cellular phone

By arranging the rear cameras in the corners of the phone's back cover, the problem of excessive camera space was solved, enabling a larger battery capacity and a thinner phone design.

CN111614802BActive Publication Date: 2026-02-06BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN201910136893.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-02-25
Publication Date
2026-02-06
Estimated Expiration
2039-02-25

AI Technical Summary

Technical Problem

The increased number of cameras in current mobile phones has led to excessive internal space usage, affecting the layout of other structures, especially battery capacity and the installation of motherboard electronic components.

Method used

Multiple rear cameras are positioned at the angle between the first and second boundaries of the back cover, arranged in different directions to avoid occupying the central area of ​​the motherboard, and the non-overlapping design reduces obstruction to the front camera and speaker.

Benefits of technology

The increased battery capacity reduced the impact on other electronic components in the middle of the motherboard, lowered the phone's thickness and bezel width, and optimized the internal structural layout.

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Abstract

The present disclosure provides a mobile phone. The mobile phone comprises a back cover and a plurality of rear cameras, the back cover has a first boundary extending along a first direction and a second boundary extending along a second direction, the first boundary and the second boundary are connected and form a non-zero included angle, and the first direction and the second direction both extend along the surface of the back cover; the plurality of rear cameras comprises a first rear camera, a second rear camera and a third rear camera, by arranging the plurality of rear cameras at the included angle between the first boundary and the second boundary of the back cover, the rear cameras are avoided from occupying the middle area of the mainboard during the assembly of the mobile phone, the first rear camera and the second rear camera are arranged along the first boundary, the second rear camera and the third rear camera are arranged along the second boundary, the plurality of rear cameras are avoided from being arranged too long along the first direction, so that there is more space for accommodating the battery, and the plurality of rear cameras can also be avoided from being arranged too long along the second direction.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the field of communication devices, in particular to a mobile phone. BACKGROUND

[0002] Mobile phones are common communication devices. With the advancement of technology, mobile phones have more and more functions, and are no longer limited to voice calls.

[0003] Nowadays, mobile phones are usually provided with cameras, so that the mobile phones can take photos. In order to improve the effect of taking photos, two or even three rear cameras are usually provided on the mobile phone. The increase in the number of cameras means that the cameras need to occupy more space in the mobile phone. When the cameras are arranged, they will affect other structures in the mobile phone. SUMMARY

[0004] The present disclosure provides a mobile phone, which can reduce the influence of the cameras on other structures in the mobile phone. The technical solution is as follows:

[0005] The present disclosure provides a mobile phone, which comprises:

[0006] A back cover, the back cover has a first boundary extending along a first direction and a second boundary extending along a second direction, the first boundary and the second boundary are connected and form a non-zero angle, and the first direction and the second direction both extend along the plate surface of the back cover;

[0007] A plurality of rear cameras located on the back cover, the plurality of rear cameras are all located at the angle between the first boundary and the second boundary, the plurality of rear cameras comprise a first rear camera, a second rear camera and a third rear camera, the first rear camera and the second rear camera are arranged along the first boundary, and the second rear camera and the third rear camera are arranged along the second boundary. By arranging the plurality of rear cameras at the angle between the first boundary and the second boundary of the back cover, the rear cameras are avoided from occupying the middle region of the mainboard when the mobile phone is assembled. By arranging the first rear camera and the second rear camera along the first boundary and arranging the second rear camera and the third rear camera along the second boundary, the plurality of rear cameras are avoided from being arranged too long along the first direction, so that more space is provided for accommodating the battery. Meanwhile, the plurality of rear cameras are also avoided from being arranged too long along the second direction, so that the rear cameras do not affect the installation of other electronic components in the middle of the mainboard.

[0008] In a possible implementation of the embodiment of the present disclosure, the mobile phone further includes a front panel opposite to the back cover, and a front camera on the front panel, and a projection of the plurality of rear cameras on the back cover does not overlap with a projection of the front camera on the back cover. Since the front camera and the rear camera do not overlap, the thickness of the mobile phone can be further reduced.

[0009] In a possible implementation of the embodiment of the present disclosure, a projection of the front camera on the back cover is located at a corner of the back cover. A larger area in the middle of the mainboard can be left for other structures.

[0010] In a possible implementation of the embodiment of the present disclosure, the front panel has at least two front cameras, and each front camera is sequentially and spacedly arranged along the second direction. The front cameras are arranged along the second direction, which can reduce the length of the front cameras arranged along the first direction, and reduce the area of the front cameras shielding the display screen.

[0011] In a possible implementation of the embodiment of the present disclosure, the plurality of rear cameras are located on one side of a center line of the back cover, the front camera is located on the other side of the center line of the back cover, and a midpoint of the second boundary is located on the center line of the back cover. In this way, the loudspeaker can be arranged more centrally.

[0012] In a possible implementation of the embodiment of the present disclosure, the front camera and the first rear camera are arranged along the second direction, and the front camera and the third rear camera are arranged along the first direction. The front camera and the rear camera are arranged in the same area of the mainboard, so that a larger complete space can be left on the mainboard for other structures.

[0013] In a possible implementation of the embodiment of the present disclosure, the plurality of rear cameras further include a fourth rear camera, and a line connecting centers of the first rear camera, the second rear camera, the third rear camera and the fourth rear camera is a rectangle. The fourth rear camera is arranged together with the other three rear cameras, the line connecting the centers of the four rear cameras is a rectangle, and the distribution is compact, which is beneficial to save space.

[0014] In a possible implementation of the embodiment of the present disclosure, a minimum distance from the first rear camera to the second rear camera is equal to a minimum distance from the third rear camera to the second rear camera.

[0015] In one possible implementation of this disclosure, the minimum distance from the first rear camera to the first boundary and the second boundary is equal, or the minimum distance from the second rear camera to the first boundary and the second boundary is equal. Different mobile phones have different internal electronic component arrangements, and different rear camera arrangements can be selected for different mobile phones to facilitate the arrangement of internal electronic components.

[0016] In one possible implementation of this disclosure, the minimum distances from the first rear camera and the second rear camera to the first boundary are equal.

[0017] In one possible implementation of this disclosure, the minimum distances from the second rear camera and the third rear camera to the second boundary are equal.

[0018] In one possible implementation of this disclosure, the mobile phone further includes a rear flash located on the back cover, wherein the minimum distance from the rear flash to the plurality of rear cameras is equal. Including a rear flash can improve the shooting effect of the rear cameras.

[0019] In one possible implementation of this disclosure, the mobile phone further includes a front panel disposed opposite to the back cover and a speaker located on the front panel, wherein the orthographic projections of the plurality of rear cameras on the back cover do not overlap with the orthographic projections of the speaker on the back cover. Since the speaker and the rear cameras do not overlap, this can help to further reduce the thickness of the mobile phone.

[0020] The beneficial effects of the technical solution provided in this disclosure include at least the following: by setting the first rear camera, the second rear camera, and the third rear camera at the angle between the first boundary and the second boundary of the back cover, the rear camera avoids occupying the central area of ​​the motherboard during phone assembly. At the same time, arranging the first and second rear cameras along the first boundary and the second and third rear cameras along the second boundary can avoid multiple rear cameras being arranged too long along the first direction, thus providing more space to accommodate the battery. It can also avoid multiple rear cameras being arranged too long along the second direction, so that the rear cameras do not affect the installation of other electronic components in the central part of the motherboard. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this disclosure, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 is a partial structure schematic diagram of a mobile phone in the related art;

[0023] Figure 2 is a partial structure schematic diagram of another mobile phone in the related art;

[0024] Figure 3 is a partial structure schematic diagram of a mobile phone provided by an embodiment of the present disclosure;

[0025] Figure 4 is a structure schematic diagram of a shell provided by an embodiment of the present disclosure;

[0026] Figure 5 is a partial structure schematic diagram of a mobile phone provided by an embodiment of the present disclosure;

[0027] Figure 6 is a front structure schematic diagram of a mobile phone provided by an embodiment of the present disclosure;

[0028] Figure 7 is Figure 6 a back view of

[0029] Figure 8 is a structure schematic diagram of a mainboard provided by an embodiment of the present disclosure;

[0030] Figure 9 is a back schematic diagram of a mobile phone provided by an embodiment of the present disclosure;

[0031] Figure 10 is a structure schematic diagram of a mobile phone provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0032] In order to make the purpose, technical solutions and advantages of the present disclosure clearer, the following will further describe the embodiments of the present disclosure in combination with the drawings.

[0033] Figure 1 is a partial structure schematic diagram of a mobile phone in the related art. As shown in Figure 1 , the mobile phone includes a shell and a mainboard 20, and the shell includes a back cover 10. The back cover 10 has a mainboard mounting area 11 and a battery mounting area 12. When the mobile phone is assembled, the mainboard 20 is stacked on the mainboard mounting area 11 of the back cover 10, and the battery of the mobile phone is stacked on the battery mounting area 12. The mainboard 20 is a printed circuit board, and a plurality of electronic components are arranged on the mainboard 20. The mainboard 20 is connected with three rear cameras 30. The rear camera refers to a camera located on the back of the mobile phone. Generally, the front of the mobile phone is the side provided with a display screen, and the back of the mobile phone is the side opposite to the front. The three rear cameras 30 are arranged along a first direction (for example, the horizontal direction of the mobile phone). Figure 1The X direction (which can be the length direction of the phone) is arranged on the back cover 10. Since the three rear cameras 30 are arranged in a row and are relatively long, the battery installation area 12 is compressed while the length of the phone remains unchanged. Only a smaller battery can be installed. The smaller the battery, the less power it can store. Therefore, this arrangement of the rear cameras 30 will shorten the phone's battery life.

[0034] Figure 2 This is a schematic diagram of a partial structure of another mobile phone in related technologies. For example... Figure 2 As shown, with Figure 1 The difference between the phones shown is that... Figure 2 The three rear cameras 30 of the phone shown are along the second direction (e.g.) Figure 2 The Y direction (which can be the width direction of the phone) is arranged. Since the three rear cameras 30 are arranged in a row and are relatively long, the rear cameras 30 will occupy the space in the middle of the motherboard 20 if the width of the phone remains unchanged. This will affect the setting of other electronic components in the middle of the motherboard 20, such as the arrangement of the speakers.

[0035] Figure 3 This is a partial structural diagram of a mobile phone provided in an embodiment of this disclosure. Figure 3 As shown, the phone includes a back cover 310 and multiple rear cameras located on the back cover 310.

[0036] The back cover 310 has a first boundary 310a extending along a first direction and a second boundary 310b extending along a second direction. The first boundary 310a and the second boundary 310b are connected and form a non-zero included angle. Both the first direction and the second direction extend along the surface of the back cover 310. For example, when the surface of the back cover 310 is planar, the first direction can be the length direction of the mobile phone, and the second direction can be the width direction of the mobile phone. When the surface of the back cover 310 is curved, or when the back cover 310 is flexible, both the first direction and the second direction are directions that extend within the surface of the back cover 310.

[0037] like Figure 3 As shown, multiple rear cameras are located at the angle between the first boundary 310a and the second boundary 310b. The multiple rear cameras include a first rear camera 331, a second rear camera 332, and a third rear camera 333. The first rear camera 331 and the second rear camera 332 are arranged along the first boundary 310a, and the second rear camera 332 and the third rear camera 333 are arranged along the second boundary 310b.

[0038] The multiple rear cameras are arranged at the included angle between the first boundary and the second boundary of the back cover, so that the multiple rear cameras do not occupy the middle region of the mainboard during assembly of the mobile phone. The first rear camera and the second rear camera are arranged along the first boundary, and the second rear camera and the third rear camera are arranged along the second boundary, so that the multiple rear cameras are not arranged too long in the first direction, and there is more space for accommodating the battery, and the multiple rear cameras are not arranged too long in the second direction, and the rear cameras do not affect the installation of other electronic components in the middle of the mainboard.

[0039] The first boundary 310a and the second boundary 310b of the back cover 310 can be directly connected or connected through a circular arc. The circular arc connection can avoid stress concentration of the back cover 310 and is more convenient for users to use.

[0040] As Figure 3 indicated, the mobile phone can further include a mainboard 320 stacked on the back cover 310, and the three rear cameras are connected with the mainboard 320.

[0041] As Figure 3 indicated, the mainboard mounting area 311 can be rectangular. The mainboard mounting area 311 is set to be rectangular, which can facilitate installation of the mainboard 320. The shape of the mainboard mounting area 311 can be set according to the shape of the mainboard 320. For example, when the mainboard 320 is semicircular, the mainboard mounting area 311 can also be semicircular.

[0042] Figure 4 is a structural schematic diagram of a shell provided by an embodiment of the present disclosure. As Figure 4 indicated, the shell of the mobile phone can further include a front panel 411 and a middle frame 412, the front panel 411 is arranged opposite to the back cover 310, and the middle frame 412 connects the front panel 411 and the back cover 310. The mainboard 320 can be located in a cavity formed by the front panel 411, the middle frame 412 and the back cover 310. The front panel 411 and the middle frame 412 can be detachably connected, or the front panel 411 and the middle frame 412 can be an integrally formed structure. The shell can be a metal structural member or a non-metal structural member, such as plastic.

[0043] The back cover 310 can be rectangular. The back cover 310 has two boundaries extending in a first direction and two boundaries extending in a second direction, the second boundary 310b is one of the two boundaries extending in the second direction, and the first boundary 310a can be any one of the two boundaries of the back cover 310 connected with the second boundary 310b. As Figure 3As shown, facing the three rear cameras (i.e. viewed from the back of the phone), the first border 310a can be the left one of the two borders connected with the second border 310b. In this case, the three rear cameras can be located at the upper left corner of the back cover 310.

[0044] As shown, the minimum distance d1 between the first rear camera 331 and the second rear camera 332 can be equal to the minimum distance d2 between the third rear camera and the second rear camera. In this way, the three rear cameras are arranged in an isosceles triangle. The rear cameras are usually circular, and the minimum distance between two rear cameras refers to the minimum value of the distance between the edges of the two cameras. For example, the minimum distance d1 between the first rear camera 331 and the second rear camera 332 refers to the minimum value of the distance between the edge of the first rear camera 331 and the edge of the second rear camera 332. Figure 3 The minimum distance between the first rear camera 331 and the first border 310a and the second border 310b can be equal, or the minimum distance between the second rear camera 332 and the first border 310a and the second border 310b can be equal. Different internal electronic device arrangements of different phones exist, and different arrangements of rear cameras can be selected for different phones to facilitate the arrangement of internal electronic devices of the phone. For example

[0045] As shown in FIG. 3B, the minimum distance between the second rear camera 332 and the first border 310a and the second border 310b is equal, both being d3. The minimum distance between the second rear camera 332 and the first border 310a is less than the minimum distance between the first rear camera 331 and the first border 310a. As shown in FIG. 3C Figure 3 As shown in FIG. 3B, the minimum distance between the second rear camera 332 and the first border 310a and the second border 310b is equal, both being d3. The minimum distance between the second rear camera 332 and the first border 310a is less than the minimum distance between the first rear camera 331 and the first border 310a. As shown in FIG. 3C Figure 5 As shown in FIG. 3B, the minimum distance between the second rear camera 332 and the first border 310a and the second border 310b is equal, both being d3. The minimum distance between the second rear camera 332 and the first border 310a is less than the minimum distance between the first rear camera 331 and the first border 310a. As shown in FIG. 3C

[0046] In addition, the minimum distance between the first rear camera 331 and the second rear camera 332 and the first border 310a can be equal. In this way, the arrangement of the rear cameras is more orderly, facilitating the processing of the back cover 310.

[0047] Similarly, the minimum distance between the second rear camera 332 and the third rear camera 333 and the second border 310b can be equal. In this way, the arrangement of the rear cameras is more orderly, facilitating the processing of the back cover 310.

[0048] As shown in FIG. 3B, the minimum distance d1 between the first rear camera 331 and the second rear camera 332 can be equal to the minimum distance d2 between the third rear camera and the second rear camera. In this way, the three rear cameras are arranged in an isosceles triangle. The rear cameras are usually circular, and the minimum distance between two rear cameras refers to the minimum value of the distance between the edges of the two cameras. For example, the minimum distance d1 between the first rear camera 331 and the second rear camera 332 refers to the minimum value of the distance between the edge of the first rear camera 331 and the edge of the second rear camera 332. Figure 4As shown, the phone may also include a speaker 340 located on the front panel 411. The orthographic projections of the first rear camera 331, the second rear camera 332, and the third rear camera 333 on the back cover 310 may not overlap with the orthographic projection of the speaker 340 on the back cover 310. This helps to reduce the thickness of the phone. If the orthographic projection of the speaker 340 on the back cover 310 overlaps with the orthographic projection of any one of the three rear cameras, since both the rear cameras and the speaker 340 protrude from the surface of the motherboard 320, this would increase the thickness of the phone, which is not conducive to the design of a thin and light phone.

[0049] The orthographic projection of the speaker 340 on the back cover 310 can be located at the edge of the back cover 310, for example, at the second boundary 310b. This can minimize the space occupied by the speaker 340 on the display screen and help to narrow the bezel of the phone.

[0050] like Figure 4 As shown, the phone may also include a front-facing camera 350 located on the front panel 411. The orthographic projections of the multiple rear cameras on the back cover 310 and the orthographic projection of the front-facing camera 350 on the back cover 310 may not overlap. Here, the front-facing camera 350 refers to the camera located on the front of the phone. This arrangement of the front-facing camera 350 also helps to reduce the thickness of the phone. If the orthographic projection of the front-facing camera 350 on the back cover 310 overlaps with the orthographic projection of any one of the multiple rear cameras, since the front-facing camera 350 also protrudes from the surface of the motherboard 320, this would increase the thickness of the phone, which is detrimental to a slim and lightweight design.

[0051] Alternatively, the front-facing camera 350's projection onto the back cover 310 can be located in a corner of the back cover 310. For example... Figure 3 In the middle, the front-facing camera 350 is projected onto the back cover 310 at the upper right corner of the back cover 310. Placing the front-facing camera 350 in the corner of the back cover 310 frees up a larger area in the middle of the motherboard 320 for other structures.

[0052] In one embodiment, the rear camera and the front camera can be located on either side of the center line of the back cover 310 of the phone. For example, as Figure 3As shown, the three rear cameras can be located on one side of the center line m of the back cover 310, and the front camera 350 can be located on the other side of the center line m of the back cover 310. The midpoint of the second boundary 310b is located on the center line m of the back cover 310. In this way, the loudspeaker 340 can be conveniently arranged in the second direction. If the front camera 350 and the rear cameras are arranged on the same side of the center line m, and the front camera 350 does not overlap any of the rear cameras, the front camera 350 and the rear cameras will be arranged in a relatively long manner, which can affect the arrangement of other electronic components in the middle of the main board 320.

[0053] Optionally, the front panel 411 can have at least two front cameras 350, and each front camera 350 is arranged in the second direction in sequence and at intervals. In order to improve the quality of the photos taken by the front camera 350, the number of front cameras 350 can be increased. Arranging each front camera 350 in the second direction in sequence and at intervals can avoid affecting the arrangement of the display screen and avoid the frame of the mobile phone being too wide in the first direction. Figure 3 In the embodiment, only two front cameras 350 are shown by way of example. In other possible implementations of the present disclosure, there can be three or more front cameras 350.

[0054] The two front cameras 350 can be located on the same side of the center line m in the second direction. In this way, a larger space can be left in the middle of the main board 320 for other structures. Of course, when arranged, the two front cameras 350 can also be arranged on the two sides of the center line m, respectively.

[0055] In another possible implementation, the front camera and the rear camera can be located on the same side of the center of the back cover 310 of the mobile phone. For example, as shown in FIG. 6, a front camera 350 and a first rear camera 331 can be arranged in the second direction, and the front camera 350 and a third rear camera 333 can be arranged in the first direction. Figure 5 In this way, the front camera 350 and the rear camera are arranged in the same area of the back cover 310, so that a larger and complete space can be left on the main board 320 for other structures.

[0056] In another possible implementation, part of the front cameras can be located on the same side of the center line of the back cover 310 of the mobile phone as the rear cameras, and part of the front cameras can be located on the two sides of the center line of the back cover 310 of the mobile phone as the rear cameras. For example, as shown in FIG. 7, a front camera 350 and a first rear camera 331 can be arranged in the second direction, and the front camera 350 and a third rear camera 333 can be arranged in the first direction. Figure 6As shown, the phone has three front-facing cameras 350, which are spaced apart along a second direction. Two of the front-facing cameras 350 are located on one side of the center line m, and the third front-facing camera 350 is located on the other side of the center line m. Alternatively, all three front-facing cameras 350 can be placed on the same side of the center line m. Both the front-facing cameras 350 and the speaker 340 can be arranged along the edge of the back cover 310, which helps to increase the area of ​​the display screen 360 and reduce the bezels.

[0057] Optionally, the phone may also include a front-facing flash 380, which may be positioned adjacent to a front-facing camera 350. Setting up the front-facing flash 380 can help improve the shooting performance of the front-facing camera 350.

[0058] Figure 7 yes Figure 6 The rear view. (e.g.) Figure 7 As shown, the first boundary 310a can be the rightmost of the two boundaries connected to the second boundary 310b. In this case, the three rear cameras are located in the upper right corner of the phone's back cover 310. For different phone models, the rear cameras can be placed in the upper left or upper right corner of the back cover 310 to meet different design requirements.

[0059] like Figure 7 As shown, the phone may also include a rear flash 370 located on the back cover 310, and the minimum distance from the rear flash 370 to the multiple rear cameras can be equal. Setting the rear flash 370 can improve the shooting effect of the rear cameras. Since the minimum distance from the rear flash 370 to each rear camera is equal, it can be ensured that each rear camera receives the same amount of light when the rear flash 370 is lit.

[0060] Optionally, the aforementioned first rear camera 331, second rear camera 332 and third rear camera 333 can all be mounted on the motherboard. Figure 8 This is a schematic diagram of a motherboard structure provided in an embodiment of this disclosure. Figure 8As shown, the main board 320 can have three camera mounting holes 320a, and the first rear camera 331, the second rear camera 332 and the third rear camera 333 are respectively located in the three camera mounting holes 320a. By arranging the camera mounting holes 320a on the main board 320, the height of the rear camera protruding from the main board 320 is reduced after the rear camera is arranged in the camera mounting hole 320a, so that the thickness of the mobile phone can be reduced. At the same time, since the first rear camera 331, the second rear camera 332 and the third rear camera 333 are all located at the angle between the first boundary 310a and the second boundary 310b, away from the middle of the main board 320, the camera mounting hole 320a has less influence on the wiring of the main board 320.

[0061] Optionally, the main board 320 can also be provided with a camera mounting hole 320a corresponding to each front camera 350, so that the front camera 350 can also be installed in the camera mounting hole 320a, thereby further reducing the thickness of the mobile phone. At the same time, arranging the front camera 350 at the corner of the back cover 310 can reduce the influence of the camera mounting hole 320a for installing the front camera 350 on the wiring of the main board 320.

[0062] As shown in Figure 8 , the main board 320 can also have a speaker mounting hole 320b, and the speaker 340 can be located in the speaker mounting hole 320b. After the speaker 340 is installed in the speaker mounting hole 320b, the thickness of the mobile phone can also be reduced.

[0063] Figure 9 is a schematic diagram of the back of a mobile phone provided by an embodiment of the present disclosure. As shown in Figure 9 , the mobile phone can also include a fourth rear camera 334, and the line connecting the centers of the first rear camera 331, the second rear camera 332, the third rear camera 333 and the fourth rear camera 334 can form a rectangle. Arranging the fourth rear camera 334 together with the other three rear cameras, and the line connecting the centers of the four rear cameras forms a rectangle, which is compactly distributed and helps to save space.

[0064] As shown in Figure 9 , the rear flash 370 can be located at the center of the rectangle formed by the line connecting the centers of the four rear cameras, so that the minimum distance from the rear flash 370 to the four rear cameras is equal, and the rear flash 370 can make each rear camera receive the same light when it is turned on.

[0065] Figure 9 As shown in the mobile phone, the arrangement of the first rear camera 331, the second rear camera 332 and the third rear camera 333 can refer to Figures 3 to 8The four rear cameras can be arranged in any one of the manners shown in the mobile phone. The two straight sides of the rectangle formed by the connecting line of the centers of the four rear cameras can be parallel to the first boundary 310a and the second boundary 310b respectively, or can not be parallel to the first boundary 310a and the second boundary 310b respectively.

[0066] Figure 9 The arrangement of the front camera, the front flash, and the speaker in the mobile phone shown can refer to the arrangement of the front camera, the front flash, and the speaker in the mobile phone shown in Figures 3 to 8 The arrangement of the front camera, the front flash, and the speaker in the mobile phone shown.

[0067] Figure 10 is a structural schematic diagram of a mobile phone provided by an embodiment of the disclosure. As shown in Figure 10 The mobile phone shown can further include a secondary board 430, and the orthographic projections of the main board 320, the battery 420, and the secondary board 430 on the back cover 310 are distributed in the first direction in sequence. The battery 420 can be located in the battery mounting area 312 (refer to Figure 3 ). The secondary board 430 is also a printed circuit board, and the secondary board 430 is provided with electronic components and a microphone.

[0068] Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This application is intended to cover any variations, uses or adaptive changes of this disclosure that follow the general principles of the disclosure and include common knowledge or conventional technical means in the art not disclosed in the disclosure. The specification and examples are only regarded as exemplary, and the true scope and spirit of the disclosure are indicated by the appended claims.

[0069] It should be understood that the disclosure is not limited to the precise structures described above and shown in the drawings, and various modifications and changes can be made without departing from the scope thereof. The scope of the disclosure is limited only by the appended claims.

Claims

1. A handset, comprising: The application relates to a mobile phone, which comprises: a back cover (310) having a first boundary (310a) extending along a first direction and a second boundary (310b) extending along a second direction, the first boundary (310a) and the second boundary (310b) being connected and forming a non-zero included angle, the first direction and the second direction both extending along the surface of the back cover (310); a plurality of rear cameras located on the back cover (310), the plurality of rear cameras being located at the included angle of the first boundary (310a) and the second boundary (310b), the plurality of rear cameras comprising a first rear camera (331), a second rear camera (332) and a third rear camera (333), the first rear camera (331) and the second rear camera (332) being arranged along the first boundary (310a), and the second rear camera (332) and the third rear camera (333) being arranged along the second boundary (310b); a rear flash (370) located on the back cover (310), the minimum distance from the rear flash (370) to the plurality of rear cameras being equal; a main board (320) stacked on the back cover (310), the plurality of rear cameras being connected with the main board (320); a front panel (411) arranged opposite to the back cover (310); a front camera (350) located on the front panel (411), one front camera (350) being arranged on the same side of the center line of the back cover (310) as the three rear cameras.

2. The handset of claim 1, wherein, The front camera (350) and the plurality of rear cameras do not overlap in the orthographic projection on the back cover (310).

3. The handset of claim 2, wherein, The orthographic projection of the front camera (350) on the back cover (310) is located at a corner of the back cover (310).

4. The handset of claim 2, wherein, The front panel (411) has at least two front cameras (350), and the front cameras (350) are sequentially and spacedly arranged along the second direction.

5. The handset of claim 2, wherein, The front camera (350) and the first rear camera (331) are arranged along the second direction, and the front camera (350) and the third rear camera (333) are arranged along the first direction.

6. The handset of any one of claims 1-5, wherein, The minimum distance from the first rear camera (331) to the second rear camera (332) is equal to the minimum distance from the third rear camera (333) to the second rear camera (332).

7. The handset of any one of claims 1-5, wherein, The minimum distance from the first rear camera (331) to the first boundary (310a) and the second boundary (310b) is equal, or the minimum distance from the second rear camera (332) to the first boundary (310a) and the second boundary (310b) is equal.

8. The handset of any one of claims 1-5, wherein, The minimum distance from the first rear camera (331) to the first boundary (310a) is equal to the minimum distance from the second rear camera (332) to the first boundary (310a).

9. The handset of any one of claims 1-5, wherein, The minimum distance from the second rear camera (332) and the third rear camera (333) to the second boundary (310b) is equal.

10. The handset of any one of claims 1-5, wherein, The mobile phone further comprises a front panel (411) arranged opposite to the back cover (310) and a speaker (340) located on the front panel (411), and the orthogonal projection of the plurality of rear cameras on the back cover (310) does not overlap with the orthogonal projection of the speaker (340) on the back cover (310).

Citation Information

Patent Citations

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    CN209218155U