Movement of slanting-head killing electric toy and slanting-head killing electric plush toy
By connecting the conductive spring and the electrode plate, combined with the control circuit board and motor drive, the problem of electric toys being unable to automatically tilt left and right in a circular motion and shake head in the forward and reverse directions has been solved, thus realizing the automatic tilting left and right in a circular motion and shaking head in the forward and reverse directions of electric toys, and improving the fun of the toys.
Patent Information
- Application Number
- CN202520174765.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-26
AI Technical Summary
Electric toys on the market cannot automatically tilt left and right or shake head in both directions, resulting in poor fun.
By utilizing the contact between conductive springs and electrode plates, combined with a control circuit board and motor drive, the automatic left-right cyclic tilting and forward-reverse swaying of the head-tilting electric toy mechanism is achieved.
It enables electric toys to automatically tilt left and right in a cyclical manner and shake their heads in both directions, increasing the toys' fun and the diversity of their movements.
Smart Images

Figure CN223831769U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy technology, and in particular to a head-tilting electric toy mechanism and a head-tilting electric plush toy. Background Technology
[0002] Toys are a popular form of entertainment enjoyed by both children and adults, bringing happiness and sparking imagination in children. The market offers a wide variety of toys, including puzzles, dolls, model cars, building blocks, board games, and card games. Electric toys are motorized toys powered by miniature electric motors. Most are battery-powered and also known as battery toys. Electric toys emerged with the invention of the electric motor. They require minimal effort to play and help develop children's fine motor skills, spatial awareness, and physical abilities. Some electric toys can also be used for educational purposes to help children develop a wider range of skills.
[0003] The "head tilt" pose, a way of being cute, is widely popular across various cultures. It's not only commonly used in photos but also frequently appears on social media and in everyday conversations. The head tilt is simple to learn and can quickly attract attention and gain favor.
[0004] However, electric toys on the market that can simultaneously perform head-shaking and head-tilting actions can only achieve unidirectional head tilting and head shaking, and cannot achieve automatic left-right cyclic tilting and forward-reverse head shaking, resulting in poor fun. Utility Model Content
[0005] The purpose of this utility model is to provide a head-tilting electric toy mechanism and a head-tilting electric plush toy. Through the contact between the conductive spring and the electrode plate, the automatic left and right cyclic tilting of the head and forward and reverse head shaking are realized, which improves the fun of the electric toy and solves the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A head-tilting electric toy mechanism includes a body with a main drive component connected to it, the main drive component including a spindle; a rotating base connected to the top of the body, the spindle being driven and connected to the rotating base; the top end of the spindle extends to the outer side of the top of the body, and the top end of the spindle is driven and connected to a transverse transmission component, the head base being connected to the transverse transmission component; a retaining plate connected to the spindle, a conductive spring connected to the retaining plate; a control circuit board inside the body, the main drive component being electrically connected to the control circuit board; the control circuit board has a complete electrode plate A and several disconnected electrode plates B; the conductive spring has two contacts, the two contacts contacting electrode plate A and electrode plate B respectively.
[0008] A further embodiment of this utility model is that the main power assembly includes a battery box, a power switch, a motor, and a gearbox; the battery box and the power switch are connected to the bottom of the body, the gearbox is connected inside the body, the motor is connected to the outer wall of the gearbox, and the motor and the battery box are electrically connected to the power switch.
[0009] A further embodiment of this utility model is that the gearbox includes a housing, a first gear is rotatably connected inside the housing, a driven pulley is connected to the axle of the first gear, a driving pulley is connected to the power output end of the motor, and a belt drive is connected between the driving pulley and the driven pulley.
[0010] A further embodiment of this invention is that a second gear and a third gear are rotatably connected inside the gearbox and mesh in sequence, and a fourth gear meshing with the third gear is connected to the spindle; the rotating seat is rotatably connected to the top of the machine body, and the transverse transmission assembly includes a transverse shaft and a gear disk connected to the top of the spindle. The gear disk is located inside the support plate at the top of the rotating seat, the transverse shaft is rotatably connected to the support plate, and a fifth gear is connected to the transverse shaft. The fifth gear meshes with the gear disk, and the head seat is connected to the transverse shaft.
[0011] A further embodiment of this utility model is that a sixth gear is connected to the spindle, a support base is connected to the gearbox, a rotating seat is rotatably connected to the support base, and a base plate is connected to the support base. A seventh gear is connected to the base plate, the sixth gear meshes with the seventh gear, and an arc-shaped rack is engaged on the inner side of the rotating seat, with the seventh gear meshing with the rack.
[0012] A further embodiment of this utility model is that the top of the rotating seat is connected to an integrally formed spherical seat, the head seat is sleeved on the top of the spherical seat, and the bottom of the head seat is provided with an arc-shaped hole that matches the spherical seat.
[0013] A further embodiment of this utility model is that a support sleeve is snapped onto the outer wall of the spindle, a mounting base is connected to the support sleeve, electrode A is arc-shaped, and there are three electrode plates B arranged in an arc shape; the control circuit board is connected to the gearbox, and the control circuit board is electrically connected to the power switch.
[0014] A further aspect of this invention is that a microphone and a speaker are connected inside the body, and both the microphone and the speaker are electrically connected to the control circuit board.
[0015] A further embodiment of this invention is that a support rod is connected to the headstock.
[0016] A type of electric plush toy that tilts its head to look cute includes the aforementioned electric toy mechanism that tilts its head to look cute, and the electric toy mechanism that tilts its head to look cute is covered with a plush outer cover.
[0017] The beneficial effects of this utility model are:
[0018] The electric head-tilting toy mechanism and electric plush toy of this invention achieve automatic left-right cyclic tilting and forward-and-backward head shaking through the contact between conductive springs and electrode plates.
[0019] The present invention relates to a head-tilting electric toy mechanism and a head-tilting electric plush toy. The top of the rotating base is engaged with a spherical base, and the head base is fitted on top of the spherical base. The head base can rotate along the spherical base, ensuring that the head base is more stable and reliable.
[0020] The mechanism of the electric head-tilting toy and the electric head-tilting plush toy of this utility model are integrally formed with the rotating base and the spherical base, which reduces the number of parts, saves installation costs, and is also less prone to damage.
[0021] The mechanism and plush toy of this invention, which are designed to make the head-tilting electric toy, have a rotating base that is rotatably connected to both the main body and the support base, ensuring a more stable and reliable rotating base structure.
[0022] The present invention relates to a head-tilting electric toy mechanism and a head-tilting electric plush toy. The control circuit board is connected to three limit switches, and the protrusion can contact the three limit switches. Through the limit switches, the head can be tilted left and right and shaken in both directions.
[0023] The present invention relates to a head-tilting electric toy mechanism and a head-tilting electric plush toy. The mechanism is equipped with a microphone inside the body, which can control the action through voice, further enhancing the fun.
[0024] The present invention relates to a head-tilting electric toy mechanism and a head-tilting electric plush toy. The mechanism is equipped with a speaker inside the body, which can emit different sounds depending on the type of plush outer cover, thereby further enhancing the fun.
[0025] The present invention relates to a head-tilting electric toy mechanism and a head-tilting electric plush toy, wherein a support rod is connected to the head base to facilitate support of the head decorations. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the external structure of this utility model.
[0027] Figure 2 This is a schematic diagram of the internal structure of this utility model.
[0028] Figure 3 This is a schematic diagram of the internal structure of this utility model.
[0029] Figure 4 This is a schematic diagram of the internal structure of the gearbox of this utility model.
[0030] Figure 5 This is a schematic diagram of the connection between the conductive spring and the electrode plate of this utility model.
[0031] Figure 6 This is a schematic diagram of the connection between the conductive spring and the electrode plate of this utility model.
[0032] In the diagram: 1-body, 2-spindle, 3-rotating seat, 4-card slot, 5-conductive spring, 6-control circuit board, 7-electrode A, 8-electrode B, 9-battery box, 10-power switch, 11-motor, 12-gearbox, 13-first gear, 14-driven pulley, 15-driving pulley, 16-second gear, 17-third gear, 18-fourth gear, 19-gear disc, 20-horizontal shaft, 21-fifth gear, 22-sixth gear, 23-base plate, 24-seventh gear, 26-rack, 27-spherical seat, 28-support sleeve, 29-microphone, 30-speaker, 31-support rod, 32-head mount, 33-support base. Detailed Implementation
[0033] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.
[0034] Example 1: As Figures 1-6 As shown, a head-tilting electric toy mechanism includes a body 1, a main power component connected to the body 1, and a spindle 2. A rotating seat 3 is connected to the top of the body 1, and the spindle 2 is driven to the rotating seat 3. The top end of the spindle 2 extends to the outer side of the top of the body 1, and the top end of the spindle 2 is driven to the transverse transmission component. The head seat 32 is connected to the transverse transmission component. A card holder 4 is connected to the spindle 2, and a conductive spring 5 is connected to the card holder 4. A control circuit board 6 is provided inside the body 1, and the main power component is electrically connected to the control circuit board 6. The control circuit board 6 has a complete metal electrode A7 and several disconnected metal electrode B8, where electrode A7 is the positive electrode and electrode B8 is the negative electrode. The conductive spring 5 has two contacts, which are in contact with the positive and negative electrodes respectively.
[0035] The main power assembly includes a battery box 9, a power switch 10, a motor 11, and a gearbox 12. The battery box 9 and the power switch 10 are connected to the bottom of the body 1, the gearbox 12 is connected inside the body 1, the motor 11 is connected to the outer wall of the gearbox 12, and the motor 11 and the battery box 9 are electrically connected to the power switch 10.
[0036] The gearbox 12 includes a housing, a first gear 13 is rotatably connected inside the housing, a driven pulley 14 is connected to the axle of the first gear 13, a driving pulley 15 is connected to the power output end of the motor 11, and a belt drive is connected between the driving pulley 15 and the driven pulley 14.
[0037] The gearbox 12 is rotatably connected to a second gear 16 and a third gear 17 that mesh in sequence. The spindle 2 is connected to a fourth gear 18 that meshes with the third gear 17. The rotating seat 3 is rotatably connected to the top of the body 1. The transverse transmission assembly includes a transverse shaft 20 and a gear disk 19 connected to the top of the spindle 2. The gear disk 19 is located in the support plate at the top of the rotating seat 3. The transverse shaft 20 is rotatably connected to the support plate. A fifth gear 21 is connected to the transverse shaft 20 and meshes with the gear disk 19. The head seat 32 is connected to the transverse shaft 20.
[0038] A sixth gear 22 is connected to the spindle 2, a support base 33 is connected to the gearbox 12, a rotating seat 3 is rotatably connected to the support base 33, a base plate 23 is connected to the support base 33, a seventh gear 24 is connected to the base plate 23, the sixth gear 22 meshes with the seventh gear 24, an arc-shaped rack 26 is engaged on the inner side of the rotating seat 3, and the seventh gear 24 meshes with the rack 26.
[0039] The top of the rotating seat 3 is connected to an integrally formed spherical seat 27, the head seat 32 is fitted on the spherical seat 27, and the bottom of the head seat 32 is provided with an arc-shaped hole that fits the spherical seat 27.
[0040] The outer wall of the spindle 2 is fitted with a support sleeve 28, the bracket 4 is connected to the support sleeve 28, the electrode plate A7 is arc-shaped, and there are three electrode plates B8 arranged in an arc shape; the control circuit board 6 is connected to the gearbox, and the control circuit board 6 is electrically connected to the power switch 10.
[0041] The working principle of this utility model is as follows:
[0042] When the power switch 10 is turned on, the motor 11 drives the drive pulley 15 to rotate. Under the drive of the belt, the first gear 13 rotates. The first gear 13 then drives the second gear 16, the third gear 17, and the fourth gear 18 to rotate, thus rotating the spindle 2. The spindle 2 drives the seventh gear 24 to rotate, which in turn drives the rack 26 connected to the rotating seat 3, thus rotating the rotating seat 3 and achieving the head-shaking action. At the same time, the spindle 2 drives the gear disc 19 to rotate, which in turn drives the fifth gear 21 to rotate. The fifth gear 21 drives the horizontal shaft 20 to rotate, which in turn rotates the head seat 32, thus achieving the head-tilting action.
[0043] The control circuit board 6 has a complete metal electrode plate A7 and several disconnected metal electrode plates B8. Electrode plate A7 is the positive electrode, and electrode plate B8 is the negative electrode. The metal conductive spring plate 5 has two contacts, which are in contact with the positive and negative electrodes respectively. When the power switch 10 on the power supply box is turned on, the motor 11 is powered on and works according to the program set by the control circuit board 6. Since the negative electrode plate B has an intermittent structure, the positive electrode plate A and the negative electrode plate B will be connected or disconnected. The control circuit board 6 will determine the position status of the head seat 32 and the rotating seat 3 according to the connection or disconnection of the positive and negative electrodes and send corresponding working commands to the motor 11.
[0044] In this embodiment, when the spindle 2 rotates forward, the headstock 32 tilts to the left and the rotating seat 3 rocks to the left. One contact of the conductive spring 5 is always in contact with the electrode plate A7. When the other contact of the conductive spring 5 contacts the electrode plate B8 on the left, the spindle 2 stops briefly and rotates in the opposite direction. At this time, the headstock 32 and the rotating seat 3 return to center. When the other contact of the conductive spring 5 contacts the middle electrode plate B8, the headstock 32 and the rotating seat 3 are in the center position and stop briefly. Then, the headstock 32 tilts to the right and the rotating seat 3 rocks to the right. When the other contact of the conductive spring 5 contacts the right electrode plate B8, the spindle 2 stops briefly and rotates in the opposite direction. At this time, the headstock 32 and the rotating seat 3 return to center. Thus, a cyclical action of left head shaking, left head tilting - return to center - right head shaking, right head tilting - return to center can be realized.
[0045] Apart from the above, this embodiment is exactly the same as Embodiment 1, and will not be described again here.
[0046] Example 2: This example is a further improvement on Example 1. The main improvement is that, in Example 1, the movement of the mechanism can only be controlled by opening and closing the power switch 10; while in this example, the above-mentioned defects can be avoided. Specifically:
[0047] The main body 1 is connected to a microphone 29, which is a sound-to-electric conversion device. The pins of the microphone 29 are connected to the control circuit board 6 through wires. In this embodiment, the microphone 29 can receive commands such as "hello" and "stop" from children, thereby converting the signals and transmitting them to the control circuit board 6. The controller on the control circuit board 6 sends corresponding action commands to the motor 117 to realize the function of voice control and further enhance the fun.
[0048] Apart from the above, this embodiment is exactly the same as Embodiment 1, and will not be described again here.
[0049] Example 3: This example is a further improvement on Example 2. The main improvement is that in Example 2, the movement could not produce sound during use; while in this example, the above-mentioned defect can be avoided. Specifically:
[0050] A speaker 30 is connected inside the main body 1, and the speaker 30 is connected to the control circuit board 6 via wires. In this embodiment, the speaker 30 can play pre-recorded songs or simulate human or animal sounds to further enhance the entertainment value.
[0051] Apart from the above, this embodiment is exactly the same as embodiment 2, and will not be described again here.
[0052] Example 4: This example is a further improvement on Example 3. The main improvement is that, in Example 3, large and complex ornaments could not be installed on the head during use; while in this example, the above-mentioned defects can be avoided. Specifically:
[0053] A support rod 31 is connected to the head base 32. In this embodiment, the support rod 31 is connected to the head base 32 to facilitate the support of the head ornaments, further enhancing the fun.
[0054] Apart from the above, this embodiment is exactly the same as embodiment 3, and will not be described again here.
[0055] This embodiment also provides a head-tilting electric plush toy, including the aforementioned head-tilting electric toy mechanism, with a plush outer cover covering the head-tilting electric toy mechanism; the plush outer cover includes, but is not limited to, various figures and various animals.
[0056] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent transformations or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.
Claims
1. A mechanism for a head-tilting electric toy, characterized in that: The device includes a body (1), on which a main power assembly is connected, the main power assembly including a spindle (2); a rotating seat (3) is connected to the top of the body (1), and the spindle (2) is driven to the rotating seat (3); the top end of the spindle (2) extends to the outer side of the top of the body (1), and the top end of the spindle (2) is driven to the transverse transmission assembly, and the head seat (32) is connected to the transverse transmission assembly; a card holder (4) is connected to the spindle (2), and a conductive spring (5) is connected to the card holder (4); a control circuit board (6) is provided inside the body (1), and the main power assembly is electrically connected to the control circuit board (6); a complete electrode plate A (7) and several disconnected electrode plates B (8) are provided on the control circuit board (6); two contacts are provided on the conductive spring (5), and the two contacts are in contact with the electrode plate A (7) and the electrode plate B (8) respectively.
2. The head-tilting electric toy mechanism as described in claim 1, characterized in that: The main power assembly includes a battery box (9), a power switch (10), a motor (11), and a gearbox (12); the battery box (9) and the power switch (10) are connected to the bottom of the body (1), the gearbox (12) is connected inside the body (1), the motor (11) is connected to the outer wall of the gearbox (12), and the motor (11) and the battery box (9) are electrically connected to the power switch (10).
3. The head-tilting electric toy mechanism as described in claim 2, characterized in that: The gearbox (12) includes a housing, in which a first gear (13) is rotatably connected. A driven pulley (14) is connected to the axle of the first gear (13). The power output end of the motor (11) is connected to a driving pulley (15). A belt drive is connected between the driving pulley (15) and the driven pulley (14).
4. The head-tilting electric toy mechanism as described in claim 2 or 3, characterized in that: The gearbox (12) is rotatably connected to a second gear (16) and a third gear (17) that mesh in sequence. The spindle (2) is connected to a fourth gear (18) that meshes with the third gear (17). The rotating seat (3) is rotatably connected to the top of the body (1). The transverse transmission assembly includes a transverse shaft (20) and a gear disk (19) connected to the top of the spindle (2). The gear disk (19) is located in the support plate at the top of the rotating seat (3). The transverse shaft (20) is rotatably connected to the support plate. A fifth gear (21) is connected to the transverse shaft (20). The fifth gear (21) meshes with the gear disk (19). The head seat (32) is connected to the transverse shaft (20).
5. The head-tilting electric toy mechanism as described in claim 2, characterized in that: The spindle (2) is connected to a sixth gear (22), the gearbox (12) is connected to a support seat (33), the rotating seat (3) is rotatably connected to the support seat (33), and the support seat (33) is connected to a base plate (23). The base plate (23) is connected to a seventh gear (24), the sixth gear (22) meshes with the seventh gear (24), and the inner side of the rotating seat (3) is engaged with an arc-shaped rack (26), and the seventh gear (24) meshes with the rack (26).
6. The head-tilting electric toy mechanism as described in claim 1, characterized in that: The top of the rotating seat (3) is connected to an integrally formed spherical seat (27), the head seat (32) is fitted on the spherical seat (27), and the bottom of the head seat (32) is provided with an arc-shaped hole that matches the spherical seat (27).
7. The head-tilting electric toy mechanism as described in claim 2, characterized in that: The outer wall of the spindle (2) is fitted with a support sleeve (28), the card seat (4) is connected to the support sleeve (28), the electrode plate A (7) is arc-shaped, and the electrode plate B (8) consists of three arc-shaped plates; the control circuit board (6) is connected to the gearbox, and the control circuit board (6) is electrically connected to the power switch (10).
8. The head-tilting electric toy mechanism as described in claim 7, characterized in that: The body (1) is connected to a microphone (29) and a speaker (30), both of which are electrically connected to the control circuit board (6).
9. The head-tilting electric toy mechanism and the head-tilting electric plush toy as described in claim 1, characterized in that: A support rod (31) is connected to the headstock (32).
10. A cute, tilted-head electric plush toy, characterized in that: Includes the head-tilting electric toy mechanism as described in any one of claims 5-9, wherein the head-tilting electric toy mechanism is covered with a plush outer cover.