Electronic device
By setting handsets and camera modules side by side on the slider assembly and stacking atmosphere lights vertically, the size increase caused by device layout is solved, and a higher screen-to-body ratio and appearance performance improvement is achieved.
Patent Information
- Application Number
- CN201910573247.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-06-27
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2039-06-27
AI Technical Summary
With the increase in the requirements for full-screens, the device arrangement of mobile phone camera modules is increasing, resulting in an increase in volume and affecting appearance performance.
The slider assembly is slidably connected to the device body, and the handset, the atmosphere light and the camera module are fixed to the slider assembly. The handset and the camera module are parallel to the display direction, and the atmosphere lights are stacked vertically in the display direction, optimizing the device arrangement and reducing the volume of the slider assembly.
By optimizing device layout, the display area of the display screen is increased and the appearance performance of the mobile terminal is improved.
Smart Images

Figure CN112153248B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of communication devices, and particularly to an electronic device. Background Art
[0002] Currently, the telescopic structure of the mobile phone drives the camera module to telescope to solve the full-screen problem. However, with the increasing requirements for full screens, more and more components need to be arranged on the telescopic structure. The more components are arranged, the larger the volume of the telescopic structure becomes, affecting the appearance performance of the mobile phone. Summary of the Invention
[0003] This application provides an electronic device.
[0004] An embodiment of this application provides an electronic device, where the electronic device includes a device body, a slider assembly, a receiver, an ambient light, and a camera module. The device body is provided with a display screen. The slider assembly is slidably connected to the device body and can contract or extend relative to the device body. The receiver, the ambient light, and the camera module are all fixed on the slider assembly. The receiver and the camera module are arranged side by side in a direction parallel to the display screen. The ambient light and the receiver are stacked in a direction perpendicular to the display screen. The ambient light is arranged close to the sound output end of the receiver. The camera module, the receiver, and the ambient light can all contract with the slider assembly into the device body and stack with the display screen.
[0005] In the electronic device provided by the embodiment of this application, the slider assembly is slidably connected to the device body and can contract or extend relative to the device body. The receiver, the ambient light, and the camera module are all fixed on the slider assembly. The receiver and the camera module are arranged side by side in a direction parallel to the display screen. The ambient light and the receiver are stacked in a direction perpendicular to the display screen, optimizing the arrangement structure of the receiver, the ambient light, and the camera module on the slider assembly, reducing the volume of the slider assembly, and improving the appearance performance of the mobile terminal. Brief Description of the Drawings
[0006] To more clearly illustrate the technical solutions of the embodiments of this application, the following will briefly introduce the drawings required for the embodiments. 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.
[0007] Figure 1 is a schematic diagram of the electronic device provided by the embodiment of this application;
[0008] Figure 2 is a cross-sectional schematic diagram of the electronic device provided by the embodiment of this application;
[0009] Figure 3 is a partial exploded view of the electronic device provided by an embodiment of the present application;
[0010] Figure 4 is another partial exploded view of the electronic device provided by an embodiment of the present application;
[0011] Figure 5 is another partial exploded view of the electronic device provided by an embodiment of the present application. Detailed implementation manners
[0012] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0013] In the description of the embodiments of the present application, it should be understood that the orientation or positional relationship indicated by terms such as "thickness" is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present application and simplifying the description, rather than implying or indicating that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0014] Please refer to Figure 1 、 Figure 2 and Figure 3 , an embodiment of the present application provides an electronic device 1000. The electronic device 1000 includes a device body 100, a slider assembly 200, a receiver 300, an ambient light 400, and a camera module 500. The device body 100 is provided with a display screen 110. The slider assembly 200 is slidably connected to the device body 100 and can contract or extend relative to the device body 100. The receiver 300, the ambient light 400, and the camera module 500 are all fixed on the slider assembly 200. The receiver 300 and the camera module 500 are arranged side by side in a direction parallel to the display screen 110. The ambient light 400 and the receiver 300 are stacked in a direction perpendicular to the display screen 110. The ambient light 400 is arranged close to the sound output end of the receiver 300. The camera module 500, the receiver 300, and the ambient light 400 can all contract with the slider assembly 200 into the device body 100 and be stacked with the display screen 110.
[0015] It is understandable that the electronic device 1000 can be a mobile phone, a laptop computer, a tablet computer, etc. The electronic device 1000 can drive the receiver 300, the ambient light 400, and the camera module 500 to shrink relative to the device body 100 by using the slider assembly 200, so that the display area ratio of the display screen 110 of the electronic device 1000 can be increased to meet the requirement of a higher screen-to-body ratio.
[0016] The earpiece 300, the ambient light 400 and the camera module 500 are all fixed on the slider assembly 200, the earpiece 300 and the camera module 500 are arranged side by side in a direction parallel to the display screen 110, and the ambient light 400 and the earpiece 300 are stacked in a direction perpendicular to the display screen 110, so that the arrangement structure of the earpiece 300, the ambient light 400 and the camera module 500 in the slider assembly 200 is optimized, the volume of the slider assembly 200 is reduced, and the appearance performance of the mobile terminal is improved.
[0017] In this embodiment, the device body 100 is further provided with a back shell 120 covering the display screen 110 and a middle frame 130 fixed between the back shell 120 and the display screen 110. The device body 100 has two short sides 101 arranged opposite to each other and two long sides 102 opposite to each other. The slider assembly 200 slides relative to the device body 100 along the length direction parallel to the long sides 102. The slider assembly 200 extends or retracts relative to the device body 100 at the short side 101 of the device body 100. When the slider assembly 200 drives the camera module 500 and the atmosphere light 400 to extend out of the device body 100, the camera module 500 can realize the front shooting function, and the atmosphere light 400 can assist the camera module 500 in front shooting, realizing the front shooting fill light function. Of course, the atmosphere light 400 can also realize the breathing light function, or realize the incoming call reminder function. When the slider assembly 200 drives the receiver 300 to extend relative to the device body 100, the receiver 300 can emit voice for calls, making it convenient for the user to answer the phone. Of course, when the receiver 300 is retracted relative to the device body 100, the slider assembly 200 can also set a speaker channel staggered from the display screen 110 so that the receiver 300 can emit sound through the speaker channel. The ambient light 400 is stacked on the sound output end of the receiver 300, and the sound output channel of the receiver 300 is bypassed relative to the ambient light 400 to facilitate the receiver 300 to emit sound.
[0018] In this embodiment, the slider assembly 200 extends from the middle position of the short side 101 relative to the device body 100, so that the earpiece 300 is aligned with the middle position of the device body 100 in both the contracted or extended state relative to the device body 100, avoiding guiding sound to the earpiece 300 through an overly long sound guiding channel, thereby facilitating the sound output of the earpiece 300 to ensure the sound output quality of the earpiece 300. The extension or contraction of the slider assembly 200 from the middle position of the short side 101 also optimizes the device arrangement structure of the device body 100 and improves the appearance performance of the electronic device 1000. The earpiece 300 is generally aligned with the middle position of the short side 101. In the illustrated view, the camera module 500 is located on the right side of the earpiece 300. Of course, in other embodiments, the camera module 500 may also be located on the left side of the earpiece 300. Or the camera module 500 may be generally aligned with the middle position of the short side 101.
[0019] Further, the electronic device 1000 further includes a flexible circuit board 600. One end of the flexible circuit board 600 is fixed to the device body 100, and the other end is fixedly connected to the bottom of the earpiece 300, the bottom of the camera module 500, and the bottom of the ambient light 400.
[0020] In this embodiment, the electronic device 1000 is provided with a main board 140 fixed to the middle frame 130. One end of the flexible circuit board 600 is electrically connected to the main board 140, and the other end is electrically connected to the earpiece 300, the ambient light 400, and the camera module 500, so that the main board 140 can control the operations of the earpiece 300, the ambient light 400, and the camera module 500. The end of the flexible circuit board 600 away from the device body 100 is clamped between the camera module 500 and the slider assembly 200, and between the earpiece 300 and the slider assembly 200. The portion between the two ends of the flexible circuit board 600 is bent to facilitate the sliding of the slider assembly 200 and avoid breakage of the flexible circuit board 600. By sharing the flexible circuit board 600 among the ambient light 400, the earpiece 300, and the camera module 500, the usage space of the slider assembly 200 is reduced, the volume of the slider assembly 200 is reduced, and it is convenient to drive the slider assembly 200 to slide.
[0021] Specifically, one end of the flexible circuit board 600 away from the device body 100 includes a main body portion 610 and a branch portion 620 extending from the edge of the main body portion 610. The main body portion 610 is fixedly connected to the bottom of the earpiece 300 and the bottom of the camera module 500. The branch portion 620 is bent relative to the main body portion 610 and is fixedly connected to the bottom of the ambient light 400. The main body portion 610 is attached to the bottom end face of the earpiece 300 and the bottom end face of the camera module 500 to facilitate power supply to the earpiece 300 and the camera module 500 and transmission of electrical signals. The branch portion 620 extends from the edge of the main body portion 610 in a direction parallel to the short side 101, and the branch portion 620 is bent to the top of the earpiece 300 to fixedly connect to the ambient light 400. The branch portion 620 saves the usage space of the slider assembly 200 in the direction parallel to the long side 102, avoiding the slider assembly 200 having an overly long dimension in the direction parallel to the long side 102 and affecting the appearance performance of the slider assembly 200. By fixing the ambient light 400 on the bent branch portion 620, the ambient light 400 and the earpiece 300 are respectively connected to opposite sides of the flexible circuit board 600. That is, the flexible circuit board 600 is a circuit board with double-sided wiring up and down, so as to reduce the space occupied by the flexible circuit board 600, reduce the usage space of the slider assembly 200, and improve the appearance performance of the electronic device 1000. Of course, in other embodiments, the branch portion 620 may also extend from the edge of the main body portion 610 in a direction parallel to the long side 102 and be bent to the top of the earpiece 300.
[0022] Further, the slider assembly 200 includes a slider 210. The slider 210 is provided with a receiving groove 211. The opening direction of the receiving groove 211 is parallel to the direction of the display screen 110. The camera module 500 and the earpiece 300 are fixed in the receiving groove 211. The bottom of the slider 210 is further provided with a wire passing groove 212 communicating with the receiving groove 211. The flexible circuit board 600 passes through the wire passing groove 212 so that one end of the flexible circuit board 600 fixedly connected to the earpiece 300 and the camera module 500 abuts against the bottom of the receiving groove 211.
[0023] In this embodiment, the slider 210 includes a bearing portion 213 and a sliding guide portion 214 fixed to one side of the bearing portion 213. The receiving groove 211 is provided in the bearing portion 213. The sliding guide portion 214 is slidably connected to the device body 100. The bearing portion 213 is generally in the shape of a rectangular block. The sliding guide portion 214 extends from the side wall of the bearing portion 213. The sliding guide portion 214 is provided with two opposite sliding guide rods 215, and the two sliding guide rods 215 are slidably connected to the device body 100. An accommodating space is provided between the two sliding guide rods 215 so that a part of the flexible circuit board 600 can be received in the accommodating space, facilitating the bending of the flexible circuit board 600 to ensure the sliding performance of the slider 210 and preventing the flexible circuit board 600 from interfering with the sliding of the slider 210. The wire passing groove 212 penetrates from the side wall of the bearing portion 213 to the receiving groove 211. The wire passing groove 212 is generally opposite to the accommodating space between the two sliding guide rods 215 to facilitate the flexible circuit board 600 to pass through the wire passing groove 212. The width of the wire passing groove 212 in the direction parallel to the short side 101 is smaller than the width of the receiving groove 211 to prevent the end of the flexible circuit board 600 fixed in the receiving groove 211 from detaching from the slider 210 through the wire passing groove 212, thereby increasing the stability of the flexible circuit board 600 with the earphone 300 and the camera module 500. The sliding guide portion 214 further provides a boss 216 connected to the bearing portion 213 between the two sliding guide rods 215. The boss 216 is provided with an inclined support surface, and a foam is provided on the inclined support surface. The part of the flexible circuit board 600 passing out of the wire passing groove 212 is attached to the foam, so that the boss 216 supports the flexible circuit board 600, preventing the flexible circuit board 600 from being broken by the sliding stress and increasing the connection stability between the flexible circuit board 600 and the slider 210.
[0024] Further, the slider assembly 200 further includes an anti-drop slider 220 slidably connected to the slider 210 and an elastic member 230 elastically connected between the anti-drop slider 220 and the slider 210. The elastic member 230 is used to absorb the drop impact force of the slider 210. The electronic device 1000 includes a driving assembly 700 installed on the device body 100. The driving assembly 700 is connected to the anti-drop slider 220 to drive the slider 210 to expand and contract relative to the device body 100 through the anti-drop slider 220 and the elastic member 230.
[0025] In this embodiment, a buffer slide bar 216 is provided on the guide slide bar 215, and the anti-fall slider 220 is slidably connected to the buffer slide bar 216. The buffer slide bar 216 is parallel to the guide slide bar 215. The elastic member 230 is a rectangular spring. The elastic member 230 is sleeved on the buffer slide bar 216. When the elastic member 230 is in an extended state, the anti-fall slider 220 is located at a position on the buffer slide bar 216 close to the device body 100. The driving assembly 700 can drive the slider 210 to extend out of the device body 100 through the anti-fall slider 220. The driving force of the driving assembly 700 is less than the elastic force of the elastic member 230. After the slider 210 is subjected to a drop impact force, the elastic member 230 can be compressed to absorb the drop impact force, and the slider 210 can retreat to the device body 100 under the action of the drop impact force.
[0026] Specifically, the driving assembly 700 includes a screw rod 710 rotatably connected to the device body 100, a nut 720 screwed to the screw rod 710, and a motor 730 for driving the screw rod 710 to rotate. The screw rod 710 is arranged parallel to the buffer slide bar 216. The nut 720 is provided with a buckle 721 extending to the buffer slide bar 216. The buckle 721 can be buckled to the anti-fall slider 220 to transmit the driving force of the nut 720 to the slider 210 through the anti-fall slider 220. The motor 730 can be fixed on the middle frame 130.
[0027] Further, please refer to Figure 4 , the slider assembly 200 further includes a pressing plate 230. The pressing plate 230 covers the sound output end of the earpiece 300. The pressing plate 230 is provided with a sound guiding channel 231. One end of the sound guiding channel 231 faces the sound output end of the earpiece 300, and the other end extends towards the edge of the opening end of the receiving groove 211.
[0028] In this embodiment, the pressing plate 230 has a first surface 232 facing the receiver 300 and a second surface 233 disposed opposite to the first surface 232. The pressing plate 230 further has a first side wall 234 connected between the first surface 232 and the second surface 233, and a second side wall disposed opposite to the first side wall 234. The first side wall 234 is disposed away from the device body 100. The second side wall 235 is disposed towards the device body 100. The sound guiding channel 231 extends from the first surface 232 to the first side wall 234 to facilitate the sound output of the receiver 300. The first side wall 234 and the second side wall 235 are adjacent to the opening end edge of the receiving groove 211. The first side wall 234 and the atmosphere lamp 400 can be staggeredly arranged, so that the sound outlet of the sound guiding channel 231 is staggeredly arranged with the atmosphere lamp 400, facilitating the sound output of the receiver 300. The pressing plate 230 applies a pressing force to the receiver 300, so that the receiver 300 can be stably located in the receiving groove 211, increasing the stability between the receiver 300 and the slider 210. The second surface 233 of the pressing plate 230 can apply a bearing force to the atmosphere lamp 400, facilitating the stacked stability of the atmosphere lamp 400 on the pressing plate 230. The pressing plate 230 is respectively provided with a first clamping platform 236 and a second clamping platform 237 on the first side wall 234 and the second side wall 235. Both the first clamping platform 236 and the second clamping platform 237 are in a wedge-shaped structure. The inner wall of the receiving groove 211 is provided with a first clamping groove 217 and a second clamping groove respectively corresponding to the first clamping platform 236 and the second clamping platform 237. Under the pressing force applied to the pressing plate 230, the first clamping platform 236 and the second clamping platform 237 can be respectively easily clamped into the first clamping groove 217 and the second clamping groove, so that the pressing plate 230 can be stably located in the receiving groove 211, stabilizing the receiver 300, and facilitating the sealing and sound guiding of the receiver 300. Of course, in other embodiments, the pressing plate 230 can also be magnetically attracted and stabilized in the receiving groove 211.
[0029] Further, please refer to Figure 5 , the slider assembly 200 further includes a sound guiding cover plate 240. The sound guiding cover plate 240 covers the side of the pressing plate 230 away from the receiver 300. The sound guiding cover plate 240 is provided with a plurality of sound outlet micro holes 241 adjacent to the opening end edge of the receiving groove 211. The sound waves emitted by the receiver 300 are sequentially emitted through the sound guiding channel 231, the opening end edge of the receiving groove 211, and the plurality of sound outlet micro holes 241.
[0030] In this embodiment, the sound guiding channel 231 has a sound outlet opening 2311 on the first side wall 234, and a sound outlet groove 2111 communicating with the sound guiding channel 231 is provided at the edge of the opening end of the receiving groove 211. The sound outlet groove 2111 is arranged on a step at the edge of the opening end of the receiving groove 211. The sound outlet groove 2111 diffuses the sound emitted from the sound outlet opening 2311 to facilitate the sound emission of the earpiece 300. The part of the sound guiding cover plate 240 provided with a plurality of the sound outlet micropores 241 covers the sound outlet groove 2111, and enables the sound outlet groove 2111 to emit sound through the plurality of sound outlet micropores 241. The sound guiding cover plate 240 is used to block the sound outlet groove 2111 to prevent impurities from entering the slider assembly 200 and ensure the safety of the earpiece 300.
[0031] Further, the sound guiding channel 231 has an opening on a side of the pressing plate 230 away from the earpiece 300, the sound guiding cover plate 240 seals the opening, and the atmosphere lamp 400 is fixed to a part of the sound guiding cover plate 240 that seals the opening and is located on a side of the sound guiding cover plate 240 away from the pressing plate 230.
[0032] In this embodiment, the sound guiding channel 231 includes a sound guiding through hole 2312 penetrating from the first surface 232 to the second surface 233 and a sound guiding groove 2314 communicating with the sound guiding through hole 2312. The sound guiding groove 2314 is recessed from the second surface 233 towards the first surface 232. The sound guiding groove 2314 extends from the sound guiding through hole 2312 to the first side wall 234. The part of the sound guiding cover plate 240 provided with the plurality of sound outlet micropores 241 extends out of the covering part along a direction parallel to the second surface 233. The covering part of the sound guiding cover plate 240 covers the opening of the sound guiding groove 2314 on the second surface 233 and the opening of the sound guiding through hole 2312 on the second surface 233, so that the sound guiding channel 231 can effectively conduct sound and facilitate the processing of the sound guiding channel 231. The side of the sound guiding cover plate 240 facing away from the pressing plate 230 effectively bears the atmosphere lamp 400. Specifically, a sinking groove is provided on a side of the sound guiding cover plate 240 away from the pressing plate 230. The end of the branch part 620 is attached to the sinking groove, and the atmosphere lamp 400 is attached to the branch part 620, so that the atmosphere lamp 400 and the sound guiding cover plate 240 have a stable structure.
[0033] Further, the slider assembly 200 further includes a packaging cover plate 250. The packaging cover plate 250 is provided with a light hole 251 corresponding to the light transmission of the atmosphere lamp 400 and a camera hole 252 corresponding to the light transmission of the camera module 500. A cover plate notch 253 is provided at the edge of the packaging cover plate 250. The portion of the sound guide cover plate 240 provided with the plurality of sound outlet micro holes 241 cooperates with the cover plate notch 253 and jointly seals the open end of the receiving groove 211 with the packaging cover plate 250.
[0034] In this embodiment, the packaging cover plate 250 covers the opening of the receiving groove 211. The light hole 251 and the camera hole 252 are arranged oppositely in a direction substantially parallel to the short side 101. A camera lens is further provided in the camera hole 252 to ensure the safety of the camera module 500. The portion of the sound guide cover plate 240 provided with the plurality of sound outlet micro holes 241 has a boss structure, so that the portion of the sound guide cover plate 240 provided with the plurality of sound outlet micro holes 241 can cooperate with the cover plate notch 253, and the packaging cover plate 250 also presses on the covering portion of the sound guide cover plate 240. One side of the packaging cover plate 250 away from the sound guide cover plate 240 is substantially flush with the end face of the slider 210 to ensure the appearance performance of the slider assembly 200.
[0035] Further, a pressing block 254 is further provided at the edge of the packaging cover plate 250. The pressing block 254 seals the opening of the wire passing groove 212 and abuts against the portion of the flexible circuit board 600 located in the wire passing groove 212. In this embodiment, the pressing block 254 is bent relative to the packaging cover plate 250. The end of the pressing block 254 presses on the portion of the flexible circuit board 600 located in the wire passing groove 212. The pressing block 254 stabilizes the flexible circuit board 600 and prevents the flexible circuit board 600 from being damaged due to frictional sliding with the slider 210.
[0036] Further, the device body 100 is provided with a guiding and sliding bracket 150. The slider assembly 200 is slidably connected to the guiding and sliding bracket 150. The flexible circuit board 600 is provided with a stabilizing portion 630 fixed to the guiding and sliding bracket 150. The edge of the stabilizing portion 630 extends out a board-to-board connection portion 640.
[0037] In this embodiment, the guiding and sliding bracket 150 is fixed to the middle frame 130. The guiding and sliding bracket 150 is slidably connected to the guiding portion 214. The two opposite sides of the guiding and sliding bracket 150 are respectively slidably engaged with the two guiding rods 215. The stabilizing portion 630 is fixed to the guiding and sliding bracket 150 away from the middle frame 130 (see Figure 3) so that the flexible circuit board 600 is disposed opposite to the middle frame 130, which can extend the length of the flexible circuit board 600 and facilitate the sliding of the slider 210 relative to the sliding guide bracket 150. The board-to-board connection portion 640 is used for connecting to the main board 140 (see Figure 3 ) of the device body 100, so as to electrically connect the atmosphere lamp 400, the earpiece 300 and the camera module 500 to the main board 140 via the flexible circuit board 600. The board-to-board connection portion 640 extends from the side edge of the stabilizing portion 630 to ensure the stability of the connection between the board-to-board connection portion 640 and the main board 140. A reinforcing plate is disposed on the side of the stabilizing portion 630 facing the sliding guide bracket 150, and the reinforcing plate is used to enhance the structural stability of the stabilizing portion 630 to ensure the stable connection between the stabilizing portion and the sliding guide bracket 150.
[0038] Further, the sliding guide bracket 150 is provided with a receiving groove 151, the receiving groove 151 extends along a direction parallel to the sliding direction of the sliding assembly, the stabilizing portion 630 covers the receiving groove 151, and a bending portion 650 is provided at the edge of the stabilizing portion 630 facing the slider assembly 200, and a part of the bending portion 650 is located in the receiving groove 151. The receiving groove 151 is recessed from the top end to the bottom end of the sliding guide bracket 150. The bottom of the receiving groove 151 allows a screw to pass through, so that the sliding guide bracket 150 is firmly fixed on the middle frame 130. The stabilizing portion 630 is fixed to the open end of the receiving groove 151 and covers the receiving groove 151. The bending portion 650 extends from the edge of the stabilizing portion 630 facing the slider 210 and bends into the receiving groove 151 to increase the length of the bending portion 650 and ensure the bendability of the bending portion 650, facilitating the sliding of the slider 210 relative to the sliding guide bracket 150. The sliding guide bracket 150 is provided with two sliding guide grooves 152, and the two sliding guide grooves 152 are respectively located on both sides of the receiving groove 151. The two sliding guide rods 215 are respectively engaged with the two sliding guide grooves 152. The two sliding guide rods 215 are respectively located on two sides of the sliding guide bracket 150 to increase the sliding stability of the slider 210. Of course, in other embodiments, it may also be that the slider 210 is provided with a sliding groove, and a sliding rod matching the sliding groove is provided on the sliding guide bracket 150.
[0039] The slider assembly 200 is slidably connected to the device body 100 and can be retracted or extended relative to the device body 100. The earpiece 300, the ambient light 400, and the camera module 500 are all fixed on the slider assembly 200. The earpiece 300 and the camera module 500 are arranged side by side in a direction parallel to the display screen 110, and the ambient light 400 and the earpiece 300 are stacked in a direction perpendicular to the display screen 110, so that the arrangement structure of the earpiece 300, the ambient light 400, and the camera module 500 on the slider assembly 200 is optimized, the volume of the slider assembly 200 is reduced, and the appearance performance of the mobile terminal is improved.
[0040] In summary, although the present application has been disclosed above with a preferred embodiment, the preferred embodiment is not intended to limit the present application. Those of ordinary skill in the art can make various changes and modifications without departing from the spirit and scope of the present application. Therefore, the protection scope of the present application is subject to the scope defined by the claims.
Claims
1. An electronic device, characterized in that, The electronic device includes a device body, a slider assembly, a receiver, an ambient light, a camera module, and a flexible circuit board. The device body is provided with a display screen. The slider assembly includes a slider, and the slider includes a bearing portion and a guiding portion. The bearing portion is provided with a receiving groove, and the opening direction of the receiving groove is parallel to the direction of the display screen. The camera module and the receiver are both fixed in the receiving groove. The guiding portion is fixed to one side wall of the bearing portion, and the guiding portion is slidably connected to the device body. The guiding portion is provided with two opposite guiding rods, and the two guiding rods are slidably connected to the device body, so that the slider assembly is slidably connected to the device body and can contract or extend relative to the device body. The receiver, the ambient light, and the camera module are all fixed on the slider assembly; One end of the flexible circuit board is fixed to the device body, and the end of the flexible circuit board away from the device body is clamped between the camera module and the slider assembly and between the receiver and the slider assembly. The end of the flexible circuit board away from the device body includes a main body portion and a branch portion extending from the edge of the main body portion. The main body portion is fixedly connected to the bottom of the receiver and the bottom of the camera module. The branch portion is bent relative to the main body portion to the top of the receiver and is fixedly connected to the bottom of the ambient light. The ambient light and the receiver are respectively connected to opposite sides of the flexible circuit board; The receiver and the camera module are arranged side by side in a direction parallel to the display screen, the ambient light and the receiver are stacked in a direction perpendicular to the display screen, the ambient light is arranged close to the sound output end of the receiver, and the camera module, the receiver, and the ambient light can all contract into the device body with the slider assembly and be stacked with the display screen.
2. The electronic device according to claim 1, wherein The bottom of the slider is further provided with a wire passing groove communicating with the receiving groove, and the flexible circuit board passes through the wire passing groove so that one end of the flexible circuit board fixedly connected to the receiver and the camera module abuts against the bottom of the receiving groove.
3. The electronic device according to claim 2, characterized in that, The slider assembly further includes an anti-drop slider slidably connected to the slider and an elastic member elastically connected between the anti-drop slider and the slider. The elastic member is used to absorb the impact force of the slider when it drops. The electronic device includes a driving assembly installed on the device body, and the driving assembly is connected to the anti-drop slider to drive the slider to expand and contract relative to the device body through the anti-drop slider and the elastic member.
4. The electronic device according to claim 2, wherein The slider assembly further includes a pressing plate, the pressing plate covers the sound output end of the receiver, and the pressing plate is provided with a sound guiding channel. One end of the sound guiding channel faces the sound output end of the receiver, and the other end extends toward the edge of the opening end of the receiving groove.
5. The electronic device according to claim 4, wherein The slider assembly further includes a sound guiding cover plate, the sound guiding cover plate covers the side of the pressing plate away from the receiver, the sound guiding cover is provided with a plurality of sound output micro-holes adjacent to the edge of the opening end of the receiving groove, and the sound waves emitted by the receiver are sequentially emitted through the sound guiding channel, the edge of the opening end of the receiving groove, and the plurality of sound output micro-holes.
6. The electronic device according to claim 5, wherein The sound guiding channel has an opening on the side of the pressing plate away from the earpiece. The sound guiding cover plate seals the opening. The ambient light is fixed to the part of the sound guiding cover plate that seals the opening and is located on the side of the sound guiding cover plate away from the pressing plate.
7. The electronic device according to claim 5, wherein The slider assembly further includes a packaging cover plate. The packaging cover plate is provided with a light hole corresponding to the light transmission of the ambient light and a camera hole corresponding to the light transmission of the camera module. A cover plate notch is provided at the edge of the packaging cover plate. The part of the sound guiding cover plate provided with the plurality of sound outlet micropores cooperates with the cover plate notch and jointly seals the opening end of the receiving groove with the packaging cover plate.
8. The electronic device according to claim 7, wherein A pressing block is further provided at the edge of the packaging cover plate. The pressing block seals the opening of the wire passing groove and abuts against the part of the flexible circuit board located in the wire passing groove.
9. The electronic device according to claim 1, wherein The branch part is arranged at the edge of the main body part away from the camera module.
10. The electronic device according to claim 1, characterized in that, The device body is further provided with a guiding and sliding bracket. The slider assembly is slidably connected to the guiding and sliding bracket. The flexible circuit board is provided with a stabilizing part fixed to the guiding and sliding bracket. The edge of the stabilizing part extends out a board-to-board connection part.
11. The electronic device according to claim 10, wherein The guiding and sliding bracket is provided with a receiving groove. The receiving groove extends along a direction parallel to the sliding direction of the slider assembly. The stabilizing part covers the receiving groove. And a bending part is provided at the edge of the stabilizing part facing the slider assembly. The bending part is partially located in the receiving groove.
12. The electronic device according to claim 11, wherein The guiding and sliding bracket is provided with two guiding grooves. The slider assembly partially cooperates with the two guiding grooves. The receiving groove is located between the two guiding grooves.
13. The electronic device according to any one of claims 1 to 12, characterized in that, The slider assembly slides and expands and contracts from the middle position of the device body.
Citation Information
Patent Citations
Receiver sound emitting device and mobile terminal
CN106973132A
Mobile terminal with front camera and large LCD
CN207926662U
Electronic device
CN210183402U