Module lamp group and three-dimensional lamp group
The modular design of the light units solves the problems of inconvenient transportation, complex installation, and difficult maintenance of traditional three-dimensional lighting devices. It enables rapid assembly and disassembly, improves the efficiency of transportation, installation, and maintenance, enhances the stability and aesthetics of the system, and adapts to diverse scene requirements.
Patent Information
- Application Number
- CN202520087653.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Traditional 3D lighting devices suffer from inconvenient transportation, complex installation, difficult maintenance, and insufficient flexibility due to their large and customized structures, making it difficult to adapt to diverse and rapidly changing application scenarios.
The modular light units, with their modular design, can be quickly assembled and disassembled through planar assembly and quick-connect pins, combined with a hook lifting mechanism. They integrate light sources, power supply, and control to adapt to different spatial needs.
It improves transportation, installation, and maintenance efficiency, enhances system stability and aesthetics, adapts to different space requirements, supports complex lighting programming and creative lighting displays, and improves the efficiency and flexibility of stage performances and exhibitions.
Smart Images

Figure CN223740688U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to technical field of decorative lighting lamps and lanterns, especially to module lamp group and three -dimensional lamp group with module lamp group. BACKGROUND
[0002] In the occasion of stage performance, exhibition and display and other temporary or fixed lighting facilities, the traditional three-dimensional lighting device is usually customized according to the specific needs of customers. These customized three-dimensional devices often have a large top plate size (for example, 4x6x3 meters), and the top plate is 4x6 meters in size. However, this non-standard design, although it can meet the unique requirements of special occasions, also brings some challenges in actual operation:
[0003] 1. Transportation is inconvenient: large customized structures need additional space and logistics resources in the transportation process due to their large size, increasing transportation cost and difficulty.
[0004] 2. Installation is complex: on-site installation requires a lot of time and manpower to assemble large top plates, especially during the time-critical performance preparation period, which can become a bottleneck.
[0005] 3. Maintenance is difficult: once a fault occurs, maintenance personnel must arrive at the specific location for repair, which means higher safety risks and more complex repair process for large top plates.
[0006] 4. Lack of flexibility: since each project is designed and manufactured separately, components between different projects cannot be used interchangeably, limiting the versatility and scalability of the system.
[0007] In summary, the above-mentioned traditional three-dimensional device is inefficient in transportation, installation, maintenance, etc., and is difficult to adapt to the needs of diversified and fast-changing application scenarios. UTILITY MODEL CONTENT
[0008] The utility model aims to solve at least one of the technical problems existing in the prior art. To this end, the utility model proposes a module lamp group, which realizes rapid assembly and disassembly of the lamp group through modular design, significantly improving transportation, installation and maintenance efficiency, wherein each module integrates light source, power supply and control, is equipped with four-way splicing block and cooperates with quick dowel to realize rapid splicing and fixing, is further equipped with lifting hook lifting mechanism, is convenient for flexible adjustment of combination mode, adapts to different space requirements, reduces maintenance difficulty and cost, enhances the stability and aesthetic degree of the system, and is especially suitable for scenes such as stage that need to be frequently built and changed.
[0009] The utility model further proposes a three-dimensional lamp group with the above-mentioned module lamp group.
[0010] The module lamp group according to the utility model comprises:
[0011] A plurality of modules, a plurality of said modules are arranged by plane splicing, said module comprises a base, a light emitting lamp source, an electrical connector, a signal connector, a mounting block and a splicing block, said light emitting lamp source is arranged on one side of said base, said electrical connector, said signal connector, said mounting block and said splicing block are arranged on the other side of said base;
[0012] Wherein, said light emitting lamp source is electrically connected with said electrical connector, said light emitting lamp source is signal connected with said signal connector, said electrical connector and said signal connector can be electrically connected with adjacent said module, said mounting block is used for mounting said module; Said splicing block has a plurality of, a plurality of said splicing blocks are arranged respectively around said base, in order to be spliced and fixed with adjacent said module.
[0013] According to the module lamp group of the utility model, at least have following beneficial effect: compared to the size structure of the traditional large-scale customized three-dimensional lighting device, a plurality of modules are arranged by plane splicing, which can flexibly adjust the size and shape according to actual demand, adapt to different space and occasion;Among them, a plurality of splicing blocks are arranged around the base for splicing and fixing with adjacent modules, realizing quick assembly and disassembly, forming a stable whole, which is also convenient for rapid decomposition when not in use, providing convenience for transportation and storage;Secondly, the light emitting lamp source is arranged on one side of the base and is electrically connected with the electrical connector and signal connected with the signal connector, which not only ensures the normal work of the light source, simplifies the power transmission path and reduces the possibility of wire disorder, but also can support complex light programming, realize delicate and creative lighting display scheme, improve the neatness and aesthetics of the system, meanwhile, the design that the electrical connector and the signal connector can be electrically connected with adjacent modules ensures that the power and signal between multiple modules can be smoothly transmitted, supporting larger scale lighting array construction;Furthermore, the mounting block is used for mounting the module, which is suitable for scenes that need high-altitude suspension or quick-moving lighting equipment, for example, allowing the module to be conveniently hoisted and positioned, greatly improving the installation efficiency and operation safety;Overall, a highly integrated, easy-to-assemble and disassemble, convenient-to-transport and maintain modular lighting solution is provided, which greatly improves the use efficiency and flexibility of temporary or fixed lighting facilities in stage performance, exhibition display and the like.
[0014] According to some embodiments of the utility model, the splicing block is provided with a positioning hole, and the positioning holes corresponding to adjacent modules can be inserted into the quick plug pin for fixation.
[0015] According to some embodiments of the utility model, the quick plug pin is provided with a lock pin handle, and the lock pin handle is used for locking the quick plug pin.
[0016] The module lamp group according to some embodiments of the present application further comprises a hook, the mounting block has four, four mounting blocks are arranged around the base respectively, the hook can be detachably mounted on the mounting block.
[0017] The module lamp group according to some embodiments of the present application, the mounting block is connected with a hoisting piece, so as to hoist and fix the module.
[0018] The module lamp group according to some embodiments of the present application, the hoisting piece is a hook with an open loop structure, so that the cross beam enters from the side of the hook, and the side wall of the hook is threadedly connected with a compression screw, which can compress and fix the cross beam.
[0019] The module lamp group according to some embodiments of the present application, the first electric wire is connected between the electric connectors corresponding to adjacent modules, and the two ends of the first electric wire are respectively matched with two electric connectors, and the second electric wire is connected between the signal connectors corresponding to adjacent modules, and the two ends of the second electric wire are respectively matched with two signal connectors.
[0020] The module lamp group according to some embodiments of the present application, the light emitting lamp source is a light emitting lamp string, and the light emitting lamp string is inserted and connected to the base and can be hung on the base.
[0021] The module lamp group according to some embodiments of the present application, the bottom of the light emitting lamp string is provided with a weight, so as to drive the light emitting lamp string to droop after the module is hoisted.
[0022] The module lamp group according to some embodiments of the present application, a buffer structure is arranged between the light emitting lamp source and the base, so as to buffer the impact force received by the light emitting lamp source.
[0023] The module lamp group according to some embodiments of the present application, the buffer structure comprises a soft plastic piece, and the light emitting lamp source and the base are fixed through the soft plastic piece.
[0024] The module lamp group according to some embodiments of the present application, the base further comprises a power supply assembly and a control assembly on the side facing the electric connector, the power supply assembly is used for supplying power to the light emitting lamp source, and the control assembly is used for controlling the light emitting effect of the light emitting lamp source.
[0025] The three-dimensional lamp group according to the present application comprises the module lamp group according to the present application.
[0026] The three-dimensional lamp group has at least the following beneficial effects: the three-dimensional lamp group realizes excellent performance in stage performance, exhibition display and other special lighting occasions, inherits all advantages of a modular lighting system, including quick assembly and disassembly, easy transportation and maintenance, highly flexible combination mode and enhanced stability and aesthetic degree; the three-dimensional lamp group can create a dreamlike light and shadow world by using controllable programming control of the light emitting lamp string and the three-dimensional space, and bring an immersive visual experience to the audience; in addition, by integrating the power supply component and the control component, the system can support complex light programming, realize delicate and creative lighting display scheme, and the highly integrated solution not only improves the lighting effect of the application place, but also provides more space for designers to exert their creativity, so that it becomes an ideal choice suitable for diversified and high requirement scenes.
[0027] Additional aspects and advantages of the present application will be described in the following description, become apparent from the following description, or be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0028] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0029] Figure 1 It is a whole structure schematic view of the module lamp group of the embodiment of the present application;
[0030] Figure 2 It is a structure schematic view of the module of the module lamp group of the embodiment of the present application;
[0031] Figure 3 It is a structure schematic view of the three-dimensional lamp group of the embodiment of the present application.
[0032] BRIEF DESCRIPTION OF DRAWINGS
[0033] Module 100;Base 110;Light emitting lamp source 120;Electric connector 131;Signal connector 132;First electric wire 133;Second electric wire 134;Mounting block 140;Lifting hook 141;Compression screw 1411;Cross beam 142;Splicing block 150;Quick bolt 151;Lock pin handle 1511;Power supply component 160;Control component 170;Handle 180. DETAILED DESCRIPTION
[0034] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the present application, and cannot be understood as limiting the present application.
[0035] In the description of the utility model, it needs to be understood that the orientation description, such as the orientation or positional relationship indicated by up, down, front, back, left, right and the like, is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model.
[0036] In the description of the utility model, the meaning of several is one or more, and the meaning of multiple is more than two, and greater than, less than, more than and the like are understood as not including the number, and above, below, within and the like are understood as including the number.If it is described to the first, second, it is only used for distinguishing technical features for the purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0037] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing and connecting should be understood in a broad sense, and the person skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.
[0038] In the description of the utility model, the description of the reference terms “one embodiment”, “some embodiments”, “illustrative embodiment”, “example”, “specific example” or “some examples” means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0039] In stage performances, exhibition displays and other occasions requiring temporary or fixed lighting facilities, traditional three-dimensional lighting devices are usually customized according to the specific needs of customers. These customized three-dimensional devices often have a large top plate size (for example, 4x6x3 meters), and the top plate is 4x6 meters in size. However, this non-standardized design, although it can meet the unique requirements of special occasions, also brings several challenges in actual operation:
[0040] 1. Transportation inconvenience: large customized structures require additional space and logistics resources during transportation due to their large size, increasing transportation costs and difficulty.
[0041] 2. Complex installation: during on-site installation, a large amount of time and manpower is required to assemble the large top plate, which can become a bottleneck, especially during the time-constrained preparation period of the performance.
[0042] 3. Maintenance difficulty: Once a fault occurs, maintenance personnel must reach the specific location for repair, which means higher safety risks and more complex repair processes for large top discs.
[0043] 4. Lack of flexibility: Since each project is designed and manufactured separately, components between different projects are difficult to interchange, limiting the versatility and scalability of the system.
[0044] In summary, the above-mentioned traditional three-dimensional devices are inefficient in transportation, installation, maintenance, etc., and are difficult to adapt to the needs of diversified and rapidly changing application scenarios.
[0045] Therefore, as Figures 1 to 3As shown, the module lamp group provided by the utility model, including multiple plane split arrangement module 100, wherein, module 100 includes base 110, light emitting lamp source 120, electric connector 131, signal connector 132, mounting block 140 and splicing block 150, light emitting lamp source 120 is arranged at one side of base 110, electric connector 131, signal connector 132, mounting block 140 and splicing block 150 are arranged at the other side of base 110. Specifically, light emitting lamp source 120 is electrically connected with electric connector 131, light emitting lamp source 120 is signal connected with signal connector 132, electric connector 131 and signal connector 132 can be electrically connected with adjacent module 100, mounting block 140 is used for installing module 100, for example, mounting block 140 is directly fixed with external component through screw; again for example, mounting block 140 is connected with hoisting member, such as hook 141, lifting ring and the like, can hoist and fix module 100. Further, splicing block 150 has multiple, multiple splicing blocks 150 are arranged at the four around of base 110 respectively to split and fix with adjacent module 100. Compared with the size structure of the conventional large-scale customized three-dimensional lighting device, multiple module 100 is arranged by split, which can flexibly adjust the size and shape according to the actual demand, and adapt to different space and occasion. Among them, multiple splicing blocks 150 are arranged around base 110 respectively, which are used for split and fixing with adjacent module 100, realizing quick assembly and disassembly, forming a stable whole, and also facilitating rapid decomposition when not in use, providing convenience for transportation and storage; secondly, light emitting lamp source 120 is arranged at one side of base 110 and is electrically connected with electric connector 131 and signal connected with signal connector 132, which not only ensures the normal work of the light source, simplifies the power transmission path and reduces the possibility of wire disorder, but also supports complex light programming, realizes delicate and creative lighting display scheme, improves the neatness and aesthetics of the system, meanwhile, the design that electric connector 131 and signal connector 132 can be electrically connected with adjacent module 100 ensures that the power and signal between multiple module 100 can be smoothly transmitted, supporting larger scale lighting array construction; furthermore, mounting block 140 is used for installing module 100, which is suitable for scenes requiring high-altitude suspension or quick-moving lighting equipment, for example, allowing module 100 to be conveniently hoisted and positioned, greatly improving the installation efficiency and operation safety. Overall, a highly integrated, easy-to-assemble and disassemble, convenient-to-transport and maintain modular lighting solution is provided, which greatly improves the use efficiency and flexibility of temporary or fixed lighting facilities in stage performance, exhibition display and the like.
[0046] Referring again to Figure 1 And Figure 2In some embodiments of the utility model, the splicing block 150 is provided with positioning holes, the positioning holes corresponding to adjacent modules 100 can be inserted into the quick insertion pin 151 for fixation, which greatly simplifies the connection process between the modules 100, improves the assembly speed, and enhances the stability of the connection. It is easy to understand that the use of the quick insertion pin 151 avoids the cumbersome operation caused by traditional screws and other fasteners, so that the on-site installation personnel can quickly and accurately complete the splicing work of the lamps and lanterns, especially during the time-constrained performance preparation period, and such a quick connection mechanism is particularly important. In addition, the design of the positioning holes and the quick insertion pin 151 also ensures the accuracy of the positions between the modules 100, reduces installation problems caused by manual operation errors, and improves the stability and aesthetics of the overall structure. Further, the quick insertion pin 151 is provided with a locking pin handle 1511, the locking pin handle 1511 is used for locking the quick insertion pin 151, further enhancing the safety and reliability of the connection between the modules 100, and also preventing the connection from loosening due to accidental collision or vibration to a certain extent. In scenes that need to be frequently moved or adjusted, such as stage performances or temporary exhibitions, this feature is particularly important, and the operation of the locking pin handle 1511 is simple and intuitive, and the staff can easily perform locking and unlocking actions, which not only ensures the convenience of installation, but also provides additional safety protection, thereby reducing the maintenance difficulty and improving the overall performance of the system. Optionally, the quick insertion pin 151 is a rotary knob plunger, which is also called a reset type indexing pin. Its working principle is that by pulling out the rotary knob, the protruding pin column at the front will retract. For example, the rotary knob plunger is divided into handle type, reset type, flange type, self-locking type and compact type. The handle type rotary knob plunger controls the in-out of the pin through the rotation of the handle. This type of rotary knob plunger can also be used in the space without the rotary knob. The pin is put into the plunger body by rotating the handle by °, and then the handle is locked by the groove. The front end of the reset type rotary knob plunger is usually protruding. When the rotary knob is pulled out, the front end will retract, and then the protruding state of the front end is restored by releasing the rotary knob. The spring force built-in the rotary knob plunger will be restored. The flange of the flange type rotary knob plunger can be adjusted in the left and right directions. Because the flange type rotary knob plunger has no thread, two mounting holes are arranged in the flange part, and the flange is fixed by embedding screws. The front end of the self-locking type rotary knob plunger is generally protruding. To retract the front end, pull out the rotary knob and rotate it by 90°, and then it can be locked. To release the lock, rotate it by 90° in the pulled-out state. If the rotary knob is released, the front end will be restored by the action of the built-in spring force. The compact type rotary knob plunger is shorter than the ordinary rotary knob plunger and can be applied in small spaces. The compact type rotary knob plunger has a hexagonal plane, and the pin head can be installed and tightened with a hexagonal wrench when it is retracted. The compact type rotary knob plunger has compact dimensions and a short threaded part, and is suitable for thin metal plate installation.
[0047] Referring again to Figure 1 and Figure 2In some embodiments of the utility model, four mounting blocks 140 are arranged around the base 110, and the lifting hooks 141 are detachably mounted on the mounting blocks 140. Thus, the supporting force required by the actual combined area of the module 100, the position and number of the site cross beams 142, and the installation of the lifting hooks 141 can be reasonably determined. For example, the lifting hooks 141 are fixed to the mounting blocks 140 by screws. Generally, at least one lifting hook 141 is arranged at each corner of the combined module 100. When the combined module 100 is in the shape of a rectangle, multiple lifting hooks 141 can be additionally arranged in the length direction. In this way, the detachable lifting hooks 141 not only increase the flexibility and versatility of the module 100, but also facilitate the transportation and storage of the module 100 by detaching the lifting hooks 141. Further, the lifting hooks 141 have an open loop structure, so that the cross beams 142 can enter from the side of the lifting hooks 141. The side wall of the lifting hook 141 is threadedly connected with a pressing screw 1411, which can tightly fix the cross beam 142. This structure is not only convenient to install, but also ensures safety, and is particularly suitable for complex stage environments.
[0048] Referring again to Figure 1In some embodiments of the present utility model, the first electric wire 133 is connected between the corresponding electric connectors 131 of adjacent modules 100, and the two ends of the first electric wire 133 are respectively fast-plug matched with the two electric connectors 131. Similarly, the second electric wire 134 is connected between the corresponding signal connectors 132 of adjacent modules 100, and the two ends of the second electric wire 134 are respectively fast-plug matched with the two signal connectors 132. Among them, the fast-plug matching mode significantly improves the convenience of installation, eliminates the complex wiring and wiring steps in the traditional electric wire connection, reduces the risk of incorrect connection, and speeds up the installation speed. Moreover, this mode is also convenient for later maintenance. When a certain module 100 has a problem, the maintenance personnel can quickly disconnect the connection between the faulty module 100 and the surrounding modules 100 for replacement or repair. In addition, the fast-plug matching electric wire connection mode is also helpful to maintain the neat appearance of the system, avoiding messy electric wire layout, thereby improving the overall aesthetic and professionalism. Further, the side of the base 110 facing the electric connector 131 is provided with a power supply assembly 160 and a control assembly 170, the power supply assembly 160 is used for supplying power to the light-emitting lamp source 120, and the control assembly 170 is used for controlling the light-emitting effect of the light-emitting lamp source 120, further optimizing the power management and light control of the whole system. The integrated power supply assembly 160 ensures that each module 100 can obtain stable power supply, avoiding the flickering of light or other faults caused by insufficient or unstable power. At the same time, the integrated control assembly 170 makes the programming and adjustment of light effect more convenient, and the user can uniformly manage all modules 100 through the central control system to realize complex light change and dynamic effect. This centralized management and control not only improves the response speed of the system, but also enhances the expressiveness and interactivity of the light effect, which is very suitable for stage performances or large-scale exhibitions that require high coordination and precise control.
[0049] In some embodiments of the present utility model, as shown in Figure 2 The side of the base 110 away from the light-emitting lamp source 120 is provided with a handle 180 to lift the base 110, greatly improving the carrying convenience of the module lamp group. The existence of the handle 180 enables a single person to easily lift a heavy module 100, reducing the manpower demand in the carrying process. This is especially important for occasions that need to be frequently moved and rearranged, such as stage construction or exhibition changes. In addition, the design of the handle 180 also considers the comfort and safety of use, avoiding the possibility of hand injury during the carrying process. This improvement in detail not only improves work efficiency, but also embodies the design concept of caring for users, enhancing the user experience of the product.
[0050] Referring to Figure 3In some embodiments of the present application, the light-emitting lamp source 120 is a light-emitting lamp string, which is inserted and installed in the base 110 and can be hung on the base 110. This not only adds a unique visual effect to the three-dimensional lamp group, but also improves the utilization rate of the light source. Further, a buffer structure is provided between the light-emitting lamp source 120 and the base 110 to buffer the impact force received by the light-emitting lamp source 120, ensuring that the light-emitting lamp source 120 can operate relatively stably after being hung, for example, under the action of wind or its own gravity. The light-emitting lamp source 120 can still be stably connected with the base 110, ensuring the light-emitting effect. For example, the buffer structure includes a soft plastic part, and the light-emitting lamp source 120 is fixed with the base 110 through the soft plastic part. The overall structure is simple and easy to install. In this regard, the light-emitting lamp string can be flexibly arranged according to specific application scenarios to create rich light and shadow levels and enhance the artistic expression of the lighting effect. Moreover, the hanging method allows the light to be more evenly distributed, reducing the shadow area and improving the brightness consistency within the illumination range. In addition, the design of the light-emitting lamp string also provides more creative space for the modular lamp group. Designers can customize light effects that meet specific themes according to different performance or display needs, thereby greatly enriching the visual experience. Further, the bottom of the light-emitting lamp string is provided with a weight, such as a pendant, which can drive the light-emitting lamp string to sag after the module 100 is hung, ensuring that the light-emitting lamp string is naturally straightened. In particular, when the number of light-emitting lamp strings is large, the weight can reduce the swing amplitude of the light-emitting lamp string after receiving the impact force, avoiding entanglement with adjacent light-emitting lamp strings.
[0051] In some applications, the module 100 is transported by the box, which has a bottom wheel to facilitate movement on the ground. When in use, the number of matching boxes can be arranged and spliced under the hanging installation position of the module light group on the stage according to the overall size of the module light group. After arrangement and splicing, a single hook 141 is installed on each module 100, and the orientation of the hook 141 of the module 100 is selected according to the actual situation. Then, hooks 141 are installed on the four mounting blocks 140 of the module 100 spliced in the last row. After the installation of the hooks 141 is completed, the module 100 is lifted out of the box through the handle 180, and then the hooks 141 are hung on the cross beam 142 by aligning the cross beam 142. After hanging, the adjacent modules 100 are fixed by inserting the quick pins 151. After the adjacent modules 100 are fixed, the wires are connected to the adjacent modules 100 in the unpowered state. Finally, the module light group after splicing and fixing is lifted by the cross beam 142. During the lifting process of the module light group, if a knotted light string is found, the lifting is paused, the light string is untangled, and then the lifting is continued. In some applications, the light string is sealed in a cloth bag in the box. When the light string is lifted to a height above the box, the cloth bag of the light string is opened. Then, the light string is combed and untangled. In addition, the pendant at the bottom of the light string needs to be straightened according to the arrangement of the light string, so that it is perpendicular to the downward direction.
[0052] In addition, after the light string is installed vertically, a three-dimensional matrix with a preset size is formed, and the power supply and the control assembly 170 are highly integrated. Specifically, the led lamp points on the light string can be controlled by the control assembly 170 to form controllable light emission of each pixel point in the three-dimensional space, and various static or dynamic images of light emission can be programmed.
[0053] Referring to Figure 3 The three-dimensional light group according to the embodiments of the present application comprises the module light group according to the embodiments of the present application. The three-dimensional light group realizes excellent performance in stage performance, exhibition display and other special lighting occasions, inherits all the advantages of the modular lighting system, including rapid assembly and disassembly, easy transportation and maintenance, highly flexible combination mode, and enhanced stability and aesthetics; the three-dimensional light group can create a dreamlike world of light and shadow by using the light string and the controllable programming control in the three-dimensional space, providing an immersive visual experience for the audience. In addition, by integrating the power supply assembly 160 and the control assembly 170, the system can support complex light programming to realize delicate and creative lighting display schemes. This highly integrated solution not only improves the lighting effect of the application place and provides more space for designers to exercise their creativity, but also makes it an ideal choice for diversified and high-demand scenarios.
[0054] Other configurations and operations of the three-dimensional lamp set according to the embodiments of the present application are known to those of ordinary skill in the art, and are not described in detail herein.
[0055] The embodiments of the present application are described in detail above with reference to the drawings, but the present application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those of ordinary skill in the art without departing from the spirit of the present application.
Claims
1. A modular light set, characterized in that The application relates to a module lamp group. The module lamp group comprises a plurality of modules which are arranged in a plane and are spliced together, wherein each module comprises a base, a light-emitting lamp source, an electric connector, a signal connector, a mounting block and a splicing block, the light-emitting lamp source is arranged on one side of the base, and the electric connector, the signal connector, the mounting block and the splicing block are arranged on the other side of the base. The light-emitting lamp source is electrically connected with the electric connector, and the light-emitting lamp source is signal-connected with the signal connector; the electric connector and the signal connector can be electrically connected with adjacent modules; and the mounting block is used for mounting the module. The splicing block is provided with a plurality of positioning holes which are arranged around the base and are used for splicing and fixing the adjacent modules.
2. The modular light set of claim 1, wherein: The positioning holes of the adjacent modules are inserted into quick insertion pins for fixation.
3. The modular light set of claim 2, wherein: The quick insertion pins are provided with lock pin handles which are used for locking the quick insertion pins.
4. The modular light set of claim 1, wherein: The module lamp group further comprises a hook, the mounting block is provided with four mounting blocks which are arranged around the base, and the hook is detachably mounted on the mounting block.
5. The modular light set of claim 1 or 4, wherein: The mounting block is connected with a hoisting member which is used for hoisting the module.
6. The modular light set of claim 5, wherein: The hoisting member is a hook with an open loop structure, a cross beam is arranged on the side of the hook, a compression screw is threadedly connected with the side wall of the hook, and the compression screw can be used for compressively fixing the cross beam.
7. The modular light set of claim 1, wherein: The electric connectors of the adjacent modules are connected through a first electric wire, the two ends of the first electric wire are quickly inserted into the two electric connectors respectively, the signal connectors of the adjacent modules are connected through a second electric wire, and the two ends of the second electric wire are quickly inserted into the two signal connectors respectively.
8. The modular light set of claim 1, wherein: The light-emitting lamp source is a light-emitting lamp string which is inserted and mounted on the base and can be hung on the base.
9. The modular light set of claim 8, wherein: The bottom of the light-emitting lamp string is provided with a weight which is used for driving the light-emitting lamp string to sag after the module is hoisted.
10. The modular light set of claim 1 or 8 or 9, wherein: A buffer structure is arranged between the light-emitting lamp source and the base and is used for buffering the impact force received by the light-emitting lamp source.
11. The modular light set of claim 10, wherein: The buffer structure comprises a soft plastic member, and the light-emitting lamp source is fixed through the soft plastic member.
12. The modular light set of claim 1, wherein: The base is further provided with a power supply assembly and a control assembly on the side facing the electric connector, the power supply assembly is used for supplying power to the light-emitting lamp source, and the control assembly is used for controlling the light-emitting effect of the light-emitting lamp source.
13. A three-dimensional light set, characterized by: The application further relates to a module lamp group comprising any one of the modules according to claims 1 to 12.