Interactive toy
11389742 ยท 2022-07-19
Assignee
Inventors
- Chao GAO (Shanghai, CN)
- Yi He (Shanghai, CN)
- Liang Li (Shanghai, CN)
- Zhenyu Wan (Shanghai, CN)
- Lei Li (Shanghai, CN)
Cpc classification
A63H33/042
HUMAN NECESSITIES
A63H33/086
HUMAN NECESSITIES
International classification
A63H30/00
HUMAN NECESSITIES
A63H33/04
HUMAN NECESSITIES
A63H33/08
HUMAN NECESSITIES
Abstract
An interactive toy includes a housing, a control module, a motor, a rotating shaft, and an external member. The rotating shaft is exposed outside the housing, and is connected to the external member. The control module is configured to control the motor to drive the rotating shaft to rotate. The toy further includes a measurement module and an analysis module. The measurement module is configured to measure an angle by which the rotating shaft rotates from an initial stationary state to the state in which its rotating speed reaches the maximum. The analysis module is configured to compare a preset reference angle with the angle by which the rotating shaft from the initial stationary state to the state in which the rotating speed of the rotating shaft reaches the maximum to determine whether the external member encounters an obstacle.
Claims
1. An interactive toy, comprising a housing, a control module, a motor, a rotating shaft, an external member, a measurement module and an analysis module; wherein the rotating shaft is exposed outside the housing, and the rotating shaft is connected to the external member; the control module is configured to control the motor to drive the rotating shaft to rotate; the measurement module is configured to measure an angle, wherein the rotating shaft rotates by the angle from an initial stationary state to a state when a rotating speed of the rotating shaft reaches a maximum; the analysis module is configured to compare a preset reference angle with the angle to determine whether the external member encounters an obstacle; an external sensing module, wherein the external sensing module sends an instruction to the control module after detecting the obstacle exists, and the control module starts the motor to drive the rotating shaft to rotate after a random time has elapsed according to the instruction; a stop module; wherein a position of the rotating shaft in the initial stationary state is set by driving the rotating shaft to rotate reversely through the control module to enable the external member to be stopped by the stop module; and wherein the stop module is arranged on the external member.
2. The interactive toy according to claim 1, wherein the analysis module compares the preset reference angle with the angle, wherein the rotating shaft rotates by the angle from the initial stationary state to the state when the rotating speed of the rotating shaft reaches the maximum; when the angle is less than the preset reference angle, the analysis module determines that the external member encounters the obstacle; and when the angle is greater than or equal to the preset reference angle, the analysis module determines that the external member does not encounter the obstacle.
3. The interactive toy according to claim 2, further comprising a sound module, wherein the sound module is configured to emit or change a sound when the control module starts the motor to drive the rotating shaft to rotate.
4. The interactive toy according to claim 2, further comprising a display device, wherein the display device is configured to display a number of times the external member encounters the obstacle and/or a number of times the external member does not encounter the obstacle.
5. The interactive toy according to claim 2, wherein the measurement module comprises a photoelectric encoder read head and an encoder grating disk; wherein the encoder grating disk is fixed on the rotating shaft and the encoder grating disk is configured to follow the rotating shaft to rotate.
6. The interactive toy according to claim 1, wherein the external sensing module comprises an ultrasonic sensor or a position sensor.
7. The interactive toy according to claim 6, further comprising a sound module, wherein the sound module is configured to emit or change a sound when the control module starts the motor to drive the rotating shaft to rotate.
8. The interactive toy according to claim 6, further comprising a display device, wherein the display device is configured to display a number of times the external member encounters the obstacle and/or a number of times the external member does not encounter the obstacle.
9. The interactive toy according to claim 1, further comprising a signal receiving module, wherein the control module starts the motor to drive the rotating shaft to rotate according to the instruction received by the signal receiving module.
10. The interactive toy according to claim 9, further comprising a sound module, wherein the sound module is configured to emit or change a sound when the control module starts the motor to drive the rotating shaft to rotate.
11. The interactive toy according to claim 9, further comprising a display device, wherein the display device is configured to display a number of times the external member encounters the obstacle and/or a number of times the external member does not encounter the obstacle.
12. The interactive toy according to claim 1, further comprising a sound module, wherein the sound module is configured to emit or change a sound when the control module starts the motor to drive the rotating shaft to rotate.
13. The interactive toy according to claim 1, further comprising a display device, wherein the display device is configured to display a number of times the external member encounters the obstacle and/or a number of times the external member does not encounter the obstacle.
14. The interactive toy according to claim 1, wherein the measurement module comprises a photoelectric encoder read head and an encoder grating disk; wherein the encoder grating disk is fixed on the rotating shaft and the encoder grating disk is configured to follow the rotating shaft to rotate.
15. The interactive toy according to claim 1, wherein when the interactive toy is started, the control module controls the motor to drive the rotating shaft to reversely rotate a preset angle.
16. The interactive toy according to claim 1, wherein a position setting of the initial stationary state can be adjusted by adjusting a position of the stop module.
17. The interactive toy according to claim 1, wherein the external member comprises an upper jaw and a lower jaw configured to open when the rotating shaft is reversely rotated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Hereinafter, the concept, specific structure and technical effects of the present invention will be further described with reference to the drawings to fully understand the objective, features and advantages of the present invention.
(2)
(3)
(4)
(5)
(6)
(7) In the figures: 1, housing; 10, circuit board; 11, control module; 12, analysis module; 13, signal receiving module; 2, external member; 20, upper jaw; 21, lower jaw; 22, stop module; 3, external sensing module; 4, display device; 5, rotating shaft; 6, measurement module; 61, photoelectric encoder read head; 62, encoder grating disk; 7, motor; and 8, sound module.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(8) The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those having ordinary skill in the art without creative efforts shall fall within the scope of protection of the present invention.
Embodiment 1
(9) As shown in
(10) Further, the analysis module 12 compares the preset reference angle with the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum. When the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum is less than the preset reference angle, the analysis module 12 determines that the external member 2 shaped as a crocodile encounters the obstacle. When the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum is greater than or equal to the preset reference angle, the analysis module 12 determines that the external member 2 does not encounter the obstacle.
(11) Further, the external sensing module 3 includes an ultrasonic sensor or a position sensor.
(12) Further, the toy further includes the sound module 8. The sound module 8 is arranged on the housing 1, and is electrically connected to the control module 11. The sound module 8 is configured to emit or change a sound when the control module 11 starts the motor 7 to drive the rotating shaft 5 to rotate.
(13) Further, the toy further includes the display device 4, and the display device 4 is connected to the analysis module 12. The display device 4 is configured to display the number of times the external member 2 encounters the obstacle and/or the number of times the external member 2 does not encounter the obstacle.
(14) Further, the display device 4 includes a displayer, a mobile phone or a tablet computer.
(15) Further, the measurement module 6 includes the photoelectric encoder read head 61 and the encoder grating disk 62. The encoder grating disk 62 is fixed on the rotating shaft 5, and is configured to follow the rotating shaft 5 to rotate, so as to obtain the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum.
(16) Further, when the toy is started, the control module 11 controls the motor 7 to drive the rotating shaft 5 to reversely rotate a preset angle.
(17) Further, the toy further includes the stop module 22, and the stop module 22 is arranged on the external member 2. A position of the rotating shaft 5 in the initial stationary state is set by driving the rotating shaft 5 to rotate reversely through the control module 11 to enable the external member 2 to be stopped by the stop module 22. In other words, the stop module 22 stops the reverse rotation of the upper jaw 20 when the upper jaw 20 and the lower jaw 21 of the external member 2 shaped as a crocodile are opened, so as to obtain the position of the rotating shaft 5 in the initial stationary state. In the present embodiment, the stop module 22 is a building block. Different structures or different building positions of the building block of the stop module 22 produce different position settings of the initial stationary state, that is, the position setting of the initial stationary state can be adjusted by adjusting the position of the stop module 22.
(18) Taking the interactive toy with the external member 2 shaped as a crocodile as an example, a single-player game is performed, including the following steps:
(19) S1: at the beginning of the game, the upper jaw 20 and the lower jaw 21 of the external member 2 shaped as a crocodile are automatically opened to the stop position of the stop module 22.
(20) S2: it is determined whether a foreign body is put between the upper jaw 20 and the lower jaw 21 by the ultrasonic sensor.
(21) S3: when the foreign body is detected in the mouth, the ultrasonic sensor transmits a signal to the control module 11, the control module 11 controls the motor 7 to drive the rotating shaft 5 to rotate, and the upper jaw 20 and the lower jaw 21 emit a sound of biting within a random time and are closed at the same time.
(22) S4: the code disk data of the photoelectric encoder are obtained, and the analysis module 12 determines whether the user is bitten. S4i: if the user does not touch the upper jaw 20 or the lower jaw 21 during the fall of the upper jaw 20, it is determined that the user successfully escaped, and the display device 4 displays the user scores one point. S4ii: if the user touches the upper jaw 20 or the lower jaw 21 during the fall of the upper jaw 20, it is determined that the user is bitten by the external member 2 shaped as a crocodile, and the display device 4 displays the toy scores one point.
(23) S5: the game is limited to 2 minutes, and the player with the highest score will win.
Embodiment 2
(24) As shown in
(25) Further, the analysis module 12 compares the preset reference angle with the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum. When the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum is less than the preset reference angle, the analysis module 12 determines that the external member 2 shaped as a crocodile encounters the obstacle. When the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum is greater than or equal to the preset reference angle, the analysis module 12 determines that the external member 2 does not encounter the obstacle.
(26) Further, the external sensing module 3 includes an ultrasonic sensor or a position sensor.
(27) Further, the toy further includes the signal receiving module 13. The signal receiving module 13 is arranged on the circuit board and is connected to the control module 11. The control module 11 starts the motor 7 to drive the rotating shaft 5 to rotate according to the instruction received by the signal receiving module 13.
(28) Further, the toy further includes the sound module 8. The sound module 8 is arranged on the housing 1, and is electrically connected to the control module 11. The sound module 8 is configured to emit or change a sound when the control module 11 starts the motor 7 to drive the rotating shaft 5 to rotate.
(29) Further, the toy further includes the display device 4, and the display device 4 is connected to the analysis module 12. The display device 4 is configured to display the number of times the external member 2 encounters the obstacle and/or the number of times the external member 2 does not encounter the obstacle.
(30) Further, the display device 4 includes a displayer, a mobile phone or a tablet computer.
(31) Further, the measurement module 6 includes the photoelectric encoder read head 61 and the encoder grating disk 62. The encoder grating disk 62 is fixed on the rotating shaft 5, and is configured to follow the rotating shaft 5 to rotate, so as to obtain the angle by which the rotating shaft 5 rotates from the initial stationary state to the state in which its rotating speed reaches the maximum.
(32) Further, when the toy is started, the control module 11 controls the motor 7 to drive the rotating shaft 5 to reversely rotate a preset angle.
(33) Further, the toy further includes the stop module 22, and the stop module 22 is arranged on the external member 2. A position of the rotating shaft 5 in the initial stationary state is set by driving the rotating shaft 5 to rotate reversely through the control module 11 to enable the external member 2 to be stopped by the stop module 22. In other words, the stop module 22 stops the reverse rotation of the upper jaw 20 when the upper jaw 20 and the lower jaw 21 of the external member 2 shaped as a crocodile are opened, so as to obtain the position of the rotating shaft 5 in the initial stationary state. In the present embodiment, the stop module 22 is a building block. Different structures or different building positions of the building block of the stop module 22 produce different position settings of the initial stationary state, that is, the position setting of the initial stationary state can be adjusted by adjusting the position of the stop module 22.
(34) Taking the interactive toy with the external member 2 shaped as a crocodile as an example, a two-player game is performed. User A shakes the mobile phone to control the upper jaw 20 and the lower jaw 21 of the external member 2 shaped as a crocodile to be closed, while user B first puts his/her hand between the upper jaw 20 and the lower jaw 21 and then escapes when the upper jaw 20 is about to fall. The specific steps are as follows:
(35) S1: at the beginning of the game, the upper jaw 20 and the lower jaw 21 of the external member 2 shaped as a crocodile are automatically opened to the stop position of the stop module 22.
(36) S2: it is determined whether the user B puts his/her hand between the upper jaw 20 and the lower jaw 21 by the ultrasonic sensor.
(37) S3: the user A shakes the mobile phone to send an instruction, the signal receiving module 13 receives the instruction and then transmits the instruction to the control module 11, so that the control module 11 controls the motor 7 to drive the rotating shaft 5 to rotate, and the upper jaw 20 and the lower jaw 21 emit a sound of biting within a random time and are closed at the same time.
(38) S4: the code disk data of the photoelectric encoder are obtained, and the analysis module 12 determines whether the user is bitten. S4i: if the user B does not touch the upper jaw 20 or the lower jaw 21 during the fall of the upper jaw 20, it is determined that the user B successfully escaped, and the display device 4 displays the user B scores one point. S4ii: if the user B touches the upper jaw 20 or the lower jaw 21 during the fall of the upper jaw 20, it is determined that the user is bitten by the external member 2 shaped as a crocodile, and the display device 4 displays the user A scores one point.
(39) S5: the game is limited to 2 minutes, and the player with the highest score will win.
(40) The preferred embodiments of the present invention are described in detail above. It should be understood that those having ordinary skill in the art can make many modifications and changes according to the concept of the present invention without creative efforts. Therefore, all technical solutions that can be obtained by those skilled in the art through logical analysis, reasoning or limited experiments based on the concept of the present invention on the basis of the prior art shall fall within the scope of protection defined by the claims.