Integrated intermediate frequency therapeutic instrument and electrode patch

By integrating the design of a mid-frequency therapeutic instrument and modular electrode patches, the problems of large size of mid-frequency therapeutic instruments and inability of electrodes to target acupoints have been solved, achieving convenient operation and efficient electrotherapy.

CN120679081BActive Publication Date: 2026-01-27CHANGCHUN AIKANG MEDICAL MASCH CO LTD
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Patent Information

Application Number
CN202511150392.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-18
Publication Date
2026-01-27
Estimated Expiration
2045-08-18

AI Technical Summary

Technical Problem

Existing intermediate frequency therapy devices are bulky, inconvenient to operate, and their electrode patches cannot target different acupoints and have poor hygiene.

Method used

The integrated intermediate frequency therapy device is designed, including main components, control components, adjustment mechanisms and auxiliary mechanisms, achieving integrated design. The electrode blocks are self-adjustable, the electrode patches adopt a modular design, and the conductive adhesive tape and insulating layer have a layered structure.

Benefits of technology

It improves ease of use and operational efficiency, ensures precise alignment of electrode blocks, enhances the effect of electrotherapy, and improves the hygiene of treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of intermediate frequency treatment, and particularly relates to an integrated intermediate frequency therapeutic instrument and an electrode patch, which comprises a main body assembly, the upper side of the main body assembly is provided with a control assembly, the lower side of the main body assembly is provided with an adjusting mechanism, and the side of the main body assembly is provided with an auxiliary mechanism, the main body assembly comprises a mounting plate and a movable plate, and the side of the mounting plate and the movable plate is fixedly provided with a first circuit board and a second circuit board. The integrated design of the electrotherapy instrument can be realized by arranging the main body assembly, the control assembly, the adjusting mechanism and the auxiliary mechanism, the convenience and the operation efficiency are improved, specifically, the battery block, the input control board and the output control board are integrated in the mounting block by the integrated layout of the main body assembly and the control assembly, the circuit board is directly powered by the power supply sheet, the external cable winding is reduced, the equipment volume is reduced, and the equipment is convenient to carry, and the position of the electrode can be adjusted according to different acupoints.
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Description

Technical Field

[0001] This invention relates to the field of intermediate frequency therapy technology, and in particular to an integrated intermediate frequency therapy device and electrode patch. Background Technology

[0002] The full name of the intermediate frequency therapy device is "low-frequency modulated intermediate frequency therapy device". It is an instrument that uses intermediate frequency current modulated by low-frequency current to treat diseases. The amplitude and frequency of the current change with the amplitude and frequency of the low-frequency current.

[0003] Existing treatment devices typically include an integrated control unit with wiring inserted into its side to connect to the circuit. The other end of the wiring is fixedly connected to a patch, which is then adhered to the patient's skin for electrotherapy. However, current usage presents the following problems:

[0004] 1. The existing device is large in size and requires wiring. When performing electrotherapy on patients in different positions, the device or patient needs to be moved and the wiring needs to be reorganized, which makes it inconvenient to use.

[0005] 2. Existing electrodes only conduct electricity through patches to release current, which cannot target the treatment needs of acupoints in different parts of the body;

[0006] 3. Traditional electrode patches are mostly for single use, but they are prone to leaving adhesive residue when replaced and lack skin pretreatment function, which affects conductivity and treatment hygiene. Therefore, we propose an integrated intermediate frequency therapy device and electrode patch. Summary of the Invention

[0007] In order to overcome the technical problems existing in the prior art, the present invention provides an integrated intermediate frequency therapy device and electrode patch.

[0008] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an integrated intermediate frequency therapy device, including a main body component, a control component disposed on the upper side of the main body component, an adjustment mechanism disposed on the lower side of the main body component, and an auxiliary mechanism disposed on the side of the main body component;

[0009] The main component includes a mounting plate and a movable plate. A first circuit board and a second circuit board are fixedly mounted on the sides of the mounting plate and the movable plate. A first electrode block is provided at the four lower corners of the first circuit board.

[0010] The control component includes a mounting block, and a battery block, an input control board and an output control board are fixedly installed inside the mounting block. A power supply piece is movably attached to the side of the output control board and the lower side of the power supply piece is connected to the first circuit board and the second circuit board.

[0011] The adjustment mechanism includes a connecting rod fixedly installed on the lower side of the mounting block, a gear and a rack on the side of the connecting rod, and a movable frame movably arranged between the movable plate and the second circuit board.

[0012] The auxiliary mechanism includes a connecting groove on the side of the movable plate and a sliding groove on the side of the movable frame. An adjusting rod is slidably arranged inside the sliding groove. A second electrode block is fixedly installed on the side of the adjusting rod, and a support spring is fixedly installed on the side of the adjusting rod.

[0013] Furthermore, the movable plate is rotatably mounted on both sides of the mounting plate, and the movable plate has slots equidistantly opened on the arc surface near the mounting plate. The slots are fitted with locking plates, and a fixing plate is fixedly installed on the inner side of the main component. Support plates are symmetrically fixedly connected between the fixing plate and the sides of the locking plates.

[0014] Furthermore, the first electrode block is connected to the internal circuit of the first circuit board, and a mating groove is provided through the side of the second circuit board. The contact piece is disposed on the wall of the mating groove and is connected to the internal circuit of the second circuit board.

[0015] Furthermore, the mounting block is disposed on the upper side of the mounting plate, the battery block is fixedly disposed inside the mounting block, the input control board and the output control board are respectively mirror disposed on the upper and lower sides of the battery block, the upper side of the mounting block is provided with a control module and the control module passes through the mounting block and is electrically connected to the input control board, and the bottom side of the interior of the mounting block is provided with a slot that passes through the mounting block and the mounting plate, and the power supply piece is disposed inside the slot.

[0016] Furthermore, the mounting plate has a constraint groove on its upper side, and the mounting block has a movable groove on its side. A movable block is movably installed inside the movable groove, and part of the movable block extends out of the movable groove. A support cylinder is fixedly connected between the side of the movable block and the wall of the movable groove. A constraint plate is fixedly installed on the side of the movable block, and the constraint plate is snapped and attached to the wall of the constraint groove.

[0017] Furthermore, the connecting rod is movably sleeved on the side of the power supply piece, and the connecting rod is movably positioned inside the slot extending to the lower side of the mounting plate. The gear is fixedly installed on the lower side of the connecting rod and movably sleeved on the side of the power supply piece. The gear is attached to the upper side of the other side of the power supply piece. The rack is meshed on the side of the gear. The gear and rack are positioned between the first circuit board and the mounting plate. Each set of racks has a connecting plate separately fixedly connected to its side, and the other end of the connecting plate is fixedly installed on the side of the corresponding movable frame.

[0018] Furthermore, the connecting groove passes through the movable plate at the position of the movable frame, the adjusting rod extends out through the connecting groove, the second electrode block is movably disposed inside the mating groove and fits against the side of the contact piece, and the support spring is movably sleeved on the side of the adjusting rod.

[0019] An electrode patch includes a patch assembly disposed on the side of a main body assembly;

[0020] The patch assembly includes an insulating layer disposed on the sides of a first circuit board and a second circuit board. Conductive adhesive tape is disposed on both sides of the insulating layer and is attached to the sides of the first and second circuit boards. Conductive adhesive layers are disposed on both sides of the insulating layer and cover the sides of the conductive adhesive tape. Release film is attached to the sides of the conductive adhesive layers and the insulating layer. The release film is an easy-tear paper with adhesive on one side. The non-stick, easy-tear side of the mating film is attached to the side of the conductive adhesive layer. A mating film is attached to the adhesive side of the release film.

[0021] Compared with the prior art, the beneficial effects that this invention can achieve are:

[0022] 1. This invention achieves an integrated design of the electrotherapy device by setting up a main component, a control component, an adjustment mechanism, and an auxiliary mechanism, thereby improving ease of use and operational efficiency. Specifically, through the integrated layout of the main component and the control component, the battery block, input control board, and output control board are integrated into the mounting block, and the power supply plate directly powers the circuit board, reducing external cable entanglement, reducing the size of the device, and making it easy to carry. In addition, the position of the electrodes can be adjusted for different acupoints.

[0023] 2. By setting the main component, the movable plate can rotate on the side of the mounting plate, so that the first circuit board and the second circuit board can better fit and adhere to the side of the patient's skin. When the movable plate rotates, the card plate is elastically supported by the support plate, which can provide slight elastic limit to the card slot. After the movable plate is fully fitted, the card plate is engaged in the corresponding card slot, which provides a certain limit effect on the movable plate and ensures the contact effect between the subsequent patch and the skin.

[0024] 3. This invention, by setting up adjustment and auxiliary mechanisms, can achieve adaptive adjustment of corresponding acupoints. Specifically, rotating the mounting block can synchronously adjust the position of the movable frame through gear and rack linkage, initially realizing centralized control of the electrodes; the adjustment rod can be pressed and slid independently, and the position of the second electrode block is locked by the support spring, realizing fine adjustment of a single electrode, ensuring accurate alignment and stable contact at different acupoints. This ensures that the electrodes can directly stimulate acupoints when releasing current, improving the electrotherapy effect.

[0025] 4. By setting a constraint plate and its surrounding components, the elastic locking mechanism between the constraint groove and the constraint plate can effectively prevent the mounting block from accidentally rotating, ensuring that the electrode position will not shift during treatment.

[0026] 5. By setting up control components, this invention can achieve centralized control settings. The input control board processes commands and performs wireless control operations, while the output control board monitors the wireless commands from the input control board in real time. With the synchronous voltage transformation of the power supply chip, the long wiring structure can be simplified, and the device current can be centrally set and self-monitored.

[0027] 6. This invention achieves modular design by setting up patch components, which facilitates subsequent replacement and use. Specifically, the patch components adopt a layered design of conductive tape and conductive adhesive layer, which not only ensures current conduction efficiency, but also isolates the circuit board through the insulating layer; in addition, the double-layer protective structure of release film and mating film can remove dirt from the skin surface when peeled off, and improve the adhesion of conductive adhesive layer and treatment hygiene. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0030] Figure 3 This is a partial structural schematic diagram of the present invention;

[0031] Figure 4 This is a partial structural cross-sectional schematic diagram of the present invention;

[0032] Figure 5 For the present invention Figure 2 A magnified structural diagram at point A;

[0033] Figure 6 This is a partial structural diagram of the main components of the present invention;

[0034] Figure 7 This is a partial cross-sectional structural diagram of the control component of the present invention;

[0035] Figure 8 For the present invention Figure 2 A magnified structural diagram at point B;

[0036] Figure 9 This is a partial structural schematic diagram of the adjustment mechanism of the present invention;

[0037] Figure 10 This is a partial cross-sectional structural diagram of the auxiliary mechanism of the present invention;

[0038] Figure 11 For the present invention Figure 10 A magnified structural diagram at point C;

[0039] Figure 12 This is a partial exploded view of the patch assembly of the present invention.

[0040] The components include: 1. Main body assembly; 11. Mounting plate; 12. Movable plate; 13. Slot; 14. Mounting plate; 15. Fixing plate; 16. Support plate; 17. First circuit board; 171. First electrode block; 18. Second circuit board; 181. Mating groove; 182. Electrical contact piece; 2. Control assembly; 21. Mounting block; 22. Battery block; 23. Input control board; 24. Output control board; 25. Control module; 26. Slot; 27. Power supply piece; 3. Adjustment mechanism. 31. Constraint groove; 311. Constraint plate; 32. Movable groove; 321. Movable block; 322. Support cylinder; 33. Connecting rod; 331. Gear; 34. Rack; 35. Movable frame; 36. Connecting plate; 4. Auxiliary mechanism; 41. Connecting groove; 42. Slide groove; 43. Adjusting rod; 44. Second electrode block; 45. Support spring; 5. Patch assembly; 51. Insulating layer; 52. Conductive adhesive tape; 53. Conductive adhesive layer; 54. Release film; 55. Matching film. Detailed Implementation

[0041] To make the technical means, creative features, and achieved objectives and effects of this invention easier to understand, the invention is further described below with reference to specific embodiments. However, the following embodiments are merely preferred embodiments of this invention and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described herein without creative effort are all within the protection scope of this invention. Unless otherwise specified, the experimental methods in the following embodiments are conventional methods, and the materials and reagents used in the following embodiments are commercially available unless otherwise specified.

[0042] Example: Figure 1 and Figure 2 As shown, an integrated intermediate frequency therapy device includes a main body component 1, which can be centrally integrated and directly and stably attached to the patient's skin. A control component 2 is provided on the upper side of the main body component 1, which can centrally control and directly supply power. An adjustment mechanism 3 is provided on the lower side of the main body component 1, which can perform unified adjustment and is structurally integrated with the main body component 1 and the control component 2. An auxiliary mechanism 4 is provided on the side of the main body component 1, which can individually adjust some parts of the structure, thus making it suitable for electrotherapy of acupoints at different locations.

[0043] like Figures 2 to 6As shown, the main component 1 includes a mounting plate 11, which is an I-shaped plate. Movable plates 12 are mirror-imagely arranged on both sides of the mounting plate 11, and the movable plates 12 are rotatably mounted on the side of the mounting plate 11 via a circular shaft. The movable plates 12 are rectangular plates with curved sides. Equivalently spaced slots 13 are formed on the curved surfaces of the movable plates 12 near the mounting plate 11. The slots 13 are rectangular grooves, and a retaining plate 14 is engaged inside the slots 13. The retaining plate 14 is a U-shaped plate, and a retaining plate 14 is positioned on the inner side of the main component 1 corresponding to the retaining plate 1. A fixing plate 15 is fixedly installed at position 4. The fixing plate 15 is a rectangular plate. A support plate 16 is symmetrically fixedly connected between the fixing plate 15 and the side of the clamping plate 14. The support plate 16 is a W-shaped plate made of elastic material. A first circuit board 17 is fixedly installed on the lower side of the mounting plate 11. The first circuit board 17 is a rectangular circuit board with a bracket. First electrode blocks 171 are set at the four corners of the lower side of the first circuit board 17 and are connected to the internal circuit of the first circuit board 17. 71 is a circular electrode block that can be connected to release medium-frequency current. A second circuit board 18 is fixedly installed on the lower side of the movable plate 12. The second circuit board 18 is a rectangular circuit board with a bracket. A mating groove 181 is opened through the side of the second circuit board 18. The mating groove 181 is a convex groove. A contact piece 182 is provided on the wall of the mating groove 181 and is connected to the internal circuit of the second circuit board 18. The contact piece 182 can supply power to subsequent components. The first circuit board 17 and the second circuit board 18 are conventional circuit boards that integrate electronic components such as power supply, control and protection. Specifically, the movable plate 12 can rotate on the side of the mounting plate 11 so that the first circuit board 17 and the second circuit board 18 can better fit and adhere to the side of the patient's skin. When the movable plate 12 rotates, the clamping plate 14 is elastically supported by the support plate 16 and can provide a slight elastic limit to the clamping slot 13. After the movable plate 12 is fully fitted, the clamping plate 14 is clamped in the corresponding clamping slot 13 and provides a certain limiting effect to the movable plate 12.

[0044] like Figures 2 to 7As shown, the control component 2 includes a mounting block 21 disposed on the upper side of the mounting plate 11. The mounting block 21 is a cylindrical block with an internal cavity. A battery block 22 is fixedly disposed at the center of the mounting block 21, and the charging port of the battery block 22 extends through the mounting block 21. The battery block 22 is a ring-shaped battery block with a charging port. An input control board 23 and an output control board 24 are mirrored on the upper and lower sides of the battery block 22, respectively, and are electrically connected to the battery block 22 and fixedly disposed inside the mounting block 21. The input control board 23 is a circular integrated circuit board that can process input commands and wirelessly generate control commands. The output control board 24 is a circular integrated circuit board that can monitor wireless control commands and provide power. A control module 25 is disposed on the upper side of the mounting block 21 and is electrically connected to the input control board 23 through the mounting block 21. The control module 25 is a "T"-shaped module integrating a display screen and a trigger button. A slot 26 is provided on the bottom side of the part, which passes through the mounting block 21 and the mounting plate 11. The slot 26 is a cylindrical slot. A power supply piece 27 is set inside the slot 26. The upper side of the power supply piece 27 is connected to the output control board 24 in a movable contact circuit, and the lower side is connected to the first circuit board 17 and the second circuit board 18 in a circuit. The power supply piece 27 is a "T"-shaped electrical piece. Specifically, the corresponding program can be triggered by pressing the trigger button a certain number of times. The display screen set on the control module 25 can display the corresponding program information. The principle is that when the trigger button set on the control module 25 is pressed, the input control board 23 processes the signal and wirelessly controls the first circuit board 17 and the second circuit board 18 to perform the corresponding frequency release control operation. At the same time, the output control board 24 detects the wireless control signal of the input control board 23 and judges whether the command is correct. The power supply piece 27 can also supply current with variable voltage. The power supply piece 27 supplies power to the first circuit board 17 and the second circuit board 18, thus completing the integrated control and power supply operation.

[0045] like Figures 2 to 5 and Figures 7 to 9As shown, the adjustment mechanism 3 includes a constraint groove 31 on the upper side of the mounting plate 11 corresponding to the position of the mounting block 21. The constraint groove 31 is an annular groove. A movable groove 32 is mirror-imagely provided on the side of the mounting block 21. The movable groove 32 is a cylindrical groove with a convex cross-section. A movable block 321 is movably installed inside the movable groove 32, and part of the movable block 321 extends out of the interior of the movable groove 32. The movable block 321 is a T-shaped cylindrical block. A support cylinder 322 is fixedly connected between the side of the movable block 321 and the wall of the movable groove 32. The support cylinder 322 is a corrugated cylinder made of elastic material. A constraint plate 311 is fixedly installed on the side of 321 and the constraint plate 311 is snapped and attached to the wall of the constraint groove 31. The constraint plate 311 is an arc-shaped plate with a protrusion on the side. Specifically, pressing the constraint plate 311 causes the movable block 321 to slide into the movable groove 32 and compress the support cylinder 322 to deform. At this time, the constraint plate 311 is separated from the wall of the constraint groove 31, so that the mounting block 21 can rotate. Releasing the constraint plate 311 allows the movable block 321 to push the constraint plate 311 to fit against the wall of the constraint groove 31 under the elastic support of the support cylinder 322, thereby limiting and locking the mounting block 21.

[0046] A connecting rod 33 is fixedly installed on the lower side of the mounting block 21, and the connecting rod 33 is movably sleeved on the side of the power supply piece 27. The connecting rod 33 is movably disposed inside the slot 26 and extends to the lower side of the mounting plate 11. The connecting rod 33 is a hollow cylindrical rod. A gear 331 is fixedly installed on the lower side of the connecting rod 33, and the gear 331 is movably sleeved on the side of the power supply piece 27. The gear 331 is attached to the upper side of the other side of the power supply piece 27. The gear 331 is a ring gear 331. A rack 34 is mirror-meshed on the side of the gear 331. The rack 34 is a rectangular strip with teeth on one side. The gear 331 and the rack 34 are located between the first circuit board 17 and the mounting plate 11. A movable frame 35 is movably installed between positions 18. The movable frame 35 is an I-shaped frame. A connecting plate 36 is individually fixedly connected to the side of each set of racks 34, and the other end of the connecting plate 36 is fixedly installed on the side of the corresponding movable frame 35. The connecting plate 36 is a rectangular plate made of elastically deformable material. Specifically, when the mounting block 21 is unlocked and rotated, the connecting rod 33 can rotate with the mounting block 21, driving the gear 331 to mesh with the rack 34. The two sets of racks 34 move closer and further apart, and the corresponding movable frame 35 is adjusted in position through the connecting plate 36. In addition, the gear 331 and the connecting rod 33 can act as bearings for the mounting block 21, so that the mounting block 21 can rotate stably under constraint.

[0047] like Figures 2 to 4 and Figures 9 to 11As shown, the auxiliary mechanism 4 includes a connecting groove 41 symmetrically opened on the side of the movable plate 12, and the connecting groove 41 passes through the movable plate 12 at the position corresponding to the movable frame 35. The connecting groove 41 is a rectangular groove. A sliding groove 42 is symmetrically opened on the side of the movable frame 35 at the position corresponding to the connecting groove 41, and the sliding groove 42 is an I-shaped groove. An adjusting rod 43 is slidably arranged inside the sliding groove 42 and extends out through the connecting groove 41. The adjusting rod 43 is an insulating cylindrical rod with a continuous cross-shaped cross section. A second electrode block 44 is fixedly installed on the side of the adjusting rod 43 and is movably arranged inside the mating groove 181 and attached to the side of the contact piece 182. The second electrode block 44 is a circular electrode block and can release medium frequency current through the contact piece 182. A support spring is fixedly installed on the side of the adjusting rod 43. Spring 45 and support spring 45 are movably sleeved on the side of adjusting rod 43, with one end attached to the wall of slide groove 42; specifically, by default, the elastic support of support spring 45 makes one side of adjusting rod 43 tightly attached to the wall of slide groove 42, so that adjusting rod 43 is limited to the inside of movable frame 35. When movable frame 35 moves, it can drive all adjusting rods 43 to move synchronously, and the second electrode block 44 can slide inside the mating groove 181 and contact the contact piece 182 to receive power; in addition, pressing adjusting rod 43 makes the second electrode block 44 disengage from the side of contact piece 182, and the side of adjusting rod 43 is not attached to the wall of slide groove 42. At this time, the position of adjusting rod 43 can be adjusted by sliding inside slide groove 42 and connecting groove 41. Releasing adjusting rod 43 will make the second electrode block 44 attach to the side of contact piece 182;

[0048] like Figure 1 As shown, an electrode patch includes a patch assembly 5, which is disposed on the side of the main body assembly 1.

[0049] like Figures 1 to 5 and Figures 10 to 12As shown, the patch assembly 5 includes an insulating layer 51 disposed on the sides of the first circuit board 17 and the second circuit board 18. The insulating layer 51 is a rectangular block of insulating material. Conductive adhesive tape 52 is disposed on both sides of the insulating layer 51 and is attached to the sides of the first circuit board 17 and the second circuit board 18. Conductive adhesive layers 53 are disposed on both sides of the insulating layer 51 and are covered on the sides of the conductive adhesive tape 52. The conductive adhesive tape 52 and the conductive adhesive layers 53 are prior art and will not be described in detail here. A release film 54 is attached to the sides of the conductive adhesive layers 53 and the insulating layer 51. The release film 54 is an easy-tear paper with adhesive on one side. The non-stick, easy-tear side of the mating film 55 is attached to the side of the conductive adhesive layer 53. To achieve coverage and protection of the conductive adhesive layer 53, a mating film 55 is attached to the adhesive side of the release film 54. The mating film 55 is a rectangular film made of easy-to-tear plastic. Specifically, the patch assembly 5 can be fixed to the side of the first circuit board 17 and the second circuit board 18 by the conductive adhesive tape 52. The current released by the first electrode block 171 and the second electrode block 44 can be guided by the conductive adhesive tape 52 and the conductive adhesive layer 53 to complete the electrotherapy operation. The release film 54 and the mating film 55 can be directly peeled off from the side of the conductive adhesive layer 53 and the insulating layer 51. After peeling off the mating film 55, the skin can be adhered and cleaned through the adhesive side of the release film 54.

[0050] Working principle:

[0051] Before electrotherapy: First step, pre-adjust the position. After the patient lies flat or prone, adjust the position roughly according to the acupoints where electrotherapy will be performed. Press the constraint plates 311 on both sides of the mounting block 21 to disengage it from the wall of the constraint groove 31, so that the mounting block 21 can rotate under constraint. The rotation of the mounting block 21 drives the connecting rod 33 to rotate synchronously with the transmission gear 331. The gear 331 meshes with the rack 34, causing the two sets of movable frames 35 to move away from each other and closer to each other. In this way, the position of the movable frame 35 between the movable plate 12 and the first circuit board 17 is adjusted. When the movable frame 35 moves synchronously, all the adjusting rods 43 move accordingly.

[0052] The second step is to manually rotate the movable plate 12 to the side of the mounting plate 11 so that the mounting plate 11 and the movable plate 12 are in a "C" shape. The patch assembly 5 is then fixed to the side of the first circuit board 17 and the second circuit board 18 by the conductive tape 52.

[0053] Third, after peeling off the mating film 55, expose the adhesive side of the release film 54. Attach the mounting plate 11 and the movable plate 12 to the patient's skin. At this time, the release film 54 will adhere to the corresponding position on the patient's skin. Simultaneously, the movable plate 12 is squeezed and rotates self-adaptively, allowing the first circuit board 17 and the second circuit board 18 to better adhere to the patient's skin. Then, remove the mounting plate 11 and the movable plate 12 as a whole. The release film 54 adheres to the side of the patient's skin that is detached from the conductive adhesive layer 53 and the insulating layer 51. Manually peel off the release film 54 to perform the adhesion and dust removal operation on the corresponding skin of the patient. Attach the mounting plate 11 and the movable plate 12 to the corresponding position on the patient's skin again. At this time, they are adhered to the patient's skin by the conductive adhesive layer 53.

[0054] During electrotherapy: First, finely adjust the position. After the mounting plate 11 and the movable plate 12 are fixed in place, make corresponding adjustments according to the specific acupoints of the patient. Specifically, press the corresponding adjusting rod 43 to deform the supporting spring 45. The side of the adjusting rod 43 does not contact the wall of the slide groove 42. At the same time, the second electrode block 44 is also detached from the side of the contact piece 182 and is in a de-energized state. At this time, the adjusting rod 43 can be moved to slide inside the slide groove 42 and the connecting groove 41, which drives the second electrode block 44 to slide and adjust its position inside the matching groove 181. After the second electrode block 44 is completely aligned with the acupoint, release the adjusting rod 43. Under the elastic support of the supporting spring 45, the adjusting rod 43 is attached to the wall of the slide groove 42 and generates friction to lock it. The second electrode block 44 is attached to the side of the contact piece 182 and can be powered by it.

[0055] The second step is command control. The number of times the trigger button in the control module 25 is pressed is processed by the input control board 23, which receives and wirelessly outputs the corresponding working program command to the first circuit board 17 and the second circuit board 18. The display screen of the control module 25 will display the corresponding information. Simultaneously, the output control board 24 monitors the input control board 23 when it sends commands and works with the power supply chip 27 to provide voltage transformation power to the first circuit board 17 and the second circuit board 18. The first circuit board 17 and the second circuit board 18 are controlled by the command to release the corresponding current to the first electrode block 171 and the second electrode block 44, realizing different modes of electrotherapy operation. When releasing the current, the conductive adhesive tape 52 and the conductive adhesive layer 53 guide the direct stimulation of acupoints to enhance the electrotherapy effect.

[0056] After electrotherapy: Similarly, press and hold the trigger button included in the control module 25 to turn off the device. Then, remove the mounting plate 11 and the movable plate 12 directly. The conductive adhesive layer 53 will then detach from the patient's skin. The conductive adhesive tape 52 and the conductive adhesive layer 53 can be removed from the circuit board through the insulating layer 51. Replace the new patch assembly 5 for subsequent use.

[0057] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. An integrated intermediate frequency therapy device, comprising a main body component (1), a control component (2) disposed on the upper side of the main body component (1), an adjustment mechanism (3) disposed on the lower side of the main body component (1), and an auxiliary mechanism (4) disposed on the side of the main body component (1). Its features are: The main component (1) includes a mounting plate (11) and a movable plate (12). A first circuit board (17) and a second circuit board (18) are fixedly arranged on the sides of the mounting plate (11) and the movable plate (12). A first electrode block (171) is arranged at the four lower corners of the first circuit board (17). The movable plate (12) is rotatably mounted on both sides of the mounting plate (11). The movable plate (12) is provided with slots (13) at equal intervals on the arc surface near the mounting plate (11). The slots (13) are fitted with a plate (14). A fixing plate (15) is fixedly installed on the inner side of the main component (1). A support plate (16) is symmetrically fixed between the sides of the fixing plate (15) and the plate (14). The first electrode block (171) is connected to the internal circuit of the first circuit board (17), and the side of the second circuit board (18) is provided with a through groove (181), and the contact piece (182) is disposed on the wall of the groove (181) and is connected to the internal circuit of the second circuit board (18). The control component (2) includes a mounting block (21), and a battery block (22), an input control board (23) and an output control board (24) are fixedly installed inside the mounting block (21). The output control board (24) has a power supply piece (27) that is movably attached to the side of the circuit, and the lower side of the power supply piece (27) is connected to the first circuit board (17) and the second circuit board (18). The adjustment mechanism (3) includes a connecting rod (33) fixedly installed on the lower side of the mounting block (21). The side of the connecting rod (33) is provided with a gear (331) and a rack (34). A movable frame (35) is movably arranged between the movable plate (12) and the second circuit board (18). The mounting plate (11) has a constraint groove (31) on its upper side, and the mounting block (21) has a movable groove (32) on its side. The movable block (321) is movably installed inside the movable groove (32), and part of the movable block (321) extends out of the movable groove (32). A support cylinder (322) is fixedly connected between the side of the movable block (321) and the wall of the movable groove (32). A constraint plate (311) is fixedly installed on the side of the movable block (321), and the constraint plate (311) is snapped and attached to the wall of the constraint groove (31). The connecting rod (33) is movably sleeved on the side of the power supply piece (27). The connecting rod (33) is movably set inside the slot (26) and extends to the lower side of the mounting plate (11). The gear (331) is fixedly installed on the lower side of the connecting rod (33) and is movably sleeved on the side of the power supply piece (27). The gear (331) is attached to the upper side of the other side of the power supply piece (27). The rack (34) is meshed on the side of the gear (331). The gear (331) and the rack (34) are set between the first circuit board (17) and the mounting plate (11). Each set of racks (34) is individually fixedly connected to a connecting plate (36), and the other end of the connecting plate (36) is fixedly installed on the side of the corresponding movable frame (35). The auxiliary mechanism (4) includes a connecting groove (41) on the side of the movable plate (12) and a sliding groove (42) on the side of the movable frame (35). An adjusting rod (43) is slidably arranged inside the sliding groove (42). A second electrode block (44) is fixedly installed on the side of the adjusting rod (43), and a support spring (45) is fixedly installed on the side of the adjusting rod (43).

2. The integrated intermediate frequency therapy device according to claim 1, characterized in that: The mounting block (21) is set on the upper side of the mounting plate (11), the battery block (22) is fixedly set inside the mounting block (21), the input control board (23) and the output control board (24) are respectively mirrored on the upper and lower sides of the battery block (22), the upper side of the mounting block (21) is provided with a control module (25) and the control module (25) passes through the mounting block (21) and is connected to the input control board (23) by circuit. The bottom side of the interior of the mounting block (21) is provided with a slot (26) that passes through the mounting block (21) and the mounting plate (11), and the power supply piece (27) is set inside the slot (26).

3. The integrated intermediate frequency therapy device according to claim 2, characterized in that: The connecting groove (41) passes through the movable plate (12) at the position corresponding to the movable frame (35). The adjusting rod (43) extends out through the connecting groove (41). The second electrode block (44) is movably set inside the mating groove (181) and fits against the side of the contact plate (182). The support spring (45) is movably sleeved on the side of the adjusting rod (43).

4. An electrode patch for use in the integrated intermediate frequency therapeutic instrument according to claim 3, characterized in that: Includes a patch assembly (5), which is disposed on the side of the main body assembly (1); The patch assembly (5) includes an insulating layer (51) disposed on the sides of the first circuit board (17) and the second circuit board (18). Conductive adhesive tape (52) is disposed on both sides of the insulating layer (51) and the conductive adhesive tape (52) is attached to the sides of the first circuit board (17) and the second circuit board (18). Conductive adhesive layer (53) is disposed on both sides of the insulating layer (51) and the conductive adhesive layer (53) covers the side of the conductive adhesive tape (52). Release film (54) is attached to the side of the conductive adhesive layer (53) and the insulating layer (51). Release film (54) is an easy-tear paper with adhesive on one side. The non-stick easy-tear side of the mating film (55) is attached to the side of the conductive adhesive layer (53). The adhesive side of the release film (54) is attached to the mating film (55).

Citation Information

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