The invention relates to an earpiece device, and more particularly to an earpiece device using at least one acoustic lens to improve the quality of sound.
The sound wave generated by a loudspeaker is a spherical wave. When a loudspeaker is used indoors, the curvature of the spherical wave gradually becomes large because the loudspeaker generally is distant from user's ear. That is, the spherical wave upon arrival at user's ear is already close to a plane wave. As for an earpiece device capable of sound positioning in the front, the sound wave upon arrival at user's ear is still in the form of a spherical wave because the earpiece device is located near user's ear. That may change the balance between the high frequency sound and the low frequency sound and affect the quality of sound.
The invention therefore provides an earpiece device using an acoustic lens to delay propagation of the sound wave at the peripheral part thereof so that the sound wave is close to a plane wave when reaching user's ear.
The earpiece device in accordance with an exemplary embodiment of the invention includes a housing, a sound generator and a first blocker. The housing includes a main body and a cover plate, wherein the cover plate includes a first surface and a second surface, the first surface is disposed towards the main body, the second surface is disposed opposite to the first surface, and the first surface is connected to the main body so as to form an internal space of the main body, and to form an exterior which is distant from the main body. The sound generator includes a first loudspeaker, wherein the first loudspeaker includes a vibrating board, the vibrating board includes a first sound generating surface and a second sound generating surface, the first sound generating surface is disposed towards the exterior, and the second sound generating surface is disposed opposite to the first sound generating surface. The first blocker includes a first portion, a second portion, a first side surface and a second side surface, wherein the first side surface is disposed towards the first sound generating surface, the second side surface is disposed opposite to the first side surface, the first portion is disposed between the first side surface and the second side surface, the first portion is fixed to the cover plate, and the second portion is disposed opposite to the first portion and is distant from the cover plate.
In another exemplary embodiment, the sound generator further includes a second loudspeaker and a third loudspeaker, an projected area formed by projecting the second loudspeaker onto the cover plate has a first center, another projected area formed by projecting the third loudspeaker onto the cover plate has a second center, a line connecting the first center and the second center is perpendicularly bisected by a bisector plane, and the bisector plane passes through the first loudspeaker.
In yet another exemplary embodiment, the earpiece device further includes a second blocker, wherein the cover plate further includes a support element, the support element includes an end portion connected to the second surface of the cover plate, the second blocker includes a third portion and a fourth portion, the third portion is fixed to the end portion of the support element, and the fourth portion is disposed opposite to the third portion and is distant from the end portion of the support element.
In another exemplary embodiment, the second blocker is disposed between the first blocker and the vibrating board of the first loudspeaker, the first sound generating surface is disposed towards the first blocker and the second blocker, and the second blocker is disposed closer to the first sound generating surface than the first blocker.
In yet another exemplary embodiment, a ratio of width to height of the first blocker ranges from 2.57 to 3.43, and a ratio of width to height of the second blocker ranges from 2.61 to 3.47.
In another exemplary embodiment, the sound generator further includes a magnetic circuit, the magnetic circuit includes a magnet, the magnet includes a third surface and a fourth surface, the third surface of the magnet is disposed towards the second sound generating surface of the vibrating board, the fourth surface of the magnet is disposed opposite to the third surface of the magnet, and the third surface of the magnet and the first side surface of the first blocker have an included angle less than ninety degrees.
The earpiece device in accordance with yet another embodiment includes a housing, a sound generator and a first blocker. The housing includes a main body and a cover plate, wherein the cover plate defines a first acoustic hole and includes a first surface and a second surface, the first surface is disposed towards the main body, the second surface is disposed opposite to the first surface, and the first surface is connected to the main body so as to form an internal space of the main body, and to form an exterior which is distant from the main body. The sound generator includes a first loudspeaker, wherein the first loudspeaker includes a vibrating board, the vibrating board includes a first sound generating surface and a second sound generating surface, the first sound generating surface is disposed towards the first surface of the cover plate, and the second sound generating surface is disposed opposite to the first sound generating surface. The first blocker is disposed adjacent to the first acoustic hole and includes a first portion, a second portion, a first side surface and a second side surface, wherein the first side surface is disposed close to the first acoustic hole, the second side surface is disposed opposite to the first side surface, the first portion is disposed between the first side surface and the second side surface, the first portion is fixed to the cover plate, and the second portion is disposed opposite to the first portion and is distant from the cover plate.
In another exemplary embodiment, the sound generator further includes a magnetic circuit, the magnetic circuit includes a magnet, the magnet includes a third surface and a fourth surface, the third surface of the magnet is disposed towards the second sound generating surface of the vibrating board, the fourth surface of the magnet is disposed opposite to the third surface of the magnet, and the third surface of the magnet and the first side surface of the first blocker have an included angle equal to or less than ninety degrees.
In yet another exemplary embodiment, a ratio of width to height of the first blocker ranges from 1.33 to 1.78, or ranges from 2.13 to 2.85.
In another exemplary embodiment, the first blocker includes a sound wave blocking plate.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
Referring to
Referring to
Referring to
The tweeter 21 is disposed in the internal space 2048 and includes a vibrating board 211 and a magnetic circuit 213. The vibrating board 211 includes a first sound generating surface 2111 and a second sound generating surface 2113. The first sound generating surface 2111 is disposed towards the exterior 2049 of the main body 204. The second sound generating surface 2113 is disposed opposite to the first sound generating surface 2111, namely the second sound generating surface 2113 is disposed towards the internal space 2048. The magnetic circuit 213 is placed at a side of the vibrating board 211, and the second sound generating surface 2113 is disposed towards the side where the magnetic circuit 213 is placed. The magnetic circuit 213 includes a magnet which has a third surface 2133 and a fourth surface 2131. The third surface 2133 of the magnet is disposed towards the second sound generating surface 2113 of the vibrating board 211. The fourth surface 2131 of the magnet is disposed opposite to the third surface 2133.
The blocker 23 includes a third side surface 231, a fourth side surface 232, a third portion 234 and a fourth portion 233. The third side surface 231 is disposed near the first sound generating surface 2111 of the vibrating board 211. The fourth side surface 232 is disposed opposite to the third side surface 231. The third portion 234 is disposed between the third side surface 231 and the fourth side surface 232 and is fixed to the cover plate 203. The fourth portion 233 is disposed between the third side surface 231 and the fourth side surface 232, is disposed opposite to the third portion 234 and is distant from the cover plate 203.
The blocker 22 includes a first side surface 221, a second side surface 222, a first portion 224 and a second portion 223. The first side surface 221 is disposed near the fourth side surface 232 of the blocker 23. The second side surface 222 is disposed opposite to the first side surface 221. The first portion 224 is disposed between the first side surface 221 and the second side surface 222 and is fixed to the cover plate 203. The second portion 223 is disposed between the first side surface 221 and the second side surface 222, is disposed opposite to the first portion 224 and is distant from the cover plate 203.
The cover plate further includes two parallel support elements 27 (
In this embodiment, the blocker 22 is placed at a side of the blocker 23, and the fourth side surface 232 of the blocker 23 is disposed towards the side where the blocker 22 is placed. Further, the blocker 22 is fixed to a depressed portion 2037 of the cover plate 203. The blocker 23 is disposed between the blocker 22 and the vibrating board 211 of the tweeter 21. The first sound generating surface 2111 of the vibrating board 211 of the tweeter 21 is disposed towards the blocker 22 and the blocker 23. It is worth noting that the blocker 23 is disposed closer to the first sound generating surface 2111 than the blocker 22.
In
From the above Tables 1 and 2, it is known that the ratio of width to height of the blocker 22 ranges from 2.57 to 3.43, and the ratio of width to height of the blocker 23 ranges from 2.61 to 3.47.
Referring to
When in use, the tweeter of the earpiece device is located close to user's ear so that the sound wave upon arrival at user's ear is in the form of a spherical wave. Under such circumstance, the balance between sound frequencies will be changed if the location of the ear is different. The high-pitched sound is stronger at the central part of the tweeter, while the low-pitched sound is stronger at the peripheral part of the tweeter. Therefore, when the sound wave from the peripheral part of the tweeter arrives at user's ear earlier than that from the central part of the tweeter, the balance between the high frequency sound and the low frequency sound is changed and the quality of sound is affected. To address the problem, the invention provides the blockers 23 and 22 in front of the tweeter 21. In operation, propagation of the sound wave is blocked by the blockers 23 and 22, reflection and/or diffraction of the sound wave occurs, and the propagation of the sound wave is delayed at the central part thereof. Thus, the sound wave upon arrival at the ear canal is close to a plane wave with the phase thereof adjusted. Even though different users' ears are different at locations, the invention can still keep the consistency between sound frequencies changed upon arrival at the ear canal, can stabilize the sound positioning in the front, and can provide good sound quality.
Referring to
Referring to
The blocker 25 includes a first side surface 251, a second side surface 252, a first portion 254 and a second portion 253. The first side surface 251 is disposed near the first acoustic hole 201. The second side surface 252 is disposed opposite to the first side surface 251. The first portion 254 is disposed between the first side surface 251 and the second side surface 252 and is fixed to the cover plate 203. The second portion 253 is disposed between the first side surface 251 and the second side surface 252, is disposed opposite to the first portion 254, and is distant from the cover plate 203. In this embodiment, the third surface 2433 of the magnet and the first side surface 251 of the blocker 25 have an included angle θ2 equal to or less than ninety degrees.
In
From the above Table 3, it is known that the ratio W3/H3 of width to height of the blocker 25 ranges from 1.33 to 1.78.
Referring to
In
From the above Table 4, it is known that the ratio W4/H4 of width to height of the blocker 26 ranges from 2.13 to 2.85.
The first acoustic hole 201 and the second acoustic hole 202 are disposed away from the ear carnal at different distances. The balance between the sound frequencies will be changed when the sound wave passes through the first acoustic hole 201 (closer to the ear carnal) and the second acoustic hole 202 (farther from the ear carnal) and arrives at the ear canal. The invention therefore provides the blocker 25 and the blocker 26 in front of the first acoustic hole 201 and the second acoustic hole 202 for adjusting the phase of the sound and suppressing the difference of the phase of the sound wave for the woofer 24.
While the invention has been described by way of example and in terms of preferred embodiment, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
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110105946 | Feb 2021 | TW | national |
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Entry |
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WO-2021221054-A1, English Translation, Date Nov. 2021. |
Number | Date | Country | |
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20220270585 A1 | Aug 2022 | US |