Camera toy
By designing the structure and electronic components of the camera toy, the photo taking and photo output effects of a Polaroid camera are simulated, which solves the problem of the single function of existing toys, provides fun and interactivity, and is suitable for children.
Patent Information
- Application Number
- CN202423186464.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing camera toys have single functions, lack of fun and interactivity, and are not suitable for children and teenagers, and cannot satisfy their interest in photography and the cultivation of creativity.
A camera toy was designed, which includes a photo plate that can move back and forth, a return spring, a hook, a locking plate and a driving part. It simulates the photo taking and output effects of a Polaroid camera. It is combined with a circuit board, a battery, a flash and a sound device to increase the fun and interactivity.
The toy has the functions of taking and outputting photos similar to those of a Polaroid camera, is easy to operate, enhances the entertainment and practicality of the toy, stimulates children's creativity and aesthetic ability, and is easy to carry.
Smart Images

Figure CN223381096U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toys, in particular to a camera toy. Background Art
[0002] In today's society, the rapid development of technology has brought numerous conveniences and joys to people's lives. Cameras, as a tool for capturing life's moments, play a vital role in various fields. However, for children and teenagers, professional cameras can be too complex and expensive, making them unsuitable. At the same time, with people's growing demand for entertainment and creativity, toys that are fun and interactive are becoming increasingly popular.
[0003] 1. Limitations of existing cameras:
[0004] Professional cameras are usually large and heavy, making them difficult to carry around and complex for children to operate. For example, SLR cameras require adjusting various parameters such as aperture, shutter speed, and sensitivity, which can be a significant challenge for children without a photography background.
[0005] While some digital cameras are powerful, they are expensive and easily damaged. Furthermore, they often require connection to a computer or other device to view and print photos, which makes them difficult to use.
[0006] (2) Demand in the toy market:
[0007] Children and teenagers need toys that are not just for entertainment; they also want to learn and explore new knowledge and skills through toys. A small toy similar to a Polaroid camera can satisfy their curiosity about photography while also cultivating their creativity and aesthetic ability.
[0008] Polaroid cameras are popular for their ability to instantly print photos. However, they are relatively expensive, and the photo paper is also quite expensive. An affordable, easy-to-use toy camera could allow more people to experience the joy of instant photo printing.
[0009] (3) Deficiencies of existing technologies:
[0010] At present, although there are some camera toys on the market, most of them have the following problems:
[0011] The function is simple, and it simply has the appearance of a camera. The design is not novel, interesting and interactive.
[0012] In summary, designing and manufacturing a small toy similar to a Polaroid camera can not only satisfy the interest and needs of children and teenagers in photography, but also bring new vitality and innovation to the toy market. Summary of the Invention
[0013] In view of the problems pointed out in the background technology, the present invention proposes a camera toy to solve the above technical problems.
[0014] The technical solution of the present utility model is achieved as follows:
[0015] A camera toy, comprising a shell,
[0016] A photo plate that can move forward and backward is provided in the housing, a slot is provided on the front side of the housing for the photo plate to extend out, and a first return spring that applies a forward elastic force to the photo plate is provided in the housing;
[0017] The photo plate is provided with a barb;
[0018] A locking plate is slidably connected to the housing. When the photo plate moves backward, the barb can push the locking plate to slide and gradually move away from the barb. A second return spring is provided in the housing to prevent the locking plate from moving away from the barb. When the barb moves backward and passes over the locking plate, the locking plate is reset under the elastic force of the second return spring and moves to the front side of the barb, so that the photo plate cannot move forward.
[0019] A driving part for driving the locking plate to move toward the side where the second return spring is located is slidably connected in the shell, and one end of the driving part extends to the outside of the shell.
[0020] The utility model is further configured such that the rear end of the photo plate is provided with an anti-slip portion which can prevent the photo plate from slipping out of the slot, the barb is arranged on the left side of the anti-slip portion; and the first return spring is arranged on the rear side of the anti-slip portion.
[0021] The utility model is further configured as follows: the locking plate is arranged on the rear side of the photo plate body, the locking plate can slide left and right, and the second return spring is located on the left side of the locking plate; the locking plate is provided with a hollow groove for the barb and the anti-slip portion to pass through, and when the barb moves backward, the rear side surface of the barb abuts against the left side wall of the hollow groove to push the locking plate to move to the left.
[0022] The utility model is further configured such that the rear side surface of the barb is an inclined surface.
[0023] The utility model is further configured such that the driving part can slide up and down, the driving part is located on the right side of the locking plate, the driving part is slidably connected to the upper end of the locking plate, and when the driving part moves downward, it can push the locking plate to move to the left, and the driving part is provided with a pressing part extending upward and extending out of the shell; the second return spring is located between the hook and the driving part.
[0024] The utility model is further configured such that a connecting slot is provided on the driving portion, the locking plate is slidably connected in the connecting slot, and the contact surface between the locking plate and the connecting slot is an inclined surface with the left side higher and the right side lower.
[0025] The utility model is further configured as follows: a circuit board, a battery, a flash light, a speaker, and a switch are provided in the shell; the battery, the flash light, the speaker, and the switch are electrically connected to the circuit board respectively; a light outlet corresponding to the flash light is provided on the front side of the shell; the switch is arranged on the lower side of the driving part; the battery is used to power the flash light and the speaker; and the switch is used to control the on and off of the circuits of the flash light and the speaker.
[0026] The present invention is further configured such that a third return spring is provided between the switch and the driving portion.
[0027] The utility model is further configured such that a slide rail is provided in the shell body and is slidably connected to the left and right sides of the photo plate body.
[0028] The utility model is further configured such that a hanging ring is provided on the shell.
[0029] By adopting the above technical solution, the beneficial effects of the utility model are:
[0030] First, its structural design is ingenious. By incorporating a reciprocating photo plate, a first return spring, a barb, a locking plate, and a drive unit, the toy cleverly simulates the effect of a Polaroid camera producing a photo, adding to its playfulness and realism. Furthermore, the precise coordination of its components ensures the toy's stability and reliability.
[0031] Secondly, the operation is simple and convenient. Children only need to press the photo plate and the drive part to realize the function of taking and outputting photos. There is no need for complicated operation procedures, which is suitable for children to use.
[0032] Furthermore, personalized decoration: Cartoon theme stickers can be pasted on the photo board, allowing children to decorate according to their own preferences, stimulating their creativity and imagination.
[0033] In addition, the internal electronic components enrich the toy's functionality. The circuit board, battery, flash, sound device and switch make the toy not only provide lighting for taking photos, but also add a sound device to increase the fun, bringing a richer user experience for children.
[0034] Finally, the hanging loop on the housing makes it easy to carry, allowing children to enjoy taking photos anytime, anywhere. The sliding rails inside the housing ensure smooth movement of the photo board, extending the lifespan of the toy. Overall, this camera toy is highly entertaining and practical, making it ideal for children. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0036] Figure 1 It is a schematic diagram of the front structure of the utility model.
[0037] Figure 2 It is a schematic diagram of the rear structure of the utility model.
[0038] Figure 3 This is a schematic diagram of the structure of the pop-up photo plate of the utility model.
[0039] Figure 4 It is an exploded schematic diagram of the present utility model.
[0040] Figure 5 This is a structural diagram of the photo plate, locking plate, and driving part of the utility model.
[0041] Figure 6 This is an exploded schematic diagram of the photo plate, locking plate, and driving part of the utility model.
[0042] Figure 7 This is a cross-sectional view of the utility model Figure 1 .
[0043] Figure 8 This is a cross-sectional view of the utility model Figure 2 .
[0044] Figure 9 This is a structural diagram of the connection between the photo plate and the shell of the utility model.
[0045] Description of the numbers in the accompanying drawings: housing 1, photo plate 2, notch 3, first return spring 4, barb 5, locking plate 6, second return spring 7, driving part 8, anti-slip part 9, hollow groove 10, pressing part 11, connecting slide 12, circuit board 13, battery 14, flash 15, sounding device 16, switch 17, third return spring 18, slide rail 19, hanging ring 20. DETAILED DESCRIPTION
[0046] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0047] Reference as follows Figure 1-9 The utility model is described as follows:
[0048] Example: A camera toy includes a plastic housing 1, which serves as the main frame of the toy and provides space for mounting and protecting internal components. Multiple key components are located within the housing 1, which together function like a Polaroid camera.
[0049] A photo board 2 that can move back and forth is provided in the shell 1. The photo board 2 is a thin plate-like structure. This design not only ensures that it can move back and forth smoothly in the shell 1, but also makes the toy as a whole lighter, which is convenient for children to hold and operate. At the same time, the thin plate-like structure is also similar to the structure of photo paper.
[0050] The front side of the housing 1 is provided with a slot 3 for the photo board 2 to extend out. The photo board 2 fits in the slot 3, which means that the photo board 2 can accurately extend or retract from the slot 3 without any jamming or excessive gap.
[0051] A first return spring 4 is installed within the housing 1, applying a forward force to the photo panel 2. Under the action of the first return spring 4, the photo panel 2 moves forward and can be ejected out of the housing 1 through the ejection notch 3. This design simulates the effect of a Polaroid camera automatically ejecting a photo after taking it, adding to the toy's fun and realism. To retract the photo panel 2 back into the housing 1, the panel can be pressed, forcing it to overcome the force of the first return spring 4 and move backward.
[0052] The photo plate 2 is provided with a barb 5, which cooperates with the locking plate 6 to prevent the photo plate 2 from popping out after the photo plate 2 re-enters the housing 1. This design ensures that the photo plate 2 can remain stable when it does not need to be popped out, and will not accidentally pop out and affect the user experience of the toy.
[0053] A locking plate 6 is slidably connected to the housing 1. When the photo plate 2 moves backward, the barb 5 pushes the locking plate 6 to slide away from the barb 5. During this process, a second return spring 7 is installed within the housing 1 to prevent the locking plate 6 from moving away from the barb 5. The presence of the second return spring 7 ensures that the locking plate 6 always remains in position relative to the barb 5 in the absence of external force, ready to lock the photo plate 2 at any time.
[0054] A driving portion 8 is slidably connected in the housing 1 to drive the locking plate 6 to move toward the side where the second return spring 7 is located. One end of the driving portion 8 extends to the outside of the housing 1 .
[0055] Locking and unlocking process: When the barb 5 moves backward over the locking plate 6, the locking plate 6 is reset under the elastic force of the second return spring 7 and moves forward of the barb 5, preventing the photo plate 2 from moving forward. This locks the photo plate 2, ensuring it does not accidentally pop out when not needed. When taking a photo, the drive unit 8, which is slidably connected to the housing 1, comes into play. One end of the drive unit 8 extends outside the housing 1, making it easier for the user to operate. Pressing the drive unit 8 drives the locking plate 6 toward the side of the second return spring 7, moving the locking plate 6 away from the barb 5, releasing the restriction on the barb 5 and allowing the photo plate 2 to move forward. At this point, the photo plate 2 is ejected by the first return spring 4, achieving the effect of a Polaroid camera ejecting a photo.
[0056] The photo plate 2 can be affixed with cartoon-themed stickers. This design provides children with a personalized decorative space. They can choose different cartoon-themed stickers according to their preferences, making the camera toy more unique and attractive. Furthermore, the cartoon-themed stickers can increase the fun and entertainment value of the toy, stimulating children's creativity and imagination.
[0057] This camera toy achieves functionality similar to a Polaroid camera through its ingenious structural design. The plastic housing 1 ensures its portability and durability. The photo plate 2 and first return spring 4 work together to simulate the pop-up effect of a photo. The barb 5 and locking plate 6 ensure the stability of the photo plate 2. The driver 8 is convenient for user operation, and the cartoon-themed stickers add a personalized touch. This camera toy is not only entertaining but also fosters children's creativity and aesthetic appreciation, making it a highly valuable product.
[0058] The rear end of the photo plate 2 is provided with an anti-slip portion 9 that can prevent the photo plate 2 from escaping from the notch 3. This anti-slip portion 9 plays a crucial role in ensuring that the photo plate 2 always remains inside the shell 1 during the forward and backward movement and will not completely detach from the shell 1 due to unexpected circumstances, thereby ensuring the integrity and stability of the toy. The anti-slip portion 9 is specifically located at the rear end of the photo plate 2. It is tightly connected to the photo plate 2 to form a whole. Structurally, the anti-slip portion 9 is usually larger than the size of the notch 3. In this way, when the photo plate 2 moves forward to a certain extent, the anti-slip portion 9 will be blocked by the edge of the notch 3 and cannot continue to move forward, thereby achieving the function of preventing the photo plate 2 from escaping.
[0059] The barb 5 is positioned on the left side of the rear end of the anti-slip portion 9; this placement is a carefully considered decision. On the one hand, placing the barb 5 on the left side of the anti-slip portion 9 maximizes space and avoids interference with other components. On the other hand, from an operational perspective, this position also facilitates the engagement of the barb 5 with the locking plate 6. When the photo plate 2 moves rearward, the barb 5 accurately pushes the locking plate 6 to slide, achieving the locking and unlocking functions.
[0060] The first return spring 4 is arranged at the rear side of the anti-slip portion 9, with the rear end of the first return spring 4 abutting against the housing, and the front end of the first return spring 4 abutting against the anti-slip portion 9. This connection method allows the first return spring 4 to always function during the forward and backward movement of the photo plate 2.
[0061] When the photo panel 2 moves backward, the anti-slip portion 9 compresses the first return spring 4, causing it to store elastic potential energy. To retract the photo panel 2 into the housing 1, the panel 2 is pressed, causing the anti-slip portion 9 to overcome the elastic force of the first return spring 4 and move backward. Once the restraint on the photo panel 2 is released, the first return spring 4 releases its elastic potential energy, pushing the anti-slip portion 9 forward, causing the photo panel 2 to eject from the housing 1.
[0062] A locking plate 6 is located on the rear side of the photo panel 2 and can slide left and right. This position allows the locking plate 6 to cooperate with the barbs 5 on the photo panel 2 to lock and unlock the photo panel 2. When locked, the locking plate 6 prevents the photo panel 2 from moving forward and popping out, ensuring that the toy remains stable when not in use.
[0063] The second return spring 7 is located to the left of the locking plate 6. When the barb 5 pushes the locking plate 6 to the left, the second return spring 7 is compressed, storing elastic potential energy. Once the barb 5 passes over the locking plate 6, the second return spring 7 releases the elastic potential energy, pushing the locking plate 6 to the right, returning it to the front of the barb 5, thereby locking the photo plate 2.
[0064] The locking plate 6 is provided with a hollow groove 10 for the barb 5 and the anti-slip portion 9 to pass through. The design of this hollow groove 10 is very clever. It can allow the barb 5 and the anti-slip portion 9 to pass through the locking plate 6 smoothly during the movement of the photo plate 2 back and forth, and can also cooperate with the barb 5 to achieve the locking function when the photo plate 2 needs to be locked.
[0065] As the barb 5 moves backward, its rear side abuts the left sidewall of the hollow slot 10, pushing the locking plate 6 leftward. Because the rear side of the barb 5 is inclined, as the photo plate 2 moves backward, the rear side of the barb 5 gradually contacts the left sidewall of the hollow slot 10, generating a leftward force component that pushes the locking plate 6 to slide leftward. As the photo plate 2 continues to move backward, the left sidewall of the hollow slot 10 gradually moves away from the barb 5. When the barb 5 passes over the hollow slot 10, the locking plate 6, under the action of the second return spring 7, returns to the front of the barb 5, preventing the photo plate 2 from moving forward and popping out.
[0066] Only when the locking plate 6 is operated by the actuator 8 can it release the restraint on the barb 5 and the photo plate 2. One end of the actuator 8 extends outside the housing 1, making it easier for the user to operate. When the user wishes to take a photo, they press the actuator 8, which drives the locking plate 6 toward the location of the second return spring 7, moving it away from the barb 5 and releasing the restraint. At this point, the photo plate 2 is ejected by the first return spring 4, achieving the same effect as a Polaroid camera.
[0067] The presence of the driving unit 8 enables the user to conveniently control the camera toy's photographing function, increasing the toy's interest and interactivity. At the same time, it also ensures that the toy remains locked when photographing is not required, improving the toy's stability and safety.
[0068] The driving portion 8 is capable of sliding up and down and is located to the right of the locking plate 6. This positioning allows the driving portion 8 to accurately apply force to the locking plate 6 when needed. The driving portion 8 is slidably connected to the upper end of the locking plate 6. When the driving portion 8 moves downward, it can push the locking plate 6 to the left through this sliding connection.
[0069] The driver 8 is provided with a pressing portion 11 extending upward and out of the housing 1. This pressing portion 11 facilitates user operation. When the user wishes to take a photo, they simply press the pressing portion 11, causing the driver 8 to move downward, thereby pushing the locking plate 6 to the left, releasing the restraint on the barb 5 and the photo plate 2, allowing the photo plate 2 to be ejected under the action of the first return spring 4.
[0070] The second return spring 7 is located between the barb 5 and the driving portion 8, which is equivalent to the second return spring 7 applying force to the middle of the locking plate 6, so that the locking plate 6 is subjected to balanced force and moves more stably and smoothly.
[0071] The drive unit 8 is provided with a connecting slot 12, into which the locking plate 6 slides. This slot 12 provides a sliding track for the locking plate 6. The locking plate 6 can slide smoothly within the slot 12, achieving linkage with the drive unit 8. The design of the slot 12 ensures the stability and accuracy of the locking plate 6 during movement, preventing operational errors caused by shaking or deviation.
[0072] The contact surface between the locking plate 6 and the connecting slot 12 is a sloped surface with a higher left edge and a lower right edge. This sloped surface design has several important functions: It facilitates force transmission: When the driver 8 moves downward, due to the sloped surface, the force exerted by the driver 8 on the locking plate 6 is decomposed into a horizontal leftward component and a vertical downward component. The horizontal leftward component pushes the locking plate 6 leftward, thereby unlocking the lock. This sloped surface design makes force transmission more efficient and reduces energy loss. It also increases stability: The sloped surface design stabilizes the position of the locking plate 6 in the connecting slot 12. In the locked state, the sloped surface provides friction to prevent accidental movement of the locking plate 6. During unlocking, the sloped surface guides the locking plate 6 in the predetermined direction, preventing any jamming or deviation. It also improves the user's feel: The sloped surface design provides more tangible feedback when operating the driver 8. When pressing the pressing portion 11 of the driver 8, the user can feel the movement of the locking plate 6, thereby increasing the user's enjoyment and accuracy.
[0073] A circuit board 13, a battery 14, a flash 15, a sound-generating device 16, and a switch 17 are provided in the shell 1. The battery 14, the flash 15, the sound-generating device 16, and the switch 17 are electrically connected to the circuit board 13 respectively. A light outlet corresponding to the flash 15 is provided on the front side of the shell 1, and the switch 17 is arranged on the lower side of the driving part 8.
[0074] Circuit Board: Housing 1 houses a circuit board 13, which serves as the core for connecting and controlling the various electronic components. The circuit board integrates various circuits and electronic components, enabling coordinated control of the battery 14, flashlight 15, sound generator 16, and switch 17.
[0075] Batteries: Batteries 14 power the flashlight 15 and sound generator 16. They are typically rechargeable or disposable, ensuring the toy's extended use. The battery capacity and type affect the toy's endurance and performance.
[0076] Flash: Flash 15 provides flash lighting effects when taking photos. A light outlet corresponding to flash 15 is located on the front side of the housing 1, ensuring that the flash light accurately illuminates the subject. The intensity and color of the flash can be adjusted as needed to suit different shooting scenarios.
[0077] Sound-generating device: The sound-generating device 16 can produce sound effects when taking photos, adding to the fun and interactivity of the toy. For example, it can emit a "click" sound to simulate the sound of a camera shutter, or play music or other sound effects. The volume and timbre of the sound-generating device can also be adjusted to suit different usage environments.
[0078] Switch: Switch 17 is located on the underside of driver 8 and controls the circuitry of flashlight 15 and sound generator 16. When switch 17 is off, the circuitry of flashlight 15 and sound generator 16 is disconnected, rendering them inoperable. When switch 17 is on, battery 14 supplies power to these devices, enabling them to function normally.
[0079] Working Principle: When the user presses the pressing portion 11 of the driver 8, the driver 8 moves downward, pushing the locking plate 6 to the left, releasing the restraint on the photo plate 2. At this point, the photo plate 2 is ejected by the first return spring 4, simulating the effect of a Polaroid camera taking a photo. Simultaneously, the driver 8 presses the switch 17, turning it on. The battery 14 powers the flash 15 and sound generator 16, causing the flash 15 to emit a bright light and the sound generator 16 to produce a sound effect, further enhancing the realism and fun of the photo. Switch 17 is a touch switch; each press completes the circuit.
[0080] Synergy: These electronic components work together to realize the camera toy's multiple functions. Circuit board 13 serves as the control center, coordinating the operations of battery 14, flash 15, sound generator 16, and switch 17. Battery 14 provides power, flash 15 and sound generator 16 provide lighting and sound effects, respectively, and switch 17 controls the entire circuit. Through this synergy, the camera toy offers users a richer user experience.
[0081] A third return spring 18 is provided between the switch 17 and the driving unit 8 .
[0082] The specific functions of the third return spring:
[0083] Driver unit reset: When the user presses down on the driver unit 8 to complete the photo-taking operation, the third reset spring 18 resets the driver unit 8. This design ensures that the driver unit 8 automatically returns to its initial position after each operation, ready for the next photo-taking operation.
[0084] Continuous Operation: The presence of the third return spring 18 ensures the camera toy's operational consistency. After the user presses the actuator 8 to take a photo, there's no need for the third return spring 18 to automatically reset the actuator 8. This allows for smoother, more accurate photo-taking, and enhances the user experience.
[0085] Stability and reliability: The third return spring 18 provides a stable return force for the driver 8, ensuring that the driver 8 does not become stuck or unstable during the return process. This also increases the reliability of the camera toy and reduces the possibility of malfunctions caused by the driver 8 failing to return to its original position.
[0086] The housing 1 is provided with slide rails 19 that are slidably connected to the left and right sides of the photo board 2. Guiding function: The slide rails 19 ensure that the photo board 2 can slide smoothly along the predetermined trajectory during the forward and backward movement without deviation or jamming. This precise guidance makes the ejection and retraction of the photo board 2 smoother, improving the user experience of the toy. Supporting function: The slide rails 19 provide stable support for the photo board 2. Since the photo board 2 needs to move forward and backward frequently, the slide rails can withstand a certain amount of pressure and friction, ensuring that the photo board 2 will not be deformed or damaged during movement.
[0087] The housing 1 is provided with a hanging loop 20. This loop provides the camera toy with more ways to use and greater convenience. The hanging loop 20 allows the user to hang the camera toy on a keychain, backpack, or other item for easy portability. This allows the user to use the camera toy anytime, anywhere to take photos, increasing the toy's fun and practicality.
[0088] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A camera toy, comprising a housing (1), characterized in that: The housing (1) is provided with a photo plate (2) that can move forward and backward, the front side of the housing (1) is provided with a slot (3) for allowing the photo plate (2) to extend out, and the housing (1) is provided with a first return spring (4) that applies a forward elastic force to the photo plate (2); The photo plate (2) is provided with a barb (5); The housing (1) is slidably connected with a locking plate (6). When the photo plate (2) moves backward, the barb (5) can push the locking plate (6) to slide and gradually move away from the barb (5). A second return spring (7) is provided in the housing (1) to prevent the locking plate (6) from moving away from the barb (5). When the barb (5) moves backward and passes over the locking plate (6), the locking plate (6) is reset under the elastic force of the second return spring (7), and the locking plate (6) moves to the front side of the barb (5), so that the photo plate (2) cannot move forward. A driving portion (8) is slidably connected to the housing (1) to drive the locking plate (6) to move toward the side where the second return spring (7) is located, and one end of the driving portion (8) extends to the outside of the housing (1).
2. A camera toy according to claim 1, characterized in that: The rear end of the photo plate (2) is provided with an anti-slip portion (9) capable of preventing the photo plate (2) from slipping out of the slotted opening (3); the barb (5) is arranged on the left side of the anti-slip portion (9); and the first return spring (4) is arranged on the rear side of the anti-slip portion (9).
3. A camera toy according to claim 2, characterized in that: The locking plate (6) is arranged on the rear side of the photo plate body (2), and the locking plate (6) can slide left and right. The second return spring (7) is located on the left side of the locking plate (6); the locking plate (6) is provided with a hollow groove (10) for the barb (5) and the anti-slip portion (9) to pass through. When the barb (5) moves backward, the rear side surface of the barb (5) abuts against the left side wall of the hollow groove (10) to push the locking plate (6) to move left.
4. A camera toy according to claim 3, characterized in that: The rear side surface of the barb (5) is an inclined surface.
5. A camera toy according to claim 3, characterized in that: The driving portion (8) can slide up and down. The driving portion (8) is located on the right side of the locking plate (6). The driving portion (8) is slidably connected to the upper end of the locking plate (6). When the driving portion (8) moves downward, it can push the locking plate (6) to move leftward. The driving portion (8) is provided with a pressing portion (11) extending upward and extending out of the shell (1); the second return spring (7) is located between the hook (5) and the driving portion (8).
6. A camera toy according to claim 5, characterized in that: The driving portion (8) is provided with a connecting groove (12), and the locking plate (6) is slidably connected in the connecting groove (12). The contact surface between the locking plate (6) and the connecting groove (12) is an inclined surface with the left side higher and the right side lower.
7. A camera toy according to claim 5, characterized in that: The housing (1) is provided with a circuit board (13), a battery (14), a flashlight (15), a sound-generating device (16), and a switch (17). The battery (14), the flashlight (15), the sound-generating device (16), and the switch (17) are electrically connected to the circuit board (13), respectively. A light outlet corresponding to the flashlight (15) is provided on the front side of the housing (1). The switch (17) is arranged on the lower side of the driving part (8). The battery (14) is used to supply power to the flashlight (15) and the sound-generating device (16). The switch (17) is used to control the on / off of the circuits of the flashlight (15) and the sound-generating device (16).
8. A camera toy according to claim 7, characterized in that: A third return spring (18) is provided between the switch (17) and the driving portion (8).
9. The camera toy according to claim 1, characterized in that: The housing (1) is provided with a slide rail (19) which is slidably connected to the left and right sides of the photo plate (2).
10. The camera toy according to claim 1, characterized in that: The housing (1) is provided with a hanging ring (20).