Sound transducer structure of electronic device
11206477 ยท 2021-12-21
Assignee
Inventors
Cpc classification
H04R1/025
ELECTRICITY
H04R2400/11
ELECTRICITY
H04R2499/11
ELECTRICITY
International classification
Abstract
The present invention provides a sound transducer structure of electronic device relating to the technical field of acoustics. The sound transducer structure includes a housing having an accommodating cavity, a sound generator received in the accommodating cavity, and a sound outlet disposed in the housing. A sound guiding groove communicates between the sound generator and the sound outlet, so that a sound generated at the sound generator is conducted along the sound guiding groove and is transmitted out of the housing from the sound outlet. The sound outlet includes a first sound outlet for transmitting sound in a receiver mode and a second sound outlet for transmitting sound in a loudspeaker mode. The second sound outlet is covered with a sound pressure sensitive member.
Claims
1. A sound transducer structure of electronic device, comprising: a housing having an accommodating cavity; a sound generator received in the accommodating cavity; and a sound outlet disposed in the housing; a sound guiding groove communicating between the sound outlet and the sound generator, allowing a sound generated from the sound generator to be conducted along the sound guiding groove and transmitted out of the housing from the sound outlet; wherein the sound outlet comprises a first sound outlet for transmitting sound in a receiver mode and a second sound outlet for transmitting sound in a loudspeaker mode, and the second sound outlet is covered with a sound pressure sensitive member, the housing comprises a middle frame, a main body mounted in the middle frame, and a front cover arranged on the main body, the first sound outlet is disposed in the main body, and the second sound outlet is disposed in the middle frame.
2. The sound transducer structure according to claim 1, wherein the sound pressure sensitive member is an air-permeable spacer.
3. The sound transducer structure according to claim 1, wherein the front cover is defined with a through hole at a position corresponding to the first sound outlet.
4. The sound transducer structure according to claim 3, wherein a front cavity is defined by the sound generator together with the main body and the middle frame, and the sound guiding groove is provided in the main body and communicating with the front cavity.
5. The sound transducer structure according to claim 4, wherein the sound guiding groove comprises a first groove section, the first sound outlet communicates with the first groove section at an end of the first groove section close to the front cover, and the second sound outlet communicates with the first groove section at a side of the first groove section close to the middle frame.
6. The sound transducer structure according to claim 5, wherein the sound guiding groove further comprises a second groove section perpendicular to and directly communicates with the first groove section, and the second sound outlet communicates with the second groove section at an end of the second groove section away from the first groove section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENT
(4) The present disclosure will be further described below with reference to the drawings and embodiments.
(5) Referring to
(6) In one embodiment, the sound pressure sensitive member 3 is an air-permeable spacer, and optionally may be a mesh or a metal mesh to obtain better sound quality.
(7) In one embodiment, the housing 1 includes a middle frame 12, a main body 14 mounted in the middle frame 12, and a front cover 11 covered on the main body 14. The first sound outlet 21 is disposed in the main body 14, and the second sound outlet 22 is disposed in the middle frame 12. In case of the receiver mode, the sound is transmitted out from the front cover 11, making it more convenient for usage as the front cover 11 may be closely attached to a user's ear. In addition, the second sound outlet 22 is arranged at the top of the housing 1. In the loudspeaker mode, the sound is transmitted out from the middle frame 12, making it convenient for loudspeaker sound out.
(8) In one embodiment, the front cover 11 is provided with a through hole 112 at a position corresponding to the first sound outlet 21, so that the sound may be transmitted from the first sound outlet 21 and then out the through hole 112 in the front cover 11.
(9) In one embodiment, a front cavity 4 is formed by the sound generator 5 together with the main body 14 and the middle frame 12. The sound guiding groove 6 is provided in the main body 14 and is communicated with the front cavity 4, allowing the sound to be transmitted from the front cavity 4 through the sound guiding groove 6 and then out the sound outlet 2.
(10) Referring to
(11) In addition, based on the previous embodiment, the sound guiding groove 6 also includes a second groove section 62 perpendicular to and directly communicates with the first groove section 61, and the second sound outlet 22 is communicated with the second groove section 62 at an end of the second groove section 62 away from the first groove section 61, allowing the sound generated by the sound generator 5 to be transmitted out from the second sound outlet 22 through the second groove section 62.
(12) The description above is only some embodiments of the present disclosure. It should be pointed out here that for those of ordinary skill in the art, improvements can be made without departing from the inventive concept of the present disclosure, which are all within the scope of protection of the present disclosure.