Remote control pterosaur toy

By designing a remote-controlled flying dragon toy and combining it with a touch sensor and a remote control, diversified gameplay is achieved, which solves the problem of the single gameplay of existing flying dragon toys and enhances the fun and interactivity of the toy.

CN223471351UActive Publication Date: 2025-10-24CHANGRONG TOYS DONGGUAN CO LTD
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Patent Information

Application Number
CN202422650690.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-24
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The existing flying dragon toys have a single gameplay, poor interactivity, and a low degree of imitation, which reduces the playability of the toy.

Method used

A remote-controlled flying dragon toy is designed. It combines abdominal touch sensors, back touch sensors, and a remote control to achieve diverse ways of playing with the toy itself. Sounds and movements can be emitted through the remote control or touch operation, enhancing interactivity and imitation.

Benefits of technology

The fun and playability of the flying dragon toy are improved, and the vivid image and interactivity of the toy are enhanced through diversified playing methods and interactive methods.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223471351U_ABST
    Figure CN223471351U_ABST
Patent Text Reader

Abstract

The utility model relates to a remote control pterosaur toy which comprises a remote controller and a pterosaur toy body. A first main control circuit, a key circuit and a light display circuit are arranged on the remote controller; a second main control circuit, a loudspeaker SPK, a mouth opening and closing driving motor M1, a neck left-right rotating motor M2, a wing up-down rotating motor M3, a first driving circuit, a second driving circuit, a third driving circuit, a wireless receiving circuit, an abdomen touch sensor and a back touch sensor are arranged on the pterosaur toy body; according to the pterosaur toy, a single pterosaur toy body can be played or played through the remote controller, the playing methods are diversified, the pterosaur toy body can make sounds and corresponding actions regardless of the playing methods, the pterosaur toy is vivid, good in interactivity and high in imitation degree, and the interestingness and playability of the pterosaur toy are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to flying dragon toy technical field especially is a kind of remote control flying dragon toy. BACKGROUND

[0002] At present, the style of toy is more and more, such as the toy manufactured by imitating various dinosaur modeling.

[0003] Flying dragon toy in flying dragon shape also begins to appear on the market, but the flying dragon toy at present is generally only a simple flying dragon model, and the play is single, the interactivity is poor, and the simulation degree is lower, so as to reduce the playability of flying dragon toy.

[0004] Therefore, in the utility model patent application, the applicant carefully studies a kind of remote control flying dragon toy to solve the above problems. UTILITY MODEL CONTENT

[0005] The utility model mainly aims at providing a kind of remote control flying dragon toy, which can realize the play of single flying dragon toy body or through remote control, and the play is diverse, no matter what play mode, flying dragon toy body will emit sound and corresponding action, vivid image, good interactivity, higher simulation degree, improve the interest and playability of flying dragon toy.

[0006] To achieve the above-mentioned purpose, the utility model takes the following technical solutions:

[0007] A kind of remote control flying dragon toy, including remote control and flying dragon toy body;

[0008] First main control circuit, keying circuit and light display circuit are provided on the remote control;

[0009] The first main control circuit includes the first main control chip U1 of built-in MCU and 2.4G chip, and the first main control chip U1 is connected with keying circuit and light display circuit respectively;

[0010] Second main control circuit, loudspeaker SPK, mouth opening and closing drive motor M1, neck left and right rotation motor M2, wing up and down rotation motor M3, first drive circuit, second drive circuit, third drive circuit, wireless receiving circuit for being wirelessly connected with the first main control chip U1, abdomen touch sensor for detecting whether the player touches the abdomen of flying dragon toy body and back touch sensor for detecting whether the player touches the back of flying dragon toy body are provided on the flying dragon toy body;

[0011] The second main control circuit is connected with loudspeaker SPK, abdomen touch sensor, back touch sensor, wireless receiving circuit, first drive circuit, second drive circuit and third drive circuit respectively;

[0012] The first driving circuit drives the mouth opening and closing driving motor M1 connected to the mouth to drive the mouth to open and close, the second driving circuit drives the neck left and right rotating motor M2 connected to the neck to drive the neck to swing left and right, and the third driving circuit drives the wing up and down rotating motor M3 connected to the wing to drive the wing to rotate up and down.

[0013] As a preferred solution, the flying dragon toy body is further provided with a neck detection circuit for detecting the neck rotating position.

[0014] As a preferred solution, the flying dragon toy body is further provided with a wing detection circuit for detecting the wing rotating position.

[0015] As a preferred solution, the first driving circuit is composed of a first driving chip U9 with a model number of SI8301S and its peripheral circuit.

[0016] As a preferred solution, the second driving circuit is composed of a second driving chip U10 with a model number of SI8301S and its peripheral circuit.

[0017] As a preferred solution, the third driving circuit is composed of a third driving chip U11 with a model number of SI8301S and its peripheral circuit.

[0018] As a preferred solution, the remote controller is further provided with a power supply circuit for power supply.

[0019] As a preferred solution, the flying dragon toy body is further provided with a power management circuit for power supply.

[0020] Compared with the prior art, the utility model has obvious advantages and beneficial effects, specifically speaking: it mainly realizes that a single flying dragon toy body plays or plays through the remote controller through the cooperation of the abdominal touch sensor, the back touch sensor and the remote controller, the play variety is good, no matter what playing mode is, the flying dragon toy body will emit a sound and the corresponding action, is lively and vivid, the interaction is good, the simulation degree is higher, improves the interestingness and the playability of the flying dragon toy.

[0021] To make the structure characteristics and effects of the present application clearer, specific embodiments will be described in detail below with reference to the drawings. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 is the flying dragon toy body schematic diagram of the embodiment of the utility model;

[0023] Figure 2 is the general circuit principle diagram of the embodiment of the utility model;

[0024] Figure 3is the first main control circuit schematic diagram of the embodiment of the utility model;

[0025] Figure 4 is the power supply circuit schematic diagram of the embodiment of the utility model;

[0026] Figure 5 is the first drive circuit schematic diagram of the embodiment of the utility model;

[0027] Figure 6 is the second drive circuit schematic diagram of the embodiment of the utility model;

[0028] Figure 7 is the third drive circuit schematic diagram of the embodiment of the utility model;

[0029] Figure 8 is the neck detection circuit schematic diagram of the embodiment of the utility model;

[0030] Figure 9 is the wing detection circuit schematic diagram of the embodiment of the utility model;

[0031] Figure 10 is the second main control circuit schematic diagram of the embodiment of the utility model.

[0032] Explanation of drawing mark:

[0033] 10, remote controller

[0034] 11, first main control circuit 12, key circuit

[0035] 13, light display circuit 14, power supply circuit

[0036] 20, flying dragon toy body

[0037] 201, mouth 202, wing

[0038] 203, neck

[0039] 204, back 205, abdomen

[0040] 21, second main control circuit 22, first drive circuit

[0041] 23, second drive circuit 24, third drive circuit

[0042] 25, back touch sensor 26, wireless receiving circuit

[0043] 27, abdominal touch sensor

[0044] 291, neck detection circuit 292, wing detection circuit. Specific implementation

[0045] The utility model is further described below in combination with the drawings and specific embodiments.

[0046] As shown in the figure, Figures 1 to 10 A remote control flying dragon toy comprises a remote controller 10 and a flying dragon toy body 20.

[0047] The remote controller 10 is provided with a first main control circuit 11, a key circuit 12, a light display circuit 13 and a power supply circuit 14 for power supply.

[0048] The first main control circuit 11 comprises a first main control chip U1 with a built-in MCU and a 2.4G chip, and the first main control chip U1 is connected with the key circuit 12 and the light display circuit 13 respectively.

[0049] In the embodiment, the light display circuit 13 comprises a state indicating lamp LED1 and a resistor R1, one end of the resistor R1 is connected with the VCC voltage of the power supply circuit 14, the other end of the resistor R1 is connected with the positive pole of the state indicating lamp LED1, and the negative pole of the state indicating lamp LED1 is connected with the pin 4 of the first main control chip U1. By checking whether the state indicating lamp LED1 is lighted, it can be checked whether there is enough power for the control of the remote controller 10.

[0050] In the embodiment, the key circuit 12 comprises a matching key S1, a wing 202 action key S2, a neck 203 left turning key S3, a neck 203 right turning key S4 and a mouth 201 opening key S5.

[0051] When the matching key S1 is pressed, the first main control chip U1 sends a wireless signal to the flying dragon toy body 20 to wirelessly connect the wireless receiving circuit 26 of the flying dragon toy body 20.

[0052] When the wing 202 action key S2 is pressed, the first main control chip U1 sends a wireless signal to the flying dragon toy body 20 to control the up and down rotation of the wing 202 of the flying dragon toy body 20.

[0053] When the neck 203 left turning key S3 or the neck 203 right turning key S4 is pressed, the first main control chip U1 sends a wireless signal to the flying dragon toy body 20 to control the left or right rotation of the neck 203 of the flying dragon toy body 20.

[0054] When the mouth 201 opening key S5 is pressed, the first main control chip U1 sends a wireless signal to the flying dragon toy body 20 to control the opening of the mouth 201 of the flying dragon toy body 20.

[0055] The toy body 20 is provided with a second main control circuit 21, a speaker SPK, a mouth 201 opening and closing driving motor M1, a neck 203 left and right rotating motor M2, a wing 202 up and down rotating motor M3, a first driving circuit 22, a second driving circuit 23, a third driving circuit 24, a power management circuit for power supply, a wireless receiving circuit 26 for wireless connection with the first main control chip U1, an abdomen touch sensor 27 for detecting whether the player touches the abdomen 205 of the toy body 20, and a back touch sensor 25 for detecting whether the player touches the back 204 of the toy body 20.

[0056] The second main control circuit 21 is connected with the speaker SPK, the abdomen touch sensor 27, the back touch sensor 25, the wireless receiving circuit 26, the first driving circuit 22, the second driving circuit 23, and the third driving circuit 24. In the embodiment, the second main control circuit 21 is composed of a chip U7 with a model number of SNC85F240D and its peripheral circuit. The pin 33 and the pin 34 of the chip U7 are connected with the back touch sensor 25 and the abdomen touch sensor 27 respectively.

[0057] In the embodiment, the toy body 20 can be remotely controlled by the remote controller 10, and can also be played alone.

[0058] When the remote controller 10 is not used, the toy body 20 can be held in the hand, and after the corresponding touch sensor on the back 204 or the abdomen 205 of the toy body 20 is touched, the mouth 201 is opened, the wing 202 is rotated up and down, and the neck 203 is swung left and right to simulate the state of the flying dragon after being touched.

[0059] The first driving circuit 22 drives the mouth 201 opening and closing driving motor M1 to drive the mouth 201 to open and close. Preferably, the first driving circuit 22 is composed of a first driving chip U9 with a model number of SI8301S and its peripheral circuit.

[0060] The second driving circuit 23 drives the neck 203 left and right rotating motor M2 to drive the neck 203 to swing left and right. Preferably, the second driving circuit 23 is composed of a second driving chip U10 with a model number of SI8301S and its peripheral circuit.

[0061] In the embodiment, the toy body 20 is further provided with a neck detection circuit 291 for detecting the rotating position of the neck 203. Preferably, the neck detection circuit 291 comprises an interface P3, an interface P4, a left detection switch S13 for detecting the rotating of the neck 203 to the left set position, a right detection switch S11 for detecting the rotating of the neck 203 to the right set position, and a middle detection switch S12 for detecting the rotating of the neck 203 to the middle set position.

[0062] The pin 1 to the pin 4 of the interface P3 are connected to the pin 1 to the pin 4 of the interface P4 respectively. One end of the right detection switch S11 and one end of the middle detection switch S12 are connected to the pin 3 of the interface P4, the other end of the right detection switch S11 and the other end of the middle detection switch S12 are connected to the pin 4 of the interface P4, the pin 4 of the interface P4 is connected to the pin 4 of the interface P3, and the pin 4 of the interface P3 is connected to the first main control pin 2 through the resistance R51. The two ends of the left detection switch S13 are connected to the pin 1 and the pin 2 of the interface P4 respectively.

[0063] The pin 1 of the interface P3 is connected to the pin 29 of the chip U7, the pin 2 of the interface P3 is connected to the pin 10 of the chip U7 through the resistance R15, the pin 3 of the interface P3 is connected to the pin 44 of the chip U7, and the pin 4 of the interface P3 is connected to the pin 13 of the chip U7.

[0064] When the neck 203 rotates to the right, if the right detection switch S11 is triggered to be closed, the chip U7 receives a signal to indicate that the neck 203 has been rotated to the predetermined position. If the right detection switch S11 is not triggered to be closed all the time, it indicates that the rotating trigger of the neck 203 may have a problem, at this time, the loudspeaker SPK can issue an alarm. For the quality inspection personnel, the detection of the rotating of the neck 203 to the right can be effectively realized. Similarly, the detection of the rotating of the neck 203 to the left and the returning of the head to the middle position can also be realized through the corresponding detection switches.

[0065] The third driving circuit 24 drives the up and down rotating motor M3 connected to the wings 202 to drive the wings 202 to rotate up and down. Preferably, the third driving circuit 24 is composed of a third driving chip U11 with a model number of SI8301S and its peripheral circuit. In the embodiment, the toy body 20 is further provided with a wing detection circuit 292 for detecting the rotating position of the wings 202.

[0066] Preferably, the wing detection circuit 292 comprises an interface P21, an interface P22, an upper detection switch S21 for detecting the rotating of the wings 202 to the upper set position, and a lower detection switch S22 for detecting the rotating of the wings 202 to the lower set position.

[0067] The pin 1 to the pin 3 of the interface P21 are connected with the pin 1 to the pin 3 of the interface P22 one by one respectively. One end of the upper detection switch S21 and one end of the lower detection switch S22 are connected with the pin 1 of the interface P22, the other end of the upper detection switch S21 is connected with the pin 3 of the interface P22, and the other end of the lower detection switch S22 is connected with the pin 2 of the interface P22.

[0068] The pin 1 of the interface P21 is connected with the pin 29 of the chip U7, the pin 3 of the interface P21 is connected with the pin 14 of the chip U7 through the resistance R16, and the pin 2 of the interface P21 is connected with the pin 15 of the chip U7 through the resistance R17.

[0069] When the wing 202 rotates upwards, if the upper detection switch S21 is triggered to be closed, the chip U7 receives a signal to indicate that the wing 202 has been rotated to a predetermined position; if the upper detection switch S21 is not triggered to be closed all the time, it indicates that the rotation trigger of the wing 202 may have a problem, at this time, the loudspeaker SPK can issue an alarm. For the quality inspection personnel, the detection of the upward rotation of the wing 202 can be effectively realized. Similarly, the detection of the downward rotation of the wing 202 can also be realized through the lower detection switch S22.

[0070] The utility model discloses a design key points at, it mainly is through the cooperation of abdominal touch sensor, back touch sensor and remote controller, can realize single flying dragon toy body plays or plays through remote controller, play variety, no matter what play mode, flying dragon toy body then will send out the sound and corresponding action, lively image, interactivity is better, the simulation degree is higher, improve flying dragon toy's interesting and playability.

[0071] The above is only the preferred embodiment of the utility model, and does not limit the technical range of the utility model, so any slight modification, equivalent change and modification according to the technical essence of the utility model to the above embodiment still belong to the range of the utility model technical scheme.

Claims

1. A remote control flying dragon toy characterized by: The remote controller and the toy body of the flying dragon are included; The remote controller is provided with a first main control circuit, a key circuit and a light display circuit; The first main control circuit includes a first main control chip U1 with a built-in MCU and a 2.4G chip, which is connected with the key circuit and the light display circuit respectively; The flying dragon toy body is provided with a second main control circuit, a loudspeaker SPK, a mouth opening and closing driving motor M1, a neck left and right rotating motor M2, a wing up and down rotating motor M3, a first driving circuit, a second driving circuit, a third driving circuit, a wireless receiving circuit for wireless connection with the first main control chip U1, an abdomen touch sensor for detecting whether the player touches the abdomen of the flying dragon toy body, and a back touch sensor for detecting whether the player touches the back of the flying dragon toy body; The second main control circuit is connected with the loudspeaker SPK, the abdomen touch sensor, the back touch sensor, the wireless receiving circuit, the first driving circuit, the second driving circuit and the third driving circuit respectively; The first driving circuit drives the mouth opening and closing driving motor M1 to drive the mouth to open and close, the second driving circuit drives the neck left and right rotating motor M2 to drive the neck to swing left and right, and the third driving circuit drives the wing up and down rotating motor M3 to drive the wing to rotate up and down.

2. The remote control flying dragon toy according to claim 1, wherein: The flying dragon toy body is also provided with a neck detection circuit for detecting the rotating position of the neck.

3. The remote control flying dragon toy of claim 1, wherein: The flying dragon toy body is also provided with a wing detection circuit for detecting the rotating position of the wing.

4. The remote control flying dragon toy of claim 1, wherein: The first driving circuit is composed of a first driving chip U9 with a model number of SI8301S and its peripheral circuit.

5. The remote control flying dragon toy of claim 1, wherein: The second driving circuit is composed of a second driving chip U10 with a model number of SI8301S and its peripheral circuit.

6. The remote control flying dragon toy of claim 1, wherein: The third driving circuit is composed of a third driving chip U11 with a model number of SI8301S and its peripheral circuit.

7. The remote control flying dragon toy of claim 1, wherein: The remote controller is also provided with a power supply circuit for power supply.

8. The remote control flying dragon toy of claim 1, wherein: The flying dragon toy body is also provided with a power management circuit for power supply.