Light magnetic building block
By introducing lighting and wireless control into magnetic building blocks, the problem of the limited interactive feedback mode of existing magnetic building blocks is solved. This achieves sensory stimulation and dynamic attraction, improves fun and combination ability, and enhances the attention and exploration interest of young children.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-03-02
- Publication Date
- 2026-03-31
AI Technical Summary
Existing magnetic building blocks offer a limited range of interactive feedback modes for young children, lacking sustained sensory stimulation and dynamic appeal. This makes it difficult to maintain young children's attention and exploratory interest over the long term, thus limiting their fun factor.
Design a light-emitting magnetic building block, comprising a shell, a light mounting component, a light component, and a magnetic component. The shell has first and second mounting areas. The light mounting component is used to install the light-emitting component. The magnetic component is located in the second mounting area. The working state of the light component is controlled by a trigger area. It can be connected to an external terminal using a wireless communication module to enhance the convenience and fun of control.
It achieves sensory stimulation and dynamic attraction of magnetic building blocks, increases fun, simplifies the assembly process, enhances installation stability and combination ability, and improves the attention and exploration interest of young children.
Smart Images

Figure CN224056660U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of building block toys, specifically to a type of light-up magnetic building block. Background Technology
[0002] Building blocks are a classic, modular construction toy. They consist of a series of standardized individual parts. Players can freely create various two-dimensional or three-dimensional structures, models, and even scenes by stacking, piecing together, combining, and arranging these parts. Playing with building blocks helps children develop their intelligence and improve their hand-eye coordination, which is why building blocks are so popular with parents.
[0003] Magnetic building blocks are constructed by connecting and attracting each other using built-in or external magnets. Their fun and malleability far surpass traditional building blocks, further enhancing children's spatial thinking and hands-on skills. Consequently, many different types of magnetic toys have emerged on the market, such as magnetic cubes, magnetic rods, and magnetic steel balls. While these products expand the basic construction possibilities of magnetic building blocks, their essential function remains primarily focused on assembling physical structures. For young children whose cognitive abilities are rapidly developing, the interactive feedback of these toys is relatively simple, lacking sustained sensory stimulation and dynamic appeal. This makes it difficult to maintain young children's attention and exploratory interest for extended periods, thus limiting their overall enjoyment. Utility Model Content
[0004] The purpose of this application is to overcome the shortcomings and deficiencies of the existing technology and provide a more interesting light-up magnetic building block.
[0005] The objective of this application is achieved through the following technical solution: a light-emitting magnetic building block, comprising a shell, a light-emitting mounting component, a light-emitting component, and a magnetic component; the shell is provided with a first mounting area and a second mounting area, the second mounting area being located around the first mounting area; the light-emitting mounting component is disposed in the first mounting area for mounting the light-emitting component; the magnetic component is disposed in the second mounting area.
[0006] Preferably, a trigger area is provided on the housing wall, and the trigger area corresponds to the position of the trigger component of the light component installed on the light mounting component, so that the trigger area can contact the trigger component.
[0007] Preferably, the lighting mounting component includes a base plate and a plurality of baffles disposed around the perimeter of the base plate;
[0008] The base plate and multiple baffles surround to form a first space for placing the power supply for the lighting components, which are mounted on the baffles.
[0009] Furthermore, the plurality of baffles includes a first baffle, a second baffle, a third baffle, and a fourth baffle;
[0010] The first baffle and the second baffle are positioned opposite each other, and the third baffle and the fourth baffle are positioned opposite each other;
[0011] The lighting component is mounted on the first baffle and the second baffle;
[0012] The height of the first and second baffles is higher than that of the third and fourth baffles.
[0013] Furthermore, the lighting component includes a lighting control board; the lighting control board is mounted above the baffle and electrically connected to a power source in the first space to be powered by the power source.
[0014] Furthermore, the lighting control board includes a main control chip, light-emitting diodes (LEDs), and a triggering component; the number of LEDs is one or more.
[0015] The light-emitting diode is connected to the main control chip, and its working status is controlled by the main control chip.
[0016] The triggering component is connected to the main control chip and is used to send a trigger signal to the main control chip so that the main control chip controls the working state of the light-emitting diode according to the trigger signal.
[0017] Furthermore, the lighting control board also includes a wireless communication module connected to the main control chip, through which the main control chip communicates with an external terminal.
[0018] Preferably, the shell is a cuboid structure, including four side walls and a first cover and a second cover located at both ends of the four side walls;
[0019] Support columns are provided on the four side walls inside the housing, and the support columns enclose the first installation area; support plates are provided between each adjacent side wall inside the housing, and the support plates and the side walls of the housing enclose the second installation area.
[0020] Furthermore, the support column is provided with an abutment, which includes an abutment portion extending toward the light mounting component and a receiving portion extending toward the first cover and / or the second cover.
[0021] The abutting part abuts against the light mounting part;
[0022] The abutment part receives the light fixture on the light mounting part through the receiving part.
[0023] Furthermore, each of the support columns is provided with holes;
[0024] The first and second covers are provided with inserts that can be inserted into holes at the positions corresponding to each support column;
[0025] The first cover and the second cover are provided with fastening plates at the positions corresponding to the support plates, and ultrasonic lines are provided on the side of the fastening plate that contacts the support plate.
[0026] Furthermore, the second installation area is divided into two regions by a partition, and each region is equipped with magnetic components.
[0027] This application has the following advantages and effects compared to the prior art:
[0028] (1) The magnetic building blocks of this application include a shell, a light mounting component, a light component, and a magnetic component; the shell is provided with a first mounting area and a second mounting area, the second mounting area being located around the first mounting area; the light mounting component is provided in the first mounting area for mounting a light-emitting light component; the magnetic component is provided in the second mounting area; in the magnetic building blocks of this application, the light mounting component is provided inside the shell to mount the light component, thereby enabling the magnetic building blocks to emit light, realizing the functions of sensory stimulation and dynamic attraction, and effectively improving the fun of the magnetic building blocks.
[0029] (2) In the magnetic building block of this application, a trigger area is provided on the shell wall. The trigger area corresponds to the position of the trigger component of the light component installed in the light mounting component. Based on this, the magnetic building block of this application can contact the trigger component through the trigger area to realize the control of the light working state by human intervention, thereby improving the convenience of the magnetic building block light control.
[0030] (3) In the magnetic light building block of this application, the light mounting component includes a base plate and multiple baffles arranged around the base plate. The base plate and the baffles form a first space. The light component can be installed on the baffles, and the power source of the light component, such as a button battery, can be set in the first space. Based on this, the position of the light mounting component can be fully utilized, making the structure of the light component simpler and more integrated, and easier to install.
[0031] (4) In the magnetic light building blocks of this application, the baffle may include two higher first baffles and second baffles, as well as two lower third baffles and fourth baffles. The light components are mounted on the two higher first baffles and second baffles. Based on this, a sufficiently high first space can be constructed through the first baffles and second baffles to facilitate the placement of the light component power supply. The third baffles and fourth baffles can limit the light component power supply to prevent it from falling off during use. Therefore, the above structure of this application can make the installation stability of the light components better.
[0032] (5) In the magnetic light-emitting building blocks of this application, the light component may include a light control board mounted on the baffle. The light control board includes a main control chip and light-emitting diodes and triggering components connected to the main control chip. Based on this, the user can send a trigger signal to the main control chip through the triggering component, so that the main control chip controls the working state of the light-emitting diodes according to the trigger signal. Since the light control board of this application includes a main control chip such as a microcontroller, under this structure, the user can switch the different working states of the light-emitting diodes by different triggering methods of the triggering component, such as short press and long press, thereby showing different lighting effects and making the magnetic building blocks more interesting.
[0033] (6) In the magnetic building blocks with lights in this application, the light control board of the light component also includes a wireless communication module connected to the main control chip. The main control chip communicates with an external terminal through the wireless communication module. Based on this, the user can control the lights of the magnetic building blocks through the external terminal, which further enhances the fun of the magnetic building blocks.
[0034] (7) In the magnetic building blocks of this application, the shell can be a cuboid structure, such as a cube structure, specifically including four side walls and a first cover and a second cover located at both ends of the four side walls. Support columns are provided on the four side walls inside the shell to form a first mounting area for the light mounting component. Support plates are provided between each adjacent side wall inside the shell to form a second mounting area for the magnetic component. Based on this, in the assembly process of this application, the light mounting component with the light installed is placed in the first mounting area, and the magnetic component is placed in the second mounting area. Then, the first cover and the second cover are covered. The above structure greatly simplifies the assembly process of the magnetic building blocks and improves production efficiency.
[0035] (8) In the magnetic building blocks for lighting in this application, the support column is provided with an abutment. The abutment is designed with an abutment portion extending toward the lighting mounting component and a receiving portion extending toward the first cover and / or the second cover. In this application, the support column reliably abuts against the lighting mounting component (specifically its internal power supply) through the abutment portion of the abutment, which can effectively enhance the installation stability of the lighting mounting component and prevent it from loosening during the use of the magnetic building blocks, thereby ensuring the continuous normal operation of the lighting component. At the same time, the receiving portion can reliably support the lighting component on the lighting mounting component, preventing the lighting component's control board from shifting, and further optimizing the internal spatial layout of the housing, making the overall structure more compact and reasonable.
[0036] (9) In the magnetic light-emitting building blocks of this application, each support column has holes at both ends; the first cover has a first insert that can be inserted into the holes of the support column at the position corresponding to each support column; the second cover has a second insert that can be inserted into the holes of the support column at the position corresponding to each support column; the first cover and the second cover have fastening plates that can be fastened to the support plates at the positions corresponding to each support plate. As can be seen from the above, in this application, the first cover and the second cover are connected by the insertion of the insert-hole and the fastening connection with the support plate, forming a reliable double fixing mechanism, which ensures the tightness and durability of the overall structure. In addition, the pre-set holes and inserts of the first cover play a guiding role, making the installation process of the cover simple and intuitive, easy to position, and reducing the assembly difficulty.
[0037] (10) In this application, a partition can be introduced in the second mounting area of the shell to create two independent magnetic component accommodating spaces. This structure allows a single cubic block to house eight magnetic components, thereby achieving strong magnetic properties on all six sides, which greatly enhances the combination ability and creative expression of the blocks. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the housing structure of the magnetic light-emitting building blocks in this application.
[0039] Figure 2 This is a structural diagram of the magnetic building block housing for lighting in this application when the lighting mounting components are not installed.
[0040] Figure 3 This is the circuit diagram of the magnetic light-emitting building block light component in this application.
[0041] Figure 4a and 4b This is a structural diagram of the magnetic building block housing for mounting the lighting components in this application.
[0042] Figure 5a , 5b Figures 5 and 5c are schematic diagrams of the structure of the magnetic light-mounting block for lighting in this application.
[0043] Figure 6 This is a schematic diagram of the first cover structure of the magnetic light building block shell of this application.
[0044] Figure 7 This is a schematic diagram of the second cover structure of the magnetic light building block shell of this application.
[0045] Explanation of reference numerals in the attached figures:
[0046] 1-Housing, 2-Light mounting component, 3-Magnetic component, 4-Lighting component, 5-First cover, 6-Second cover, 11-First mounting area, 12-Second mounting area, 13-Support column, 14-Support plate, 15-Connecting plate, 21-First baffle, 22-Second baffle, 23-Third baffle, 24-Fourth baffle, 41-Button, 42-Power supply, 51-First plug-in, 52-Snap-fit plate, 53-Trigger area, 54-Ultrasonic cable, 61-Second plug-in, 131-Abutting part, 132-Receiving part. Detailed Implementation
[0047] The embodiments of this application are described below with reference to the accompanying drawings. It should be understood that the embodiments described below with reference to the accompanying drawings are exemplary descriptions for explaining the technical solutions of the embodiments of this application, and do not constitute a limitation on the technical solutions of the embodiments of this application.
[0048] Currently, magnetic building blocks on the market, such as magnetic cubes, magnetic rods, and magnetic steel ball combination systems, have expanded the ways to play with basic construction, but their essential function is still mainly focused on the assembly of physical structures. For young children whose cognitive abilities are developing rapidly, the interactive feedback mode of such toys is relatively simple, lacking continuous sensory stimulation and dynamic appeal, making it difficult to maintain the attention and exploration interest of young children for a long time, and thus limiting their fun.
[0049] Based on the problems existing in the prior art, this embodiment provides a light-emitting magnetic building block. This magnetic building block can control light emission, thereby achieving sensory stimulation and dynamic attraction, which can effectively improve the fun of magnetic building blocks.
[0050] like Figures 1-7 As shown, the magnetic light-emitting building block in this embodiment includes a housing 1, a light mounting component 2, a light component 4, and a magnetic component 3; the housing 1 is provided with a first mounting area 11 and a second mounting area 12, and the second mounting area 12 is located around the first mounting area 11. In this embodiment, as... Figure 2 As shown, the first mounting area can be located in the middle of the housing, and the second mounting area can be located in the corner of the housing, which can expand the magnetic force range of the magnetic building blocks.
[0051] In this embodiment, the light mounting component 2 is disposed in the first mounting area 11 and is used to mount the light component, which can realize the light-emitting function; the magnetic component 3 is disposed in the second mounting area 12. The above-mentioned position arrangement allows the magnetic component to be arranged around the light mounting component, so that it can attract other magnetic building blocks over a wider area.
[0052] In this embodiment, as Figure 1As shown, a trigger area 53 is provided on the housing wall. The trigger area corresponds to the position of the trigger component of the light element 4 mounted on the light mounting bracket 2, so that the trigger area can contact the trigger component. That is, the user can press the trigger component through the trigger area on the housing to control the working state of the light element. In addition, a hollow area can be provided on one or more surfaces of the housing so that the light emitted by the light element mounted on the light mounting bracket can pass through the magnetic blocks.
[0053] In this embodiment, as Figures 5a to 5c As shown, the lighting mounting component 2 includes a base plate and a plurality of baffles disposed around the base plate; the lighting component is mounted on the baffles, and in the view shown in 5a, the lighting component is positioned above the base plate through the baffles.
[0054] In this embodiment, as Figure 5a As shown, the base plate and multiple baffles surround to form a first space for placing the power supply of the lighting component. In this embodiment, the power supply 42 of the lighting component can be a button battery, specifically two 1.5V button batteries. The two button batteries are stacked and connected in series and placed in the first space, which can provide 3V to the lighting component.
[0055] In this embodiment, as Figure 5a As shown, multiple baffles include a first baffle 21, a second baffle 22, a third baffle 23, and a fourth baffle 24. The first baffle 21 to the fourth baffle 24 are disposed on the base plate, forming a first space with the base plate. The first and second baffles are positioned opposite each other, as are the third and fourth baffles. The line connecting the first and second baffles and the line connecting the third and fourth baffles can be orthogonal. In this embodiment, the base plate can be circular, with a diameter similar to that of a button battery. Each baffle is disposed on the circumference of the base plate and extends upwards relative to the base plate.
[0056] In this embodiment, the height of the first baffle 21 and the second baffle 22 is higher than that of the third baffle 23 and the fourth baffle 24. The light element 4 can be installed on the first baffle 21 and the second baffle 22. When the power source for the light element is two button batteries, the height of the first baffle 21 and the second baffle 22 can be set to approximately the height of two button batteries. At this time, the button batteries can be stably placed in the first space.
[0057] In this embodiment, the height of the third baffle 23 and the fourth baffle 24 can only protrude a small portion from the bottom plate, so as to prevent the button battery from falling out of the first space. In this embodiment, as... Figure 5a As shown, the first baffle 21 and the second baffle 22 can be configured to be tilted outward relative to the bottom plate. This opening configuration makes it convenient to place the button battery into the first space.
[0058] In this embodiment, the lighting component 4 includes a lighting control board; such as Figures 5a to 5c As shown, the PCB board corresponding to the lighting control board is mounted on the first and second baffles and electrically connected to the power supply in the first space to receive power. Figure 3 As shown, the lighting control board includes a main control chip, light-emitting diodes (LEDs), and a triggering component. The LEDs are connected to the main control chip, which controls their operating state. The triggering component is connected to the main control chip and is used to send trigger signals to the main control chip, so that the main control chip controls the operating state of the LEDs according to the trigger signals. In this embodiment, the main control chip can be a microcontroller, and the triggering component can be a button or similar device connected to the microcontroller.
[0059] In this embodiment, the light-emitting diodes (LEDs) within the lighting element can be one or more, and may also include one or more colors, such as... Figure 3 As shown, the lighting component in this embodiment includes two light-emitting diodes (LEDs). The cathode of each LED is connected to the first I / O port of the main control chip, and the anode is connected to the positive terminal of the power supply. When the first I / O port of the main control chip outputs a low level, the LED brightens. Alternatively, the anode of each LED can be connected to the first I / O port of the main control chip, and the cathode can be connected to the negative terminal of the power supply. In this case, when the first I / O port of the main control chip outputs a high level, the LED brightens. In this embodiment, the triggering component can be a button (or key) S1. One end of the button is connected to the positive or negative terminal of the power supply (ground), and the other end is connected to the second I / O port of the main control chip. The main control chip can control the first I / O port to output a high or low level signal based on the level signal received by the second I / O port, thereby controlling the working state of each LED. In this embodiment, a short press of the button can wake up the main control chip and put it into working state, i.e., power on the magnetic building blocks. After the main control chip is awakened, each short press of the button can switch between modes. For example, the LED can be set to have three display modes: constant light, blinking, and breathing. The specific mode can be adjusted by the duty cycle of the output level signal of the first IO port. After cycling through the three modes, a short press of the button again will put the main control chip into sleep mode, i.e., power off the magnetic building blocks. In addition, the main control chip can be automatically powered off after a preset running time (e.g., 15 minutes). In practice, the working mode of the LED can be set as needed, and this embodiment does not limit it.
[0060] Furthermore, in this embodiment, the lighting control board can also be equipped with a wireless communication module connected to the main control chip, such as a Bluetooth module, a Zigbee module, a Wi-Fi module, etc. The main control chip of the lighting control board can connect to an external terminal through the wireless communication module, thereby receiving lighting control commands sent by the external terminal to control the lights to work in the corresponding mode. Based on this, users can directly control the lights of the magnetic blocks through an external terminal, further enhancing the fun.
[0061] In this embodiment, as Figure 1 As shown, the shell 1 is a cuboid structure, such as a cube structure, including four side walls and a first cover 5 and a second cover 6 located at both ends of the four side walls. The shell 1 forms a first mounting area 11 and four second mounting areas 12 inside. Support columns 13 are respectively provided on the four side walls inside the shell, and each support column 13 encloses to form the first mounting area 11. Support plates 14 are provided between each adjacent side wall inside the shell 1, and the second mounting areas are enclosed by the support plates 14 and two adjacent side walls of the shell. The second mounting areas are located in the four corners of the cuboid structure.
[0062] In this embodiment, as Figure 2 As shown, the support column 13 can be cylindrical. Specifically, a connecting plate 15 perpendicular to the side wall can be installed on the inner side wall of the housing 1, and the support column 13 is fixed on the connecting plate 15. The support columns on the four side walls of the housing enclose a first mounting area for accommodating the lamp panel mounting component 2.
[0063] In this embodiment, as Figure 2 As shown, the support column 13 is provided with an abutment, which includes an abutment portion 131 extending toward the light mounting component and a receiving portion 132 extending toward the first cover and / or the second cover respectively. The abutment abuts against the light mounting component through the abutment portion, specifically against the side wall of the button battery inside the light mounting component, which makes the installation of the light mounting component more stable and avoids the situation where the light component cannot work properly due to loosening during use. In addition, the abutment supports the light component on the light mounting component through the receiving portion 132, which prevents the light component's electronic control board from shifting and further improves the compactness of the internal structure of the housing.
[0064] In this embodiment, as Figure 2 As shown, each second mounting area support plate 14 may include a first support plate and a second support plate that are perpendicular to two adjacent side walls respectively. The first support plate and the second support plate are connected by a third support plate. The first support plate, the second support plate and the third support plate and the two side walls adjacent to the housing can form a second mounting area with a pentagonal cross section.
[0065] In this embodiment, as Figure 4a and 4b As shown, in the lighting components, the PCB board corresponding to the main control board of the lighting can be set to an octagonal shape, including four long sides and four short sides, where the long sides and short sides are adjacent. Based on this, the four long sides of the PCB board are respectively located at the receiving part of the support column abutment, and the four short sides of the PCB board abut against the third support plate of each support plate, which can very stably set the lighting mounting components in the first mounting area.
[0066] In this embodiment, as Figure 2As shown, each support column 13 is provided with a hole, and the first cover 5 of the housing 1 is provided with a first insert 51 that can be inserted into the hole of the support member; the second cover 6 is provided with a second insert 61 that can be inserted into the hole of the support column at the position corresponding to each support column 13.
[0067] In this embodiment, the support column 13 on the same sidewall can be one or two. When there is one support column, each support column has a first hole and a second hole at both ends. The first insert 51 of the first cover 5 is used to insert into the first hole, and the second insert 61 of the second cover 6 is used to insert into the second hole. When there are two support columns, the support column 13 on the same sidewall of the housing includes a first support column and a second support column located on the upper and lower surfaces of the connecting plate 15, respectively. In the length direction, the first support column and the second support column are located on the same straight line. The first support column is located between the upper surface of the connecting plate and the first cover, and the end of the first support column near the first cover has a first hole. The second support column is located between the lower surface of the connecting plate and the second cover, and the end of the second support column near the second cover has a second hole. The first insert 51 of the first cover 5 is used to insert into the first hole of the first support column, and the second insert 61 of the second cover 6 is used to insert into the second hole of the second support column.
[0068] In this embodiment, when a support column is provided on the same side wall of the housing, each support column has an abutment member including an abutment portion and two receiving portions 132 extending toward the first cover and the second cover respectively. The two receiving portions can be located at the upper and lower ends of the abutment member, or only the receiving portion toward the first cover can be provided. When two support columns are provided on the same side wall of the housing, each support column has an abutment member, and the abutment member includes an abutment portion and a receiving portion extending toward the first cover or the second cover. Specifically, the abutment portion of the abutment member on the first support column faces the first cover, and the abutment portion of the abutment member on the second support column faces the second cover; the abutment members on the two support columns are in a back-to-back relationship, and the abutment member as a whole can be as follows. Figure 2 The L-shape is shown. In this embodiment, since the PCB board of the light component is set close to the first cover, that is, the PCB board only needs to be supported by the receiving part of the abutment on the support member close to the first cover. Therefore, it is possible to set only the support column with the receiving part on the abutment of the first cover.
[0069] In this embodiment, the first cover 5 and the second cover 6 are further provided with fastening plates 52 at positions corresponding to the support plates, which can be fastened to the support plates. In this embodiment, the fastening plate 52 is provided with ultrasonic lines 54, which are local protrusion structures formed during ultrasonic welding. The forming process is as follows: the transducer converts electrical energy into high-frequency mechanical vibration of 20-40kHz and transmits it to the contact surface of the fastening plate. The ultrasonic lines 54 restrict the initial contact area to a very small range, thereby concentrating the energy highly and generating instantaneous high temperature (about 200°C) at the contact interface. This high temperature causes the plastic to melt rapidly and fuse together under continuous pressure. After cooling and solidification, a strong and reliable connection is formed. The entire welding process does not require the use of any solvents or adhesives, which has the advantages of being environmentally friendly, efficient, and safe. Based on this, the first cover 5 and the second cover 6 can be fixed to the shell simultaneously by inserts and fastening plates, which can ensure the stability of the installation of the first cover 5 and the second cover 6 and avoid the phenomenon of the cover loosening or falling off.
[0070] In this embodiment, as Figure 1 and 6 As shown, the trigger area 53 on the housing is set on the first cover 5. Specifically, it can be a thumb-shaped component on the first cover, which is obtained by hollowing out the first cover. The light component on the light mounting component is located on the side close to the first cover. The button 41 on the PCB board of the light component can be set in the middle of the PCB board and close to the trigger area of the first cover. When the user presses the trigger area, the trigger area moves towards the trigger component, i.e. the button, until it contacts the button, thereby pressing the button.
[0071] In this embodiment, as Figure 2 As shown, the second mounting area is divided into two regions by a partition, and each region is equipped with a magnetic component. In this embodiment, when the shell is a cuboid structure, the four second mounting areas included at the four corners of the cuboid structure can contain eight regions. Magnetic components can be placed in each of these eight regions. Based on this, the cuboid shell can have magnetism at all four corners of each face, facilitating assembly with other magnetic building blocks and greatly enhancing the combination capabilities of the magnetic building blocks. In this embodiment, the magnetic component can be a magnet or other magnetic parts, specifically in various shapes such as square or round.
[0072] In summary, this embodiment discloses a light-emitting magnetic building block, including a shell, a light mounting component, a light component, and a magnetic component. The shell contains a first mounting area and a second mounting area, with the second mounting area located around the first mounting area. The light mounting component is located in the first mounting area and is used to mount the light-emitting component. The magnetic component is located in the second mounting area. In this magnetic building block, the light mounting component is provided inside the shell to mount the light component, thereby enabling the magnetic building block to emit light and achieve sensory stimulation and dynamic attraction, effectively enhancing the fun of the magnetic building block.
[0073] The above description is only an optional implementation method for some implementation scenarios of this application. It should be noted that for those skilled in the art, other similar implementation methods based on the technical concept of this application without departing from the technical concept of this application also fall within the protection scope of the embodiments of this application.
Claims
1. A light magnetic building block, characterized in that, The shell, the light installation part, the light part and the magnetic part are included; the first installation area and the second installation area are arranged in the shell, and the second installation area is located at the periphery of the first installation area; the light installation part is arranged in the first installation area and used for installing the light part; The magnetic part is arranged in the second installation area; The light installation part includes the bottom plate and a plurality of baffle plates arranged on the periphery of the bottom plate; The bottom plate and the plurality of baffle plates surround to form the first space for placing the power supply of the light part, and the light part is installed on the baffle plate.
2. The light-magnetic building brick of claim 1, wherein, The trigger area is arranged on the wall of the shell, and the trigger area corresponds to the position of the trigger component of the light part installed on the light installation part, so as to contact the trigger component through the trigger area.
3. The light-magnetic building brick of claim 1, wherein, The plurality of baffle plates include the first baffle plate, the second baffle plate, the third baffle plate and the fourth baffle plate; The first baffle plate and the second baffle plate are opposite to each other, and the third baffle plate and the fourth baffle plate are opposite to each other; The light part is installed on the first baffle plate and the second baffle plate; The height of the first baffle plate and the second baffle plate is higher than that of the third baffle plate and the fourth baffle plate.
4. The light-magnetic building brick of claim 1, wherein, The light part includes the light electric control board; the light electric control board is installed above the baffle plate and electrically connected with the power supply in the first space, so as to be powered by the power supply.
5. The light-magnetic building brick of claim 4, wherein, The light electric control board includes the main control chip, the light emitting diode and the trigger component; the number of the light emitting diode is one or more; The light emitting diode is connected with the main control chip and controlled by the main control chip to work; The trigger component is connected with the main control chip and used for sending the trigger signal to the main control chip, so as to control the working state of the light emitting diode according to the trigger signal.
6. The light-magnetic building brick of claim 5, wherein, The light electric control board further includes the wireless communication module connected with the main control chip, and the main control chip communicates with the external terminal through the wireless communication module.
7. The light-magnetic building brick of claim 1, wherein, The shell is a square structure and includes four side walls, a first cover and a second cover located at the two ends of the four side walls; The four side walls in the shell are respectively provided with the support columns, and the support columns surround to form the first installation area; the support plates are arranged between the adjacent side walls in the shell, and the second installation area is formed by the support plates and the side walls of the shell.
8. The light-magnetic building brick of claim 7, wherein, The support column is provided with the abutting piece, and the abutting piece includes the abutting part extending towards the light installation part and the receiving part extending towards the first cover and / or the second cover; The abutting piece abuts the light installation part through the abutting part; The abutting piece receives the light part on the light installation part through the receiving part.
9. The light-magnetic building brick of claim 7, wherein, The holes are respectively arranged on the support columns; The first cover and the second cover are provided with the inserts corresponding to the positions of the support columns and capable of being inserted into the holes; The first cover and the second cover are provided with the buckling plates corresponding to the positions of the support plates and capable of being buckled with the support plates, and the ultrasonic wave line is arranged on the side of the buckling plate in contact with the support plate.