Electronic device
By electrically connecting the light emitting unit and the fan unit of the fan module to different circuit boards in electronic devices, the problem of poor luminous effect of the light emitting component is solved, and better light effects and more flexible setting methods are achieved.
Patent Information
- Application Number
- CN202510391588.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-05-30
AI Technical Summary
The light emitting effect of the light emitting components in existing electronic devices is not good, mainly because the fan unit of the fan module is electrically connected to the same circuit board, which makes the light ray of the light emitting unit easily blocked, affecting the light effect.
By electrically connecting the light emitting unit and the fan unit of the fan module to different circuit boards, the decoupling of the light emitting unit and the fan module can be achieved, so that the light emitting unit can be independently arranged outside the fan module to avoid light being blocked.
A better light effect is achieved, so that the light effect presented when observing the light emitted by the light emitting unit from the outside is better, and the setting flexibility of the light emitting unit is also improved.
Smart Images

Figure CN120062129A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of electronic technologies, and in particular, to an electronic device. Background Art
[0002] With the development of technologies, the popularity of electronic devices such as mobile phones is getting higher and higher, and their functions are becoming more and more powerful. In some electronic devices, a fan module and a lighting component are usually included. The fan module can be used to dissipate heat from the heat-generating components in the electronic device. The lighting component is used to decorate the fan module. However, the lighting effect presented by the lighting component in the related art is not good. Summary of the Invention
[0003] In a first aspect, an embodiment of this application provides an electronic device, which includes:
[0004] A fan module, the fan module includes a first circuit board and a fan unit, and the fan unit is electrically connected to the first circuit board;
[0005] A decoration component, the decoration component is located outside the fan module and is used to decorate the fan module; and
[0006] A lighting component, at least part of the lighting component is arranged corresponding to the decoration component, the lighting component includes a second circuit board and a lighting unit, the lighting unit is electrically connected to the second circuit board, and the lighting unit is located outside the fan module.
[0007] In summary, for the electronic device provided by the embodiment of this application, the fan unit is electrically connected to the first circuit board, and the lighting unit is electrically connected to the second circuit board. Therefore, it can be seen that the lighting unit and the fan unit of the fan module are electrically connected to different circuit boards. The lighting unit and the fan unit of the fan module being electrically connected to different circuit boards is also referred to as decoupling of the lighting unit and the fan unit of the fan module. For the electronic device provided by the embodiment of this application, decoupling of the lighting unit and the fan unit of the fan module can make the setting of the lighting unit more flexible. The lighting unit can be located outside the fan module, and the fan unit of the fan module will not block the light emitted by the lighting unit. Furthermore, when observing the light emitted by the lighting unit from the outside, the presented light effect is better. Description of the Drawings
[0008] In order to more clearly illustrate the technical solutions of the embodiments of this application, the drawings required to be used in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of this application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0009] Figure 1 A perspective three-dimensional schematic diagram of an electronic device provided by an embodiment of the present application;
[0010] Figure 2 For an embodiment of Figure 1 The rear view of the electronic device shown in
[0011] Figure 3 For Figure 2 A partial structural schematic diagram of the electronic device shown in
[0012] Figure 4 For Figure 3 A perspective exploded schematic diagram of a partial structure of the electronic device shown in
[0013] Figure 5 For Figure 3 The top view of a partial structure of the electronic device shown in
[0014] Figure 6 For Figure 5 A cross-sectional schematic diagram of a partial structure of the electronic device shown in along line A-A;
[0015] Figure 7 For Figure 6 A detailed identification schematic diagram of the cross-sectional structure diagram in
[0016] Figure 8 For Figure 7 An enlarged schematic diagram at I in
[0017] Figure 9 For another embodiment of Figure 1 The rear view of the electronic device shown in
[0018] Figure 10 A comparison diagram of the light effect schematic diagram of the fan module of the electronic device in the related art and the light effect schematic diagram of the fan module of the electronic device of the present application;
[0019] Figure 11 For yet another embodiment of Figure 1 The rear view of the electronic device shown in
[0020] Figure 12 For Figure 2 A partial structural schematic diagram of the electronic device shown in
[0021] Figure 13 For Figure 12 A perspective exploded schematic diagram of a partial structure of the electronic device shown in
[0022] Figure 14 For Figure 12Top view of a partial structure of the electronic device shown in
[0023] Figure 15 is Figure 14 Schematic cross-sectional view of a partial structure of the electronic device shown in along line B-B;
[0024] Figure 16 is Figure 15 Enlarged view of part II in ;
[0025] Figure 17 is Figure 13 Assembly schematic diagram of some components of a partial structure of the electronic device shown in ;
[0026] Figure 18 is Figure 17 Exploded view of the components shown in ;
[0027] Figure 19 is another Figure 1 Rear view of the electronic device shown in ;
[0028] Figure 20 Circuit block diagram of the electronic device provided by an embodiment of the present application. Specific embodiments
[0029] Next, the technical solutions of the present application will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the embodiments described in the present application are only a part of the embodiments, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments provided in the present application without creative efforts belong to the protection scope of the present application.
[0030] Referring to "embodiments" in the present application means that the specific features, structures or characteristics described in conjunction with the embodiments may be included in at least one embodiment of the present application. The phrase appears in various positions in the specification does not necessarily refer to the same embodiment, nor is it an exclusive, independent or alternative embodiment to other embodiments. Those skilled in the art can explicitly and implicitly understand that the embodiments described in the present application can be combined with other embodiments.
[0031] The terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example: a component or device including one or more components is not limited to the one or more components listed, but optionally further includes one or more components not listed but inherent in the product shown, or one or more components that should be had based on the described function.
[0032] Embodiments of the present application also provide an electronic device 1, which may be, but is not limited to, devices such as mobile phones, watches, tablet computers, laptop computers, or computer cases. In the embodiments of the present application, the electronic device 1 is taken as an example of a mobile phone for illustration and description. It can be understood that it should not be construed as a limitation to the embodiments of the present application. Next, the electronic device provided by the embodiments of the present application will be introduced in detail.
[0033] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , Figure 1 is a three-dimensional schematic diagram of an electronic device from a perspective provided by an embodiment of the present application; Figure 2 is a rear view of the electronic device shown in Figure 1 in an embodiment; Figure 3 is Figure 2 a partial structural schematic diagram of the electronic device shown in Figure 4 is Figure 3 a three-dimensional exploded schematic diagram of a partial structure of the electronic device shown in Figure 3 and Figure 4 ). In this embodiment, the electronic device 1 includes a fan module 110 (please refer to Figure 3 and Figure 4 ), a decoration component 120, and a light-emitting component 130. When the fan module 110 operates, it generates wind to cool the heat-generating functional devices in the electronic device 1. The decoration component 120 is used to decorate the fan module 110. The light-emitting component 130 is used to generate light, and the light-emitting component 130 is arranged corresponding to the fan module 110 to indicate and decorate the position where the fan module 110 is provided in the electronic device 1.
[0034] Please refer to Figures 1 to 4 and further refer to Figure 5 and Figure 6 , Figure 5 is Figure 3 a top view of a partial structure of the electronic device shown in Figure 6 is Figure 5 a cross-sectional schematic diagram of a partial structure of the electronic device shown in Figure 6 along the line A-A. The fan module 110 includes a first circuit board 111 and a fan unit 112, and the fan unit 112 is electrically connected to the first circuit board 111. The decoration component 120 is located outside the fan module 110 and is used to decorate the fan module 110. The light-emitting component 130 is at least partially arranged corresponding to the decoration component 120. The light-emitting component 130 includes a second circuit board 131 and a light-emitting unit 132. The light-emitting unit 132 is electrically connected to the second circuit board 131, and the light-emitting unit 132 is located outside the fan module 110.
[0035] The first circuit board 111 may be, but is not limited to, a printed circuit board or a flexible circuit board. The fan unit 112 is electrically connected to the first circuit board 111. In one embodiment, the fan unit 112 can receive a first control signal transmitted by the first circuit board 111 and operate or stop operating under the control of the first control signal. Generally speaking, the fan unit 112 includes one or more fan blades. When the first control signal controls the fan unit 112 to operate, the first control signal can control the operating speed of the fan blades of the fan unit 112.
[0036] The decoration component 120 is used to decorate the fan module 110. The structure of the decoration component 120 will be described in detail later.
[0037] The light-emitting component 130 is at least partially disposed corresponding to the decoration component 120, and the light-emitting component 130 also plays a role in decorating the fan module 110 to a certain extent.
[0038] The second circuit board 131 of the light-emitting component 130 may be, but is not limited to, a printed circuit board or a flexible circuit board. The type of the second circuit board 131 may be the same as or different from the type of the first circuit board 111, and is not limited herein.
[0039] The light-emitting unit 132 may be, but is not limited to, a light-emitting diode, an organic light-emitting diode, etc. The number of the light-emitting units 132 may be one or more. The color of the light emitted by the light-emitting unit 132 may be, but is not limited to, white, red, green, or blue. When the number of the light-emitting units 132 is multiple, it is also said that the light-emitting component 130 includes multiple light-emitting units 132. When the light-emitting component 130 includes multiple light-emitting units 132, the light emitted by the light-emitting units 132 among the multiple light-emitting units 132 may be the same or different.
[0040] The light-emitting unit 132 is electrically connected to the second circuit board 131. The light-emitting unit 132 can receive a second control signal transmitted by the second circuit board 131 and operate or stop operating under the control of the second control signal. When the second control signal controls the fan unit 112 to operate, the second control signal can control the brightness, color temperature, light-emitting pattern, etc. of the light emitted by the light-emitting unit 132.
[0041] The light-emitting unit 132 is located outside the fan module 110. Therefore, when the fan module 110 operates, the blades of the fan unit 112 will not block the light emitted by the light-emitting unit 132. As a result, when observing the light emitted by the light-emitting unit 132 from the outside, the light effect presented is better. Further, in the electronic device 1 provided by the embodiment of the present application, when the fan unit 112 in the fan module 110 does not operate and the light-emitting unit 132 operates, the fan unit 112 will not block the light emitted by the light-emitting unit 132 either. As a result, when observing the light emitted by the light-emitting unit 132 from the outside, the light effect presented is better.
[0042] In summary, in the electronic device 1 provided by the embodiment of the present application, the fan unit 112 is electrically connected to the first circuit board 111, and the light-emitting unit 132 is electrically connected to the second circuit board 131. Therefore, it can be seen that the light-emitting unit 132 and the fan unit 112 of the fan module 110 are electrically connected to different circuit boards. The light-emitting unit 132 and the fan unit 112 of the fan module 110 being electrically connected to different circuit boards is also referred to as decoupling the light-emitting unit 132 from the fan unit 112 of the fan module 110. In the electronic device 1 provided by the embodiment of the present application, decoupling the light-emitting unit 132 from the fan unit 112 of the fan module 110 can make the setting of the light-emitting unit 132 more flexible. The light-emitting unit 132 can be located outside the fan module 110, and the fan unit 112 of the fan module 110 will not block the light emitted by the light-emitting unit 132. As a result, when observing the light emitted by the light-emitting unit 132 from the outside, the light effect presented is better.
[0043] Further, in one embodiment, the fan unit 112 and the first circuit board 111 are stacked. The light-emitting assembly 130 is disposed on a side of the fan unit 112 facing away from the first circuit board 111. In this embodiment, since the light-emitting assembly 130 is disposed on a side of the fan unit 112 facing away from the first circuit board 111, the fan unit 112 cannot block the light-emitting assembly 130. The fan unit 112 will not block the light emitted by the light-emitting unit 132. As a result, when observing the light emitted by the light-emitting unit 132 from the outside, the light effect presented is better.
[0044] Further, please refer to Figure 7 and Figure 8 , Figure 7 for Figure 6 the schematic diagram of the detail identification of the cross-sectional structure diagram in Figure 8 and Figure 7An enlarged schematic view at I. The fan module 110 further includes a first housing 113 and a second housing 114. The second housing 114 cooperates with the first housing 113 to form a receiving space 113a for receiving the first circuit board 111 and the fan unit 112. The second housing 114 has an air inlet 114a, and the light-emitting component 130 is disposed outside the second housing 114.
[0045] The second housing 114 cooperates with the first housing 113 to form a receiving space 113a for receiving the first circuit board 111 and the fan unit 112. Therefore, the first housing 113 and the second housing 114 are also referred to as the packaging housings of the fan unit 112 and the first circuit board 111. The second housing 114 has an air inlet 114a, and external air flow can enter the receiving space 113a through the air inlet 114a.
[0046] The light-emitting component 130 is disposed outside the second housing 114. Therefore, when the fan unit 112 disposed inside the first housing 113 and the second housing 114 operates, the fan blades of the fan unit 112 will not block the light-emitting component 130, and thus when observing the light emitted by the light-emitting component 130 from the outside, the light effect presented is better.
[0047] Further, please refer to Figure 4 、 Figure 7 and other attached drawings. In this embodiment, the second circuit board 131 is disposed on a side of the second housing 114 away from the first housing 113. The second circuit board 131 surrounds the periphery of the air inlet 114a. The light-emitting component 130 includes a plurality of light-emitting units 132, and the plurality of light-emitting units 132 are spaced apart and disposed on the second circuit board 131 and surround the air inlet 114a.
[0048] The color of the light emitted by the light-emitting unit 132 can be, but is not limited to, white, or red, or green, or blue. The light emitted by the light-emitting units 132 among the plurality of light-emitting units 132 can be the same or different. In one embodiment, the plurality of light-emitting units 132 may include light-emitting units 132 that emit red (R) light, light-emitting units 132 that emit green (G) light, and light-emitting units 132 that emit blue (B) light arranged according to a preset rule. It can be understood that the number of light-emitting units 132 shown in the schematic diagram of the embodiment of the present application should not be construed as a limitation on the light-emitting component 130 of the embodiment of the present application.
[0049] The second circuit board 131 surrounds the periphery of the air inlet 114a, facilitating the layout of the light-emitting units 132. In the present embodiment, the plurality of light-emitting units 132 are spaced apart and disposed on the side of the second circuit board 131 facing away from the fan unit 112, and the plurality of light-emitting units 132 surround the air inlet 114a. Therefore, the plurality of light-emitting units 132 can better decorate the position of the air inlet 114a. Specifically, in one embodiment, the plurality of light-emitting units 132 can present rich light effects under the control of the second circuit board 131, such as one or more of light color, light pattern, pattern combination, etc. For example, the plurality of light-emitting units 132 present the effect of a running light under the control of the second circuit board 131. It can be seen that the light-emitting assembly 130 includes a plurality of light-emitting units 132, and the plurality of light-emitting units 132 surround the air inlet 114a, which can make the plurality of light-emitting units 132 present a relatively rich decorative effect. Further, the plurality of light-emitting units 132 are spaced apart and disposed on the side of the second housing 114 facing away from the first housing 113. Therefore, the light-emitting units 132 are decoupled from the fan unit 112 of the fan module 110, and the fan unit 112 will not block the light emitted by the light-emitting units 132, and further, when observing the light emitted by the light-emitting units 132 from the outside, the light effect presented is better.
[0050] The light-emitting assembly 130 is disposed outside the second housing 114. Specifically, the second circuit board 131 of the light-emitting assembly 130 is disposed outside the second housing 114, and the light-emitting units 132 of the light-emitting assembly 130 are disposed outside the second housing 114.
[0051] The second circuit board 131 of the light-emitting assembly 130 is disposed on the side of the second housing 114 facing away from the first housing 113. When liquid enters the receiving space 113a from the air inlet 114a of the second housing 114 of the fan module 110, it can reduce or even prevent the failure problem of the second circuit board 131 caused by liquid entering the receiving space 113a.
[0052] The light-emitting units 132 of the light-emitting assembly 130 are disposed on the side of the second housing 114 facing away from the first housing 113. When liquid enters the receiving space 113a from the air inlet 114a of the second housing 114 of the fan module 110, it can reduce or even prevent the failure problem of the light-emitting units 132 caused by liquid entering the receiving space 113a.
[0053] Further, the plurality of light-emitting units 132 surround the air inlet 114a. Therefore, the light-emitting units 132 do not block the air inlet 114a, which can provide the air inlet 114a with a relatively large air inlet area and a good air inlet effect. The electronic device 1 provided by the embodiment of the present application can take into account both a good light effect presented when observing the light emitted by the light-emitting units 132 from the outside and a good air inlet effect.
[0054] Please further refer to Figure 7 and Figure 8 The light-emitting assembly 130 further includes a light guide member 133 and a cover 134. The light guide member 133 has a first light incident surface 133a and a first light exit surface 133b. The first light incident surface 133a is disposed corresponding to the plurality of light-emitting units 132 and is configured to receive the light emitted by the light-emitting units 132. The light guide member 133 is configured to diffuse the light incident from the first light incident surface 133a uniformly and exit through the first light exit surface 133b. The cover 134 has a second light incident surface 134a and a second light exit surface 134b. The second light incident surface 134a is disposed corresponding to the first light exit surface 133b and is configured to receive the light exiting from the first light exit surface 133b. The second light exit surface 134b is configured to exit the light entering the cover 134.
[0055] In an embodiment, the light guide member 133 may be, but is not limited to, at least one of a light guide plate and a light guide film. The present application does not limit the type of the light guide plate, as long as it can satisfy the uniform diffusion of the light.
[0056] In the present embodiment, there is a gap between the first light incident surface 133a of the light guide member 133 and the light-emitting units 132. The light emitted by the light-emitting units 132 diffuses outward. Having a gap between the first light incident surface 133a of the light guide member 133 and the light-emitting units 132 can enable the light emitted by the light-emitting units 132 to enter the first light incident surface 133a of the light guide member 133 after diffusion, thereby improving the uniformity of the light incident on the first light incident surface 133a of the light guide member 133. In this way, the light exiting through the first light exit surface 133b of the light guide member 133 can be more uniform when the light enters the light guide member 133 through the first light incident surface 133a.
[0057] In one embodiment, the orthographic projection of the first light incident surface 133a of the light guide member 133 on the second circuit board 131 covers the area of the light emitting unit 132 on the second circuit board 131, and the boundary of the orthographic projection of the first light incident surface 133a on the second circuit board 131 extends beyond the boundary of the area of the light emitting unit 132. In this way, more light emitted by the light emitting unit 132 can enter the light guide member 133 through the first light incident surface 133a, thereby enhancing the brightness of the light emitted from the first light exit surface 133b of the light guide member 133.
[0058] In one embodiment, the cover 134 can be, but is not limited to, a two-color injection molded light guide cover. The second light incident surface 134a of the cover 134 corresponds to the first light exit surface 133b of the light guide member 133. The light emitted from the first light exit surface 133b enters the cover 134 through the second light incident surface 134a and then is emitted from the second light exit surface 134b of the cover 134. In one embodiment, the second light incident surface 134a of the cover 134 is directly opposite to the first light exit surface 133b of the light guide member 133. Therefore, more light emitted from the first light exit surface 133b of the light guide member 133 can enter the cover 134 through the second light incident surface 134a, thereby enhancing the brightness of the light emitted from the second light exit surface 134b.
[0059] In the present embodiment, the second light exit surface 134b of the cover 134 forms at least a part of the appearance surface of the electronic device 1. Therefore, the light emitted from the second light exit surface 134b can be observed, so that the electronic device 1 has a better light effect.
[0060] Next, the structure of the decorative component 120 will be introduced in detail. Please further refer to Figure 4 and Figure 7 , the electronic device 1 further includes a middle frame 210 and a rear cover 220. The rear cover 220 and the middle frame 210 cooperate to accommodate the fan module 110. Correspondingly, the decorative component 120 includes a decorative base 121. The decorative base 121 is disposed on one side of the rear cover 220. The cover 134 is fixed to the decorative base 121. The cover 134 has a first opening 134c, and the first opening 134c communicates with the air inlet 114a.
[0061] The decorative base 121 can be, but is not limited to, aluminum alloy. The decorative base 121 constitutes a part of the appearance surface of the electronic device 1. The decorative base 121 can decorate the position of the electronic device 1 corresponding to the fan module 110, so that the position of the electronic device 1 corresponding to the fan module 110 has a better appearance effect.
[0062] The cover body 134 is fixed to the decorative base 121. Therefore, the cover body 134 is not easily scattered, and the structural integrity is good.
[0063] The first opening 134c of the cover body 134 communicates with the air inlet 114a. Therefore, when the fan module 110 operates, the outside air flow can enter the inside of the fan module 110 through the first opening 134c and the air inlet 114a.
[0064] Please further refer to Figure 4 and Figure 7 , the decorative base 121 has a second opening 121a. The cover body 134 is disposed in the second opening 121a. The decorative component 120 further includes a first decorative member 122 and a second decorative member 123. The first decorative member 122 is disposed in the second opening 121a. The first decorative member 122 has a third opening 122a, and the third opening 122a communicates with the air inlet 114a. The second decorative member 123 is disposed outside the second opening 121a and is fixed to the decorative base 121.
[0065] In this embodiment, the decorative base 121 has a second opening 121a, and the second opening 121a communicates with the air inlet 114a. When the fan module 110 operates, the outside air flow can enter the fan module 110 through the second opening 121a and the air inlet 114a.
[0066] It can be understood that in another embodiment, the decorative base 121 does not have the second opening 121a, as long as it satisfies that the decorative base 121 can fix the cover body 134 to the fan module 110.
[0067] The first decorative member 122 is also called an air inlet appearance decorative member (deceo). The first decorative member 122 has a third opening 122a, and the number of the third openings 122a can be one or more. In this embodiment, an example is given in which the first decorative member 122 has a plurality of third openings 122a. It can be understood that it should not be construed as a limitation on the number of the third openings 122a provided in the embodiments of the present application, as long as it satisfies that the third opening 122a communicates with the air inlet 114a.
[0068] The second decorative member 123 is fixed to the decorative base 121. The second decorative member 123 can be fixed to the decorative base 121 by, but not limited to, adhesive, or the second decorative member 123 and the decorative base 121 are fixed together through their respective mating portions.
[0069] In this embodiment, the first decorative member 122 is disposed within the first opening 134c of the housing 134, and the second decorative member 123 surrounds the outside of the housing 134. The material of the second decorative member 123 can be, but not limited to, metal, such as steel, copper, or aluminum, etc. In one embodiment, when the material of the second decorative member 123 is steel, the second decorative member 123 can also be referred to as an appearance barrel steel ring.
[0070] For the electronic device 1 provided by the embodiment of the present application, the decorative assembly 120 further includes a first decorative member 122 and a second decorative member 123. Therefore, the decorative effect of the fan module 110 can be further enhanced.
[0071] Please further refer to Figure 4 、 Figure 7 and Figure 8 , the housing 134 includes a first part 1341 and a second part 1342. The first part 1341 has the second light incident surface 134a. The second part 1342 protrudes from the surface of the first part 1341, and the second part 1342 faces away from the fan unit 112 compared with the first part 1341. The first opening 134c penetrates through the first part 1341 and the second part 1342. The second decorative member 123 is disposed on the periphery of the second part 1342 and is located on the side of the first part 1341 facing away from the fan unit 112.
[0072] In this embodiment, the fan unit 112 and the light guide member 133 are disposed on the same side of the first part 1341. Therefore, in this embodiment, the second part 1342 faces away from the fan unit 112 compared with the first part 1341, and the second part 1342 also faces away from the light guide member 133 compared with the first part 1341. In other words, the first part 1341 is closer to the light guide member 133 compared with the second part 1342. The first part 1341 has the second light incident surface 134a, and the second light incident surface 134a is used to receive the light emitted from the first light exit surface 133b.
[0073] Further, in this embodiment, the decorative base 121 is disposed on the side of the first part 1341 facing away from the fan module 110, and the decorative base 121 is used to fix the first part 1341 to the fan module 110.
[0074] The second part 1342 has the second light-emitting surface 134b, and the light entering the cover 134 from the second light-incident surface 134a is emitted through the second light-emitting surface 134b. Thus, the appearance decoration effect of the electronic device 1 corresponding to the fan module 110 can be improved.
[0075] Further, please refer to Figure 7 and Figure 8 , the fan module 110 further includes a first housing 113, a second housing 114, and a heat dissipation member 117. The electronic device 1 further includes a first seal 181. The first housing 113 and the second housing 114 cooperate with each other to form a receiving space 113a for receiving the first circuit board 111 and the fan unit 112. The second housing 114 has an air inlet 114a. The heat dissipation member 117 is received in the receiving space 113a and is disposed adjacent to the fan unit 112. The first seal 181 is disposed in the gap between the second housing 114 and the rear cover 220.
[0076] In this embodiment, the first housing 113 and the second housing 114 cooperate with each other to form a receiving space 113a. The first circuit board 111 and the fan unit 112 are disposed in the receiving space 113a. Thus, the integrity of the fan module 110 is relatively good, and when the fan module 110 is applied to the electronic device 1, it is convenient to assemble with other components of the electronic device 1. In this embodiment, the first circuit board 111 faces away from the second housing 114 compared to the fan unit 112.
[0077] The heat dissipation member 117 can be, but is not limited to, heat dissipation fins, or heat dissipation fins, or a heat dissipation channel with a condensation medium, etc., and the present application does not make a limitation thereto. The heat dissipation member 117 is received in the receiving space 113a and is disposed adjacent to the fan unit 112. The heat dissipation member 117 is used to dissipate the heat generated when the fan unit 112 operates to prevent the temperature of the fan unit 112 from being too high.
[0078] In one embodiment, the heat dissipation member 117 satisfies at least one of the following conditions: the heat dissipation member 117 is thermally connected to the fan unit 112 and the second housing 114; the heat dissipation member 117 is thermally connected to the fan unit 112 and the first housing 113.
[0079] In one embodiment, the electronic device 1 includes a middle frame 210, a rear cover 220, and a display screen 230. The middle frame 210 cooperates with the rear cover 220 to accommodate the fan module 110. In one embodiment, the rear cover 220 and the display screen 230 are respectively disposed on two opposite sides of the middle frame 210. The second housing 114 of the fan module 110 faces away from the rear cover 220 compared to the first housing 113.
[0080] When the heat dissipation member 117 is thermally connected to the fan unit 112 and the second housing 114, the heat generated when the fan unit 112 operates can be dissipated through the heat dissipation member 117 and the second housing 114. Specifically, the heat generated when the fan unit 112 operates can be conducted to the middle frame 210 and the rear cover 220 through the heat dissipation member 117 and the second housing 114, and dissipated through the middle frame 210 and the rear cover 220.
[0081] When the heat dissipation member 117 is thermally connected to the fan unit 112 and the first housing 113, the heat generated when the fan unit 112 operates can be dissipated through the heat dissipation member 117 and the first housing 113. Specifically, the heat generated when the fan unit 112 operates can be conducted to the middle frame 210 and the display screen 230 through the heat dissipation member 117 and the first housing 113, and dissipated through the middle frame 210 and the display screen 230.
[0082] In this way, the heat generated when the fan unit 112 operates can be quickly dissipated, so that the temperature of the fan module 110 is relatively low, and the fan unit 112 can operate with better performance.
[0083] In one embodiment, the heat dissipation member 117 is at least partially disposed corresponding to the second housing 114, and the heat generated by the fan unit 112 can be quickly dissipated through the second housing 114, and the fan unit 112 can operate with better performance.
[0084] The first sealing member 181 can be, but is not limited to, a sealing bracket with a silicone ring, or glue, or foam, etc. In this embodiment, the first sealing member 181 is a sealing bracket with a silicone ring. The first sealing member 181 is disposed in the gap between the second housing 114 and the rear cover 220. In this way, the adverse effects caused by external water vapor and dust entering the accommodation space 113a through the gap between the second housing 114 and the rear cover 220 on the fan module 110 can be reduced or even prevented.
[0085] Further, please refer to Figures 3 to 8, the decorative base 121 is carried on the rear cover 220. The electronic device 1 further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. The second seal 182 is disposed between the rear cover 220 and the decorative base 121. The third seal 183 is disposed between the cover body 134 and the decorative base 121. The fourth seal 184 is disposed in the gap between the cover body 134 and the fan module 110.
[0086] The electronic device 1 further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. Specifically, in one embodiment, the electronic device 1 may further include the second seal 182; or the third seal 183; or the fourth seal 184; or the second seal 182 and the third seal 183; or the second seal 182 and the fourth seal 184; or the third seal 183 and the fourth seal 184; or the second seal 182, the third seal 183, and the fourth seal 184. In the schematic diagram of this embodiment, an example is given where the fan module 110 includes the second seal 182, the third seal 183, and the fourth seal 184. It can be understood that this should not be construed as a limitation on the embodiments of the present application.
[0087] The second seal 182 may be, but is not limited to, glue, foam, silicone, etc. The third seal 183 may be, but is not limited to, glue, foam, silicone, etc. The fourth seal 184 may be, but is not limited to, glue, foam, silicone, etc. The material of the third seal 183 may be the same as or different from the material of the second seal 182, and no limitation is made thereto. The material of the fourth seal 184 may be the same as or different from the material of the second seal 182, and no limitation is made thereto.
[0088] In one embodiment, the second seal 182 is glue. Thus, the second seal 182 can not only seal the gap between the rear cover 220 and the decorative base 121, but also fix the rear cover 220 and the decorative base 121. In one embodiment, the third seal 183 is glue. Thus, the third seal 183 can not only seal the gap between the cover body 134 and the base, but also fix the cover body 134 and the decorative base 121. In one embodiment, the fourth seal 184 is glue. Thus, the fourth seal 184 can not only seal the gap between the cover body 134 and the fan module 110, but also fix the cover body 134 and the fan module 110.
[0089] The electronic device 1 provided by the embodiment of the present application further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. In this way, the waterproof performance between the fan module 110 and the rear cover 220, the decorative component 120, and the light-emitting component 130 in the electronic device 1 can be further improved. It can further reduce or even prevent the adverse effects caused by external water vapor and dust entering the fan module 110 and affecting the fan module 110.
[0090] In one embodiment, the waterproof and dustproof level of the electronic device 1 can meet the requirements of IP68. In "IP68", "IP" is the abbreviation of Ingress Protection, which means "protection level" and consists of two digits. The first digit "6" represents the dustproof level, indicating that the electronic device 1 can completely prevent dust from entering; the second digit "8" represents the waterproof level. It can be understood that the waterproof and dustproof level of the electronic device 1 provided by the embodiment of the present application is only an example. In other embodiments, it can also be other levels, and the present application does not limit this.
[0091] Please refer to Figure 9 , Figure 9 is the rear view of the electronic device in another embodiment. Figure 1 In this embodiment, the electronic device 1 further includes a rear camera 60. The rear camera 60 shares the same decorative base 121 with the fan module 110.
[0092] The fact that the rear camera 60 of the electronic device 1 provided by the embodiment of the present application shares the same decorative base 121 with the fan module 110 can improve the decorative effect of the rear camera 60 and the overall aesthetic appearance of the electronic device 1. Further, compared with the rear camera 60 and the fan module 110 using separate decorative bases respectively, the fact that the rear camera 60 of the electronic device 1 provided by the embodiment of the present application shares the same decorative base 121 with the fan module 110 can make the electronic device 1 have fewer parts and be convenient for assembly.
[0093] Please refer to Figure 10 , Figure 10 is a comparison diagram of the light effect schematic diagram of the fan module of the electronic device in the related art and the light effect schematic diagram of the fan module of the electronic device of the present application. Among them, Figure 10 (a) in is the light effect schematic diagram of the fan module of the electronic device in the related art; Figure 10 (b) in is the light effect schematic diagram of the fan module of the electronic device of the present application. It can be seen from these two light effect diagrams that the light at the fan module 110 of the electronic device 1 provided by the embodiment of the present application is more uniform and the light effect is better.
[0094] Please further refer to Figure 1 、 Figure 11 、 Figure 12 、 Figure 13 、 Figure 14 、 Figure 15 and Figure 16 , Figure 11 is a rear view of the electronic device shown in Figure 1 ; Figure 12 is Figure 2 a schematic diagram of a partial structure in the electronic device shown in Figure 13 is Figure 12 a three-dimensional exploded view of a partial structure in the electronic device shown in Figure 14 is Figure 12 a top view of a partial structure of the electronic device shown in Figure 15 is Figure 14 a schematic cross-sectional view of a partial structure of the electronic device shown in along line B-B; Figure 16 is Figure 15 an enlarged view of part II in . The electronic device 1 includes a fan module 110, a decoration component 120 and a light-emitting component 130. The fan module 110 includes a first circuit board 111 and a fan unit 112, and the fan unit 112 is electrically connected to the first circuit board 111. The decoration component 120 is located outside the fan module 110 and is used to decorate the fan module 110. The light-emitting component 130 is at least partially disposed corresponding to the decoration component 120. The light-emitting component 130 includes a second circuit board 131 and a light-emitting unit 132. The light-emitting unit 132 is electrically connected to the second circuit board 131, and the light-emitting unit 132 is located outside the fan unit 112.
[0095] In this embodiment, the fan module 110 further includes a first housing 113 and a second housing 114. The second housing 114 cooperates with the first housing 113 to form a receiving space 113a for receiving the first circuit board 111 and the fan unit 112. The second housing 114 has an air inlet 114a, and the light-emitting component 130 is disposed outside the second housing 114. The second circuit board 131 is disposed on one side of the air inlet 114a.
[0096] Please further refer to Figure 17 and Figure 18 , Figure 17 is Figure 13 a schematic assembly diagram of some components of a partial structure of the electronic device shown in Figure 18 is Figure 17Exploded schematic view of the components shown in the figure. The light-emitting unit 132 includes a first light-emitting unit 1321 and a second light-emitting unit 1322. The light-emitting assembly 130 includes an optical fiber 135 and a cover 134. The optical fiber 135 surrounds the air inlet 114a. The optical fiber 135 includes a first end 1351 and a second end 1352. The first end 1351 is disposed corresponding to the first light-emitting unit 1321 for receiving the light of the first light-emitting unit 1321, and the second end 1352 is disposed corresponding to the second light-emitting unit 1322 for receiving the light of the second light-emitting unit 1322. Please refer to Figure 16 As shown in Figure 16 , the cover 134 has a second light-incident surface 134a and a second light-emitting surface 134b. The second light-incident surface 134a is disposed corresponding to the optical fiber 135 for receiving the light emitted from the optical fiber 135, and the second light-emitting surface 134b is used for emitting the light incident on the cover 134.
[0097] The first light-emitting unit 1321 may be, but is not limited to, a light-emitting diode, an organic light-emitting diode, etc. The second light-emitting unit 1322 may be, but is not limited to, a light-emitting diode, an organic light-emitting diode. The type of the second light-emitting unit 1322 may be the same as or different from the type of the first light-emitting unit 1321, and is not limited herein.
[0098] The color of the light emitted by the first light-emitting unit 1321 may be, but is not limited to, white, red, green, or blue. The color of the light emitted by the second light-emitting unit 1322 may be, but is not limited to, white, red, green, or blue. The light emitted by the second light-emitting unit 1322 may be the same as or different from the color of the light emitted by the first light-emitting unit 1321, and is not limited herein.
[0099] The first end 1351 has a light-incident surface. The first end 1351 is disposed corresponding to the first light-emitting unit 1321, and the light emitted by the first light-emitting unit 1321 can enter the optical fiber 135 through the light-incident end surface of the first end 1351. Correspondingly, the second end 1352 has a light-incident end surface. The second end 1352 is disposed corresponding to the second light-emitting unit 1322, and the light emitted by the second light-emitting unit 1322 can enter the optical fiber 135 through the light-incident end surface of the second end 1352.
[0100] The optical fiber 135 can be formed by, but not limited to, hot bending or injection molding. The first end 1351 and the second end 1352 of the optical fiber 135 can be fixed by a fixing head. Since the optical fiber 135 surrounds the air inlet 114a, the light emitted from the optical fiber 135 surrounds the air inlet 114a. The light emitted from the optical fiber 135 enters the cover 134 from the second light incident surface 134a of the cover 134; the light entering the cover 134 is emitted from the second light exit surface 134b.
[0101] In this embodiment, the first light emitting unit 1321 and the second light emitting unit 1322 are disposed on the second circuit board 131. In addition, the light emitting assembly 130 further includes an optical fiber head 136. The optical fiber head 136 has a first hole 1361 and a second hole 1362. The first hole 1361 is disposed corresponding to the first end 1351 and the first light emitting unit 1321, and the light emitted by the first light emitting unit 1321 enters the first end 1351. Specifically, the first hole 1361 is used to accommodate the first end 1351 and the first light emitting unit 1321. The second hole 1362 is disposed corresponding to the second end 1352 and the second light emitting unit 1322, and the light emitted by the second light emitting unit 1322 enters the second end 1352. Specifically, the second hole 1362 is used to accommodate the second end 1352 and the second light emitting unit 1322.
[0102] In this embodiment, the second light exit surface 134b of the cover 134 constitutes at least a part of the appearance surface of the electronic device 1. Therefore, the light emitted from the second light exit surface 134b can be observed, so that the electronic device 1 has a better light effect corresponding to the fan module 110.
[0103] Further, please refer to Figure 13 , the fan module 110 further includes a dust-proof net 119. The dust-proof net 119 is disposed corresponding to the air inlet 114a of the second housing 114. The dust-proof net 119 is used to reduce or even prevent external dust and water vapor from entering the fan module 110.
[0104] The material of the dust-proof net 119 can be, but not limited to, metal, waste metal, etc. The present application does not limit the material of the dust-proof net 119. In one embodiment, the material of the dust-proof net 119 is metal, so the dust-proof net 119 can also be called a metal dust-proof net 119.
[0105] Further, the dust filter net 119 is closer to the fan unit 112 than the first decorative member 122. In other words, the first decorative member 122 is disposed on a side of the dust filter net 119 away from the fan unit 112. Since the first decorative member 122 is disposed on the side of the dust filter net 119 away from the fan unit 112, the first decorative member 122 covers and decorates the dust filter net 119, so that the dust filter net 119 is not easily observable from the appearance of the fan module 110, and the appearance effect and the dust and water protection effects of the fan module 110 can be taken into account.
[0106] The fan module 110 of the electronic device 1 provided by the embodiment of the present application further includes a dust filter net 119, so as to improve the dust and water protection effects of the fan module 110, and further improve the service life of the fan module 110.
[0107] Next, the structure of the decoration assembly 120 will be introduced in detail. Please further refer to Figures 11 to 15 , the electronic device 1 further includes a middle frame 210 and a rear cover 220. The rear cover 220 and the middle frame 210 cooperate to accommodate the fan module 110. Correspondingly, the decoration assembly 120 includes a decoration base 121. The decoration base 121 is disposed on one side of the rear cover 220. The cover body 134 is fixed to the decoration base 121, and the cover body 134 has a first opening 134c, and the first opening 134c communicates with the air inlet 114a.
[0108] The decoration base 121 may be, but is not limited to, aluminum alloy. The decoration base 121 constitutes a part of the appearance surface of the electronic device 1. The decoration base 121 can decorate the position of the electronic device 1 corresponding to the fan module 110, so that the position of the electronic device 1 corresponding to the fan module 110 has a better appearance effect.
[0109] The cover body 134 is fixed to the decoration base 121. Therefore, the cover body 134 is not easily scattered, and the structural integrity is good.
[0110] The first opening 134c of the cover body 134 communicates with the air inlet 114a. Therefore, when the fan module 110 works, the external air flow can enter the interior of the fan module 110 through the first opening 134c and the air inlet 114a.
[0111] Please further refer to Figure 14, the decorative base 121 has a second opening 121a, and the cover body 134 is disposed within the second opening 121a. The decorative component 120 further includes a first decorative member 122 and a second decorative member 123. The first decorative member 122 is disposed within the second opening 121a. The first decorative member 122 has a third opening 122a that communicates with the air inlet 114a. The second decorative member 123 is disposed within the second opening 121a. There is a receiving gap between the second decorative member 123 and the decorative base 121 for receiving the cover body 134, and the second decorative member 123 is disposed around the first decorative member 122.
[0112] In this embodiment, the decorative base 121 has a second opening 121a that communicates with the air inlet 114a. When the fan module 110 operates, external air flow can enter the fan module 110 via the second opening 121a and the air inlet 114a.
[0113] It can be understood that, in another embodiment, the decorative base 121 does not have the second opening 121a, as long as it is satisfied that the decorative base 121 can fix the cover body 134 to the fan module 110.
[0114] The appearance surface of the first decorative member 122 may be provided with identifiers such as letters. For example, the appearance surface of the first decorative member 122 is provided with a K character identifier. When the appearance surface of the first decorative member 122 is provided with a K character identifier, the first decorative member 122 may also be referred to as a K character decorative member (deco).
[0115] The first decorative member 122 has a third opening 122a that communicates with the air inlet 114a. Therefore, the wind generated when the fan module 110 operates can be blown out via the air inlet 114a and the third opening 122a.
[0116] The second decorative member 123 is disposed within the second opening 121a. In this embodiment, the second decorative member 123 is disposed around the periphery of the first decorative member 122.
[0117] There is a receiving gap between the second decorative member 123 and the decorative base 121 for receiving the cover body 134. When at least one of the first light emitting unit 1321 and the second light emitting unit 1322 operates, light is emitted from the second light emitting surface 134b of the cover body 134.
[0118] It can be seen that in the electronic device 1 provided in the embodiment of the present application, the decorative component 120 further includes a first decorative piece 122 and a second decorative piece 123 , which can improve the appearance decorative effect of the electronic device 1 corresponding to the fan module 110 .
[0119] For further information, see Figures 11 to 16 , the fan module 110 further includes a first shell 113 and a second shell 114. The second shell 114 covers the first shell 113, and the first shell 113 and the second shell 114 cooperate to form a receiving space 113a, and the receiving space 113a is used to receive the first circuit board 111 and the fan unit 112. The decorative base 121 includes a first side wall 1211 and a decorative portion 1212. One end of the first side wall 1211 is disposed on the second shell 114. The decorative portion 1212 is bent and connected to the other end of the first side wall 1211 away from the second shell 114. The cover body 134 includes a cover body body 1343 and a second side wall 1344. One end of the cover body body 1343 is disposed on the second shell 114, and the cover body body 1343 is spaced apart from the first side wall 1211. The second side wall 1344 protrudes from the surface of the cover body 1343 toward the first side wall 1211 , and the second side wall 1344 , the cover body 1343 and the first side wall 1211 cooperate to form a receiving space 134 d , and the receiving space 134 d is used to receive the optical fiber 135 .
[0120] In this embodiment, the first housing 113 and the second housing 114 cooperate to form a receiving space 113a. The first circuit board 111 and the fan unit 112 are disposed in the receiving space 113a. As a result, the integrity of the fan module 110 is good, and when the fan module 110 is used in the electronic device 1, it is convenient to assemble with other components of the electronic device 1. In this embodiment, the first circuit board 111 is away from the second housing 114 compared to the fan unit 112.
[0121] In this embodiment, the decorative portion 1212 is bent and connected to the other end of the first side wall 1211 away from the second shell 114, also known as the decorative portion 1212 in the decorative base 121 is opposite to and spaced from the fan unit 112, and the first side wall 1211 is bent and connected to the periphery of the decorative portion 1212.
[0122] The electronic device 1 provided by the embodiment of the present application. The second side wall 1344, the cover body 1343 and the first side wall 1211 cooperate together to form a receiving space 134d, and the receiving space 134d is used to receive the optical fiber 135. It can be seen that the electronic device 1 provided by the embodiment of the present application can utilize the structural characteristics of the decorative base 121 and the cover body 134 itself to limit the optical fiber 135, and there is no need to use a separate limiting member to limit the optical fiber 135.
[0123] Further, please refer to Figure 15 , the fan module 110 further includes a first housing 113, a second housing 114, and a heat dissipating member 117. The electronic device 1 further includes a first sealing member 181. The first housing 113 and the second housing 114 cooperate together to form a receiving space 113a, and the receiving space 113a is used to receive the first circuit board 111 and the fan unit 112. The second housing 114 has an air inlet 114a. The heat dissipating member 117 is received in the receiving space 113a and is disposed adjacent to the fan unit 112. The first sealing member 181 is disposed in the gap between the second housing 114 and the rear cover 220.
[0124] In this embodiment, the first housing 113 and the second housing 114 cooperate together to form a receiving space 113a. The first circuit board 111 and the fan unit 112 are disposed in the receiving space 113a. Thus, the integrity of the fan module 110 is relatively good, and when the fan module 110 is applied to the electronic device 1, it is convenient to assemble with other components of the electronic device 1.
[0125] The heat dissipating member 117 can be, but is not limited to, heat dissipation fins, or heat dissipation fins, or a heat dissipation flow channel with a condensation medium, etc., and the present application does not make any limitations in this regard. The heat dissipating member 117 is received in the receiving space 113a and is disposed adjacent to the fan unit 112. The heat dissipating member 117 is used to dissipate the heat generated when the fan unit 112 works to prevent the temperature of the fan unit 112 from being too high.
[0126] In one embodiment, the heat dissipating member 117 satisfies at least one of the following conditions: the heat dissipating member 117 is thermally connected to the fan unit 112 and the second housing 114; the heat dissipating member 117 is thermally connected to the fan unit 112 and the first housing 113.
[0127] In one embodiment, the electronic device 1 includes a middle frame 210, a rear cover 220, and a display screen 230. The middle frame 210 cooperates with the rear cover 220 to accommodate the fan module 110. In one embodiment, the rear cover 220 and the display screen 230 are respectively disposed on two opposite sides of the middle frame 210. The second housing 114 of the fan module 110 faces away from the rear cover 220 as compared with the first housing 113.
[0128] When the heat dissipation member 117 is thermally connected to the fan unit 112 and the second housing 114, the heat generated when the fan unit 112 operates can be dissipated through the heat dissipation member 117 and the second housing 114. Specifically, the heat generated when the fan unit 112 operates can be conducted through the heat dissipation member 117 and the second housing 114 to the middle frame 210 and the rear cover 220, and dissipated through the middle frame 210 and the rear cover 220.
[0129] When the heat dissipation member 117 is thermally connected to the fan unit 112 and the first housing 113, the heat generated when the fan unit 112 operates can be dissipated through the heat dissipation member 117 and the first housing 113. Specifically, the heat generated when the fan unit 112 operates can be conducted through the heat dissipation member 117 and the first housing 113 to the middle frame 210 and the display screen 230, and dissipated through the middle frame 210 and the display screen 230.
[0130] In this way, the heat generated when the fan unit 112 operates can be quickly dissipated, so that the temperature of the fan module 110 is relatively low, and the fan unit 112 can operate with better performance.
[0131] In one embodiment, the heat dissipation member 117 is at least partially disposed corresponding to the second housing 114, and the heat generated by the fan unit 112 can be quickly dissipated through the second housing 114, and the fan unit 112 can operate with better performance.
[0132] The first sealing member 181 can be, but is not limited to, a sealing bracket with a silicone ring, or glue, or foam, etc. In this embodiment, the first sealing member 181 is a sealing bracket with a silicone ring. The first sealing member 181 is disposed in the gap between the second housing 114 and the rear cover 220. In this way, the entry of external moisture and dust into the accommodation space 113a through the gap between the second housing 114 and the rear cover 220 can be reduced or even prevented, so as to avoid the adverse effects on the fan module 110.
[0133] Further, please refer to Figures 11 to 16, the decorative base 121 is carried on the rear cover 220. The electronic device 1 further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. The second seal 182 is disposed between the rear cover 220 and the decorative base 121. The third seal 183 is disposed between the cover body 134 and the decorative base 121. The fourth seal 184 is disposed between the cover body 134 and the rear cover 220.
[0134] The electronic device 1 further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. Specifically, in one embodiment, the electronic device 1 may further include the second seal 182; or the third seal 183; or the fourth seal 184; or the second seal 182 and the third seal 183; or the second seal 182 and the fourth seal 184; or the third seal 183 and the fourth seal 184; or the second seal 182, the third seal 183, and the fourth seal 184. In the schematic diagram of this embodiment, the electronic device 1 including the second seal 182, the third seal 183, and the fourth seal 184 is taken as an example for illustration. It can be understood that it should not be construed as a limitation to the embodiments of the present application.
[0135] The second seal 182 may be, but is not limited to, glue, or foam, or silica gel, etc. The third seal 183 may be, but is not limited to, glue, or foam, or silica gel, etc. The fourth seal 184 may be, but is not limited to, glue, or foam, or silica gel, etc. The material of the third seal 183 may be the same as or different from the material of the second seal 182, and no limitation is made thereto. The material of the fourth seal 184 may be the same as or different from the material of the second seal 182, and no limitation is made thereto.
[0136] In one embodiment, the second seal 182 is glue. Thus, the second seal 182 can not only seal the gap between the rear cover 220 and the decorative base 121, but also fix the rear cover 220 and the decorative base 121. In one embodiment, the third seal 183 is glue. Thus, the third seal 183 can not only seal the gap between the cover body 134 and the decorative base 121, but also fix the cover body 134 and the decorative base 121. In one embodiment, the fourth seal 184 is glue. Thus, the fourth seal 184 can not only seal the gap between the cover body 134 and the rear cover 220, but also fix the cover body 134 and the rear cover 220.
[0137] The electronic device 1 provided by the embodiment of the present application further includes at least one of a second seal 182, a third seal 183, and a fourth seal 184. In this way, the waterproof performance of the electronic device 1 can be further improved, and the adverse effects caused by external water vapor and dust entering the accommodation space 113a and affecting the fan module 110 can be further reduced or even prevented.
[0138] In one embodiment, the waterproof and dustproof level of the electronic device 1 can meet the requirements of IP68. In "IP68", "IP" is the abbreviation of Ingress Protection, which means "protection level" and consists of two digits. The first digit "6" represents the dustproof level, indicating that the electronic device 1 can completely prevent dust from entering; the second digit "8" represents the waterproof level. It can be understood that the waterproof and dustproof level of the electronic device 1 provided by the embodiment of the present application is only an example. In other embodiments, it can also be other levels, and the present application does not make any limitations in this regard.
[0139] In one embodiment, the electronic device 1 further includes a heating device, which can be, but is not limited to, a processor, a memory, etc. The present application does not limit the type of the heating device, as long as the heating device generates heat during operation. The fan module 110 and the heating device form a heat dissipation channel for dissipating heat from the heating device.
[0140] Please refer to Figure 19 , Figure 19 is the rear view of the electronic device shown in yet another embodiment. In this embodiment, the electronic device 1 further includes a rear camera 60. The rear camera 60 and the fan module 110 share the same decorative base 121. Figure 1
[0141] The fact that the rear camera 60 and the fan module 110 of the electronic device 1 provided by the embodiment of the present application share the same decorative base 121 can improve the decorative effect of the rear camera 60 and the overall aesthetic appearance of the electronic device 1. Further, compared with the rear camera 60 and the fan module 110 using separate decorative bases respectively, the rear camera 60 and the fan module 110 of the electronic device 1 provided by the embodiment of the present application sharing the same decorative base 121 can make the electronic device 1 have fewer parts and be convenient for assembly.
[0142] Figure 7 It can be understood that, in combination with the electronic device 1 provided in any of the previous embodiments, please refer to Figure 15 or Figure 15, in one embodiment, the fan module 110 further has an air outlet 114b. Correspondingly, the middle frame 210 of the electronic device 1 has a through hole 210a, and the through hole 210a of the middle frame 210 is in communication with the air outlet 114b of the fan module 110.
[0143] Please refer to Figure 20 , Figure 20 is a circuit block diagram of an electronic device provided by an embodiment of the present application. The electronic device 1 further includes a processor 50. The processor 50 is electrically connected to the light emitting unit 132. The processor 50 is configured to generate a control signal to control whether the light emitting unit 132 operates, and to control the operating state and pattern of the light emitting unit 132 when the light emitting unit 132 is operating. For example, in one embodiment, when the light emitting assembly 130 includes a plurality of light emitting units 132, the processor 50 is configured to control the light emitted by the plurality of light emitting units 132 to present a marquee effect.
[0144] The above are some embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present application, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present application.
Claims
1. An electronic device, characterized in that: The electronic device comprises: A fan module, the fan module comprising a first circuit board and a fan unit, the fan unit being electrically connected to the first circuit board; A decoration component, located outside the fan module and used for decorating the fan module; and A light-emitting component is at least partially arranged corresponding to the decorative component, and the light-emitting component includes a second circuit board and a light-emitting unit, the light-emitting unit is electrically connected to the second circuit board, and the light-emitting unit is located outside the fan module.
2. The electronic device according to claim 1, wherein: The fan module also includes: a first housing; and The second shell cooperates with the first shell to form a receiving space, the receiving space is used to receive the first circuit board and the fan unit, the second shell has an air inlet, and the light-emitting component is arranged outside the second shell.
3. The electronic device according to claim 2, characterized in that: The second circuit board is arranged on a side of the second shell away from the first shell, and the second circuit board surrounds the air inlet. The light-emitting component includes a plurality of light-emitting units, and the plurality of light-emitting units are arranged at intervals on the second circuit board and surround the air inlet.
4. The electronic device according to claim 3, characterized in that: The light emitting component further comprises: a light guide, the light guide having a first light incident surface and a first light emitting surface, the first light incident surface being arranged corresponding to the plurality of light emitting units and being used to receive light emitted by the light emitting units, the light guide being used to evenly diffuse light incident from the first light incident surface and emit the light through the first light emitting surface; and The cover body has a second light incident surface and a second light emitting surface, the second light incident surface is arranged corresponding to the first light emitting surface and is used to receive the light emitted by the first light emitting surface, and the second light emitting surface is used to emit the light entering the cover body.
5. The electronic device according to claim 4, characterized in that: The electronic device further comprises: middle frame; and A rear cover, wherein the rear cover cooperates with the middle frame to accommodate the fan module; The decorative component comprises: A decorative base, the decorative base being arranged on one side of the rear cover; The cover body is fixed to the decorative base, and the cover body has a first opening, and the first opening is connected to the air inlet.
6. The electronic device according to claim 5, characterized in that: The decorative base has a second opening, and the cover is arranged in the second opening; the decorative component further includes: A first decorative piece, the first decorative piece is disposed in the second opening, the first decorative piece has a third opening, and the third opening is connected to the air inlet; and A second decorative piece is disposed outside the second opening and fixed to the decorative base.
7. The electronic device according to claim 6, characterized in that: The cover body comprises: A first portion, the first portion having the second light incident surface; and a second portion, the second portion is protrudingly disposed on a surface of the first portion, and the second portion is farther away from the fan unit than the first portion, and the first opening passes through the first portion and the second portion; The second decorative element is arranged on the periphery of the second portion and is located on a side of the first portion away from the fan unit.
8. The electronic device according to claim 2, characterized in that: The light emitting unit comprises a first light emitting unit and a second light emitting unit; The light emitting component further comprises: An optical fiber, the optical fiber surrounds the air inlet, the optical fiber includes a first end and a second end, the first end is arranged corresponding to the first light-emitting unit and is used to receive the light of the first light-emitting unit, and the second end is arranged corresponding to the second light-emitting unit and is used to receive the light of the second light-emitting unit; and The cover body has a second light incident surface and a second light emitting surface, the second light incident surface is arranged corresponding to the optical fiber and is used to receive the light emitted by the optical fiber, and the second light emitting surface is used to emit the light incident to the cover body.
9. The electronic device according to claim 8, characterized in that: The electronic device further comprises: middle frame; and A rear cover, wherein the rear cover cooperates with the middle frame to accommodate the fan module; The decorative component comprises: A decorative base, the decorative base being arranged on one side of the rear cover; The cover body is fixed to the decorative base, and the cover body has a first opening, and the first opening is connected to the air inlet.
10. The electronic device according to claim 9, characterized in that: The decorative base has a second opening, and the cover is arranged in the second opening; the decorative component further includes: A first decorative piece, the first decorative piece is disposed in the second opening, the first decorative piece has a third opening, and the third opening is connected to the air inlet; and A second decorative piece is disposed in the second opening, a receiving gap is defined between the second decorative piece and the decorative base, the receiving gap is used to receive the cover body, and the second decorative piece is disposed around the first decorative piece.
11. The electronic device according to claim 9, characterized in that: The decorative base comprises: A first side wall, one end of which is disposed on the second shell; and A decorative portion, the decorative portion being bent and connected to the other end of the first side wall away from the second shell; The cover body comprises: a cover body, one end of which is disposed on the second shell, and the cover body is spaced apart from the first side wall; and The second side wall protrudes from the surface of the cover body toward the first side wall, and the second side wall, the cover body and the first side wall cooperate to form a receiving space, and the receiving space is used to receive the optical fiber.