Novel portable foldable LED film and television lamp
By designing spaced light panels and using flexible materials for film and television lights, the problems of large size and easy damage of film and television lights have been solved, resulting in foldable LED film and television lights that are easy to store, transport, and maintain.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YUYAO LISHUAI AUDIO & VISUAL EQUIP
- Filing Date
- 2025-01-17
- Publication Date
- 2026-04-17
AI Technical Summary
Existing film and television lights are bulky and difficult to store and transport, and flexible circuit boards are easily damaged and cannot be repaired.
A novel lightweight and foldable LED film and television light is designed, which adopts a gap setting between the light panels, and the bottom and top bodies are made of flexible materials. The reflective surface or reflector of the bottom body reflects light, and a reflector is set in the light panel housing cavity to restrict the movement of the light panel. The disassembly and assembly opening facilitates replacement and maintenance.
It enables film and television lights to be bent when not in use, reducing the area occupied, facilitating transportation, improving light utilization, ensuring light uniformity, and facilitating the disassembly and maintenance of the light panel.
Smart Images

Figure CN224135778U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of film and television lighting, and in particular to a novel lightweight and foldable LED film and television light. Background Technology
[0002] Film and television lights primarily serve to provide auxiliary lighting during shooting in low-light conditions, thereby obtaining suitable footage. Currently, conventional flat-panel film and television lights on the market are too large, making them difficult to store and transport. Therefore, flexible roll-up lights have emerged, which use flexible circuit boards internally, allowing them to be rolled up. However, flexible circuit boards are easily damaged and cannot be repaired. Utility Model Content
[0003] In order to overcome the shortcomings of the existing technology, this utility model provides a new type of lightweight and foldable LED film and television light, which can be bent when not in use, thereby reducing the area it occupies and making it easier to transport.
[0004] To achieve the above objectives, the present invention employs the following technical solution:
[0005] A novel lightweight and foldable LED film and television light includes a main body and a light assembly. The main body includes a bottom body and a top body with at least a portion made of a light-transmitting material. The top body covers the bottom body to form a light assembly receiving cavity between the bottom body and the top body for accommodating the light assembly. The light assembly includes at least two light panels, and a plurality of the light panels are installed in the light assembly receiving cavity. The light-emitting side of the light panels faces the top body, and adjacent light panels are spaced apart. The bottom body is made of a flexible material at least at the positions corresponding to the gaps between the light panels, and the top body is made of a flexible material at least at the positions corresponding to the gaps between the light panels.
[0006] By adopting the above technical solution, since the light panels are spaced apart and the bottom and top layers at corresponding positions are made of flexible materials, the new lightweight foldable LED film and television light can be bent between the light panels. This not only makes the film and television light more versatile in use, but also allows it to be bent when not in use, thereby reducing the area it occupies and facilitating its transport. Specifically, the bottom and top layers are made of flexible materials, and the top layer is made of light-transmitting material.
[0007] Furthermore, the side of the bottom layer facing the top layer is formed as a reflective surface of the bottom layer capable of reflecting light;
[0008] Alternatively, the novel lightweight foldable LED film and television light may include a reflector, which is installed between the bottom layer and the top layer, and the side of the reflector facing the top layer is formed as a reflective surface capable of reflecting light. The light panel is installed between the reflector and the top layer, and the reflector is not provided at the corresponding position of the gap between the light panels, or the reflector is made of flexible material at least at the corresponding position of the gap between the light panels.
[0009] By adopting the above technical solution, the reflective surface of the bottom layer or the reflective body can reflect the light that is directed toward the top layer, so that the light is emitted from the top layer as much as possible, thereby improving the utilization rate of the light emitted by the lamp panel.
[0010] Furthermore, the lamp assembly receiving cavity is divided into lamp panel receiving cavities in a number matching the number of lamp panels, and adjacent lamp panel receiving cavities are spaced apart. The lamp panels are installed in the lamp panel receiving cavities one by one, and the lamp panels are restricted from moving within the lamp panel receiving cavities.
[0011] By adopting the above technical solution, the structure of the new lightweight foldable LED film and television light is more reasonable. The lamp plate receiving cavity can restrict the movement of the lamp plate, thereby avoiding the displacement of the lamp plate. This ensures that the film and television light will not cause uneven light output due to the movement of the lamp plate during use. At the same time, it also ensures the maintenance of the gap between the lamp plates, which is convenient for the user's bending operation.
[0012] Furthermore, multiple reflectors are provided, and their number matches the number of lamp panel receiving cavities so that they are arranged one-to-one in the lamp panel receiving cavities. That is, the reflectors are not provided at the corresponding positions of the gaps between the lamp panels.
[0013] Alternatively, the reflector may be a single piece that spans the entire lamp panel cavity, meaning that the reflector may be made of flexible material at least at the corresponding positions of the gaps between the lamp panels. Specifically, the reflector as a whole may be made of flexible material.
[0014] By adopting the above technical solution, the reflector becomes more reasonable. Preferably, the reflector is a single piece, which facilitates actual production.
[0015] Furthermore, the bottom layer is made of PVC coated fabric, the top layer is made of protective film, and the reflective element is made of reflective aluminum film.
[0016] By adopting the above technical solution, the bottom layer, the top layer, and the reflector are made more reasonable, and the bottom layer, the top layer, and the reflector achieve overall flexibility while satisfying their basic functions.
[0017] Furthermore, the bottom layer and the top layer are fixed together by sewing technology, forming the lamp assembly receiving cavity between them;
[0018] The bottom layer and the top layer are separated into multiple lamp panel receiving cavities by sewing technology;
[0019] The reflector is fixedly installed on the side of the bottom layer facing the top layer using the sewing technique.
[0020] By adopting the above technical solution, the connection and fixation between the bottom layer, the top layer, and the reflector, as well as the formation of the lamp body receiving cavity, are made more reasonable, which facilitates actual production.
[0021] Furthermore, multiple lamp panels are spaced apart along a first direction within the lamp assembly receiving cavity;
[0022] The lamp body has a disassembly opening that communicates with the lamp assembly cavity, and the disassembly opening extends along the first direction.
[0023] By adopting the above technical solution, the disassembly and assembly opening facilitates the user's disassembly and assembly of the light panel, thereby enabling the user to replace and repair the light panel when using the film and television lights.
[0024] Furthermore, the second direction is perpendicular to the first direction, and the disassembly opening is located at or near the edge of the lamp body in the second direction.
[0025] By adopting the above technical solution, the design of the disassembly and assembly opening is more reasonable, which facilitates the disassembly and assembly of the lamp panel during actual use.
[0026] Furthermore, the novel lightweight foldable LED film and television light includes an opening and closing component, which is disposed on the main body of the light body at the location where the disassembly and assembly opening is provided, for opening or closing the disassembly and assembly opening.
[0027] Using the above technical solution, the opening and closing component can open and close the disassembly opening. When the user needs to disassemble or assemble the lamp panel, the user must first operate the opening and closing component to open the disassembly opening. After the user has finished installing the lamp panel, the user needs to operate the opening and closing component to close the disassembly opening. When the opening and closing component closes the disassembly opening, it can prevent external objects from entering the lamp assembly cavity through the disassembly opening and affecting the lamp panel, thus protecting the lamp panel.
[0028] Furthermore, the opening and closing component adopts a zipper structure; specifically, the opening and closing component adopts a waterproof zipper structure.
[0029] By adopting the above technical solution, the opening and closing component is made more reasonable, and the zipper structure makes it easier for users to operate the opening and closing component to open and close the disassembly opening.
[0030] Furthermore, the spacing between the light panels is such that adjacent light panels in the novel lightweight foldable LED film and television light can be positioned relative to each other.
[0031] Specifically, when the side of the bottom layer facing the top layer is formed as the reflective surface of the bottom layer, the spacing between the lamp panels is greater than or equal to twice the sum of the thickness of the bottom layer, the thickness of the lamp panels, and the thickness of the top layer;
[0032] When the reflector is provided between the bottom layer and the top layer, the gap between the light panels is greater than or equal to twice the sum of the thickness of the bottom layer, the thickness of the reflector, the thickness of the light panel, and the thickness of the top layer.
[0033] By adopting the above technical solution, the structure of the new lightweight foldable LED film and television light is more reasonable; when the film and television light is bent, the two adjacent light panels can be aligned, that is, folding is achieved, which makes the bending of the film and television light more complete, further reducing the area and space occupied by the film and television light when not in use, and also further facilitating the handling of the film and television light.
[0034] Furthermore, the disassembly and assembly opening is provided on the bottom layer.
[0035] By adopting the above technical solution, the design of the disassembly and assembly opening is made more reasonable.
[0036] Furthermore, the main body of the lamp body has a wire outlet hole that communicates with the lamp assembly receiving cavity. The drive controller is connected to the lamp board through the wire outlet hole to drive and control the working state of the lamp board. Multiple lamp boards are connected in series or in parallel within the lamp assembly receiving cavity and then connected to the drive controller through the wire outlet hole. Specifically, the wire outlet hole is located on the bottom layer.
[0037] The above technical solution makes the detachable film and television light more reasonable.
[0038] Furthermore, when the lamp panel is installed in the lamp assembly receiving cavity, the lamp panel has an electrical connection part for cable connection on the side facing the disassembly opening.
[0039] By adopting the above technical solution, the electrical connection cables are concentrated at the disassembly and assembly opening, so as to facilitate the disassembly and assembly of the lamp panel.
[0040] Furthermore, the novel lightweight foldable LED film and television light includes a lamp panel protective component. The lamp panel protective component is installed at the edge or corner of the lamp panel. The lamp panel protective component includes a lamp panel protective component body. The lamp panel protective component body is located on the non-light-emitting side of the lamp panel, and the lamp panel protective component body protrudes from the outer edge of the lamp panel toward the light-emitting side of the lamp panel to form a lamp panel protective component edging. The lamp panel is provided with a positioning hole at the location where the lamp panel protective component is installed, and a positioning post matching the positioning hole is protruding at the corresponding position on the lamp panel protective component body.
[0041] By adopting the above technical solution, the lamp panel protective component can protect the lamp panel, especially during the lamp panel installation process.
[0042] Furthermore, the bottom layer has a Velcro closure on the edge away from the top layer; the top layer has a Velcro closure on the edge away from the bottom layer.
[0043] By adopting the above technical solution, the Velcro attachment facilitates the installation of the film and television light onto other objects, such as light boxes.
[0044] Furthermore, the novel lightweight foldable LED film and television light includes a support frame that acts on the main body of the light body to keep the light panel located in the main body of the light body in the same plane.
[0045] By adopting the above technical solution, the support frame can keep the lamp plate in the main body of the lamp body on the same plane, thus preventing the film and television lamp from being accidentally folded during use.
[0046] Furthermore, multiple lamp panels are spaced apart along a first direction within the lamp assembly receiving cavity;
[0047] The lamp body is formed into a first main body side and a second main body side on both sides in the first direction. The lamp body is provided with one or more sets of support holes. One set of support holes includes a first support hole provided on the first main body side and a second support hole provided on the second main body side.
[0048] The support frame includes a number of support components that match the number of support hole groups. Each support component includes a bracket portion and a first support arm and a second support arm disposed on opposite sides of the bracket. The end of the first support arm away from the second support arm is formed as a first support end, and the first support end is provided with a first support hook that can engage with the first support hole. The end of the second support arm away from the first support arm is formed as a second support end, and the second support end is provided with a second support hook that can engage with the second support hole. The distance from the first support hook to the second support hook matches the distance from the first support hole to the second support hole in the support hole group when the lamp plate in the lamp body is on the same plane.
[0049] Using the above technical solution, the first support hook on the first support arm is engaged in the first support hole, and the second support hook on the second support arm is engaged in the second support hole. Due to the lengths of the first support arm and the second support arm, the film and television light can be opened and the film and television light can be prevented from bending in the first direction.
[0050] Furthermore, the first support end can move closer to the side away from the second support end, and the first support end tends to move away from the second support end when it is close to the second support end, and / or the second support end can move closer to the side away from the first support end, and the second support end tends to move away from the first support end when it is close to the first support end.
[0051] The above technical solution facilitates the engagement of the first support hook with the first support hole and the second support hook with the second support hole. Specifically, the user can first engage the first support hook in the first support hole, and then operate the first support end and / or the second support end to reduce the total length of the first support arm and the second support arm, so that the second support hook can be engaged in the second support hole. Of course, the user can first engage the second support hook in the second support hole. Moreover, due to the characteristics of the first support end and the second support end, they can automatically reset, and at the same time, the first support hook and the second support hook can be prevented from disengaging from the first support hole and the second support hook from the second support hole.
[0052] Furthermore, the first support arm includes a first support arm body, a first support arm telescopic body, and a first support arm elastic member. One end of the first support arm body is connected to the bracket portion. The first support arm telescopic body is telescopically disposed at the other end of the first support arm body. The first support arm elastic member acts on the first support arm telescopic body, causing the first support arm telescopic body to tend to extend outward in the retracted state. The end of the first support arm telescopic body away from the bracket portion is formed as the first support end.
[0053] The second support arm includes a second support arm body, a second support arm telescopic body, and a second support arm elastic member. One end of the second support arm body is connected to the bracket portion. The second support arm telescopic body is telescopically disposed at the other end of the second support arm body. The second support arm elastic member acts on the second support arm telescopic body, causing the second support arm telescopic body to tend to extend outward in the retracted state. The end of the second support arm telescopic body away from the bracket portion forms the second support end.
[0054] By adopting the above technical solution, the first support end can move towards the side away from the second support end, and the second support end can move towards the side away from the second support end; and the arrangement of the first support arm elastic member and the second support arm elastic member enables the first support end to have a tendency to move away from the second support end when it is close to the second support end, and the second support end to have a tendency to move away from the first support end when it is close to the first support end; the above structural design is reasonable.
[0055] Furthermore, the first support arm telescopic body is provided with a first support guide limiting slide hole, and the first support guide limiting slide hole extends along the telescopic direction of the first support arm telescopic body. The first support arm body is provided with a first guide limiting post at a corresponding position that matches the first support guide limiting slide hole. The first support arm elastic element is a spring. The first support arm body is provided with a first elastic abutment post on the side of the first support arm telescopic body facing the bracket portion. The first support arm elastic element is located between the first elastic abutment post and the first support arm telescopic body, and its two ends are in contact with the first elastic abutment post and the first support arm telescopic body, respectively.
[0056] The second support arm telescopic body is provided with a second support guide limiting slide hole, and the second support guide limiting slide hole extends along the telescopic direction of the second support arm telescopic body. The second support arm body is provided with a second guide limiting post at a corresponding position that matches the second support guide limiting slide hole. The elastic element of the second support arm is a spring. The second support arm body is provided with a second elastic abutment post on the side of the second support arm telescopic body facing the bracket portion. The second support arm elastic element is located between the second elastic abutment post and the second support arm telescopic body, and its two ends are in contact with the second elastic abutment post and the second support arm telescopic body, respectively.
[0057] Using the above technical solution, the first support guide limiting slide hole and the first guide limiting post can guide the extension and retraction of the first support arm telescopic body, making the extension and retraction of the first support arm telescopic body more stable. In addition, the two can also limit the extension and retraction range of the first support arm telescopic body. The second support guide limiting slide hole and the second guide limiting post work in the same way.
[0058] The first elastic abutment post facilitates the installation of the elastic element of the first support arm and enables it to act on the telescopic body of the first support arm. The same applies to the second elastic abutment post.
[0059] Furthermore, the first support arm is rotatably mounted on the bracket to switch between a first support arm folded position and a first support arm working position, and the second support arm is rotatably mounted on the bracket to switch between a second support arm folded position and a second support arm working position.
[0060] With the above technical solution, the first support arm is rotatably configured to switch between opening and folding, that is, to switch between the first support arm folding position and the first support arm working position. The second support arm is rotatably configured to switch between opening and folding, that is, to switch between the second support arm folding position and the second support arm working position. The above structure allows the support frame to be folded when not in use, making it easy to store and transport.
[0061] Furthermore, the bracket portion is provided with a first locking structure, the first support arm is provided with a first locking engagement structure, and the first locking engagement structure can engage with the first locking structure to restrict the rotation of the first support arm when the first support arm is in the working position; the bracket portion is provided with a second locking structure, the second support arm is provided with a second locking engagement structure, and the second locking engagement structure can engage with the second locking structure to restrict the rotation of the second support arm when the second support arm is in the working position.
[0062] Using the above technical solution, the locking engagement of the first locking structure and the first locking engagement structure enables the first support arm to be maintained in the working position of the first support arm, preventing it from being accidentally rotated or folded. If the user needs to rotate or fold the first support arm, he or she can simply unlock and lock the first locking structure and the first locking engagement structure. The same applies to the second locking structure and the second locking engagement structure.
[0063] Furthermore, the first support arm is movable relative to the bracket portion along its axis to achieve locking and unlocking of the first locking structure and the second locking engagement structure. Under the action of the first support arm locking elastic member, the first support arm always tends to move towards the locking engagement side of the first locking structure and the second locking engagement structure. The second support arm is movable relative to the bracket portion along its axis to achieve locking and unlocking of the second locking structure and the second locking engagement structure. Under the action of the second support arm locking elastic member, the second support arm always tends to move towards the locking engagement side of the second locking structure and the second locking engagement structure.
[0064] By adopting the above technical solution, the locking and unlocking between the first locking and engaging structure and the first locking structure can be achieved by moving the axis of the first support arm; the same applies to the second support arm.
[0065] The first support arm locking elastic element ensures that the first locking engagement structure and the first locking structure can be stably and reliably locked together, preventing accidental unlocking of both. The same applies to the second support arm locking elastic element. The above technical solution is convenient, quick to operate, and reasonably designed.
[0066] Furthermore, the bracket portion is recessed towards the first support arm to form a first locking structure, and one end of the first support arm facing the bracket portion is formed as a first locking engagement structure, and the first locking structure can be inserted into the first locking engagement structure; the bracket portion is recessed towards the second support arm to form a second locking structure, and one end of the second support arm facing the bracket portion is formed as a second locking engagement structure, and the second locking structure can be inserted into the second locking engagement structure.
[0067] Using the above technical solution, the first locking engagement structure is inserted into the first locking structure or the first locking engagement structure is disengaged from the first locking structure to achieve locking and unlocking between the first locking engagement structure and the first locking structure; the second locking structure and the second locking engagement structure are similar. The above technical solution has a simple structure and a reasonable design.
[0068] Furthermore, the bracket portion protrudes on both sides of the first locking structure to form first bracket arm connecting protrusions. A first support arm pivot spans the two first bracket arm connecting protrusions. A first support arm pivot hole matching the first support arm pivot is provided on the side of the first support arm facing the bracket portion, and the first support arm pivot hole extends along the axial direction of the first support arm. The first support arm locking elastic element is a tension spring. A first locking connecting post is provided on the side of the first support arm away from the first locking structure from the first support arm pivot hole. The first support arm locking elastic element is disposed between the first support arm pivot and the first locking connecting post, and its two ends are respectively connected to the first support arm pivot and the first locking connecting post. The bracket portion has protrusions on both sides of the second locking structure to form second bracket arm connecting protrusions. The second support arm pivot spans the two second bracket arm connecting protrusions. The second support arm has a second support arm pivot hole on the side facing the bracket portion that matches the second support arm pivot. The second support arm pivot hole extends along the axial direction of the second support arm. The second support arm locking elastic element is a tension spring. The second support arm has a second locking connecting post on the side of the second support arm pivot hole away from the second locking structure. The second support arm locking elastic element is disposed between the second support arm pivot and the second locking connecting post, and its two ends are respectively connected to the second support arm pivot and the second locking connecting post.
[0069] By adopting the above technical solution, the first support arm, the second support arm and the bracket are rotatably connected, and the first support arm and the second support arm can move along their own axis.
[0070] The first locking connecting post and the second locking connecting post facilitate the installation of the first support arm locking elastic element and the second support arm locking elastic element, and can respectively act on the first support arm and the second support arm;
[0071] The above technical solution is reasonably designed.
[0072] Furthermore, the support hole group is provided in two sets, and correspondingly, the support component is provided in two sets; in the second direction perpendicular to the first direction, the second support hole in each set of the support hole group is close to the first support hole side in the other set of the support hole group, and the bracket part in the two sets of the support component is the same bracket part, and the bracket part is provided with a connecting column for connecting with the external structure.
[0073] The fact that the second support hole in each group of support holes is close to the first support hole in another group of support holes can be understood as follows: the first support hole and the second support hole in each group are distributed at an oblique angle, and the two groups of support holes form a cross; therefore, the two groups of support components are cross-shaped.
[0074] By adopting the above technical solution, the arrangement of the support hole group and the support frame is more reasonable; specifically, the first support hole and the second support hole in the two groups are respectively located at the four corners of the lamp body.
[0075] Compared with the prior art, the present invention has the following beneficial effects:
[0076] (1) The novel lightweight foldable LED film and television light of this utility model can be bent when not in use, thereby reducing the area it needs to occupy and making it easy to transport.
[0077] (2) The novel lightweight foldable LED film and television light of this utility model is provided with a disassembly and assembly opening, which facilitates the disassembly and assembly of the light panel for easy replacement and maintenance.
[0078] (3) The novel lightweight and foldable LED film and television light of this utility model is reasonably designed. Attached Figure Description
[0079] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0080] Figure 1 This is a three-dimensional structural diagram of the novel lightweight and foldable LED film and television light of this utility model;
[0081] Figure 2 This is a three-dimensional structural diagram of the novel lightweight and foldable LED film and television light from another angle.
[0082] Figure 3 This is an exploded structural diagram of the novel lightweight and foldable LED film and television light of this utility model.
[0083] Figure 4 This is a cross-sectional view of the novel lightweight and foldable LED film and television light of this utility model.
[0084] Figure 5 This is a schematic diagram of the structure of the lamp panel of the novel lightweight and foldable LED film and television light of this utility model;
[0085] Figure 6This is a schematic diagram of the support frame in the novel lightweight and foldable LED film and television light of this utility model;
[0086] Figure 7 for Figure 6 Schematic diagram of the cross-sectional structure at point AA;
[0087] Figure 8 This is a schematic diagram of the storage and folding of the support frame in the novel lightweight and foldable LED film and television light of this utility model;
[0088] Figure 9 This is a schematic diagram of the drive controller in the novel lightweight and foldable LED film and television light of this utility model;
[0089] The component names corresponding to the various reference numerals in the figure are as follows: 1. Lamp body; 101. Bottom layer; 102. Top layer; 103. Lamp assembly cavity; 1031. Lamp panel cavity; 104. Disassembly / removal opening; 105. Cable outlet; 106. First main body side; 107. Second main body side; 108. Support hole group; 1081. First support hole; 1082. Second support hole; 2. Lamp assembly; 201. Lamp panel; 2011. Electrical connection part; 2012. Positioning hole; 3. Reflector; 301. Reflector reflective surface; 4. Opening 5. Opening and closing components; 6. Drive controller; 7. Lamp panel protection component; 8. Lamp panel protection component body; 9. Lamp panel protection component edging; 10. Positioning post; 11. Velcro; 2. Support frame; 3. Support assembly; 4. Bracket; 5. First locking structure; 6. Second locking structure; 7. First bracket arm connecting protrusion; 8. Second bracket arm connecting protrusion; 9. First support arm pivot; 10. Second support arm pivot; 11. Connecting post; 12. First support arm; 8012a, First support end; 8012b, First support hook; 8012c, First support arm body; 8012d, First support arm telescopic body; 8012e, First support arm elastic element; 8012f, First support guide limiting slide hole; 8012g, First guide limiting post; 8012h, First elastic abutment post; 8012i, First locking fit structure; 8012j, First support arm locking elastic element; 8012k, First support arm pivot hole; 8012l, First locking connecting post; 80 13. Second support arm; 8013a. Second support end; 8013b. Second support hook; 8013c. Second support arm body; 8013d. Second support arm telescopic body; 8013e. Second support arm elastic element; 8013f. Second support guide limiting slide hole; 8013g. Second guide limiting post; 8013h. Second elastic abutment post; 8013i. Second locking fit structure; 8013j. Second support arm locking elastic element; 8013k. Second support arm pivot hole; 8013l. Second locking connecting post. Detailed Implementation
[0090] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0091] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0092] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.
[0093] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0094] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.
[0095] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0096] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.
[0097] See Figures 1 to 9 This utility model provides a novel lightweight and foldable LED film and television light, including a lamp body 1 and a lamp assembly 2. The lamp body 1 includes a bottom body 101 and a top body 102 with at least a portion of it made of light-transmitting material. The top body 102 covers the bottom body 101 to form a lamp assembly receiving cavity 103 between the bottom body 101 and the top body 102 for accommodating the lamp assembly 2. The lamp assembly 2 includes at least two lamp panels 201. A plurality of lamp panels 201 are installed in the lamp assembly receiving cavity 103, and the light-emitting side of the lamp panels 201 is arranged facing the top body 102. Adjacent lamp panels 201 are spaced apart. The bottom body 101 is made of flexible material at least at the position corresponding to the gap between the lamp panels 201, and the top body 102 is made of flexible material at least at the position corresponding to the gap between the lamp panels 201.
[0098] By adopting the above technical solution, since the light panel 201 is spaced apart from the light panel 201, and the bottom body 101 and top body 102 at the corresponding positions are made of flexible materials, the new lightweight foldable LED film and television light can be bent between the light panels 201 and the light panel 201. This not only makes the film and television light more versatile in use, but also allows it to be bent when not in use, thereby reducing the area it occupies and making it easier to transport. Specifically, the bottom body 101 and the top body 102 are made of flexible materials, and the top body 102 is made of light-transmitting material.
[0099] Furthermore, the side of the bottom layer 101 facing the top layer 102 is formed as a reflective surface of the bottom layer 101 capable of reflecting light;
[0100] Alternatively, the novel lightweight foldable LED film and television light includes a reflector 3, which is installed between the bottom body 101 and the top body 102. The side of the reflector 3 facing the top body 102 is formed as a reflective surface 301 capable of reflecting light. The lamp panel 201 is installed between the reflector 3 and the top body 102. The reflector 3 is not provided at the corresponding position of the gap between the lamp panels 201, or the reflector 3 is made of flexible material at least at the corresponding position of the gap between the lamp panels 201.
[0101] By adopting the above technical solution, the reflective surface of the bottom layer 101 or the reflective body 3 can reflect the light that is directed toward the top layer 102, so that the light is emitted from the top layer 102 as much as possible, thereby improving the utilization rate of the light emitted by the lamp panel 201.
[0102] Furthermore, the lamp assembly receiving cavity 103 is divided into lamp panel receiving cavities 1031 in number matching the number of lamp panels 201, and adjacent lamp panel receiving cavities 1031 are spaced apart. The lamp panels 201 are installed in the lamp panel receiving cavities 1031 in a one-to-one correspondence, and the lamp panels 201 are restricted from moving within the lamp panel receiving cavities 1031.
[0103] By adopting the above technical solution, the structure of the new lightweight foldable LED film and television light is more reasonable. The lamp plate receiving cavity 1031 can restrict the movement of the lamp plate 201, thereby avoiding the displacement of the lamp plate 201. This ensures that the film and television light will not cause uneven light output due to the movement of the lamp plate 201 during use. At the same time, it also ensures the maintenance of the gap between the lamp plates 201, which is convenient for the user's bending operation.
[0104] Furthermore, multiple reflectors 3 are provided, and their number matches the number of lamp panel receiving cavities 1031 so that they are arranged one-to-one in the lamp panel receiving cavities 1031. That is, the reflectors 3 are not provided at the corresponding positions of the gaps between the lamp panels 201.
[0105] Alternatively, the reflector 3 may be integral and span the entire lamp panel receiving cavity 1031, that is, the reflector 3 may be made of flexible material at least at the corresponding position of the gap between the lamp panels 201. Specifically, the reflector 3 may be made of flexible material as a whole.
[0106] By adopting the above technical solution, the reflector 3 becomes more reasonable. Preferably, the reflector 3 is an integral piece, which facilitates actual production.
[0107] Furthermore, the bottom layer 101 is made of PVC coated fabric, the top layer 102 is made of protective film, and the reflective body 3 is made of reflective aluminum film.
[0108] By adopting the above technical solution, the bottom body 101, the top body 102, and the reflector 3 are made more reasonable, and the bottom body 101, the top body 102, and the reflector 3 achieve overall flexibility while satisfying their basic functions.
[0109] Furthermore, the bottom layer 101 and the top layer 102 are fixed together by sewing technology, and the lamp assembly receiving cavity 103 is formed between them;
[0110] The bottom layer 101 and the top layer 102 are separated into multiple lamp panel receiving cavities 1031 by sewing technology;
[0111] The reflector 3 is fixedly installed on the side of the bottom body 101 facing the top body 102 by the sewing technology.
[0112] By adopting the above technical solution, the connection and fixation between the bottom body 101, the top body 102, and the reflector, as well as the formation of the lamp body receiving cavity, are made more reasonable, which facilitates actual production.
[0113] Furthermore, a plurality of the lamp panels 201 are spaced apart along the first direction within the lamp assembly receiving cavity 103;
[0114] The lamp body 1 is provided with a disassembly opening 104 that communicates with the lamp assembly receiving cavity 103, and the disassembly opening 104 extends along the first direction.
[0115] By adopting the above technical solution, the disassembly opening 104 facilitates the user to disassemble and assemble the light panel 201, thereby enabling the user to replace and repair the light panel 201 when using the film and television lights.
[0116] Furthermore, the second direction is perpendicular to the first direction, and the disassembly opening 104 is located at or near the edge of the lamp body 1 in the second direction.
[0117] By adopting the above technical solution, the setting of the disassembly opening 104 is more reasonable, which facilitates the disassembly and assembly of the lamp panel 201 during actual use.
[0118] Furthermore, the novel lightweight foldable LED film and television light includes an opening and closing component 4, which is disposed on the lamp body 1 at the location where the disassembly and assembly opening 104 is provided, for opening or closing the disassembly and assembly opening 104.
[0119] Using the above technical solution, the opening and closing component 4 can open and close the disassembly and assembly opening 104. When the user needs to disassemble and assemble the lamp panel 201, the user must first operate the opening and closing component 4 to open the disassembly and assembly opening 104. After the user has installed the lamp panel 201, the user needs to operate the opening and closing component 4 to close the disassembly and assembly opening 104. When the opening and closing component 4 closes the disassembly and assembly opening 104, it can prevent external objects from entering the lamp assembly receiving cavity 103 through the disassembly and assembly opening 104 and affecting the lamp panel 201, thus protecting the lamp panel 201.
[0120] Furthermore, the opening and closing component 4 adopts a zipper structure; specifically, the opening and closing component 4 adopts a waterproof zipper structure.
[0121] By adopting the above technical solution, the opening and closing component 4 is made more reasonable, and the zipper structure makes it easier for users to operate the opening and closing component 4 to open and close the disassembly and assembly opening 104.
[0122] Furthermore, the spacing between the light panels 201 and the light panels 201 is such that two adjacent light panels 201 in the novel lightweight foldable LED film and television light can be positioned opposite each other.
[0123] Specifically, when the side of the bottom layer 101 facing the top layer 102 is formed as the reflective surface of the bottom layer 101, the spacing between the lamp panels 201 is greater than or equal to twice the sum of the thickness of the bottom layer 101, the thickness of the lamp panels 201, and the thickness of the top layer 102.
[0124] When the reflector 3 is provided between the bottom body 101 and the top body 102, the gap between the lamp plate 201 and the lamp plate 202 is greater than or equal to twice the sum of the thickness of the bottom body 101, the thickness of the reflector 3, the thickness of the lamp plate 201, and the thickness of the top body 102.
[0125] By adopting the above technical solution, the structure of the new lightweight foldable LED film and television light is more reasonable; when the film and television light is bent, the two adjacent light panels 201 can be aligned, that is, folding is achieved, which makes the bending of the film and television light more complete, further reducing the area and space occupied by the film and television light when not in use, and also further facilitating the handling of the film and television light.
[0126] Furthermore, the disassembly opening 104 is provided on the bottom body 101.
[0127] By adopting the above technical solution, the setting of the disassembly and assembly opening 104 is made more reasonable.
[0128] Furthermore, the lamp body 1 has a wire outlet hole 105 that communicates with the lamp assembly receiving cavity 103. The drive controller 5 is connected to the lamp board 201 through the wire outlet hole 105 to drive and control the working state of the lamp board 201. Multiple lamp boards 201 are connected in series or in parallel within the lamp assembly receiving cavity 103 and then connected to the drive controller 5 through the wire outlet hole 105. Specifically, the wire outlet hole 105 is provided on the bottom body 101.
[0129] The above technical solution makes the detachable film and television light more reasonable.
[0130] Furthermore, when the lamp panel 201 is installed in the lamp assembly receiving cavity 103, the lamp panel 201 has an electrical connection part 2011 for cable connection on the side facing the disassembly opening 104.
[0131] By adopting the above technical solution, the electrical connection cables are concentrated at the disassembly and assembly opening 104, so as to facilitate the disassembly and assembly of the lamp board 201.
[0132] Furthermore, the novel lightweight foldable LED film and television light includes a lamp panel protective component 6. The lamp panel protective component 6 is installed at the edge or corner of the lamp panel 201. The lamp panel protective component 6 includes a lamp panel protective component body 601. The lamp panel protective component body 601 is located on the non-light-emitting side of the lamp panel 201. The lamp panel protective component body 601 is provided with a lamp panel protective component edging 602 protruding from the outer edge of the lamp panel 201 toward the light-emitting side of the lamp panel 201. The lamp panel 201 is provided with a positioning hole 2012 at the location where the lamp panel protective component 6 is installed. The lamp panel protective component body 601 is provided with a positioning post 603 that matches the positioning hole 2012 at the corresponding position.
[0133] By adopting the above technical solution, the lamp panel protection component 6 can protect the lamp panel 201, especially during the installation of the lamp panel 201.
[0134] Furthermore, the bottom layer 101 has a Velcro 7 on the edge away from the top layer 102; the top layer 102 has a Velcro 7 on the edge away from the bottom layer 101.
[0135] By adopting the above technical solution, the Velcro 7 facilitates the installation of the film and television light onto other objects, such as light boxes.
[0136] Furthermore, the novel lightweight foldable LED film and television light includes a support frame 8 that acts on the main body 1 of the light body to keep the light panel 201 located in the main body 1 in the same plane.
[0137] By adopting the above technical solution, the support frame 8 can keep the lamp plate 201 in the lamp body 1 on the same plane, thus preventing the film and television lamp from being accidentally folded during use.
[0138] Furthermore, a plurality of the lamp panels 201 are spaced apart along the first direction within the lamp assembly receiving cavity 103;
[0139] The lamp body 1 is formed as a first main body side 106 and a second main body side 107 on both sides in the first direction. The lamp body 1 is provided with one or more sets of support hole groups 108. One set of support hole groups 108 includes a first support hole 1081 provided on the first main body side 106 and a second support hole 1082 provided on the second main body side 107.
[0140] The support frame 8 includes a number of support components 801 matching the number of support hole groups 108. Each support component 801 includes a bracket portion 8011 and a first support arm 8012 and a second support arm 8013 disposed on opposite sides of the bracket. The end of the first support arm 8012 away from the second support arm 8013 is formed as a first support end 8012a, and the first support end 8012a is provided with a first support hook 8012b capable of engaging with the first support hole 1081. The end of the second support arm 8013 away from the first support arm 8012 is formed as the second support end 8013a, and the second support end 8013a is provided with a second support hook 8013b that can engage with the second support hole 1082. The distance from the first support hook 8012b to the second support hook 8013b is matched with the distance from the first support hole 1081 to the second support hole 1082 in the support hole group 108 when the lamp plate 201 in the lamp body 1 is on the same plane.
[0141] Using the above technical solution, the first support hook 8012b on the first support arm 8012 is engaged in the first support hole 1081, and the second support hook 8013b on the second support arm 8013 is engaged in the second support hole 1082. Due to the length of the first support arm 8012 and the second support arm 8013, the film and television light can be opened and the film and television light can be prevented from bending in the first direction.
[0142] Furthermore, the first support end 8012a can move closer to the side away from the second support end 8013a, and the first support end 8012a tends to move away from the second support end 8013a when it is close to the second support end 8013a, and / or the second support end 8013a can move closer to the side away from the first support end 8012a, and the second support end 8013a tends to move away from the first support end 8012a when it is close to the first support end 8012a.
[0143] The above technical solution facilitates the engagement of the first support hook 8012b with the first support hole 1081 and the second support hook 8013b with the second support hole 1082. Specifically, the user can first engage the first support hook 8012b in the first support hole 1081, and then operate the first support end 8012a and / or the second support end 8013a to reduce the total length of the first support arm 8012 and the second support arm 8013, so that the second support hook 8013b can be engaged in the second support hole 1082. Of course, the user can first engage the second support hook 8013b in the second support hole 1082. Moreover, due to the characteristics of the first support end 8012a and the second support end 8013a, they can achieve automatic reset, and at the same time, prevent the first support hook 8012b from disengaging from the first support hole 1081 and the second support hook 8013b from disengaging from the second support hole 1082.
[0144] Further, the first support arm 8012 includes a first support arm body 8012c, a first support arm telescopic body 8012d, and a first support arm elastic member 8012e. One end of the first support arm body 8012c is connected to the bracket portion 8011. The first support arm telescopic body 8012d is telescopically disposed at the other end of the first support arm body 8012c. The first support arm elastic member 8012e acts on the first support arm telescopic body 8012d so that the first support arm telescopic body 8012d has a tendency to extend outward in the retracted state. The end of the first support arm telescopic body 8012d away from the bracket portion 8011 is formed as the first support end 8012a.
[0145] The second support arm 8013 includes a second support arm body 8013c, a second support arm telescopic body 8013d, and a second support arm elastic member 8013e. One end of the second support arm body 8013c is connected to the bracket portion 8011. The second support arm telescopic body 8013d is telescopically disposed at the other end of the second support arm body 8013c. The second support arm elastic member 8013e acts on the second support arm telescopic body 8013d so that the second support arm telescopic body 8013d has a tendency to extend outward in the retracted state. The end of the second support arm telescopic body 8013d away from the bracket portion 8011 is formed as the second support end 8013a.
[0146] By adopting the above technical solution, the first support end 8012a can move towards the side away from the second support end 8013a, and the second support end 8013a can move towards the side away from the second support end 8013a. Furthermore, the arrangement of the first support arm elastic member 8012e and the second support arm elastic member 8013e ensures that the first support end 8012a tends to move away from the second support end 8013a when it is close to the second support end 8013a, and the second support end 8013a tends to move away from the first support end 8012a when it is close to the first support end 8012a. The above structural design is reasonable.
[0147] Furthermore, the first support arm telescopic body 8012d is provided with a first support guide limiting slide hole 8012f, and the first support guide limiting slide hole 8012f extends along the telescopic direction of the first support arm telescopic body 8012d. The first support arm body 8012c is provided with a first guide limiting post 8012g that matches the first support guide limiting slide hole 8012f at a corresponding position. The first support arm elastic element 8012e is a spring. The first support arm body 8012c is provided with a first elastic abutment post 8012h on the side of the first support arm telescopic body 8012d facing the bracket portion 8011. The first support arm elastic element 8012e is located between the first elastic abutment post 8012h and the first support arm telescopic body 8012d, and its two ends are in contact with the first elastic abutment post 8012h and the first support arm telescopic body 8012d, respectively.
[0148] The second support arm telescopic body 8013d is provided with a second support guide limiting slide hole 8013f, and the second support guide limiting slide hole 8013f extends along the telescopic direction of the second support arm telescopic body 8013d. The second support arm body 8013c is provided with a second guide limiting post 8013g at a corresponding position that matches the second support guide limiting slide hole 8013f. The second support arm elastic element 8013e is a spring. The second support arm body 8013c is provided with a second elastic abutment post 8013h on the side of the second support arm telescopic body 8013d facing the bracket portion 8011. The second support arm elastic element 8013e is located between the second elastic abutment post 8013h and the second support arm telescopic body 8013d, and its two ends are in contact with the second elastic abutment post 8013h and the second support arm telescopic body 8013d, respectively.
[0149] Using the above technical solution, the first support guide limiting sliding hole 8012f and the first guide limiting post 8012g can guide the extension and retraction of the first support arm telescopic body 8012d, making the extension and retraction of the first support arm telescopic body 8012d more stable. In addition, the two can also limit the extension and retraction range of the first support arm telescopic body 8012d. The second support guide limiting sliding hole 8013f and the second guide limiting post 8013g work in the same way.
[0150] The first elastic abutment post 8012h is provided to facilitate the installation of the first support arm elastic element 8012e and enable it to act on the first support arm telescopic body 8012d. The second elastic abutment post 8013h is similarly provided.
[0151] Furthermore, the first support arm 8012 is rotatably mounted on the bracket portion 8011 to achieve switching between the first support arm 8012 folded position and the first support arm 8012 working position, and the second support arm 8013 is rotatably mounted on the bracket portion 8011 to achieve switching between the second support arm 8013 folded position and the second support arm 8013 working position.
[0152] With the above technical solution, the first support arm 8012 is rotatably configured to switch between open and folded positions, i.e., between the folded position and the working position of the first support arm 8012. The second support arm 8013 is rotatably configured to switch between open and folded positions, i.e., between the folded position and the working position of the second support arm 8013. The above structure allows the support frame 8 to be folded when not in use, making it easy to store and transport.
[0153] Furthermore, the bracket portion 8011 is provided with a first locking structure 8011a, and the first support arm 8012 is provided with a first locking engagement structure 8012i. The first locking engagement structure 8012i can cooperate with the first locking structure 8011a to restrict the rotation of the first support arm 8012 when the first support arm 8012 is in the working position. The bracket portion 8011 is provided with a second locking structure 8011b, and the second support arm 8013 is provided with a second locking engagement structure 8013i. The second locking engagement structure 8013i can cooperate with the second locking structure 8011b to restrict the rotation of the second support arm 8013 when the second support arm 8013 is in the working position.
[0154] Using the above technical solution, the locking engagement of the first locking structure 8011a and the first locking engagement structure 8012i enables the first support arm 8012 to be maintained in the working position, preventing accidental rotation and folding. If the user needs to rotate and fold the first support arm 8012, they only need to unlock and lock the first locking structure 8011a and the first locking engagement structure 8012i. The same applies to the second locking structure 8011b and the second locking engagement structure 8013i.
[0155] Furthermore, the first support arm 8012 is movable relative to the bracket portion 8011 along its axis to lock and unlock the first locking structure 8011a and the second locking engagement structure 8013i. Under the action of the first support arm locking elastic member 8012j, the first support arm 8012 always tends to move towards the locking engagement side of the first locking structure 8011a and the second locking engagement structure 8013i. The second support arm 8013 is movable relative to the bracket portion 8011 along its axis to lock and unlock the second locking structure 8011b and the second locking engagement structure 8013i. Under the action of the second support arm locking elastic member 8013j, the second support arm 8013 always tends to move towards the locking engagement side of the second locking structure 8011b and the second locking engagement structure 8013i.
[0156] By adopting the above technical solution, the locking and unlocking between the first locking structure 8012i and the first locking structure 8011a can be achieved by moving the axis of the first support arm 8012; the second support arm 8013 is similar.
[0157] The first support arm locking elastic element 8012j is designed to ensure that the first locking engagement structure 8012i and the first locking structure 8011a can be locked stably and reliably, avoiding accidental unlocking of the two. The second support arm locking elastic element 8013j is designed in the same way.
[0158] The above technical solution is convenient and quick to operate, and has a reasonable design.
[0159] Furthermore, the bracket portion 8011 is recessed towards the first support arm 8012 to form a first locking structure 8011a, and one end of the first support arm 8012 facing the bracket portion 8011 is formed as a first locking engagement structure 8012i, and the first locking structure 8011a can be inserted into the first locking engagement structure 8012i; the bracket portion 8011 is recessed towards the second support arm 8013 to form a second locking structure 8011b, and one end of the second support arm 8013 facing the bracket portion 8011 is formed as a second locking engagement structure 8013i, and the second locking structure 8011b can be inserted into the second locking engagement structure 8013i.
[0160] Using the above technical solution, the first locking structure 8012i is inserted into the first locking structure 8011a or the first locking structure 8012i is disengaged from the first locking structure 8011a, so as to realize the locking and unlocking between the first locking structure 8012i and the first locking structure 8011a; the second locking structure 8011b and the second locking structure 8013i are similar. The above technical solution has a simple structure and reasonable design.
[0161] Furthermore, the bracket portion 8011 has first bracket arm connecting protrusions 8011c protruding on both sides of the first locking structure 8011a. A first support arm pivot 8011e spans the two first bracket arm connecting protrusions 8011c. The first support arm 8012 has a first support arm pivot hole 8012k on the side facing the bracket portion 8011 that matches the first support arm pivot 8011e, and the first support arm pivot hole 8012k is along the first support arm 8012. Extending along the axial direction, the first support arm locking elastic element 8012j is a tension spring. A first locking connecting post 8012l is provided on the side of the first support arm 8012 away from the first locking structure 8011a at the first support arm pivot hole 8012k. The first support arm locking elastic element 8012j is disposed between the first support arm pivot 8011e and the first locking connecting post 8012l, with its two ends respectively connected to the first support arm pivot 8011e and the first locking connecting post 8012l. Connection; the bracket portion 8011 has second bracket arm connecting protrusions 8011d protruding on both sides of the second locking structure 8011b, and the second support arm pivot 8011f spans the two second bracket arm connecting protrusions 8011d. The second support arm 8013 has a second support arm pivot hole 8013k on the side facing the bracket portion 8011 that matches the second support arm pivot 8011f, and the second support arm pivot hole 8013k is along the axis of the second support arm 8013. Extending inward, the second support arm locking elastic element 8013j is a tension spring. The second support arm 8013 has a second locking connecting post 8013l on the side of the second support arm pivot hole 8013k away from the second locking structure 8011b. The second support arm locking elastic element 8013j is disposed between the second support arm pivot 8011f and the second locking connecting post 8013l, and its two ends are respectively connected to the second support arm pivot 8011f and the second locking connecting post 8013l.
[0162] By adopting the above technical solution, the first support arm 8012, the second support arm 8013 and the bracket part 8011 are rotatably connected, and the first support arm 8012 and the second support arm 8013 can move along their own axis.
[0163] The first locking connecting post 8012l and the second locking connecting post 8013l are provided to facilitate the installation of the first support arm locking elastic member 8012j and the second support arm locking elastic member 8013j, and can respectively act on the first support arm 8012 and the second support arm 8013.
[0164] The above technical solution is reasonably designed.
[0165] Furthermore, the support hole group 108 is provided in two sets, and correspondingly, the support component 801 is provided in two sets; in the second direction perpendicular to the first direction, the second support hole 1082 in each set of the support hole group 108 is close to the first support hole 1081 in the other set of the support hole group 108, and the bracket part 8011 in the two sets of the support component 801 is the same bracket part 8011, and the bracket part 8011 is provided with a connecting post 8011g for connecting with an external structure.
[0166] The fact that the second support hole 1082 in each group of support holes 108 is close to the first support hole 1081 in another group of support holes 108 can be understood as follows: the first support hole 1081 and the second support hole 1082 in each group are distributed at an oblique angle, and the two groups of support holes 108 form a cross; therefore, the two groups of support components 801 form a cross.
[0167] By adopting the above technical solution, the arrangement of the support hole group 108 and the support frame 8 is more reasonable; specifically, the first support hole 1081 and the second support hole 1082 in the two groups are respectively located at the four corners of the lamp body 1.
[0168] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.
[0169] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A new type of portable foldable LED video light, characterized in that: The lamp body includes a lamp body (1) and a lamp assembly (2). The lamp body (1) includes a bottom body (101) and a top body (102) with at least a portion of it made of light-transmitting material. The top body (102) covers the bottom body (101) to form a lamp assembly receiving cavity (103) between the bottom body (101) and the top body (102) for accommodating the lamp assembly (2). The lamp assembly (2) includes at least two lamp panels (201). A plurality of the lamp panels (201) are installed in the lamp assembly receiving cavity (103), and the light-emitting side of the lamp panels (201) is arranged facing the top body (102). There is a gap between two adjacent lamp panels (201). The bottom body (101) is made of flexible material at least at the position corresponding to the gap between the lamp panels (201). The top body (102) is made of flexible material at least at the position corresponding to the gap between the lamp panels (201).
2. The new portable foldable LED video light according to claim 1, characterized in that: The bottom layer (101) is formed on the side facing the top layer (102) as a reflective surface of the bottom layer (101) that can reflect light; Alternatively, the novel lightweight foldable LED film and television light includes a reflector (3), which is installed between the bottom body (101) and the top body (102), and the side of the reflector (3) facing the top body (102) is formed as a reflector reflective surface (301) capable of reflecting light. The lamp panel (201) is installed between the reflector (3) and the top body (102). The reflector (3) is not provided at the corresponding position of the gap between the lamp panels (201), or the reflector (3) is made of flexible material at least at the corresponding position of the gap between the lamp panels (201).
3. The new portable foldable LED video light according to claim 2, characterized in that: The lamp assembly receiving cavity (103) is divided into lamp panel receiving cavities (1031) in number matching the number of lamp panels (201), and adjacent lamp panel receiving cavities (1031) are spaced apart. The lamp panels (201) are installed in the lamp panel receiving cavities (1031) one by one, and the lamp panels (201) are restricted from moving in the lamp panel receiving cavities (1031). The reflector (3) is provided in multiple quantities, and the number matches the number of the lamp panel receiving cavity (1031) so that they are arranged one-to-one in the lamp panel receiving cavity (1031); or the reflector (3) is integral and spans all the lamp panel receiving cavities (1031).
4. The new portable foldable LED video light according to claim 3, characterized in that: The bottom layer (101) is made of PVC coated fabric, the top layer (102) is made of protective film, and the reflective body (3) is made of reflective aluminum film; The bottom layer (101) and the top layer (102) are fixed together by sewing technology, and the lamp assembly receiving cavity (103) is formed between them. The bottom layer (101) and the top layer (102) are separated into multiple lamp panel receiving cavities (1031) by sewing technology. The reflector (3) is fixedly installed on the side of the bottom layer (101) facing the top layer (102) by the sewing technology.
5. The new portable foldable LED video light according to claim 1, characterized in that: The plurality of lamp panels (201) are spaced apart along a first direction within the lamp assembly receiving cavity (103); The lamp body (1) is provided with a disassembly opening (104) that communicates with the lamp assembly receiving cavity (103), and the disassembly opening (104) extends along the first direction. The second direction is perpendicular to the first direction, and the disassembly opening (104) is provided at or near the edge of the lamp body (1) in the second direction; The novel lightweight foldable LED film and television light includes an opening and closing component (4), which is provided on the lamp body (1) at the location where the disassembly opening (104) is provided for opening or closing the disassembly opening (104). The opening and closing component (4) adopts a zipper structure.
6. The new portable foldable LED video light according to claim 2, characterized in that: The spacing between the lamp panels (201) is such that two adjacent lamp panels (201) in the novel lightweight foldable LED film and television light can be positioned opposite each other. When the side of the bottom layer (101) facing the top layer (102) is formed as the reflective surface of the bottom layer (101), the gap between the lamp plate (201) and the lamp plate (201) is greater than or equal to twice the sum of the thickness of the bottom layer (101), the thickness of the lamp plate (201), and the thickness of the top layer (102); When the reflector (3) is provided between the bottom body (101) and the top body (102), the gap between the lamp plate (201) and the lamp plate (201) is greater than or equal to twice the sum of the thickness of the bottom body (101), the thickness of the reflector (3), the thickness of the lamp plate (201), and the thickness of the top body (102).
7. The new portable foldable LED video light according to claim 5, characterized in that: The disassembly opening (104) is provided on the bottom body (101); The lamp body (1) has a wire outlet (105) that communicates with the lamp assembly cavity (103). The drive controller (5) is connected to the lamp board (201) through the wire outlet (105) to drive and control the working state of the lamp board (201). Multiple lamp boards (201) are connected in series or in parallel in the lamp assembly cavity (103) and then connected to the drive controller (5) through the wire outlet (105). When the lamp panel (201) is installed in the lamp assembly receiving cavity (103), the lamp panel (201) is provided with an electrical connection part (2011) for cable connection on the side facing the disassembly opening (104). The novel lightweight foldable LED film and television light includes a lamp panel protective component (6). The lamp panel protective component (6) is installed on the edge or corner of the lamp panel (201). The lamp panel protective component (6) includes a lamp panel protective component body (601). The lamp panel protective component body (601) is located on the non-light-emitting side of the lamp panel (201). The lamp panel protective component body (601) has a lamp panel protective component edging (602) protruding from the outer edge of the lamp panel (201) toward the light-emitting side of the lamp panel (201). The lamp panel (201) has a positioning hole (2012) at the location where the lamp panel protective component (6) is installed. The lamp panel protective component body (601) has a positioning post (603) protruding at the corresponding position that matches the positioning hole (2012). The bottom layer (101) has a Velcro (7) on the edge away from the top layer (102); the top layer (102) has a Velcro (7) on the edge away from the bottom layer (101).
8. The new portable foldable LED video light according to claim 1, characterized in that: Includes a support frame (8) that acts on the lamp body (1) to keep the lamp plate (201) located in the lamp body (1) in the same plane; The plurality of lamp panels (201) are spaced apart along a first direction within the lamp assembly receiving cavity (103); The lamp body (1) is formed as a first main body side (106) and a second main body side (107) on both sides in the first direction. The lamp body (1) is provided with one or more sets of support hole groups (108). One set of support hole groups (108) includes a first support hole (1081) provided on the first main body side (106) and a second support hole (1082) provided on the second main body side (107). The support frame (8) includes a number of support components (801) matching the number of support hole groups (108). Each support component (801) includes a bracket portion (8011) and a first support arm (8012) and a second support arm (8013) disposed on opposite sides of the bracket. The end of the first support arm (8012) away from the second support arm (8013) is formed as a first support end (8012a), and the first support end (8012a) is provided with a first support hook (8012b) capable of engaging with the first support hole (1081). The end of the second support arm (8013) away from the first support arm (8012) is formed as the second support end (8013a), and the second support end (8013a) is provided with a second support hook (8013b) that can engage with the second support hole (1082). The distance from the first support hook (8012b) to the second support hook (8013b) matches the distance from the first support hole (1081) to the second support hole (1082) in the support hole group (108) when the lamp plate (201) in the lamp body (1) is on the same plane.
9. The new portable foldable LED video light according to claim 8, characterized in that: The first support end (8012a) is capable of moving closer to the side away from the second support end (8013a), and the first support end (8012a) tends to move away from the second support end (8013a) when it is close to the second support end (8013a), and / or the second support end (8013a) is capable of moving closer to the side away from the first support end (8012a), and the second support end (8013a) tends to move away from the first support end (8012a) when it is close to the first support end (8012a); The first support arm (8012) includes a first support arm body (8012c), a first support arm telescopic body (8012d), and a first support arm elastic member (8012e). One end of the first support arm body (8012c) is connected to the bracket portion (8011). The first support arm telescopic body (8012d) is telescopically disposed at the other end of the first support arm body (8012c). The first support arm elastic member (8012e) acts on the first support arm telescopic body (8012d) so that the first support arm telescopic body (8012d) has a tendency to extend outward in the retracted state. The end of the first support arm telescopic body (8012d) away from the bracket portion (8011) is formed as the first support end (8012a). The second support arm (8013) includes a second support arm body (8013c), a second support arm telescopic body (8013d), and a second support arm elastic member (8013e). One end of the second support arm body (8013c) is connected to the bracket portion (8011). The second support arm telescopic body (8013d) is telescopically disposed at the other end of the second support arm body (8013c). The second support arm elastic member (8013e) acts on the second support arm telescopic body (8013d) so that the second support arm telescopic body (8013d) has a tendency to extend outward in the retracted state. The end of the second support arm telescopic body (8013d) away from the bracket portion (8011) is formed as the second support end (8013a). The first support arm telescopic body (8012d) is provided with a first support guide limiting slide hole (8012f), and the first support guide limiting slide hole (8012f) extends along the telescopic direction of the first support arm telescopic body (8012d). The first support arm body (8012c) is provided with a first guide limiting post (8012g) at a corresponding position that matches the first support guide limiting slide hole (8012f). The first support arm elastic element (8012e) adopts a spring-loaded... The first support arm body (8012c) has a first elastic abutment post (8012h) on the side of the first support arm telescopic body (8012d) facing the bracket part (8011). The first support arm elastic element (8012e) is located between the first elastic abutment post (8012h) and the first support arm telescopic body (8012d), and its two ends are in contact with the first elastic abutment post (8012h) and the first support arm telescopic body (8012d) respectively. The second support arm telescopic body (8013d) is provided with a second support guide limiting slide hole (8013f), and the second support guide limiting slide hole (8013f) extends along the telescopic direction of the second support arm telescopic body (8013d). The second support arm body (8013c) is provided with a second guide limiting post (8013g) at a corresponding position that matches the second support guide limiting slide hole (8013f); the second support arm elastic element (8013e) adopts a spring-loaded... The second support arm body (8013c) has a second elastic abutment post (8013h) on the side of the second support arm telescopic body (8013d) facing the bracket part (8011). The second support arm elastic member (8013e) is located between the second elastic abutment post (8013h) and the second support arm telescopic body (8013d), and its two ends are in contact with the second elastic abutment post (8013h) and the second support arm telescopic body (8013d) respectively.
10. The new portable foldable LED video light according to claim 8, characterized in that: The first support arm (8012) is rotatably mounted on the bracket (8011) to switch between the folded position and the working position of the first support arm (8012), and the second support arm (8013) is rotatably mounted on the bracket (8011) to switch between the folded position and the working position of the second support arm (8013). The bracket portion (8011) is provided with a first locking structure (8011a), and the first support arm (8012) is provided with a first locking engagement structure (8012i). The first locking engagement structure (8012i) can cooperate with the first locking structure (8011a) to restrict the rotation of the first support arm (8012) when it is in the working position. The bracket portion (8011) is provided with a second locking structure (8011b), and the second support arm (8013) is provided with a second locking engagement structure (8013i). The second locking engagement structure (8013i) can cooperate with the second locking structure (8011b) to restrict the rotation of the second support arm (8013) when it is in the working position. The first support arm (8012) is movable relative to the bracket portion (8011) along its axis to lock and unlock the first locking structure (8011a) and the second locking engagement structure (8013i). Under the action of the first support arm locking elastic member (8012j), the first support arm (8012) always tends to move towards the locking engagement side of the first locking structure (8011a) and the second locking engagement structure (8013i). The second support arm (8013) is movable relative to the bracket portion (8011) along its axis to lock and unlock the second locking structure (8011b) and the second locking engagement structure (8013i). Under the action of the second support arm locking elastic member (8013j), the second support arm (8013) always tends to move towards the locking engagement side of the second locking structure (8011b) and the second locking engagement structure (8013i). The bracket portion (8011) is recessed towards the first support arm (8012) to form a first locking structure (8011a), and one end of the first support arm (8012) facing the bracket portion (8011) is formed as a first locking engagement structure (8012i), and the first locking structure (8011a) can be inserted into the first locking engagement structure (8012i); the bracket portion (8011) is recessed towards the second support arm (8013) to form a second locking structure (8011b), and one end of the second support arm (8013) facing the bracket portion (8011) is formed as a second locking engagement structure (8013i), and the second locking structure (8011b) can be inserted into the second locking engagement structure (8013i); The bracket portion (8011) has first bracket arm connecting protrusions (8011c) protruding on both sides of the first locking structure (8011a). A first support arm pivot (8011e) spans the two first bracket arm connecting protrusions (8011c). The first support arm (8012) has a first support arm pivot hole (8012k) on the side facing the bracket portion (8011) that matches the first support arm pivot (8011e). The first support arm pivot hole (8012k) is oriented along the axis of the first support arm (8012). Extending inward, the first support arm locking elastic element (8012j) is a tension spring. The first support arm (8012) has a first locking connecting post (8012l) on the side of the first support arm pivot hole (8012k) away from the first locking structure (8011a). The first support arm locking elastic element (8012j) is disposed between the first support arm pivot (8011e) and the first locking connecting post (8012l), and its two ends are respectively connected to the first support arm pivot (8011e) and the first locking connecting post (8012l). The bracket portion (8011) has protrusions on both sides of the second locking structure (8011b) forming second bracket arm connecting protrusions (8011d). A second support arm pivot (8011f) spans the two second bracket arm connecting protrusions (8011d). The second support arm (8013) has a second support arm pivot hole (8013k) on the side facing the bracket portion (8011) that matches the second support arm pivot (8011f). The second support arm pivot hole (8013k) is oriented along the axis of the second support arm (8013). Extending inward, the second support arm locking elastic element (8013j) is a tension spring. The second support arm (8013) has a second locking connecting post (8013l) on the side of the second support arm pivot hole (8013k) away from the second locking structure (8011b). The second support arm locking elastic element (8013j) is disposed between the second support arm pivot (8011f) and the second locking connecting post (8013l), and its two ends are respectively connected to the second support arm pivot (8011f) and the second locking connecting post (8013l). Two sets of support hole groups (108) are provided, and correspondingly, two sets of support components (801) are provided. In the second direction perpendicular to the first direction, the second support hole (1082) in each set of support hole groups (108) is close to the first support hole (1081) in the other set of support hole groups (108). The bracket part (8011) in the two sets of support components (801) is the same bracket part (8011). The bracket part (8011) is provided with a connecting post (8011g) for connecting with an external structure.