mouthpieces according to the type of use (acoustic
or electronic use).
[0007] EP2017823 discloses an electronic wind instrument, such as a saxophone, which is substantially
different from a flute. Such a saxophone comprises sensors that are disposed inside
the channel where the air flows and therefore interfere with the sound emitted by
the instrument.
[0008] JPH01 243096 discloses the use of an inclination sensor in a wind instrument, such as a flute.
[0009] The purpose of the present invention is to overcome the drawbacks of the prior art
by disclosing an electronic flute that is inexpensive, versatile and easy to use.
[0010] Another purpose of the present invention is to disclose such an electronic flute
wherein the electronic components do not alter the structure of the flute and does
not interfere with the sound emitted by the flute.
[0011] Another purpose of the present invention is to disclose an electronic flue that can
communicate with a smart device.
[0012] These purposes are achieved according to the invention with the characteristics of
the appended independent claim 1.
[0013] Advantageous embodiments appear from the dependent claims.
[0014] The electronic flute according to the invention is defined by claim 1.
[0015] For the sake of clarity, the description of the electronic flute according to the
invention continues with reference to the attached drawings, which have a merely illustrative,
not limiting value, wherein:
Figs. 1-3 are exploded perspective views of the electronic flute according to the
invention from different angles;
Fig. 4 is an axial sectional view of the flute of Fig. 1;
Fig. 5 is a perspective view of a central body and of a first PCB of the flute according
to the invention;
Fig. 6 is a top view of the central body;
Fig. 7 is a side view of the central body;
Fig. 8 is a partially interrupted perspective view of the central body and of the
first PCB;
Fig. 9 is a top view of the first PCB;
Fig. 10 is a bottom view of the first PCB; and
Fig. 11 is a bottom view of a second PCB.
[0016] With reference to the Figures, an electronic flute according to the invention, which
is generally indicated with reference numeral 100, is disclosed.
[0017] The flute (100) comprises a central body (1), a lower cover (2) and an upper cover
(3).
[0018] With reference to Fig. 4, the central body (1) has a channel (10) that extends longitudinally
from an inlet (1 0a) to an outlet hole (10b). The user blows in the inlet (10a) to
introduce air in the channel (10). It must be noted that the channel (10) has no obstacles
or electronic components, in such a way to permit a free circulation of the air, without
negatively affecting the sound. In this way, the central body (1) can operate as a
standard recorder.
[0019] The central body (1) has a planar upper wall (11) wherein seven holes (12) in communication
with the channel (10) are obtained. The holes (12) are aligned and are suitable for
being closed by the user's fingers in order to generate the desired notes. Shanks
(12a) protrude in upper position from the upper wall (11) around the holes (12). Seats
(13) for LEDs are obtained in the upper wall (13) near the shanks (12a).
[0020] The central body (1) has a planar lower wall (14) wherein a lower hole (15) in communication
with the channel (10) is obtained. The lower hole (15) is suitable for being closed
by the user's thumb. A lower shank (15a) protrudes in lower position from the lower
wall (14) around the lower hole (15).
[0021] An outlet composed of a rectangular hole (16) in communication with the channel (10)
for the emission of air is obtained in the upper wall (11) of the central body, near
the inlet (10a). A labium (9) (shown in Fig. 3) is disposed inside the channel (10),
in the inlet (10) in correspondence of the rectangular hole (16) 3) in order to generate
vibrations and generate a sound.
[0022] A rectangular frame (16a) surrounds the rectangular hole (16) of the labium and protrudes
in upper position.
[0023] A hole (17) for a pressure sensor is obtained on the upper wall (11), between the
inlet (10a) and the rectangular hole (16) for the labium. The hole (17) for the pressure
sensor is in communication with the channel (10).
[0024] A rectangular opening (18) is obtained in the upper wall (11) between the rectangular
hole (16) and the holes (12) for the notes.
[0025] The central body has planar side walls (19). A longitudinal rib (19a) protrudes outwards
from each side wall to generate a reference element for the upper cover and the lower
cover.
[0026] The lower cover (2) is shaped as a semi-body comprising a planar lower wall (20)
and two side walls (21) that diverge in upper position from the lower wall. A lower
hole (22) is obtained in the lower wall (20) in correspondence of the lower hole (15)
of the central body. The lower hole (22) of the lower cover is engaged by the lower
shank (15a) of the central body.
[0027] The lower cover (2) has a recessed seat (23) disposed in rear position, in correspondence
of the inlet (11) of the central body. The recessed seat (23) is suitable for receiving
a battery (B).
[0028] The upper cover (3) is shaped as a semi-body comprising a planar upper wall (30)
and two side walls (31).
[0029] Seven holes (32) are obtained in the upper wall (30) of the upper cover in correspondence
of the holes (12) of the notes of the central body. The seven holes (32) of the upper
cover are engaged by the shanks (12a) of the central body.
[0030] A rectangular hole (33) is obtained in the upper wall (30) of the upper cover in
correspondence of the rectangular hole (16) of the labium of the central body. The
rectangular hole (33) of the upper cover is engaged by the rectangular frame (16a)
of the central body.
[0031] A bridge (34) protrudes above the upper wall (30) of the upper cover. The bridge
(34) is provided with three windows or recessed seats (35) with rectangular shape
to receive keys or buttons, and with three holes to receive LEDs.
[0032] Following is a description of the electronics of the flute (100). The flute (100)
comprises a first printed circuit board (PCB) (5) and a second printed circuit board
(PCB) (6).
[0033] The first PCB (5) is disposed in sandwich configuration between the upper wall (11)
of the central body and the upper wall (30) of the upper cover. The second PCB (6)
is disposed in sandwich configuration between the lower wall (20) of the lower cover
and the lower wall (14) of the central body.
[0034] The first PCB (5) has an upper side (50a) (Fig. 9) directed towards the upper cover
(4) and a lower side (50b) directed towards the central body (1).
[0035] The first PCB (5) has seven holes (51) that receive the shanks (12a) of the central
body, in such a way that the holes (12) of the notes of the central body are in communication
with the exterior. A proximity sensor (52) is disposed in correspondence of each hole
(51) of the first PCB to detect the moment when the user's finger approaches the hole
(51) in order to close the hole (51). The proximity sensor (52) is a capacitive sensor
that is obtained by means of an annular pad of conductive material deposited on the
upper side (50a) of the first PCB around the hole (51). Advantageously, two or more
proximity sensors (52) can be disposed in correspondence of some of the holes (51)
to detect two or more positions of the user's finger.
[0036] The first PCB (5) has a rectangular hole (53) that receives the rectangular frame
(16a) of the central body, in such a way that the rectangular hole (16) for the labium
of the central body is in communication with the exterior.
[0037] Three keys (54) are obtained on the upper side (50a) of the first PCB. The keys (54)
are engaged in the windows (35) of the bridge (34) of the upper cover in order to
be accessible for the user. The keys (54) can be of touch type.
[0038] A LED array (7) is mounted on the upper side (50a) of the first PCB near the keys
(54). The LED array (7) comprises three signaling LEDs (70) that are engaged in the
holes (36) of the bridge (34) of the upper cover in order to be visible for the user.
The signaling LEDs (70) indicate the state of the flute (100).
[0039] With reference to Figs. 8 and 11, learning LEDs (L1, L2) are mounted in the lower
side (50b) of the first PCB near each one of the holes (51) of the first PCB. Advantageously,
two learning LEDs (L1, L2) are provided for each hole (51). The learning LEDs (L1,
L2) must emit a visible light for the user in such a way that the user knows which
keys to press.
[0040] The learning LEDs (L1, L2) are recessed in the seats (13) obtained in the upper wall
of the central body and are in contact with or proximal to the shank (12a). In order
for the light of the learning LEDs (L1, L2) to be visible for the user, the central
body (1) or at least the shanks (12a) are made of a light-transmitting material, such
a translucent or opalescent material, whereas the upper cover (3) is made of a matt
material. In this way, the light emitted by the learning LEDs (L1, L2) is transmitted
by the shank (12a) that is illuminated and is visible on the upper cover (3).
[0041] A pressure sensor (55) is disposed on the lower side (50b) of the first PCB near
one end of the first PCB. The pressure sensor (55) is disposed inside the hole (17)
of the central body. The pressure sensor communicates with the channel (10) of the
central body, near the inlet (10a), but does not protrude in the channel (10) and
consequently does not interfere with the air that flows in the channel (10), permitting
a laminar air flow that hits the labium to generate an air vibration that emits a
sound.
[0042] Moreover, the provision of the pressure sensor (55) in a hole (17) in the upper wall
(11) of the central body prevents the condensation that is generated in the flute
during use from getting in contact with the pressure sensor, damaging the pressure
sensor or causing an incorrect pressure detection.
[0043] A USB port (56) for a USB cable used to recharge the battery (B), a connector (57)
for a cable used to connect the second PCB (6), an inclination detector (58) and a
control unit (4) are mounted in the lower side (50b) of the first PCB. The inclination
detector (58) can be an accelerometer.
[0044] The USB port (56), the connector (57), the inclination detector (58) and the control
unit (4) are disposed in the seat (18) of the upper wall of the central body.
[0045] The second PCB (6) has an upper side (60a) directed towards the lower wall (14) of
the central body and a lower side (60b) directed towards the lower cover (2).
[0046] The second PCB (6) has a hole (61) that receives the lower shank (15a) of the central
body, in such a way that the lower hole (15) of the central body is in communication
with the exterior. At least one proximity sensor (62) is disposed in correspondence
of the hole (61) of the second PCB to detect when the user's finger approaches the
hole (61) in order to close the hole (61). Advantageously, two proximity sensors (62)
are provided in such a way to detect when the hole is completely closed or when the
hole is partially closed. The proximity sensor (62) is a capacitive sensor that is
obtained by means of an annular pad of conductive material deposited on the lower
side (50a) of the first PCB around the hole (51).
[0047] A first connector (63) for connection to the battery (B) and a second connector (64)
for connection to the connector (57) of the first PCB by means of a cable (8) are
mounted on the second PCB (6). For illustrative purposes, the cable (8) can be a 4-pole
flat cable. Obviously, the cable (8) is passed outside the central body (1) in order
not to interfere inside the channel (10) of the central body.
[0048] In order to assemble the flute (100), the first PCB (5) is disposed between the central
body (1) and the upper cover (3), the second PCB (6) is disposed between the lower
cover (2) and the central body and the two covers (2, 3) are coupled in such a way
to enclose the central body (1). Such a coupling can be performed by means of click
means provided in the lateral walls of the covers of the central body. Alternatively,
the edges of the side walls of the covers and of the central body can be mutually
coupled by means of gluing or welding.
[0049] The control unit (4) is electrically connected to the proximity sensors (52, 62),
to the pressure sensor (55) and to the inclination sensor (58) to receive information
from the sensors. The control unit (4) is a microprocessor.
[0050] The control unit (4) comprises a sound generator (Q) that is suitable for synthesizing
sound information according to electrical signals received from the control unit (4).
The sound generator (Q) consists in a chip suitable for synthesizing the signals that
come from the control unit (4). The sound generator (Q) can be programmed via software
to emulate different types of tones or different types of music instruments.
[0051] The control unit (4) also comprises a transceiver (40) suitable for connecting in
wireless mode to a smart device, such a cellular telephone. The transceiver (40) can
be connected to the smart device, for example with a Bluetooth system. In such a case,
an app is installed on the smart device and cooperates with the control unit (4) in
such a way to control the operation of the flute (1). Such an app is especially useful
to control the learning LEDs (L1, L2).
[0052] The keys (54) are used for switch on/off and for the configuration of the power supply
device (2). The signaling LEDs (70) operate as indicators of the state of the flute.
For example, the signaling LEDs can indicate the switching- on of the flute (100),
the state of the battery, the operation mode of the flute (100), etc.
[0053] The keys (54) are connected to a switch connected to the control unit (4). Each key
(54) can be used to choose an operation mode of the music instrument (100). The switch
is electrically connected to the control unit (4) to transmit information on the pressed
key, in such a way to define the operation mode of the music instrument (100).
[0054] The learning LEDs (L1, L2) are connected to the control unit (4) in order to indicate
the correct execution, or to inform in advance the holes to be closed during the execution
of a music piece. Moreover, by providing two LEDs (L1, L2) on each hole, the correct
execution can be indicated when the flute (100) is played by a left-handed user and
when the flute (1) is played by a righthanded user.
1. Electronic flute (100) comprising:
- a central body (1),
- a lower cover (2) and an upper cover (3) that enclose the central body,
- a first printed circuit board (PCB) (5) disposed between the central body (1) and
the upper cover (3),
- a second printed circuit board (PCB) (6) disposed between the lower cover (2) and
the central body,
- a control unit (4) connected to the first and to the second PCB (5, 6), and
- a battery (B) connected to the control unit (4);
wherein said central body (1) comprises:
- a channel (10) that extends longitudinally from an inlet (10a) to an outlet hole
(10b),
- a planar upper wall (11) wherein holes (12) in communication with the channel (10)
are obtained, being suitable for being closed by the user's fingers to generate the
desired notes,
- shanks (12a) that protrude in upper position from the upper wall (11) around the
holes (12) of the notes,
- a planar lower wall (14) wherein a lower hole (15) in communication with the channel
(10) is obtained, it being suitable for being closed by the user's thumb, and
- a lower shank (15a) that protrudes in lower position from the lower wall (14) around
the lower hole (15);
said first PCB (5) comprises through holes (51) and proximity sensors (52) disposed
around said holes (51) to detect when the hole (51) is approached by the user's finger
to close the hole (51); said first PCB being disposed on the upper wall (11) of the
central body, in such a way that the shanks (12a) of the central body penetrate the
holes (51) of the first PCB;
said upper cover (3) comprising holes (32) wherein said shanks (12a) of the central
body are engaged;
said second PCB (6) comprises a through hole (61) and at least one proximity sensor
(62) disposed around said hole (61) of the second PCB to detect when the hole (61)
of the second PCB is approached by the user's finger; said second PCB being disposed
under the lower wall (14) of the central body, in such a way that the lower shank
(15a) of the central body penetrates the hole (61) of the second PCB; and
said lower cover (2) comprising a hole (22) wherein said lower shank (15a) of the
central body is engaged.
2. The electronic flute (100) of claim 1, wherein the first PCB (5) has an upper side
(50a) directed towards the upper cover and a lower side (50b) directed towards the
central body and each proximity sensor (52) of the first PCB is a capacitive sensor
obtained by means of an annular pad of conductive material deposited on the upper
side (50a) of the first PCB, around the hole (51) of the first PCB;
the second PCB (6) has an upper side (60a) directed towards the central body and a
lower side (60b) directed towards the lower cover and each proximity sensor (62) of
the second PCB is a capacitive sensor obtained by means of an annular pad of conductive
material deposited on the lower side (60b) of the second PCB, around the hole (61)
of the second PCB.
3. The electronic flute (100) of claim 1 or 2, wherein the upper wall (11) of said central
body has a rectangular hole (16) in communication with the channel (10) of the central
body for the emission of air and a rectangular frame (16a) that surrounds the rectangular
hole (16) and protrudes in upper position in order to be engaged in a rectangular
hole (53) of the first PCB and in a rectangular hole (33) of the upper cover.
4. The electronic flute (100) of claim 2 or 3, comprising a pressure sensor (53) mounted
on the lower side (50a) of the first PCB and disposed in a hole (17) obtained in the
upper wall (11) of the central body, near the inlet (10a) in communication with the
channel (10) of the central body, in such a way that said pressure sensor (53) does
not protrude in the channel (10) of the central body.
5. The electronic flute (100) of any one of claims 2 to 4, comprising learning LEDs (L1,
L2) mounted on the lower side (50b) of the first PCB near said holes (51) of the first
PCB and engaged in seats (13) obtained in the upper wall of the central body near
said shanks (12a) of the central body, wherein said shanks (12a) of the central body
are made of a light-transmitting material so that the light emitted by a learning
LED illuminates said shank (12a) and makes said shank (12a) visible on the upper cover
(3).
6. The electronic flute (100) of any one of claims 2 to 5, comprising keys (54) mounted
on said upper side (50a) of the first PCB and a bridge (34) that protrudes from said
upper cover (3); said bridge (34) comprising windows (35) in correspondence of said
keys (54), in such a way that the user can press the keys.
7. The electronic flute (100) of claim 6, comprising a LED array (7) mounted on the upper
side (50a) of the first PCB, near the keys (54); said LED array (7) comprises signaling
LEDs (70) that are engaged in holes (36) obtained in the bridge (34) of the upper
cover in order to be visible for the user.
8. The electronic flute (100) of any one of claims 2 to 7, comprising an inclination
detector (58) mounted in the lower side (50b) of the first PCB, near the control unit
(4); wherein said central body (1) has a rectangular opening (18) obtained in the
upper wall (11) to receive said control unit (4) and said inclination detector (58).
9. The electronic flute (100) of any one of the preceding claims, wherein the first PCB
(5) is electrically connected to the second PCB (6) by means of an electric cable
(8) that is passed outside said central body (1) and is disposed inside the lower
and upper cover.
10. The electronic flute (100) of claims 8 and 9, comprising:
- a connector (57) mounted on the lower side (50b) of the first PCB, near the control
unit (4) for connection with said electric cable (8) connected to the second PCB,
and
- a USB port (56) mounted in the lower side (50b) of the first PCB, near the control
unit (4) to recharge the battery (B),
wherein the connector (57) and the USB port are disposed in said rectangular opening
(18) obtained in the upper wall (11) of the central body.
11. The electronic flute (100) of any one of the preceding claims, wherein said battery
(B) is housed in a recessed seat (23) of said lower cover and is electrically connected
to said second PCB (6).
12. The electronic flute (100) of any one of the preceding claims, wherein said control
unit (4) comprises a sound generator (Q) suitable for emitting a sound signal and
a transceiver (40) suitable for being connected in wireless mode with a smart device.
1. Elektronische Flöte (100), umfassend:
- einen zentralen Körper (1),
- eine untere Abdeckung (2) und eine obere Abdeckung (3), die den zentralen Körper
umschließen,
- ein erste Leiterplatte (PCB) (5), die zwischen dem zentralen Körper (1) und der
oberen Abdeckung (3) angeordnet ist,
- eine zweite Leiterplatte (PCB) (6), die zwischen der unteren Abdeckung (2) und dem
zentralen Körper angeordnet ist,
- eine Steuereinheit (4), die mit der ersten und der zweiten Leiterplatte (5, 6) verbunden
ist, und
- eine Batterie (B), die mit der Steuereinheit (4) verbunden ist;
wobei der zentrale Körper (1) Folgendes umfasst:
- einen Kanal (10), der sich längslaufend von einer Einlassmündung (10a) zu einem
Auslassloch (10b) erstreckt,
- eine ebene obere Wand (11), aus der Löcher (12) herausgearbeitet sind, die mit dem
Kanal (10) in Verbindung stehen und dazu bestimmt sind, durch die Finger des Benutzers
verschlossen zu werden, um die gewünschten Noten zu erzeugen,
- Schäfte (12a), die oberseitig aus der oberen Wand (11) um die Löcher (12) der Noten
herum vorstehen,
- eine ebene untere Wand (14), aus der ein unteres Loch (15) herausgearbeitet ist,
das mit dem Kanal (10) in Verbindung steht und dazu bestimmt ist, durch den Daumen
des Benutzers verschlossen zu werden, und
- einen unteren Schaft (15a), der unterseitig aus der unteren Wand (14) um das untere
Loch (15) herum vorsteht;
wobei die erste Leiterplatte (5) Löcher (51) und Näherungssensoren (52) umfasst, die
um die Löcher (51) herum angeordnet sind, um zu erfassen, wenn der Benutzer den Finger
an das Loch (51) annähert, um es zu verschließen; wobei die erste Leiterplatte auf
der oberen Wand (11) des zentralen Körpers angeordnet ist, sodass die Schäfte (12a)
des zentralen Körpers die Löcher (51) der ersten Leiterplatte durchdringen;
wobei die obere Abdeckung (3) Löcher (32) umfasst, die die Schäfte (12a) des zentralen
Körpers in Eingriff nehmen;
die zweite Leiterplatte (6) umfasst ein Durchgangsloch (61) und mindestens einen Näherungssensor
(62), der um das Loch (61) der zweiten Leiterplatte herum angeordnet ist, um zu erfassen,
wenn der Benutzer den Daumen an das Loch (61) der zweiten Leiterplatte annähert; wobei
zweite Leiterplatte unter der unteren Wand (14) des zentralen Körpers angeordnet ist,
sodass der untere Schaft (15a) des zentralen Körpers das Loch (61) der zweiten Leiterplatte
durchdringt; und
wobei die untere Abdeckung (2) ein Loch (22) umfasst, das der untere Schaft (15a)
des zentralen Körpers in Eingriff nimmt.
2. Elektronische Flöte (100) nach Anspruch 1, wobei die erste Leiterplatte (5) eine obere
Seite (50a) aufweist, die der oberen Abdeckung zugewandt ist, und eine untere Seite
(50b), die dem zentralen Körper zugewandt ist und jeder Näherungssensor (52) der ersten
Leiterplatte ein kapazitiver Sensor ist, der mittels eines ringförmigen Pads aus leitfähigem
Material erhalten ist, das auf der oberen Seite (50a) der ersten Leiterplatte um das
Loch (51) der ersten Leiterplatte herum angeordnet ist;
die zweite Leiterplatte (6) weist eine obere Seite (60a) auf, die dem zentralen Körper
zugewandt ist und eine untere Seite (60b), die der unteren Abdeckung zugewandt ist
und jeder Näherungssensor (62) der zweiten Leiterplatte ist ein kapazitiver Sensor,
der mittels eines ringförmigen Pads aus leitfähigem Material erhalten ist, das auf
der unteren Seite (60b) der zweite Leiterplatte, um das Loch (61) der zweiten Leiterplatte
herum angeordnet ist.
3. Elektronische Flöte (100) nach Anspruch 1 oder 2, wobei die obere Wand (11) des zentralen
Körpers ein rechteckiges Loch (16) aufweist, das mit dem Kanal (10) des zentralen
Körpers zum Auslassen der Luft in Verbindung steht, und einen rechteckigen Rahmen
(16a), der das rechteckige Loch (16) umgibt und oberseitig vorsteht, um ein rechteckiges
Loch (53) der ersten Leiterplatte und ein rechteckiges Loch (33) der oberen Abdeckung
in Eingriff zu nehmen.
4. Elektronische Flöte (100) nach Anspruch 2 oder 3, umfassend einen Drucksensor (53),
der auf der unteren Seite (50a) der ersten Leiterplatte montiert ist und in einem
Loch (17) angeordnet ist, das in der oberen Wand (11) des zentralen Körpers nahe der
Einlassöffnung (10a) herausgearbeitet ist, die mit dem Kanal (10) des zentralen Körpers
in Verbindung steht, so dass der Drucksensor (53) nicht in den Kanal (10) des zentralen
Körpers hineinsteht.
5. Elektronische Flöte (100) nach einem der Ansprüche 2 bis 4, umfassend Lern-LEDs (L1,
L2), die auf der unteren Seite (50b) der ersten Leiterplatte nahe den Löchern (51)
der ersten Leiterplatte montiert sind und Sitze (13) in Eingriff nehmen, die in der
oberen Wand des zentralen Körpers nahe den Schäften (12a) des zentralen Körpers herausgearbeitet
sind, wobei die Schäfte (12a) des zentralen Körpers aus einem lichtleitenden Material
bestehen, so dass das von einer Lern-LED emittierte Licht den Schaft (12a) beleuchtet
und ihn auf der oberen Abdeckung (3) sichtbar macht.
6. Elektronische Flöte (100) nach einem der Ansprüche 2 bis 5, umfassend Tasten (54),
die auf der oberen Seite (50a) der ersten Leiterplatte montiert sind, und eine Brücke
(34), die aus der oberen Abdeckung (3) vorsteht; wobei die Brücke (34) Fenster (35)
an den Tasten (54) umfasst, so dass der Benutzer die Tasten drücken kann.
7. Elektronische Flöte (100) nach Anspruch 6, umfassend einen LED-Streifen (7), der auf
der oberen Seite (50a) der ersten Leiterplatte nahe den Tasten (54) montiert ist;
wobei der LED-Streifen (7) Anzeige-LEDs (70) umfasst, die die Löcher (36) in Eingriff
nehmen, die in der Brücke (34) der oberen Abdeckung herausgearbeitet sind, damit sie
für den Benutzer sichtbar sind.
8. Elektronische Flöte (100) nach einem der Ansprüche 2 bis 7, umfassend einen Neigungsdetektor
(58), der auf der unteren Seite (50b) der ersten Leiterplatte nahe der Steuereinheit
(4) montiert ist; wobei der zentrale Körper (1) eine rechteckige Öffnung (18) aufweist,
die in der oberen Wand (11) herausgearbeitet ist, um die Steuereinheit (4) und den
Neigungsdetektor (58) aufzunehmen.
9. Elektronische Flöte (100) nach einem der vorstehenden Ansprüche, wobei die ersten
Leiterplatte (5) mit der zweiten Leiterplatte (6) mittels eines Elektrokabels (8)
elektrisch verbunden ist, das außerhalb des zentralen Körpers (1) verläuft und innerhalb
der unteren und oberen Abdeckung angeordnet ist.
10. Elektronische Flöte (100) nach den Ansprüchen 8 und 9, umfassend:
- einen Verbinder (57), der auf der unteren Seite (50b) der ersten Leiterplatte nahe
der Steuereinheit (4) für den Anschluss mit dem Elektrokabel (8) montiert ist, das
mit der zweiten Leiterplatte verbunden ist, und
- einen USB-Anschluss (56), der auf der unteren Seite (50b) der ersten Leiterplatte
nahe der Steuereinheit (4) montiert ist, um die Batterie (B) zu laden,
wobei der Verbinder (57) und der USB-Anschluss in der rechteckigen Öffnung (18) angeordnet
sind, die in der oberen Wand (11) des zentralen Körpers herausgearbeitet ist.
11. Elektronische Flöte (100) nach einem der vorstehenden Ansprüche, wobei die Batterie
(B) in einem eingelassenen Sitz (23) der unteren Abdeckung untergebracht ist und elektrisch
mit der zweiten Leiterplatte (6) verbunden ist.
12. Elektronische Flöte (100) nach einem der vorstehenden Ansprüche, wobei die Steuereinheit
(4) einen Tongenerator (Q) umfasst, der dazu geeignet ist, ein Klangsignal zu emittieren,
und einen Transceiver (40), der geeignet ist, auf drahtlose Weise mit einem Smart-Gerät
verbunden zu werden.
1. Flûte électronique (100) comprenant :
- un corps central (1),
- un couvercle inférieur (2) et un couvercle supérieur (3) qui renferment le corps
central,
- une première carte de circuit imprimé (PCB) (5) disposée entre le corps central
(1) et le couvercle supérieur (3),
- une seconde PCB (6) disposée entre le couvercle inférieur (2) et le corps central,
- une unité de commande (4) branchée à la première et à la seconde PCB (5, 6), et
- une batterie (B) branchée à l'unité de commande (4) ;
où ledit corps central (1) comprend :
- un canal (10) qui se déploie longitudinalement depuis une baie d'entrée (10a) vers
un orifice de sortie (10b),
- une paroi supérieure (11) planaire dans laquelle des orifices (12) sont réalisés
et qui communiquent avec le canal (10), lesdits orifices étant destinés à être fermés
par les doigts de l'utilisateur pour jouer les notes souhaitées,
- des tiges (12a) qui débordent supérieurement de la paroi supérieure (11) autour
des orifices (12) des notes,
- une paroi inférieure (14) planaire dans laquelle un orifice inférieur (15) est réalisé
et qui communique avec le canal (10), orifice destiné à être fermé par le pouce de
l'utilisateur, et
- une tige inférieure (15a) qui déborde inférieurement de la paroi inférieure (14)
autour de l'orifice inférieur (15) ;
ladite première (PCB) (5) comprend des orifices (51) passants et des capteurs de proximité
(52) disposés autour des dits orifices (51) pour détecter le moment où l'utilisateur
approche le doigt à l'orifice (51) pour le fermer ; ladite première PCB étant disposée
sur la paroi supérieure (11) du corps central, de manière que les tiges (12a) du corps
central traversent les orifices (51) de la première PCB ;
ledit couvercle supérieur (3) comprenant des orifices (32) dans lesquels s'engagent
lesdites tiges (12a) du corps central ;
ladite seconde (PCB) (6) comprend un orifice (61) passant et au moins un capteur de
proximité (62) disposé autour dudit orifice (61) de la seconde PCB pour détecter le
moment où l'utilisateur approche le pouce à l'orifice (61) de la seconde PCB ; ladite
seconde PCB étant disposée au-dessous de la paroi inférieure (14) du corps central,
de manière que la tige inférieure (15a) du corps central traverse l'orifice (61) de
la seconde PCB ; et
ledit couvercle inférieur (2) comprenant un orifice (22) dans lequel s'engage ladite
tige inférieure (15a) du corps central.
2. Flûte électronique (100) selon la revendication 1, où la première PCB (5) a une face
supérieure (50a) orientée vers le couvercle supérieur et une face inférieure (50b)
orientée vers le corps central et chaque capteur de proximité (52) de la première
PCB est un capteur capacitif obtenu moyennant un tampon annulaire réalisé avec un
matériel conducteur déposé sur la face supérieure (50a) de la première PCB, autour
de l'orifice (51) de la première PCB ;
la seconde PCB (6) a une face supérieure (60a) orientée vers le corps central et une
face inférieure (60b) orientée vers le couvercle inférieur et chaque capteur de proximité
(62) de la seconde PCB est un capteur capacitif obtenu moyennant un tampon annulaire
réalisé avec un matériel conducteur déposé sur la face inférieure (60b) de la seconde
PCB, autour de l'orifice (61) de la seconde PCB.
3. Flûte électronique (100) selon la revendication 1 ou 2, où la paroi supérieure (11)
dudit corps central présente un orifice rectangulaire (16) qui communique avec le
canal (10) du corps central pour la sortie de l'air et un cadre rectangulaire (16a)
qui entoure l'orifice rectangulaire (16) et déborde supérieurement pour s'engager
dans un orifice rectangulaire (53) de la première PCB et dans un orifice rectangulaire
(33) du couvercle supérieur.
4. Flûte électronique (100) selon la revendication 2 ou 3, comprenant un capteur de pression
(53) monté sur la face inférieure (50a) de la première PCB et disposé dans un orifice
(17) réalisé dans la paroi supérieure (11) du corps central, près de la baie d'entrée
(10a) qui communique avec le canal (10) du corps central, de manière à ce que ledit
capteur de pression (53) ne déborde pas dans le canal (10) du corps central.
5. Flûte électronique (100) selon l'une quelconque des revendications de 2 à 4, comprenant
des DEL d'apprentissage (L1, L2) montées sur la face inférieure (50b) de la première
PCB à proximité desdits orifices (51) de la première PCB et engagés dans des emplacements
(13) réalisés dans la paroi supérieure du corps central, à proximité desdites tiges
(12a) du corps central, où lesdites tiges (12a) du corps central sont réalisées avec
un matériel transmetteur de lumière, de manière à ce que la lumière émise par une
DEL d'apprentissage éclaire ladite tige (12a) en la rendant visible sur le couvercle
supérieur (3).
6. Flûte électronique (100) selon l'une quelconque des revendications de 2 à 5, comprenant
des touches (54) montées sur ladite face supérieure (50a) de la première PCB et un
pont (34) qui déborde dudit couvercle supérieur (3) ; ledit pont (34) comprenant des
fenêtres (35) en correspondance desdites touches (54), de manière à ce que l'utilisateur
puisse appuyer sur les touches.
7. Flûte électronique (100) selon la revendication 6, comprenant une rangée de DEL (7)
montée sur la face supérieure (50a) de la première PCB, à proximité des touches (54)
; ladite rangée de DEL (7) comprenant des diodes de signalisation (70) qui s'engagent
dans des orifices (36) réalisés dans le pont (34) du couvercle supérieur de façon
à être visibles pour l'utilisateur.
8. Flûte électronique (100) selon l'une quelconque des revendications de 2 à 7, comprenant
un détecteur d'inclinaison (58) monté dans la face inférieure (50b) de la première
PCB, à proximité de l'unité de commande (4) ; où ledit corps central (1) a une ouverture
rectangulaire (18) réalisée dans la paroi supérieure (11), pour accueillir ladite
unité de commande (4) et ledit détecteur d'inclinaison (58).
9. Flûte électronique (100) selon l'une quelconque des revendications précédentes, où
la première PCB (5) est branchée électriquement à la seconde PCB (6) moyennant un
câble électrique (8) qui passe à l'extérieur dudit corps central (1) et disposé dans
le couvercle inférieur et supérieur.
10. Flûte électronique (100) selon les revendications 8 et 9, comprenant :
- un connecteur (57) monté dans la face inférieure (50b) de la première PCB, à proximité
de l'unité de commande (4) pour la connexion avec ledit câble électrique (8) branché
à la seconde PCB, et
- un port USB (56) monté dans la face inférieure (50b) de la première PCB, à proximité
de l'unité de commande (4) pour charger la batterie (B),
où le connecteur (57) et le port USB sont disposés dans ladite ouverture rectangulaire
(18) réalisée dans la paroi supérieure (11) du corps central.
11. Flûte électronique (100) selon l'une quelconque des revendications précédentes, où
ladite batterie (B) est logée dans un emplacement creux (23) du ledit couvercle inférieur
et électriquement branchée à ladite seconde PCB (6).
12. Flûte électronique (100) selon l'une quelconque des revendications précédentes, où
ladite unité de commande (4) comprend un générateur sonore (Q) apte à émettre un signal
sonore et un émetteur-récepteur (40) apte à être branché sans fil à un dispositif
intelligent.