Dynamic eye simulation device and product with dynamic eyes
By using a combination of circuit board, LED light and microcontroller in the dynamic eye simulation device, the working state of the LED light is controlled to simulate the dynamic effect of the eyes, solving the problems of complex structure and high cost of the existing device, and achieving simple, economical and good-effect dynamic eye simulation.
Patent Information
- Application Number
- CN202422262424.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing dynamic eye simulation device has a complex structure and high cost, making it difficult to achieve simple and economical dynamic eye simulation effects.
The combination of circuit board, LED light and microcontroller is adopted. The LED light is integrated on the front of the circuit board. The microcontroller controls the working state of the LED light. Through the different luminous colors and dynamic changes of the background light and dynamic light, the dynamic effect of the eyes is simulated.
A dynamic eye simulation device with a simple structure, low cost and good effect in simulating the eye dynamics is realized, and it can realistically simulate the rotation and blinking of the eye.
Smart Images

Figure CN223022807U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a dynamic eye simulation device. Background Art
[0002] Chinese Patent Document CN105469682A discloses a simulation eye blinking simulation device, including an eye module, and an eyelid module, a pupil and an eyeball disposed inside the eye module; characterized in that the eyelid module is designed as a spherical body, divided into an upper eyelid and a lower eyelid, and both sides of the eyelid module are connected and fixed to pulleys inside the eye module; further including a motor, which is respectively connected to the pulley and a control system; the control system controls the motor to drive the pulley to simulate the closing and opening of the eyes; and it can simulate the eye blinking conditions under different circumstances.
[0003] Although the above scheme can simulate the eye blinking conditions, the structure is relatively complex and the cost is relatively high. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a dynamic eye simulation device with a simple structure and a relatively low cost.
[0005] The purpose of the utility model is realized by the following technical means:
[0006] A dynamic eye simulation device, characterized in that: it includes a circuit board, an LED lamp and a single-chip microcomputer. The LED lamp is integrated on the front of the circuit board, and the single-chip microcomputer is electrically connected to each LED lamp to control the working state of each LED lamp. The LED lamp includes a plurality of background lights and a plurality of dynamic lights. The plurality of background lights are arranged at intervals to form a first eye-shaped light-emitting area; the plurality of dynamic lights are arranged at intervals to form a second eye-shaped light-emitting area located in the first eye-shaped light-emitting area. The light-emitting color of the background light is different from that of the dynamic light. The single-chip microcomputer can control the LED lamp to dynamically turn off and on according to a certain rule so as to simulate a dynamic eye.
[0007] When in use, the single-chip microcomputer controls the LED lamp to turn on to simulate a dynamic eye effect, and turns on and off according to a certain rule to simulate the effect of eyeball rotation and blinking. The structure is simple, the cost is relatively low, and the dynamic effect of simulating the eye is good.
[0008] Under the control of the single-chip microcomputer, the background light and the dynamic light can gradually turn off towards the middle to simulate the blinking or closing eyes action.
[0009] The first eye-shaped light-emitting area is circular, and the second eye-shaped light-emitting area is also circular. The first eye-shaped light-emitting area and the second eye-shaped light-emitting area are concentrically arranged, so that the dynamic light can be well located within the range of the background light, and it is convenient for the production of the product.
[0010] The circuit board is eye-shaped and adapted to the first eye-shaped light-emitting area, so the structure is relatively reasonable.
[0011] The single-chip microcomputer is STM8003.
[0012] The background light can emit light in red, white, warm white, green, blue, yellow, purple or orange; the dynamic light can emit light in white, red, warm white, green, blue, yellow, purple or orange. In this way, the difference between the background light and the dynamic light is relatively obvious, and users will not get confused.
[0013] The single-chip microcomputer controls a part of the dynamic light to turn off to simulate the pupil, and the rest to turn on to simulate the sclera. Moreover, the position of the pupil changes dynamically, so that a realistic effect of simulating the rotation of the eyeball can be achieved.
[0014] It further includes a solar power generation panel, which is connected to the circuit board and used to supply power to the LED lamp and the single-chip microcomputer.
[0015] A product with dynamic eyes includes the above-mentioned dynamic eye simulation device.
[0016] It includes two spaced-apart dynamic eye simulation devices for simulating both eyes. Description of the Drawings
[0017] Figure 1 It is the usage state diagram of the product of the present utility model (when the pupil rotates to a position).
[0018] Figure 2 It is the usage state diagram of the present utility model (when the pupil rotates to another position).
[0019] Figure 3 It is the usage state diagram of the present utility model (simulating the blinking effect).
[0020] Figure 4 It is the circuit schematic diagram of the dynamic eye simulation device of the present utility model.
[0021] Figure 5 It is the circuit board layout diagram of the dynamic eye simulation device of the present utility model.
[0022] Figure 6 It is the schematic diagram of the physical effect of the product of the present utility model. Detailed Embodiment
[0023] Refer to Figures 1 to 6As shown in the figure, a product with dynamic eyes includes an animal-shaped main body and two dynamic eye simulation devices arranged on the main body to facilitate observing the effect of the dynamic eyes. In this embodiment, the animal-shaped main body resembles a cartoon bat, and the two dynamic eye simulation devices are respectively arranged at the positions of the bat's eyes. At the lower end of the body of the cartoon bat, there is a plug rod 4, through which the product with dynamic eyes can be fixed at the use position, such as inserted in the courtyard and used as a decorative lamp, which is very convenient.
[0024] The dynamic eye simulation device includes a circuit board 1, LED lights, a single-chip microcomputer, and a solar power generation panel (not shown in the figure). The model of the single-chip microcomputer is STM8003. The LED lights are integrated on the front of the circuit board 1, and the single-chip microcomputer is integrated on the back of the circuit board 1, which facilitates product production, saves installation space, and makes the structure more reasonable. The single-chip microcomputer is electrically connected to each LED light to control the working state of each LED light. The LED lights include a plurality of background lights 2 and a plurality of dynamic lights 3. The plurality of background lights 2 are arranged at intervals to form a first eye-shaped light-emitting area; the plurality of dynamic lights 3 are arranged at intervals to form a second eye-shaped light-emitting area located in the first eye-shaped light-emitting area. The light-emitting color of the background light 2 is different from that of the dynamic light 3. In this embodiment, the color of the background light 2 is specifically red, and the color of the dynamic light 3 is specifically white in this embodiment. In this way, the difference between the background light 2 and the dynamic light 3 is relatively obvious, and it will not be confused by the user, and the user can better observe the eyeball part. However, the colors of the background light 2 and the dynamic light 3 can be red, warm white, green, blue, yellow, purple, orange, etc., as long as it is convenient to distinguish, and it is not limited here. The single-chip microcomputer can control the background light 2 to be always on. The solar power generation panel is connected to the circuit board 1 to supply power to the background light 2, the dynamic light 3, and the single-chip microcomputer. The dynamic light 3 is dynamically turned off and on according to a certain rule to simulate a dynamic eyeball. And the background light 2 can be controlled by the single-chip microcomputer to cooperate with the dynamic light 3 to gradually turn off from top to bottom and then to the middle at the same time, simulating the action of blinking or closing the eyes.
[0025] When in use, the single-chip microcomputer controls the background light 2 to be always on to simulate the whole eye, and the single-chip microcomputer controls the dynamic light 3 to turn on to simulate part of the eyeball. And the LED lights can be turned on and off according to a certain rule to simulate the dynamic effect of the eyes, such as the effect of eyeball rotation and blinking. The structure is simple, the cost is low, and the dynamic effect of simulating the eyeball is good. The single-chip microcomputer controls a part of the dynamic light 3 to turn off to simulate the dark pupil part, and the rest part turns on to simulate the sclera. And the position of the pupil is dynamically changed, so that it can achieve a realistic effect of simulating eyeball rotation.
[0026] The first eye-shaped light-emitting area is circular, and the second eye-shaped light-emitting area is also circular. The first eye-shaped light-emitting area and the second eye-shaped light-emitting area are concentrically arranged, so that the dynamic lamp 3 can be well located within the range of the background lamp 2, which is convenient for the production of the product. The circuit board 1 is also in the shape of a circular eye adapted to the first eye-shaped light-emitting area, and such a structure is relatively reasonable.
[0027] The above is only the preferred embodiment of the present invention, and thus cannot limit the scope of implementation of the present invention. That is, equivalent changes and modifications made according to the scope of the patent application of the present invention and the content of the specification should still fall within the scope covered by the patent of the present invention.
Claims
1. A dynamic eye simulation device, characterized in that: It includes a circuit board, an LED lamp and a single-chip microcomputer. The LED lamp is integrated on the front side of the circuit board. The single-chip microcomputer is conductively connected to each LED lamp to control the working state of each LED lamp. The LED lamp includes multiple background lights and multiple dynamic lights. The multiple background lights are arranged at intervals to form a first eye-shaped light-emitting area; the multiple dynamic lights are arranged at intervals to form a second eye-shaped light-emitting area located in the first eye-shaped light-emitting area. The light-emitting color of the background lights is different from the light-emitting color of the dynamic lights. The single-chip microcomputer can control the LED lights to dynamically turn off and on according to a certain rule to simulate dynamic eyes.
2. The dynamic eye simulation device according to claim 1, characterized in that: The background light and the dynamic light can be gradually turned off toward the middle to simulate blinking or closing eyes under the control of the single chip microcomputer.
3. The dynamic eye simulation device according to claim 1, characterized in that: The first eye-shaped light-emitting area is circular, the second eye-shaped light-emitting area is also circular, and the first eye-shaped light-emitting area and the second eye-shaped light-emitting area are arranged concentrically.
4. The dynamic eye simulation device according to claim 1, characterized in that: The circuit board is in an eye shape that matches the first eye-shaped light-emitting area.
5. The dynamic eye simulation device according to claim 1, characterized in that: The single chip microcomputer is STM8003.
6. The dynamic eye simulation device according to any one of claims 1 to 5, characterized in that: The luminous color of the background light is red, white, warm white, green, blue, yellow, purple or orange; the luminous color of the dynamic light is white, red, warm white, green, blue, yellow, purple or orange.
7. The dynamic eye simulation device according to any one of claims 1 to 5, characterized in that: The single chip microcomputer controls a part of the dynamic light to turn off to simulate the pupil; the rest of the dynamic light turns on to simulate the white of the eye, and the position of the pupil changes dynamically.
8. The dynamic eye simulation device according to any one of claims 1 to 5, characterized in that: It also includes a solar power generation panel, which is connected to the circuit board and is used to supply power to the LED lamp and the single-chip microcomputer.
9. A product with dynamic eyes, characterized in that: A dynamic eye simulation device comprising any one of claims 1 to 8.
10. The product with dynamic eyes according to claim 9, characterized in that: It comprises two dynamic eye simulation devices arranged at intervals, and is used for simulating two eyes.
Citation Information
Patent Citations
Simulation eye blink simulator
CN105469682A