A height-adjustable and rotating mobile phone camera
By combining an electric slide and airbag clamp with an electromagnet and elastic rope design, the problem of reduced fixation effect of pop-up mobile phone cameras after long-term use is solved, achieving stable lifting and heat dissipation, and improving the user experience.
Patent Information
- Application Number
- CN202411902956.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2044-12-23
AI Technical Summary
Existing pop-up phone cameras lose their stability after prolonged use, becoming prone to wobbling, and may obstruct the screen when rotating, affecting the user experience.
The device uses an electric sliding table to control lifting and lowering, airbag clamping for fixation, and electromagnets and elastic ropes to improve the fixation effect. It also uses airbags and airflow for cooling and buffering.
It improves the camera's stability, prevents friction and shaking, enhances heat dissipation, prevents screen obstruction, and protects internal components.
Smart Images

Figure CN119946172B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mobile phone camera technology, and in particular to a liftable and rotatable mobile phone camera. Background Technology
[0002] The core of a pop-up phone camera lies in its ingenious mechanical structure and driving mechanism. This type of camera hides the pop-up lens module within the phone's body through a physical mechanism, thus concealing the front-facing camera and achieving a full-screen design. However, existing pop-up phone cameras have relatively poor fixation.
[0003] As provided in the authorization announcement CN110784574B, a rotating adjustment device for a mobile phone camera, under normal conditions, the mounting block is housed in the mounting groove, and the locking pad is located between the second arc-shaped piece and the bottom of the sliding groove, limiting the deformation of the buffer and preventing the lug from coming out of the second arc-shaped piece; the anti-dislodgement component in the device can prevent the sliding block from coming out of the mounting groove; in addition, the lug engages with the first arc-shaped piece to prevent the mounting block from retracting into the mounting groove when a person takes a picture; the buffer can cushion the sliding block when the mounting block is retracted into the mounting groove, preventing the sliding block from making direct rigid contact with the mobile phone, thereby reducing the vibration experienced by the camera in the mounting groove and reducing the possibility of the camera being damaged by vibration; in addition, the buffer can also fix the sliding block to a certain extent, so that when the mounting block is housed in the mounting groove, it will not protrude from the mounting groove due to a person shaking the mobile phone.
[0004] It has significant drawbacks: the push block is located on the outside of the phone and is manually moved. When the phone is in a pocket or other places and shakes, it scrapes the push block, causing it to disengage from its original position and no longer restrain the buffer, thus reducing the camera's fixation effectiveness. Furthermore, after prolonged use, the elasticity gradually weakens, reducing the restraining effect on the lugs. Because the second guide plate and the second curved plate are elastic, when the elasticity weakens and the user shakes the phone forcefully, the lugs will squeeze the second curved plate, disengaging from its restraint, resulting in lower camera fixation. Additionally, the lugs slide within the groove; after repeated friction over a long period, gaps develop between the lugs and the groove, causing the entire camera structure to wobble within the mounting groove, leading to unstable lifting and lowering. Finally, the rotating mounting block can obstruct the screen, affecting the user experience. Summary of the Invention
[0005] This application provides a height-adjustable and rotatable mobile phone camera, solving the problems of existing technologies where the push block is located on the outside of the phone. When the phone is shaken while in a pocket or other position, the push block can be scraped, causing it to disengage and lose its restraining effect on the buffer, thus reducing the camera's stability. Furthermore, after prolonged use, the elasticity gradually weakens, reducing the restraining effect on the lug. Since the second guide plate and the second arc-shaped plate are elastic, when the elasticity weakens and the user shakes the phone forcefully, the lug can squeeze the second arc-shaped plate, disengaging from its restraint and further reducing the camera's stability. Additionally, the lug slides within the groove, and after repeated friction over time, gaps can form between the lug and the groove, causing the entire camera structure to wobble within the mounting groove, resulting in unstable height adjustment. Finally, the rotating mounting block can obstruct the screen, affecting the user experience. This invention eliminates the need for manual prying. The movable push block reduces the possibility of accidental contact and prevents a decrease in the fixing effect of the protrusion. The rotating component is also designed to rotate, preventing the elasticity from gradually weakening after prolonged use, which would reduce the fixing effect on the protrusion. A gap is left between the protrusion and the second groove, and the device is controlled by an electric slide to prevent shaking caused by friction. Simultaneously, the rotating component clamps and fixes the protrusion through the expansion of the airbag; the continuous expansion of the airbag improves the fixing effect. While the first limiting component clamps, the airbag in the second limiting component continuously inflates and deflates, causing the rotating component to swing, fanning the internal air, increasing airflow, and cooling. When the second limiting component clamps, the airbag in the first limiting component continuously inflates and deflates, causing the rotating component to swing, fanning the internal air, increasing airflow, and cooling. Upon impact, the airbag can be compressed, providing a cushioning and protective effect. When folded, the camera body fits snugly against the lighting lamp, not obstructing the screen and improving usability.
[0006] This application provides a liftable and rotatable mobile phone camera, including a main body component and a connecting component;
[0007] The main components include the phone body, groove one, groove two, lifting block, and protrusion;
[0008] The upper side of the mobile phone body has a groove 1, the groove 1 extends through the rear side of the mobile phone body, and the groove 1 has two grooves symmetrically arranged on both sides.
[0009] The lifting block is slidably disposed in the first groove, and the protrusion is fixed on one side of the lifting block and located in the second groove;
[0010] The protrusion is a half-cylinder shape divided along the axial direction;
[0011] The connecting component is disposed within the lifting block;
[0012] It also includes limit component one and limit component two;
[0013] The limiting component one and the limiting component two have the same structure and are symmetrically arranged in the same groove two. The limiting component one and the protrusion are located in the same groove two.
[0014] The first limiting component is disposed on the bottom side of the inner groove 2, and the second limiting component is disposed on the top side of the inner groove 2.
[0015] The limiting component includes a fixing block, a groove, an air pump, an airbag, and a rotating component;
[0016] The fixing block is rectangular in shape and is fixed to the bottom side of the inner groove.
[0017] In the initial state, one end of the fixed block abuts against the lifting block;
[0018] The fixing block has a groove three on its upper part, and the groove three is arc-shaped;
[0019] In the initial state, the protrusion is tightly attached to the inner wall of the groove.
[0020] The air pump is fixed inside the fixing block;
[0021] The rotating component is arc-shaped, and its lower end is rotatably mounted on the upper side of the fixed block.
[0022] In its initial state, one side of the rotating component is in close contact with the protrusion;
[0023] The airbag is fixed on the side of the rotating part away from the protrusion, and the airbag is fixed on the upper side of the fixed block. The output end of the air pump is connected to the inside of the airbag.
[0024] As an improvement, the axis of the protrusion is perpendicular to the height direction of the groove.
[0025] The two ends of the protrusion along the axial direction do not contact the second groove;
[0026] The axis of the third groove is parallel to the axis of the protrusion;
[0027] The axis of the rotating component is parallel to the axis of the groove three.
[0028] As an improvement, the main component also includes heat dissipation holes, a camera body, a lighting lamp, a sealing component, an electric slide, and a slider;
[0029] The mobile phone body has a heat dissipation hole on one side, the heat dissipation hole is located on one side of the groove one, and the heat dissipation hole is connected to the groove two on which the limiting component one is installed;
[0030] A waterproof and breathable membrane is fixed inside the heat dissipation holes;
[0031] The lighting lamp is fixed to the upper side of the lifting block, and the camera body is rotatably connected to the upper side of the lighting lamp via a hinge;
[0032] Both the lighting lamp and the camera body are slidably mounted in the groove.
[0033] The electric slide is fixed in the second groove, and the electric slide and the limiting component are installed in different grooves in the second.
[0034] The slider is slidably mounted on the electric slide table;
[0035] One end of the slider is fixed to the lifting block, the sealing member is located above the electric slide table, and the sealing member is fixed in the second groove;
[0036] The connection assembly includes a winder and a connecting cable;
[0037] The lifting block has a fixed winding device inside, and the winding device has a winding connecting line inside. One end of the connecting line is connected to the mobile phone body, and the other end of the connecting line away from the mobile phone body is connected to the camera body and the lighting lamp.
[0038] As an improvement, the length direction of the electric slide is parallel to the lifting direction of the lifting block, and the length direction of the electric slide is the sliding direction of the slider.
[0039] As an improvement, in the initial state, one end of the sealing member abuts against the camera body;
[0040] In the initial state, the fixing block inside the limiting component two is in contact with the camera body.
[0041] As an improvement, the limiting component one also includes a swing element, a magnet, and an electromagnet;
[0042] There are two swinging components and magnets, and they correspond one-to-one. The swinging component is arc-shaped.
[0043] Two oscillating components are located on both sides of the rotating component, and the oscillating components and the rotating component are connected by rubber.
[0044] The magnet is located on the side of the oscillating component away from the rotating component;
[0045] The electromagnet is fixed to the side of the fixed block away from the rotating part;
[0046] The electromagnet is a DC electromagnet.
[0047] As an improvement, in the initial state, the axis of the swinging member and the axis of the rotating member are on the same straight line;
[0048] In its initial state, one side of the swing member is in close contact with the protrusion.
[0049] As an improvement, the limiting component one also includes an elastic rope;
[0050] One end of the elastic rope is fixed to the side of the rotating component away from the airbag, and is located at the end of the rotating component away from the fixed block;
[0051] The end of the elastic rope away from the rotating part is fixed in the groove three;
[0052] There are two protrusions, which are symmetrically arranged, with a gap between the two protrusions;
[0053] The elastic rope is hollow inside and communicates with the airbag.
[0054] As an improvement, when the protrusion abuts against the groove, the elastic rope is located between the two protrusions.
[0055] As an improvement, the main body component also includes a rubber block;
[0056] There are two rubber blocks, each corresponding to one of the two protrusions;
[0057] The structure of the rubber block is consistent with the structure of the protrusion, and the axis of the rubber block and the axis of the protrusion are on the same straight line;
[0058] The two rubber blocks are fixed to the sides of the two protrusions that are far apart from each other;
[0059] In its initial state, the swinging component is in close contact with the rubber block;
[0060] The bump is elastic.
[0061] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:
[0062] Firstly, the device eliminates the need for manual manipulation of the push block, reducing the possibility of accidental activation and preventing a decrease in the fixing effect on the protrusion. Furthermore, the rotating component is designed to rotate, preventing the elasticity from gradually weakening after prolonged use, which could reduce the fixing effect on the protrusion. A gap is left between the protrusion and the second groove, and the device's lifting and lowering are controlled by an electric slide to prevent wobbling caused by friction. Simultaneously, the rotating component clamps and fixes the protrusion through the expansion of the airbag; the continuous expansion of the airbag improves the fixing effect. While the first limiting component clamps, the airbag in the second limiting component continuously inflates and deflates, causing the rotating component to swing, fanning the internal air, increasing airflow, and cooling. Conversely, while the second limiting component clamps, the airbag in the first limiting component continuously inflates and deflates, causing the rotating component to swing, fanning the internal air, increasing airflow, and cooling. Upon impact, the airbag can be compressed, providing a cushioning and protective effect. After folding, the camera body fits snugly against the lighting lamp, not obstructing the screen and improving usability.
[0063] Secondly, by using an electromagnet to attract a magnet, the clamping effect on the bump can be further improved, maintaining stability even in bumpy or vibrating environments, and preventing it from loosening or falling off. It also improves heat dissipation; when the electromagnet and magnet repel each other, a tiny gap is created between the oscillating component and the bump. These gaps act as heat dissipation channels, helping the phone's internal heat dissipate. The continuous repulsion and attraction between the electromagnet and magnet also promotes airflow, further enhancing heat dissipation. For users who take photos or record videos for extended periods, this effectively prevents performance degradation or device damage caused by overheating.
[0064] Thirdly, the expansion of the elastic rope can further improve the fixing effect on the protrusion. At the same time, the elastic rope can pull the rotating part at all times, providing a downward pulling force to the rotating part, so that the rotating part can always be in contact with the protrusion, improving the contact fixing effect on the protrusion. Furthermore, since the elastic rope has elasticity and always pulls the rotating part, when the protrusion enters the groove three and the airbag inflates to push the rotating part back to its original position, the pulling of the elastic rope can accelerate the rotation and reset speed of the rotating part.
[0065] Fourth, adding rubber blocks causes them to deform under pressure after being pressed by the swinging component, causing them to bulge into the gaps on both sides and fit against the inner wall of the second groove, increasing friction and further improving the fixing effect. At the same time, when the camera body is impacted, the rubber blocks and deformable protrusions can also absorb some energy, playing a buffering role and reducing the impact transmitted to the internal parts of the phone, thereby protecting the delicate components inside the phone from damage. During the swinging process, the swinging component's swing trajectory becomes longer, allowing the swinging component to accelerate over a distance and continuously strike the rubber blocks, causing them to deform and fit against the second groove, improving the fit. Attached Figure Description
[0066] Figure 1 This is a rear view of a liftable and rotatable mobile phone camera according to the present invention.
[0067] Figure 2 This is a rear cross-sectional view of a liftable and rotatable mobile phone camera according to the present invention.
[0068] Figure 3 This invention relates to a height-adjustable and rotatable mobile phone camera. Figure 2 Enlarged view of the structure at point A inside;
[0069] Figure 4 This is a schematic diagram of the rotating component of a height-adjustable and rotatable mobile phone camera according to the present invention.
[0070] Figure 5 This invention relates to a height-adjustable and rotatable mobile phone camera. Figure 4Enlarged view of the structure at point B inside;
[0071] Figure 6 This is a schematic diagram of the lifting block of a liftable and rotatable mobile phone camera in the rising state according to the present invention.
[0072] Figure 7 This is a rotating front view of the camera body of a liftable and rotatable mobile phone camera according to the present invention.
[0073] Figure 8 This is a schematic diagram of the installation of the swing component of a height-adjustable and rotatable mobile phone camera according to the present invention. Figure 1 ;
[0074] Figure 9 This is a schematic diagram of the installation of the swing component of a height-adjustable and rotatable mobile phone camera according to the present invention. Figure 2 ;
[0075] Figure 10 This is a schematic diagram of the installation of an elastic cord for a liftable and rotatable mobile phone camera according to the present invention.
[0076] Figure 11 This invention relates to a height-adjustable and rotatable mobile phone camera. Figure 10 Enlarged view of the structure at point C;
[0077] Figure 12 This is a schematic diagram of the installation of two protrusions in a liftable and rotatable mobile phone camera according to the present invention;
[0078] Figure 13 This is a schematic diagram of the installation of a rubber block for a height-adjustable and rotatable mobile phone camera according to the present invention. Figure 1 ;
[0079] Figure 14 This is a schematic diagram of the installation of a rubber block for a height-adjustable and rotatable mobile phone camera according to the present invention. Figure 2 .
[0080] In the diagram: 100, main component; 110, phone body; 111, groove one; 112, groove two; 113, heat dissipation hole; 120, camera body; 130, lighting lamp; 140, lifting block; 150, protrusion; 160, sealing component; 170, electric slide; 180, slider; 190, rubber block;
[0081] 200. Limiting component one; 210. Fixing block; 211. Groove three; 220. Air pump; 230. Airbag; 240. Rotating component; 250. Swinging component; 260. Magnet; 270. Electromagnet; 280. Elastic rope;
[0082] 300. Connecting component; 310. Rewinder; 320. Connecting cable;
[0083] 400. Limiting component two. Detailed Implementation
[0084] To facilitate understanding of the present invention, a more complete description of this application will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the invention. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to enable a more thorough and complete understanding of the disclosure of the present invention.
[0085] It should be noted that the terms "vertical," "horizontal," "up," "down," "left," "right," and similar expressions used in this article are for illustrative purposes only and do not represent the only possible implementation.
[0086] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to limit the invention; the term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0087] Example 1: As Figures 1-6 As shown, this application discloses a liftable and rotatable mobile phone camera, including a main body component 100 and a connecting component 300;
[0088] The main component 100 includes a mobile phone body 110, a first groove 111, a second groove 112, a lifting block 140, and a protrusion 150;
[0089] The upper side of the mobile phone body 110 has a groove 111, which extends through the rear side of the mobile phone body 110. The groove 111 has two symmetrical grooves 112 on both sides.
[0090] The lifting block 140 is slidably disposed in the first groove 111, and the protrusion 150 is fixed on one side of the lifting block 140 and located in the second groove 112;
[0091] The protrusion 150 is a half-cylinder shape divided along the axial direction, and the axis of the protrusion 150 is perpendicular to the height direction of the groove 111.
[0092] The two ends of the protrusion 150 along the axial direction do not contact the groove 112.
[0093] The connecting component 300 is disposed within the lifting block 140;
[0094] It also includes limit component 1 200 and limit component 2 400;
[0095] The limiting component 200 and the limiting component 400 have the same structure and are symmetrically arranged in the same groove 112. The limiting component 200 and the protrusion 150 are located in the same groove 112.
[0096] The limiting component 200 is disposed on the bottom side of the groove 112, and the limiting component 400 is disposed on the top side of the groove 112.
[0097] The limiting component 200 includes a fixing block 210, a groove 211, an air pump 220, an airbag 230, and a rotating component 240;
[0098] The fixing block 210 is rectangular and is fixed to the bottom side of the inner groove 112.
[0099] In the initial state, one end of the fixed block 210 abuts against the lifting block 140;
[0100] The fixing block 210 has a groove 211 on its upper part, and the groove 211 is arc-shaped.
[0101] In the initial state, the protrusion 150 is in close contact with the inner wall of the groove 211, and the axis of the groove 211 is parallel to the axis of the protrusion 150.
[0102] The air pump 220 is fixed inside the fixing block 210;
[0103] The rotating component 240 is arc-shaped, and the axis of the rotating component 240 is parallel to the axis of the groove 211. The lower end of the rotating component 240 is rotatably mounted on the upper side of the fixed block 210.
[0104] In the initial state, one side of the rotating component 240 is in close contact with the protrusion 150;
[0105] The airbag 230 is fixed on the side of the rotating part 240 away from the protrusion 150, and the airbag 230 is fixed on the upper side of the fixing block 210. The output end of the air pump 220 is connected to the inside of the airbag 230.
[0106] The main component 100 also includes a heat dissipation hole 113, a camera body 120, a lighting lamp 130, a sealing component 160, an electric slide 170, and a slider 180;
[0107] The mobile phone body 110 has a heat dissipation hole 113 on one side. The heat dissipation hole 113 is located on one side of the groove 111 and is connected to the groove 112 on which the limiting component 200 is installed.
[0108] A waterproof and breathable membrane is fixed inside the heat dissipation hole 113;
[0109] The lighting lamp 130 is fixed on the upper side of the lifting block 140, and the camera body 120 is rotatably connected to the upper side of the lighting lamp 130 via a hinge.
[0110] Both the lighting lamp 130 and the camera body 120 are slidably disposed in the groove 111.
[0111] The electric slide 170 is fixed in the second groove 112, and the electric slide 170 and the limiting component 200 are installed in different second grooves 112.
[0112] The slider 180 is slidably mounted on the electric slide table 170. The length direction of the electric slide table 170 is parallel to the lifting direction of the lifting block 140, and the length direction of the electric slide table 170 is the sliding direction of the slider 180.
[0113] One end of the slider 180 is fixed on the lifting block 140, the sealing member 160 is located above the electric slide table 170, and the sealing member 160 is fixed in the groove 112.
[0114] In the initial state, one end of the sealing member 160 abuts against the camera body 120;
[0115] In the initial state, the fixing block 210 inside the limiting component 2 400 abuts against the camera body 120;
[0116] The connection assembly 300 includes a winder 310 and a connecting cable 320;
[0117] The lifting block 140 has a fixed winding device 310 inside, and the winding device 310 has a winding connecting line 320 inside. One end of the connecting line 320 is connected to the mobile phone body 110, and the other end of the connecting line 320 away from the mobile phone body 110 is connected to the camera body 120 and the lighting lamp 130.
[0118] The camera body 120, the wind-up device 310, and the motorized slide 170 are all existing technologies and will not be described in detail here.
[0119] When the front-facing camera is needed for shooting, the operator opens the shooting interface. The air pump 220 in the limiting component 200 operates, causing the airbag 230 to continuously deflate, preventing the rotating component 240 from obstructing the protrusion 150. Then, the electric slide 170 operates, driving the lifting block 140 to slide within the groove 111, thereby allowing the camera body 120 and the lighting lamp 130 to extend out of the groove 111. After the lifting is complete, the air pump 220 in the limiting component 200 inflates the airbag 230, which is then inflated by the rotating component 240. 40 clamps and limits the protrusion 150; and the camera body 120, after rising, is manually rotated 180 degrees by the operator through the hinge connection between the camera body 120 and the lighting lamp 130, so that the camera body 120 faces forward to become a front-facing camera; after use, the operator exits the shooting interface and manually resets the camera body 120, the air pump 220 in the limiting component 200 works, causing the airbag 230 to continuously deflate, so that the rotating part 240 no longer... After intercepting the protrusion 150, the electric slide 170 operates, driving the lifting block 140 to slide within the groove 111, thereby resetting the camera body 120 and the lighting lamp 130 to the groove 111. After the descent is complete, the air pump 220 in the limiting component 200 inflates the airbag 230, and the rotating part 240 clamps and limits the protrusion 150. During the ascent or descent of the lifting block 140, the connecting cable 320 is automatically wound up by the winding device 310. When clamped, the airbag 230 inside the limiting component 200 continuously inflates and deflates, causing the rotating component 240 to swing continuously, fanning the internal air and increasing airflow; when the limiting component 200 clamps, the airbag 230 inside the limiting component 100 continuously inflates and deflates, causing the rotating component 240 to swing continuously, fanning the internal air and increasing airflow; when the camera body 120 extends out of the groove 111 and falls and is impacted, it can squeeze the airbag 230 inside the limiting component 200, which has a cushioning effect.
[0120] Compared with existing technologies, this device eliminates the need for manual manipulation of the push block, reducing the possibility of accidental activation and preventing a decrease in the fixing effect on the protrusion 150. Furthermore, the rotating component 240 is rotated to prevent the elasticity from gradually weakening after prolonged use, thus avoiding a reduction in the fixing and limiting effect on the protrusion 150. A gap is left between the protrusion 150 and the groove 112, and the device's lifting and lowering are controlled by an electric slide 170 to prevent shaking caused by friction. Simultaneously, the rotating component 240 clamps and fixes the protrusion 150 through the expansion of the airbag 230; the continuous expansion of the airbag 230 further enhances the fixing effect on the protrusion 150. The effect is consistent; simultaneously, when the limiting component 1 200 clamps, the airbag 230 inside the limiting component 2 400 continuously inflates and deflates, causing the rotating component 240 to swing continuously, fanning the internal air, increasing airflow, and cooling down; when the limiting component 2 400 clamps, the airbag 230 inside the limiting component 1 200 continuously inflates and deflates, causing the rotating component 240 to swing continuously, fanning the internal air, increasing airflow, and cooling down; when subjected to impact, the airbag 230 can be compressed, providing a cushioning and protective effect; after folding, the camera body 120 fits snugly against the lighting lamp 130, without obstructing the screen, improving the usability.
[0121] Example 2: In Example 1, the position of the protrusion 150 is restricted by the rotation of the rotating component 240. However, in actual use, the fixing effect of the protrusion 150 is poor after the airbag 230 is inflated alone. Therefore, the solution of Example 1 is improved, such as... Figures 5-6 , Figures 8-9 As shown:
[0122] The limiting component 200 also includes a swing element 250, a magnet 260, and an electromagnet 270;
[0123] There are two swinging components 250 and magnets 260, and they correspond one-to-one. The swinging component 250 is arc-shaped.
[0124] In the initial state, the axis of the swing member 250 and the axis of the rotating member 240 are on the same straight line;
[0125] Two swinging components 250 are located on both sides of the rotating component 240, and the swinging components 250 and the rotating component 240 are connected by rubber.
[0126] In the initial state, one side of the swing member 250 is in close contact with the protrusion 150;
[0127] The magnet 260 is located on the side of the oscillating member 250 away from the rotating member 240;
[0128] The electromagnet 270 is fixed to the side of the fixed block 210 away from the rotating part 240;
[0129] The electromagnet 270 is a DC electromagnet.
[0130] When the limiting component 200 limits the protrusion 150, after the airbag 230 expands and the rotating component 240 is pressed tightly against the protrusion 150, the electromagnet 270 is activated to attract the magnet 260, causing the swing component 250 to press down on the protrusion 150; at the same time, the electromagnet 270 can continuously change its magnetic poles, and can continuously attract and repel the magnet 260. Since the swing component 250 is connected to the rotating component 240 by rubber, the swing component 250 can swing, accelerating the air flow.
[0131] By using electromagnet 270 to attract magnet 260, the clamping effect on protrusion 150 can be further improved, ensuring stability even in bumpy or vibrating environments, preventing loosening or detachment. It also improves heat dissipation; when electromagnet 270 and magnet 260 repel each other, a tiny gap is created between the swinging component 250 and protrusion 150. These gaps act as heat dissipation channels, helping to dissipate heat from inside the phone. The continuous repulsion and attraction between electromagnet 270 and magnet 260 also promotes airflow, further enhancing heat dissipation. For users who take photos or record videos for extended periods, this effectively prevents performance degradation or device damage caused by overheating.
[0132] Example 3: In Example 2, the airbag 230 and magnet 260 together improve the clamping and fixing effect on the protrusion 150. However, the fixing effect can be further improved during use. Therefore, the solution of Example 2 is improved, such as... Figures 10-12 As shown:
[0133] The limiting component 200 also includes an elastic rope 280;
[0134] One end of the elastic rope 280 is fixed to the side of the rotating member 240 away from the airbag 230, and is located at the end of the rotating member 240 away from the fixed block 210.
[0135] The end of the elastic rope 280 away from the rotating part 240 is fixed in the groove 211;
[0136] There are two protrusions 150, which are symmetrically arranged, and a gap is left between the two protrusions 150;
[0137] When the protrusion 150 abuts against the groove 211, the elastic rope 280 is located between the two protrusions 150;
[0138] The elastic rope 280 is hollow inside and is connected to the airbag 230.
[0139] During use, the elastic rope 280 is located between the two protrusions 150 and is connected to the airbag 230. The elastic rope 280 can be inflated and expand to abut against the two protrusions 150. The elastic rope 280 can pull the rotating part 240 at all times, providing tension to the rotating part 240 so that the rotating part 240 can always abut against the protrusions 150. When the protrusions 150 enter the groove 211, the airbag 230 inflates. Because the elastic rope 280 has elasticity to pull the rotating part 240, it can accelerate the rotation and reset of the rotating part 240.
[0140] The expansion of the elastic rope 280 further enhances the fixing effect on the protrusion 150. At the same time, the elastic rope 280 can constantly pull the rotating part 240, providing a downward pulling force to the rotating part 240, so that the rotating part 240 can always be in contact with the protrusion 150, thus improving the contact fixing effect on the protrusion 150. Furthermore, since the elastic rope 280 has elasticity and constantly pulls the rotating part 240, when the protrusion 150 enters the groove 211 and the airbag 230 inflates to push the rotating part 240 back to its original position, the pulling of the elastic rope 280 can accelerate the rotation and reset speed of the rotating part 240.
[0141] Example 4: In Example 3, the airbag 230, magnet 260, and elastic rope 280 work together to improve the clamping and fixing effect on the protrusion 150. However, the device can be further improved to enhance the clamping and fixing effect on the protrusion 150. Based on this, the solution of Example 1 is improved, such as... Figures 13-14 As shown:
[0142] The main component 100 also includes a rubber block 190;
[0143] There are two rubber blocks 190, each corresponding to one of the two protrusions 150;
[0144] The structure of the rubber block 190 is the same as that of the protrusion 150, and the axis of the rubber block 190 and the axis of the protrusion 150 are on the same straight line.
[0145] Two rubber blocks 190 are respectively fixed on the opposite sides of the two protrusions 150;
[0146] In the initial state, the swinging member 250 is in close contact with the rubber block 190;
[0147] The protrusion 150 is elastic.
[0148] After the swinging component 250 presses the protrusion 150, the rubber block 190 will be deformed by the pressure, causing it to bulge into the gaps on both sides and fit against the inner wall of the second groove 112, improving the fixing effect. At the same time, when the elastic rope 280 expands, it can abut against the protrusions 150 on both sides, causing the protrusions 150 to deform to both sides and squeeze the rubber block 190, improving the fit. At the same time, when the camera body 120 is impacted, the rubber block 190 and the deformable protrusions 150 can also absorb some energy, playing a buffering role. During the swinging process, the swinging component 250 will also continuously pat the protrusions 150, causing them to deform and fit against the second groove 112.
[0149] Adding a rubber block 190 allows it to deform under pressure after being pressed by the swinging member 250, causing it to bulge into the gaps on both sides and fit against the inner wall of the second groove 112, increasing friction and further improving the fixing effect. At the same time, when the camera body 120 is impacted, the rubber block 190 and the deformable protrusion 150 can also absorb some energy, playing a buffering role and reducing the impact transmitted to the internal parts of the phone, thereby protecting the precision components inside the phone from damage. During the swinging process, the swinging member 250 has a longer swing trajectory, allowing it to accelerate over a distance and continuously strike the rubber block 190, causing it to deform and fit against the second groove 112, improving the fit.
[0150] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. For those skilled in the art, the present invention can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A liftable and rotatable mobile phone camera, comprising a main body component and a connecting component; The main components include the phone body, groove one, groove two, lifting block, and protrusion; The phone body has a groove on the side, which runs through the back of the phone body. There are two symmetrical grooves on both sides of the groove. The lifting block is slidably disposed in the first groove, and the protrusion is fixed on one side of the lifting block and located in the second groove; The bump is a half-cylinder shape divided along the axial direction; The connecting components are located inside the lifting block; Its features are, It also includes limit component one and limit component two; Limiting component one and limiting component two have the same structure and are symmetrically arranged in the same groove two. Limiting component one and the protrusion are located in the same groove two. Limiting component one is disposed on the bottom side inside groove two, and limiting component two is disposed on the top side inside groove two; Limiting component one includes a fixing block, a groove three, an air pump, an air bag, and a rotating component; The fixing block is rectangular and is fixed to the bottom side of the inner groove. In the initial state, one end of the fixed block is in contact with the lifting block; The fixing block has a three-section groove on its top, and the three-section groove is arc-shaped; In the initial state, the protrusion is tightly attached to the inner wall of the groove. The air pump is fixed inside the fixing block; The rotating part is arc-shaped, and its lower end is rotatably mounted on the upper side of the fixed block. In the initial state, one side of the rotating part is in close contact with the protrusion; The airbag is fixed on the side of the rotating part away from the protrusion, and the airbag is fixed on the upper side of the fixed block. The air pump output end is connected to the inside of the airbag. The main components also include an electric slide and a slider; The electric slide is fixed in groove two, and the electric slide and the limiting component one are installed in different groove two. The slider is mounted on an electric slide table; One end of the slider is fixed to the lifting block; When the shooting interface is opened, the air pump in the limiting component one works, causing the airbag to continuously deflate, so that the rotating part no longer intercepts the protrusion. Then the electric slide works, driving the lifting block to slide in the groove one. After the ascent is complete, the air pump in the limiting component 2 inflates the airbag and clamps and limits the protrusion through the rotating part.
2. The liftable and rotating mobile phone camera as described in claim 1, characterized in that, The axis of the protrusion is perpendicular to the height direction of the groove. The two ends of the protrusion along the axial direction do not contact the second groove; The axis of groove three is parallel to the axis of the protrusion; The axis of the rotating part is parallel to the axis of groove three.
3. A height-adjustable and rotatable mobile phone camera as described in claim 1, characterized in that, The main components also include heat dissipation holes, camera body, lighting, and sealing components; The phone body has a heat dissipation hole on one side, which is located on one side of the groove one, and the heat dissipation hole is connected to the groove two on which the limiting component one is installed; A waterproof and breathable membrane is fixed inside the heat dissipation holes; The lighting fixture is fixed to the upper side of the lifting block, and the camera body is connected to the upper side of the lighting fixture via a hinge. Both the lighting fixture and the camera body are slidably mounted in the groove. The sealing component is located above the electric slide table and is fixed in groove two. The connection components include a rewinder and a connecting cable; The lifting block has a fixed winding device inside, and the winding device has a winding connecting wire inside. One end of the connecting wire is connected to the mobile phone body, and the other end of the connecting wire away from the mobile phone body is connected to the camera body and the lighting lamp.
4. A height-adjustable and rotatable mobile phone camera as described in claim 3, characterized in that, The length direction of the electric slide is parallel to the lifting direction of the lifting block, and the length direction of the electric slide is the sliding direction of the slider.
5. A height-adjustable and rotatable mobile phone camera as described in claim 3, characterized in that, In its initial state, one end of the sealing component is in contact with the camera body; In the initial state, the fixing block inside the limiting component two is in contact with the camera body.
6. A height-adjustable and rotatable mobile phone camera as described in claim 1, characterized in that, The limiting component also includes a swing element, a magnet, and an electromagnet; There are two oscillating components and two magnets, each corresponding to the other; the oscillating component is arc-shaped. The two oscillating components are located on both sides of the rotating component, and the oscillating components and the rotating component are connected by rubber. The magnet is located on the side of the oscillating component away from the rotating component; The electromagnet is fixed to the side of the fixed block away from the rotating part; The electromagnet is a DC electromagnet.
7. A height-adjustable and rotatable mobile phone camera as described in claim 6, characterized in that, In the initial state, the axis of the oscillating component and the axis of the rotating component are on the same straight line; In the initial state, one side of the swinging component is in close contact with the protrusion.
8. A height-adjustable and rotatable mobile phone camera as described in claim 6, characterized in that, The limiting component also includes an elastic cord; One end of the elastic rope is fixed to the side of the rotating component away from the airbag, and is located at the end of the rotating component away from the fixed block; The end of the elastic rope away from the rotating part is fixed in groove three; There are two bumps, which are symmetrically arranged, with a gap between the two bumps; The elastic rope is hollow inside and connected to the airbag.
9. A height-adjustable and rotatable mobile phone camera as described in claim 8, characterized in that, When the protrusions abut against the groove, the elastic rope is located between the two protrusions.
10. A height-adjustable and rotatable mobile phone camera as described in claim 8, characterized in that, The main components also include rubber blocks; There are two rubber blocks, each corresponding to one of the two protrusions; The structure of the rubber block is the same as that of the protrusion, and the axis of the rubber block and the axis of the protrusion are on the same straight line; The two rubber blocks are fixed to the sides of the two protrusions that are far apart from each other; In the initial state, the swinging component is in close contact with the rubber block; The bump is elastic.
Citation Information
Patent Citations
A rotating adjustment device for a mobile phone camera
CN110784574B
Automatic lifting mechanism of mobile phone camera, mobile phone camera module and mobile phone
CN216086716U
Lifting camera
WO2020238033A1