Bottle toy with flying doll

By designing bottle toys with bottle toy control circuit and flying doll control circuit, the problem of single gameplay of existing toys is solved, and the diversified gameplay of flying dolls and energy-saving and environmentally friendly charging effect is achieved.

CN222854587UActive Publication Date: 2025-05-13CHANGRONG TOYS DONGGUAN CO LTD
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Patent Information

Application Number
CN202421063110.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-15
Publication Date
2025-05-13
Estimated Expiration
2034-05-15

AI Technical Summary

Technical Problem

The existing bottle toys with flying dolls have a single way of playing, which is difficult to arouse children's interest.

Method used

Design a bottle toy body with built-in bottle toy control circuit and flying doll control circuit. Through touch detection, RGB display, motor drive and other circuit components, the flying dolls can be played separately and combined with bottle toys.

Benefits of technology

It realizes the diverse gameplay of flying dolls, improves the fun and playability of bottle toys, and realizes energy-saving and environmentally friendly charging of flying dolls through charging circuits.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222854587U_ABST
    Figure CN222854587U_ABST
Patent Text Reader

Abstract

The utility model relates to a bottle toy with a flying doll. The bottle toy comprises a bottle toy body and the flying doll which is detachably arranged in the bottle toy body, the bottle toy body is provided with a bottle toy control circuit, and the bottle toy control circuit comprises a touch detection circuit, an RGB display circuit, a first main control circuit, an installation detection switch, a bottle cap detection switch and a first motor driving circuit; the flying doll is provided with a flying doll control circuit; the flying doll control circuit comprises a second main control circuit, a key switch S2, an infrared transmitting circuit, an infrared receiving circuit and a second motor driving circuit; according to the bottle toy with the flying doll, the flying doll can be played independently and can be played after being put into the bottle toy body, the playing methods are diversified, and the interestingness and playability of the bottle toy with the flying doll are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of bottle toys, in particular to a bottle toy with a flying doll. Background Art

[0002] Toys refer to objects that can be used for playing. Playing with toys is often used as a way to educate and entertain in human society. Toys can also be natural objects, that is, non-artificial things such as sand, stone, mud, branches, etc.

[0003] Toys should be understood in a broad sense. They are not limited to things sold on the street for people to play with. Anything that can be played with, seen, heard and touched can be called a toy.

[0004] Toys are suitable for children, and are more suitable for young people and middle-aged and elderly people. They are tools to open the skylight of wisdom and make people smart and clever.

[0005] The existing bottle toys with flying dolls are just simple model toys with single playing methods, which are difficult to arouse children's interest.

[0006] Therefore, in the utility model patent application, the applicant has carefully studied a bottle toy with a flying doll to solve the above problems. Utility Model Content

[0007] The utility model aims to overcome the deficiencies in the above-mentioned prior art and mainly aims to provide a bottle toy with a flying doll, which can realize the flying doll to be played with alone or put into the bottle toy body for playing, and has various playing methods, thereby improving the fun and playability of the bottle toy with the flying doll.

[0008] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0009] A bottle toy body, comprising a bottle toy body and a flying doll which can be detachably installed in the bottle toy body;

[0010] The bottle toy body is provided with a bottle toy control circuit, and the bottle toy control circuit includes a touch detection circuit, an RGB display circuit, a first main control circuit, an installation detection switch for detecting whether the flying doll is installed in the bottle toy body, a bottle cap detection switch for detecting whether the bottle cap of the bottle toy body is opened, and a first motor drive circuit for driving the bottle toy body to shake left and right;

[0011] The first main control circuit is respectively connected to the touch detection circuit, the RGB display circuit, the installation detection switch, the bottle cap detection switch and the first motor drive circuit to trigger corresponding lights after the bottle cap is not opened and the flying doll has been installed in the bottle toy body and touches the touch detection circuit of the bottle toy body;

[0012] The flying doll is provided with a flying doll control circuit, which includes a second main control circuit, a key switch S2, an infrared transmitting circuit arranged at the bottom of the flying doll, an infrared receiving circuit, and a second motor driving circuit for driving the flying doll to take off and rise; the infrared transmitting circuit and the infrared receiving circuit are adapted so that after the flying doll extends a palm at the bottom, the infrared signal emitted by the infrared transmitting circuit will be reflected to the infrared receiving circuit through the palm;

[0013] The second main control circuit is respectively connected to the infrared transmitting circuit, the infrared receiving circuit, the key switch S2 and the second motor driving circuit to control the take-off of the flying doll after the key switch S2 is closed, or to control the flying doll to continue taking off if an infrared signal from the infrared receiving circuit is received during the take-off process.

[0014] As a preferred solution, the bottle toy control circuit further includes a first power supply circuit for supplying power.

[0015] As a preferred solution, the flying doll control circuit also includes a second power supply circuit for power supply.

[0016] As a preferred solution, the flying doll control circuit also includes an indicator light circuit, and the indicator light circuit is connected to the second main control circuit.

[0017] As a preferred solution, the first main control circuit is composed of a chip U1 of model PFS122 and its peripheral circuits.

[0018] As a preferred solution, the second main control circuit is composed of a chip U2 of model PFS122 and its peripheral circuits.

[0019] Compared with the prior art, the utility model has obvious advantages and beneficial effects. Specifically, the utility model mainly realizes the flying doll to be played alone or put into the bottle toy body for playing through the cooperation of the bottle toy control circuit and the flying doll, and the playing methods are diverse, thereby improving the fun and playability of the bottle toy with the flying doll.

[0020] Secondly, the flying doll can be charged through the charging circuit, which is energy-saving and environmentally friendly.

[0021] In order to more clearly illustrate the structural features and effects of the present invention, it is described in detail below in conjunction with the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a general control principle block diagram of an embodiment of the utility model.

[0023] Figure 2 It is a principle diagram of a bottle toy control circuit according to an embodiment of the utility model.

[0024] Figure 3 The utility model is a circuit diagram of a flying doll according to an embodiment of the present invention.

[0025] Description of Figure Numbers:

[0026] 11. First main control circuit 12. Touch detection circuit

[0027] 13. RGB display circuit 14. First power supply circuit

[0028] 15. First motor drive circuit

[0029] 21. Second main control circuit 22. Indicator light circuit

[0030] 23. Second power supply circuit 24. Infrared emission circuit

[0031] 25. Infrared receiving circuit 26. Second motor driving circuit

[0032] 27. Charging circuit. DETAILED DESCRIPTION

[0033] The utility model is further described below in conjunction with the accompanying drawings and specific implementation methods.

[0034] like Figures 1 to 3 As shown, a bottle toy with a flying doll comprises a bottle toy body and a flying doll which can be detachably mounted in the bottle toy body;

[0035] The bottle toy body is provided with a bottle toy control circuit, and the bottle toy control circuit includes a touch detection circuit 12, an RGB display circuit 13, a first main control circuit 11, a first power supply circuit 14 for power supply, an installation detection switch for detecting whether the flying doll is installed in the bottle toy body, a bottle cap detection switch for detecting whether the bottle cap of the bottle toy body is opened, and a first motor drive circuit 15 for driving the bottle toy body to shake left and right;

[0036] The first main control circuit 11 is respectively connected to the touch detection circuit 12, the RGB display circuit 13, the installation detection switch, the bottle cap detection switch and the first motor drive circuit 15 to trigger the corresponding light after the bottle cap is not opened and the flying doll has been installed in the bottle toy body and touches the touch detection circuit 12 of the bottle toy body;

[0037] In this embodiment, the first main control circuit 11 is composed of a chip U1 of model PFS122 and its peripheral circuits. Pin 2 of the chip U1 is connected to the touch detection circuit 12, pins 6 and 12 of the chip U1 are connected to the motor drive circuit, pins 7, 8 and 5 of the chip U1 are connected to the RGB display circuit 13, pin 9 of the chip U1 is grounded through the bottle cap detection switch S31, pin 14 of the chip U1 is grounded through the installation detection switch S5, and pin 10 of the chip U1 is grounded through the bottle shaking back to the middle position detection switch S21.

[0038] The first power supply circuit 14 is powered by three 1.5V AAA batteries, and the electronic components PTC1, R12, S1, C4 and C3 are used to supply power to the circuits of the bottle toy body.

[0039] The touch detection circuit 12 is composed of a touch unit T1 arranged outside the bottle toy body, a chip U3 of model PT2041A and its peripheral circuits, and the pin 1 of the chip U3 is connected to the pin 2 of the chip U1.

[0040] The RGB display circuit 13 includes a resistor R3, a resistor R13, a resistor R4, a resistor R14, a resistor R5, a resistor R15, a first RGB lamp LED1, a second RGB lamp LED2, a transistor Q2, a transistor Q3 and a transistor Q4;

[0041] Pins 2 of the first RGB lamp LED1 and the second RGB lamp LED2 are both connected to the VCC voltage terminal of the first power supply circuit 14;

[0042] Pin 4 of the first RGB lamp LED1 is connected to the collector of transistor Q2 through resistor R6, pin 4 of the second RGB lamp LED1 is connected to the collector of transistor Q2 through resistor R7, the base of transistor Q2 is connected to pin 7 of chip U1 through resistor R3, the base of transistor Q2 is also connected to the emitter of transistor Q2 through resistor R13, and the emitter of transistor Q2 is grounded;

[0043] Pin 3 of the first RGB lamp LED1 is connected to the collector of transistor Q3 through resistor R8, pin 3 of the second RGB lamp LED1 is connected to the collector of transistor Q3 through resistor R9, the base of transistor Q3 is connected to pin 8 of chip U1 through resistor R4, the base of transistor Q3 is also connected to the emitter of transistor Q3 through resistor R14, and the emitter of transistor Q3 is grounded;

[0044] Pin 1 of the first RGB lamp LED1 is connected to the collector of the transistor Q4 through a resistor R10, pin 1 of the second RGB lamp LED1 is connected to the collector of the transistor Q4 through a resistor R11, the base of the transistor Q4 is connected to pin 5 of the chip U1 through a resistor R5, the base of the transistor Q4 is also connected to the emitter of the transistor Q4 through a resistor R15, and the emitter of the transistor Q4 is grounded.

[0045] The first motor driving circuit 15 is composed of a motor M1, a chip U2 of model BX1501C and its peripheral circuits, and pins 2 and 3 of the chip U2 are connected to pins 6 and 12 of the chip U1 respectively.

[0046] The flying doll is provided with a flying doll control circuit, which includes a second main control circuit 21, a key switch S2, an indicator light circuit 22, a second power supply circuit 23 for power supply, an infrared transmitting circuit 24 provided at the bottom of the flying doll, an infrared receiving circuit 25, and a second motor driving circuit 26 for driving the flying doll to take off and rise; the infrared transmitting circuit 24 and the infrared receiving circuit 25 are adapted so that after the flying doll extends a palm at the bottom, the infrared signal emitted by the infrared transmitting circuit 24 will be reflected to the infrared receiving circuit 25 through the palm;

[0047] The second main control circuit 21 is respectively connected to the infrared transmitting circuit 24, the infrared receiving circuit 25, the key switch S2 and the second motor driving circuit 26 to control the take-off of the flying doll after the key switch S2 is closed, or to control the flying doll to continue to take off if an infrared signal from the infrared receiving circuit 25 is received during the take-off process.

[0048] In this embodiment, the second main control circuit 21 is composed of a chip U2 of model PFS122 and its peripheral circuits. Pins 4, 5, 6 and 8 of the chip U2 are all connected to the infrared transmitting circuit 24, pin 2 of the chip U2 is connected to the infrared receiving circuit 25, and pin 3 of the chip U2 is connected to the key switch S2 grounded.

[0049] The indicator light circuit 22 is connected to the second main control circuit 21. In this embodiment, the indicator light circuit 22 includes a red LED lamp LED11 and a resistor R31, the pin 15 of the chip U2 is connected to the cathode of the red LED lamp LED11 through the resistor R31, and the anode of the red LED lamp LED11 is connected to the VCC voltage terminal of the second power supply circuit 23.

[0050] The second power supply circuit 23 uses a 3.7V battery BT1 as a power source, and uses electronic components PTC11, D4, D5, S3, R19, C12, C14 and R14 to supply power to various circuits of the flying doll.

[0051] The specific circuit structures of the infrared transmitting circuit 24, the infrared receiving circuit 25 and the second motor driving circuit 26 are shown in the figure.

[0052] The flying doll control circuit also includes a charging circuit 27 for charging the battery BT1. The charging circuit 27 is composed of a chip U3 of model BX4054 and its peripheral circuits.

[0053] Here is a brief description of how to play:

[0054] 1. How to play with the flying doll alone. The flying doll can be taken out of the bottle toy body. Hold it in your hand and press the power button S3 of the second power supply circuit 23 to turn it on. Then, click the button switch S2, and the motor M11 of the second motor drive circuit 26 drives the fan blades to rotate, and then the flying doll takes off at a height of about 1 meter above the ground.

[0055] At this time, the child can stretch out his palm to 1.5 inches below the foot of the flying doll. The infrared signal emitted by the infrared transmitting circuit 24 under the foot of the flying doll will be reflected by the palm to the infrared receiving circuit 25 of the flying doll. After the infrared receiving circuit 25 of the flying doll receives the signal, it will be transmitted to the second main control circuit 21. The second main control circuit 21 will control the action of the second motor driving circuit 26 and then the flying doll will fly to a higher place. When there is no infrared signal, it will slowly descend to a height of 1 meter. It will land on the ground until the flight program is set for one minute or the battery is out of power.

[0056] 2. The flying doll can also be installed in the bottle toy body for playing. When the bottle toy body is equipped with the flying fairy (i.e. the installation detection switch S5 is closed), touching the touch unit T1 of the bottle toy body, the bottle toy body will swing left and right or fast or slow like dancing. At the same time, the first RGB lamp LED1 and the second RGB lamp LED2 of the RGB display circuit 13 are lit at the same time.

[0057] The key point of the design of the utility model is that, mainly through the cooperation between the bottle toy control circuit and the flying doll, the flying doll can be played alone or placed in the bottle toy body for playing, and the playing methods are diverse, thereby improving the interest and playability of the bottle toy with the flying doll.

[0058] Secondly, the flying doll can be charged through the charging circuit, which is energy-saving and environmentally friendly.

[0059] The above description is only a preferred embodiment of the present invention and does not limit the technical scope of the present invention. Therefore, any minor modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. A bottle toy with a flying doll, characterized in that: The invention comprises a bottle toy body and a flying doll which can be detachably mounted in the bottle toy body; The bottle toy body is provided with a bottle toy control circuit, and the bottle toy control circuit includes a touch detection circuit, an RGB display circuit, a first main control circuit, an installation detection switch for detecting whether the flying doll is installed in the bottle toy body, a bottle cap detection switch for detecting whether the bottle cap of the bottle toy body is opened, and a first motor drive circuit for driving the bottle toy body to shake left and right; The first main control circuit is respectively connected to the touch detection circuit, the RGB display circuit, the installation detection switch, the bottle cap detection switch and the first motor drive circuit to trigger corresponding lights after the bottle cap is not opened and the flying doll has been installed in the bottle toy body and touches the touch detection circuit of the bottle toy body; The flying doll is provided with a flying doll control circuit, which includes a second main control circuit, a key switch S2, an infrared transmitting circuit arranged at the bottom of the flying doll, an infrared receiving circuit, and a second motor driving circuit for driving the flying doll to take off and rise; the infrared transmitting circuit and the infrared receiving circuit are adapted so that after the flying doll extends a palm at the bottom, the infrared signal emitted by the infrared transmitting circuit will be reflected to the infrared receiving circuit through the palm; The second main control circuit is respectively connected to the infrared transmitting circuit, the infrared receiving circuit, the key switch S2 and the second motor driving circuit to control the take-off of the flying doll after the key switch S2 is closed, or to control the flying doll to continue taking off if an infrared signal from the infrared receiving circuit is received during the take-off process.

2. The bottle toy with a flying figure according to claim 1, characterized in that: The bottle toy control circuit also includes a first power supply circuit for supplying power.

3. The bottle toy with a flying figure according to claim 1, characterized in that: The flying doll control circuit also includes a second power supply circuit for supplying power.

4. The bottle toy with a flying figure according to claim 1, characterized in that: The flying doll control circuit also includes an indicator light circuit, and the indicator light circuit is connected to the second main control circuit.

5. The bottle toy with a flying figure according to claim 1, characterized in that: The first main control circuit is composed of a chip U1 of model PFS122 and its peripheral circuits.

6. The bottle toy with a flying figure according to claim 1, characterized in that: The second main control circuit is composed of a chip U2 of model PFS122 and its peripheral circuits.