The present disclosure relates to a technical field of electroacoustic device, and in particular to a speaker box and an electronic device.
As shown in
Aiming at above problems, it is necessary to provide a speaker box and an electronic device that are reasonable in design and effectively improve the above problems.
The present disclosure aims to solve at least one of the technical problems in the prior art and provides a speaker box and an electronic device.
A first aspect of the present disclosure provides the speaker box including: an upper cover plate, a lower cover plate, a speaker unit, and a motor module. The lower cover plate is assembled with the upper cover plate to define an accommodating cavity. The speaker unit and the motor module are accommodated in the accommodating cavity. The speaker unit divides the accommodating cavity into a front cavity and a rear cavity. The motor module is disposed on one side, distal from the upper cover plate, of the speaker unit. The upper cover plate includes a top wall and side walls. A length of at least one of the side walls is greater than a length of an orthographic projection of the at least one of the side walls. Edge areas of the upper cover plate and edge areas of the lower cover plate are assembled to define compensation cavities. The compensation cavities are communicated with the rear cavity.
In one optional embodiment, the upper cover plate includes first side walls and second side walls. The first side walls are opposite to each other along a length direction of the upper cover plate. The second side walls are opposite to each other along a width direction of the upper cover plate.
A length of each of the second side walls is greater than a length of a projection of each of the second side walls.
In one optional embodiment, supporting steps are disposed at one end, facing the lower cover plate, of the side walls of the upper cover plate.
The lower cover plate includes a bottom wall and side walls of the lower cover plate connected to the bottom wall. Bosses are disposed at one end, facing the upper cover plate, of the side walls of the lower cover plate.
Each of the bosses is embedded in a corresponding supporting step of the supporting steps.
In one optional embodiment, an accommodating through groove is defined on a central area of the lower cover plate. The motor module is disposed in the accommodating through groove.
In one optional embodiment, the compensation cavities are communicated with each other.
In one optional embodiment, the lower cover plate is fixed to the upper cover plate through ultrasonic welding.
In one optional embodiment, the speaker box further includes mounting holes. The mounting holes are defined on the edge areas of the upper cover plate, and/or the mounting holes are defined on the edge areas of the lower cover plate.
The mounting holes are located on outer sides of the compensation cavities.
In one optional embodiment, a mounting groove is defined on one side, facing the speaker unit, of the upper cover plate. The speaker unit is accommodated in the mounting groove.
A fixing plate is disposed on the upper cover plate along a length direction of the upper cover plate. The fixing plate, the mounting groove, and the upper cover plate are of an injection molding integrated structure, and/or the lower cover plate is of an injection molding structure.
In one optional embodiment, the motor module includes a housing and a vibration component. The housing and the upper cover plate define an accommodating space. The vibration component is accommodated in the accommodating space.
The lower cover plate is sleeved on an outer side of the housing. At least one sealing strip is disposed at gaps between the lower cover plate and the housing.
A second aspect of the present disclosure provides the electronic device, including the speaker box as previously described.
The present disclosure provides the speaker box and the electronic device. The speaker box includes the upper cover plate, the lower cover plate, the speaker unit, and the motor module. The lower cover plate is assembled with the upper cover plate to define the accommodating cavity. The speaker unit and the motor module are accommodated in the accommodating cavity. The speaker unit divides the accommodating cavity into the front cavity and the rear cavity. The motor module is disposed on the one side, distal from the upper cover plate, of the speaker unit. The upper cover plate includes the top wall and the side walls. The length of the at least one of the side walls is greater than the length of the orthographic projection of the at least one of the side walls. The edge areas of the upper cover plate and the edge areas of the lower cover plate are assembled to define the compensation cavities. The compensation cavities are communicated with the rear cavity. According to the speaker box disclosed by the present disclosure, the length of the at least one of the side walls of the upper cover plate of the speaker box is greater than the length of the orthographic projection of the at least one of the side walls of the upper cover plate of the speaker box. That is, the upper cover plate has an irregular shape and is suitable for speaker boxes with different shapes, thereby being suitable for various electronic devices and having strong adaptability and wide application. The edge areas of the lower cover plate are assembled with the edge areas of the upper cover plate to define the compensation cavities. The compensation cavities are communicated with the rear cavity. The compensation cavities increase an overall size of the rear cavity, improving low-frequency performance of the speaker unit, and thus improving sound production effect of the speaker unit.
In order to enable a person skilled in art to better understand technical solutions of embodiments of the present disclosure, the embodiments of the present disclosure are described in further details below in conjunction with accompanying drawings and specific embodiments.
As shown in
Specifically, in the embodiment, according to a shape of an electronic device including the speaker box 100, at least one of the side walls 112 of the upper cover plate 110 of the speaker box 100 is set to have a length thereof greater than a length of an orthographic projection thereof. That is, edge areas of the upper cover plate 110 are in irregular shapes. In this way, after the upper cover plate 110 and the lower cover plate 130 are assembled, an extra space other than the speaker unit 140 and the motor module 150 is inevitably present, that is, the edge areas of the upper cover plate 110 have extra spaces. According to shapes of the edge areas of the upper cover plate 110, the extra spaces of the edge areas of the upper cover plate 110 and edge areas of the lower cover plate 130 are assembled to define compensation cavities 160, and the compensation cavities 160 are communicated with the rear cavity 122. That is, the shape of the upper cover plate 110 is matched with a shape of the lower cover plate 130.
According to the speaker box disclosed by the present disclosure, the upper cover plate of the speaker box has an irregular shape and is suitable for speaker boxes with different shapes, thereby being suitable for various electronic devices and having strong adaptability and wide application. The edge areas of the lower cover plate are assembled with the edge areas of the upper cover plate to define the compensation cavities. The compensation cavities are communicated with the rear cavity. The compensation cavities increase an overall size of the rear cavity, improving low-frequency performance of the speaker unit, and thus improving sound production effect of the speaker unit.
In one optional embodiment, as shown in
Specifically, as shown in
It should be noted that in the present embodiment, specific shapes of the side walls 112 of the upper cover plate 110 are not specifically limited, which are selected according to specific shape of the electronic device (such as a mobile phone) configured to bear the speaker box 100. For example, a shape of the speaker box 100 is set according to a shape of a housing of the mobile phone, that is, the shapes of the side walls 112 of the upper cover plate 110 are set according to the shape of the housing of the mobile phone.
In one optional embodiment, as shown in
As shown in
In the above embodiment, the lower cover plate 130 are embedded in the supporting steps 113 disposed on the side walls 112 of the upper cover plate 110 through the bosses 133 on the side walls 132 of the lower cover plate 130. On one hand, dust and the like are prevented from falling into the compensation cavities 160, and on the other hand, spaces of the compensation cavities 160 are increased, thus increasing the overall space of the rear cavity 122, and further improving the low-frequency performance of the speaker unit.
In one optional embodiment, as shown in
In the above embodiment, on one hand, the lower cover plate 130 is connected with the upper cover plate 110 to define the accommodating cavity 120 for accommodating the speaker unit 140 and the motor module 150, and on the other hand, the lower cover plate 130 plays a role in supporting the motor module 150. In addition, the accommodating through groove 134 is defined in the central area of the lower cover plate 130, and an outer side of the motor module 150 is sleeved in the accommodating through groove 134, which reduces the height space occupied by the speaker box 100, and meets the requirements for miniaturization of the electronic device.
In one optional embodiment, as shown in
In the above embodiment, the compensation cavities 160 are communicated with each other, so that the overall space of the rear cavity 122 is further increased, thus further improving the low-frequency performance of the speaker unit. That is to say, the speaker box 100 in the embodiment of the present disclosure is a structure where a width of the speaker box is sufficient, and the compensation cavities 160 thereof are communicated with each other.
In one optional embodiment, the lower cover plate 130 is fixed to the upper cover plate 110 through ultrasonic welding.
In the above embodiment, the lower cover plate 130 is fixed to the upper cover plate 110 through ultrasonic welding, so that the lower cover plate 130 is more reliably fixed to the upper cover plate 110, thus further improving reliability of the speaker box 100, and making operation process simple.
In one optional embodiment, as shown in
That is to say, the mounting holes 114 are only defined on the edge areas of the upper cover plate 110, or the mounting holes 114 are only defined on the edge areas of the lower cover plate 130, or the mounting holes 114 are defined on the edge areas of the upper cover plate 110 and the edge areas of the lower cover plate 130 at the same time. The mounting holes 114 may be defined on the upper cover plate 110 or the lower cover plate 130 according to actual needs. In the embodiment, the mounting holes 114 are defined on the upper cover plate 110.
It should be noted that in the embodiment, the mounting holes 114 are screw holes or other types of mounting holes, which are not specifically limited thereto.
It should be noted that in the embodiment, the number, shapes, sizes, and other parameters of the mounting holes 114 are not specifically limited, and are determined according to the shapes, the sizes, and the like of the electronic device (such as the housing of the mobile phone).
In the above embodiment, the speaker box 100 includes the mounting holes 114 for fixing the speaker box 100 to the electronic device, such as the housing of the mobile phone and the like, which is suitable for electronic devices in various shapes, and improve adaptability of the speaker box 100.
In one optional embodiment, as shown in
As shown in
In the embodiment, the lower cover plate 130 is of an injection molding structure. Furthermore, in the embodiment, the lower cover plate 130 is of an injection-molded steel sheet.
In the above embodiment, the fixing plate 116, the mounting groove 115, and the upper cover plate 110 are of an injection molding integrated structure. The lower cover plate 130 is of an injection molding structure, the upper cover plate 110 and the lower cover plate 130 are respectively integrated into modules, which are simple in structure and convenient in installation.
In one optional embodiment, as shown in
In one optional embodiment, the lower cover plate 130, is sleeved on an outer side of the housing 151. At least one sealing strip is disposed at gaps between the lower cover plate 130 and the housing 151, where the at least one sealing strip is not shown in the figures.
In the embodiment, the at least one sealing strip is made from sealing glue, certainly, other materials are adopted for the at least one sealing strip which are not specifically limited.
In the above embodiment, the at least one sealing strip is disposed at the gaps between the lower cover plate 130 and the housing 151, thus improving sealing performance between the lower cover plate 130 and the housing 151, and then improving sealing performance of the speaker box 100.
In one optional embodiment, as shown in
In the above embodiment, the speaker unit 140 and the motor module 150 are electrically connected to the external circuit through the circuit board 170, so that sound generation of the speaker unit 140 and vibration of the motor module 150 are respectively realized.
A second aspect of the present disclosure provides the electronic device including the speaker box 100 as previously described. Specific structure of the speaker box 100 has been described in details and is not further elaborated herein. Specifically, the electronic device is a mobile phone, a tablet computer, a notebook computer, and the like.
The electronic device in this embodiment adopts the speaker box described earlier. According to the speaker box disclosed by the present disclosure, the length of the at least one of the side walls of the upper cover plate of the speaker box is greater than the length of the orthographic projection of the at least one of the side walls of the upper cover plate of the speaker box. That is, the upper cover plate has an irregular shape and is suitable for various electronic devices and having strong adaptability and wide application. The edge areas of the lower cover plate are assembled with the edge areas of the upper cover plate to define the compensation cavities. The compensation cavities are communicated with the rear cavity. The compensation cavities increase the overall size of the rear cavity, improving the low-frequency performance of the speaker unit, and thus improving the sound production effect of the speaker unit.
It is understood that the above embodiments are merely exemplary embodiments configured to illustrate principles of the embodiments of the present disclosure, but the embodiments of the present disclosure are not limited thereto. For the person of ordinary skill in the art, various modifications and improvements can be made without departing from spirit and essence of the embodiments of the present disclosure, and these variations and improvements are further considered to be within a protection scope of the embodiments of the present disclosure.
Number | Date | Country | |
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Parent | PCT/CN2023/086954 | Apr 2023 | WO |
Child | 18393692 | US |