Intelligent automatic intense pulsed light therapeutic apparatus
By designing a snap-fit mechanism, an auxiliary mechanism, and an adjustment mechanism, the problems of unstable connection, unclean probe, and imprecise parameter adjustment in existing intense pulsed light therapy devices have been solved. This has enabled rapid connection of the device, dust protection of the probe, and precise parameter adjustment, thereby improving the flexibility of the therapy device and the controllability of the treatment effect.
Patent Information
- Application Number
- CN202511510567.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-01-09
AI Technical Summary
Existing intense pulsed light therapy devices are prone to poor contact due to external pulling, are cumbersome to disassemble and assemble, have probes that cannot be quickly replaced and lack dust protection, and are difficult to finely control parameters, which affects the flexibility of device use and treatment effect.
The device employs a snap-fit mechanism for quick connection and disassembly, an auxiliary mechanism to provide dust protection for the probe, and an adjustment mechanism for fine-tuning parameters. The combination of ball bearings and a return spring ensures connection stability and probe cleanliness, while the combination of an eccentric wheel and an adjustment rod enables precise adjustment of treatment parameters.
It enables quick connection and disassembly of the device, ensures the cleanliness of the probe, improves the flexibility of the treatment device and the controllability of the treatment effect, and adapts to the personalized needs of different patients.
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Figure CN121287286A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intense pulsed light therapy technology, and in particular to an intelligent automated intense pulsed light therapy device. Background Technology
[0002] With the rise of intense pulsed light (IPL) technology and advancements in intelligent technology, medical device manufacturers have begun developing intelligent, automated IPL therapy equipment to meet the demand for multifunctional and personalized treatments. IPL technology is a high-energy, high-brightness light technology capable of penetrating the skin surface and acting on deep tissues; it is used for hair removal, treating pigmentation, dilated blood vessels, and wrinkles. Intelligent technology enables automated control of the equipment, intelligent diagnosis, and personalized treatment plans, improving the accuracy and effectiveness of treatments. However, existing therapeutic devices suffer from several drawbacks in terms of connectivity. Traditional plug-in or threaded connections are prone to poor contact due to external pulling, while threaded connections are cumbersome to install and remove, impacting the flexibility and efficiency of device use. Regarding probe design, most devices use fixed probes, making quick replacement impossible for different treatment needs. Furthermore, they lack dust protection mechanisms, leaving exposed probes susceptible to dust and impurities, reducing treatment effectiveness and posing hygiene risks. In terms of parameter adjustment, existing devices often rely on a single knob or button, making it difficult to achieve precise control over parameters such as spot size and energy density, resulting in inconsistent treatment outcomes. To address these issues, this application proposes an intelligent automated intense pulsed light therapy device. Summary of the Invention
[0003] This invention proposes an intelligent automated intense pulsed light therapy device to solve the technical problems existing in the background art.
[0004] To address the aforementioned issues, this invention proposes an intelligent automated intense pulsed light therapy device, comprising a therapy device body, an auxiliary mechanism, an adjustment mechanism, and a snap-fit mechanism. The therapy device body is composed of a lower shell, a middle frame, and an upper shell. A control panel is placed inside the middle frame, and a snap-fit mechanism is provided on one side of the middle frame. A connecting harness is movably connected to the middle frame through the snap-fit mechanism, and the connecting harness is connected to an external therapy device. An adjustment mechanism is provided inside the middle frame, and an auxiliary mechanism is provided on the side of the middle frame away from the connecting harness. The snap-fit mechanism includes a snap-fit tube, a fifth return spring, a ball, a connector, a gasket, a protrusion, a snap-fit frame, a snap-fit groove, and a limiting groove. A snap-fit tube is fixedly connected to one side of the control panel. A snap-fit frame is sleeved on the surface of the snap-fit tube. A snap-fit groove is opened inside the snap-fit frame. Protrusions are symmetrically arranged inside the snap-fit groove on the snap-fit frame. A fifth return spring is sleeved between the protrusions and the snap-fit tube. A ball groove is circumferentially opened on the side of the snap-fit tube away from the middle frame. Preferably, each ball groove is provided with a ball, a connector is movably connected to one side of the snap-fit bracket, the surface of the connector is provided with a snap-fit groove, a gasket is provided on one side of the connector with the snap-fit groove, the gasket is made of rubber material, the snap-fit groove and the protrusion are mutually engaged with the surface of the ball, and a connecting wire harness is provided on one side of the connector. Preferably, a control switch is provided on the upper housing, and a side button is provided on one side of the middle frame. A temperature sensor is provided on the control panel, and the temperature sensor is electrically connected to the control panel and an external power supply. Preferably, the auxiliary mechanism includes a mounting frame, a first reset spring, a limiting frame, a detachable probe, a dust cover, a limiting block, a guide rail, a second reset spring, a positioning block, a third reset spring, and an inclined block. The mounting frame is fixedly connected to one side of the inner frame. The mounting frame has a mounting groove inside. Multiple guide rails are evenly spaced inside the mounting groove. Limiting blocks are slidably connected on the guide rails. Multiple positioning blocks are evenly spaced on the side of the mounting groove near the limiting block. A third reset spring is provided between the positioning block and the mounting frame. Inclined blocks are provided on both sides of the positioning block. Preferably, a limiting frame is movably connected to the mounting bracket, a first return spring is sleeved between the limiting frame and the mounting bracket, and one end of the limiting frame cooperates with the surface of the inclined block. The mounting groove is movably connected to the limiting block through a positioning block. Preferably, a detachable probe is detachably provided on one side of the middle frame, the size of the detachable probe side is matched with the size of the mounting groove, and a dust cover is movably connected inside the detachable probe, and a second reset spring is provided between the dust cover and the detachable probe; Preferably, the adjustment mechanism includes an adjustment frame, an adjustment pressure plate, a striking block, a fourth return spring, an adjustment groove, a top plate, a rotating shaft, an eccentric wheel, an adjustment rod, and a hinge. The adjustment frame is fixedly connected to one side of the mounting frame, and a hinge is provided on the upper side of the adjustment frame. The adjustment frame is damped and connected to the adjustment pressure plate through the hinge. An adjustment groove is opened inside the adjustment frame, and a striking block is provided on the adjustment groove. The adjustment pressure plate has an L-shaped structure, and the adjustment pressure plate and the striking block cooperate with each other. A fourth return spring is sleeved between the striking block and the adjustment frame. Preferably, a top plate is provided in the adjustment groove on the side of the striking block away from the adjustment pressure plate, and a guide rod is fixedly connected in the adjustment groove. The top plate is located on the guide rod. A rotating shaft is provided inside the adjustment groove. An eccentric wheel is movably connected to the adjustment groove through the rotating shaft. An adjustment rod is slidably connected to the side of the adjustment groove near the eccentric wheel. The adjustment rod and the eccentric wheel cooperate with each other. The above-described technical solution of the present invention has the following beneficial technical effects: 1. When connecting the main body of the therapeutic device to an external therapeutic device, the user brings the connector close to the snap-fit bracket, aligning the connector with the snap-fit groove inside the bracket. During this process, the ball bearings are forced inward into the ball bearing groove, allowing the connector to be inserted smoothly. Once the connector is fully inserted, the restoring force of the spring pushes the protrusion into the recess of the snap-fit groove, thereby locking the connector and ensuring that it will not fall off accidentally. The cooperation between the ball bearings and the snap-fit groove also helps to fix the position of the connector. When disassembly is required, the user only needs to apply a certain amount of force to overcome the restoring force of the spring, and the ball bearings will move outward, releasing the lock on the connector. The connector can then be easily pulled out, achieving quick disassembly.
[0005] 2. The user inserts the detachable probe into the mounting slot, ensuring it matches the size of the slot. During insertion, the limiting block slides along the guide rail to help position the detachable probe. Under the pressure of the detachable probe and the action of the first return spring, the limiting bracket can move downwards or upwards. When the probe is fully inserted, the cooperation between the limiting bracket and the inclined block will lock the probe to prevent it from accidentally falling off. The dust cover inside the detachable probe can effectively block external dust and keep the detachable probe clean. The dust cover is connected by the second return spring, allowing it to open automatically during use and close after use.
[0006] 3. In the default state, the fourth reset spring is in a relaxed state, maintaining a certain distance between the striking block and the adjusting plate. The user adjusts the adjusting plate by pressing it. The adjusting plate is damped and connected to the adjusting frame via a hinge. When the striking block approaches the adjusting plate, the adjusting plate moves accordingly, pressing down on the striking block. The striking block drives the top plate to move horizontally on the guide rod. The guide rod ensures stability throughout the adjustment process, preventing deviation caused by striking or pressure changes. Applying pressure, the top plate drives the eccentric wheel on the rotating shaft to change its angle. As the eccentric wheel rotates, its eccentric part pushes the adjusting rod to slide. The sliding of the adjusting rod is directly related to the adjustment of various parameters of the therapeutic instrument, such as the spot size and energy density. By controlling the degree of pressure applied by the user, the rotation angle of the eccentric wheel can be precisely adjusted, thereby achieving fine adjustment of the treatment parameters to adapt to the treatment needs of different patients and improve the controllability and targeting of the treatment effect. Attached Figure Description
[0007] Figure 1 This is a three-dimensional view of an intelligent automated intense pulsed light therapy device proposed in this invention.
[0008] Figure 2 This is an exploded view of an intelligent automated intense pulsed light therapy device proposed in this invention.
[0009] Figure 3This is a schematic diagram of the auxiliary mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0010] Figure 4 This is a side view of the mounting bracket in the auxiliary mechanism of an intelligent automated intense pulsed light therapy device proposed in this invention.
[0011] Figure 5 This is a schematic diagram of the internal structure of the auxiliary mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0012] Figure 6 This is a schematic diagram of the positioning block of the auxiliary mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0013] Figure 7 This is a schematic diagram of the adjustment mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0014] Figure 8 This is a schematic diagram of the snap-fit mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0015] Figure 9 This is a disassembly diagram of the snap-fit mechanism in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0016] Figure 10 This is a schematic diagram of the connecting wire harness in an intelligent automated intense pulsed light therapy device proposed in this invention.
[0017] Reference numerals: 1. Lower housing; 2. Upper housing; 3. Middle frame; 4. Auxiliary mechanism; 401. Mounting bracket; 402. First return spring; 403. Limiting bracket; 404. Removable probe; 405. Dust cover; 406. Limiting block; 407. Guide rail; 408. Second return spring; 409. Positioning block; 410. Third return spring; 411. Inclined block; 412. Mounting groove; 5. Side button; 6. Control switch; 7. Adjustment mechanism; 701. Adjustment bracket; 702. Adjustment pressure plate; 70 3. Striking block; 704. Fourth return spring; 705. Adjustment groove; 706. Top plate; 707. Rotating shaft; 708. Eccentric wheel; 709. Adjusting rod; 710. Hinge; 711. Guide rod; 8. Snap-fit mechanism; 801. Snap-fit tube; 802. Fifth return spring; 803. Ball bearing; 804. Connector; 805. Washer; 806. Protrusion; 807. Snap-fit bracket; 808. Snap-fit groove; 809. Limiting groove; 810. Ball bearing groove; 9. Control panel; 10. Connecting harness. Detailed Implementation
[0018] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0019] Example 1
[0020] Reference Figure 1 , Figure 2 , Figure 8 and Figure 9 This embodiment provides an intelligent automated intense pulsed light therapy device, including a therapy device body, an auxiliary mechanism 4, an adjustment mechanism 7, and a snap-fit mechanism 8. The therapy device body is composed of a lower shell 1, a middle frame 3, and an upper shell 2. A control panel 9 is placed inside the middle frame 3, and a snap-fit mechanism 8 is provided on one side of the middle frame 3. A connecting wire harness 10 is movably connected to the middle frame 3 through the snap-fit mechanism 8. The connecting wire harness 10 is connected to an external therapy device. An adjustment mechanism 7 is provided inside the middle frame 3, and an auxiliary mechanism 4 is provided on the side of the middle frame 3 away from the connecting wire harness 10. The upper housing 2 is provided with a control switch 6, and the middle frame 3 is provided with a side button 5. The control panel 9 is provided with a temperature sensor, which is electrically connected to the control panel 9 and an external power supply.
[0021] In this embodiment, specifically, the snap-fit mechanism 8 includes a snap-fit tube 801, a fifth return spring 802, a ball bearing 803, a connector 804, a gasket 805, a protrusion 806, a snap-fit bracket 807, a snap-fit groove 808, and a limiting groove 809. The snap-fit tube 801 is fixedly connected to one side of the control panel 9. The snap-fit bracket 807 is sleeved on the surface of the snap-fit tube 801. The snap-fit groove 808 is opened inside the snap-fit bracket 807. The protrusions 806 are symmetrically arranged inside the snap-fit groove 808 on the snap-fit bracket 807. The fifth return spring 802 is sleeved between the protrusions 806 and the snap-fit tube 801. The ball bearing groove 810 is circumferentially opened on the side of the snap-fit tube 801 away from the middle frame 3. Each ball groove 810 is provided with a ball 803. A connector 804 is movably connected to one side of the snap-fit bracket 807. A snap-fit groove 808 is opened on the surface of the connector 804. A gasket 805 is provided on one side of the snap-fit groove 808 of the connector 804. The gasket 805 is made of rubber material. The snap-fit groove 808 and the protrusion 806 are in mutual cooperation with the surface of the ball 803. A connecting wire harness 10 is provided on one side of the connector 804.
[0022] The user brings the connector 804 close to the snap-fit bracket 807, aligning the connector 804 with the snap-fit groove 808 inside the snap-fit bracket 807. During this process, the ball bearing 803 is forced inward into the ball groove 810, allowing the connector 804 to be inserted smoothly. Once the connector 804 is fully inserted, the restoring force of the spring 802 pushes the protrusion 806 into the recess of the snap-fit groove 808, thereby locking the connector 804 and ensuring that it will not accidentally fall off. The cooperation between the ball bearing 803 and the snap-fit groove 808 also helps to fix the position of the connector 804. When disassembly is required, the user only needs to apply a certain force to overcome the restoring force of the spring 802, and the ball bearing 803 will move outward, releasing the lock on the connector 804. The connector 804 can then be easily pulled out, achieving quick disassembly.
[0023] Example 2
[0024] Reference Figures 3-6 This embodiment is based on the previous embodiment, but differs from the previous embodiment in that the auxiliary mechanism 4 includes a mounting frame 401, a first reset spring 402, a limiting frame 403, a detachable probe 404, a dust cover 405, a limiting block 406, a guide rail 407, a second reset spring 408, a positioning block 409, a third reset spring 410, and an inclined block 411. The mounting frame 401 is fixedly connected to one side of the inner frame 3. The mounting frame 401 has a mounting groove 412 inside. Multiple guide rails 407 are evenly arranged inside the mounting groove 412. The limiting block 406 is slidably connected on the guide rail 407. Multiple positioning blocks 409 are evenly arranged on one side of the mounting groove 412 near the limiting block 406. The third reset spring 410 is arranged between the positioning block 409 and the mounting frame 401. Inclined blocks 411 are arranged on both sides of the positioning block 409. The mounting bracket 401 is movably connected to the limiting bracket 403. A first return spring 402 is sleeved between the limiting bracket 403 and the mounting bracket 401. One end of the limiting bracket 403 cooperates with the surface of the inclined block 411. The mounting groove 412 is movably connected to the limiting block 406 through the positioning block 409. A detachable probe 404 is detachably provided on one side of the middle frame 3. The size of the detachable probe 404 matches the size of the mounting groove 412. A dust cover 405 is movably connected inside the detachable probe 404. A second reset spring 408 is provided between the dust cover 405 and the detachable probe 404. The user inserts the detachable probe 404 into the mounting slot 412, ensuring that it matches the size of the slot. During insertion, the limiting block 406 slides along the guide rail 407 to help position the detachable probe 404. The limiting bracket 403 can move downward or upward under the action of the first return spring 402 when the detachable probe 404 is pressed down. When the probe is fully inserted, the cooperation between the limiting bracket 403 and the inclined block 411 will lock the probe to prevent it from falling off accidentally. The dust cover 405 inside the detachable probe 404 can effectively block external dust and keep the detachable probe 404 clean. The dust cover 405 is connected by the second return spring 408, allowing it to open automatically during use and close after use.
[0025] Example 3
[0026] Reference Figure 4 and Figure 7 This embodiment is based on the previous embodiment, but differs from the previous embodiment in that the adjustment mechanism 7 includes an adjustment frame 701, an adjustment pressure plate 702, a striking block 703, a fourth return spring 704, an adjustment groove 705, a top plate 706, a rotating shaft 707, an eccentric wheel 708, an adjustment rod 709, and a hinge 710. The adjustment frame 701 is fixedly connected to one side of the mounting frame 401, and a hinge 710 is provided on the upper side of the adjustment frame 701. The adjustment frame 701 is damped and connected to the adjustment pressure plate 702 through the hinge 710. An adjustment groove 705 is provided inside the adjustment frame 701, and a striking block 703 is provided on the adjustment groove 705. The adjustment pressure plate 702 has an L-shaped structure, and the adjustment pressure plate 702 and the striking block 703 cooperate with each other. A fourth return spring 704 is sleeved between the striking block 703 and the adjustment frame 701. The striking block 703 has a top plate 706 on the side away from the adjusting pressure plate 702 in the adjusting groove 705, and a guide rod 711 is fixedly connected in the adjusting groove 705. The top plate 706 is located on the guide rod 711. A rotating shaft 707 is provided inside the adjusting groove 705. An eccentric wheel 708 is movably connected to the adjusting groove 705 through the rotating shaft 707. An adjusting rod 709 is slidably connected to the side of the adjusting groove 705 near the eccentric wheel 708. The adjusting rod 709 and the eccentric wheel 708 cooperate with each other. In the default state, the fourth return spring 704 is in a relaxed state, maintaining a certain distance between the striking block 703 and the adjusting plate 702. The user adjusts the adjusting plate 702 by pressing it. The adjusting plate 702 is damped and connected to the adjusting frame 701 via a hinge. When the striking block 703 approaches the adjusting plate 702, the adjusting plate 702 moves accordingly, pressing down on the striking block 703. The striking block 703 then moves the top plate 706 horizontally along the guide rod 711. The guide rod 711 ensures stability throughout the adjustment process and prevents damage from impacts. The pressure applied by the offset caused by the impact or pressure change drives the eccentric wheel 708 on the rotating shaft 707 to change its angle. As the eccentric wheel 708 rotates, its eccentric part pushes the adjusting rod 709 to slide. The sliding of the adjusting rod 709 is directly related to the adjustment of various parameters of the therapeutic instrument, such as the spot size and energy density. By controlling the degree of pressure of the adjusting plate 702, the user can achieve precise adjustment of the rotation angle of the eccentric wheel 708, thereby achieving fine adjustment of the treatment parameters to adapt to the treatment needs of different patients and improve the controllability and targeting of the treatment effect.
[0027] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0028] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An intelligent automated intense pulsed light therapy device, characterized in that, The device includes a treatment instrument body, an auxiliary mechanism (4), an adjustment mechanism (7), and a snap-fit mechanism (8). The treatment instrument body is composed of a lower shell (1), a middle frame (3), and an upper shell (2). A control panel (9) is placed inside the middle frame (3), and a snap-fit mechanism (8) is provided on one side of the middle frame (3). A connecting wire harness (10) is movably connected to the middle frame (3) through the snap-fit mechanism (8). The connecting wire harness (10) is connected to an external treatment instrument device. An adjustment mechanism (7) is provided inside the middle frame (3), and an auxiliary mechanism (4) is provided on the side of the middle frame (3) away from the connecting wire harness (10). The snap-fit mechanism (8) includes a snap-fit tube (801), a fifth return spring (802), a ball (803), a connector (804), a gasket (805), a protrusion (806), a snap-fit bracket (807), a snap-fit groove (808), and a limiting groove (809). The snap-fit tube (801) is fixedly connected to one side of the control panel (9). The snap-fit bracket (807) is sleeved on the surface of the snap-fit tube (801). The snap-fit groove (808) is opened inside the snap-fit bracket (807). The protrusion (806) is symmetrically arranged inside the snap-fit groove (808) of the snap-fit bracket (807). The fifth return spring (802) is sleeved between the protrusion (806) and the snap-fit tube (801). The ball groove (810) is opened in a ring on the side of the snap-fit tube (801) away from the middle frame (3).
2. The intelligent automated intense pulsed light therapy device according to claim 1, characterized in that, Each ball groove (810) is provided with a ball (803). A connector (804) is movably connected to one side of the snap-fit bracket (807). A snap-fit groove (808) is opened on the surface of the connector (804). A gasket (805) is provided on one side of the snap-fit groove (808) of the connector (804). The gasket (805) is made of rubber material. The snap-fit groove (808) and the protrusion (806) are in mutual cooperation with the surface of the ball (803). A connecting wire harness (10) is provided on one side of the connector (804).
3. The intelligent automated intense pulsed light therapy device according to claim 1, characterized in that, The auxiliary mechanism (4) includes a mounting bracket (401), a first reset spring (402), a limit bracket (403), a detachable probe (404), a dust cover (405), a limit block (406), a guide rail (407), a second reset spring (408), a positioning block (409), a third reset spring (410), and an inclined block (411). The mounting bracket (401) is fixedly connected to one side of the inner frame (3). The mounting bracket (401) has a mounting groove (412) inside. Multiple guide rails (407) are arranged at equal intervals inside the mounting groove (412). Limit blocks (406) are slidably connected on the guide rails (407). Multiple positioning blocks (409) are arranged at equal intervals on the side of the mounting groove (412) near the limit block (406). A third reset spring (410) is arranged between the positioning block (409) and the mounting bracket (401). Inclined blocks (411) are arranged on both sides of the positioning block (409).
4. The intelligent automated intense pulsed light therapy device according to claim 3, characterized in that, The mounting bracket (401) is movably connected to the limiting bracket (403), and a first reset spring (402) is sleeved between the limiting bracket (403) and the mounting bracket (401). One end of the limiting bracket (403) cooperates with the surface of the inclined block (411), and the mounting groove (412) is movably connected to the limiting block (406) through the positioning block (409).
5. The intelligent automated intense pulsed light therapy device according to claim 3, characterized in that, A detachable probe (404) is detachably provided on one side of the middle frame (3). The size of the detachable probe (404) matches that of the mounting groove (412). A dust cover (405) is movably connected inside the detachable probe (404). A second reset spring (408) is provided between the dust cover (405) and the detachable probe (404).
6. The intelligent automated intense pulsed light therapy device according to claim 1, characterized in that, The adjustment mechanism (7) includes an adjustment frame (701), an adjustment pressure plate (702), a striking block (703), a fourth return spring (704), an adjustment groove (705), a top plate (706), a rotating shaft (707), an eccentric wheel (708), an adjustment rod (709), and a hinge (710). The adjustment frame (701) is fixedly connected to one side of the mounting frame (401), and a hinge (710) is provided on the upper side of the adjustment frame (701). (701) An adjusting pressure plate (702) is damped by a hinge (710). An adjusting groove (705) is provided inside the adjusting frame (701). A striking block (703) is provided on the adjusting groove (705) of the adjusting frame (701). The adjusting pressure plate (702) has an L-shaped structure. The adjusting pressure plate (702) and the striking block (703) cooperate with each other. A fourth reset spring (704) is sleeved between the striking block (703) and the adjusting frame (701).
7. The intelligent automated intense pulsed light therapy device according to claim 6, characterized in that, The striking block (703) is provided with a top plate (706) in the adjustment groove (705) on the side away from the adjustment plate (702), and a guide rod (711) is fixedly connected in the adjustment groove (705). The top plate (706) is located on the guide rod (711). A rotating shaft (707) is provided inside the adjustment groove (705). An eccentric wheel (708) is movably connected to the adjustment groove (705) through the rotating shaft (707). An adjustment rod (709) is slidably connected to the side of the adjustment groove (705) near the eccentric wheel (708). The adjustment rod (709) and the eccentric wheel (708) cooperate with each other.
8. The intelligent automated intense pulsed light therapy device according to claim 1, characterized in that, The upper housing (2) is provided with a control switch (6), and the middle frame (3) is provided with a side button (5). The control panel (9) is provided with a temperature sensor, which is electrically connected to the control panel (9) and an external power supply.
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