Light supplementing device
By designing a fill light device including a flip part and a rotating part, the problem that the existing mobile phone fill light device cannot flexibly adjust the fill light direction is solved, and flexible fill light at multiple angles and heights is achieved, which is suitable for mobile phones and other shooting equipment.
Patent Information
- Application Number
- CN202422012953.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-08-19
AI Technical Summary
Existing mobile phone fill light devices can only provide fill light in the direction toward the user, cannot flexibly change the fill light direction, and the installation method is not convenient for adjustment.
A fill light device is designed, which includes a fill light part, a flip part, a rotating part and a magnetic part. The device is connected to the shooting equipment through magnetism. The combined movement of the flip part and the rotating part is used to realize the flexible adjustment of the fill light direction, and the protruding height of the device is changed by the telescopic rod.
The fill light device can flexibly fill light at different angles and directions, and can adjust the fill light direction and height according to needs to meet the needs of various shooting scenes.
Smart Images

Figure CN223401128U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of photographic accessories, and in particular to a fill light device. Background Art
[0002] With the upgrade of mobile communications, electronic products such as mobile phones, computers, tablets, and cameras have gradually entered people's lives. Among them, mobile phones and cameras all have the function of shooting. Compared with bulky cameras, mobile phones are popular with consumers because of their lightness. Accordingly, in order to create good shooting light, mobile phone lighting units came into being.
[0003] The existing mobile phone lighting unit is installed on the mobile phone frame in a clamping and fixing manner, which means that it can only provide fill light in the direction towards the user. If fill light is required in other directions, the position direction between the accessory and the mobile phone needs to be disassembled to achieve fill light in other directions. Utility Model Content
[0004] Based on this, it is necessary to design a fill light device that can be installed after the shooting equipment and can flexibly change the fill light direction without having to disassemble it to achieve the change of the fill light direction.
[0005] The present application provides a fill light device for use in a photographing device, the fill light device comprising a fill light portion, a flip portion, a rotating portion, and a magnetic portion.
[0006] The magnetic attraction portion is used to be attached to the shooting device.
[0007] The rotating part is installed on the magnetic part.
[0008] One end of the flip part close to the magnetic part is rotatably connected to the rotating part, and the other end is rotatably connected to the fill light part, so that the fill light part can be turned relative to the magnetic part and rotate relative to the flip part.
[0009] In one embodiment, the fill light portion and the flip portion are rotatably connected via a rotating member.
[0010] In one embodiment, the rotating member includes a first rotating shaft and a second rotating shaft rotatably connected to each other, the first rotating shaft is fixedly connected to the light-filling part, and the second rotating shaft is fixedly connected to the flipping part.
[0011] In one embodiment, the flip portion includes a fixed portion and a pivot portion protruding and extending from one side of the fixed portion, the second rotating shaft is fixedly connected to the fixed portion, and the pivot portion is rotatably connected to the rotating portion.
[0012] In one embodiment, the rotating part includes a telescopic part and a rotating shaft, the telescopic part can be telescopically installed in the magnetic part, the rotating shaft is fixedly arranged on the telescopic part, and the pivot part of the flipping part is rotatably connected to the rotating shaft, so that the flipping part can flip relative to the magnetic part.
[0013] In one embodiment, the telescopic member includes a telescopic rod and at least one mounting portion extending and bent from one end of the telescopic rod, the other end of the telescopic rod can be telescopically mounted in the magnetic portion, at least one mounting portion is located on at least one side of the pivot portion of the flip portion, and a mounting hole is provided in one end of the two mounting portions away from the telescopic rod, the mounting hole is aligned with the through hole on the pivot portion, and the rotating shaft passes through the mounting hole and the through hole of the pivot portion in sequence, so that the pivot portion of the flip portion is rotatably connected to the mounting portion of the rotating portion.
[0014] In one embodiment, a magnetic component is provided in the magnetic portion, and the magnetic component is used to connect to an external shooting device. A groove for accommodating a mirror is provided on a side of the magnetic portion close to the fill light portion.
[0015] In one embodiment, the magnetic portion is provided with an extension hole along the direction of the fill light portion, and a portion of the telescopic rod is telescopically mounted on the magnetic portion via the extension hole.
[0016] In one embodiment, a guide rail for the telescopic rod to slide is provided inside the magnetic portion along the direction of the extension hole, and a portion of the telescopic rod is slidably provided on the guide rail, so that the telescopic rod slides along the guide rail to change the distance between the fill light portion and the magnetic portion.
[0017] In one embodiment, the interior of the telescopic rod is hollowed out to form a receiving cavity, a groove is provided on the side wall of the receiving cavity, a limiting member is provided inside the magnetic attraction portion, and the limiting member abuts against the inner wall of the groove.
[0018] Compared with the existing technology, the fill light device of the present application can not only realize the functions of flipping and rotating at the same time, and fill light for fill light parts in different angles and directions, but also extend the distance between the fill light part and the magnetic part, so that the height of the fill light device relative to the shooting equipment can be changed at any time, thereby meeting the requirements of different heights. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 1 is a schematic diagram of the overall structure of a fill light device according to an embodiment of the present application installed on a photographing device;
[0020] Figure 2 Schematic diagram of the overall structure of the fill light device according to an embodiment of the present application;
[0021] Figure 3 2 is a schematic structural diagram of an embodiment of the present application in which the fill light portion and the magnetic portion are rotated at a certain angle;
[0022] Figure 4 2 is a schematic structural diagram of an embodiment of the present application in which the fill light portion and the flip portion are at a certain angle;
[0023] Figure 5 is a cross-sectional view of an embodiment of the present application;
[0024] Figure 6 It is an exploded view of the overall structure of an embodiment of the present application;
[0025] Figure 7 This is a schematic diagram of the telescopic rod of an embodiment of the present application sliding a certain distance toward the fill light part.
[0026] Figure Number
[0027] 100. Fill light device; 30. Shooting equipment; 51. Magnetic part; 511. Extension hole; 513. Mirror; 517. Guide rail; 519. Magnetic member; 60. Rotating member; 61. First rotating shaft; 63. Second rotating shaft; 70. Flipping part; 71. Fixing part; 72. Pivoting part; 721. Through hole; 80. Fill light part; 81. Illuminating part; 83. Main body; 85. Connecting part; 90. Rotating part; 91. Rotating shaft; 93. Telescopic member; 931. Telescopic rod; 9311. Groove; 9313. Accommodating chamber; 933. Limiting member; 9331. Protrusion; 935. Mounting part; 9351. Mounting hole. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0029] Please refer to the attached Figure 1-7 , the specific implementation methods of this application are further described in detail.
[0030] Reference Figure 1 and Figure 2 The present application provides a fill light device 100 for being magnetically adsorbed on a shooting device 30 to provide fill light when the shooting device 30 is shooting.
[0031] The fill light device 100 includes a fill light unit 80, a flip unit 70, a rotating unit 90, and a magnetic unit 51. The fill light unit 80 is foldably mounted on the surface of the magnetic unit 51 via the flip unit 70 and is rotatable relative to the flip unit 70 and the magnetic unit 51 via the rotating unit 90. An illumination unit 81 is provided on the outer surface of the fill light unit 80. The magnetic unit 51 is connected to the camera 30, allowing the fill light unit 80 to be mounted on the back of the camera 30 via the magnetic unit 51. The fill light unit 80 is rotatably connected to the magnetic unit 51 via the rotating unit 90, allowing the fill light angle to be adjusted circumferentially by rotating the illumination unit 81. The fill light unit 80 is rotatably connected to the flip unit 70 and to the rotating unit 90 via the flip unit 70. When the fill light unit 80 is flipped, the illumination unit 81 can rotate 360 degrees from the same horizontal position, changing the fill light direction so that the fill light direction aligns with the shooting direction, providing fill light for the camera and assisting in shooting.
[0032] Reference Figure 1 and Figure 2 Specifically, the fill light portion 80 is a disc structure as a whole, which includes a main body 83 and a connecting portion 85 protruding and extending from one side of the main body 83. The main body 83 is a circular structure, and the lighting portion 81 is arranged on a surface of the main body 83 that is away from the magnetic portion 51. By changing the mounting surface (back) of the magnetic portion 51 on the shooting device 30, unilateral fill light is achieved. For example, the lighting portion 81 can provide unilateral fill light for the front camera or the rear camera. In other embodiments, the lighting portion 81 can also be provided on a surface of the main body 83 facing the magnetic portion 51, so as to achieve multi-directional fill light for the shooting device 30. In this embodiment, the lighting portion 81 is a circular structure with a hollow center.
[0033] Reference Figure 1 and Figure 2 In this embodiment, the lighting unit 81 includes a lamp bead (not shown) and a lampshade (not shown) mounted on the surface of the lamp bead. The lampshade is a soft light cover to protect the light source from human contact. A brightness adjustment button (not shown) is provided on the surface of the main body 83 of the fill light unit 80 at a position corresponding to the hollow portion of the lighting unit 81. The adjustment button switches the lighting unit 81 between multiple modes, such as cold light, soft light, and warm light. The brightness and different modes of the lighting unit 81 can be adjusted according to the environment and actual needs.
[0034] Reference Figures 3 to 5 The connecting portion 85 of the fill light portion 80 is rotatably connected to the flip portion 70 via the rotating member 60. When the fill light portion 80 flips relative to the flip portion 70, the fill light portion 80 can perform fill light at different angles on the same horizontal plane.
[0035] The rotating member 60 is cylindrical in structure and includes a first rotating shaft 61 and a second rotating shaft 63 rotatably connected to each other. A first end of the first rotating shaft 61, distal from the second rotating shaft 63, is housed within the main body 83 of the fill light unit 80 and fixedly connected to the inner wall of the main body 83. The second end of the first rotating shaft 61 is housed within the second rotating shaft 63 and rotatably connected to the second rotating shaft 63. The fill light unit 80 is rotatably connected to the flip unit 70 via the second rotating shaft 63, thereby allowing the fill light unit 80 to rotate relative to the flip unit 70 via the rotating member 60. Furthermore, the outer surface of the rotating member 60 has a damping force, so that when the lighting unit 81 is flipped to any position on the flip unit 70 and is not subject to external forces, the fill light unit 80 can rotate to a different position relative to the flip unit 70 and remain positioned there.
[0036] Reference Figures 3 to 5 One end of the flip part 70 is connected to the magnetic part 51 through the rotating part 90, and the other end of the flip part 70 is rotatably connected to the fill light part 80 through the rotating member 60. The flip part 70 has a T-shaped structure, which includes a fixed part 71 and a pivoting part 72, wherein the pivoting part 72 is formed by a protruding extension on one side of the fixed part 71 near the middle. One end of the second rotating shaft 63 is accommodated in the fixed part 71 and is fixedly connected to the inner wall of the fixed part 71, so that the fill light part 80 is rotatably connected relative to the fixed part 71 of the flip part 70 through the rotating member 60. The pivoting part 72 is rotatably connected to the rotating part 90, thereby realizing a rotatable connection with the magnetic part 51. A through hole 721 is provided on the pivoting part 72. An accommodating space is provided in the fixing portion 71, which is used to accommodate the second rotating shaft 63 of part of the rotating member 60, wherein the rotating member 60 and the rotating portion 90 are perpendicular to each other, so that the rotation direction between the fill light portion 80 and the flip portion 70 is perpendicular to the rotation direction between the fill light portion 80 and the rotating portion 90, so that the magnetic portion 51 is adsorbed on the back of the shooting device 30, and the fill light portion 80 is separated from the magnetic portion 51 by flipping the flip portion 70 and the rotating portion 90. At this time, the fill light portion 80 is facing the user, and then the fill light portion 80 is rotated relative to the flip portion 70 by the rotating member 60, so that the fill light portion 80 fills light at different angles.
[0037] Reference Figures 5 and 6More specifically, the rotating part 90 is rotatably connected to the pivotal part 72 of the flipping part 70, and includes a rotating shaft 91 and a telescopic part 93. The telescopic part 93 is in the shape of a rectangular plate and can be telescopically accommodated in the magnetic part 51. The telescopic part 93 includes two mounting parts 935 and a telescopic rod 931, wherein the telescopic rod 931 is in the shape of a long strip and can be telescopically mounted in the magnetic part 51. The two mounting parts 935 are respectively formed by bending and extending one end of the telescopic rod 931, and the two mounting parts 935 are parallel to each other and spaced apart. The two mounting parts 935 are located on both sides of the pivotal part 72 of the flipping part 70, and a mounting hole 9351 is opened in the end of the two mounting parts 935 away from the telescopic rod 931. The mounting hole 9351 is aligned with the through hole 721 on the pivoting portion 72. The rotating shaft 91 sequentially passes through the mounting hole 9351 of one mounting portion 935, the through hole 721 of the pivoting portion 72, and the mounting hole 9351 of the other mounting portion 935, thereby rotatably connecting the pivoting portion 72 of the flipping portion 70 to the mounting portion 935 of the rotating portion 90. Importantly, the rotating shaft 91 has a certain damping force, which allows the fill light unit 80 to be positioned at any rotation angle. This not only restricts the fill light unit 80 from rotating relative to the magnetic portion 51 when the fill light device 100 is stored, but also restricts its rotation relative to the magnetic portion 51 when the fill light device 100 is in use, allowing the lighting unit 81 to stably provide fill light for the camera 30.
[0038] Reference Figures 5 and 6 The magnetic portion 51 and the telescopic member 93 of the rotating portion 90 are telescopically installed, and the magnetic portion 51 is used to be magnetically attracted to the back side of the shooting device 30.
[0039] Specifically, the magnetic portion 51 is a disc-shaped structure, and a mounting groove (not shown) for mounting a mirror 513 is provided on a side thereof near the fill light portion 80. As can be understood, mounting the mirror 513 in the mounting groove enables the fill light device 100 to have both a fill light function and an illumination function. By rotating the fill light portion 80, the illumination portion 81 and the mirror 513 can be positioned on the same side, making it easier for people to apply and touch up their makeup.
[0040] Reference Figures 5 and 6 Furthermore, a magnetic member 519 is installed in the magnetic portion 51. The magnetic member 519 is magnetic, and the portion where the fill light portion 80 contacts the magnetic portion 51 is also provided with a corresponding magnetic member 519. When the fill light device 100 is in the retracted state, the fill light portion 80 and the magnetic portion 51 are arranged parallel to each other and their end faces are in contact with each other, and the magnetic member 519 ensures a stable contact.
[0041] Reference Figures 5 and 6, the magnetic part 519 in the magnetic part 51 can not only be magnetically attracted to the fill light part 80, but also be magnetically connected to the shooting device 30 with a magnetic function. For example, when the shooting device 30 is an Apple mobile phone, a magnetic block is provided inside the Apple mobile phone, and the magnetic block can be magnetically connected to the magnetic part 519. When the magnetic part 51 is close to the Apple mobile phone, the magnetic part 51 can be magnetically adsorbed on the back of the spliced Apple mobile phone to fix the fill light part 80 on the Apple mobile phone. When the fill light device 100 needs to be removed from the back of the Apple mobile phone, a force can be manually applied to the magnetic part 51 to overcome the magnetic adsorption force between the magnetic block and the magnetic part 519, and the magnetic part 51 can be separated from the Apple mobile phone. Of course, if the shooting device 30 itself does not have a magnetic function, such as a tablet, computer, etc., a magnetic block can be added to the surface of the shooting device 30 so that the shooting device 30 can be magnetically connected to the fill light device 100 of the present application.
[0042] Reference Figures 5 and 6 Furthermore, the fill light unit 80 is rotatably connected to the magnetic unit 51 via the rotating unit 90. Therefore, the fill light device 100 can also function as a mobile phone holder. Specifically, by rotating the fill light unit 80 so that a certain angle is formed between the fill light unit 80 and the magnetic unit 51, the back of the mobile phone can be magnetically attracted to the side of the magnetic unit 51 with the magnetic element 519. The fill light unit 80 contacts one side of the mobile phone, thereby stably supporting the mobile phone on the fill light device 100. To adjust the support angle, simply adjust the rotation angle of the rotating unit 90.
[0043] Reference Figures 5 and 6 The distance between the lighting part 81 and the magnetic part 51 is changed by the telescopic part 93, so that the height of the fill light device 100 protruding relative to the shooting equipment 30 can be changed at any time, thereby meeting the needs of different heights. A guide rail 517 is provided inside the magnetic part 51, and an extension hole 511 is provided on the side of the magnetic part 51 close to the rotating part 90 corresponding to the direction of the guide rail 517. A part of the telescopic rod 931 is slidably accommodated in the guide rail 517, and the other part is extended to the outside of the magnetic part 51 through the extension hole 511. When the magnetic part 51 is connected to the shooting equipment, the telescopic rod 931 slides from the guide rail 517 of the magnetic part 51 and extends to the outside of the magnetic part 51. The distance that the fill light part 80 protrudes from the shooting equipment 30 is lengthened, and fill light can be provided to different positions in a certain direction.
[0044] Furthermore, in this embodiment, the interior of the telescopic rod 931 is hollowed out to form a receiving cavity 9313, and a limit member 933 is provided protruding from the inner wall of the magnetic portion 51. The limit member 933 is located on the guide rail 517. When the telescopic rod 931 is accommodated in the guide rail 517, the limit member 933 passes through the receiving cavity 9313 and abuts against the inner side wall of the receiving cavity 9313. Therefore, when the telescopic rod 931 slides along the guide rail 517, the telescopic rod 931 moves relative to the limit member 933. Under the action of the limit member 933, the telescopic rod 931 is stably extended to the outside of the magnetic portion 51. In this embodiment, the limit member 933 is used to cooperate with the telescopic rod 931. On the one hand, it prevents the telescopic rod 931 from sliding out of the magnetic portion 51 and separating from the fill light portion 80. On the other hand, it ensures that the telescopic rod 931 can remain stationary after sliding a certain distance in the magnetic portion 51, thereby facilitating stable fill light.
[0045] Reference Figures 5 to 7 Specifically, both sides of the telescopic rod 931 are mounted on the guide rail 517 and can slide on the guide rail 517. A plurality of grooves 9311 are spaced apart on the inner sidewall of the telescopic rod 931. The stopper 933 is provided with protrusions 9331 of a shape and size corresponding to the grooves 9311. The interlocking engagement of the grooves 9311 and the protrusions 9331 allows the telescopic rod 931 to slide freely on the guide rail 517 with resistance relative to the stopper 933. After the external force is removed, the sidewalls of the grooves 9311 and the protrusions 9331 abut against each other, keeping the telescopic rod 931 fixed, and allowing the fill light unit 80 to better provide fill light for the camera 30. To reduce sliding resistance, in this embodiment, the inner sidewall of the telescopic rod 931 is made of an elastic material.
[0046] Reference Figures 5 to 7 When there is a certain distance between the camera 30 and the position to be filled in with light and the positions of both cannot be changed, the telescopic rod 931 can be extended to the position to be filled in with light by extending one end of the telescopic rod 931, thereby achieving fill light for the position to be filled in with light. Specifically, the magnetic portion 51 is connected to the camera 30, and the telescopic rod 931 or the mounting portion 935 fixedly connected to the end of the telescopic rod 931 is pulled. The telescopic rod 931 slides along the guide rail 517 toward the fill light portion 80 until the telescopic rod 931 slides to the position to be filled in with light or the end of the telescopic rod 931 away from the fill light portion 80 abuts the end of the stopper 933.
[0047] Reference Figures 5 to 7When the fill light device 100 needs to be stored or the telescopic rod 931 that partially passes through the extension hole 511 needs to be stored back into the interior of the magnetic portion 51, an external force is applied to move the mounting portion 935 toward the direction close to the magnetic portion 51. At this time, part of the telescopic rod 931 slides along the guide rail 517 and is stored back into the magnetic portion 51 under the mutual cooperation of the groove 9311 and the protrusion 9331 until the end of the accommodating cavity 9313 of the telescopic rod 931 abuts the end of the limiting member 933.
[0048] It is understandable that the rotating portion 90 may be omitted, as long as the pivoting portion 72 of the flip portion 70 is rotatably connected to the magnetic portion 51 .
[0049] When assembling the fill light device 100, first, the lighting part 81 is installed on the main body 83, and the main body 83 and the connecting part 85 are connected to form the fill light part 80; the first rotating shaft 61 is fixedly connected to the inside of the main body 83, and the fixing part 71 is fixedly connected to the second rotating shaft 63. The fill light part 80 and the flip part 70 are connected by the first rotating shaft 61 and the second rotating shaft 63, so that the fill light part 80 can be flipped 360 degrees relative to the flip part 70. The pivot part 72 is installed on the rotating shaft 91, and the rotating shaft 91 and the second rotating shaft 63 are perpendicularly arranged, so that the flip part 70 and the rotating part 90 are rotatably connected and the rotation direction and the flip direction of the rotating part 60 are perpendicular to each other; an extension hole 511 is provided in the magnetic part 51 along the direction of the connecting part 85, and the telescopic rod 931 in the magnetic part 51 passes through the extension hole 511 and the two ends of the rotating shaft 91 The ends are fixedly connected, and the telescopic rod 931 can be fixedly arranged in the magnetic part 51 or slidably connected in the magnetic part 51. In this embodiment, the interior of the telescopic rod 931 is hollowed out to form a accommodating cavity 9313, and at least one groove 9311 is opened on the side wall of the accommodating cavity 9313. Two guide rails 517 are set in the magnetic part 51 to facilitate the telescopic rod 931 to slide on the guide rails 517, and protrusions 9331 are set at positions opposite to the guide rails 517 corresponding to the shape and size of the grooves 9311. The protrusions 9331 are used to engage with the grooves 9311, so that the telescopic rod 931 can slide on the guide rails 517 with resistance, and can remain stationary without applying external force, so that the fill light part 80 and the magnetic part 51 remain fixed, and the shooting equipment 30 can stably shoot the position illuminated by the lighting part 81.
[0050] When the user uses the fill light device 100, first, the magnetic attraction portion 51 is magnetically attracted to the shooting device 30, then, the relative position between the flip portion 70 and the fill light portion 80 is kept unchanged, and the fill light portion 80 is rotated. Then, the fill light portion 80 and the magnetic attraction portion 51 are rotated relative to the rotation axis 91. The fill light portion 80 is adjusted in the vertical direction according to the shooting device 30, and the brightness and brightness mode of the lighting portion 81 are adjusted, thereby achieving fill light and mirror illumination for the shooting person or object, or the user can keep rotating. The movable shaft 91 and the magnetic part 51 remain stationary, only the fill light part 80 is flipped, and the flip angle between the fill light part 80 and the flip part 70 is adjusted 360°, thereby changing the fill light angle of the fill light part 80 in the horizontal direction; finally, if there is a certain distance between the shooting device 30 and the part to be filled light 80 or the distance between the fill light part 80 and the shooting device 30 needs to be extended, the telescopic rod 931 can be pulled to make the telescopic rod 931 slide in the magnetic part 51 along the guide rail 517 toward the direction close to the fill light part 80. When the fill light device 100 needs to be stored, the magnetic part 51 is first removed from the shooting equipment 30, and then the fill light part 80 is turned over so that the fill light part 80 and the fixing part 71 remain on the same plane. Then, the telescopic rod 931 is pulled in the direction close to the magnetic part 51 until the hollow end of the telescopic rod 931 abuts against the end of the limiter 933 or the telescopic rod 931 cannot continue to move into the magnetic part 51 under the action of external force. Finally, the fill light part 80 is rotated so that the fill light part 80 is arranged parallel to the magnetic part 51 and the end faces are in contact with each other.
[0051] The present application can be configured by freely combining the respective embodiments shown above within the scope of the utility model described in each claim, or by appropriately modifying the respective embodiments or omitting a part thereof.
[0052] The scope of this application is not limited to the above description, but is defined by the claims. Therefore, the embodiments described in this specification are illustrative only and not limiting. Therefore, all modifications that do not depart from the scope and limits of the claims, as well as contents equivalent to the scope and limits of the claims, are included within the scope of the claims.
Claims
1. A fill light device for use with a photographic device, characterized in that: include: Fill light part, flip part, rotation part and magnetic part, The magnetic attraction portion is used to be attached to the shooting device. The rotating part is installed on the magnetic part. One end of the flip portion close to the magnetic portion is rotatably connected to the rotating portion, and the other end is rotatably connected to the fill light portion, so that the fill light portion can be rotated relative to the magnetic portion and flipped, and rotated relative to the flip portion; The fill light part is rotatably connected to the flip part via a rotating member; The rotating member includes a first rotating shaft and a second rotating shaft rotatably connected to each other, the first rotating shaft is fixedly connected to the light-filling part, and the second rotating shaft is fixedly connected to the flipping part; The flip portion includes a fixing portion and a pivoting portion extending from one side of the fixing portion. The second rotating shaft is fixedly connected to the fixing portion, The pivoting portion is rotatably connected to the rotating portion; The rotating part includes a telescopic member and a rotating shaft. The telescopic member is telescopically installed in the magnetic attraction portion. The rotating shaft is fixedly arranged on the telescopic member, and the pivoting portion of the flipping portion is rotatably connected to the rotating shaft, so that the flipping portion can flip relative to the magnetic attraction portion.
2. The fill light device according to claim 1, wherein: The telescopic member includes a telescopic rod and at least one mounting portion extending and bending from one end of the telescopic rod, and the other end of the telescopic rod is telescopically mounted in the magnetic portion. At least one of the mounting portions is located on at least one side of the pivoting portion of the flip portion, The two mounting portions have mounting holes formed in their ends away from the telescopic rod. The mounting hole is aligned with the through hole on the pivoting portion, and the rotating shaft passes through the mounting hole and the through hole of the pivoting portion in sequence, so that the pivoting portion of the flip portion is rotatably connected to the mounting portion of the rotating portion.
3. The fill light device according to claim 1, wherein: A magnetic component is provided in the magnetic portion, and the magnetic component is used to connect to an external shooting device. A groove for accommodating a mirror is provided on one side of the magnetic portion close to the fill light portion.
4. The fill light device according to claim 2, wherein: The magnetic portion is provided with a protruding hole along the direction of the fill light portion, and a portion of the telescopic rod is telescopically mounted on the magnetic portion via the protruding hole.
5. The fill light device according to claim 4, wherein: A guide rail for the telescopic rod to slide is provided inside the magnetic part along the direction of the extension hole, and a part of the telescopic rod is slidably provided on the guide rail, so that the telescopic rod slides along the guide rail to change the distance between the fill light part and the magnetic part.
6. The fill light device according to claim 5, wherein: The interior of the telescopic rod is hollowed out to form an accommodating cavity, a groove is provided on the side wall of the accommodating cavity, a limiting member is provided inside the magnetic attraction portion, and the limiting member abuts against the inner wall of the groove.