Semiconductor laser rod

By incorporating a self-sterilization mechanism and a self-sealing structure into the semiconductor laser rod, the problem of existing semiconductor laser rods requiring self-sterilization and disinfection is solved, achieving automatic sterilization and convenient cleaning, and improving safety and convenience of use.

CN224370479UActive Publication Date: 2026-06-19WUHAN GUANGDUN TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN GUANGDUN TECH
Filing Date
2024-09-13
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing semiconductor laser bars lack a self-sterilization structure, requiring manual sterilization after use, which is inconvenient and lacks convenient cleaning methods.

Method used

A semiconductor laser rod was designed, which includes a detachable inner shell structure and a built-in self-disinfection mechanism. It uses an alcohol atomizing nozzle to automatically sterilize and disinfect the laser lamp, and improves the ease of cleaning through a waterproof ring and a self-sealing mechanism.

Benefits of technology

It achieves automatic sterilization and disinfection of semiconductor laser rods after use, improving safety and ease of cleaning. The structure is easy to disassemble and assemble, and convenient for maintenance and repair.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a semiconductor laser stick belongs to gynecological physiotherapy technical field, and it is including: the detachable connection's first inner shell and second inner shell, control panel, pilot lamp, vibration button and switch button, button hole, battery, vibration motor, lamp board, take away the fin laser lamp, laser hole, rear shell handle, operation mouth, containing groove, transparent cover, annular groove, waterproof ring and self -sterilization mechanism, the utility model discloses that the transparent cover is located in the first inner shell with the outside of second inner shell and sets up self -sterilization mechanism, can be in the transparent cover and take down the process automatic to the first inner shell and second inner shell on the take away the fin laser lamp and carry out sterilization and disinfection, need not user to carry out sterilization and disinfection again, improve semiconductor laser stick's use safety.
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Description

Technical Field

[0001] This utility model belongs to the field of gynecological physiotherapy technology, specifically relating to a semiconductor laser rod. Background Technology

[0002] The female reproductive system has numerous folds and a complex structure, and is located deep within the body, making it susceptible to bacterial invasion and inflammation, especially postpartum. For gynecological diseases such as pelvic inflammatory disease, vaginitis, and cervical erosion, medication is commonly used. However, due to the lack of specialized physical therapy equipment, the treatment effect is often unsatisfactory, and recurrence is common.

[0003] Lasers of specific wavelengths and powers have good penetrability and can be placed directly inside the vagina to produce a laser biological effect, promoting blood circulation in the affected area, eliminating edema, and playing a role in reducing inflammation and pain.

[0004] Current semiconductor laser bars do not have a self-sterilization structure, and users generally need to sterilize them themselves, which is inconvenient.

[0005] Therefore, a semiconductor laser rod is designed to solve the above problems. Utility Model Content

[0006] To address the problems mentioned in the background section, this invention provides a semiconductor laser rod that improves the safety and ease of cleaning.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a semiconductor laser rod, comprising:

[0008] A first inner shell and a second inner shell that can be detachably connected, the first inner shell and the second inner shell abutting against each other near the side walls to form an internally hollow shell for mounting structure;

[0009] The control board is detachably connected to the upper part of the hollow cavity formed by the first inner shell and the second inner shell, and controls the semiconductor laser bar to work according to instructions.

[0010] Indicator lights, vibration buttons, and power buttons are fixedly attached to the side wall of the control board from top to bottom and are electrically connected to the control board. The indicator lights indicate the status of the semiconductor laser rod. The vibration buttons and power buttons transmit vibration commands to the control board by pressing the switch, so that the control board can control the semiconductor laser rod to work according to the commands.

[0011] The button hole is located on the side wall of the second inner shell away from the first inner shell and corresponds to the position of the indicator light, vibration button and power button. The indicator light, vibration button and power button extend out of the second inner shell through the button hole at the corresponding position, so that the user can easily check the indicator status and press it.

[0012] The battery is detachably connected to the hollow cavity of the housing formed by the first inner shell and the second inner shell and is located below the control board to power the semiconductor laser pump.

[0013] The vibration motor is detachably connected to the hollow cavity of the shell formed by the first inner shell and the second inner shell and is located below the battery. It generates vibration to drive the semiconductor laser rod to vibrate.

[0014] Five light panels are provided, four of which are rectangular and the fifth is located below the rectangle. The five light panels can be detachably connected to the hollow cavity of the shell formed by the first inner shell and the second inner shell and are located below the vibration motor for installation structure.

[0015] Several laser lights with heat sinks are installed, and these laser lights are fixed at equal intervals on five light boards and electrically connected to the corresponding light boards to control the semiconductor laser rod to emit laser light for gynecological physiotherapy.

[0016] Several laser holes are provided, which are opened on the first inner shell and the second inner shell to correspond to the positions of several laser lamps with heat sinks. Several laser lamps with heat sinks extend through the laser holes at the corresponding positions to be flush with the first inner shell and the second inner shell, which facilitates laser gynecological physiotherapy.

[0017] The rear cover handle can be detachably attached to the gripping side of the first and second inner covers for the user to hold.

[0018] The control port is located on the handle of the rear cover, corresponding to the button hole, making it easy for users to check the indicator status and press it.

[0019] A receiving groove, formed between the first inner shell, the second inner shell, and the rear shell handle, is used for mounting the structure;

[0020] A transparent cover is fitted onto the treatment side of the first and second inner shells, with the mounting end entering the receiving groove to protect the heat sink laser lamps on the first and second inner shells from damage.

[0021] An annular groove, formed on the mounting side of the transparent cover, is used for mounting the structure;

[0022] A waterproof ring is fitted into an annular groove, and the detachable connection is achieved through the contact resistance with the receiving groove.

[0023] The self-disinfection mechanism is located inside the transparent cover, outside the first and second inner shells, and can automatically sterilize the semiconductor laser rod when it is removed for treatment.

[0024] Self-disinfection facilities include:

[0025] The movable support plate is located inside the transparent cover, below the first inner shell and the second inner shell, and moves with the first inner shell and the second inner shell to drive the corresponding structure to work.

[0026] The first connecting spring is elastically connected between the movable support plate and the bottom wall of the transparent cover, so that the movable support plate has a movable function to follow the movement of the first inner shell and the second inner shell.

[0027] There are two second racks, which are symmetrically fixed to the bottom wall of the movable receiving plate and located outside the first connecting spring. They are used to drive the corresponding structure to work.

[0028] There are four drive shafts, and both ends of the four drive shafts are connected to the inner wall of the transparent cover through bearings for mounting the structure.

[0029] There are four gears, which are fixedly sleeved on the drive shaft at the corresponding positions. The gears on the side closer to the second rack mesh with the second rack, and the two gears on the same side mesh with each other to drive the corresponding structure to work.

[0030] An alcohol chamber, located inside a transparent cover, is used to store alcohol.

[0031] The injection tube is fixed to the inner wall of the transparent cover, and its bottom end is connected to the alcohol chamber for injecting alcohol into the alcohol chamber.

[0032] A rubber stopper is attached to the top of the injection tube to prevent alcohol from flowing out of the alcohol chamber.

[0033] The atomizing nozzles are provided in several units. These atomizing nozzles are fixed to the inner wall of the transparent cover at equal intervals along the circumference. One end of each nozzle is connected to the alcohol chamber, and the other end is connected to the inside of the transparent cover. They are used to atomize and spray the alcohol in the alcohol chamber into the transparent cover.

[0034] A piston, located inside the alcohol chamber, is used to squeeze the alcohol inside the chamber and spray it out through the atomizing nozzle.

[0035] There are two movable rods, which are symmetrically fixed to the bottom wall of the piston and used to drive the piston to move and squeeze.

[0036] There are two movable ports, symmetrically opened on the transparent cover corresponding to the positions of the two movable rods. The two movable rods extend downward through the movable ports at the corresponding positions to drive the piston to move and squeeze.

[0037] Two sealing rings are provided. The two sealing rings are fixed to the inner walls of the two movable ports and fit against the two movable rods to seal and prevent alcohol from flowing out of the alcohol chamber.

[0038] There are two first racks, which are fixed to the side walls of the two movable rod extensions. The gears on the side of the first racks mesh with the first racks.

[0039] Furthermore, the first inner shell, located away from the inner wall of the second inner shell, and the second inner shell, located away from the inner wall of the first inner shell, are respectively fixed with first internal threaded posts between the four rectangular light panels and the fifth light panel. The two first internal threaded posts are connected by screws, realizing the detachable connection between the first inner shell and the second inner shell.

[0040] Furthermore, the first inner shell away from the inner wall of the second inner shell and the second inner shell away from the inner wall of the first inner shell are respectively fixed to the four corners of the control plate. The four corners of the control plate are connected to the two second internal threaded posts at the corresponding positions by screws, so as to realize the detachable connection between the control plate and the first inner shell and the second inner shell.

[0041] Furthermore, several arc-shaped plates are fixed at equal intervals from top to bottom on both sides of the first inner shell away from the inner wall of the second inner shell and the second inner shell away from the inner wall of the first inner shell, corresponding to the battery position. When the battery comes into contact with the first inner shell and the second inner shell, the multiple arc-shaped plates press against the battery, realizing the detachable connection between the battery and the first inner shell and the second inner shell.

[0042] Furthermore, a second housing is fixedly connected to the second inner shell at the position of the vibration motor, away from the inner wall of the first inner shell. A first housing is provided on the side of the vibration motor away from the second housing. The vibration motor is covered between the second housing and the first housing. The second housing and the first housing are connected by screws to realize the detachable connection between the vibration motor and the second inner shell.

[0043] Furthermore, mounting brackets are fixedly connected to the positions of the first inner shell away from the inner wall of the second inner shell and the second inner shell away from the inner wall of the first inner shell corresponding to the position of the lamp panel. The lamp panel is connected to the mounting brackets by screws, so as to realize the detachable connection between the lamp panel and the first inner shell and the second inner shell.

[0044] Furthermore, the first inner shell has several limiting grooves at equal intervals on the outer side wall away from the second inner shell, and several limiting strips are fixed to the inner side wall of the rear shell handle corresponding to the positions of the limiting grooves. The rear shell handle is detachably connected to the first inner shell and the second inner shell by means of the interference fit of the limiting strips into the corresponding limiting grooves.

[0045] Furthermore, a charging base is fixed to the side wall of the control panel away from the indicator lights, vibration buttons, and switch buttons. The charging base is electrically connected to the battery. A first charging port is opened at the top of the second inner shell corresponding to the position of the charging base. The charging base extends out of the handle of the rear shell through the first charging port and the operation port for easy charging.

[0046] Furthermore, the second inner shell has an installation port located outside the button hole and the first charging port. A silicone component is fixed inside the installation port. A button groove is provided on the silicone component corresponding to the button hole position. The indicator light, vibration button and switch button extend into the corresponding position of the button groove. A second charging port is provided on the silicone component corresponding to the first charging port position. The charging base extends out of the handle of the rear shell through the first charging port, the second charging port and the operation port.

[0047] Furthermore, a second connecting spring is installed inside the receiving groove. The top of the second connecting spring is detachably connected to the top of the receiving groove by screws, and a sealing plate is fixed to the bottom of the second connecting spring.

[0048] Compared with the prior art, the beneficial effects of this utility model are:

[0049] 1. The present invention has a self-disinfection mechanism located on the outside of the first inner shell and the second inner shell inside the transparent cover. It can automatically sterilize and disinfect the laser lamp with heat sink on the first inner shell and the second inner shell during the process of removing the transparent cover, so that the user does not need to perform sterilization and disinfection, thus improving the safety of using the semiconductor laser rod.

[0050] 2. The first inner shell, the second inner shell and the rear shell handle of this utility model are provided with a self-sealing mechanism in the receiving groove, which does not affect the insertion and fixation of the transparent cover. At the same time, it can automatically close the opening of the receiving groove when the semiconductor laser rod is used for gynecological physiotherapy, so as to prevent body fluid from entering the receiving groove and improve the cleaning convenience of the semiconductor laser rod.

[0051] 3. This utility model is equipped with five light panels, each light panel is equipped with several laser lights with heat sinks, and the several laser lights with heat sinks extend through the corresponding laser holes on the first inner shell and the second inner shell to be flush with the first inner shell and the second inner shell, so that the circumference and the bottom can be simultaneously irradiated by laser.

[0052] 4. The structure of this utility model is easy to disassemble and assemble, making it convenient to maintain or repair the self-disinfection mechanism, the self-sealing mechanism, and other structures. Attached Figure Description

[0053] Figure 1 This is a perspective view of the present utility model;

[0054] Figure 2 This is an exploded view of the present invention;

[0055] Figure 3 This is another perspective view of the second inner shell of this utility model;

[0056] Figure 4 This utility model Figure 3 Enlarged view of point A in the middle;

[0057] Figure 5 This is a cross-sectional view of the transparent cover of this utility model;

[0058] Figure 6 This utility model Figure 5 Enlarged view at point B in the middle;

[0059] Figure 7 This utility model Figure 5 Enlarged view at point C;

[0060] Figure 8 This utility model Figure 7 Enlarged view at point D;

[0061] In the diagram: 1. Rear handle; 2. Transparent cover; 3. Vibration button; 4. First inner shell; 5. Battery; 6. Vibration motor; 7. Laser light with heat sink; 8. Light panel; 9. Annular groove; 10. Waterproof ring; 11. Laser hole; 12. Second inner shell; 13. Button hole; 14. Switch button; 15. Indicator light; 16. Control board; 17. Operating port; 18. Receiving slot;

[0062] 101. Injection tube; 102. Rubber stopper; 103. Alcohol chamber; 104. First rack; 105. Drive shaft; 106. Second rack; 107. First connecting spring; 108. Gear; 109. Movable receiving plate; 110. Movable rod; 111. Piston; 112. Atomizing nozzle; 113. Movable port; 114. Sealing ring;

[0063] 201. First internally threaded column;

[0064] 301. Second internal threaded post;

[0065] 401. Curved plate;

[0066] 501. First shell; 502. Second shell;

[0067] 601. Install the bracket;

[0068] 701, Limiting groove; 702, Limiting strip;

[0069] 801. Charging dock; 802. First charging port;

[0070] 901. Mounting port; 902. Button slot; 903. Silicone component; 904. Second charging port;

[0071] 1001, Second connecting spring; 1002, Sealing plate. Detailed Implementation

[0072] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0073] Example 1

[0074] Please see Figure 1-8 This utility model provides the following technical solution: a semiconductor laser rod, comprising:

[0075] The first inner shell 4 and the second inner shell 12 are detachably connected. The first inner shell 4 and the second inner shell 12 abut against each other near the side walls to form a hollow shell for mounting structure.

[0076] The control board 16 is detachably connected to the upper part of the hollow cavity of the shell formed by the first inner shell 4 and the second inner shell 12, and controls the semiconductor laser bar to work according to instructions.

[0077] Indicator light 15, vibration button 3 and switch button 14 are fixedly connected to the side wall of control board 16 from top to bottom and are electrically connected to control board 16. Indicator light 15 indicates the status of semiconductor laser rod. Vibration button 3 and switch button 14 transmit the vibration command to control board 16 by pressing the switch, so that control board 16 can control semiconductor laser rod to work according to the command.

[0078] The button hole 13 is opened on the side wall of the second inner shell 12 away from the first inner shell 4 and corresponds to the position of the indicator light 15, the vibration button 3 and the switch button 14. The indicator light 15, the vibration button 3 and the switch button 14 extend out of the second inner shell 12 through the button hole 13 at the corresponding position, so that the user can easily check the indicator status and press it.

[0079] Battery 5 is detachably connected to the hollow cavity of the housing formed by the first inner shell 4 and the second inner shell 12 and is located below the control board 16 to power the semiconductor laser pump.

[0080] The vibration motor 6 is detachably connected to the hollow cavity of the shell formed by the first inner shell 4 and the second inner shell 12 and is located below the battery 5. It generates vibration to drive the semiconductor laser rod to vibrate.

[0081] Five light panels 8 are provided. Four light panels 8 are rectangular and the fifth light panel 8 is located below the rectangle. The five light panels 8 can be detachably connected to the hollow cavity of the shell formed by the first inner shell 4 and the second inner shell 12 and are located below the vibration motor 6 for installation structure.

[0082] Several laser lamps 7 with heat sinks are provided. These laser lamps 7 are fixed at equal intervals on five lamp boards 8 and electrically connected to the lamp boards 8 at corresponding positions. They control the semiconductor laser rod to emit laser light for gynecological physiotherapy.

[0083] Laser holes 11 are provided in several positions, which are opened on the first inner shell 4 and the second inner shell 12 at the positions of several laser lamps 7 with heat sinks. Several laser lamps 7 with heat sinks extend through the laser holes 11 at the corresponding positions to be flush with the first inner shell 4 and the second inner shell 12, which facilitates laser gynecological physiotherapy.

[0084] The rear cover handle 1 can be detachably attached to the gripping side of the first inner cover 4 and the second inner cover 12 for the user to grip.

[0085] The operation port 17 is located on the rear cover handle 1 at the position corresponding to the button hole 13, making it convenient for users to view the indicator status and press;

[0086] A receiving groove 18 is formed between the first inner shell 4, the second inner shell 12, and the rear shell handle 1 for mounting the structure.

[0087] A transparent cover 2 is fitted onto the treatment side of the first inner shell 4 and the second inner shell 12, with the mounting end entering the receiving groove 18 to protect the laser lamp 7 with heat sink on the first inner shell 4 and the second inner shell 12 from damage.

[0088] An annular groove 9 is formed on the mounting side of the transparent cover 2 for mounting the structure;

[0089] Waterproof ring 10 is fitted into an annular groove 9, and the detachable connection is achieved through the contact resistance with receiving groove 18;

[0090] The self-disinfection mechanism is located inside the transparent cover 2, outside the first inner shell 4 and the second inner shell 12, and can automatically sterilize and disinfect the semiconductor laser rod when it is removed for treatment.

[0091] Self-disinfection facilities include:

[0092] The movable receiving plate 109 is located inside the transparent cover 2, below the first inner shell 4 and the second inner shell 12, and moves with the first inner shell 4 and the second inner shell 12 to drive the corresponding structure to work.

[0093] The first connecting spring 107 is elastically connected between the movable support plate 109 and the bottom wall of the transparent cover 2, so that the movable support plate 109 has a movable function to follow the movement of the first inner shell 4 and the second inner shell 12.

[0094] There are two second racks 106, which are symmetrically fixed to the bottom wall of the movable support plate 109 and located outside the first connecting spring 107, and are used to drive the corresponding structure to work.

[0095] Four drive shafts 105 are provided, and both ends of the four drive shafts 105 are connected to the inner wall of the transparent cover 2 through bearings for mounting structure;

[0096] There are four gears 108, which are fixedly sleeved on the drive shaft 105 at the corresponding positions. The gear 108 closer to the second rack 106 meshes with the second rack 106, and the two gears 108 on the same side mesh with each other to drive the corresponding structure to work.

[0097] An alcohol chamber 103 is located inside a transparent cover 2 and is used to store alcohol.

[0098] The injection tube 101 is fixed to the inner wall of the transparent cover 2, and its bottom end is connected to the alcohol chamber 103 for injecting alcohol into the alcohol chamber 103.

[0099] A rubber stopper 102 is attached to the top of the injection tube 101 to prevent alcohol from flowing out of the alcohol chamber 103.

[0100] Atomizing nozzles 112 are provided in several units. The several atomizing nozzles 112 are fixed to the inner wall of the transparent cover 2 at equal intervals along the circumference. One end is connected to the alcohol chamber 103 and the other end is connected to the inside of the transparent cover 2. They are used to atomize and spray the alcohol in the alcohol chamber 103 into the transparent cover 2.

[0101] Piston 111 is disposed in alcohol chamber 103 and is used to squeeze the alcohol in alcohol chamber 103 to be sprayed out through atomizing nozzle 112.

[0102] There are two movable rods 110, which are symmetrically fixed to the bottom wall of the piston 111 and used to drive the piston 111 to move and squeeze.

[0103] Two movable ports 113 are provided, symmetrically opened on the transparent cover 2 corresponding to the positions of two movable rods 110. The two movable rods 110 extend downward through the movable ports 113 at the corresponding positions to drive the piston 111 to move and squeeze.

[0104] Two sealing rings 114 are provided. The two sealing rings 114 are fixed to the inner wall of the two movable ports 113 and fit the two movable rods 110 to seal and prevent alcohol from flowing out of the alcohol chamber 103.

[0105] There are two first racks 104. The two first racks 104 are fixedly connected to the extension sections of the two movable rods 110 and close to each other on the side walls. The gear 108 close to the first rack 104 meshes with the first rack 104.

[0106] In this embodiment, please refer to the appendix. Figure 1 , 25, 6, 7, and 8. When using the semiconductor laser rod, remove the transparent cover 2. During the removal of the transparent cover 2, the movable receiving plate 109, due to the loss of the squeezing action of the first inner shell 4 and the second inner shell 12, moves upward under the restoring force of the first connecting spring 107. The movable receiving plate 109 drives the two second racks 106 to move upward. During the upward movement of the two second racks 106, they drive the two meshing gears 108 to rotate. The two meshing gears 108 drive the other two meshing gears 108 to rotate. The other two meshing gears 108 drive the two movable rods 110 to move upward. The two movable rods 110 drive the piston 111 upward. As the piston 111 moves upward, it squeezes the alcohol in the alcohol chamber 103. Under the squeezing action, the alcohol in the alcohol chamber 103 is atomized and sprayed out from several atomizing nozzles 112 to disinfect several laser lamps 7 with heat sinks on the first inner shell 4 and the second inner shell 12 until the transparent cover 2 is completely removed. Pressing the switch button 14, the control board 16 controls the five lamp panels 8, causing several laser lamps 7 with heat sinks to emit laser beams, which are used for gynecological physiotherapy. During the gynecological physiotherapy, pressing the vibration button 3, the control board 16 simultaneously controls the vibration motor 6 to start vibration. The vibration generated by the vibration motor 6 can promote blood circulation and improve the gynecological physiotherapy effect of the laser beam.

[0107] Specifically, the first inner shell 4 is located away from the inner wall of the second inner shell 12, and the second inner shell 12 is located away from the inner wall of the first inner shell 4. The first internal threaded post 201 is fixedly connected between the four rectangular light panels 8 and the fifth light panel 8. The two first internal threaded posts 201 are connected by screws to realize the detachable connection between the first inner shell 4 and the second inner shell 12.

[0108] In this embodiment, please refer to the appendix. Figure 2 and 3 The first inner shell 4 and the second inner shell 12 can be disassembled and assembled by removing and installing screws, which facilitates the maintenance or repair of the internal structure.

[0109] Specifically, the first inner shell 4 is fixed to the inner wall of the second inner shell 12 away from the inner wall of the second inner shell 12 away from the inner wall of the first inner shell 4 at the four corners of the control plate 16 respectively. The four corners of the control plate 16 are connected to the two second internal threaded posts 301 at the corresponding positions by screws, so as to realize the detachable connection between the control plate 16 and the first inner shell 4 and the second inner shell 12.

[0110] In this embodiment, please refer to the appendix. Figure 2-3 The control board 16 can be disassembled and assembled from the first inner shell 4 and the second inner shell 12 by removing and installing screws, which facilitates the maintenance or repair of the control board 16.

[0111] Specifically, several arc-shaped plates 401 are fixed at equal intervals from top to bottom on both sides of the first inner shell 4 away from the inner wall of the second inner shell 12 and the second inner shell 12 away from the inner wall of the first inner shell 4, corresponding to the position of the battery 5. When the battery 5 comes into contact with the first inner shell 4 and the second inner shell 12, the multiple arc-shaped plates 401 press against the battery 5, thereby realizing the detachable connection between the battery 5 and the first inner shell 4 and the second inner shell 12.

[0112] In this embodiment, please refer to the appendix. Figure 2-3 The battery 5 can be disassembled and installed by removing the first inner shell 4 and the second inner shell 12, which facilitates the maintenance or repair of the battery 5.

[0113] Specifically, a second housing 502 is fixedly connected to the inner wall of the second inner shell 12 away from the inner wall of the first inner shell 4 at the position corresponding to the vibration motor 6. A first housing 501 is provided on the side of the vibration motor 6 away from the second housing 502. The vibration motor 6 is covered between the second housing 502 and the first housing 501. The second housing 502 and the first housing 501 are connected by screws to realize the detachable connection between the vibration motor 6 and the second inner shell 12.

[0114] In this embodiment, please refer to the appendix. Figure 2-3 The first housing 501 and the second housing 502 can be disassembled and assembled by removing and installing screws, which means that the vibration motor 6 and the second inner housing 12 can be disassembled and assembled, making it convenient to maintain or repair the vibration motor 6.

[0115] Specifically, a mounting bracket 601 is fixedly connected to the first inner shell 4 away from the inner wall of the second inner shell 12 and the second inner shell 12 away from the inner wall of the first inner shell 4 at the position corresponding to the lamp plate 8. The lamp plate 8 is connected to the mounting bracket 601 by screws, so as to realize the detachable connection between the lamp plate 8 and the first inner shell 4 and the second inner shell 12.

[0116] In this embodiment, please refer to the appendix. Figure 2-3 The lamp board 8 can be disassembled and assembled from the mounting bracket 601 by removing and installing screws, and can also be disassembled and assembled from the first inner shell 4 and the second inner shell 12, which facilitates the maintenance or repair of the lamp board 8 and the laser lamp 7 with heat sink.

[0117] Specifically, the first inner shell 4 has several limiting grooves 701 at equal intervals on the outer side wall away from the second inner shell 12. The inner side wall of the rear shell handle 1 is fixed with several limiting strips 702 corresponding to the positions of the limiting grooves 701. The limiting strips 702 are interference-fitted into the limiting grooves 701 at the corresponding positions to realize the detachable connection between the rear shell handle 1 and the first inner shell 4 and the second inner shell 12.

[0118] In this embodiment, please refer to the appendix. Figure 2By inserting or removing several limiting strips 702 into or from several limiting slots 701, the rear cover handle 1 can be disassembled and assembled from the first inner cover 4 and the second inner cover 12, which facilitates the maintenance or repair of the structure inside the first inner cover 4 and the second inner cover 12.

[0119] Specifically, a charging base 801 is fixed to the side wall of the control panel 16 away from the indicator light 15, vibration button 3 and switch button 14. The charging base 801 is electrically connected to the battery 5. A first charging port 802 is opened at the top of the second inner shell 12 corresponding to the position of the charging base 801. The charging base 801 extends out of the rear shell handle 1 through the first charging port 802 and the operation port 17 for easy charging.

[0120] In this embodiment, please refer to the appendix. Figure 2 Battery 5 can be charged directly through charging dock 801, which is convenient and quick.

[0121] Specifically, the second inner shell 12 has an installation port 901 located outside the button hole 13 and the first charging port 802. A silicone part 903 is fixed inside the installation port 901. A button groove 902 is provided on the silicone part 903 corresponding to the position of the button hole 13. The indicator light 15, vibration button 3 and switch button 14 extend into the corresponding positions of the button groove 902. A second charging port 904 is provided on the silicone part 903 corresponding to the position of the first charging port 802. The charging base 801 extends out of the rear shell handle 1 through the first charging port 802, the second charging port 904 and the operation port 17.

[0122] In this embodiment, please refer to the appendix. Figure 2 Silicone 903 can provide protection and waterproofing, and improve the service life of the structure.

[0123] Example 2

[0124] The difference between this embodiment and Embodiment 1 is that:

[0125] Specifically, a second connecting spring 1001 is installed inside the receiving groove 18. The top end of the second connecting spring 1001 is detachably connected to the top end of the receiving groove 18 by screws, and a sealing plate 1002 is fixedly connected to the bottom end of the second connecting spring 1001.

[0126] In this embodiment, please refer to the appendix. Figure 3-4 When the transparent cover 2 is inserted into the receiving groove 18, it squeezes the sealing plate 1002, which in turn compresses the second connecting spring 1001 and does not affect the insertion of the transparent cover 2. When the transparent cover 2 is pulled out of the receiving groove 18, the sealing plate 1002 can pop out and close the receiving groove 18 under the reset force of the second connecting spring 1001, thus avoiding the problem of difficult cleaning caused by bodily fluid entering the receiving groove 18 during gynecological physiotherapy and improving the ease of cleaning.

[0127] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A semiconductor laser rod, characterized in that, include: The first inner shell (4) and the second inner shell (12) are detachably connected. The first inner shell (4) and the second inner shell (12) abut against each other near the side walls to form a hollow shell for mounting structure. The control board (16) is detachably connected to the upper part of the hollow cavity of the shell formed by the first inner shell (4) and the second inner shell (12), and controls the semiconductor laser bar to work according to the instructions. Indicator light (15), vibration button (3) and switch button (14) are fixedly attached to the side wall of control board (16) from top to bottom and electrically connected to control board (16). Indicator light (15) indicates the status of semiconductor laser rod. Vibration button (3) and switch button (14) transmit the trigger switch and vibration command to control board (16) by pressing to enable control board (16) to control semiconductor laser rod to work according to the command. A button hole (13) is provided on the side wall of the second inner shell (12) away from the first inner shell (4) and at the position of the indicator light (15), vibration button (3) and switch button (14). The indicator light (15), vibration button (3) and switch button (14) extend out of the second inner shell (12) through the button hole (13) at the corresponding position, so that the user can easily check the indicator status and press it. The battery (5) is detachably connected to the hollow cavity of the housing formed by the first inner shell (4) and the second inner shell (12) and is located below the control board (16) to power the semiconductor laser pump; The vibration motor (6) is detachably connected to the hollow cavity of the shell formed by the first inner shell (4) and the second inner shell (12) and is located below the battery (5) to generate vibration and drive the semiconductor laser rod to vibrate. Five lamp panels (8) are provided. Four lamp panels (8) are rectangular and the fifth lamp panel (8) is located below the rectangle. The five lamp panels (8) can be detachably connected to the hollow cavity of the shell formed by the first inner shell (4) and the second inner shell (12) and are located below the vibration motor (6) for installation structure. A number of laser lamps (7) with heat sinks are provided. The number of laser lamps (7) with heat sinks are fixed at equal intervals on five lamp boards (8) and electrically connected to the lamp boards (8) at the corresponding positions. The semiconductor laser rod is controlled to emit laser light for gynecological physiotherapy. A number of laser holes (11) are provided, which are opened on the first inner shell (4) and the second inner shell (12) at the positions of several laser lamps (7) with heat sinks. Several laser lamps (7) with heat sinks extend through the corresponding laser holes (11) to be flush with the first inner shell (4) and the second inner shell (12), which facilitates laser gynecological physiotherapy. The rear cover handle (1) can be detachably fitted onto the gripping side of the first inner cover (4) and the second inner cover (12) for the user to grip; The operation port (17) is located on the handle (1) of the rear shell, corresponding to the button hole (13), so that the user can easily check the indicator status and press it; A receiving groove (18) is formed between the first inner shell (4), the second inner shell (12), and the rear shell handle (1) for mounting the structure; A transparent cover (2) is fitted onto the treatment side of the first inner shell (4) and the second inner shell (12), with the mounting end entering the receiving groove (18) to protect the laser lamp (7) with heat sink on the first inner shell (4) and the second inner shell (12) from damage. An annular groove (9) is formed on the mounting side of the transparent cover (2) for mounting the structure; The waterproof ring (10) is fitted into the annular groove (9) and is detachably connected by the contact resistance with the receiving groove (18); The self-disinfection mechanism is located inside the transparent cover (2) outside the first inner shell (4) and the second inner shell (12), and can automatically sterilize and disinfect the semiconductor laser rod when it is removed for treatment. Self-disinfection facilities include: The movable receiving plate (109) is located inside the transparent cover (2) below the first inner shell (4) and the second inner shell (12), and moves with the first inner shell (4) and the second inner shell (12) to drive the corresponding structure to work; The first connecting spring (107) is elastically connected between the movable support plate (109) and the bottom wall of the transparent cover (2), so that the movable support plate (109) has a movable function to follow the movement of the first inner shell (4) and the second inner shell (12); There are two second racks (106), which are symmetrically fixed to the bottom wall of the movable support plate (109) and located outside the first connecting spring (107) to drive the corresponding structure to work. There are four drive shafts (105), and the two ends of the four drive shafts (105) are connected to the inner wall of the transparent cover (2) through bearings for mounting structure; Four gears (108) are provided. The four gears (108) are fixedly sleeved on the corresponding drive shafts (105). The gear (108) on the side closer to the second rack (106) meshes with the second rack (106). The two gears (108) on the same side mesh with each other to drive the corresponding structure to work. An alcohol chamber (103) is located inside a transparent cover (2) and is used to store alcohol. The injection tube (101) is fixed to the inner wall of the transparent cover (2), and its bottom end is connected to the alcohol chamber (103) for injecting alcohol into the alcohol chamber (103); A rubber stopper (102) is attached to the top of the injection tube (101) to prevent alcohol from flowing out of the alcohol chamber (103); Atomizing nozzles (112) are provided in several places. Several atomizing nozzles (112) are fixed to the inner wall of the transparent cover (2) at equal intervals along the circumference. One end is connected to the alcohol chamber (103) and the other end is connected to the inside of the transparent cover (2). They are used to atomize and spray the alcohol in the alcohol chamber (103) into the transparent cover (2). A piston (111) is disposed inside the alcohol chamber (103) and is used to squeeze the alcohol in the alcohol chamber (103) to be sprayed out through the atomizing nozzle (112); There are two movable rods (110), which are symmetrically fixed to the bottom wall of the piston (111) to drive the piston (111) to move and squeeze. There are two movable ports (113), which are symmetrically opened on the transparent cover (2) corresponding to the positions of the two movable rods (110). The two movable rods (110) extend downward through the movable ports (113) at the corresponding positions to drive the piston (111) to move and squeeze. Two sealing rings (114) are provided. The two sealing rings (114) are fixed to the inner wall of the two movable ports (113) and fit the two movable rods (110) for sealing and preventing the alcohol in the alcohol chamber (103) from flowing out. There are two first racks (104). The two first racks (104) are fixed to the extension sections of the two movable rods (110) close to each other on the side walls. The gear (108) close to the first rack (104) meshes with the first rack (104).

2. A semiconductor laser rod according to claim 1, characterized in that: The inner wall of the first inner shell (4) is far from the inner wall of the second inner shell (12), and the inner wall of the second inner shell (12) is far from the inner wall of the first inner shell (4). The first internal threaded post (201) is fixed between the four rectangular lamp plates (8) and the fifth lamp plate (8). The two first internal threaded posts (201) are connected by screws to realize the detachable connection between the first inner shell (4) and the second inner shell (12).

3. A semiconductor laser rod according to claim 2, characterized in that: The first inner shell (4) is away from the inner wall of the second inner shell (12), and the second inner shell (12) is away from the inner wall of the first inner shell (4). The two second internal threaded posts (301) at the four corners of the control plate (16) are respectively fixed. The control plate (16) is connected to the two second internal threaded posts (301) at the corresponding positions by screws, so as to realize the detachable connection between the control plate (16) and the first inner shell (4) and the second inner shell (12).

4. A semiconductor laser rod according to claim 3, characterized in that: On the sides of the first inner shell (4) away from the inner wall of the second inner shell (12) and the second inner shell (12) away from the inner wall of the first inner shell (4), there are several arc-shaped plates (401) fixed at equal intervals from top to bottom on both sides of the battery (5). When the battery (5) comes into contact with the second inner shell (12) through the first inner shell (4), the multiple arc-shaped plates (401) press and contact the battery (5), so as to realize the detachable connection between the battery (5) and the first inner shell (4) and the second inner shell (12).

5. A semiconductor laser rod according to claim 4, characterized in that: The second inner shell (12) is fixedly connected to the inner wall of the second inner shell (4) at the position corresponding to the vibration motor (6). The vibration motor (6) is provided with a first shell (501) on the side away from the second shell (502). The vibration motor (6) is covered between the second shell (502) and the first shell (501). The second shell (502) and the first shell (501) are connected by screws to realize the detachable connection between the vibration motor (6) and the second inner shell (12).

6. A semiconductor laser rod according to claim 5, characterized in that: A mounting bracket (601) is fixedly connected to the inner wall of the first inner shell (4) away from the inner wall of the second inner shell (12) and the inner wall of the second inner shell (12) away from the inner wall of the first inner shell (4) at the position corresponding to the lamp plate (8). The lamp plate (8) and the mounting bracket (601) are connected by screws to realize the detachable connection between the lamp plate (8) and the first inner shell (4) and the second inner shell (12).

7. A semiconductor laser rod according to claim 6, characterized in that: The first inner shell (4) has several limiting grooves (701) evenly spaced on the outer side wall away from the second inner shell (12). The inner side wall of the rear shell handle (1) is fixed with several limiting strips (702) corresponding to the positions of the limiting grooves (701). The limiting strips (702) are inserted into the corresponding limiting grooves (701) through the interference fit of the limiting strips (702) to realize the detachable connection between the rear shell handle (1) and the first inner shell (4) and the second inner shell (12).

8. A semiconductor laser rod according to claim 7, characterized in that: A charging base (801) is fixed to the side wall of the control panel (16) away from the indicator light (15), vibration button (3) and switch button (14). The charging base (801) is electrically connected to the battery (5). A first charging port (802) is opened at the top of the second inner shell (12) corresponding to the position of the charging base (801). The charging base (801) extends out of the rear shell handle (1) through the first charging port (802) and the operation port (17) for easy charging.

9. A semiconductor laser rod according to claim 8, characterized in that: The second inner shell (12) has an installation port (901) located outside the button hole (13) and the first charging port (802). A silicone part (903) is fixed inside the installation port (901). A button groove (902) is provided on the silicone part (903) corresponding to the position of the button hole (13). The indicator light (15), vibration button (3) and switch button (14) extend to the corresponding positions in the button groove (902). A second charging port (904) is provided on the silicone part (903) corresponding to the position of the first charging port (802). The charging base (801) extends out of the rear shell handle (1) through the first charging port (802), the second charging port (904) and the operation port (17).

10. A semiconductor laser rod according to claim 9, characterized in that: The receiving groove (18) is fitted with a second connecting spring (1001). The top of the second connecting spring (1001) is detachably connected to the top of the receiving groove (18) by screws. The bottom of the second connecting spring (1001) is fixed with a sealing plate (1002).