Toy movement
By incorporating wireless power supply and touch interaction modules within the toy mechanism, traditional interfaces are eliminated, resolving aesthetic and electrical hazard issues. This enables wireless charging and contactless interaction, enhancing both the toy mechanism's aesthetics and functionality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-27
AI Technical Summary
Existing toy mechanisms compromise the overall aesthetics and pose potential electrical contact hazards due to the reserved charging ports and button interfaces.
It adopts a wireless power supply module and a touch interaction module, and realizes wireless charging and contactless touch interaction through electromagnetic induction and capacitive induction. Combined with the intelligent interaction unit inside the shell, including the main control module, wireless power supply module and touch interaction module, the traditional interface design is eliminated.
It improves the overall aesthetics of the toy mechanism, reduces potential electrical contact hazards, enhances structural stability and internal space utilization, enriches interactive functions, and improves the user experience.
Smart Images

Figure CN224039999U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of toys, especially a toy movement. BACKGROUND
[0002] In order to realize device power supply or switch control, the existing toy movement usually reserves corresponding function openings. These opening parts not only damage the overall aesthetics of the toy movement, but also have electrical contact hazards, which can easily cause the toy movement to malfunction. UTILITY MODEL CONTENTS
[0003] The utility model solves the technical problem that a toy movement is provided, which can improve the overall aesthetics of the toy movement and reduce electrical contact hazards.
[0004] In order to solve the above technical problems, the utility model adopts the technical scheme that:
[0005] A toy movement includes a shell and an intelligent interaction unit arranged in the shell.
[0006] The intelligent interaction unit includes a master control module, a wireless power supply module, and a touch interaction module. The wireless power supply module is connected to the master control module and the touch interaction module, and the master control module is connected to the touch interaction module.
[0007] The wireless power supply module is used to transmit power to the master control module and the touch interaction module through electromagnetic induction. The touch interaction module is used to transmit control signals to the master control module through capacitive induction. The master control module is used to receive control signals and execute interaction operations through an artificial intelligence model.
[0008] Further, the shell includes a first half-shell and a second half-shell.
[0009] The first half-shell and the second half-shell are connected through a clamping sleeve structure.
[0010] Further, a stepped support is arranged in the shell.
[0011] The master control module and the wireless power supply module are fixed on the stepped support.
[0012] Further, the stepped support includes a first platform part and a second platform part arranged in a staggered manner.
[0013] The wireless power supply module is fixed on the first platform part.
[0014] The master control module is fixed on the second platform part.
[0015] Further, the wireless power supply module comprises a wireless charging receiving component, a wireless induction coil and a lithium battery;
[0016] The wireless charging receiving component is connected to the master control module and the touch interaction module respectively.
[0017] The wireless charging receiving component is fixed on the first platform part.
[0018] The wireless induction coil is connected to the wireless charging receiving component.
[0019] The wireless charging receiving component is connected to the lithium battery.
[0020] The wireless charging receiving component is used to convert the magnetic energy of the wireless induction coil into electric energy.
[0021] The lithium battery is fixed in the misaligned space between the first platform part and the second platform part.
[0022] Further, the wireless induction coil comprises a straight line segment and a coil segment.
[0023] One end of the straight line segment is fixed to the wireless charging receiving component, and the other end of the straight line segment is connected to the coil segment; the straight line segment is perpendicular to the plane where the coil segment is located.
[0024] Further, the intelligent interaction unit further comprises a loudspeaker, and the loudspeaker is connected to the master control module.
[0025] The loudspeaker is arranged on the side of the second platform part away from the master control module, so that the sound outlet of the loudspeaker is arranged opposite to the shell.
[0026] The area opposite to the sound outlet of the loudspeaker is provided with a sound hole.
[0027] Further, the intelligent interaction unit further comprises a microphone, and the microphone is connected to the master control module.
[0028] The microphone is arranged on the area of the second platform part close to the sound hole.
[0029] Further, a through-hole stud is arranged in the first half shell, and a blind-hole stud is arranged in the second half shell.
[0030] The through-hole stud and the blind-hole stud are arranged opposite to each other to cooperate with the screw to fixedly connect the first half shell and the second half shell.
[0031] Further, a reinforcing rib structure is arranged in the shell and is matched with the shape of the lithium battery.
[0032] The utility model discloses a beneficial effect lies in: the intelligent interaction unit is arranged in the casing, wherein the intelligent interaction unit is provided with wireless power module and touch interaction module, realizes wireless charging and no contact touch interaction function of toy core, need not open corresponding electrical interface on the casing, avoids the whole aesthetic feeling of traditional toy core to break down because reserving charging port and button interface, and there is electrical contact hidden danger etc. problem, effectively improves the whole aesthetic feeling of toy core, and reduces electrical contact hidden danger. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 A structure schematic view of toy core is provided for the utility model embodiment;
[0034] Figure 2 A structure schematic view of casing is provided for the utility model embodiment;
[0035] Figure 3 A structure schematic view of first half casing is provided for the utility model embodiment;
[0036] Figure 4 A structure schematic view of second half casing is provided for the utility model embodiment;
[0037] Figure 5 A structure schematic view of intelligent interaction unit is provided for the utility model embodiment;
[0038] Figure 6 A structure schematic view of ladder-shaped support is provided for the utility model embodiment;
[0039] Figure 7 A structure schematic view of wireless power module is provided for the utility model embodiment;
[0040] Label explanation:
[0041] 1, casing;11, first half casing;12, second half casing;13, clamping sleeve structure;111, through hole stud;121, blind hole stud;14, reinforcing rib structure;15, sound hole;
[0042] 2, intelligent interaction unit;21, main control module;22, wireless power module;23, loudspeaker;24, microphone;221, wireless charging receiving component;222, wireless induction coil;223, lithium battery;2231, battery bubble cotton;2221, straight line segment;2222, coil segment;2223, magnetic ring;
[0043] 3, ladder-shaped support;31, first platform part;32, second platform part. DETAILED DESCRIPTION
[0044] The technical content of the utility model, the purpose and the effect are explained in detail below by combining with the embodiments and the drawings.
[0045] The utility model provides a kind of toy core, including shell and the intelligent interaction unit being set in the shell;
[0046] The intelligent interaction unit includes main control module, wireless power module and touch interaction module, the wireless power module is connected the main control module and the touch interaction module respectively, and the main control module is connected the touch interaction module;
[0047] The wireless power module is used to respectively transmit electric energy to the main control module and the touch interaction module by the mode of electromagnetic induction, the touch interaction module is used to transmit control signal to the main control module by the mode of capacitance induction, and the main control module is used to receive control signal and execute interactive operation by artificial intelligence model.
[0048] From the above description, the utility model has the beneficial effect that: in the shell, the intelligent interaction unit is provided with wireless power module and touch interaction module, realizing wireless charging and non-contact touch interaction function of toy core, without opening corresponding electrical interface on the shell, avoiding the problems such as damaging overall aesthetic appearance and existing electrical contact hazards of traditional toy core due to reserving charging port and key interface, effectively improving the overall aesthetic appearance of toy core and reducing electrical contact hazards.
[0049] Further, the shell includes first half shell and second half shell;
[0050] The first half shell and the second half shell are connected by a card sleeve structure.
[0051] From the above description, the design of connecting the first half shell and the second half shell by the card sleeve structure makes the assembly of the shell more convenient and fast, reduces production cost and assembly difficulty, and improves the connection strength and stability of the shell.
[0052] Further, the shell is further provided with a stepped support;
[0053] The main control module and the wireless power module are fixed on the stepped support.
[0054] From the above description, the stepped support is arranged in the shell, which provides a stable fixing position for the main control module and the wireless power module, so that the layout of each module in the shell is more reasonable and compact, and the internal space utilization and overall structural stability of the toy core are improved.
[0055] Further, the stepped support comprises a first platform part and a second platform part arranged in a staggered manner.
[0056] The wireless power supply module is fixed on the first platform part.
[0057] The main control module is fixed on the second platform part.
[0058] From the above description, it can be seen that the stepped support comprises a first platform part and a second platform part arranged in a staggered manner, further optimizing the fixed position of the main control module and the wireless power supply module, so that modules of different heights can be better adapted, further improving the space utilization and structural stability, while facilitating wiring and connection between modules, reducing assembly difficulty and error rate in the production process.
[0059] Further, the wireless power supply module comprises a wireless charging receiving assembly, a wireless induction coil and a lithium battery.
[0060] The wireless charging receiving assembly is connected to the main control module and the touch interaction module, respectively.
[0061] The wireless charging receiving assembly is fixed on the first platform part.
[0062] The wireless induction coil is connected to the wireless charging receiving assembly.
[0063] The wireless charging receiving assembly is connected to the lithium battery.
[0064] The wireless charging receiving assembly is used to convert the magnetic energy of the wireless induction coil into electrical energy.
[0065] The lithium battery is fixed in the staggered space between the first platform part and the second platform part.
[0066] From the above description, it can be seen that the wireless power supply module comprises a wireless charging receiving assembly, a wireless induction coil and a lithium battery, the wireless induction coil is connected to the wireless charging receiving assembly, and the wireless charging receiving assembly is connected to the lithium battery, so that the wireless power supply module can convert magnetic energy into electrical energy and store and supply electrical energy through the lithium battery, ensuring the continuous and stable operation of the toy core, while the lithium battery is fixed in the staggered space, making full use of the internal space of the shell and avoiding the occupation of too much space by the lithium battery, further optimizing the internal structure of the toy core.
[0067] Further, the wireless induction coil comprises a straight section and a coil section.
[0068] One end of the straight section is fixed to the wireless charging receiving assembly, and the other end of the straight section is connected to the coil section; the straight section is perpendicular to the plane on which the coil section is located.
[0069] From the above description, the specific structure design of the straight line segment and the coil segment of the wireless induction coil enables the coil segment to extend as close to the shell as possible while being connected to the wireless charging receiving assembly through the straight line segment, thereby reducing the distance from the wireless power transmission assembly outside the shell, reducing energy loss during transmission, and improving charging efficiency.
[0070] Further, the intelligent interaction unit further comprises a loudspeaker connected to the master control module.
[0071] The loudspeaker is arranged on the side of the second platform portion away from the master control module, so that the sound outlet of the loudspeaker is arranged opposite to the shell.
[0072] The area opposite to the sound outlet of the loudspeaker is provided with a sound hole.
[0073] From the above description, the loudspeaker is added in the toy core and arranged on the side of the second platform portion away from the master control module, opposite to the shell, and a sound hole is arranged on the shell. This design enables the toy core to have a sound emitting function, capable of playing music, voice and other sound effects, while the reasonable layout ensures the sound propagation effect and sound quality, avoiding the interference or obstruction of sound by other modules.
[0074] Further, the intelligent interaction unit further comprises a microphone connected to the master control module.
[0075] The microphone is arranged on the area of the second platform portion close to the sound hole.
[0076] From the above description, the microphone is added in the intelligent interaction unit and arranged on the area of the second platform portion close to the sound hole, so that the toy core has a voice recognition function and can receive voice instructions from the user, further enriching the interactive mode of the toy, improving the intelligence level and user experience of the toy, and the relative position design of the microphone and the sound hole ensures the collection effect of the voice signal and improves the accuracy and sensitivity of the voice recognition.
[0077] Further, the first half shell is provided with a through-hole stud, and the second half shell is provided with a blind hole stud.
[0078] The through-hole stud and the blind hole stud are arranged opposite to each other to cooperate with the screw to fixedly connect the first half shell and the second half shell.
[0079] From the above description, the through-hole stud in the first half shell and the blind hole stud in the second half shell are arranged opposite to each other to cooperate with the screw for fixed connection, which further enhances the connection strength and stability between the first half shell and the second half shell, and can better withstand external impact and extrusion.
[0080] Further, the shell is provided with a reinforcing rib structure matched with the shape of the lithium battery.
[0081] As can be seen from the above description, the reinforcing rib structure matched with the shape of the lithium battery is arranged in the shell, which can better support and fix the lithium battery, prevent the lithium battery from shaking or moving in the shell, and also enhance the strength of the shell, so that the shell can better withstand external pressure and protect the lithium battery from damage.
[0082] The embodiment of the utility model provides a toy core can be arranged in the inside of doll or toy model, it can improve the overall aesthetic property of toy, and reduce electrical contact hidden danger, following through specific embodiment to explain:
[0083] Please refer to Figures 1 to 7 , the embodiment one of the utility model is:
[0084] As Figure 1 indicated, a toy core, including shell 1 and setting up in the intelligent interactive unit 2 of shell.
[0085] As Figures 2 to 4 indicated, specifically, shell 1 includes first half shell 11 and second half shell 12, and the first half shell 11 and the second half shell 12 are connected by the sleeve structure 13. The first half shell 11 is provided with a through-hole stud 111, and the second half shell 12 is provided with a blind hole stud 121. The through-hole stud 111 is arranged opposite to the blind hole stud 121 to cooperate with the screw to fixedly connect the first half shell 11 and the second half shell 12. It should be noted that the shape of the shell 1 is designed according to user requirements, including but not limited to sphere, cuboid, hexahedron, etc. The through-hole stud 111 refers to the stud that can communicate the inside and outside of the shell, and the blind hole stud 121 refers to the stud that only has a blind hole inside the shell. In this embodiment, in order to ensure the stability of the connection, the first half shell 11 is provided with four through-hole studs 111, and the second half shell 12 is provided with four blind hole studs 121.
[0086] As Figure 5 indicated, specifically, the intelligent interactive unit 2 includes a main control module 21, a wireless power supply module 22 and a touch interaction module (not shown in the figure), the wireless power supply module 22 is connected with the main control module 21 and the touch interaction module respectively, and the main control module 21 is connected with the touch interaction module. The wireless power supply module 22 is used for transmitting electric energy to the main control module 21 and the touch interaction module respectively by the mode of electromagnetic induction, the touch interaction module is used for transmitting control signals to the main control module 21 by the mode of capacitive induction, and the main control module 21 is used for receiving control signals and executing interaction operations through an artificial intelligence model. In this embodiment, the main control module 21 is a PCB board provided with an integrated circuit.
[0087] In an alternative embodiment, as shown in Figure 5 The stepped support 3 is arranged in the housing 1, and the main control module 21 and the wireless power supply module 22 are both fixed on the stepped support 3. In this embodiment, the stepped support 3 is fixed in the housing 1 by screws. Specifically, as shown in Figure 6 The stepped support 3 includes a first platform portion 31 and a second platform portion 32 arranged in a staggered manner, the wireless power supply module 22 is fixed on the first platform portion 31, and the main control module 21 is fixed on the second platform portion 32. It should be noted that the touch interaction module is fixed on the inner side wall of the housing 1 so that the touch interaction module can sense the external human operation. Specifically, touch interaction modules with different functions can be arranged at different positions of the housing. For example, the touch interaction module in the first half housing can be used to turn on the machine and wake up the main control module 21, and the touch interaction module in the second half housing can be used to wake up the microphone 24 to start the voice function.
[0088] In an alternative embodiment, as shown in Figure 6 and Figure 7 The wireless power supply module 22 includes a wireless charging receiving assembly 221, a wireless induction coil 222, and a lithium battery 223. Specifically, the wireless charging receiving assembly 221 is connected to the main control module 21 and the touch interaction module respectively; the wireless charging receiving assembly 221 is fixed on the first platform portion 31; the wireless induction coil 222 is connected to the wireless charging receiving assembly 221; the wireless charging receiving assembly 221 is connected to the lithium battery 223; the wireless charging receiving assembly 221 is used to convert the magnetic energy of the wireless induction coil 222 into electrical energy; and the lithium battery 223 is fixed in the staggered space between the first platform portion 31 and the second platform portion 32. The wireless induction coil 222 includes a straight section 2221 and a coil section 2222, one end of the straight section 2221 is fixed to the wireless charging receiving assembly 221, the other end of the straight section 2221 is connected to the coil section 2222, and the straight section 2221 is perpendicular to the plane in which the coil section 2222 lies. In this embodiment, the area of the housing 1 opposite to the coil section 2222 is arranged as a flat structure, so that the toy movement can stably contact the external wireless charging transmitting assembly. In addition, the lithium battery 223 is wrapped with battery foam 2231 to protect the lithium battery. A magnetic ring 2223 is arranged around the coil section 2222 to improve the transmission efficiency of the magnetic field.
[0089] In an alternative embodiment, as shown in Figure 4 The housing 1 is provided with a reinforcing rib structure 14 matched with the shape of the lithium battery 223. In this embodiment, the reinforcing rib structure 14 is arranged on the second half housing 12.
[0090] As shown in Figure 4 and Figure 6As shown, the intelligent interaction unit 2 further comprises a speaker 23 connected to the master module 21, the speaker 23 being arranged on the second platform portion 32 away from the master module 21, such that the sound outlet of the speaker 23 is arranged opposite to the shell 1; the area of the shell 1 opposite to the sound outlet of the speaker 23 is provided with a sound hole 15. In the embodiment, the sound hole 15 is arranged on the second half shell 12. The intelligent interaction unit 2 further comprises a microphone 24 connected to the master module 21, the microphone 24 being arranged on the second platform portion 32 close to the sound hole 15.
[0091] In summary, the toy core provided by the utility model has the following advantages. Firstly, the wireless power supply module and the touch interaction module are adopted to realize wireless charging and touch interaction without contact, and the charging port and the key interface are not arranged on the shell, so that the overall appearance of the toy core is improved, and electrical contact hazards are avoided. Secondly, the shell is connected by the first half shell and the second half shell through the clamping sleeve structure, and is fixed by the screw of the through hole stud and the blind hole stud, so that the shell is not only convenient and fast to assemble, but also has good appearance. In addition, the stepped support in the shell provides a stable fixing position for the master module and the wireless power supply module, optimizes the internal space layout, improves the space utilization and structural stability, and facilitates wiring and connection between modules. The specific structure design of the wireless induction coil in the wireless power supply module reduces energy transmission loss and improves charging efficiency. The reasonable layout of the speaker and the microphone endows the toy core with sound emission and voice recognition functions, enriches the interaction mode, and improves the user experience. Finally, the reinforcing rib structure in the shell is matched with the shape of the lithium battery, which further enhances the strength of the shell and protects the lithium battery from damage. These designs collectively improve the performance, safety and user experience of the toy core.
[0092] The above description is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent transformation or direct or indirect application in the related technical field is also included in the patent protection range of the utility model.
Claims
1. A toy movement, characterized in that, The shell and the intelligent interaction unit arranged in the shell are provided. The intelligent interaction unit comprises a master control module, a wireless power supply module and a touch interaction module, the wireless power supply module is connected with the master control module and the touch interaction module respectively, and the master control module is connected with the touch interaction module. The wireless power supply module is used for transmitting electric energy to the master control module and the touch interaction module respectively through electromagnetic induction, the touch interaction module is used for transmitting control signals to the master control module through capacitive induction, and the master control module is used for receiving control signals and executing interaction operations through an artificial intelligence model.
2. A toy movement as claimed in claim 1, characterized in that The shell comprises a first half shell and a second half shell. The first half shell and the second half shell are connected through a clamping sleeve structure.
3. A toy movement as claimed in claim 1, characterized in that A stepped support is further arranged in the shell. The master control module and the wireless power supply module are fixed on the stepped support.
4. A toy movement as claimed in claim 3, characterized in that The stepped support comprises a first platform part and a second platform part arranged in a staggered manner. The wireless power supply module is fixed on the first platform part. The master control module is fixed on the second platform part.
5. A toy movement as claimed in claim 4, characterized in that The wireless power supply module comprises a wireless charging receiving assembly, a wireless induction coil and a lithium battery. The wireless charging receiving assembly is connected with the master control module and the touch interaction module respectively. The wireless charging receiving assembly is fixed on the first platform part. The wireless induction coil is connected with the wireless charging receiving assembly. The wireless charging receiving assembly is connected with the lithium battery. The wireless charging receiving assembly is used for converting magnetic energy of the wireless induction coil into electric energy. The lithium battery is fixed in a staggered space between the first platform part and the second platform part.
6. A toy movement as claimed in claim 5, characterized in that The wireless induction coil comprises a straight line segment and a coil segment. One end of the straight line segment is fixed on the wireless charging receiving assembly, the other end of the straight line segment is connected with the coil segment, and the straight line segment is perpendicular to a plane where the coil segment is located.
7. A toy movement as claimed in claim 4, characterized in that The intelligent interaction unit further comprises a loudspeaker connected with the master control module. The loudspeaker is arranged on a side of the second platform part away from the master control module, so that a sound outlet of the loudspeaker is arranged opposite to the shell. An acoustic hole is arranged in an area of the shell opposite to the sound outlet of the loudspeaker.
8. A toy movement according to claim 7, characterised in that The intelligent interaction unit further comprises a microphone connected with the master control module. The microphone is arranged in an area of the second platform part close to the acoustic hole.
9. A toy movement according to claim 2, wherein A through-hole stud is arranged in the first half shell, and a blind-hole stud is arranged in the second half shell. The through-hole stud and the blind-hole stud are arranged opposite to each other to fixedly connect the first half shell and the second half shell through a screw.
10. A toy movement according to claim 5, wherein A reinforcing rib structure is arranged in the shell and matched with a shape of the lithium battery.