Intelligent adjustable red light therapeutic instrument
By introducing a top telescopic shielding circulation mechanism and a side vibration clamping and placement mechanism in the red light treatment instrument, the problem that the red light treatment instrument cannot limit the irradiation range and function is solved, and the convenience of prevention of light pollution and drug management is achieved, and the treatment effect and convenience of use are improved.
Patent Information
- Application Number
- CN202510330456.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During use, the red light treatment device cannot limit the irradiation range of red light, resulting in light pollution. It also has a single function and cannot be conveniently used with drugs for auxiliary treatment, which reduces the effectiveness and convenience of use.
An intelligent adjustable red light therapy instrument was designed, using a top telescopic shielding circulation mechanism to limit the red light irradiation range, and conveniently manage drugs through a side vibration clamping and placement mechanism, expanding the function of the red light therapy instrument.
It effectively prevents light pollution during the use of the red light treatment device and improves the treatment effect. Through convenient drug management, it improves the convenience and safety of use, and at the same time improves the cleaning efficiency of the equipment.
Smart Images

Figure CN120022538A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and specifically to an intelligent adjustable red light therapeutic apparatus. Background Technique
[0002] A red light therapeutic apparatus is a new type of light therapy device that can be applied in hospitals and families. Its basic principle is to obtain a red visible light band mainly in the range of 600 - 700 nm through a special filter. This band has a deep penetration into the human body, better curative effects, a large light spot, and provides a better treatment method for treating some large - area diseases. The light output is divided into "strong" and "weak" gears to adapt to patients with different constitutions. For this reason, the Chinese patent discloses an adjustable red light irradiation device for a red light therapeutic apparatus, with the application number 202420011071.0. This device can make the lifting assembly lift the support frame through the cooperation of the red light therapeutic apparatus and the frame, so as to adjust the treatment height of the red light irradiation probe.
[0003] However, during the use of the current red light therapeutic apparatus, the irradiation range of the red light cannot be restricted, resulting in the random diffusion of the red light during the patient's treatment, causing light pollution to the surrounding environment. At the same time, the functions of the red light therapeutic apparatus are single, and it cannot conveniently cooperate with drugs for adjuvant treatment during the red light treatment process, thereby reducing the use effect and convenience of the red light therapeutic apparatus. Summary of the Invention
[0004] The present invention provides an intelligent adjustable red light therapeutic apparatus, which can effectively solve the problems raised in the above - mentioned background technique, that is, during the use of the red light therapeutic apparatus, the irradiation range of the red light cannot be restricted, resulting in the random diffusion of the red light during the patient's treatment, causing light pollution to the surrounding environment. At the same time, the functions of the red light therapeutic apparatus are single, and it cannot conveniently cooperate with drugs for adjuvant treatment during the red light treatment process, thereby reducing the use effect and convenience of the red light therapeutic apparatus.
[0005] To achieve the above - mentioned purpose, the present invention provides the following technical solution: An intelligent adjustable red light therapeutic apparatus includes a main body of the red light therapeutic apparatus. In the middle of one side of the top surface of the main body of the red light therapeutic apparatus, an adjusting robotic arm is fixedly installed. At the end of the top of the adjusting robotic arm, a red light irradiation probe is movably installed. In the middle of the inclined surface of one side of the top of the main body of the red light therapeutic apparatus, a touch panel is fixedly installed.
[0006] A top telescopic shielding circulation mechanism is arranged outside the red light irradiation probe. The telescopic shielding circulation mechanism is used to restrict the illumination range of the red light therapeutic apparatus and evenly apply medicine to the affected area during the red light treatment process to expand the functions of the red light therapeutic apparatus.
[0007] The top telescopic shielding circulation mechanism includes a mounting collar.
[0008] The outer bottom of the red light irradiation probe is fixedly connected with a mounting collar, the outer side of the mounting collar is provided with a splicing slot, the inside of the splicing slot is connected with a splicing card block, and the bottom end of the splicing card block is connected with a connecting bottom ring;
[0009] The bottom surface of the connecting bottom ring is connected to a sealing telescopic rubber sleeve, a reinforcing structure ring is bonded to the outside of the sealing telescopic rubber sleeve, a sealing air ring is bonded to the bottom end of the sealing telescopic rubber sleeve, a mounting side tube is embedded and installed on the top edge of the mounting ring, a sealing air guide valve is fixedly connected to the top of the mounting side tube, and an elastic exhaust bag is fixedly connected to one side of the sealing air guide valve through a pipeline.
[0010] Preferably, the red light irradiation probe is powered by an external power supply, the top surface of the fixing rubber strip is tightly fitted with the bottom surface of the mounting ring, and the outer side of the sealing rubber ring is tightly fitted with the bottom surface of the mounting ring.
[0011] Preferably, the sealed telescopic rubber sleeve is made of an opaque and airtight material, a cavity is provided inside the elastic air bag, and the reinforcing structure ring is made of hard plastic.
[0012] Preferably, a fixing rubber strip is bonded to the top surface of the connecting bottom ring, and a sealing rubber ring is bonded to the inner ring of the connecting bottom ring;
[0013] The top of the sealed air guide valve is fixedly connected to an air guide front pipe, the end of the air guide front pipe is fixedly connected to a top processing box at a position corresponding to the top of the red light irradiation probe, a sealed mounting block is embedded and installed at one end inside the top processing box, a circulating fan is fixedly installed in the middle of the inner side of the sealed mounting block, a high-pressure exhaust fan is embedded and installed in the middle of the top surface of the sealed mounting block, the circulating fan and the high-pressure exhaust fan are powered by an external power supply, and a heating inner net is embedded and installed at the other end inside the top processing box;
[0014] The middle of one end of the outer side of the top processing box away from the front air pipe is fixedly connected to the rear air pipe, and the bottom ends of the front air pipe and the rear air pipe are fixedly connected to the bottom positions of the mounting rings, and the interior of the curved air box is filled with filter inner cotton strips;
[0015] An air pressure sensor is installed on one side edge of the top surface of the mounting collar, and a liquid conduction pump is fixedly installed on the other side edge of the top surface of the mounting collar. The liquid conduction pump is powered by an external power supply, and an output end of the liquid conduction pump is fixedly connected to an atomizing nozzle through a pipeline, and a medicine storage bottle is installed on the top liquid inlet end of the liquid conduction pump by clamping.
[0016] Preferably, the inner cavity of the top processing box is interconnected with the inner cavity of the sealing telescopic rubber sleeve through the front air guide tube and the rear air guide tube, and the inner filter cotton strip is provided with fine ventilation channels, and a small traction buckle is provided in the middle of the bottom surface of the inner filter cotton strip.
[0017] Preferably, the atomizing nozzle is installed by passing a thread through a mounting collar, and the bottom of the atomizing nozzle is bent toward the center of the bottom surface of the red light irradiation probe.
[0018] Preferably, a side vibration clamping and placing mechanism is provided on the side of the main body of the red light therapy device, and the side vibration clamping and placing mechanism is used to store the liquid medicine to be used in the red light therapy process, and to remind the order of medicine use during the process of medicine placement;
[0019] The side vibration clamping and placing mechanism includes a mounting side strip;
[0020] The top positions of both sides of the main body of the red light therapy device are fixedly connected with mounting side strips, and the mounting side strips are connected with mounting swing plates through connecting bolts. A mounting inclined groove is provided through the middle of the top surface of the mounting swing plate, and the two sides of the bottom of the mounting swing plate are evenly and evenly embedded with lighting bottom lamps;
[0021] A plug-in installation plate is embedded and installed inside the installation inclined groove, and circular placement grooves are evenly opened on both sides of the top of the plug-in installation plate. A buffer rubber ring is bonded to the top of the inner side of the circular placement groove, and a limited bottom net is embedded and installed at the bottom of the inner side of the circular placement groove. A fixed arc plate is arranged at a position on one side of the inner cavity of the plug-in installation plate corresponding to the circular placement groove;
[0022] A sliding plate is slidably installed on the middle inner side of the plug-in mounting plate, a return spring is evenly embedded in one end of the sliding plate, sliding blocks are evenly fixedly installed on both sides of the sliding plate corresponding to the opposite positions of the fixed arc plates, a connecting horizontal axis is fixedly connected to the middle position of one end of the sliding plate, a driving end plate is fixedly connected to the end of the connecting horizontal axis corresponding to the outer end of the plug-in mounting plate, a driving handle is embedded in the end of the plug-in mounting plate corresponding to the outer position of the driving end plate, and a vibration motor is fixedly installed in the middle of one end of the bottom surface of the mounting swing plate.
[0023] Preferably, the two sides of the end of the mounting swing plate are tightly fitted with the inner side of the mounting side strip, and the inclination angle of the mounting swing plate is adjusted by rotating the connecting bolt. The lighting bottom light is powered by an external power supply, and the signal input end of the lighting bottom light and the signal output end of the touch panel are interconnected.
[0024] Preferably, the top surface of the plug-in mounting plate is flush with the top surface of the mounting swing plate, the position of the circular groove corresponds to the position of the lighting bottom lamp, the buffer rubber ring is made of elastic material, and the top edge of the buffer rubber ring is provided with an arc chamfer.
[0025] Preferably, the end of the return spring is fixedly connected to the plug-in mounting plate, the end of the connecting horizontal axis passes through the side wall of the plug-in mounting plate, and both ends of the back side of the driving end plate are provided with arc chamfers.
[0026] Compared with the prior art, the present invention has the following beneficial effects: the present invention has a scientific and reasonable structure and is safe and convenient to use:
[0027] 1. A top telescopic shielding circulation mechanism is provided. Through the mutual cooperation between the components inside the top telescopic shielding circulation mechanism, the use and adjustment process of the red light therapy device is optimized. The illumination range of the red light irradiation probe is restricted by a sealed telescopic rubber sleeve to prevent the red light therapy device from leaking light during use, effectively preventing light pollution during the use of the red light therapy device. At the same time, through the cooperation between the top processing box and the components connected thereto, the corresponding medicine can be sprayed onto the patient's affected part during the red light therapy, and the temperature of the circulating airflow inside the sealed telescopic rubber sleeve is adjusted to keep the temperature of the affected area within a suitable temperature range. Then, the absorption rate and self-recovery rate of the medicine solution by the patient's affected part are promoted through temperature adjustment and red light irradiation, thereby effectively improving the use effect of the red light therapy device;
[0028] At the same time, the snap-on connection between the mounting ring and the connecting bottom ring makes the installation and disassembly process of the sealing telescopic rubber sleeve and the components thereon more convenient, so that the sealing telescopic rubber sleeve can be removed for cleaning after each use of the red light therapy device, thereby effectively improving the efficiency and convenience of cleaning the red light therapy device, and the circulating airflow inside the sealing telescopic rubber sleeve is intercepted and filtered by the air guide bend box and the filter inner cotton strip, effectively preventing the trace liquid particles dispersed in the circulating airflow from entering the circulating pipeline, further improving the overall cleanliness and safety of the red light therapy device during use;
[0029] In addition, the fixing process of the sealed telescopic rubber sleeve is assisted by strengthening the structural ring and the sealing air ring, ensuring that the overall shape of the sealed telescopic rubber sleeve and the stability of the bottom connection can be maintained when the sealed telescopic rubber sleeve is adsorbed to the periphery of the patient's affected area through negative pressure, further improving the convenience of using the red light therapy device, and through the mutual cooperation between the air pressure sensor and the high-pressure exhaust fan, the pressure inside the sealed telescopic rubber sleeve can be continuously maintained within an appropriate range when the air flow inside the top treatment box and the sealed telescopic rubber sleeve is locally circulated, so as to prevent the sealed telescopic rubber sleeve from falling off during use, further improving the installation stability during the use of the red light therapy device.
[0030] 2. A side vibration clamping and placing mechanism is provided. The mutual cooperation between the components inside the side vibration clamping and placing mechanism optimizes the placement and taking process of the medicine during the red light therapy. The mutual cooperation between the installation swing plate and the insertion and withdrawal installation plate enables the medicine required during the red light therapy to be quickly and conveniently placed on the side of the main body of the red light therapy device, so that medical staff can quickly take the medicine, and the top of the required medicine bottle is clearly reminded by the lighting bottom light, so that medical staff can select the required medicine more quickly during use, and the medicine placed on the installation swing plate is continuously vibrated by the vibration motor, which effectively prevents the precipitation and separation phenomenon during the placement of the medicine, thereby effectively improving the convenience of taking the medicine during the use of the red light therapy device;
[0031] At the same time, through the mutual cooperation between the fixed arc plate and the sliding block, when the medicine bottle is placed inside the circular groove for transportation, the mechanical clamping can make the medicine bottle fixed and clamped more firmly, making the transfer process of the medicine solution needed during the red light therapy faster and more convenient. At the same time, the linkage structure design of the driving end plate and the driving handle makes the clamping and separation process of the medicine bottle on the plug-in mounting plate more convenient, further improving the convenience and fluency of using the red light therapy device.
[0032] To summarize, the use process of the red light therapy device is optimized through the mutual cooperation between the components inside the top telescopic shielding circulation mechanism and the side vibration clamping and placement mechanism, thereby ensuring that various types of medicines can be quickly accessed during the treatment process, and the mutual cooperation between the components on the sealed telescopic rubber sleeve can isolate the light and liquid spray generated during the red light therapy process, thereby effectively preventing light pollution and drug pollution to the surrounding area during the treatment process, effectively improving the safety and convenience of the use of the red light therapy device, and at the same time, by allowing the red light therapy device to be quickly cleaned during use, the convenience of using the red light therapy device is further improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention.
[0034] In the attached picture:
[0035] Figure 1 It is a three-dimensional structural schematic diagram of the present invention;
[0036] Figure 2 It is a structural schematic diagram of the installation of the sealing telescopic rubber sleeve of the present invention;
[0037] Figure 3 This is a schematic diagram of the structure of the installation of the inner filter cotton strip of the present invention;
[0038] Figure 4 It is a schematic diagram of the structure of the top telescopic shielding circulation mechanism of the present invention;
[0039] Figure 5 It is a structural schematic diagram of the installation of the air guide rear pipe of the present invention;
[0040] Figure 6 It is a structural schematic diagram of the installation of the heating inner network of the present invention;
[0041] Figure 7 It is a structural schematic diagram of the installation of the fixed rubber strip of the present invention;
[0042] Figure 8 It is a structural schematic diagram of the side vibration clamping and placing mechanism of the present invention;
[0043] Fig. 9 It is a structural schematic diagram of the installation of the plug-in installation plate of the present invention;
[0044] Fig.10 It is a structural schematic diagram of the installation of the lighting bottom lamp of the present invention;
[0045] Fig.11 It is a structural schematic diagram of the installation of the sliding block of the present invention;
[0046] Numbers in the figure: 1. Red light therapy device body; 2. Adjustment of the mechanical arm; 3. Red light irradiation probe; 4. Touch panel;
[0047] 5. Top telescopic shielding circulation mechanism; 501. Installation ring; 502. Splicing slot; 503. Splicing block; 504. Connecting bottom ring; 505. Fixed rubber strip; 506. Sealing rubber ring; 507. Sealing telescopic rubber sleeve; 508. Strengthening structure ring; 509. Sealing air ring; 510. Installing side pipe; 511. Sealing air guide valve; 512. Elastic exhaust bag; 513. Air guide front pipe; 514. Top processing box; 515. Sealing installation block; 516. Circulating fan; 517. High-pressure exhaust fan; 518. Heating inner net; 519. Air guide rear pipe; 520. Air guide bend box; 521. Filter inner cotton strip; 522. Air pressure sensor; 523. Liquid guide pump; 524. Atomizing nozzle; 525. Medicine storage bottle;
[0048] 6. Side vibration clamping and placing mechanism; 601. Install side strips; 602. Install swing plate; 603. Install inclined groove; 604. Illuminating bottom lamp; 605. Insert and pull installation plate; 606. Place circular groove; 607. Buffer rubber ring; 608. Limit bottom net; 609. Fixed arc plate; 610. Sliding plate; 611. Reset spring; 612. Sliding block; 613. Connecting horizontal axis; 614. Driving end plate; 615. Driving handle; 616. Vibration motor. DETAILED DESCRIPTION
[0049] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0050] Example: Figure 1-11 As shown, the present invention provides a technical solution, an intelligent adjustable red light therapy device, comprising a red light therapy device body 1, an adjustment mechanical arm 2 is fixedly installed in the middle of one side of the top surface of the red light therapy device body 1, a red light irradiation probe 3 is movably installed at the top end of the adjustment mechanical arm 2, and a touch panel 4 is fixedly installed in the middle of the inclined surface of one side of the top of the red light therapy device body 1;
[0051] A top telescopic shielding circulation mechanism 5 is arranged outside the red light irradiation probe 3, and the telescopic shielding circulation mechanism 5 is used to limit the illumination range of the red light therapy device and evenly apply medicine to the affected area during the red light therapy, so as to expand the function of the red light therapy device;
[0052] The top telescopic shielding circulation mechanism 5 includes a mounting collar 501, a splicing slot 502, a splicing block 503, a connecting bottom ring 504, a fixing rubber strip 505, a sealing rubber ring 506, a sealing telescopic rubber sleeve 507, a reinforcing structure ring 508, a sealing air ring 509, a mounting side pipe 510, a sealing air guide valve 511, an elastic exhaust bag 512, an air guide front pipe 513, a top processing box 514, a sealing mounting block 515, a circulating fan 516, a high-pressure exhaust fan 517, a heating inner net 518, an air guide rear pipe 519, an air guide bent box 520, a filtering inner cotton strip 521, an air pressure sensor 522, a liquid guide pump 523, an atomizing nozzle 524 and a medicine storage bottle 525;
[0053] A mounting collar 501 is fixedly connected to the bottom of the outer side of the red light irradiation probe 3, and splicing slots 502 are evenly and equidistantly provided on the outer side of the mounting collar 501 along the circumferential direction, and splicing blocks 503 are movably connected inside the splicing slots 502. A connecting bottom ring 504 is fixedly connected to the bottom of the mounting collar 501 at the bottom ends of the plurality of splicing blocks 503, and a fixing rubber strip 505 is bonded to the top surface of the connecting bottom ring 504 at the gap on the side of the splicing block 503 corresponding to the top surface of the connecting bottom ring 504, and a sealing rubber ring 506 is tightly bonded to the top of the inner ring of the connecting bottom ring 504. The red light irradiation probe 3 is powered by an external power supply, and the top surface of the fixing rubber strip 505 is tightly fitted to the bottom surface of the mounting collar 501, and the outer side of the sealing rubber ring 506 is tightly fitted to the bottom surface of the mounting collar 501;
[0054] A sealing telescopic rubber sleeve 507 is fixedly connected to the bottom edge of the connecting bottom ring 504, a reinforcing structure ring 508 is evenly and equidistantly bonded to the outside of the sealing telescopic rubber sleeve 507, a sealing air ring 509 is bonded to the bottom edge of the sealing telescopic rubber sleeve 507, a mounting side tube 510 is embedded and installed at the top edge of the mounting collar 501, a sealing air guide valve 511 is fixedly connected to the top of the mounting side tube 510, and an elastic air bag 512 is fixedly connected to one side of the sealing air guide valve 511 through a pipeline, the sealing telescopic rubber sleeve 507 is made of an opaque and airtight material, a cavity is arranged inside the elastic air bag 512, and the reinforcing structure ring 508 is made of hard plastic;
[0055] The top of the sealed air guide valve 511 is fixedly connected to a front air guide pipe 513, and the end of the front air guide pipe 513 is fixedly connected to a top processing box 514 at a position corresponding to the top of the red light irradiation probe 3. A sealed mounting block 515 is embedded and installed at one end of the top processing box 514, and a circulating fan 516 is fixedly installed in the middle of the inner side of the sealed mounting block 515. A high-pressure exhaust fan 517 is embedded and installed in the middle of the top surface of the sealed mounting block 515. The circulating fan 516 and the high-pressure exhaust fan 517 are powered by an external power supply, and a heating inner net 518 is embedded and installed at the other end of the top processing box 514.
[0056] An air guide rear tube 519 is fixedly connected to the middle of one end of the outer side of the top processing box 514 away from the air guide front tube 513. The bottom ends of the air guide front tube 513 and the air guide rear tube 519 are fixedly connected to the bottom positions of the mounting ring 501. The air guide bent box 520 is filled with a filter inner cotton strip 521. The inner cavity of the top processing box 514 is interconnected with the inner cavity of the sealing telescopic rubber sleeve 507 through the air guide front tube 513 and the air guide rear tube 519. The filter inner cotton strip 521 is provided with fine ventilation channels, and a small traction buckle is provided in the middle of the bottom surface of the filter inner cotton strip 521.
[0057] An air pressure sensor 522 is installed on one side edge of the top surface of the mounting collar 501, and a liquid conduction pump 523 is fixedly installed on the other side edge of the top surface of the mounting collar 501. The liquid conduction pump 523 is powered by an external power supply, and the output end of the liquid conduction pump 523 is fixedly connected to an atomizing nozzle 524 through a pipeline. A medicine storage bottle 525 is installed on the top liquid inlet end of the liquid conduction pump 523 by snap-fitting. The atomizing nozzle 524 is installed by passing through the mounting collar 501 through a thread, and the bottom of the atomizing nozzle 524 is bent toward the center of the bottom surface of the red light irradiation probe 3. The mutual cooperation between the internal components of the top telescopic shielding circulation mechanism 5 optimizes the use and adjustment process of the red light therapy device, and the sealing telescopic glue The sleeve 507 constrains the illumination range of the red light irradiation probe 3 to prevent the red light therapy device from leaking light during use, effectively preventing light pollution during use of the red light therapy device. At the same time, through the cooperation between the top processing box 514 and the components connected thereto, the corresponding medicine can be sprayed onto the patient's affected part during the red light therapy, and the temperature of the circulating airflow inside the sealed telescopic rubber sleeve 507 is adjusted to keep the temperature of the affected area within a suitable temperature range, thereby promoting the absorption rate and self-recovery rate of the patient's affected part to the medicine solution through temperature adjustment and red light irradiation, thereby effectively improving the use effect of the red light therapy device.
[0058] At the same time, the snap-fit connection between the mounting ring 501 and the connecting bottom ring 504 makes the installation and disassembly process of the sealing telescopic rubber sleeve 507 and the components thereon more convenient, so that the sealing telescopic rubber sleeve 507 can be removed for cleaning after each use of the red light therapy device, thereby effectively improving the efficiency and convenience of cleaning the red light therapy device, and the circulating airflow inside the sealing telescopic rubber sleeve 507 is intercepted and filtered by the air guide bent box 520 and the filter inner cotton strip 521, effectively preventing the trace liquid particles dispersed in the circulating airflow from entering the circulating pipeline, further improving the overall cleanliness and safety of the red light therapy device during use;
[0059] In addition, the fixing process of the sealed telescopic rubber sleeve 507 is assisted by strengthening the structural ring 508 and the sealing air ring 509 to ensure that the overall shape of the sealed telescopic rubber sleeve 507 and the stability of the bottom connection can be maintained when the sealed telescopic rubber sleeve 507 is adsorbed to the periphery of the patient's affected area by negative pressure, further improving the convenience of using the red light therapy device. In addition, through the cooperation between the air pressure sensor 522 and the high-pressure exhaust fan 517, when the top processing box 514 and the internal airflow of the sealed telescopic rubber sleeve 507 are locally circulated, the pressure inside the sealed telescopic rubber sleeve 507 can be continuously maintained within a suitable range to prevent the sealed telescopic rubber sleeve 507 from falling off during use, further improving the installation stability of the red light therapy device during use.
[0060] A side vibration clamping and placing mechanism 6 is provided on the side of the red light therapy instrument body 1, and the side vibration clamping and placing mechanism 6 is used to store the liquid medicine needed in the red light therapy process and remind the order of medicine use in the process of medicine placement;
[0061] The side vibration clamping and placing mechanism 6 includes a mounting side bar 601, a mounting swing plate 602, a mounting inclined groove 603, an illuminating bottom lamp 604, a plug-in mounting plate 605, a placing circular groove 606, a buffer rubber ring 607, a limiting bottom net 608, a fixed arc plate 609, a sliding plate 610, a return spring 611, a sliding block 612, a connecting horizontal axis 613, a driving end plate 614, a driving handle 615 and a vibration motor 616;
[0062] The top positions on both sides of the red light therapy device body 1 are fixedly connected with mounting side strips 601, and the mounting side strips 601 are connected with mounting swing plates 602 through connecting bolts. A mounting inclined groove 603 is provided through the middle of the top surface of the mounting swing plate 602, and the two sides of the bottom of the mounting swing plate 602 are evenly and evenly embedded with lighting bottom lamps 604. The two sides of the ends of the mounting swing plate 602 are tightly fitted with the inner sides of the mounting side strips 601, and the inclination angle of the mounting swing plate 602 is adjusted by rotating the connecting bolts. The lighting bottom lamp 604 is powered by an external power supply, and the signal input end of the lighting bottom lamp 604 is connected to the signal output end of the touch panel 4;
[0063] A plug-in installation plate 605 is embedded and installed inside the installation inclined groove 603, and circular grooves 606 are evenly opened on both sides of the top of the plug-in installation plate 605. A buffer rubber ring 607 is bonded to the top of the inner side of the circular groove 606, and a limited bottom net 608 is embedded and installed at the bottom of the inner side of the circular groove 606. A fixed arc plate 609 is provided at a position on one side of the circular groove 606 corresponding to the inner cavity of the plug-in installation plate 605. The top surface of the plug-in installation plate 605 is flush with the top surface of the installation swing plate 602. The position of the circular groove 606 corresponds to the position of the lighting bottom lamp 604. The buffer rubber ring 607 is made of elastic material, and the top edge of the buffer rubber ring 607 is provided with an arc chamfer.
[0064] A sliding plate 610 is slidably installed in the middle of the inner side of the plug-in installation plate 605, and a reset spring 611 is evenly embedded and installed at one end of the sliding plate 610. Sliding blocks 612 are evenly fixed and installed at opposite positions of the fixed arc plates 609 on both sides of the sliding plate 610. A connecting horizontal axis 613 is fixedly connected to the middle position of one end of the sliding plate 610, and a driving end plate 614 is fixedly connected to the end of the connecting horizontal axis 613 corresponding to the outer end of the plug-in installation plate 605. A driving handle 615 is embedded and installed at the end of the plug-in installation plate 605 corresponding to the outer position of the driving end plate 614. A vibration motor 616 is fixedly installed in the middle of one end of the bottom surface of the installation swing plate 602, and the end of the reset spring 611 is fixedly connected to the plug-in installation plate 605. The end of the connecting horizontal axis 613 passes through the side wall of the plug-in installation plate 605. Both ends of the back side of 14 are provided with arc chamfers. Through the mutual cooperation between the components inside the side vibration clamping placement mechanism 6, the placement and use process of the medicine during the red light therapy is optimized. Through the mutual cooperation between the installation swing plate 602 and the insertion and extraction installation plate 605, the medicine required during the red light therapy can be quickly and conveniently placed on the side of the red light therapy instrument body 1, so that medical staff can quickly take the medicine, and the top of the required medicine bottle is clearly reminded by the lighting bottom light 604, so that medical staff can more quickly select the required medicine during use, and the medicine placed on the installation swing plate 602 is continuously vibrated by the vibration motor 616, which effectively prevents the phenomenon of precipitation and separation during the placement of the medicine, thereby effectively improving the convenience of taking the medicine during the use of the red light therapy instrument;
[0065] At the same time, through the mutual cooperation between the fixed arc plate 609 and the sliding block 612, when the medicine bottle is placed inside the circular groove 606 for transportation, the medicine bottle can be fixed and clamped more firmly through mechanical clamping, making the transfer process of the medicine solution needed during the red light therapy faster and more convenient. At the same time, through the linkage structure design of the driving end plate 614 and the driving handle 615, the clamping and separation process of the medicine bottle on the plug-in mounting plate 605 is more convenient, further improving the convenience and smoothness of the use of the red light therapy device.
[0066] Working principle and use process of the present invention: In the actual application process of the present invention, when using the red light therapy device, it is necessary to first move the red light therapy device body 1 to a suitable position, and then adjust the position and tilt angle of the red light irradiation probe 3 by adjusting the mechanical arm 2, and adjust the intensity of the red light irradiation probe 3 by the touch panel 4, so as to perform red light therapy on the patient through the red light irradiation probe 3, and when drugs need to be used for auxiliary treatment during the red light therapy;
[0067] The connecting bottom ring 504 and the components at its bottom are installed to the bottom end of the installing collar 501 by means of the splicing card slot 502 on the outside of the installing collar 501 and the splicing card block 503, and the connecting bottom ring 504 is clamped by the reaction force after the compression of the fixing rubber strip 505, so that the connecting bottom ring 504 is installed more tightly, and then the gap at the connection between the installing collar 501 and the connecting bottom ring 504 is sealed by the sealing gas ring 509 to complete the installation of the connecting bottom ring 504;
[0068] When it is necessary to restrict the irradiation range of the red light irradiation probe 3, it is necessary to seal the bottom of the sealing rubber ring 506, and then install the elastic exhaust bag 512 to the top of the installation ring 501 through the installation side tube 510 and the sealing air guide valve 511, and then the operator manually squeezes the elastic exhaust bag 512 in a circular manner to suck the cavity inside the sealing telescopic rubber sleeve 507, so that negative pressure is formed inside the sealing telescopic rubber sleeve 507, and then the negative pressure inside the sealing telescopic rubber sleeve 507 cooperates with the sealing air ring 509 to absorb and seal the bottom of the sealing telescopic rubber sleeve 507 and the skin around the patient's affected part, and the side of the sealing telescopic rubber sleeve 507 is auxiliary supported by the reinforcing structure ring 508 to prevent the sealing telescopic rubber sleeve 507 from being deformed under the action of negative pressure;
[0069] When medication assistance is needed during the red light treatment, the liquid medicine in the medicine storage bottle 525 is introduced into the atomizing nozzle 524 through the liquid guide pump 523, and the liquid medicine is atomized and sprayed into the sealed telescopic rubber sleeve 507 through the atomizing nozzle 524, so that the medicine can be evenly sprayed to the outside of the skin of the affected part inside the sealed telescopic rubber sleeve 507, and then the affected part can absorb the effective ingredients in the medicine faster with the assistance of red light;
[0070] And when it is necessary to make the drug diffuse more evenly during the drug spraying process, the circulating fan 516 inside the top processing box 514 can drive the airflow inside the top processing box 514 to flow, and the front air guide pipe 513 and the rear air guide pipe 519 can drive the airflow inside the top processing box 514 and the sealed telescopic rubber sleeve 507 to circulate. During the circulation of the airflow inside the top processing box 514 and the sealed telescopic rubber sleeve 507, the air guide bent box 520 and the filtering inner cotton strip 521 can diffuse and guide the flow direction of the airflow inside the sealed telescopic rubber sleeve 507, so that the airflow flowing inside the sealed telescopic rubber sleeve 507 flows more evenly, and the residual drug liquid particles in the circulating airflow are adsorbed by the filtering inner cotton strip 521 to prevent the drug liquid from entering the airflow circulation pipeline and polluting it.
[0071] At the same time, during the process of air circulation inside the sealed telescopic rubber sleeve 507 and the top processing box 514, the pressure inside the sealed telescopic rubber sleeve 507 can be monitored in real time through the air pressure sensor 522, and after the pressure inside the top processing box 514 and the sealed telescopic rubber sleeve 507 rises, the high-pressure exhaust fan 517 is started to exhaust the air inside the top processing box 514 to ensure that the pressure inside the top processing box 514 can always be maintained within a suitable range, and ensure that the sealed telescopic rubber sleeve 507 can continue to be adsorbed to the patient's skin. At the same time, the airflow circulating inside the top processing box 514 can also be heated by the heating inner net 518 to adjust the temperature inside the sealed telescopic rubber sleeve 507, thereby effectively expanding the function of the sealed telescopic rubber sleeve 507 and improving the safety and convenience of the red light therapy device.
[0072] When placing the medicines to be used in the red light therapy process, the installation swing plate 602 is installed to the side of the red light therapy device body 1 by installing the side strip 601, and the installation swing plate 602 is adjusted and fixed to a suitable angle by the connecting bolt at the end of the installation swing plate 602, and the insertion and withdrawal installation plate 605 and the components thereon are installed to the top of the installation swing plate 602 by installing the inclined groove 603, so as to realize the installation of various auxiliary components;
[0073] The medicine bottle can be placed on the top of the insertion and extraction installation plate 605 by placing the circular groove 606, and the outer side of the medicine is limited by friction through the buffer rubber ring 607 to prevent the medicine bottle from shaking freely inside the placing circular groove 606, and then the sliding plate 610 is connected to the inner wall of the insertion and extraction installation plate 605 by the pulling force of the return spring 611, and then the sliding block 612 on the side of the sliding plate 610 cooperates with the fixed arc plate 609 to clamp the top of the medicine bottle, so as to further improve the overall positioning and fixing strength of the medicine;
[0074] After setting the intensity of the red light irradiation probe 3 through the touch panel 4 and selecting the medicine to be used, the touch panel 4 controls the lighting bottom lights 604 at the bottom of the corresponding medicine bottles to light up in turn, so that medical staff can select suitable medicines more quickly. When crystal precipitation occurs inside the medicine during the placement of the medicine, the vibration motor 616 can be started to drive the installation swing plate 602 to vibrate at high frequency as a whole, thereby ensuring that the medicine will not separate and precipitate after long-term use, further expanding the function of the red light therapy device and improving the convenience of using the red light therapy device.
[0075] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An intelligent and adjustable red light therapy device, comprising a red light therapy device body (1), characterized in that: An adjusting mechanical arm (2) is fixedly mounted in the middle of one side of the top surface of the main body (1) of the red light therapy device, a red light irradiation probe (3) is movably mounted at the top end of the adjusting mechanical arm (2), and a touch panel (4) is fixedly mounted in the middle of one side of the inclined surface of the top surface of the main body (1) of the red light therapy device; The red light irradiation probe (3) is provided with a top telescopic shielding circulation mechanism (5) on the outside, and the telescopic shielding circulation mechanism (5) is used to limit the illumination range of the red light therapy device and evenly apply medicine to the affected area during the red light therapy, so as to expand the function of the red light therapy device; The top telescopic shielding circulation mechanism (5) comprises a mounting ring (501); The outer bottom of the red light irradiation probe (3) is fixedly connected with a mounting collar (501), the outer side of the mounting collar (501) is provided with a splicing slot (502), the interior of the splicing slot (502) is connected with a splicing block (503), and the bottom end of the splicing block (503) is connected with a connecting bottom ring (504); The bottom surface of the connecting bottom ring (504) is connected to a sealing telescopic rubber sleeve (507), the outer side of the sealing telescopic rubber sleeve (507) is bonded with a reinforcing structure ring (508), the bottom end of the sealing telescopic rubber sleeve (507) is bonded with a sealing air ring (509), the top edge of the mounting collar (501) is embedded with a mounting side tube (510), the top of the mounting side tube (510) is fixedly connected to a sealing air guide valve (511), and one side of the sealing air guide valve (511) is fixedly connected to an elastic air bag (512) via a pipeline.
2. The intelligent adjustable red light therapy device according to claim 1, characterized in that: A fixing rubber strip (505) is bonded to the top surface of the connecting bottom ring (504), and a sealing rubber ring (506) is bonded to the inner ring of the connecting bottom ring (504); The red light irradiation probe (3) is powered by an external power supply, the top surface of the fixing rubber strip (505) is tightly fitted with the bottom surface of the mounting ring (501), and the outer side of the sealing rubber ring (506) is tightly fitted with the bottom surface of the mounting ring (501).
3. The intelligent adjustable red light therapy device according to claim 1, characterized in that: The sealing telescopic rubber sleeve (507) is made of an opaque and airtight material, a cavity is provided inside the elastic exhaust bag (512), and the reinforcing structure ring (508) is made of hard plastic.
4. The intelligent adjustable red light therapy device according to claim 1, characterized in that: A fixing rubber strip (505) is bonded to the top surface of the connecting bottom ring (504), and a sealing rubber ring (506) is bonded to the inner ring of the connecting bottom ring (504); The top of the sealed air guide valve (511) is fixedly connected to an air guide front pipe (513), and the end of the air guide front pipe (513) is fixedly connected to a top processing box (514) at a position corresponding to the top of the red light irradiation probe (3). A sealed mounting block (515) is embedded and installed at one end of the top processing box (514), and a circulating fan (516) is fixedly installed in the middle of the inner side of the sealed mounting block (515). A high-pressure exhaust fan (517) is embedded and installed in the middle of the top surface of the sealed mounting block (515). The circulating fan (516) and the high-pressure exhaust fan (517) are powered by an external power supply, and a heating inner net (518) is embedded and installed at the other end of the top processing box (514); A gas guide rear pipe (519) is fixedly connected to the middle of one end of the outer side of the top processing box (514) away from the gas guide front pipe (513), and a gas guide bent box (520) is fixedly connected to the bottom of the mounting ring (501) at the bottom ends of the gas guide front pipe (513) and the gas guide rear pipe (519), and the inside of the gas guide bent box (520) is filled with filter inner cotton strips (521); An air pressure sensor (522) is inserted and installed on one side edge of the top surface of the mounting collar (501), and a liquid conduction pump (523) is fixedly installed on the other side edge of the top surface of the mounting collar (501). The liquid conduction pump (523) is powered by an external power supply, and the output end of the liquid conduction pump (523) is fixedly connected to an atomizing nozzle (524) through a pipeline, and a medicine storage bottle (525) is installed on the top liquid inlet end of the liquid conduction pump (523) through a snap connection.
5. The intelligent adjustable red light therapy device according to claim 4, characterized in that: The inner cavity of the top processing box (514) is connected to the inner cavity of the sealing telescopic rubber sleeve (507) through the front air guide tube (513) and the rear air guide tube (519); the inner filter cotton strip (521) is provided with fine ventilation channels; and a small traction buckle is provided in the middle of the bottom surface of the inner filter cotton strip (521).
6. The intelligent adjustable red light therapy device according to claim 4, characterized in that: The atomizing nozzle (524) is installed by passing through the installation collar (501) through a thread, and the bottom of the atomizing nozzle (524) is bent toward the center of the bottom surface of the red light irradiation probe (3).
7. The intelligent adjustable red light therapy device according to claim 1, characterized in that: The side of the red light therapy device body (1) is provided with a side vibration clamping and placing mechanism (6), which is used to store the liquid medicine required for the red light therapy process and to remind the order of medicine use during the medicine placement process; The side vibration clamping and placing mechanism (6) comprises a mounting side strip (601); The top positions of both sides of the red light therapy device body (1) are fixedly connected with mounting side strips (601), the mounting side strips (601) are connected with mounting swing plates (602) via connecting bolts, a mounting inclined groove (603) is provided through the middle of the top surface of the mounting swing plate (602), and lighting bottom lamps (604) are evenly embedded and installed at positions on both sides of the bottom of the mounting swing plate (602) at equal distances; The installation inclined groove (603) is embedded with a plug-in installation plate (605), and both sides of the top of the plug-in installation plate (605) are evenly provided with placement circular grooves (606). A buffer rubber ring (607) is bonded to the top of the inner side of the placement circular groove (606), and a limited bottom net (608) is embedded and installed at the bottom of the inner side of the placement circular groove (606). A fixed arc plate (609) is provided at a position on one side of the inner cavity of the plug-in installation plate (605) corresponding to the placement circular groove (606); A sliding plate (610) is slidably installed in the middle of the inner side of the plug-in installation plate (605), and a reset spring (611) is evenly embedded and installed at one end of the sliding plate (610). Sliding blocks (612) are evenly fixed and installed at positions on both sides of the sliding plate (610) corresponding to the fixed arc plates (609). A connecting transverse axis (613) is fixedly connected at the middle position of one end of the sliding plate (610), and a driving end plate (614) is fixedly connected at the end of the connecting transverse axis (613) corresponding to the outer end of the plug-in installation plate (605). A driving handle (615) is embedded and installed at the end of the plug-in installation plate (605) corresponding to the outer position of the driving end plate (614), and a vibration motor (616) is fixedly installed at the middle of one end of the bottom surface of the installation swing plate (602).
8. The intelligent adjustable red light therapy device according to claim 7, characterized in that: The two sides of the end of the mounting swing plate (602) are tightly fitted with the inner side of the mounting side strip (601), and the inclination angle of the mounting swing plate (602) is adjusted by rotating the connecting bolt. The lighting bottom light (604) is powered by an external power supply, and the signal input end of the lighting bottom light (604) is connected to the signal output end of the touch panel (4).
9. The intelligent adjustable red light therapy device according to claim 7, characterized in that: The top surface of the plug-in installation plate (605) is flush with the top surface of the installation swing plate (602), the position of the placement circular groove (606) corresponds to the position of the lighting bottom light (604), the buffer rubber ring (607) is made of elastic material, and the top edge of the buffer rubber ring (607) is provided with an arc chamfer.
10. The intelligent adjustable red light therapy device according to claim 7, characterized in that: The end of the return spring (611) is fixedly connected to the plug-in installation plate (605), the end of the connecting transverse axis (613) passes through the side wall of the plug-in installation plate (605), and both ends of the back side of the driving end plate (614) are provided with arc chamfers.
Citation Information
Patent Citations
Adjustable red light irradiation device of red light therapeutic instrument
CN221889041U
Cited By
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