SPEAKER MODULE
20220053262 · 2022-02-17
Assignee
Inventors
Cpc classification
H04R1/24
ELECTRICITY
International classification
Abstract
A speaker module includes a first cavity body, a second cavity body disposed adjacent to the first cavity body and a vibration module disposed in the first cavity body and including a first diaphragm and a second diaphragm which are horizontally spaced apart. The first cavity body includes a first sub-cavity and a second sub-cavity which are respectively located on two opposite sides of the vibration module, and the second sub-cavity is communicated with the second cavity body.
Claims
1. A speaker module, comprising: a first cavity body; a second cavity body, which is disposed adjacent to the first cavity body; and a vibration module, which is disposed in the first cavity body and comprises a first diaphragm and a second diaphragm which are horizontally spaced apart; wherein the first cavity body comprises a first sub-cavity and a second sub-cavity which are respectively located on two opposite sides of the vibration module, and the second sub-cavity is communicated with the second cavity body.
2. The speaker module according to claim 1, further comprising a powder mesh structure disposed in the second sub-cavity, wherein the powder mesh structure is provided with a plurality of through holes.
3. The speaker module according to claim 2, wherein the powder mesh structure is located below the second diaphragm.
4. The speaker module according to claim 3, further comprising a first baffle disposed between the first cavity body and the second cavity body, wherein one end of the powder mesh structure is connected to the first baffle, and the other end of the powder mesh structure is connected to a bottom of the second sub-cavity.
5. The speaker module according to claim 4, further comprising a second baffle located in the first cavity body and perpendicularly connected to the first baffle, wherein the second baffle is provided with a mounting hole, and the second diaphragm is mounted on the mounting hole.
6. The speaker module according to claim 5, wherein the powder mesh structure, the first baffle and the second baffle are an integrally-formed structure.
7. The speaker module according to claim 1, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
8. The speaker module according to claim 1, wherein the second diaphragm comprises an outer diaphragm, an inner diaphragm and a metal ring, the outer diaphragm is disposed around the inner diaphragm, and the metal ring connects the outer diaphragm and the inner diaphragm and is disposed around the inner diaphragm.
9. The speaker module according to claim 8, wherein a rigidity of the outer diaphragm is less than a rigidity of the inner diaphragm.
10. The speaker module according to claim 1 further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
11. The speaker module according to claim 2, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
12. The speaker module according to claim 3, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
13. The speaker module according to claim 4, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
14. The speaker module according to claim 5, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
15. The speaker module according to claim 6, further comprising a front cavity and a rear cavity, wherein the front cavity is the first sub-cavity located above the vibration module, and the rear cavity comprises the second sub-cavity located below the vibration module and the second cavity body.
16. The speaker module according to claim 2, further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
17. The speaker module according to claim 3, further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
18. The speaker module according to claim 4, further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
19. The speaker module according to claim 5, further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
20. The speaker module according to claim 6, further comprising a magnetic circuit system and a voice coil structure, wherein the magnetic circuit system and the voice coil structure are both disposed in the second sub-cavity, the first diaphragm is driven by the magnetic circuit system and the voice coil structure to vibrate, and the second diaphragm is driven by the first diaphragm to vibrate.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
REFERENCE LIST
[0025] 1 first cavity body [0026] 11 first sub-cavity [0027] 12 second sub-cavity [0028] 2 second cavity body [0029] 3 vibration module [0030] 31 first diaphragm [0031] 32 second diaphragm [0032] 4 powder mesh structure [0033] 41 through hole [0034] 5 first baffle [0035] 6 second baffle [0036] 61 mounting hole [0037] 7 magnetic circuit system [0038] 101 first plate structure [0039] 102 second plate structure [0040] 103 third plate structure [0041] 104 fourth plate structure [0042] 105 side plate structure
DETAILED DESCRIPTION
[0043] To make solved problems, adopted solutions and achieved effects of the present disclosure clearer, solutions of the present disclosure are further described below through embodiments in conjunction with drawings. It is to be understood that the embodiments described below are merely intended to illustrate and not to limit the present disclosure. In addition, it should be noted that for ease of description, only the part related to the present disclosure, instead of all, is illustrated in the drawings.
[0044] In the description of the present disclosure, it should be noted that the orientations or position relations indicated by terms such as “center”, “above”, “below”, “left”, “right”, “vertical”, “horizontal”, “inside”, “outside” and the like are based on orientations or position relations shown in the drawings. These orientations or position relations are intended only to facilitate and simplify description of the present disclosure, and not to indicate or imply that a device or element referred to must have such specific orientations or must be configured or operated in such specific orientations. Thus, these orientations or position relations are not to be construed as limiting the present disclosure. In addition, terms such as “first” and “second” are used merely for the purpose of description and are not to be construed as indicating or implying relative importance.
[0045] In the description of the present disclosure, it should be noted that unless otherwise expressly specified and limited, the term “mounting”, “connected to each other” or “connected” is to be construed in a broad sense, for example, as securely connected or detachably connected; mechanically connected or electrically connected; directly connected to each other or indirectly connected to each other via an intermediary; or internally connected between two elements. For those of ordinary skill in the art, specific meanings of the preceding terms in the present disclosure may be understood based on specific situations.
[0046] An embodiment provides a speaker module, which can improve the situation that sharp peaks and valleys exist in the medium-high frequency curve of the speaker module, providing a relatively good listening feeling.
[0047] As shown in
[0048] The second cavity body 2 is disposed adjacent to the first cavity body 1, that is, the first cavity body 1 is adjacent to the second cavity body 2. The vibration module 3 is disposed in the first cavity body 1, and includes a first diaphragm 31 and a second diaphragm 32 which are horizontally spaced apart. The first cavity body 1 includes a first sub-cavity 11 and a second sub-cavity 12 which are respectively located on two opposite sides of the vibration module 3, and the second sub-cavity 12 is communicated with the second cavity body 2. The first sub-cavity 11 is located above the first diaphragm 31 or above the second diaphragm 32. The second sub-cavity 12 is located below the first diaphragm 31 or below the second diaphragm 32.
[0049] In this embodiment, the speaker module may include a front cavity and a rear cavity. The front cavity refers to a cavity located above the first diaphragm 31 or the second diaphragm 32, and the rear cavity refers to a cavity located below the first diaphragm 31 or the second diaphragm 32. Specifically, the front cavity is the part of the first cavity body 1 located above the vibration module 3, and the rear cavity includes the part of the first cavity body 1 located below the vibration module 3 and includes the second cavity body 2. The rear cavity of the speaker module is relatively large.
[0050] In the speaker module provided by this embodiment, due to the setting of the second diaphragm 32 in the first cavity body 1, medium-high frequency of the speaker module can be adjusted through the second diaphragm 32, so that the situation that sharp peaks and valleys exist in the medium-high frequency curve of the speaker module can be improved, the sound emitted by the speaker module is not harsh, a relatively good listening feeling is provided to the user, and the practicability and applicability of the speaker module is improved.
[0051] Moreover, due to the communication of the second sub-cavity 12 with the second cavity body 2, the volume of the second sub-cavity 12 is increased, the compactness of product design is improved, so that the first diaphragm 31 and the second diaphragm 32 can have a relatively large rear cavity, the low frequency can be further improved, and the function of adjusting the medium-high frequency by the second diaphragm 32 is not affected.
[0052] Further, as shown in
[0053] Further, as shown in
[0054] Further, with continued reference to
[0055] Optionally, referring to
[0056] Optionally, as shown in
[0057] Further, the powder mesh structure 4, the first baffle 5 and the second baffle 6 are an integrally-formed structure. That is, the powder mesh structure 4, the first baffle 5 and the second baffle 6 may be formed in one manufacturing process to improve the connection strength between the powder mesh structure 4, the first baffle 5 and the second baffle 6, so as to prevent the second baffle 6 from being separated from the powder mesh structure 4 or the first baffle 5 in a case where the second diaphragm 32 vibrates.
[0058] Optionally, the structure of the second diaphragm 32 may be various, and the structure of the second diaphragm 32 in this embodiment is described below. Specifically, the second diaphragm 32 may include an outer diaphragm, an inner diaphragm and a metal ring. The outer diaphragm is disposed around the inner diaphragm, and the metal ring connects the outer diaphragm and the inner diaphragm and is disposed around the inner diaphragm. In this embodiment, the metal ring is bonded to the outer diaphragm and the inner diaphragm through a pressure sensitive adhesive (PSA).
[0059] Optionally, a rigidity of the outer diaphragm is less than a rigidity of the inner diaphragm. That is, the rigidity of the outer diaphragm is different from the rigidity of the inner diaphragm.
[0060] To enable the first diaphragm 31 and the second diaphragm 32 to operate normally, as shown in
[0061] According to the speaker module provided by the present disclosure, the situation that sharp peaks and valleys exist in medium-high frequency curve can be improved, providing a relatively good listening feeling. Due to the setting of a powder mesh structure, ventilation between the second sub-cavity and the second cavity body can be increased; meanwhile, foreign matters in the product can be prevented from being in contact with the second diaphragm, so as to avoid impact on sound quality. A rear cavity is directly disposed below the second diaphragm, so the compactness of product design is improved, the space of the rear cavity is greatly increased, the low frequency is further improved, and the function of adjusting the medium-high frequency by the second diaphragm is not affected.