CN212649514U - Mobile phone with body part capable of turning over camera and full screen - Google Patents
Mobile phone with body part capable of turning over camera and full screen Download PDFInfo
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- CN212649514U CN212649514U CN202021422914.4U CN202021422914U CN212649514U CN 212649514 U CN212649514 U CN 212649514U CN 202021422914 U CN202021422914 U CN 202021422914U CN 212649514 U CN212649514 U CN 212649514U
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Abstract
The utility model relates to a cell-phone is shielded comprehensively to fuselage part upset camera belongs to the cell-phone field. The flexible screen is arranged on the front surface of the machine body, the machine body is divided into an overturning part on the upper portion and a main body part on the lower portion, the overturning part and the main body part are rotatably connected through a hinged portion, the length of the overturning part is smaller than that of the main body part, and a camera is arranged on the back of the overturning part. The camera is made into a reversible structure, a mobile phone does not need to be turned over, and a set of shooting system is shared no matter whether the mobile phone is used for self shooting or shooting other things.
Description
Technical Field
The utility model relates to a cell-phone is shielded comprehensively to fuselage part upset camera belongs to the cell-phone field.
Background
The full screen is a broader definition of ultra-high screen than the design of the mobile phone in the mobile phone industry. The explanation is that the front of the mobile phone is a screen, and the four frame positions of the mobile phone are designed without frames, so that the screen occupation ratio is close to 100%.
However, due to the limitation of the current technology, the mobile phone with a full screen declared in the industry is only a mobile phone with an ultra-high screen ratio temporarily, and a mobile phone with a front screen ratio of 100% cannot be realized. The reason for restricting the screen occupation ratio is the arrangement of the front camera. At present, the whole screen is approximately realized by a Liuhai screen, a water drop screen, a punching screen, a beauty tip screen, a sliding cover type front camera, a lifting type front camera, a double-sided screen and the like. However, the bang screen, the water drop screen, the punching screen and the beauty tip screen have larger screen gaps, so that the beauty is not good; the sliding cover type front camera and the lifting type front camera are high in manufacturing cost, easy to dust and damage, limited by size and incapable of using a thicker camera, and a thinner camera means a shorter focal length and affects imaging effect; the protective sheath can not be worn to two-sided screen, and two positive and negative screens have increased garrulous screen probability, and the cost also increases simultaneously.
At present, the smart phones of various manufacturers are different in size, and consumers already show aesthetic fatigue, so that a more novel mobile phone style is needed to stimulate the buying desire of the consumers.
SUMMERY OF THE UTILITY MODEL
According to the not enough among the above prior art, the utility model discloses the technical problem who solves is: the camera is made into a turnover structure, the mobile phone does not need to be turned over, and a set of shooting system is shared no matter whether the mobile phone is used for self-shooting or shooting other things.
Fuselage part upset camera screen cell-phone comprehensively, including the fuselage, the positive surface of fuselage sets up flexible screen, the fuselage divide into the main part of upset portion and lower part on upper portion, upset portion and main part rotate through articulated portion to be connected, the length of upset portion is less than the length of main part, the back of upset portion sets up the camera.
The working principle and the process are as follows:
when the outdoor scene shooting device works, the overturning part is unfolded, the overturning part and the main body part are in the same plane, and the camera faces backwards and is used for shooting an outdoor scene. The turnover part is turned over by 180 degrees, so that the turnover part is tightly attached to the main body part, and the camera faces forwards at the moment and is used for self-shooting. The same group of camera assemblies are used for external shooting and self-shooting, a front camera does not need to be arranged, the screen does not need to be punched or a notch is formed, and the screen can be made into a full-face screen, so that the mobile phone is more attractive. The ability of making a video recording of general leading camera will be less than the ability of making a video recording of rear camera greatly, and this application uses rear camera auto heterodyne also can make the auto heterodyne effect better. In addition, the turnover part can be turned to any angle within 0-180 degrees to adapt to different hand-held postures. For example, when upset portion is perpendicular with the main part, the person of shooing can the level hold the main part, not only holds the posture like this and is difficult to tired, and the cell-phone grips firmly moreover, is difficult to fall.
The screen is incompletely sheltered from after the upset portion upset, can look over the auto heterodyne image through the screen that exposes.
Preferably, the turning part is located below the body part. The turnover part is turned over from the lower part, and the exposed screen is arranged on the upper part of the main body, so that different self-photographing modes and holding modes are provided.
Preferably, the turning part is provided at any one of four corners of the main body. Since the main components such as the battery and the main board are not bendable, the larger the turnover part is, the smaller the sizes of the main board and the battery are. The space that the upset portion occupy is little if only the upset one corner, guarantees that mainboard and battery have sufficient place the space.
Compared with the prior art, the utility model beneficial effect who has is:
fuselage part upset camera screen cell-phone comprehensively, upset portion expandes, upset portion and main part are in the coplanar, the camera is towards the back for shoot outdoor scene. The turnover part is turned over by 180 degrees, so that the turnover part is tightly attached to the main body part, and the camera faces forwards at the moment and is used for self-shooting. The same group of camera assemblies are used for external shooting and self-shooting, a front camera does not need to be arranged, the screen does not need to be punched or a notch is formed, and the screen can be made into a full-face screen, so that the mobile phone is more attractive. The ability of making a video recording of general leading camera will be less than the ability of making a video recording of rear camera greatly, and this application uses rear camera auto heterodyne also can make the auto heterodyne effect better. In addition, the turnover part can be turned to any angle within 0-180 degrees to adapt to different hand-held postures. For example, when upset portion is perpendicular with the main part, the person of shooing can the level hold the main part, not only holds the posture like this and is difficult to tired, and the cell-phone grips firmly moreover, is difficult to fall. The camera is made into a reversible structure, a mobile phone does not need to be turned over, and a set of shooting system is shared no matter whether the mobile phone is used for self shooting or shooting other things.
Drawings
Fig. 1 is a schematic front view of an outward-flapping state in embodiment 1 of the present invention;
FIG. 2 is a reverse schematic view of the embodiment 1 of the present invention in an outward beating state;
FIG. 3 is a left side view of embodiment 1 shown in FIG. 1;
fig. 4 is a front schematic view of the self-timer status of embodiment 1 of the present invention;
FIG. 5 is a left side view of the embodiment 1 shown in FIG. 4;
fig. 6 is a schematic view of the turnover part of the utility model in embodiment 1 turning over by 90 degrees;
fig. 7 is a front schematic view of the self-timer status of embodiment 2 of the present invention;
fig. 8 is the embodiment 3 of the present invention.
In the figure: 1. a turning part; 2. a hinge portion; 3. a main body portion; 4. a body; 5. a flexible screen; 6. a camera is provided.
Detailed Description
Embodiments of the present invention are further described below with reference to the accompanying drawings:
example 1
As shown in fig. 1-6, the mobile phone with the camera fully covered by the turnover part of the body comprises a body 4, a flexible screen 5 is arranged on the front surface of the body 4, the body 4 is divided into a turnover part 1 on the upper part and a main body part 3 on the lower part, the turnover part 1 and the main body part 3 are rotatably connected through a hinge part 2, the length of the turnover part 1 is smaller than that of the main body part 3, and the camera 6 is arranged on the back of the turnover part 1.
The working principle and the process are as follows:
in operation, as shown in fig. 1-3, the turning part 1 is unfolded, the turning part 1 and the main body part 3 are in the same plane, and the camera 6 faces backwards for shooting an external scene;
as shown in fig. 4 and 5, the turning part 1 is turned over by 180 degrees, so that the turning part 1 is closely attached to the main body part 3, and the camera 6 faces forward for self-timer shooting;
take outward and use same group's camera 6 subassembly with autodyne, need not to set up leading camera 6, the screen just need not punch or set up the breach so, and the screen just can be made the full-face screen for the cell-phone is more pleasing to the eye. The shooting capability of the front camera 6 is greatly smaller than that of the rear camera 6, and the self-shooting effect can be better by using the rear camera 6 to shoot by self;
in addition, the turning part 1 can be turned to any angle within 0-180 degrees to adapt to different hand-held postures, for example, as shown in fig. 6, when the turning part 1 is perpendicular to the main body part 3, a photographer can horizontally hold the main body part 3, so that not only the holding posture is not easy to be tired, but also the mobile phone is firmly held and is not easy to fall.
The screen is incompletely sheltered from after upset portion 1 overturns, can look over the auto heterodyne image through the screen that exposes.
Example 2
As shown in fig. 8, the turning part 1 is preferably provided below the body part 3. The turning part 1 is turned from the lower part, and the exposed screen is arranged on the upper part of the main body, thereby providing different self-photographing modes and holding modes.
Example 3
As shown in fig. 7, the turning part 1 is preferably provided at any one of four corners of the main body. Since the hinge portion 2 is generally not able to be provided with other components except the flat cable, the main components such as the battery and the main board are not bendable, and the larger the turnover portion 1 is, the smaller the sizes of the main board and the battery are. If only one corner is turned, the space occupied by the turning part 1 is small, and the main board and the battery are ensured to have enough placing space.
Compared with the prior art, the utility model beneficial effect who has is:
4 comprehensive screen cell-phones of 4 partial upset cameras of fuselage, upset portion 1 expandes, upset portion 1 and main part 3 are in the coplanar, camera 6 is towards the back for shoot outdoor scene. The turning part 1 is turned over by 180 degrees, so that the turning part 1 is tightly attached to the main body part 3, and the camera 6 faces forwards at the moment for self-shooting. Take outward and use same group's camera 6 subassembly with autodyne, need not to set up leading camera 6, the screen just need not punch or set up the breach so, and the screen just can be made the full-face screen for the cell-phone is more pleasing to the eye. The ability of making a video recording of general leading camera 6 will be less than the ability of making a video recording of rear camera 6 greatly, and this application uses rear camera 6 also to make the auto heterodyne effect better from shooting. In addition, the turning part 1 can be turned to any angle within 0-180 degrees for adapting to different hand-held postures. For example, when turning part 1 is perpendicular to main part 3, the photographer can the level hold main part 3, so not only the gesture of holding is difficult to tired, and the cell-phone grips firmly moreover, is difficult to fall. The camera 6 is made into a reversible structure, a mobile phone does not need to be turned over, and a set of shooting system is shared no matter whether the mobile phone is used for self shooting or shooting other things.
These and other changes can be made to the present apparatus with reference to the above detailed description. While the above detailed description describes certain embodiments of the present invention and describes the best mode contemplated, no matter how detailed the above appears in text, the present system can be practiced in many ways. The details of the local-based support device, although considerable variation in its implementation details is possible, are nevertheless contained within the device disclosed herein. As noted above, particular technical terms used in describing particular features or aspects of the present apparatus do not imply that the terms are redefined herein to be restricted to specific characteristics, features, or aspects of the system with which the terms are associated. In general, the terms used in the following claims should not be construed to limit the system to the specific embodiments disclosed in the specification, unless the above detailed description section explicitly defines such terms. Accordingly, the actual scope of the system encompasses not only the disclosed embodiments, but also all equivalent ways of practicing or implementing the apparatus covered by the claims.
Claims (4)
1. The utility model provides a cell-phone is shielded to fuselage part upset camera is comprehensive which characterized in that: including fuselage (4), fuselage (4) obverse surface sets up flexible screen (5), and fuselage (4) divide into upset portion (1) and the main part (3) of lower part on upper portion, and upset portion (1) and main part (3) rotate through articulated portion (2) and connect, and the length of upset portion (1) is less than the length of main part (3), and the back of upset portion (1) sets up camera (6).
2. The full-screen mobile phone with partially-flipped camera of claim 1, wherein: the overturning part (1) does not completely shield the screen after overturning.
3. The full-screen mobile phone with a partially-flipped camera as claimed in claim 1 or 2, wherein: the turning part (1) is arranged below the main body part (3).
4. The full-screen mobile phone with a partially-flipped camera as claimed in claim 1 or 2, wherein: the turning part (1) is arranged at any one of the four corners of the main body.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021422914.4U CN212649514U (en) | 2020-07-17 | 2020-07-17 | Mobile phone with body part capable of turning over camera and full screen |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021422914.4U CN212649514U (en) | 2020-07-17 | 2020-07-17 | Mobile phone with body part capable of turning over camera and full screen |
Publications (1)
Publication Number | Publication Date |
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CN212649514U true CN212649514U (en) | 2021-03-02 |
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CN202021422914.4U Active CN212649514U (en) | 2020-07-17 | 2020-07-17 | Mobile phone with body part capable of turning over camera and full screen |
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CN (1) | CN212649514U (en) |
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2020
- 2020-07-17 CN CN202021422914.4U patent/CN212649514U/en active Active
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