Luminous toy platform
The wireless coil in the display platform automatically powers model robot lights via electromagnetic induction, addressing the need for separate power sources and simplifying operation by activating/deactivating lights based on proximity.
Patent Information
- Application Number
- CN202421651463.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The existing luminous toy platform and model robot need to operate the power supply separately, which leads to inconvenience in display.
Using wireless coil design, the model robot automatically turns on within the range of the wireless coil magnetic field and automatically turns off after leaving the magnetic field. Combined with the sliding connection structure and angle adjustment mechanism, the model robot's automatic power control and multi-angle display are realized.
The model robot is automatically powered on and off, simplifying power operation, improving the convenience of display and multi-angle display effect.
Smart Images

Figure CN223096116U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of light-emitting toys, in particular to a light-emitting toy platform. Background Art
[0002] A light-emitting toy is a product that, after being powered on, connects the circuit inside the toy, so that the lamps inside the toy emit light, and is often applied to model robots. The model robot is placed on a platform for display. The circuit inside the model robot is independent of the display platform. Therefore, in this structure of the light-emitting toy, independent power supplies are required inside both the platform and the robot. When the toy is displayed on the platform, the power supplies of the toy and the platform need to be switched on and off respectively, which is inconvenient to operate.
[0003] Therefore, it is necessary to further innovate the existing light-emitting toy platform. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a light-emitting toy platform in view of the defects and deficiencies of the prior art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is:
[0006] A light-emitting toy platform described in the utility model includes a base and a sliding seat arranged on the base; equipment platforms are arranged on both sides of the sliding seat; a wireless coil is arranged at the bottom of the base; the wireless coil is arranged around the edge of the base in a circle.
[0007] Further, a vertical frame is arranged on one side surface of the base; the vertical frame and the base are perpendicularly arranged; a wireless coil is arranged inside the vertical frame.
[0008] Further, a first sliding groove and a second sliding groove are arranged on the surface of the base; a first sliding block slidably connected to the first sliding groove is arranged at the bottom of the equipment platform; a second sliding block slidably connected to the second sliding groove is arranged on the sliding seat.
[0009] Further, the base is connected with a rear support; the rear support includes a pin, a rotating support fixed on the base, a guide sleeve rotatably connected to the rotating support, and a sliding bar slidably connected inside the guide sleeve; a plurality of limiting cards are arranged on the side wall of the sliding bar; the limiting cards are arranged along the length direction of the sliding bar; a hook is rotatably connected to the guide sleeve; one end of the hook is provided with a hook part; the hook part is clamped on one of the limiting cards;
[0010] A rotating sleeve rotatably connected to the sliding bar is provided on the bolt; a plurality of tooth grooves are provided on the outer side wall of the rotating sleeve; a sliding pin is slidably connected to the sliding bar; the axis of the sliding pin is arranged parallel to the axis of the rotating sleeve; an inserting bar is fixed on the shaft of the sliding pin; the inserting bar is inserted into one of the tooth grooves;
[0011] A plurality of concave shapes are provided on the shaft of the sliding pin; the concave shapes are arranged along the length direction of the sliding pin; a spring bar is fixed on the sliding bar; a clamping head is provided at the end of the spring bar; the clamping head is embedded into one of the concave shapes.
[0012] Further, a light strip is provided on the surface of the base.
[0013] After adopting the above structure, the beneficial effects of the present utility model are as follows: for the luminous toy platform of the present utility model, when the lamp beads of the electromagnetic induction lamp on the model robot enter the magnetic field range of the wireless coil, the induction coil on the electromagnetic induction lamp generates an induced current to supply power to the lamp beads of the electromagnetic induction lamp, making the lamp beads on the model robot emit light; the principle of the wireless coil is equivalent to the wireless charging structure of a mobile phone, the wireless coil of the base is equivalent to a charger, and the electromagnetic induction lamp is equivalent to a mobile phone; in this structure, by placing the model robot into the base, it can be automatically powered on and the induction lamp lights up. When the model robot leaves the base by a certain distance, the induction lamp of the model robot goes out, making the display more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is the structural schematic diagram of the present utility model;
[0015] Figure 2 is the exploded view of the present utility model;
[0016] Figure 3 is the structural diagram of the present utility model after removing the vertical frame;
[0017] Figure 4 is the exploded view of the rear support;
[0018] Figure 5 is Figure 4 the enlarged view of part A in
[0019] Figure 6 is the structural diagram of the connection of the bolt, the sliding pin and the spring bar;
[0020] Figure 7 is the structural diagram of the equipment table;
[0021] Figure 8 is the structural diagram of the sliding seat;
[0022] Figure 9 is the circuit diagram of the connection of two wireless coils;
[0023] Explanation of reference numerals:
[0024] 1. Base; 101. First chute; 102. Second chute; 2. Vertical frame; 3. Rear support
[0025] 301. Slide bar; 301a. Limit card; 302. Hook; 302a. Hook part; 303. Plug
[0026] 303a. Rotating sleeve; 303a1. Tooth groove; 304. Side cover; 305. Rotating support; 306. Slide pin
[0027] 306a. Insert bar; 306b. Concave type; 307. Spring bar; 307a. Clamping head; 4. Equipment table
[0028] 401. First slider; 5. Slide base; 501. Second slider; 6. Light strip; 7. Wireless coil Detailed implementation mode
[0029] The present utility model will be further described below with reference to the accompanying drawings.
[0030] As Figures 1 to 8 shown, a luminous toy platform of the present utility model includes a base 1 and a slide base 5 arranged on the base 1; equipment tables 4 are arranged on both sides of the slide base 5;
[0031] The slide base 5 is used for placing a model robot; the equipment table 4 is also a display rack for placing the equipment of the model robot, and a wireless coil 7 is arranged at the bottom of the base 1; the wireless coil 7 is arranged around the edge of the base 1 in a circle;
[0032] An electromagnetic induction lamp is arranged inside the model robot. The electromagnetic induction lamp beads have no essential difference from the prior art, so they will not be elaborated here; an induction coil is arranged on each electromagnetic induction lamp, and the lamp beads of the electromagnetic induction lamp are connected to the induction coil. When the lamp beads of the electromagnetic induction lamp on the model robot enter the magnetic field range of the wireless coil 7, an induced current is generated in the induction coil of the electromagnetic induction lamp to supply power to the lamp beads of the electromagnetic induction lamp, so that the lamp beads on the model robot emit light; the principle of the wireless coil 7 is equivalent to the wireless charging structure of a mobile phone. The wireless coil 7 of the base 1 is equivalent to a charger, and the electromagnetic induction lamp is equivalent to a mobile phone; in this structure, by placing the model robot into the base 1, it can be automatically powered on and the induction lamp will light up. When the model robot leaves the base 1 by a certain distance, the induction lamp of the model robot will go out, making the display more convenient.
[0033] As a preferred embodiment of the present utility model, a vertical frame 2 is provided on one side surface of the base 1; the vertical frame 2 is perpendicularly arranged with respect to the base 1; a wireless coil 7 is provided inside the vertical frame 2; the wireless coil 7 is also arranged around the frame edge of the vertical frame 2 on the vertical frame 2; in this way, the wireless coil 7 on the base 1 and the wireless coil 7 on the vertical frame 2 can be perpendicularly arranged, and an induction magnetic field can be formed in multiple directions, and the electromagnetic induction lamps can be distributed in multiple directions on the model robot, achieving the expansion of the three-dimensional range of electromagnetic waves and improving the display effect of the model robot; as Figure 9 shown, in the actual circuit, one of the wireless coils 7 is connected to a 12V power supply, and the other wireless coil 7 generates a current and thus a magnetic field under the action of the electromagnetic field generated by the wireless coil 7 connected to the 12V power supply, achieving the expansion of the three-dimensional range of electromagnetic waves.
[0034] As a preferred embodiment of the present utility model, a first chute 101 and a second chute 102 are provided on the surface of the base 1; a first slider 401 slidably connected to the first chute 101 is provided at the bottom of the equipment table 4; a second slider 501 slidably connected to the second chute 102 is provided on the sliding seat 5; the sliding seat 5 is used to place the model robot, and the equipment table 4 and the sliding seat 5 can slide to different positions on the base 1, so that the model robot has a better display effect.
[0035] As a preferred embodiment of the present utility model, the base 1 is connected to a rear support 3; the rear support 3 includes a plug pin 303, a rotating support 305 fixed on the base 1, a guide sleeve rotatably connected to the rotating support 305, and a sliding bar 301 slidably connected inside the guide sleeve; a plurality of limit cards 301a are provided on the side wall of the sliding bar 301; the limit cards 301a are arranged along the length direction of the sliding bar 301; a hook 302 is rotatably connected to the guide sleeve; one end of the hook 302 is provided with a hook portion 302a; the hook portion 302a is clamped on one of the limit cards 301a;
[0036] A rotating sleeve 303a rotatably connected to the sliding bar 301 is provided on the plug pin 303; a plurality of tooth grooves 303a1 are provided on the outer side wall of the rotating sleeve 303a; a sliding pin 306 is slidably connected to the sliding bar 301; the axis of the sliding pin 306 is parallel to the axis of the rotating sleeve 303a; an insertion bar 306a is fixed on the shaft body of the sliding pin 306; the insertion bar 306a is inserted into one of the tooth grooves 303a1;
[0037] The shaft of the sliding pin 306 is provided with a plurality of concave shapes 306b; the concave shapes 306b are arranged along the length direction of the sliding pin 306; a spring bar 307 is fixed on the sliding bar 301; a clamp head 307a is provided at the end of the spring bar 307; the clamp head 307a is embedded in one of the concave shapes 306b;
[0038] The model robot is provided with a hole matching the latch 303. After the latch 303 is inserted into the hole, the model robot is fixed on the latch 303, and the model robot can be suspended on the base 1.
[0039] The sliding pin 306 can only slide on the sliding bar 301 but cannot rotate. After the clamping head 307a is embedded in one of the concave shapes 306b, the sliding pin 306 cannot slide, and the inserting strip 306a is inserted into one of the tooth grooves 303a1, so that the rotating sleeve 303a cannot rotate on the sliding bar 301, thereby realizing the positioning of the swing angle of the latch 303; when it is necessary to adjust the angle of the model robot, the sliding pin 306 is pressed so that the clamping head 307a is squeezed by the inclined surface of the concave shape 306b, and the clamping head 307a is separated from the concave shape 306b, so that the inserting strip 306a is misaligned with the tooth groove 303a1, and then the swing angle of the latch 303 can be adjusted; after the adjustment is completed, the other side of the sliding pin 306 is pressed so that the clamping head 307a is re-inserted into the concave shape 306b, and the inserting strip 306a is inserted into another tooth groove 303a1, and then the latch 303 is positioned;
[0040] The two side covers 304 are combined to form a guide sleeve; the guide sleeve and the rotating support 305 have sufficient friction, so that after the model robot is connected, the guide sleeve will not swing at will; when the guide sleeve is rotated, the friction between the guide sleeve and the rotating support 305 needs to be overcome to make the guide sleeve rotate; the rotation of the rotating sleeve 303a can realize the adjustment of the robot's swing angle;
[0041] A torsion spring is connected between the hook 302 and the sliding bar 301, which can make the hook part 302a always stuck between the two limit cards 301a, so that the sliding bar 301 cannot slide in the guide sleeve; the resistance of the torsion spring is overcome to press the hook 302, so that the hook part 302a is loosened from the two limit cards 301a, and the sliding bar 301 can slide in the guide sleeve to adjust the height of the pin 303, thereby realizing the height adjustment of the model robot.
[0042] As a preferred embodiment of the present invention, a light strip 6 is provided on the surface of the base 1 .
[0043] The above description is only a preferred embodiment of the present utility model, so all equivalent changes or modifications made according to the structure, features and principles described in the scope of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A luminous toy platform, which comprises a base (1) and a sliding seat (5) arranged on the base (1); equipment platforms (4) are arranged on both sides of the sliding seat (5); characterized in that: A wireless coil (7) is provided at the bottom of the base (1); the wireless coil (7) is arranged around the edge of the base (1) in a circle; On one side surface of the base (1), a vertical frame (2) is provided; the vertical frame (2) is perpendicularly arranged with respect to the base (1); a wireless coil (7) is provided inside the vertical frame (2); On the surface of the base (1), a first sliding groove (101) and a second sliding groove (102) are provided; at the bottom of the equipment table (4), a first slider (401) slidably connected to the first sliding groove (101) is provided; on the sliding seat (5), a second slider (501) slidably connected to the second sliding groove (102) is provided; The base (1) is connected to a rear support (3); the rear support (3) includes a plug pin (303), a rotating support (305) fixed on the base (1), a guide sleeve rotatably connected to the rotating support (305), and a sliding bar (301) slidably connected inside the guide sleeve; on the side wall of the sliding bar (301), a plurality of limit cards (301a) are provided; the limit cards (301a) are arranged along the length direction of the sliding bar (301); a hook (302) is rotatably connected to the guide sleeve; one end of the hook (302) is provided with a hook portion (302a); the hook portion (302a) is clamped on one of the limit cards (301a); On the plug pin (303), a rotating sleeve (303a) rotatably connected to the sliding bar (301) is provided; on the outer side wall of the rotating sleeve (303a), a plurality of tooth grooves (303a1) are provided; a sliding pin (306) is slidably connected to the sliding bar (301); the axis of the sliding pin (306) is arranged parallel to the axis of the rotating sleeve (303a); on the shaft body of the sliding pin (306), an insertion bar (306a) is fixed; the insertion bar (306a) is inserted into one of the tooth grooves (303a1); On the shaft body of the sliding pin (306), a plurality of concave shapes (306b) are provided; the concave shapes (306b) are arranged along the length direction of the sliding pin (306); a spring bar (307) is fixed on the sliding bar (301); at the end of the spring bar (307), a clamping head (307a) is provided; the clamping head (307a) is embedded into one of the concave shapes (306b).
2. The luminous toy platform according to claim 1, wherein: A light strip (6) is provided on the surface of the base (1).