Intelligent control type eye therapeutic apparatus
By combining the light-adjusting cover and the light-blocking curtain, the problem of the eye treatment device's sensor being sensitive to changes in ambient light is solved, achieving stable treatment effects and user experience under different lighting conditions.
Patent Information
- Application Number
- CN202422924207.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The high-sensitivity sensors in existing eye treatment devices are too sensitive to changes in ambient light, resulting in insufficient stability of measurement results under different lighting conditions, which affects treatment effectiveness and user experience.
The system employs a combination design of a light-adjusting hood, a light-blocking curtain, and an ambient light sensor. The light-adjusting hood blocks external ambient light, and the light-blocking curtain extends and retracts accordingly. Combined with a position sensor and guide rail design, it ensures constant lighting conditions within the treatment area, while the ambient light sensor adjusts the light regulation in real time to maintain stability.
This improved the stability of the sensor and the accuracy of the measurement results, thereby enhancing the treatment effect, the reliability of the equipment in various environments, and the user experience.
Smart Images

Figure CN223944789U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of eye care instruments, in particular to an intelligent control type eye treatment instrument. BACKGROUND
[0002] The eye treatment instrument is a medical device designed to provide accurate and efficient treatment for eye diseases. However, there is a problem that cannot be ignored, that is, the high-sensitivity sensor used to monitor the eye condition in real time is sensitive to changes in environmental light, which affects the stability of the measurement results in different lighting environments, thereby affecting the treatment effect and user experience. SUMMARY
[0003] Therefore, the present application provides an intelligent control type eye treatment instrument to at least partially solve the problems in the prior art.
[0004] The intelligent control type eye treatment instrument of the present application comprises:
[0005] The light adjustment cover is arranged at the front end of the treatment instrument.
[0006] The adjustment knob is installed on one side of the light adjustment cover, and the position of the light adjustment cover is adjusted by rotating the knob.
[0007] The fixed frame is located inside the main structure of the treatment instrument and is used to provide fixation and support.
[0008] The treatment lamp holder is fixed to the fixed frame and is used to install and position the treatment lamp.
[0009] The light-shielding curtain is connected to the inside of the light adjustment cover and can be extended and retracted with the adjustment of the light adjustment cover.
[0010] The treatment lamp emits a laser beam, and the light adjustment cover shields the external environmental light and transmits the laser beam.
[0011] A series of guide rails are provided on the fixed frame, and a plurality of fixing holes are further provided on the guide rails to lock the position of the light adjustment cover. The guide rails are also provided with anti-skid washers to provide damping effect when the light adjustment cover moves.
[0012] Preferably, the light adjustment cover adopts a multi-layer structure, including an outer layer of light-proof material and an inner layer of reflective material.
[0013] Preferably, a position sensor is provided between the adjustment knob and the light adjustment cover, which detects the position change of the light adjustment cover when the adjustment knob is rotated.
[0014] Preferably, the guide rail is designed in a T shape, and the bottom of the light adjustment cover is provided with a corresponding T-shaped groove.
[0015] Preferably, the treatment lamp holder is provided with a plurality of lamp holders, each of which is independently controlled by a switch and brightness to emit laser beams of different wavelengths and brightness.
[0016] Preferably, the light curtain is kept close to the inner wall of the light adjustment cover by the tension of the internal spring.
[0017] Preferably, the treatment instrument further comprises an ambient light sensor.
[0018] Preferably, the ambient light sensor is a multi-channel design.
[0019] The embodiment of the present disclosure provides an intelligent control type eye treatment instrument, which comprises a light adjustment cover arranged at the front end of the treatment instrument; an adjusting knob is arranged on one side of the light adjustment cover, and the position of the light adjustment cover is adjusted by rotating the knob; a fixed frame is arranged in the main body structure of the treatment instrument, and is used for providing fixation and support; a treatment lamp holder is fixed to the fixed frame, and is used for mounting and positioning a treatment lamp; a light curtain is connected to the inner side of the light adjustment cover, and can be extended and retracted along with the adjustment of the light adjustment cover; wherein the treatment lamp emits a laser beam, and the light adjustment cover shields external ambient light and transmits the laser beam; and a series of guide rails are arranged on the fixed frame, a plurality of fixing holes are further arranged on the guide rails, and the fixing holes are used for locking the position of the light adjustment cover; and the guide rails are further provided with anti-skid pads, and the anti-skid pads provide damping effect when the light adjustment cover moves. Through the scheme of the embodiment of the present disclosure, the problem that the high-sensitivity sensor for monitoring the eye condition in real time is too sensitive to the change of ambient light, resulting in insufficient stability of the measurement result in different light environments, can be solved. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the exemplary embodiments of the present disclosure, the following will briefly introduce the drawings needed in the embodiments. It should be understood that the following drawings only show some embodiments of the present disclosure, and therefore should not be considered as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.
[0021] Figure 1 It is a schematic view of the treatment instrument shaft side structure of the present application.
[0022] Figure 2 It is a schematic view of the treatment instrument shaft side structure of the present application. Figure 1 It is a schematic view of the structure of the fixed frame in the present application.
[0023] Figure 3 It is a schematic view of the structure of the fixed frame in the present application. Figure 1 It is an enlarged side view of the light curtain in the present application.
[0024] In the figure: 1, light adjustment cover; 2, adjustment knob; 3, fixed frame; 4, treatment lamp holder; 5, light curtain; 6, position sensor; 7, guide rail; 8, non-slip washer; 9, lamp holder; 10, internal spring; 11, ambient light sensor DETAILED DESCRIPTION
[0025] To make the purpose, technical solutions and advantages of the embodiments of the present disclosure clearer, further detailed description of the embodiments of the present disclosure will be made below in combination with examples and drawings, and the schematic implementation and its description of the embodiments of the present disclosure are only used to explain the embodiments of the present disclosure, and not as a limitation on the embodiments of the present disclosure.
[0026] As shown in Figure 1 , an intelligent control type eye treatment instrument of the present application is a low-level laser therapy (LLLT) eye mask, which uses low-intensity laser to irradiate the eye, stimulates cell metabolism, and enhances tissue repair ability, which can be used to treat some types of eye diseases such as macular degeneration. Specifically, the eye treatment instrument includes a light adjustment cover 1, an adjustment knob 2, a fixed frame 3, a treatment lamp holder 4 and a light curtain 5.
[0027] The light adjustment cover 1 is provided at the front end of the treatment instrument, which shields the external environmental light during use, thereby ensuring that the light environment in the treatment area remains stable. This helps to reduce external light interference, improve treatment effect and accuracy of measurement results. The light adjustment cover 1 is made of high-quality materials, which has good light transmission and shading performance. In addition, the light adjustment cover 1 also needs to be able to transmit the treatment laser beam to achieve stimulation of the eye.
[0028] The adjustment knob 2 is installed on one side of the light adjustment cover 1, and the user can manually adjust the position of the light adjustment cover 1 by rotating the knob to achieve different shading effects. The design of the adjustment knob 2 makes the operation simple and accurate, and the user can easily adjust to the best shading state according to the needs. Precise mechanical connection is adopted between the adjustment knob 2 and the light adjustment cover 1 to ensure smooth action without resistance when rotating.
[0029] The fixed frame 3 is located inside the main structure of the treatment instrument, mainly used to fix and support all other components, to ensure the stability and accuracy of the components during use. The fixed frame 3 is made of high-strength materials, which has excellent mechanical strength and anti-deformation ability, and can be used for a long time without losing stability. The fixed frame 3 is internally provided with a plurality of mounting positions for fixing the light adjustment cover 1, the treatment lamp holder 4 and other key components.
[0030] The treatment lamp holder 4 is fixed to the fixed frame 3, and its main function is to install and position the treatment lamp, so that it can accurately irradiate the target treatment area. The treatment lamp holder 4 adopts a modular structure, which facilitates the quick replacement and installation of different types of treatment lamps. The connection between the treatment lamp holder 4 and the fixed frame 3 adopts a buckle type fixation, which ensures the stability and accuracy of the lamp holder during use.
[0031] The light curtain 5 is connected inside the light adjustment cover 1 and automatically extends and retracts with the adjustment of the light adjustment cover 1, further enhancing the shielding effect of the ambient light. The light curtain 5 is made of flexible and durable material, which can tightly fit the inner wall of the light adjustment cover 1, effectively blocking external light interference. The light curtain 5 and the light adjustment cover 1 adopt a sliding connection, ensuring that they are adjusted synchronously with the operation of the adjustment knob 2.
[0032] Specifically, the connection design of the light adjustment cover 1 and the light curtain 5 is a whole system, and the light curtain 5 is fixed inside the light adjustment cover 1 through a sliding rail. When the adjustment knob 2 is rotated, the light adjustment cover 1 moves, driving the light curtain 5 on the sliding rail to extend and retract. The multiple mounting positions inside the fixed frame 3 are fixed by screws to ensure stable connection. The treatment lamp holder 4 adopts a buckle type fixation, which only needs to be lightly pressed to be fixed in place when installing the lamp.
[0033] Through the above design, the intelligent control type eye treatment instrument of the present application aims to solve the problem of high sensitivity of the sensor to changes in ambient light. The treatment instrument adopts a double light shielding mechanism of the light adjustment cover 1 and the light curtain 5 to ensure that the light conditions in the treatment area remain constant, thereby improving the stability of the sensor and the accuracy of the measurement results. This design not only improves the treatment effect, but also significantly enhances the reliability and user experience of the device in various use environments.
[0034] In one embodiment, the light adjustment cover 1 of the intelligent control type eye treatment instrument of the present application adopts a multi-layer structure to enhance its shielding ability of external ambient light, reduce the influence of external light on the internal high sensitivity sensor, and improve the light stability during treatment. The specific structure of the light adjustment cover 1 includes an outer lightproof material layer and an inner reflective material layer. The lightproof material layer is located on the outer surface of the light adjustment cover 1, which blocks the invasion of external ambient light and transmits the treatment laser, ensuring the stability of the internal optical environment. The reflective material layer is tightly attached to the inner side of the lightproof material layer, which further reduces the amount of light that may penetrate the lightproof layer through its high reflectivity, thereby effectively reducing the influence of these external light on the internal sensor and the treatment process.
[0035] In one embodiment, the light-tight material layer of the light adjustment cover 1 can be made of black plastic or coating material with good light shielding performance, and the internal reflective material layer can be made of silver or other metal film with high reflectivity. This multi-layer structure not only provides excellent light barrier effect, but also ensures the stability and reliability of the optical performance of the therapeutic instrument under different environmental conditions. In addition, in order to ensure good bonding between the layers, an adhesive or mechanical fixing method can be used to connect the two layers. For example, the light-tight material layer can be injection molded by a mold, and the reflective material layer can be coated or pressed on the inner surface of the light-tight material layer, thereby forming an integral structure. This design enables the light adjustment cover 1 to maintain high performance in various treatment scenarios.
[0036] With reference to the foregoing Figure 1 In one embodiment, the smart control type eye treatment instrument of the present application is characterized in that a position sensor 6 is provided between the adjustment knob 2 and the light adjustment cover 1. The position sensor 6 is used to detect the rotation of the adjustment knob 2 and the corresponding change in the position of the light adjustment cover 1. Specifically, the adjustment knob 2 is fixed to the front of the instrument, and the light adjustment cover 1 is installed above the adjustment knob 2. The position sensor 6 is installed at a suitable position between the adjustment knob 2 and the light adjustment cover 1, usually on the contact surface between the two, to ensure accurate capture of the position change.
[0037] In actual operation, when the user rotates the adjustment knob 2, the position sensor 6 can detect the change in the position of the light adjustment cover 1 in real time and convert this information into an electrical signal, which is transmitted to the controller through a wire. The controller adjusts the light intensity or light mode according to the received signal, thereby achieving more accurate light adjustment. For example, a Hall effect sensor can be used as the position sensor 6, which can output a stable electrical signal when the magnetic field changes, making it suitable for this high-precision position detection task.
[0038] In one embodiment, as Figure 2 shown, a series of guide rails 7 are provided on the fixed frame 3 of the smart control type eye treatment instrument of the present application, which are used to guide the smooth movement of the light adjustment cover 1 and the light shield curtain 5 during the adjustment process, ensuring the consistency and stability of the light shielding effect. These guide rails 7 are designed in a T shape, and the bottom of the light adjustment cover 1 is provided with a corresponding T-shaped slot, which can ensure smooth movement of the light adjustment cover 1 on the guide rails 7 while providing good positioning effect, effectively reducing the leakage of ambient light caused by shaking or deviation.
[0039] In one embodiment, the guide rail 7 is also provided with a plurality of fixing holes, through the bolt connection between these fixing holes and the light adjustment cover 1, the position of the light adjustment cover 1 can be locked when needed according to different treatment needs and environmental conditions. In addition, the guide rail 7 is also installed with anti-skid pads 8, which provide damping effect when the light adjustment cover 1 moves, not only reducing the friction noise in the moving process, but also preventing unnecessary displacement of the light adjustment cover 1 due to external vibration.
[0040] For example, the guide rail 7 can be arranged longitudinally along the two sides of the fixed frame 3, ensuring smooth movement of the light adjustment cover 1 in the front-back direction. The anti-skid pads 8 are installed inside the guide rail 7, tightly adhering to the inner wall of the guide rail 7, reducing the shaking of the light adjustment cover 1 by increasing the friction. The fixing holes are evenly distributed in the length direction of the guide rail 7, so that the light adjustment cover 1 can be fixed at any pre-set position to meet the needs of different use scenarios. Specifically, by passing the bolt through the corresponding position of the light adjustment cover 1 and screwing it into the fixing hole on the guide rail 7, the light adjustment cover 1 can be quickly and firmly fixed.
[0041] In one embodiment, referring back to Figure 1 The treatment lamp holder 4 of the intelligent control type eye treatment instrument of the present application is provided with a plurality of lamp sockets 9, each of which can be independently controlled in switching and brightness to meet the needs of different treatment stages or parts. The position of each lamp socket 9 can be flexibly designed according to actual application needs, for example, it can be evenly distributed along the length direction of the treatment lamp holder 4 to ensure uniform coverage of light in the treatment area. Each lamp socket 9 is internally integrated with electronic control systems, including but not limited to microprocessors, drive circuits and brightness adjustment modules. These electronic control systems are connected with the main control unit through the communication interface, receiving the control instructions issued by the main control unit, thereby realizing independent adjustment of the switching state and brightness of each lamp socket 9.
[0042] In one embodiment, the installation of each lamp socket 9 can be firmly fixed on the treatment lamp holder 4 through fixed screws or buckle structures, ensuring that it will not loosen or shift during long-term use. The electronic elements inside the lamp socket 9 can be integrated on the circuit board through welding or other reliable connection methods to ensure the stability and reliability of signal transmission. In addition, the electrical connection between the lamp socket 9 and the treatment lamp holder 4 can be realized through flexible cables, which not only ensures signal transmission, but also provides sufficient flexibility for installation and maintenance.
[0043] In one embodiment, as Figure 3As shown, the light-shielding curtain 5 of the intelligent control type eye treatment instrument of the present application is made of elastic material, which has good flexibility and ductility, so that the light-shielding curtain 5 can freely stretch and shrink when the light adjustment cover 1 is adjusted. The light-shielding curtain 5 is kept close to the inner wall of the light adjustment cover 1 by the tension of the internal spring 10, ensuring that there is no light leakage phenomenon during light adjustment, thereby enhancing the light-shielding effect. The design of the light-shielding curtain 5 not only considers the performance of the material, but also optimizes its installation position and method to ensure good cooperation with the light adjustment cover 1. In addition, the connection form between the light-shielding curtain 5 and the light adjustment cover 1 is also specially designed to ensure that the light-shielding effect remains stable even in the case of frequent adjustment.
[0044] Specifically, the elastic material of the light-shielding curtain 5 can stretch and shrink according to the size change of the light adjustment cover 1, and the internal spring is installed on one side of the light-shielding curtain 5 through a fixing device, and the other side is tightly attached to the inner wall of the light adjustment cover 1 through a pressing piece or similar structure. The tension of the spring can be evenly distributed at multiple points to ensure that the light-shielding curtain 5 is always tightly attached to the inner wall of the light adjustment cover 1. For example, multiple spring fixing points can be provided at the edges of the light-shielding curtain 5, and the tension of the spring is transmitted to different parts of the light-shielding curtain 5 through these fixing points, thereby achieving a light-shielding effect without light leakage.
[0045] In one embodiment, the intelligent control type eye treatment instrument of the present application is also equipped with an ambient light sensor 11 installed on the inner side of the light adjustment cover 1 for real-time monitoring of the change of external ambient light. The ambient light sensor 11 can transmit the monitored data to the controller, and the controller can dynamically adjust the position of the light adjustment cover 1 or the degree of expansion of the light-shielding curtain 5 according to the received sensor data to ensure the light stability of the treatment environment. In order to improve the signal detection accuracy and response speed of the ambient light sensor 11, a signal amplification circuit is provided between the ambient light sensor 11 and the light adjustment cover 1, which makes the sensor more quickly respond when the ambient light changes. In addition, the ambient light sensor 11 adopts a multi-channel design, which can detect light of different wavelengths respectively, and through the controller analyzes these data to select the most suitable eye treatment parameters to improve the treatment effect and safety.
[0046] Specifically, the ambient light sensor 11 is installed on the inner side of the light adjustment cover 1, and the position is selected to be able to fully capture the changes of external ambient light. Specifically, the ambient light sensor 11 is connected to the signal amplification circuit through the signal line, and the signal amplification circuit is in communication with the controller, forming a closed-loop control system. In this way, when the ambient light sensor 11 detects changes in external light, the signal is immediately transmitted to the controller after amplification processing, and the controller quickly adjusts the state of the light adjustment cover 1 or the light curtain 5 according to the preset algorithm, ensuring the stability of the light environment and the optimization of the treatment effect. For example, when the external light suddenly becomes brighter, the controller can immediately instruct the light curtain 5 to fully expand to prevent the strong light from affecting the treatment process.
[0047] In actual operation, when the device is in use, the user first sets the light adjustment cover 1 in front of the eyes to block the ambient light and provide a stable light environment for the treatment area. The user can manually adjust the position of the light adjustment cover 1 according to actual needs by rotating the adjustment knob 2 installed on one side of the light adjustment cover 1, achieving different light shielding effects. This adjustment process will drive the light curtain 5 connected to the inner side of the light adjustment cover 1 to automatically expand and contract, further enhancing the shielding of external light and ensuring the stability of the light in the treatment area.
[0048] At the same time, the position change of the light adjustment cover 1 is also fed back to the fixed frame 3, which serves as the main structure of the treatment instrument and is responsible for fixing and supporting all parts, ensuring that each part remains stable during operation. The treatment lamp holder 4 fixed on the fixed frame 3 plays a key role, as it not only provides a position for installing the treatment lamp, but also ensures that the lamp can accurately irradiate the desired eye treatment area. The turning on and brightness adjustment of the treatment lamp can be performed through the built-in control system, ensuring the consistency and effectiveness of the light source during the entire treatment process.
[0049] Throughout the process, the light adjustment cover 1, the adjustment knob 2, the fixed frame 3, the treatment lamp holder 4, and the light curtain 5 work closely together through mechanical means, ultimately achieving high stability and accuracy in eye treatment under different light environments. This design makes the intelligent control type eye treatment instrument more reliable in clinical application, improving the treatment effect and user comfort.
[0050] The above describes the preferred embodiments of the present application. It should be noted that for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be considered within the scope of protection of the present application.
Claims
1. An intelligent control type eye treatment instrument, characterized in that, The utility model relates to a light adjustment cover (1) is arranged at the front end of the therapeutic instrument, an adjustment knob (2) is arranged on one side of the light adjustment cover (1), the position of the light adjustment cover (1) is adjusted by rotating the adjustment knob (2), a fixed frame (3) is arranged inside the main body structure of the therapeutic instrument, and the fixed frame (3) is used for providing fixation and support, a treatment lamp holder (4) is fixed to the fixed frame (3), and the treatment lamp holder (4) is used for installing and positioning a treatment lamp, a light curtain (5) is connected to the inner side of the light adjustment cover (1) and can be telescoped along with the adjustment of the light adjustment cover (1), wherein the treatment lamp emits a laser beam, and the light adjustment cover (1) shields external ambient light and transmits the laser beam, and a series of guide rails (7) are arranged on the fixed frame (3), a plurality of fixing holes are further arranged on the guide rails (7), the position of the light adjustment cover (1) is locked, the guide rails (7) are further provided with anti-skid washers (8), and damping effect is provided when the light adjustment cover (1) moves. The light adjustment cover (1) adopts a multilayer structure, comprising an outer layer of lightproof material and an inner layer of reflective material. A position sensor (6) is arranged between the adjustment knob (2) and the light adjustment cover (1), and the position sensor (6) detects the position change of the light adjustment cover (1) when the adjustment knob (2) rotates. The guide rail (7) is designed in a T shape, and the bottom of the light adjustment cover (1) is provided with a corresponding T-shaped groove. A plurality of lamp holders (9) are arranged on the treatment lamp holder (4), each lamp holder (9) is independently controlled in terms of switch and brightness, so as to emit laser beams of different wavelengths and brightness. The light curtain (5) is kept close to the inner wall of the light adjustment cover (1) by the tension of the internal spring (10). The therapeutic instrument further comprises an ambient light sensor (11). The ambient light sensor (11) is designed in a multi-channel mode.
2. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 3. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 4. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 5. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 6. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 7. The intelligent control type eye treatment instrument according to claim 1, characterized in that: 8. The intelligent control type eye treatment instrument according to claim 7, characterized in that: