Light supplement lamp and shooting system
By designing a fill light system that can be connected to a mobile phone, using the splicing method of magnetic parts, the problem of poor expansion capabilities of traditional fill lights is solved, and a stronger fill light effect and flexible user experience in environments with insufficient light are achieved.
Patent Information
- Application Number
- CN202421931297.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-09
AI Technical Summary
Traditional mobile phones have poor expansion capabilities and cannot provide a larger area of fill light in scenes with insufficient light, resulting in poor shooting results.
A fill light system that is connected to a cell phone is designed, the system including a main body, a first magnetic member and a second magnetic member. The main body can emit light when facing away from the end surface of the mobile phone. By adsorbing each other by the first magnetic member, the light-exit surfaces of the multiple fill lights can be arranged in the same plane to form a large area of light source. The second magnetic member is used to adsorb with the mobile phone, so that the fill light can be detachably connected.
It has achieved stronger fill light capability in environments with insufficient light and improved shooting effect. Users can flexibly combine the number and arrangement of fill lights according to their needs to meet the fill light needs of different scenes.
Smart Images

Figure CN222952571U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photographic equipment, in particular to a fill light and a shooting system. Background Art
[0002] With the development of network technology, smartphones have become one of the indispensable tools in people's daily lives. People are accustomed to using mobile phones to record important moments in life, especially when taking photos and videos, the quality of the fill light directly affects the shooting effect.
[0003] Currently, most mobile phone fill lights on the market are equipped with only one lamp bead. The lighting range and intensity can meet the needs under normal conditions. However, in low-light scenes, the fill light ability of this single light source is often insufficient, resulting in poor shooting effects and unable to meet user needs.
[0004] Furthermore, existing fill lights are usually fixed on a single device and cannot be expanded according to different usage scenarios. When users need a larger light source or a stronger fill light effect, the existing technology is difficult to achieve with a single fill light and cannot obtain an ideal shooting effect. Utility Model Content
[0005] The utility model aims to solve the technical problem that the traditional fill light has poor expansion capability and cannot obtain a fill light effect for a larger area.
[0006] In order to solve the above technical problems, the present application provides a fill light that can be used to connect with a mobile phone, the fill light comprising: a main body, which includes a shell and a light board; a accommodating cavity is provided inside the shell, and a light-transmitting window is provided on the shell, the light-transmitting window covers the entire end face of the shell facing away from the mobile phone, and connects the accommodating cavity with the external environment; the light board is arranged in the accommodating cavity, the light board and the light-transmitting window are arranged opposite to each other, and the light emitted by the light board is emitted through the light-transmitting window to form a light-emitting surface; a first magnetic member is arranged on the shell and arranged around the circumference of the shell; the main bodies of adjacent fill lights can be adsorbed to each other through the first magnetic member, so that the light-emitting surfaces of multiple fill lights are arranged in the same plane to perform large-area fill light; a second magnetic member is arranged in the shell, and the second magnetic member is located on the inner wall of the shell at one end facing away from the light-emitting surface; the second magnetic member is used to adsorb to the mobile phone so that the fill light can be detachably connected to the back of the mobile phone.
[0007] Optionally, the main body includes a soft light plate; the soft light plate is arranged at the light-transmitting window and covers the light board, so that the light emitted by the light board is emitted after passing through the soft light plate.
[0008] The fill light comprises: a main body, a light emitting surface is provided on the end face of the main body facing away from the mobile phone, and the light emitting surface covers the entire end face of the main body facing away from the mobile phone, so that the entire end face of the main body facing away from the mobile phone can emit light; a first magnetic member is arranged on the main body and arranged around the circumference of the main body; the main bodies of adjacent fill lights can be adsorbed to each other through the first magnetic member, so that the light emitting surfaces of multiple fill lights are arranged in the same plane to perform large-area fill light; a second magnetic member is arranged in the main body, and the second magnetic member is located on the inner wall of the end of the main body facing away from the light emitting surface; the second magnetic member is used to adsorb to the mobile phone, so that the fill light can be detachably connected to the back of the mobile phone.
[0009] Optionally, the main body includes: a shell having a accommodating cavity provided therein, a light-transmitting window provided at one end face of the shell, and the light-transmitting window connecting the accommodating cavity with the external environment; a light board arranged in the accommodating cavity, the light board and the light-transmitting window being arranged opposite to each other, and the light emitted by the light board is emitted through the light-transmitting window; a soft light plate arranged at the light-transmitting window and covering the light board, so that the light emitted by the light board is emitted through the soft light plate to form the light exit surface.
[0010] Optionally, the shell includes a base plate and a enclosure; the enclosure is arranged on the outer edge of the base plate, and is combined with the base plate to form the accommodating cavity with an open end, and the opening of the accommodating cavity forms the light-transmitting window; the first magnetic member is fixedly arranged on the enclosure.
[0011] Optionally, the first magnetic member is a magnet; the enclosure is a rectangular frame structure, and the magnetic poles of the first magnetic members on opposite sides of the enclosure are facing opposite directions, so that when the outer edges of the shells of multiple fill lights are connected to each other, the first magnetic members on opposite sides of adjacent fill lights can be attracted to each other.
[0012] Optionally, the first magnetic part includes a magnet and a ferromagnetic metal part; the enclosure is a rectangular frame structure; the magnet and the ferromagnetic metal part are respectively arranged on opposite sides of the enclosure; when the outer edges of the shells of multiple fill lights are connected to each other, the magnet on one fill light can be adsorbed by the ferromagnetic metal part in another fill light.
[0013] Optionally, a mounting groove is provided in the enclosure, and an opening direction of the mounting groove is the same as an opening direction of the accommodating cavity; and the first magnetic member is fixedly connected in the mounting groove.
[0014] Optionally, the second magnetic member is arranged in a ring shape; a fixing groove is opened on the inner side surface of the bottom plate, the shape of the fixing groove matches the arrangement shape of the second magnetic member, and the second magnetic member is fixedly installed in the fixing groove.
[0015] Optionally, the main body includes a battery, and the battery is disposed in a receiving cavity of the main body; the battery is electrically connected to the light board to supply power to the light board.
[0016] Optionally, the main body includes a wireless coil, the wireless coil is arranged in the accommodating cavity, and the wireless coil is electrically connected to the battery; the wireless coil can be used for the interaction between the power of the battery and the power of the mobile phone.
[0017] The present application also provides a shooting system, including: a mobile phone, a magnetic suction component is provided on the back of the mobile phone; the fill light as described above, the fill light can be adsorbed on the back of the mobile phone through the cooperation of a second magnetic part and the magnetic suction component to provide fill light for shooting of the mobile phone.
[0018] It can be seen from the above technical solution that the beneficial effects of the utility model are:
[0019] The present application provides a fill light and shooting system. The fill light can be adsorbed on the mobile phone through a second magnetic part, and the entire end surface of the main body facing away from the mobile phone can emit light, which can emit a large area of light to provide a fill light source for mobile phone shooting. In addition, a first magnetic part surrounding the circumference is set on the main body of the fill light, so that adjacent fill light main bodies can be adsorbed and connected to each other; so that the light-emitting surfaces of multiple fill lights can be arranged in the same plane to form a larger area of light source, which effectively improves the fill light effect, especially in low-light environments. It can provide stronger fill light capabilities. In addition, through the splicing method of magnetic parts, users can flexibly combine the number and arrangement of fill lights according to actual needs to meet the fill light needs in different scenes, greatly improving the user experience and shooting effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 Schematic diagram of the shooting system structure in which the fill light is connected to the mobile phone.
[0021] Figure 2 This is a schematic diagram of the shooting system structure in which multiple fill lights are arranged in parallel.
[0022] Figure 3 for Figure 2 A schematic diagram of the structure of a shooting system with multiple fill lights arranged in a circle from another angle.
[0023] Figure 4 for Figure 1 Schematic diagram of the three-dimensional structure of the fill light.
[0024] Figure 5 for Figure 4 Schematic diagram of the three-dimensional structure of the fill light from another angle.
[0025] Figure 6 for Figure 4 Schematic diagram of the cross-sectional structure of the fill light.
[0026] Figure 7 for Figure 4 Schematic diagram of the exploded structure of the fill light.
[0027] Figure 8 for Figure 5 Schematic diagram of the exploded structure of the fill light.
[0028] Fig. 9 for Figure 7 Schematic diagram of the three-dimensional structure of the shell of the middle fill light.
[0029] Fig.10 for Fig. 9 A schematic diagram of the three-dimensional structure of the shell of the middle fill light from another angle.
[0030] The following are the descriptions of the reference numerals:
[0031] 100, mobile phone; 110, body; 120, rear camera; 200, fill light; 201, main body; 202, light emitting surface; 210, shell; 211, bottom plate; 212, enclosure; 213, light-transmitting window; 214, installation slot; 215, fixing slot; 220, light board; 221, lamp beads; 230, soft light board; 240, first magnetic part; 250, second magnetic part; 260, control circuit board; 261, battery; 262, charging coil; 263, NFC module; 264, power socket; 265, control button. DETAILED DESCRIPTION
[0032] Typical embodiments that embody the features and advantages of the present invention will be described in detail in the following description. It should be understood that the present invention can have various changes in different embodiments without departing from the scope of the present invention, and the descriptions and illustrations therein are essentially for illustrative purposes rather than for limiting the present invention.
[0033] In the description of the present application, it should be understood that in the embodiments shown in the drawings, the indications of directions or positional relationships (such as up, down, left, right, front and back, etc.) are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the devices or elements referred to must have a specific orientation, be constructed and operate in a specific orientation. These descriptions are appropriate when these elements are in the positions shown in the drawings. If the descriptions of the positions of these elements change, the indications of these directions also change accordingly.
[0034] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of this application, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.
[0035] See also Figures 1 to 10 The present embodiment provides a shooting system, which includes a mobile phone 100 and a fill light 200. The fill light 200 can be detachably connected to the back of the mobile phone 100 to provide fill light for shooting of the mobile phone 100.
[0036] It should be understood that this embodiment is based on the state of the mobile phone 100 when in use, where the direction facing the user is the front, and the direction away from the user is the rear.
[0037] See also Figure 1 In some embodiments, the mobile phone 100 includes a body 110, and a touch screen is provided on the front surface of the body 110, through which the user can control the mobile phone 100. A rear camera 120 is provided on the rear surface of the body 110, and the rear camera 120 can be located at the top corner of the body 110, and the user can use the rear camera 120 to take external views.
[0038] like Figure 1 As shown, the width of the fill light 200 is smaller than the width of the mobile phone 100, and the length of the fill light 200 is smaller than the distance from the rear camera 120 of the mobile phone 100 to the far edge of the mobile phone 100. When the fill light 200 is connected to the back of the mobile phone 100, and the length direction of the fill light 200 is parallel to the length direction of the mobile phone 100, and the width direction of the fill light 200 is parallel to the width direction of the mobile phone 100, the fill light 200 can be completely hidden behind the mobile phone 100, achieving a perfect fit with the mobile phone 100, thereby maintaining the overall comfort of holding. At this time, the fill light 200 can provide sufficient light for the shooting of the rear camera 120 of the mobile phone 100, which can effectively improve the shooting effect of the rear camera 120 in insufficient light conditions, and enhance the clarity and color reproduction of photos or videos.
[0039] See also Figures 2 to 6 In some embodiments, the fill light 200 includes a main body 201 and a first magnetic member 240 .
[0040] The end surface of the main body 201 facing away from the mobile phone 100 is a light emitting surface 202 , and the light emitting surface 202 covers the entire end surface of the main body 201 facing away from the mobile phone 100 , so that the entire end surface of the main body 201 facing away from the mobile phone 100 can emit light.
[0041] The first magnetic member 240 is disposed on the main body 201 and arranged around the circumference of the main body 201. The main bodies 201 of adjacent fill lights 200 are mutually adsorbed by the first magnetic member 240, so that the light emitting surfaces 202 of multiple fill lights 200 are arranged in the same plane to perform large-area fill light.
[0042] like Figure 2 As shown, the light emitting surfaces 202 of the multiple fill lights 200 are mutually arranged in the same plane, which can form a light source with a larger area, effectively improving the fill light effect, especially providing a stronger fill light capability in an environment with insufficient light. In addition, the light emitting surfaces 202 of the multiple fill lights 200 are mutually arranged in the same plane, and can also be spliced into a large screen to display various lighting effects, for example, different fill lights display different colors to create a unique background lighting effect.
[0043] Multiple fill lights 200 are spliced together by magnetic attraction, and users can flexibly combine the number and arrangement of the fill lights 200 according to actual needs to meet the fill light needs in different scenes, greatly improving the user experience and shooting effects.
[0044] In some other embodiments, the fill light 200 can also be connected to an external support device through a first magnetic member 240 disposed on the side. For example, the fill light 200 can be magnetically adsorbed on a support frame, a gimbal, or a camera to be vertically connected to an external support device to achieve fill light for the shooting environment.
[0045] See also Figures 7 to 10 In some embodiments, the main body 201 includes a shell 210, a light board 220, and a soft light board 230. The shell 210 is provided with a receiving cavity inside, and the end face of the shell 210 facing away from the mobile phone 100 is provided with a light-transmitting window 213, and the light-transmitting window 213 connects the receiving cavity with the external environment. The light board 220 is arranged in the receiving cavity, and the light board 220 and the light-transmitting window 213 are arranged opposite to each other, and the light emitted by the light board 220 can be emitted through the light-transmitting window 213. The soft light board 230 is arranged at the light-transmitting window 213 and covers the light board 220, so that the light emitted by the light board 220 can be emitted through the soft light board 230, and the outer side surface of the soft light board 230 forms the light-emitting surface 202.
[0046] Specifically, the size of the light board 220 is substantially the same as that of the soft light board 230 on the first light transmission window 213, and the light board 220 is arranged in parallel with the soft light board 230. The light board 220 is provided with a plurality of lamp beads 221 arranged evenly at intervals. The light emitted by the lamp beads 221 on the light board 220 can directly and evenly irradiate the soft light board 230. The light is emitted after being diffused and homogenized by the soft light board 230, which can effectively avoid the occurrence of light spots and shadows during shooting, and can provide a more natural light effect and reduce the highlight and reflection problems on the shooting object.
[0047] See also Figure 7 and Figure 8 In some embodiments, the fill light 200 includes a battery 261; the battery 261 is disposed in a receiving cavity of the housing 210 and is electrically connected to the light board 220 to supply power to the light board 220 so that the lamp beads 221 on the light board 220 can emit light.
[0048] See also Figure 7 and Figure 8 In some embodiments, the fill light 200 includes a charging coil 262 ; the charging coil 262 is disposed in the housing 210 and is electrically connected to the battery 261 , and the fill light 200 can interact with the mobile phone 100 for power via the charging coil 262 .
[0049] Specifically, a wireless charging and discharging coil is also provided in the mobile phone 100. When the fill light 200 is connected to the mobile phone 100, the fill light 200 can transmit power to the mobile phone 100 through the charging coil 262, so that the fill light 200 can be used as a mobile power bank to wirelessly charge the mobile phone 100. Of course, when the mobile phone 100 has sufficient power, the wireless charging and discharging coil on the mobile phone 100 can also reversely charge the fill light 200 to realize power interaction between the mobile phone 100 and the fill light 200.
[0050] In some embodiments, the fill light 200 further includes an NFC module 263, which is disposed in the housing 210 and is used for communication and matching with the mobile phone 100. Through the NFC module 263, the fill light 200 can achieve a quick connection with the mobile phone 100 without a cumbersome pairing process. The user only needs to bring the fill light 200 close to the mobile phone 100 to complete the automatic pairing, and establish an efficient data transmission channel between the mobile phone 100 and the fill light 200, so that the user can directly control the various parameter settings of the fill light 200 through the mobile phone 100, such as brightness adjustment, light color switching and other functions. In addition, the NFC module 263 can also be used to trigger a specific shooting mode. For example, when the fill light 200 is successfully paired with the mobile phone 100, the NFC module 263 can automatically identify the selfie mode, distant view mode, near mode or night view mode of the mobile phone 100, so that the fill light 200 emits different light effects, so as to provide users with more intelligent and personalized shooting support, and further enhance the user's shooting experience.
[0051] In some embodiments, the fill light 200 further includes a control circuit board 260, which is disposed in the housing 210 and next to the battery 261. The control circuit board 260 can be electrically connected to the light board 220, the battery 261, the charging coil 262, and the NFC module 263 to control and manage each circuit component.
[0052] See also Figure 5 In some embodiments, the fill light 200 further includes a power socket 264; the power socket 264 may be integrated on the control circuit board 260 and electrically connected to the battery 261. The power socket 264 may be a USB interface, a Type-C interface, or a DC interface, and the port of the power socket 264 may be set on the side edge of the fill light 200, which may be connected to the mains via a power adapter to charge the battery 261.
[0053] See also Figure 5 In some embodiments, the fill light 200 further includes a control button 265; the control button 265 can be disposed on the side edge of the fill light 200 and electrically connected to the control circuit board 260. The user can manually operate the functions of the fill light 200 such as switching on and off, adjusting the light source brightness, switching the light source mode, etc. by pressing the control button 265.
[0054] See also Fig. 9 and Fig.10 In some embodiments, the housing 210 includes a bottom plate 211 and a baffle 212. The baffle 212 is disposed at the outer edge of the bottom plate 211 and is combined with the bottom plate 211 to form a receiving cavity with an opening at one end; the opening of the receiving cavity forms a light-transmitting window 213. The first magnetic member 240 can be fixedly disposed on the baffle 212 so that adjacent fill lights 200 can be attracted to each other.
[0055] In some embodiments, the bottom plate 211 may be rectangular, and the enclosure 212 disposed around the outer edge of the bottom plate 211 may be enclosed to form a rectangular frame structure. The first magnetic member 240 is a magnet, and the magnetic poles of the first magnetic member 240 on the opposite sides of each enclosure 212 are opposite, so that when multiple fill lights 200 are connected to each other, the first magnetic members 240 on the opposite sides of adjacent fill lights 200 can be attracted to each other.
[0056] For example, the enclosure 212 can be formed by mutually enclosing the upper side plate, the lower side plate, the left side plate, and the right side plate relative to each other. The upper side plate, the lower side plate, the left side plate, and the right side plate of the enclosure 212 are all provided with the first magnetic member 240. Moreover, the two magnetic poles of each first magnetic member 240 on the enclosure 212 face the inside of the shell 210 and the outside of the shell 210 in two opposite directions, respectively.
[0057] When the N pole of the first magnetic member 240 on the upper side plate of the enclosure 212 faces the outside of the housing 210, the S pole of the first magnetic member 240 on the lower side plate of the enclosure 212 faces the outside of the housing 210, so that the upper side plate of one fill light 200 can be mutually adsorbed and abutted with the lower side plate of another fill light 200. Correspondingly, when the N pole of the first magnetic member 240 on the left side plate of the enclosure 212 faces the outside of the housing 210, the S pole of the first magnetic member 240 on the right side plate of the enclosure 212 is arranged to face the outside of the housing 210, so that the left side plate of one fill light 200 can be mutually adsorbed and abutted with the right side plate of another flash, so as to achieve adsorption and splicing of multiple fill lights 200.
[0058] In some other embodiments, the first magnetic member 240 may also include a magnet and a ferromagnetic metal member. The ferromagnetic metal member may be an iron block, a nickel block, or an alloy material that can be adsorbed by a magnet. The magnet and the ferromagnetic metal member are respectively arranged on opposite sides of the rectangular enclosure 212. When the outer edges of the housings 210 of multiple fill light lamps 200 are connected to each other, the magnet on one fill light lamp 200 can be adsorbed by the ferromagnetic metal member in another fill light lamp 200.
[0059] For example, when the first magnetic member 240 on the upper side plate of the enclosure 212 is a magnet, the first magnetic member 240 on the lower side plate of the enclosure 212 is a ferromagnetic metal member, and the magnet can be mutually adsorbed with the ferromagnetic metal member, so that the upper side plate of one fill light 200 can be mutually adsorbed and abutted with the lower side plate of another fill light 200. Correspondingly, when the first magnetic member 240 on the left side plate of the enclosure 212 is ferromagnetic, the first magnetic member 240 on the right side plate of the enclosure 212 is a ferromagnetic material, so that the left side plate of one fill light 200 can be mutually adsorbed and abutted with the right side plate of another flash, so as to achieve adsorption and splicing of multiple fill lights 200.
[0060] See also Fig. 9 and Fig.10 In some embodiments, a mounting groove 214 is opened in the enclosure 212 , and the mounting groove 214 is arranged on the enclosure 212 ; the first magnetic member 240 can be fixed in the mounting groove 214 .
[0061] Specifically, the upper side plate, the lower side plate, the left side plate, and the right side plate of the enclosure 212 are all provided with mounting grooves 214, and the opening direction of the mounting grooves 214 is consistent with the opening direction of the light-transmitting window 213. The mounting grooves 214 on the upper side plate, the lower side plate, the left side plate, and the right side plate can be interconnected to form an annular groove body. Each first magnetic member 240 can be snapped into the mounting groove 214 at the corresponding position to achieve fixation with the housing 210.
[0062] Of course, it is conceivable that the mounting grooves 214 provided in the upper side plate, the lower side plate, the left side plate, and the right side plate may also be spaced apart from each other; the opening direction of the mounting grooves 214 may also be oriented toward the interior of the housing 210. The first magnetic member 240 may be directly bonded in the mounting groove 214, or the first magnetic member 240 may be directly bonded to the inner side wall of the enclosure 212; it only needs to achieve a fixed connection between the first magnetic member 240 and the enclosure 212.
[0063] See also Figures 7 to 10 In some embodiments, a second magnetic member 250 is further disposed in the housing 210. The second magnetic member 250 is disposed on the inner side of the bottom plate 211 and is used to be adsorbed with the mobile phone 100 so that the fill light 200 can be detachably connected to the mobile phone 100.
[0064] Furthermore, the second magnetic member 250 can be arranged in an annular shape, and an annular fixing groove 215 is provided on the inner side of the bottom plate 211. The shape of the fixing groove 215 matches the arrangement shape of the second magnetic member 250, so that the second magnetic member 250 is fixedly engaged in the fixing groove 215, and is fixed to the bottom plate 211.
[0065] Of course, in some embodiments, the first magnetic member 240 may be directly bonded to the inner wall of the bottom plate 211 .
[0066] In some embodiments, the second magnetic member 250 may be a magnet, which can be adsorbed with a magnetic component provided on the back of the mobile phone 100. The magnetic component of the mobile phone 100 may be a metal element provided in the mobile phone 100, a metal shell, or a mobile phone shell mounted on the body 110 for adsorption, so that the fill light 200 can be firmly adsorbed on the back of the mobile phone 100 to prevent the fill light 200 from sliding or falling off during use. In addition, the fill light 200 and the mobile phone 100 are magnetically adsorbed, so that when the user needs the fill light 200, the fill light 200 can be quickly installed on the back of the mobile phone 100 at different angles; when the fill light 200 is not needed, the fill light 200 can also be quickly disassembled, which greatly facilitates the user's operation.
[0067] It is conceivable that in some other embodiments, the second magnetic member 250 may also be a ferromagnetic metal member, and the magnetic attraction component on the back of the mobile phone 100 is set as a magnet to achieve magnetic attraction between the fill light 200 and the mobile phone 100. Of course, the fill light 200 can also be detachably connected to the mobile phone 100 by setting Velcro, buckles or double-sided adhesive on the outer wall of the bottom plate 211.
[0068] In summary, the present embodiment provides a fill light 200 and a shooting system. The fill light 200 can be connected to the mobile phone 100 to provide a fill light source for shooting with the mobile phone 100. In addition, a first magnetic part 240 surrounding the circumference is provided on the main body 201 of the fill light 200, so that the main bodies 201 of adjacent fill lights 200 can be adsorbed and connected to each other; so that the light emitting surfaces 202 of multiple fill lights 200 can be arranged in the same plane to form a larger area of light source, which effectively improves the fill light effect, especially in an environment with insufficient light, it can provide a stronger fill light capability. Through the splicing method of magnetic parts, users can flexibly combine the number and arrangement of fill lights 200 according to actual needs to meet the fill light needs in different scenes, which greatly improves the user experience and shooting effect.
[0069] Although the utility model has been described with reference to several typical embodiments, it should be understood that the terms used are illustrative and exemplary, rather than restrictive. Since the utility model can be implemented in a variety of forms without departing from the spirit or essence of the utility model, it should be understood that the above-mentioned embodiments are not limited to any of the aforementioned details, but should be widely interpreted within the spirit and scope defined by the attached claims, so all changes and modifications falling within the scope of the claims or their equivalents should be covered by the attached claims.
Claims
1. A fill light, characterized in that: Can be used to connect with a mobile phone, the fill light includes: The main body comprises a shell and a light board; a receiving cavity is provided inside the shell, a light-transmitting window is provided on the shell, the light-transmitting window covers the entire end face of the shell away from the mobile phone, and connects the receiving cavity with the external environment; the light board is arranged in the receiving cavity, the light board and the light-transmitting window are arranged opposite to each other, and the light emitted by the light board is emitted through the light-transmitting window to form a light-emitting surface; A first magnetic member is provided on the housing and arranged around the circumference of the housing; the main bodies of the adjacent fill lights can be mutually adsorbed by the first magnetic member, so that the light emitting surfaces of the plurality of fill lights are arranged in the same plane, so as to perform fill light over a large area; A second magnetic component is arranged in the shell, and the second magnetic component is located on the inner wall of the shell at one end away from the light-emitting surface; the second magnetic component is used to adsorb with the mobile phone so that the fill light can be detachably connected to the back of the mobile phone.
2. The fill light according to claim 1, characterized in that: The main body comprises a soft light plate; the soft light plate is arranged at the light transmission window and covers the light board, so that the light emitted by the light board passes through the soft light plate and then is emitted.
3. The fill light according to claim 1, characterized in that: The shell includes a base plate and a enclosure; the enclosure is arranged at the outer edge of the base plate and is combined with the base plate to form the accommodating cavity with an open end, and the opening of the accommodating cavity forms the light-transmitting window; the first magnetic member is fixedly arranged on the enclosure.
4. The fill light according to claim 3, characterized in that: The first magnetic part is a magnet; the enclosure is a rectangular frame structure, and the magnetic poles of the first magnetic parts on opposite sides of the enclosure are facing oppositely, so that when the outer edges of the shells of multiple fill lights are connected to each other, the first magnetic parts on opposite sides of adjacent fill lights can be attracted to each other.
5. The fill light according to claim 3, characterized in that: The first magnetic part includes a magnet and a ferromagnetic metal part; the enclosure is a rectangular frame structure; the magnet and the ferromagnetic metal part are respectively arranged on opposite sides of the enclosure; when the outer edges of the shells of multiple fill lights are connected to each other, the magnet on one fill light can be adsorbed by the ferromagnetic metal part in another fill light.
6. The fill light according to claim 3, characterized in that: A mounting groove is provided in the enclosure, and the opening direction of the mounting groove is the same as the opening direction of the accommodating cavity; the first magnetic member is fixedly connected in the mounting groove.
7. The fill light according to claim 3, characterized in that: The second magnetic member is arranged in a ring shape; a fixing groove is opened on the inner side surface of the bottom plate, the shape of the fixing groove matches the arrangement shape of the second magnetic member, and the second magnetic member is fixedly installed in the fixing groove.
8. The fill light according to claim 1, characterized in that: The main body includes a battery, and the battery is arranged in the accommodating cavity of the main body; the battery is electrically connected to the light board to supply power to the light board.
9. The fill light according to claim 8, characterized in that: The main body includes a wireless coil, which is arranged in the accommodating cavity and is electrically connected to the battery; the wireless coil can be used for the interaction between the power of the battery and the power of the mobile phone.
10. A shooting system, characterized in that: include: A mobile phone, wherein a magnetic attraction component is provided on the back of the mobile phone; The fill light as described in any one of claims 1-9, wherein the fill light can be adsorbed on the back of the mobile phone through the cooperation of the second magnetic part and the magnetic suction component to provide fill light for shooting of the mobile phone.
Citation Information
Cited By
Fill light and photographing system
WO2026032412A1