Adjustable power millimeter wave therapy device, probe control components and methods

By designing a probe control component for an adjustable-power millimeter-wave therapy device, precise positioning and efficient massage of the probe on uneven surfaces were achieved. This solved the problems of poor treatment effect and heat interference in uneven surfaces of existing therapy devices, and improved the stability and comfort of the treatment.

CN120900130BActive Publication Date: 2026-04-03BEIJING ZHONGCHENG KANGFU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing millimeter-wave therapy probes cannot be accurately positioned when treating uneven surfaces, resulting in reduced treatment effectiveness; the heat generated during probe operation affects stability and patient comfort; prolonged treatment may lead to poor blood circulation, reducing treatment effectiveness, and probe misalignment affects irradiation effect.

Method used

An adjustable-power millimeter-wave therapy device was designed, employing a probe control assembly including a mounting plate, a sealing wedge, a massage rod, a positioning wedge, and a pressure sensor. Through the high-frequency movement of the massage rod and negative pressure heat dissipation, precise positioning, massage, and heat management of the probe are achieved.

Benefits of technology

It improves the positioning accuracy and treatment effect of the probe, enhances patient comfort and safety, ensures the stability and efficiency of the probe during treatment, avoids heat accumulation, and adapts to the patient's body movement.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of new energy vehicle charging cable technology, specifically an adjustable power millimeter wave therapy device, probe control assembly, and method. It includes: a body 1, which controls various electrical components; the body 1 serves as the main structure of the millimeter wave therapy device, providing electrical control and millimeter wave output; two ends 2 located on one side of the body 1 for millimeter wave therapy on the patient; the ends 2 contact the patient for millimeter wave therapy; and a wire 14 located between the body 1 and the ends 2 for electrical connection. The wire 14 connects and conducts the millimeter wave, ensuring that the millimeter wave generated by the body 1 can stably reach the ends 2 for patient treatment. The probe control assembly of this adjustable power millimeter wave therapy device is simple to operate, safe, stable, facilitates millimeter wave therapy on the patient, has strong adaptability, good treatment effect, and high treatment efficiency, meeting actual treatment needs.
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Description

Technical Field

[0001] This invention belongs to the field of new energy vehicle charging cable technology, specifically an adjustable power millimeter wave therapy device, probe control components and methods. Background Technology

[0002] Millimeter wave therapy is a device that uses electromagnetic waves in the millimeter wave band to perform physical therapy on the human body. It is widely used in pain management, inflammation treatment, and blood circulation improvement. Its mechanism of action includes thermal and non-thermal effects. Through the promotion of cell activity and microcirculation by millimeter waves, it achieves anti-inflammatory, analgesic, and tissue repair effects.

[0003] Chinese invention patent CN114053589B discloses a multi-probe integrated millimeter wave therapy device, including an outer shell and a C-shaped concave frame disposed on the outer shell. The C-shaped concave frame divides the outer shell into an upper probe mounting section and a lower integrated circuit section. The upper probe mounting section includes a hollow shell and an integrated gimbal disposed at the lower end of the hollow shell. Multiple linearly distributed millimeter wave probe assemblies are mounted on the integrated gimbal. This millimeter wave therapy device has low treatment accuracy and poor quality and effect.

[0004] CN114870266B belongs to the field of therapeutic instrument technology, specifically a millimeter-wave therapeutic device that facilitates the adjustment of the probe position. It includes a therapeutic instrument body, a digital control display screen on one side of the body, a rotating platform on the top of the body, a vertical rod rotatably connected to the top of the rotating platform, and a long rod hinged to the top of the vertical rod via a first hinge seat. This millimeter-wave therapeutic instrument has low probe adjustment precision and poor adjustment effect.

[0005] The probes of existing millimeter wave therapy devices come into direct contact with the patient during installation and fixation. However, if the patient needs treatment on an uneven surface, the probes cannot be accurately placed on the patient, thus reducing the effectiveness of subsequent millimeter wave therapy.

[0006] Furthermore, the probe of the millimeter wave therapy device generates heat during operation, either through its own structure or at the point of contact with the patient. This heat not only causes discomfort to the patient but also affects the normal working stability of the probe.

[0007] Meanwhile, when the millimeter wave therapy probe is used to irradiate a patient for an extended period, the treated area may become stiff due to poor blood circulation, thus reducing the effectiveness of subsequent millimeter wave therapy. In particular, if the probe moves during prolonged treatment, causing a shift in its position, the therapeutic effect will also be reduced. Summary of the Invention

[0008] To address the above problems, this invention provides a power-adjustable millimeter-wave therapy device, a probe control component, and a method.

[0009] To achieve the above objectives, the present invention provides the following technical solution: a power-adjustable millimeter-wave therapy device, comprising:

[0010] The main body, including all electrical components of the main body's electronic control system;

[0011] The two ends are located on one side of the body and are used to perform millimeter wave therapy on the patient;

[0012] A wire, located at the body and end, is used for electrical connection.

[0013] Preferably, the machine body has symmetrical side grooves on both sides, and a torsion spring seat is movably connected inside the side groove. The torsion spring seat has two symmetrical placement cavities inside, which are used to temporarily place the end and the wire. Two insertion rods are symmetrically provided on one side of the torsion spring seat, and two insertion holes are symmetrically provided inside the side groove. The insertion holes and insertion rods are inserted and used to elastically fix the torsion spring seat.

[0014] Preferably, the front of the machine body is provided with an operation screen, which electrically controls various electrical components. Below the operation screen is a speaker board, and in the middle of the speaker board is a switch button, which electrically controls the instrument switch. Multiple buffer pads are evenly provided at the bottom of the machine body, and a lifting slot is provided on the rear side of the machine body.

[0015] Preferably, two first sockets are symmetrically arranged on both sides of the switch button, a first plug is provided on one side of the wire, the first plug is electrically connected to the first socket, a second socket is provided on the other side of the wire, a second plug is provided on one side of the end, and the second socket is electrically connected to the second plug.

[0016] A probe control assembly, the control assembly being used to adjust and control the tip of the power-adjustable millimeter-wave therapy device, comprising:

[0017] Mounting plate, wherein the end is located inside the mounting plate and is controlled and adjusted thereon;

[0018] A sealing wedge that moves up and down inside the mounting plate;

[0019] A massage stick, which is movably connected below a sealing wedge and provides high-frequency massage to the patient;

[0020] A positioning wedge rod, which is movably connected to one side of the sealing wedge block and presses and fixes the outer surface of the end head;

[0021] A pressure sensor is located at the end of the positioning wedge and is used to detect the pressure value between the wedge and the outer surface of the end.

[0022] Heat dissipation holes are provided below the positioning wedge rod to recover and discharge the heat generated at the end under negative pressure.

[0023] Therefore, the positioning wedge is used to position and clamp the end head. At the same time, when the end head is used to perform millimeter wave therapy on the patient, the massage rod moves up and down and massages the patient's treatment position. The massage frequency and massage intensity are adjustable, thereby improving blood circulation and massage comfort during millimeter wave therapy. In addition, the up and down movement of the sealing wedge can also recover and discharge the heat generated by the end head under negative pressure, avoiding a reduction in the treatment effect of the end head. At the same time, when the patient moves and causes the end head position to shift, the massage rod moves up and down and drives the mounting plate to rotate in the opposite direction to ensure the accuracy and efficiency of the end head treatment position.

[0024] Preferably, the mounting plate has a positioning hole inside, and the end is inserted into the positioning hole. Two connecting ears are symmetrically provided on both sides of the mounting plate. The connecting ears facilitate subsequent adjustment and installation with the patient. Two pressing blocks are symmetrically provided on the other two sides of the mounting plate. The pressing blocks are used by the operator to adjust the position of the mounting plate.

[0025] Preferably, the bottom of the mounting plate is provided with a plurality of bottom grooves evenly distributed, the top of the bottom groove is provided with a telescopic part, the top of the sealing wedge is fixedly connected to the bottom output end of the telescopic part, the outer surface of the sealing wedge is slidably connected to the inner wall of the bottom groove, the bottom of the sealing wedge is fixedly connected to the top of the massage rod, and the massage rod moves up and down through the sealing wedge when the telescopic part is adjusted up and down. The bottom of the bottom groove is provided with a blocking block, the inside of the blocking block is provided with a matching hole, and the outer surface of the matching hole is slidably connected to the outer surface of the massage rod.

[0026] Preferably, one side of the sealing wedge is provided with an inclined sliding groove, and an inclined slider is slidably connected inside the inclined sliding groove. The side wall of the inclined slider is fixedly connected to the side wall of the positioning wedge rod. The sealing wedge moves up and down, causing the positioning wedge rod to move left and right. The mounting plate is provided with a plurality of moving holes evenly inside. The inner wall of the moving hole is slidably and sealingly connected to the outer surface of the positioning wedge rod. The other end of the positioning wedge rod is provided with an elastic clamping block. The elastic clamping block is elastic and its other end is fixedly connected to the side wall of the pressure sensor.

[0027] Preferably, the positioning wedge has a reflux chamber inside, the bottom of which is connected to the top of the heat exhaust hole, and one side of which is connected to the bottom groove and below the sealing wedge. Heat from the heat exhaust hole enters the bottom groove through the reflux chamber. The reflux chamber is equipped with a one-way air intake valve, which exhausts along the reflux chamber to the bottom groove. The sealing wedge has multiple pressure relief holes evenly distributed inside, and each pressure relief hole is equipped with a one-way exhaust valve, which exhausts from bottom to top. The mounting plate has multiple air outlet holes evenly distributed inside, which are connected to the bottom groove and above the sealing wedge.

[0028] The control method for the probe control component as described includes the following steps:

[0029] S1. Insert the end head into the mounting plate. When the pressure value detected by the multiple pressure sensors reaches the preset pressure value, the machine works and inputs millimeter waves to the end head through the wire. The end head performs millimeter wave therapy on the patient.

[0030] S2. The massage rod moves up and down and massages and unblocks the patient's treatment area. The pressure value detected by the pressure sensor reflects the massage force and massage frequency of the massage rod.

[0031] S3. When the massage rod moves up and down, it continuously applies a suction force to the heat exhaust hole, and the heat at the end is continuously absorbed and discharged along the heat exhaust hole.

[0032] S4. When the pressure value detected by the pressure sensor on one side increases and exceeds the preset pressure value, the massage rod moves downward and applies a reverse force to the mounting plate. The mounting plate drives the internal end to rotate in the opposite direction and return to the treatment position.

[0033] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0034] 1. In this invention, the probe control component of the adjustable power millimeter wave therapy device is simple to operate, safe and stable, and facilitates millimeter wave therapy to patients, resulting in good treatment effect, high treatment efficiency, and meeting actual treatment needs.

[0035] 2. In this invention, the adjustable power millimeter wave therapy device further improves the positioning accuracy and clamping effect of the end head by means of a massage rod when installing and fixing the end head. The point contact between the massage rod and the patient's skin further improves the friction fixation effect, preventing the end head from sliding on the patient's body and reducing the treatment accuracy.

[0036] 3. In this invention, the adjustable power millimeter wave therapy device achieves a massage effect around the patient during treatment by moving the massage rod up and down at high frequency. Both the massage intensity and frequency are adjustable, further improving the patient's comfort and the absorption effect of millimeter waves.

[0037] 4. In this invention, when the massage rod moves up and down, the heat at the end of the adjustable millimeter wave therapy device is continuously absorbed and discharged upward under negative pressure, further ensuring the safety and comfort of the working environment at the end and avoiding excessive heat at the end that could cause injury to the patient.

[0038] 5. In this invention, when the patient undergoes prolonged treatment and moves their body, the extension distance of the massage rod is adjusted according to the pressure value change of the pressure sensor, thereby achieving precise adjustment of the position of the mounting plate and the internal end, ensuring that the end is always facing the patient's treatment site, improving treatment accuracy, and guaranteeing quality and effectiveness. Attached Figure Description

[0039] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0040] Figure 2 This is a rear-view three-dimensional structural diagram of the present invention;

[0041] Figure 3 This is a schematic diagram of the three-dimensional structure of the body of the present invention;

[0042] Figure 4 This is a schematic diagram of the probe structure of the present invention;

[0043] Figure 5 This is a three-dimensional structural diagram of the probe of the present invention from another perspective;

[0044] Figure 6 This is a three-dimensional structural diagram of the mounting plate of the present invention;

[0045] Figure 7 This is a schematic diagram of the internal three-dimensional structure of the mounting plate of the present invention viewed from a 45-degree angle on the right.

[0046] Figure 8 for Figure 7 Enlarged view of point A in the middle;

[0047] Figure 9 for Figure 7 Enlarged view of point B in the middle;

[0048] Figure 10 This is a schematic diagram of the exploded three-dimensional structure inside the bottom groove of the present invention.

[0049] In the diagram: 1. Body; 2. End; 3. Side groove; 4. Torsion spring seat; 5. Placement cavity; 6. Insert rod; 7. Insertion hole; 8. Control panel; 9. Switch button; 10. Buffer pad; 11. First socket; 12. Lifting and placing groove; 13. First plug; 14. Wire; 15. Second socket; 16. Second plug; 17. Speaker board; 18. Mounting plate; 19. Positioning hole; 20. Connecting ear; 21. Pressing block; 22. Bottom groove; 23. Telescopic part; 24. Blocking block; 25. Matching hole; 26. Sealing wedge; 27. Massage rod; 28. Moving hole; 29. ​​Positioning wedge rod; 30. Elastic clamp; 31. Pressure sensor; 32. Return cavity; 33. Heat exhaust hole; 34. One-way air intake valve; 35. Pressure relief hole; 36. One-way exhaust valve; 37. Slanted slide groove; 38. Slanted slider; 39. Air outlet. Detailed Implementation

[0050] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0051] Example 1

[0052] like Figures 1-10 As shown, the adjustable power millimeter wave therapy device includes: a body 1, which contains various electrical components for electrical control; the body 1 serves as the main structure of the millimeter wave therapy device, playing a role in electrical control and outputting millimeter waves; two terminals 2 located on one side of the body 1 for millimeter wave therapy to the patient; the terminals 2 contact the patient for millimeter wave therapy; and wires 14 located between the body 1 and the terminals 2 for electrical connection. The wires 14 connect and conduct the millimeter waves, ensuring that the millimeter waves generated by the body 1 can stably reach the terminals 2 for patient treatment.

[0053] The body 1 has symmetrical side grooves 3 on both sides. The side grooves 3 on both sides facilitate the subsequent installation and recycling of the end 2 and the wire 14. The side grooves 3 are movably connected to the torsion spring seat 4. The torsion spring seat 4 achieves elastic rotation inside the side groove 3 by means of torsion. The torsion spring seat 4 has two placement cavities 5 symmetrically arranged inside. The placement cavities 5 are used to temporarily place the end 2 and the wire 14. Two insertion rods 6 are symmetrically arranged on one side of the torsion spring seat 4. The side grooves 3 have two insertion holes 7 symmetrically arranged inside. The insertion rods 6 can be directly inserted into the insertion holes 7. The insertion holes 7 and the insertion rods 6 are connected and used to elastically fix the torsion spring seat 4.

[0054] The front of the machine body 1 is equipped with an operation screen 8, which electrically controls various electrical components. The operation screen 8 is touch-operated, which further facilitates the control of millimeter wave therapy. Below the operation screen 8 is a speaker plate 17, which emits sound to facilitate precise adjustment of the operation screen 8 by the operator. The middle of the speaker plate 17 is equipped with a switch button 9, which electrically controls the instrument switch. Multiple buffer pads 10 are evenly distributed on the bottom of the machine body 1. The buffer pads 10 improve the elastic support and cushioning effect of the machine body 1. The rear side of the machine body 1 is equipped with a lifting slot 12, which facilitates the adjustment of the position of the machine body 1.

[0055] Two first sockets 11 are symmetrically arranged on both sides of the switch button 9. A first plug 13 is provided on one side of the wire 14. The first plug 13 is electrically connected to the first socket 11. After the first plug 13 and the first socket 11 are connected and fixed, the electrical connection between the wire 14 and the body 1 is completed. A second socket 15 is provided on the other side of the wire 14. A second plug 16 is provided on one side of the end 2. The second socket 15 and the second plug 16 are electrically connected. After the second socket 15 and the second plug 16 are connected and fixed, the end 2 is installed and fixed simultaneously, which facilitates the end 2 to release millimeter waves and treat patients.

[0056] A probe control assembly is provided for adjusting and controlling the end head 2 of the aforementioned adjustable power millimeter wave therapy device. Specifically, it includes: a mounting plate 18, with the end head 2 located inside and controlled by the mounting plate 18, facilitating millimeter wave therapy on the patient; a sealing wedge 26, which moves up and down inside the mounting plate 18, continuously moving during treatment to fix the end head 2; and a massage rod 27, movably connected below the sealing wedge 26 to provide high-frequency massage to the patient. The massage rod 27 moves up and down synchronously with the sealing wedge 26, massaging the patient, thereby improving absorption and comfort during millimeter wave therapy. Furthermore, the massage rod 27, in conjunction with the mounting plate 18, supports and fixes the end head 2, preventing it from being misaligned with the treatment area when performing millimeter wave therapy on uneven patient positions.

[0057] A positioning wedge 29 is movably connected to one side of the sealing wedge 26 and presses and fixes the outer surface of the end head 2. The positioning wedge 29 can not only move up and down in sync with the sealing wedge 26, but also clamp and fix the outer surface of the end head 2, thereby improving the millimeter wave treatment effect of the end head 2. A pressure sensor 31 is located at the end of the positioning wedge 29 and is used to detect the pressure value between it and the outer surface of the end head 2. The position of the end head 2 can be quickly determined with the help of the pressure sensor 31. Multiple heat exhaust holes 33 are opened below the positioning wedge 29 and are used to recover and exhaust the heat generated by the end head 2 under negative pressure. When the end head 2 performs millimeter wave treatment on the patient, the treatment position of the patient or the end head 2 itself will inevitably generate some heat. The heat exhaust holes 33 will draw out the heat in time, thereby improving the safety and comfort of the end head 2 in the treatment of the patient.

[0058] The mounting plate 18 has a positioning hole 19 inside, and the end 2 is inserted into the positioning hole 19. The positioning hole 19 is designed to facilitate the insertion and fixation of the end 2. The mounting plate 18 has two connecting ears 20 symmetrically arranged on both sides. The connecting ears 20 facilitate subsequent adjustment and fixation with the patient. Specifically, an adjustable length bandage is inserted into the connecting ear 20. At the same time, the end of the bandage is equipped with a buckle and a ring. The length of the bandage is adjusted according to the different treatment positions of the patient. After the buckle and ring are locked in place, the mounting plate 18 also fixes the position of the end 2. The end 2 performs millimeter wave treatment on the patient. The mounting plate 18 also has two pressing blocks 21 symmetrically arranged on the other two sides. The pressing blocks 21 are used by the operator to adjust the position of the mounting plate 18.

[0059] The bottom of the mounting plate 18 is evenly provided with multiple bottom grooves 22. The positions of the bottom grooves 22 correspond to the positions of the sealing wedges 26 and the positioning wedges 29. The inner top of the bottom groove 22 is provided with a telescopic part 23, which is mostly an electric push rod. The top of the sealing wedge 26 is fixedly connected to the bottom output end of the telescopic part 23. When the telescopic part 23 is activated, it drives the sealing wedge 26 to move up and down inside the bottom groove 22. The outer surface of the sealing wedge 26 is in a sealing sliding connection with the inner wall of the bottom groove 22. This setting further improves the regulation and stability of the air pressure inside the bottom groove 22, which facilitates the heat absorption and recovery function of the rear heat outlet 33 at the end of the end 2. The bottom of the sealing wedge 26 The massage rod 27 is fixedly connected to the top of the telescopic part 23. Therefore, when the telescopic part 23 is adjusted up and down, the massage rod 27 is moved up and down through the sealing wedge 26. A blocking block 24 is provided at the bottom of the bottom groove 22. A matching hole 25 is opened inside the blocking block 24. The outer surface of the matching hole 25 is slidably connected to the outer surface of the massage rod 27. The blocking block 24 and the matching hole 25 ensure a sealed environment inside the bottom groove 22 and below the sealing wedge 26. That is, when the sealing wedge 26 moves the massage rod 27 up and down, the massage rod 27 will not only massage the patient, but also adjust the air pressure inside the bottom groove 22 and below the sealing wedge 26.

[0060] One side of the sealing wedge 26 is provided with an inclined groove 37, and an inclined slider 38 is slidably connected inside the inclined groove 37. The side wall of the inclined slider 38 is fixedly connected to the side wall of the positioning wedge 29. The inclined slider 38 and the inclined groove 37 are wedge-shaped and have a T-shaped structure. This structure ensures the synchronicity and accuracy of the movement of the sealing wedge 26 and the positioning wedge 29. The up-and-down movement of the sealing wedge 26 drives the positioning wedge 29 to move left and right. The mounting plate 18 is provided with a plurality of moving holes 28 evenly inside. The wall and the outer surface of the positioning wedge 29 are sealed and slidably connected. The setting of the moving hole 28 ensures that the internal space of the bottom groove 22 is sealed when the positioning wedge 29 moves. The other end of the positioning wedge 29 is provided with an elastic clamping block 30. The elastic clamping block 30 is elastic and its other end is fixedly connected to the side wall of the pressure sensor 31. The elastic clamping block 30 is elastically clamped to the outer surface of the end 2, thereby not only avoiding the clamping loss of the elastic clamping block 30 to the outer surface of the end 2, but also enabling the pressure sensor 31 to accurately detect the pressure value on the outer surface of the end 2.

[0061] The positioning wedge 29 has a return cavity 32 inside. The bottom of the return cavity 32 is connected to the top of the heat exhaust hole 33. Therefore, when the heat exhaust hole 33 applies a suction force to the end 2 position, heat can flow into the return cavity 32 along the heat exhaust hole 33. One side of the return cavity 32 is connected to the inside of the bottom groove 22 and is located below the sealing wedge 26. Thus, the heat inside the heat exhaust hole 33 enters the bottom groove 22 through the return cavity 32. The return cavity 32 is equipped with a one-way air inlet valve 34. The exhaust direction of the one-way air inlet valve 34 is along the return cavity 32 to the inside of the bottom groove 22. Therefore, heat can only enter the bottom groove 22 from the return cavity 32 and cannot flow back. To ensure the unidirectional and stable heat dissipation, the sealing wedge 26 is equipped with multiple pressure relief holes 35 evenly distributed inside. Each pressure relief hole 35 is equipped with a one-way exhaust valve 36, which exhausts heat from bottom to top. Therefore, the heat inside the bottom groove 22 and located below the sealing wedge 26 is discharged unidirectionally along the pressure relief holes 35. The mounting plate 18 is equipped with multiple air outlet holes 39 evenly distributed inside. The air outlet holes 39 are connected to the bottom groove 22 and located above the sealing wedge 26. The heat inside the bottom groove 22 is finally discharged to the outside through the air outlet holes 39, further improving the heat recovery and discharge effect and preventing excessive heat at the two ends from affecting millimeter wave treatment.

[0062] Existing millimeter-wave therapy devices use probes that directly contact the patient during installation. However, if the patient needs treatment on uneven surfaces, the probe cannot be accurately positioned, reducing the effectiveness of subsequent millimeter-wave therapy. Furthermore, the probe generates heat during operation, either on its own structure or at the patient's contact point. This heat can cause discomfort for the patient and affect the probe's stability. Additionally, prolonged irradiation can lead to stiffness at the treatment site due to poor blood circulation, further reducing the therapeutic effect. Finally, if the probe shifts during extended treatment, causing a positional shift, the therapeutic effect will also be diminished.

[0063] To address the aforementioned issues, the probe control component of this millimeter-wave therapy device, in actual use, involves moving the body 1 to a suitable position, opening the torsion spring seat 4, removing the wire 14 and end 2 from the placement cavity 5, connecting the first socket 11 to the first plug 13, and connecting the second socket 15 to the second plug 16. At this point, the body 1 controls the end 2 via the wire 14, further enhancing the millimeter-wave therapy effect of the end 2 on the patient.

[0064] After the connection of end 2 is completed, end 2 is placed inside the positioning hole 19 in the mounting plate 18. The operation panel 8 controls the telescopic part 23 to start and the output end to be in the initial position. The telescopic part 23 drives the sealing wedge block 26 to be in the initial position inside the bottom groove 22. The inclined slide groove 37 on one side of the sealing wedge block 26 cooperates with the inclined slide block 38 and drives the positioning wedge rod 29 to be in the initial position inside the moving hole 28. The elastic clamping block 30 at the end of the positioning wedge rod 29 will not obstruct the installation of end 2.

[0065] Then, the operation panel 8 controls the telescopic part 23 to start and the output end to extend and retract. The telescopic part 23 drives the sealing wedge block 26 to move downward along the bottom groove 22 to a suitable position. The sealing wedge block 26 drives the positioning wedge rod 29 to move through the inclined slide groove 37 and the inclined slide block 38. The positioning wedge rod 29 drives the elastic clamping block 30 at the end to clamp and fix it to the outer surface of the end head 2. The pressure values ​​detected by multiple pressure sensors 31 are all equal. At this time, the end head 2 is located at the axis of the positioning hole 19 and the end head 2 is fixed itself.

[0066] The end head 2 is then placed on the patient's treatment area. Multiple massage rods 27 support and limit the patient's body, ensuring that the treatment distance between the end head 2 and the patient's body meets the actual needs. However, the patient's treatment area is not flat, and one side is lower than the central treatment position. Therefore, the end of the massage rod 27 is lower than the other positions at that point, and the mounting plate 18 tilts downward on that side. Under its own weight, the end head 2 exerts a greater squeezing force on the elastic clamp 30 on that side. The pressure value detected by the pressure sensor 31 on that side is greater than the pressure value detected by the pressure sensors at other positions. Then, the operation panel 8 controls... When the telescopic part 23 on this side is activated and the output end extends, the output end of the telescopic part 23 drives the sealing wedge 26 to move downward along the bottom groove 22. The sealing wedge 26 drives the massage rod 27 to move downward. The end of the massage rod 27 moves upward and, with the help of the reverse force, drives the mounting plate 18 to move upward continuously on this side to return to its original position. Then, the mounting plate 18 drives the internal end 2 to move in the opposite direction synchronously and return to the millimeter wave treatment state facing the patient's body. The pressure values ​​detected by multiple pressure sensors 31 are restored to the preset values, further improving the installation and fixing accuracy of the end 2 and the positioning treatment effect.

[0067] After fixing end 2, wrap bandages inside connecting ear 20 and adjust the length of the bandages accordingly to facilitate installation and fixation with the patient. Finally, use the buckles and clasps at the ends of the bandages to secure them, with end 2 facing the area to be treated on the patient.

[0068] The patient controls the operating screen 8 to generate millimeter waves in the machine body 1. These millimeter waves reach the end 2 via the wire 14. The end 2 performs millimeter wave therapy on the area to be treated, further ensuring the treatment effect. Simultaneously, during the treatment, the operating screen 8 controls the telescopic part 23 to continuously start and drive the sealing wedge 26 to move up and down inside the bottom groove 22. The massage rod 27 at the bottom of the sealing wedge 26 moves up and down, and the massage rod 27 continuously applies uniform pressure to the patient's body. The pressure intensity and frequency can be adjusted according to the patient's tolerance, thereby not only improving the patient's comfort and blood circulation at the treatment area, but also preventing the treatment area from remaining stationary for a long time and reducing the effect of millimeter wave therapy.

[0069] Simultaneously, when the telescopic part 23 drives the sealing wedge 26 to move up and down inside the bottom groove 22, the sealing wedge 26 drives the positioning wedge rod 29 to move laterally back and forth inside the moving hole 28 through the cooperation of the inclined sliding groove 37 and the inclined sliding block 38. The positioning wedge rod 29 elastically clamps the outer surface of the end head 2 through the elastic clamping block 30 at the end. The pressure value detected by the pressure sensor 31 changes continuously. At the same time, this pressure value can accurately and quickly detect the pressure and frequency of the massage rod 27 on the patient, thereby achieving real-time detection and adjustment functions, ensuring the comfort and accuracy of the patient receiving millimeter wave treatment from the end head 2.

[0070] Meanwhile, when the end head 2 is working continuously and performing millimeter wave therapy on the patient, some heat will be generated on the outer surface of the end head 2 and the area to be treated on the patient. At the same time, when the telescopic part 23 drives the sealing wedge 26 to move upward along the bottom groove 22, the space inside the bottom groove 22 and below the sealing wedge 26 increases and the pressure decreases. Then, the bottom groove 22 applies negative pressure to the inside of the return cavity 32, and the return cavity 32 applies negative pressure to the heat exhaust hole 33, so that the heat at the end head 2 continuously enters the inside of the return cavity 32 along the heat exhaust hole 33, and enters the bottom groove 22 for temporary storage along the one-way air intake valve 34 inside the return cavity 32.

[0071] Subsequently, when the telescopic part 23 drives the sealing wedge 26 to move downward along the bottom groove 22, the volume inside the bottom groove 22 and below the sealing wedge 26 decreases and the pressure increases. As a result, the heat inside the bottom groove 22 continuously enters above the sealing wedge 26 through the one-way air inlet valve 34 inside the pressure relief hole 35, and is eventually discharged upward along multiple air outlet holes 39. This effectively realizes the process of the heat at the end 2 being discharged upward through the heat exhaust hole 33, the return cavity 32, the pressure relief hole 35 and the air outlet hole 39, avoiding the accumulation of heat at the end 2 for a long time and reducing the patient's treatment comfort and the millimeter wave treatment effect generated by the end 2.

[0072] If the patient feels discomfort and moves during prolonged treatment, the position of the end head 2 on the patient's body will also change, thus affecting the millimeter-wave treatment effect of the end head 2. When the patient moves, causing the end of one massage rod 27 to move downwards, the mounting plate 18 causes the end head 2 to tilt synchronously to that side. The pressure value detected by the pressure sensor 31 on that side increases, while the pressure values ​​detected by the other pressure sensors 31 decrease. The operation panel 8 then controls the telescopic part 23 on that side to activate and extend its output end. The telescopic part 23, through the sealing wedge 26, drives the massage... As the massage rod 27 moves downward, it applies a counterforce to the mounting plate 18 on that side, causing the mounting plate 18 to rotate upward and return to its initial state. Simultaneously, as the sealing wedge 26 moves, it drives the positioning wedge 29 to move synchronously along the moving hole 28 via the inclined slide groove 37 and the inclined slider 38, increasing the squeezing force applied to the end head 2 on that side. As the mounting plate 18 moves continuously, the end head 2 returns to the optimal treatment position. The pressure values ​​detected by the pressure sensor 31 all reach the preset pressure values, and the end head 2 continues to work, ensuring the required treatment effect.

[0073] When the patient returns to the initial position, the pressure value detected by the pressure sensor 31 on this side increases, while the pressure values ​​detected by the other pressure sensors 31 decrease. Then, the operation panel 8 controls the telescopic part 23 on this side to start and the output end to shorten. The telescopic part 23 drives the massage rod 27 to move upward and return to its original position through the sealing wedge 26, thereby continuing to clamp and fix the end head 2 as required and to provide millimeter wave treatment to the patient. Furthermore, the arrangement of multiple massage rods 27 can further improve the snap-fit ​​fixation effect between the mounting plate 18 and the end head 2 and the patient's body. That is, the massage rods 27 make multiple points of contact to improve the friction fixation effect and avoid the mounting plate 18 and the end head 2 only contacting the patient's body surface and reducing the fixation effect.

[0074] After the end head 2 completes the millimeter wave treatment for the patient, remove the bandage and hold the pressing blocks 21 on both sides of the mounting plate 18. At the same time, the operation screen 8 controls the telescopic part 23 to start and the output end to shorten to the maximum distance. The telescopic part 23 drives the massage rod 27 to move upward and retract into the bottom groove 22 through the sealing wedge 26. At the same time, the sealing wedge 26 cooperates with the inclined slide groove 37 and the inclined slide block 38 to drive the positioning wedge rod 29 to retract to the maximum distance along the moving hole 28. The elastic clamp 30 at the end of the positioning wedge rod 29 disengages from the snap-fit ​​fixation on the outer surface of the end head 2. Take out the end head 2 along the positioning hole 19, and unplug the first socket 11 and the first plug 13, unplug the second socket 15 and the second plug 16. Place the end head 2 and the wire 14 into the placement cavity 5 for recycling. Turn off the switch button 9 and place the machine body 1 back into the appropriate position through the lifting and placing groove 12.

[0075] The probe control component of this adjustable-power millimeter-wave therapy device is simple to operate, safe, and stable, facilitating millimeter-wave therapy on the patient via the end head 2. It offers good treatment results and high efficiency, meeting practical treatment needs. Furthermore, the massage rod 27 further enhances the positioning accuracy and clamping effect of the end head 2 during installation and fixation. The point contact between the massage rod 27 and the patient's skin further improves the friction fixation effect, preventing the end head 2 from slipping on the patient's body and reducing treatment accuracy. During treatment, the high-frequency up-and-down movement of the massage rod 27 provides a massage effect around the patient's treatment area, with adjustable massage intensity and frequency. All are adjustable, further improving patient comfort and the absorption effect of millimeter waves; and when the massage rod 27 moves up and down, the heat at the end 2 is continuously absorbed and discharged upward under negative pressure, further ensuring the safety and comfort of the working environment of the end 2, and avoiding excessive heat at the end 2 that could cause injury to the patient; when the patient undergoes treatment for a long time and moves their body, the extension distance of the massage rod 27 is adjusted accordingly by the pressure value change of the pressure sensor 31, thereby achieving precise adjustment of the position of the mounting plate 18 and the internal end 2, ensuring that the end 2 is always facing the patient's treatment area, improving treatment accuracy, and ensuring quality and effect.

[0076] Example 2

[0077] The control method for the probe control component of the aforementioned power-adjustable millimeter-wave therapy device includes the following steps:

[0078] S1. Insert the end 2 into the mounting plate 18. When the pressure value detected by multiple pressure sensors 31 reaches the preset pressure value, the machine body 1 starts working and inputs millimeter waves to the end 2 through the wire 14. The end 2 performs millimeter wave therapy on the patient.

[0079] S2, The massage rod 27 moves up and down and massages and unblocks the patient's treatment area. The pressure value detected by the pressure sensor 31 reflects the massage force and massage frequency of the massage rod 27.

[0080] S3. When the massage rod 27 moves up and down, it continuously applies suction force to the heat exhaust hole 33, and the heat at the end 2 is continuously absorbed and discharged along the heat exhaust hole 33.

[0081] S4. When the pressure value detected by the pressure sensor 31 on one side increases and exceeds the preset pressure value, the massage rod 27 moves downward and applies a reverse force to the mounting plate 18. The mounting plate 18 drives the internal end 2 to rotate in the opposite direction and return to the treatment position.

[0082] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0083] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A probe control assembly for adjusting and controlling the end (2) of a power-adjustable millimeter wave therapy device, wherein the power-adjustable millimeter wave therapy device includes a body (1) that electrically controls various electrical components, an end (2) having two ends (2) located on one side of the body (1) for millimeter wave therapy to a patient, and a wire (14) located between the body (1) and the end (2) for electrical connection, characterized in that, include: Mounting plate (18), the end (2) is located inside the mounting plate (18) and is controlled and adjusted thereon; A sealing wedge (26) moves up and down inside the mounting plate (18); A massage rod (27) is movably connected below a sealing wedge (26) and provides high-frequency massage to the patient; Positioning wedge (29), which is movably connected to one side of sealing wedge (26) and presses and fixes the outer surface of end (2); A pressure sensor (31) is located at the end of the positioning wedge (29) and is used to detect the pressure value between the wedge and the outer surface of the end (2). A sliding groove (37) is provided on one side of the sealing wedge (26). A sliding block (38) is slidably connected inside the sliding groove (37). The side wall of the sliding block (38) is fixedly connected to the side wall of the positioning wedge (29). The sealing wedge (26) moves up and down, causing the positioning wedge (29) to move left and right. A plurality of moving holes (28) are evenly provided inside the mounting plate (18). The inner wall of the moving hole (28) is slidably connected to the outer surface of the positioning wedge (29). An elastic clamp (30) is provided at the other end of the positioning wedge (29). The elastic clamp (30) is elastic and its other end is fixedly connected to the side wall of the pressure sensor (31). Heat dissipation holes (33) are provided below the positioning wedge (29) and the heat generated at the end (2) is recovered and discharged under negative pressure. The sealing wedge (26) drives the positioning wedge (29) to move laterally back and forth inside the moving hole (28) through the cooperation of the inclined slide groove (37) and the inclined slide block (38). The positioning wedge (29) elastically clamps the outer surface of the end (2) through the elastic clamp (30) at the end. When the sealing wedge (26) moves, it drives the positioning wedge (29) to move synchronously along the moving hole (28) through the inclined slide groove (37) and the inclined slide block (38), and the squeezing force applied to the end (2) on this side increases. Then the end (2) returns to the optimal treatment position as the mounting plate (18) moves continuously.

2. The probe control assembly according to claim 1, characterized in that, The mounting plate (18) has a positioning hole (19) inside, and the end (2) is inserted into the positioning hole (19). The mounting plate (18) has two connecting ears (20) symmetrically arranged on both sides. The connecting ears (20) facilitate subsequent adjustment and installation fixation with the patient. The mounting plate (18) also has two pressing blocks (21) symmetrically arranged on the other two sides. The pressing blocks (21) are used by the operator to adjust the position of the mounting plate (18).

3. The probe control assembly according to claim 1, characterized in that, The bottom of the mounting plate (18) is provided with a plurality of bottom grooves (22) evenly. The top of the bottom groove (22) is provided with a telescopic part (23). The top of the sealing wedge (26) is fixedly connected to the bottom output end of the telescopic part (23). The outer surface of the sealing wedge (26) is sealed and slidably connected to the inner wall of the bottom groove (22). The bottom of the sealing wedge (26) is fixedly connected to the top of the massage rod (27). When the telescopic part (23) is adjusted up and down, the massage rod (27) is moved up and down through the sealing wedge (26). The bottom of the bottom groove (22) is provided with a blocking block (24). The inside of the blocking block (24) is provided with a matching hole (25). The outer surface of the matching hole (25) is sealed and slidably connected to the outer surface of the massage rod (27).

4. The probe control assembly according to claim 3, characterized in that, The positioning wedge (29) has a reflux chamber (32) inside. The bottom of the reflux chamber (32) is connected to the top of the heat exhaust hole (33). One side of the reflux chamber (32) is connected to the inside of the bottom groove (22) and below the sealing wedge (26). The heat inside the heat exhaust hole (33) enters the bottom groove (22) through the reflux chamber (32). The reflux chamber (32) is equipped with a one-way air intake valve (34). The exhaust direction is along the return cavity (32) to the inside of the bottom groove (22). The inside of the sealing wedge (26) is uniformly provided with multiple pressure relief holes (35). The inside of the pressure relief hole (35) is provided with a one-way exhaust valve (36). The exhaust direction of the one-way exhaust valve (36) is from bottom to top. The inside of the mounting plate (18) is uniformly provided with multiple air outlet holes (39). The air outlet holes (39) are connected to the inside of the bottom groove (22) and located above the sealing wedge (26).

Citation Information

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