Speaker module and wearable device
11638089 · 2023-04-25
Assignee
Inventors
Cpc classification
H04R2499/15
ELECTRICITY
H04R5/04
ELECTRICITY
H04R1/347
ELECTRICITY
International classification
H04R1/34
ELECTRICITY
H04R1/28
ELECTRICITY
Abstract
A speaker module adapted to be disposed on a wearable device. The speaker module includes at least one driving unit and an enclosure. The driving unit is configured to produce sound. The enclosure contains the driving unit and has a front chamber and a rear chamber. The front chamber and the rear chamber are individually located at two opposite sides of the driving unit. The enclosure has a front opening, a first rear opening, and a second rear opening. The front opening communicates with the front chamber. The first rear opening and the second rear opening individually communicate with the rear chamber. A sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity.
Claims
1. A speaker module, adapted to be disposed on a wearable device, the speaker module comprising: at least one driving unit, configured to produce sound; and an enclosure, containing the at least one driving unit, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the at least one driving unit, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein the front opening and the first rear opening form a first vector towards the front opening, the front opening and the second rear opening form a second vector towards the front opening, the first rear opening and the second rear opening form a third vector towards the second rear opening, the third vector has a normal vector perpendicular to the third vector, and the first vector, the second vector, and a reverse vector of the normal vector are added to form a direction of the sum.
2. The speaker module according to claim 1, wherein a plane formed by the front opening has a first centroid, a plane formed by the first rear opening has a second centroid, a plane formed by the second rear opening has a third centroid, the first centroid and the second centroid are connected and form a first vector towards the first centroid, the first centroid and the third centroid are connected and form a second vector towards the first centroid, the second centroid and the third centroid are connected and form a third vector towards the third centroid, the third vector has a normal vector perpendicular to the third vector, and the first vector, the second vector, and a reverse vector of the normal vector are added to form a direction of the sum.
3. The speaker module according to claim 2, wherein the first vector, the second vector, and the third vector are unit vectors.
4. The speaker module according to claim 1, wherein the enclosure has a front cover, a rear cover, and a partitioning plate, the partitioning plate is arranged between the front cover and the rear cover, the partitioning plate and the front cover form the front chamber, the partitioning plate and the rear cover form the rear chamber, the partitioning plate has at least one slot hole, and the at least one driving unit is arranged in the at least one slot hole.
5. The speaker module according to claim 4, wherein the front cover further comprises a convex surface, the convex surface faces the at least one driving unit, the convex surface has a first inclined surface and a second inclined surface, the first inclined surface is perpendicular to an axis of the at least one driving unit, and an angle between the first inclined surface and the second inclined surface is 0 degrees to 45 degrees.
6. The speaker module according to claim 5, wherein on a geometric plane formed by the axis and a normal vector of the front opening away from the at least one driving unit, an angle between the axis and the normal vector is less than 90 degrees.
7. A speaker module, adapted to be disposed on a wearable device, the speaker module comprising: at least one driving unit, configured to produce sound; and an enclosure, containing the at least one driving unit, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the at least one driving unit, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein the enclosure is a mesh shell, and meshes with porosities of the enclosure at the front opening, the first rear opening, and the second rear opening are greater than the porosity of the enclosure at other portions of the enclosure.
8. A wearable device, comprising: a frame; and at least one speaker module, the at least one speaker module comprising: at least one driving unit, configured to produce sound; and an enclosure, containing the at least one driving unit, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the at least one driving unit, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein the front opening and the first rear opening form a first vector towards the front opening, the front opening and the second rear opening form a second vector towards the front opening, the first rear opening and the second rear opening form a third vector towards the second rear opening, the third vector has a normal vector perpendicular to the third vector, and the first vector, the second vector, and a reverse vector of the normal vector are added to form a direction of the sum.
9. The wearable device according to claim 8, wherein a plane formed by the front opening has a first centroid, a plane formed by the first rear opening has a second centroid, a plane formed by the second rear opening has a third centroid, the first centroid and the second centroid are connected and form a first vector towards the first centroid, the first centroid and the third centroid are connected and form a second vector towards the first centroid, the second centroid and the third centroid are connected and form a third vector towards the third centroid, the third vector has a normal vector perpendicular to the third vector, and the first vector, the second vector, and a reverse vector of the normal vector are added to form a direction of the sum.
10. The wearable device according to claim 9, wherein the first vector, the second vector, and the third vector are unit vectors.
11. The wearable device according to claim 8, wherein an angle between a direction of the sum and a straight line connecting the front opening to an ear reference point is less than 30 degrees.
12. The wearable device according to claim 8, wherein the enclosure has a front cover, a rear cover, and a partitioning plate, the partitioning plate is arranged between the front cover and the rear cover, the partitioning plate and the front cover form the front chamber, the partitioning plate and the rear cover form the rear chamber, the partitioning plate has at least one slot hole, and the at least one driving unit is arranged in the at least one slot hole.
13. The wearable device according to claim 12, wherein the front cover further comprises a convex surface, the convex surface faces the at least one driving unit, the convex surface has a first inclined surface and a second inclined surface, the first inclined surface is perpendicular to an axis of the at least one driving unit, and an angle between the first inclined surface and the second inclined surface is 0 degrees to 45 degrees.
14. The wearable device according to claim 13, wherein an angle between the axis and the front opening is less than 90 degrees.
15. The wearable device according to claim 8, further comprising: a display unit, arranged on the frame.
16. A wearable device, comprising: a frame; and at least one speaker module, the at least one speaker module comprising: at least one driving unit, configured to produce sound; and an enclosure, containing the at least one driving unit, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the at least one driving unit, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein the enclosure is a mesh shell, and meshes with porosities of the enclosure at the front opening, the first rear opening, and the second rear opening are greater than the porosity of the enclosure at other portions of the enclosure.
17. A wearable device, comprising: a frame; and at least one speaker module, the at least one speaker module comprising: at least one driving unit, configured to produce sound; and an enclosure, containing the at least one driving unit, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the at least one driving unit, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein a number of the at least one speaker module is two, the speaker modules are arranged at left and right sides of the frame, when sound emitted by the speaker module on the left side is transmitted to the right side, the sound is canceled by the speaker module on the right side, and when sound emitted by the speaker module on the right side is transmitted to the left side, the sound is canceled by the speaker module on the left side.
18. A speaker module, adapted to be disposed on a wearable device, the speaker module comprising: two driving units, configured to produce sound; and an enclosure, containing the two driving units, having a front chamber and a rear chamber, wherein the front chamber and the rear chamber are individually located at two opposite sides of the two driving units, the enclosure has a front opening, a first rear opening, and a second rear opening, the front opening communicates with the front chamber, the first rear opening and the second rear opening individually communicate with the rear chamber, and a sum of sound outputted from the front opening, the first rear opening, and the second rear opening has directivity, wherein the enclosure comprises: a front cover; a rear cover; and a partitioning plate, located between the front cover and the rear cover, wherein the partitioning plate and the front cover form the front chamber, the partitioning plate and the rear cover form the rear chamber, the partitioning plate has two slot holes, and the two driving units are separately arranged in the two slot holes, wherein the front opening and the first rear opening form a first vector towards the front opening, the front opening and the second rear opening form a second vector towards the front opening, the first rear opening and the second rear opening form a third vector towards the second rear opening, the third vector has a normal vector perpendicular to the third vector, and the first vector, the second vector, and a reverse vector of the normal vector are added to form a direction of the sum.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE EMBODIMENTS
(28) With reference to
(29) As described above, the enclosure 110 further includes a front opening 110a, a first rear opening 110b, and a second rear opening 110c. The front opening 110a communicates with the front chamber 114, and the first rear opening 110b and the second rear opening 110c individually communicate with the rear chamber 115. Each of the driving units 120 has a front surface 121 and a rear surface 122 opposite to each other. The front surface 121 faces the front cover 111. The rear surface 122 faces the rear cover 112. A sound wave transmitted from the front surface 121 is outputted from the front opening 110a. A sound wave transmitted from the rear surface 122 is outputted from the first rear opening 110b and the second rear opening 110c. That is, the driving units 120 are arranged between the front chamber 114 and the rear chamber 115, and the front chamber 114 does not communicate with the rear chamber 115.
(30) With reference to
(31) For instance, the vectors may also be formed by centroids of the openings. A plane surrounded by the front opening 110a has a first centroid C1. A plane surrounded by the first rear opening 110b has a second centroid C2. A plane surrounded by the second rear opening 110c has a third centroid C3. The first centroid C1 and the second centroid C2 form the first vector b1 in a direction towards the first centroid C1. The first centroid C1 and the third centroid C3 form the second vector b2 in a direction towards the first centroid C1. The second centroid C2 and the third centroid C3 form the third vector in a direction towards the third centroid C3. The third vector has the normal vector a′ away from the first centroid C1. The normal vector a′ has the reverse vector a directed to the first centroid C1. The first vector b1, the second vector b2, and the reverse vector a are unit vectors. The first vector b1, the second vector b2, and the reverse vector a are added to form the direction D of the sum of sound.
(32) With reference to
(33) To be specific, connecting lines between the front opening 510a and each of the rear openings 510c, 510d, and 510e has vectors b51, b52, and b53 directed to the front opening 510a. Connecting lines between the front opening 510b and each of the rear openings 510c, 510d, and 510e has vectors b54, b55, and b56 directed to the front opening 510b. On the other hand, connecting lines between any two rear openings have normal vectors a1′, a2′, and a3′. The normal vectors a1′, a2′, and a3′ have reverse vectors a1, a2, and a3 directed to the driving unit 520. A sum of vectors of the vectors b51, b52, and b53 and the reverse vectors a1, a2, and a3 form a first direction D1. A sum of vectors of the vectors b54, b55, and b56 and the reverse vectors a1, a2, and a3 form a second direction D2. On an opening connecting line between the front opening 510a and the front opening 510b, the first direction D1 and the second direction D2 are added to form a direction D3 of the sum of sound. That is, in the front openings and the rear openings of different numbers, the sum of sound still exhibits directivity.
(34) With reference to
(35) With reference to
(36) As described above, in the embodiment of
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(42) However, with reference to
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(45) With reference to
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(48) With reference to
(49) In view of the foregoing, in the disclosure, the sum of sound outputted by the speaker module has directivity, so that the deviation caused by the user's wearing variations and the differences in the structures of the human bodies may be reduced. In addition, the directivity may further isolate voices, making it difficult to hear the voice content outputted by the speaker module from the outside. A private using scenario is therefore created, and the user is allowed to enjoy a realistic listening experience as well as a comfortable using experience.