US20260192209A1 · App 19/049,053

BOUNCING FLYER AND FLYER TOY

Publication

Country:US
Doc Number:20260192209
Kind:A1
Date:2026-07-09

Application

Country:US
Doc Number:19/049,053 (19049053)
Date:2025-02-10

Classifications

IPC Classifications

A63H27/00A63H17/26A63H17/32A63H29/22A63H30/04

CPC Classifications

A63H27/00A63H17/262A63H17/32A63H29/22A63H30/04

Applicants

Weihua XIAO

Inventors

Weihua XIAO

Abstract

A bouncing flyer and a flyer toy are provided, relating to the technical field of toys. The bouncing flyer comprises a flyer body, which comprises a housing, and both ends of the housing are provided with rotor assemblies; the rotor assembly comprises at least two motors, the output ends of the two motors face the top and bottom of the housing, respectively, and the two motors are staggered and located on both sides of one end of the housing, respectively; the output end of the motor is provided with blades; a wheel axle is movably arranged inside the housing, and both ends of the wheel axle extend to the outside of the housing and are provided with a hub. The performance of the flyer body is superior and it can be widely used in ground remote control and many other application scenarios.

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Description

RELATED APPLICATIONS

[0001]The present application claims the benefit of priority of Chinese Patent Application No. 202520044903.3, filed Jan. 9, 2025, and entitled “BOUNCING FLYER AND FLYER TOY,” the entire content of which is incorporated herein by reference.

TECHNICAL FIELD

[0002]The present disclosure relates to the technical field of toys, in particular to a bouncing flyer and a flyer toy.

BACKGROUND ART

[0003]The flyer toy is a flying toy with rotors, which can be controlled by a remote controller or sensor. It has a simplified structure and is popular among children. However, the existing scooter toys still have the following shortcomings in use:

[0004]most of the existing flyer toys on the market only have the function of flying, and cannot move flexibly on the ground back and forth, left and right. The playability is low, and some flyer toys with the function of sliding forward and backward do not have the function of climbing walls, so the use effect is not ideal.

SUMMARY OF THE INVENTION

[0005]The present disclosure provides a bouncing flyer to solve the problems of the background art.

[0006]In order to achieve the above purpose, the present disclosure provides the following technical solutions: A bouncing flyer, comprising a flyer body. The flyer body comprises a housing, and both ends of the housing are provided with rotor assemblies; the rotor assembly comprises at least two motors, the output ends of the two motors face the top and bottom of the housing, respectively, and the two motors are staggered and located on both sides of one end of the housing, respectively; the output end of the motor is provided with blades; and a wheel axle is movably arranged inside the housing, and both ends of the wheel axle extend to an outside of the housing and are provided with a hub.

[0007]Further, a printed circuit board (PCB) bracket is arranged inside the housing, and the PCB bracket is U-shaped; a PCB is arranged on a top of the PCB bracket, a switch key is arranged on a top of the PCB, and a conductive pin with one end extending to the PCB bracket is arranged at a bottom of the PCB.

[0008]Further, a hollow shield is arranged on one side of the hub for protecting the rotor assembly, a ring of wheel skin slot is arranged outside the hub and a wheel skin is sleeved inside the wheel skin slot.

[0009]Further, a battery pack is movably arranged inside a bottom of the PCB bracket, an elastic buckle that is movably clamped with an inside of the housing is arranged on the battery pack, a conductive socket that is movably plugged into the conductive pin is arranged at a bottom of one end of the battery pack, and a cambered surface is arranged at one end of the battery pack away from the PCB bracket.

[0010]Further, a camera control panel located above the PCB is further arranged inside the housing, a camera is installed at a bottom of the camera control panel through a camera holder, and a camera shield is arranged on a top of one side of the housing to be sleeved with an outside of the camera.

[0011]Further, both ends of the housing are provided with a group of supporting arms, the number of each group of supporting arms is two, one end of the two supporting arms away from the housing is respectively provided with mounting bases with opposite opening directions, and the mounting base is configured to mount the motor.

[0012]Further, the two mounting bases on each group of supporting arms are fixed together through a connecting cylinder, the top and bottom of the supporting arm are inclined planes, and the top and bottom of the supporting arm are provided with at least one reinforcing rib.

[0013]Further, at least two lamp holders are symmetrically arranged on the top of the PCB bracket, indicator lights are movably clamped inside the lamp holders, and two lamp casings respectively corresponding to the two indicator lights are symmetrically arranged on one side of the housing.

[0014]Further, one side of the housing is provided with a switch button corresponding to a switch key, both ends of the wheel axle pass through two connecting cylinders, bearings are sleeved at positions where both ends of the wheel axle are located inside the two connecting cylinders, and a height of the hub is higher than that of the housing.

[0015]Further, a plurality of heat dissipation holes I located at one side of the PCB are arranged inside the PCB bracket, a plurality of heat dissipation holes Il are arranged on both one end and a surface of the mounting base, a plurality of heat dissipation holes III are arranged at a bottom of the housing, and a plurality of heat dissipation holes IV are arranged at a bottom of the battery pack.

[0016]Compared with the prior art, the present disclosure provides a bouncing flyer, which has the following beneficial effects:

[0017]Compared with traditional remote control cars, the bouncing flyer has higher playability and more playable field conditions. The performance of the flyer body is superior, which effectively improves the playing pleasure of the flyer body toys and solves the problem of limited play space of flying toys. It can be widely used in ground remote control, wall remote control, aerial flight and other application scenarios. Its structural design is simplified and ingenious, conforming to economic benefits and meeting user needs.

BRIEF DESCRIPTION OF THE DRAWINGS

[0018]FIG. 1 is a schematic diagram of the structure of a bouncing flyer according to the present disclosure;

[0019]FIG. 2 is a side view of the structure of a bouncing flyer according to the present disclosure;

[0020]FIG. 3 is an exploded view of the structure of a bouncing flyer according to the present disclosure;

[0021]FIG. 4 is an exploded view of the structure of a bouncing flyer according to the present disclosure;

[0022]FIG. 5 is an exploded view of the structure of a bouncing flyer according to the present disclosure;

[0023]FIG. 6 is a schematic diagram of the PCB bracket structure of the bouncing flyer according to the present disclosure;

[0024]FIG. 7 is a schematic diagram of the flyer body of the bouncing flyer according to the present disclosure sliding forward and backward on the ground;

[0025]FIG. 8 is a schematic diagram of the flying state when the flyer body of the bouncing flyer according to the present disclosure climbs walls.

[0026]In the figures: 1. flyer body; 11. housing; 111. supporting arm; 1111. reinforcing rib; 112. PCB bracket; 1121. lamp holder; 1122. heat dissipation hole I; 113. mounting base; 1131. heat dissipation hole II; 114. lamp casing; 115. switch button; 116. camera shield; 117. connecting cylinder; 118. heat dissipation hole III; 12. rotor assembly; 121. motor; 122. blade; 13. wheel axle; 131. bearing; 14. hub; 141. hollow shield; 142. wheel skin slot; 15. wheel skin; 16. PCB; 161. switch key; 162. conductive pin; 17. battery pack; 171. elastic buckle; 172. conductive socket; 173. heat dissipation hole IV; 174. cambered surface; 18. camera control panel; 181. camera; 182. camera holder; 19. Indicator light.

DETAILED DESCRIPTION OF EMBODIMENTS

[0027]In order to understand the features and technical contents of the embodiments of the present disclosure in more detail, implementations of the embodiments of the present disclosure will be described in detail below with reference to the drawings. The attached drawings are for reference only and not used to limit the embodiments of the present disclosure. In the following technical description, for convenience of explanation, several details are taken to provide a sufficient understanding of the disclosed embodiments. However, one or more embodiments may still be implemented without these details. In other cases, to simplify the drawings, well-known structures and devices may be simplified for illustration.

[0028]The terms “first”, “second” and the like in the specification and claims of the embodiments of the present disclosure and the above-mentioned drawings are used to distinguish similar objects, but need not be used to describe a specific order or precedence. It should be understood that the data so used may be interchanged, as appropriate, in order to facilitate embodiments of the disclosed embodiment described herein. In addition, the terms “comprise” and “have”, as well as any variations thereof, are intended to cover a non-exclusive inclusion.

[0029]In the embodiments of the present disclosure, orientation or position relationships indicated by terms such as “up”, “down”, “inside”, “middle”, “outside”, “front” and “back” are based on those shown in the drawings. These terms are primarily for the purpose of better describing embodiments of the disclosure and its embodiments, and do not limit the indicated devices, elements or components to having a particular orientation, or being constructed and operated in a particular orientation. In addition, some of the above terms may be used to express other meanings in addition to orientation or position relationship. For example, the term “upper” may also be used to express certain attachment relationship or connection relationship under certain circumstances. Those of ordinary skill in the art can understand the specific meanings of these terms in the embodiments of the present disclosure according to specific circumstances.

[0030]In addition, the terms “provided”, “connected” and “fixed” shall be understood in a broad sense. For example, a “connection” may be fixed, removable, or of integral construction; mechanically or electrically connected; directly or indirectly through an intervening medium; or internal communication between two devices, elements, or components. Those of ordinary skill in the art can understand the specific meanings of the above-mentioned terms in the embodiments of the present disclosure according to specific circumstances.

[0031]It should be noted that the embodiments and features in the embodiments of the present disclosure may be combined with each other without conflict.

[0032]Referring to FIGS. 1-8, the present disclosure discloses a bouncing flyer, comprising a flyer body 1, wherein the flyer body 1 comprises a housing 11, and both ends of the housing 11 are provided with rotor assemblies 12; the rotor assembly 12 comprises at least two motors 121, the output ends of the two motors 121 face the top and bottom of the housing 11, respectively, and the two motors 121 are staggered and located on both sides of one end of the housing 11, respectively; the output end of the motor 121 is provided with blades 122.

[0033]a wheel axle 13 is movably arranged inside the housing 11, and both ends of the wheel axle 13 extend to an outside of the housing 11 and are provided with a hub 14.

[0034]Referring to FIGS. 7 and 8, FIG. 7 is a schematic diagram of the flyer body sliding forward and backward on the ground, and FIG. 8 is a schematic diagram of the flying state when the flyer body climbs walls; the traveling speed and torque of the flyer body 1 are adjusted by directly driving blades 122 by the motor 121; there are four motors 121 in total for two rotor assemblies 12, and the output ends of the two motors 121 arranged diagonally are oppositely oriented; by adjusting the rotating speed of the diagonal motors 121 to fast or slow, the twisting force for turning left and right is applied to the flyer body 1, so that the flyer body 1 has a function of turning left and right; by adjusting the rotating speeds of the two motors 121 in front of and behind the housing 11 to fast or slow, the twisting force for forward or backward movement is applied to the flyer body 1, so that the flyer body 1 has a function of forward and backward movement; since the two motors 121 in the rotor assembly 12 face upward and downward respectively, the blades 122 can be driven by the motors 121 to generate power through “upward suction and downward blowing”; in order to better enable the flyer body 1 to travel on the ground, hubs 14 are added at both ends of the housing 11, and the height of the hubs 14 is higher than that of the housing 11, so as to avoid friction between the housing 11 and the ground and make steering more sensitive, the speed higher; because the hub 14 is designed to be higher than the housing 11, there will be a front and rear angle difference when the flyer body 1 is laid flat on the ground, and the center of gravity of the flyer body 1 can be forward or backward, depending on the structural layout inside the housing 11; by adjusting the rotating speed of the front and rear motors 121 to generate ascending and forward power, the flyer can bounce forward or backward; since the structure design that the motor 121 directly drives the blades 122 is adopted, like a traditional quadrotor drone, it further has the flight function; in addition, since the motor 121 is designed to be placed up and down on the left and right sides of the housing 11, and both ends of the housing 11 are respectively provided with a shield to protect the blades 122, in order to enable the two hubs 14 to rotate simultaneously, the two hubs 14 can be connected through a wheel axle 13, so that the two hubs 14 keep rotating at the same speed when driving on the ground, and the housing 11 of the flyer body 1 is more stable; when the flyer body 1 travels on the ground, after running to a corner of the wall, since the housing 11 is connected with the hub 14 by steel pipes, the flyer body 1 itself can rotate at an angle, which can generate an upward thrust of 30°-45°, so that the flyer body 1 can have a climbing function.

[0035]Specifically, a printed circuit board (PCB) bracket 112 is arranged inside the housing 11, and the PCB bracket 112 is U-shaped; a PCB 16 is arranged on a top of the PCB bracket 112, a switch key 161 is arranged on a top of the PCB 16, and a conductive pin 162 with one end extending to the PCB bracket 112 is arranged at a bottom of the PCB 16; the PCB 16 is electrically connected with the motor 121, and a wireless transceiver module is integrated on the PCB 16 to facilitate user control through a remote control handle or a mobile phone APP.

[0036]Specifically, a hollow shield 141 is arranged on one side of the hub 14 for protecting the rotor assembly 12, a ring of wheel skin slot 142 is arranged outside the hub 14, and a wheel skin 15 is sleeved inside the wheel skin slot 142; the arrangement of the wheel skin 15 enables the hub 14 to have better contact friction with the ground when rotating; the wheel skin 15 is made of rubber material, and with the design of the wheel skin slot 142, the fitting stability of the wheel skin 15 and the hub 14 is ensured; the wheel skin is not easy to fall off and it is more convenient to use it; the design of the hollow shield 141 can not only support the hub 14, but also the hollow shield 141 has an arch shape, which can protect the blades 122.

[0037]Specifically, a battery pack 17 is movably arranged inside a bottom of the PCB bracket 112, an elastic buckle 171 that is movably clamped with an inside of the housing 11 is arranged on the battery pack 17, a conductive socket 172 that is movably plugged into the conductive pin 162 is arranged at a bottom of one end of the battery pack 17, and a cambered surface 174 is arranged at one end of the battery pack 17 away from the PCB bracket 112; the battery pack 17 is disengaged from the housing 11 by pressing the elastic buckle 171, that is, the battery pack 17 can be pulled out and replaced; the design of the cambered surface 174 at one end of the battery pack 17 can better match the shape of the housing 11; through arc transition, the appearance is more beautiful; after the battery pack 17 is inserted into the PCB bracket 112, the conductive socket 172 is automatically connected with the conductive pin 162 to realize power supply from the battery pack 17 to the PCB 16, the motor 121 and the camera control panel 18.

[0038]Specifically, a camera control panel 18 located above the PCB 16 is further arranged inside the housing 11, a camera 181 is installed at a bottom of the camera control panel 18 through a camera holder 182, and a camera shield 116 is arranged on a top of one side of the housing 11 to be sleeved with an outside of the camera 181; the camera shield 116 can protect the camera 181, and the camera 181 is thereby prevented from being damaged by collision; the camera 181 is electrically connected with the camera control panel 18, and the camera control panel 18 is electrically connected with the PCB 16; images can be recorded through the camera 181, and image data can be sent to a user's mobile phone in a wireless transmission manner.

[0039]Specifically, both ends of the housing 11 are provided with a group of supporting arms 111, the number of each group of supporting arms 111 is two, one end of the two supporting arms 111 away from the housing 11 is respectively provided with mounting seats 113 with opposite opening directions, and the mounting base 113 is configured to mount the motor 121; the arrangement of the supporting arms 111 can effectively support the rotor assembly 12, the motor 121 is mounted inside the mounting base 113, and the stability of the motor 121 is ensured.

[0040]Specifically, the two mounting bases 113 on each group of supporting arms 111 are fixed together through a connecting cylinder 117, the top and bottom of the supporting arm 111 are inclined planes, and the top and bottom of the supporting arm 111 are provided with at least one reinforcing rib 1111; the two supporting arms 111 on each group are symmetrically arranged, and the top and bottom of the supporting arm 111 are inclined planes; this design mode allows lower wind resistance suffered by the supporting arm 111 and leads to a more stable flight; the arrangement of the reinforcing rib 1111 ensures the structural strength of the supporting arm 111.

[0041]Specifically, at least two lamp holders 1121 are symmetrically arranged on the top of the PCB bracket 112, indicator lights 19 are movably clamped inside the lamp holders 1121, and two lamp casings 114 respectively corresponding to the two indicator lights 19 are symmetrically arranged on one side of the housing 11; the lamp holders 1121 are configured to mount indicator lights 19, the indicator lights 19 can display a power-on state and a mode of the flyer body 1, and the two indicator lights 19 are arranged to be more eye-catching and convenient for users to observe.

[0042]Specifically, one side of the housing 11 is provided with a switch button 115 corresponding to a switch key 161, both ends of the wheel axle 13 pass through two connecting cylinders 117, bearings 131 are sleeved at positions where both ends of the wheel axle 13 are located inside the two connecting cylinders 117, and a height of the hub 14 is higher than that of the housing 11; the arrangement of the bearings 131 reduces the rotation friction force of the wheel axle 13, so that the wheel axle 13 rotates more flexibly; by pressing the switch key 161 through the switch button 115, the motors 121 in the two groups of rotor assemblies 12 are controlled to rotate and adjust speed by remote control, so as to achieve different flight attitudes.

[0043]Specifically, a plurality of heat dissipation holes I 1122 located at one side of the PCB 16 are arranged inside the PCB bracket 112, a plurality of heat dissipation holes II 1131 are arranged on both one end and a surface of the mounting base 113, a plurality of heat dissipation holes III 118 are arranged at a bottom of the housing 11, and a plurality of heat dissipation holes IV 173 are arranged at a bottom of the battery pack 17; the design of the heat dissipation hole I 1122 is as follows: it is conducive to heat dissipation of the battery pack 17, and the PCB only occupies half of the space of the PCB bracket 112 and does not block the heat dissipation holes I 1122; the arrangement of heat dissipation holes II 1131 ensure the heat dissipation effect of the motor 121; the heat dissipation holes III 118 are opposite to the heat dissipation holes IV 173, which facilitates heat dissipation of the battery pack 17 and makes the product run more stably.

[0044]To sum up, compared with traditional remote control cars, the bouncing flyer has higher playability and more playable field conditions. The performance of the flyer body 1 is superior, which effectively improves the playing pleasure of the flyer body 1 toys and solves the problem of limited play space of flying toys. It can be widely used in ground remote control, wall remote control, aerial flight and other application scenarios. Its structural design is simplified and ingenious, conforming to economic benefits and meeting user needs.

[0045]Although embodiments of the present disclosure have been shown and described, it will be understood by those of ordinary skill in the art that many changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present disclosure, and the scope of the present disclosure is defined by the appended claims and their equivalents.

Claims

1. A bouncing flyer comprising a flyer body (1), wherein the flyer body (1) comprises a housing (11), and both ends of the housing (11) are provided with rotor assemblies (12); the rotor assembly (12) comprises at least two motors (121), the output ends of the two motors (121) face the top and bottom of the housing (11), respectively, and the two motors (121) are staggered and located on both sides of one end of the housing (11), respectively; the output end of the motor (121) is provided with blades (122); and a wheel axle (13) is movably arranged inside the housing (11), and both ends of the wheel axle (13) extend to an outside of the housing (11) and are provided with a hub (14).

2. The bouncing flyer according to claim 1, wherein a printed circuit board (PCB) bracket (112) is arranged inside the housing (11), and the PCB bracket (112) is U-shaped; a PCB (16) is arranged on a top of the PCB bracket (112), a switch key (161) is arranged on a top of the PCB (16), and a conductive pin (162) with one end extending to the PCB bracket (112) is arranged at a bottom of the PCB (16).

3. The bouncing flyer according to claim 2, wherein a battery pack (17) is movably arranged inside a bottom of the PCB bracket (112), an elastic buckle (171) that is movably clamped with an inside of the housing (11) is arranged on the battery pack (17), a conductive socket (172) that is movably plugged into and connected to the conductive pin (162) is arranged at a bottom of one end of the battery pack (17), and a cambered surface (174) is arranged at one end of the battery pack (17) away from the PCB bracket (112).

4. The bouncing flyer according to claim 3, wherein both ends of the housing (11) are provided with a group of supporting arms (111), the number of each group of supporting arms (111) is two, one end of the two supporting arms (111) away from the housing (11) is respectively provided with mounting seats (113) with opposite opening directions, and the mounting base (113) is configured to mount the motor (121).

5. The bouncing flyer according to claim 4, wherein the two mounting bases (113) on each group of supporting arms (111) are fixed together through a connecting cylinder (117), the top and bottom of the supporting arm (111) are inclined planes, and the top and bottom of the supporting arm (111) are provided with at least one reinforcing rib (1111).

6. The bouncing flyer according to claim 4, wherein a plurality of heat dissipation holes I (1122) located at one side of the PCB (16) are arranged inside the PCB bracket (112), a plurality of heat dissipation holes II (1131) are arranged on both one end and a surface of the mounting base (113), a plurality of heat dissipation holes III (118) are arranged at a bottom of the housing (11), and a plurality of heat dissipation holes IV (173) are arranged at a bottom of the battery pack (17).

7. The bouncing flyer according to claim 2, wherein a camera control panel (18) located above the PCB (16) is further arranged inside the housing (11), a camera (181) is installed at a bottom of the camera control panel (18) through a camera holder (182), and a camera shield (116) is arranged on a top of one side of the housing (11) to be sleeved with an outside of the camera (181).

8. The bouncing flyer according to claim 2, wherein at least two lamp holders (1121) are symmetrically arranged on the top of the PCB (112), indicator lights (19) are movably clamped inside the lamp holders (1121), and two lamp casings (114) corresponding to the two indicator lights (19) are symmetrically arranged on one side of the housing (11).

9. The bouncing flyer according to claim 2, wherein one side of the housing (11) is provided with a switch button (115) corresponding to a switch key (161), both ends of the wheel axle (13) pass through two connecting cylinders (117), bearings (131) are sleeved at positions where both ends of the wheel axle (13) are located inside the two connecting cylinders (117), and a height of the hub (14) is higher than that of the housing (11).

10. The bouncing flyer according to claim 1, wherein a hollow shield (141) is arranged on one side of the hub (14) for protecting the rotor assembly (12), a ring of wheel skin slot (142) is arranged outside the hub (14) and a wheel skin (15) is sleeved inside the wheel skin slot (142).

11. A flyer toy, comprising a bouncing flyer, and the bouncing flyer comprises:

a flyer body (1), wherein the flyer body (1) comprises a housing (11), and both ends of the housing (11) are provided with rotor assemblies (12); the rotor assembly (12) comprises at least two motors (121), the output ends of the two motors (121) face the top and bottom of the housing (11), respectively, and the two motors (121) are staggered and located on both sides of one end of the housing (11), respectively;

the output end of the motor (121) is provided with blades (122); and a wheel axle (13) is movably arranged inside the housing (11), and both ends of the wheel axle (13) extend to an outside of the housing (11) and are provided with a hub (14).

12. The flyer toy according to claim 11, wherein a printed circuit board (PCB) bracket (112) is arranged inside the housing (11), and the PCB bracket (112) is U-shaped; a PCB (16) is arranged on a top of the PCB bracket (112), a switch key (161) is arranged on a top of the PCB (16), and a conductive pin (162) with one end extending to the PCB bracket (112) is arranged at a bottom of the PCB (16).

13. The flyer toy according to claim 12, wherein a battery pack (17) is movably arranged inside a bottom of the PCB bracket (112), an elastic buckle (171) that is movably clamped with an inside of the housing (11) is arranged on the battery pack (17), a conductive socket (172) that is movably plugged into and connected to the conductive pin (162) is arranged at a bottom of one end of the battery pack (17), and a cambered surface (174) is arranged at one end of the battery pack (17) away from the PCB bracket (112).

14. The flyer toy according to claim 13, wherein both ends of the housing (11) are provided with a group of supporting arms (111), the number of each group of supporting arms (111) is two, one end of the two supporting arms (111) away from the housing (11) is respectively provided with mounting seats (113) with opposite opening directions, and the mounting base (113) is configured to mount the motor (121).

15. The flyer toy according to claim 14, wherein the two mounting bases (113) on each group of supporting arms (111) are fixed together through a connecting cylinder (117), the top and bottom of the supporting arm (111) are inclined planes, and the top and bottom of the supporting arm (111) are provided with at least one reinforcing rib (1111).

16. The flyer toy according to claim 14, wherein a plurality of heat dissipation holes I (1122) located at one side of the PCB (16) are arranged inside the PCB bracket (112), a plurality of heat dissipation holes II (1131) are arranged on both one end and a surface of the mounting base (113), a plurality of heat dissipation holes III (118) are arranged at a bottom of the housing (11), and a plurality of heat dissipation holes IV (173) are arranged at a bottom of the battery pack (17).

17. The flyer toy according to claim 12, wherein a camera control panel (18) located above the PCB (16) is further arranged inside the housing (11), a camera (181) is installed at a bottom of the camera control panel (18) through a camera holder (182), and a camera shield (116) is arranged on a top of one side of the housing (11) to be sleeved with an outside of the camera (181).

18. The flyer toy according to claim 12, wherein at least two lamp holders (1121) are symmetrically arranged on the top of the PCB (112), indicator lights (19) are movably clamped inside the lamp holders (1121), and two lamp casings (114) corresponding to the two indicator lights (19) are symmetrically arranged on one side of the housing (11).

19. The flyer toy according to claim 12, wherein one side of the housing (11) is provided with a switch button (115) corresponding to a switch key (161), both ends of the wheel axle (13) pass through two connecting cylinders (117), bearings (131) are sleeved at positions where both ends of the wheel axle (13) are located inside the two connecting cylinders (117), and a height of the hub (14) is higher than that of the housing (11).

20. The flyer toy according to claim 11, wherein a hollow shield (141) is arranged on one side of the hub (14) for protecting the rotor assembly (12), a ring of wheel skin slot (142) is arranged outside the hub (14) and a wheel skin (15) is sleeved inside the wheel skin slot (142).