Portable intelligent eye protection lamp with 360-degree electrodeless adjusting structure

This portable smart eye-protection lamp features a 360-degree stepless adjustment structure. By using a rotary encoder and positioning slot to replace button adjustment, it solves the problems of lack of novelty in the structure and poor user experience of portable eye-protection lamps. It achieves stepless adjustment and mode switching, improving both user experience and aesthetic appearance.

CN224188564UActive Publication Date: 2026-05-01深圳市信毅科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
深圳市信毅科技有限公司
Filing Date
2026-03-24
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing portable eye-protection lamps lack innovation in their functional adjustment structure design, resulting in a poor user experience. Furthermore, the button adjustment method leads to a complex and highly homogenized product appearance.

Method used

It adopts a 360-degree stepless adjustment structure. The rotational connection between the lamp cover and the rotating body is achieved through the setting of the connecting part and the connecting claw. The rotation and pressing signals are identified by the rotation and pressing signals, replacing the traditional button adjustment. Users can perform stepless adjustment and mode switching by rotating or pressing.

Benefits of technology

The user experience has been improved by eliminating function adjustment buttons, enabling stepless adjustment and mode switching, and enhancing the overall aesthetics and functional novelty of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The portable intelligent eye-protection lamp with the 360-degree electrodeless adjusting structure comprises a lamp upper cover and a lamp rotating body, a connecting part is arranged at the lower end of the lamp upper cover, a circle of connecting platform is arranged on the periphery of the connecting part, a main control board assembly is fixedly arranged on the lamp rotating body, and the main control board assembly is connected with the lamp rotating body. A rotary connecting frame is fixedly arranged on the upper end face of the main control board assembly, a plurality of connecting clamping jaws are arranged on the rotary connecting frame and evenly arranged on the upper surface of the connecting platform, a rotary pressing encoder is arranged on the main control board assembly, and a positioning groove is formed in the connecting part. The lamp has the beneficial effects that the lamp upper cover and the lamp rotating main body are rotatably connected through the arrangement of the connecting part and the connecting clamping jaw, rotating and pressing signals are obtained in real time through the arrangement of the rotating and pressing encoder and the positioning groove, a user can directly rotate or press the lamp rotating main body to conduct stepless adjustment and mode switching, and the user experience is improved. And a function adjusting key is canceled, so that the use experience of the user is improved.
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Description

A portable smart eye-protection lamp with a 360-degree stepless adjustment structure Technical Field

[0001] This utility model relates to the field of lighting technology, specifically to a portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure. Background Technology

[0002] With the continuous iteration and upgrading of lighting technology, the variety of lighting fixtures is becoming increasingly rich, gradually evolving from traditional basic lighting fixtures towards functional and health-oriented directions. Eye-protection lamps, as specialized lighting fixtures with vision protection functions, effectively alleviate eye fatigue caused by prolonged use by optimizing the light source spectrum, controlling flicker, and adjusting color temperature, thus protecting the eyes. They have gradually become an important reference standard for consumers when choosing lighting fixtures. Currently, existing eye-protection lamps are mainly divided into three categories: tabletop eye-protection lamps, large floor-standing eye-protection lamps, and portable small eye-protection lamps. In recent years, the frequency of people traveling, commuting, and working outdoors has been continuously increasing, highlighting the advantages of portable small eye-protection lamps. They achieve energy storage through built-in batteries, eliminating dependence on fixed power sources and flexibly adapting to various scenarios such as outdoor activities, temporary offices, and commuting, meeting users' lighting needs anytime, anywhere, and fitting the current fragmented usage scenarios.

[0003] However, existing portable eye-protection lamps have significant flaws in their functional adjustment structure design. To achieve functions such as brightness adjustment, color temperature switching, and on / off control, these products typically require multiple holes to house various function buttons, resulting in a complex visual design that compromises the overall unity and aesthetics of the product. Furthermore, the use of buttons for function adjustment is already widespread, leading to significant homogenization in the current portable eye-protection lamp market. The lack of innovative functional adjustment methods fails to meet consumers' higher demands for user experience and aesthetic appeal. Therefore, there is an urgent need to develop a novel structural design to address the shortcomings of existing products and improve the user experience. Summary of the Invention

[0004] To address the problems in the existing technology, this utility model provides a portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure, which solves the problem that existing lamps use button adjustment, resulting in a lack of structural novelty and an inability to meet user needs.

[0005] This utility model discloses a portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure, including a lamp cover and a rotating lamp body. The lower end of the lamp cover is provided with a connecting part that cooperates with the rotating lamp body. A connecting platform is provided around the connecting part. A main control board assembly is fixedly mounted on the rotating lamp body. A rotating connecting frame is fixedly mounted on the upper surface of the main control board assembly. The rotating connecting frame is provided with multiple connecting claws that cooperate with the connecting part. The multiple connecting claws are evenly arranged on the upper surface of the connecting platform. The rotating connecting frame can rotate relative to the connecting part. A rotary press encoder is provided on the main control board assembly. A positioning groove is provided in the connecting part that cooperates with the rotary press encoder. The rotary press encoder can cooperate with the positioning groove to realize the recognition of rotation and press signals. A gap is provided between the lamp cover and the rotating lamp body.

[0006] This utility model is further improved by the following: the connecting part is a resistance frame fixedly installed on the lower end face of the lamp cover, the connecting platform is installed at the lower end of the resistance frame, the lower end face of the resistance frame is provided with a connecting cylinder, the positioning groove is installed in the connecting cylinder, the rotary press encoder is provided with a rotary press key, the rotary press key is installed in the positioning groove, the positioning groove is provided with a positioning surface, and the positioning surface enables the rotary press key to rotate synchronously with the positioning groove.

[0007] This utility model is further improved by providing a ring of feedback teeth around the periphery of the resistance frame, which engage with the connecting claws to generate adjustment feedback through collision with the connecting claws.

[0008] The present invention is further improved in that the rotating body of the lamp also includes a rotating main shell, a battery and a lamp board assembly and a light-transmitting sealing component. A heat insulation plate is provided in the rotating main shell, the main control board assembly and the battery are provided on the upper end surface of the heat insulation plate, the lamp board assembly is provided on the lower end surface of the heat insulation plate, and a light-transmitting window is provided at the lower end of the rotating main shell, and the light-transmitting sealing component is provided in the light-transmitting window.

[0009] This utility model is further improved by providing a diffuse reflection frosted layer or a concave-convex prism structure on the light-transmitting sealing component, and the cross-sectional area of ​​the light-transmitting window gradually increases from top to bottom.

[0010] This utility model is further improved. The lamp board assembly includes a lamp circuit board and a lamp board heat sink. Multiple lamp groups are arranged on the lower end face of the lamp circuit board. The lamp groups include warm light lamp beads and cold light lamp beads. The lamp board heat sink is arranged on the upper end face of the lamp circuit board. Multiple heat sinks are arranged at intervals on the lamp board heat sink. The lamp board heat sink can improve the heat dissipation capacity of the lamp circuit board.

[0011] This utility model is further improved by providing multiple heat dissipation holes on the rotating main shell that cooperate with the lamp panel heat sink. A sealing connecting plate extends downward from the lower end of the lamp cover. The rotating main shell is sleeved around the sealing connecting plate. The multiple heat dissipation holes can cooperate with the gap between the rotating main shell and the sealing connecting plate to form air convection inside the product for heat dissipation.

[0012] This utility model is further improved by including a light-shielding three-dimensional lampshade in the lamp panel assembly. The light-shielding three-dimensional lampshade is provided with multiple light-shielding holes, which are matched with multiple light groups one by one. The shape of the light-shielding holes is polygonal, and the cross-sectional area of ​​the light-shielding holes gradually increases from top to bottom. The light-shielding holes can block and reflect light rays with an angle greater than a specified angle.

[0013] This utility model is further improved by providing a magnetic component in the lamp cover, which allows the lamp cover to be fixedly installed in a designated position.

[0014] This utility model is further improved in that the main control board assembly includes a main control board body and a power board. The power board is electrically connected to the main control board body. A power control is provided on the power board. A power hole that cooperates with the power control is provided on the rotating body of the lamp. The power control is set in the power hole.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model provides a portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure. This structure effectively solves the problem that existing lamps use button adjustments, which lack structural novelty and fail to meet user needs. Through the connection part and connecting claws, a rotatable connection is achieved between the lamp cover and the lamp's rotating body. Furthermore, the rotation and pressing signals are acquired in real time through the rotation and pressing encoder and positioning groove, replacing the traditional structure that uses buttons on the body for adjustment. Users can directly perform stepless adjustment and mode switching by rotating or pressing the lamp's rotating body, eliminating function adjustment buttons and improving the user experience. Attached Figure Description

[0016] To more clearly illustrate the solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0017] Figure 1 is a schematic diagram of the overall structure of the portable smart eye-protection lamp with a 360-degree stepless adjustment structure. The arrow indicates the direction of pressing the rotating main body 2 towards the lamp cover 1 for adjustment.

[0018] Figure 2 is an exploded structural diagram of the portable smart eye-protection lamp with a 360-degree stepless adjustment structure.

[0019] Figure 3 is a schematic diagram of the internal structure from the upward view of Figure 1;

[0020] Figure 4 is a schematic diagram of the internal structure from a top-down view of Figure 1;

[0021] Figure 5 is a schematic diagram of the resistance frame structure. Detailed Implementation

[0022] Unless otherwise defined, all technical and scientific terms used in this invention have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, and accompanying drawings are used to distinguish different objects, not to describe a particular order.

[0023] In this invention, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this invention. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment to other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this invention can be combined with other embodiments.

[0024] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0025] As shown in Figures 1-5, this utility model discloses a portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure, including a lamp cover 1 and a lamp rotating body 2. The lower end of the lamp cover 1 is provided with a connecting part that cooperates with the lamp rotating body 2. A connecting platform 101 is provided around the connecting part. A main control board assembly 3 is fixedly provided on the lamp rotating body 2. A rotating connecting frame 4 is fixedly provided on the upper surface of the main control board assembly 3. The rotating connecting frame 4 is provided with multiple connecting claws 41 that cooperate with the connecting part. The multiple connecting claws 41 are evenly arranged on the upper surface of the connecting platform 101. The rotating connecting frame 4 can rotate relative to the connecting part. A rotary press encoder 31 is provided on the main control board assembly 3. A positioning groove 103 that cooperates with the rotary press encoder 31 is provided in the connecting part. The rotary press encoder 31 can cooperate with the positioning groove 103 to realize the recognition of rotation and press signals. A gap is provided between the lamp cover 1 and the lamp rotating body 2.

[0026] By setting the connecting part and the connecting claw 41, the lamp cover 1 and the lamp rotating body 2 can be rotatably connected. Furthermore, by setting the rotary press encoder 31 and the positioning groove 103, the rotation and press signals are acquired in real time, replacing the traditional structure of adjusting by setting buttons on the machine body. Users can directly perform stepless adjustment and mode switching by rotating or pressing the lamp rotating body 2, eliminating the function adjustment buttons and improving the user experience.

[0027] When adjusting, pressing the rotating body 2 of the lamp causes the rotary encoder 31 to be compressed in the Y-axis direction, triggering the switching of the color temperature and light intensity modules. By rotating the rotating body 2 of the lamp, the rotary encoder 31 rotates in cooperation with the positioning groove 103, realizing 360-degree stepless adjustment of the color temperature or light intensity indicators. The lower end of the rotary encoder 31 is welded to the main control board assembly 3 to realize the circuit connection.

[0028] When the lamp body 2 is pressed and rotated, the connecting claw 41 also moves relative to the connecting part in the Y-axis direction.

[0029] The connecting part is a resistance frame 10 fixedly installed on the lower end face of the lamp cover 1. The connecting platform 101 is installed at the lower end of the resistance frame 10. The lower end face of the resistance frame 10 is provided with a connecting cylinder 102. The positioning groove 103 is installed in the connecting cylinder 102. The rotary press encoder 31 is provided with a rotary press key 311. The rotary press key 311 is installed in the positioning groove 103. The positioning groove 103 is provided with a positioning surface.

[0030] By setting the positioning surface, the rotary press button 311 can rotate synchronously with the positioning groove 103, so that the rotary press encoder 31 can accurately obtain the rotation angle information, thereby realizing stepless adjustment.

[0031] As shown in Figure 4, Figure 4 is an internal structural diagram of the hidden lamp cover 1 and magnetic component 5. The outer periphery of the resistance frame 10 is provided with a ring of feedback teeth 104 that cooperate with the connecting claw 41. The feedback teeth 104 can collide with the connecting claw 41 to generate adjustment feedback.

[0032] By setting the feedback teeth 104, during rotation, the connecting claw 41 will continuously collide with the feedback teeth 104. When rotating to the position of the feedback teeth 104, the connecting claw 41 is lifted by the feedback teeth 104. When rotating to the gap between the two feedback teeth 104, the connecting claw 41 resets. During the rotation, the connecting claw 41 vibrates continuously, realizing the resistance and sticking sensation and the slight clicking sound during 360-degree rotation, providing a better user experience.

[0033] The rotating body 2 of the lamp also includes a rotating main shell 21, a battery 22, a lamp panel assembly, and a light-transmitting sealing element 23. A heat insulation plate 210 is provided in the rotating main shell 21. The main control board assembly 3 and the battery 22 are provided on the upper end surface of the heat insulation plate 210, and the lamp panel assembly is provided on the lower end surface of the heat insulation plate 210. A light-transmitting window 211 is provided at the lower end of the rotating main shell 21, and the light-transmitting sealing element 23 is provided in the light-transmitting window 211.

[0034] The installation of the heat insulation plate 210 reduces the probability that the heat from the lamp panel assembly will affect the main control board assembly 3 and the battery 22.

[0035] The light-transmitting sealing element 23 is provided with a diffuse reflection frosted layer or a concave-convex prism structure, and the cross-sectional area of ​​the light-transmitting window 211 gradually increases from top to bottom.

[0036] By using a diffused frosted layer, the transmitted light is softened and dispersed, preventing excessive local brightness and glare.

[0037] Furthermore, the cross-sectional area of ​​the light-transmitting window 211 gradually increases from top to bottom, forming a trumpet shape, which can further constrain and block the direction of light emission, making the light source illumination more concentrated and improving the user experience.

[0038] A lamp cover 215 is fixedly installed at the lower end of the rotating main housing 21, and a light-transmitting window 211 is set in the lamp cover 215.

[0039] The lamp board assembly includes a lamp circuit board 241 and a lamp board heat sink 242. Multiple lamp groups 243 are provided on the lower end face of the lamp circuit board 241. The lamp groups 243 include warm light lamp beads and cold light lamp beads. The lamp board heat sink 242 is provided on the upper end face of the lamp circuit board 241. Multiple heat sinks 2421 are provided on the lamp board heat sink 242 at intervals.

[0040] The lamp board heat sink 242 improves the heat dissipation capacity of the lamp circuit board 241, ensuring the full spectrum and eye protection effect of the product.

[0041] The heat sink 242 is attached to the upper surface of the light circuit board 241 to improve the heat conduction speed.

[0042] The rotating main shell 21 is provided with multiple heat dissipation holes 212 that cooperate with the lamp panel heat sink 242. Through the setting of multiple heat dissipation holes 212, internal air convection can be realized, heat inside the product can be carried out, and the heat dissipation capacity of the product can be improved.

[0043] The heat dissipation hole 212 consists of three small heat dissipation holes, which allow cold air to enter or exit from this point. The three small heat dissipation holes can also form convection individually, or they can form convection with other heat dissipation holes 212 to dissipate heat. They can also form air convection within the product to dissipate heat by fitting with the gap between the lamp cover 1 and the lamp rotating body 2.

[0044] Two heat dissipation holes 212 are designed in this embodiment, but the number is not limited and can be adjusted according to needs.

[0045] As shown in Figure 3, Figure 3 is an internal structural diagram of the hidden light-transmitting sealing component 23. The lamp panel assembly also includes a light-shielding three-dimensional lampshade 25. The light-shielding three-dimensional lampshade 25 is provided with multiple light-shielding holes 251. The multiple light-shielding holes 251 are matched with multiple light groups 243 one by one. The shape of the light-shielding holes 251 is polygonal, and the cross-sectional area of ​​the light-shielding holes 251 gradually increases from top to bottom.

[0046] By setting the light-shielding hole 251, light rays larger than a specified angle can be blocked and reflected, constraining the emitted light and increasing the light-shielding angle to between 35 and 55 degrees, so that the human eye cannot directly see the high-brightness LED light source, causing the light to shine out within a specified angle range, effectively preventing glare.

[0047] The cross-sectional shape of the light-shielding hole 251 is hexagonal.

[0048] Triple anti-glare protection is provided to achieve anti-glare effect when the product is exposed to light:

[0049] 1. The light-transmitting sealing element 23 is provided with a diffuse reflection frosted layer or a concave-convex prism structure to make the light illumination more uniform;

[0050] 2. The cross-sectional area of ​​the light-transmitting window 211 gradually increases from top to bottom, forming a trumpet shape, which can further constrain and block the direction of light emission, making the light source illumination more concentrated and improving the user experience.

[0051] 3. By setting the light-shielding three-dimensional lampshade 25, the light-shielding hole 251 can block and reflect light that is larger than the specified angle, constrain the emitted light, increase the light-shielding angle to between 35-55 degrees, so that the human eye cannot directly see the high-brightness LED light source, and make the light shine out in the specified angle range, effectively preventing glare.

[0052] The light-shielding three-dimensional lampshade 25 consists of a light-shielding three-dimensional frame and multiple lampshade bodies. Light-shielding holes 251 are provided on the lampshade bodies, and the number of lampshade bodies and light-shielding holes 251 are the same. The light-shielding three-dimensional frame is provided with multiple lampshade mounting positions that cooperate with the lampshade bodies, and the lampshade mounting positions can fix the lampshade bodies.

[0053] The lamp cover 1 is equipped with a magnetic component 5. The magnetic component 5 makes the product installation method faster and more flexible. When in use, the metal sheet can be adhered to the designated position and then the magnetic component 5 can be used to attract the metal sheet to fix the position of the product. Alternatively, it can be directly attracted to a metal platform or to an extension and adjustment bracket, which improves the flexibility of product installation.

[0054] The main control board assembly 3 includes a main control board body 32 and a power board 33. The power board 33 is electrically connected to the main control board body 32. A power control is provided on the power board 33. A power hole 213 that cooperates with the power control is provided on the lamp rotating body 2. The power control is located in the power hole 213.

[0055] The power control allows for the switching of the product on and off.

[0056] The main control board body 32 is provided with a charging interface, and the lamp rotating body 2 is provided with a charging hole 214 that cooperates with the charging interface.

[0057] A sealing connecting plate 11 extends downward from the lower end of the lamp cover 1. The rotating main shell 21 is sleeved around the sealing connecting plate 11. When the lamp rotating body 2 is pressed upward, the positioning step can limit the stroke of the lamp rotating body 2. Furthermore, through the gap of the sleeve, it can cooperate with the heat dissipation hole 212 to form air convection inside the product, further improving the speed at which heat is carried out of the product and improving the heat dissipation capacity.

[0058] Triple heat dissipation protection is provided to achieve the product's full-spectrum and eye-protection functions:

[0059] 1. The heat dissipation holes 212 are designed to create air convection inside the product, carrying heat out of the product;

[0060] 2. The heat from the light circuit board 241 is absorbed and conducted through the heat sink 242, and the heat dissipation area is increased through multiple heat sinks 2421 to quickly cool down.

[0061] 3. By adjusting the gap between the rotating main shell 21 and the sealing connection plate 11, the hot air generated during use can be dissipated and discharged by passing through the gap space.

[0062] This embodiment provides a portable smart eye-protection lamp with a 360-degree stepless adjustment structure, and the specific adjustment method is as follows:

[0063] Before use, the lamp cover 1 can install the eye-protection lamp on any platform with metal material by means of the magnetic part 5. The magnetic part 5 is used to attach and fix the metal surface, thereby fixing the product position.

[0064] Taking the example of magnetically attaching the lamp cover 1 to the roof of the car to fix the eye protection lamp to the roof and make it shine downwards:

[0065] When it is necessary to switch between adjusting the color temperature or light intensity, the user can hold the lower cover 215 of the lamp with their palm or grasp the outer edge of the rotating main housing 21 and push it upwards. With the gap set between the upper cover 1 of the lamp and the rotating main body 2 of the lamp, the rotating main body 2 of the lamp can move towards the upper cover 1 of the lamp. The rotary press key 311 of the rotary press encoder 31 is compressed, triggering the switching function of adjusting the color temperature or light intensity, such as adjusting to the color temperature mode.

[0066] After adjusting to the color temperature mode, the color temperature value can be further adjusted. The user can hold the lower cover 215 of the lamp with their palm or grasp the outer edge of the rotating main shell 21 to rotate the lamp body 2 relative to the upper cover 1. Through the setting of the positioning surface, the rotary press button 311 can cooperate with the positioning groove 103, so that the rotary press encoder 31 can accurately obtain the rotation angle information, thereby realizing stepless adjustment of the color temperature.

[0067] As can be seen from the above, the beneficial effects of this utility model are: by adopting its structure, it can effectively solve the problem that the existing lamps use button adjustment, which lacks structural novelty and cannot meet the user's needs. Through the setting of the connecting part and the connecting claw 41, the lamp cover 1 and the lamp rotating body 2 can be rotatably connected. Furthermore, through the setting of the rotation and pressing encoder 31 and the positioning groove 103, the rotation and pressing signals are obtained in real time, replacing the traditional structure method of adjusting by setting buttons on the body. Users can directly perform stepless adjustment and mode switching by rotating or pressing the lamp rotating body 2, eliminating the function adjustment buttons and improving the user experience.

[0068] The specific embodiments described above are preferred embodiments of this utility model, and are not intended to limit the specific scope of this utility model. The scope of this utility model includes but is not limited to the specific embodiments described above. All equivalent changes made in accordance with this utility model are within the protection scope of this utility model.

Claims

1. A portable intelligent eye protection lamp with 360-degree stepless adjustment structure, characterized in that: The device includes a lamp cover and a rotating body. The lower end of the lamp cover has a connecting portion that mates with the rotating body. A connecting platform surrounds the connecting portion. A main control board assembly is fixedly mounted on the rotating body. A rotating connecting frame is fixedly mounted on the upper surface of the main control board assembly. The rotating connecting frame has multiple connecting claws that mate with the connecting portion. These connecting claws are evenly distributed on the upper surface of the connecting platform. The rotating connecting frame is rotatable relative to the connecting portion. A rotary encoder is mounted on the main control board assembly. A positioning groove mates with the rotary encoder in the connecting portion. The rotary encoder, in conjunction with the positioning groove, identifies rotation and pressing signals. A gap is provided between the lamp cover and the rotating body.

2. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 1, characterized in that: The connecting part is a resistance frame fixedly installed on the lower end face of the lamp cover. The connecting platform is installed at the lower end of the resistance frame. A connecting cylinder is installed on the lower end face of the resistance frame. The positioning groove is installed in the connecting cylinder. A rotary pressing key is installed on the rotary pressing encoder. The rotary pressing key is installed in the positioning groove. A positioning surface is installed in the positioning groove. The positioning surface enables the rotary pressing key to rotate synchronously with the positioning groove.

3. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 2, characterized in that: The outer periphery of the resistance frame is provided with a ring of feedback teeth that engage with the connecting claws. The feedback teeth can collide with the connecting claws to generate adjustment feedback.

4. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 1, characterized in that: The rotating body of the lamp also includes a rotating main shell, a battery and a lamp panel assembly and a light-transmitting sealing element. A heat insulation plate is provided in the rotating main shell. The main control board assembly and the battery are located on the upper end surface of the heat insulation plate. The lamp panel assembly is located on the lower end surface of the heat insulation plate. A light-transmitting window is provided at the lower end of the rotating main shell, and the light-transmitting sealing element is located in the light-transmitting window.

5. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 4, characterized in that: The light-transmitting sealing element is provided with a diffuse reflection frosted layer or a concave-convex prism structure, and the cross-sectional area of ​​the light-transmitting window gradually increases from top to bottom.

6. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 4, characterized in that: The lamp board assembly includes a lamp circuit board and a lamp board heat sink. The lower end face of the lamp circuit board is provided with multiple lamp groups, each lamp group including warm light LEDs and cool light LEDs. The lamp board heat sink is provided on the upper end face of the lamp circuit board, and multiple heat sinks are spaced apart on the lamp board heat sink. The lamp board heat sink can improve the heat dissipation capacity of the lamp circuit board.

7. The portable smart eye-care lamp with 360-degree endless adjustment structure according to claim 6, characterized in that: The rotating main shell is provided with a plurality of heat dissipation holes that cooperate with the heat dissipation frame of the lamp panel. A sealing connecting plate is provided extending downward from the lower end of the lamp cover. The rotating main shell is sleeved around the outer periphery of the sealing connecting plate. The plurality of heat dissipation holes can cooperate with the gap at the joint between the rotating main shell and the sealing connecting plate to form air convection inside the product for heat dissipation.

8. The portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure according to claim 6, characterized in that: The lamp panel assembly also includes a light-shielding three-dimensional lampshade, which has multiple light-shielding holes. Each light-shielding hole is matched with a multiple light group. The light-shielding holes are polygonal in shape, and their cross-sectional area gradually increases from top to bottom. The light-shielding holes can block and reflect light rays with an angle greater than a specified angle.

9. The portable intelligent eye-protection lamp with a 360-degree stepless adjustment structure according to claim 1, characterized in that: The lamp cover is provided with a magnetic component, which allows the lamp cover to be fixedly installed in a designated position. 10.The portable smart eye-care lamp with 360-degree endless adjustment structure according to any one of claims 1-9, characterized in that: The main control board assembly includes a main control board body and a power board. The power board is electrically connected to the main control board body. A power control is provided on the power board. A power hole that cooperates with the power control is provided on the rotating body of the lamp. The power control is disposed in the power hole.