A combined physiotherapy waistband

CN224748180UActive Publication Date: 2026-09-15GUANGZHOU YANGSHI INTELLIGENT WEARING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521016606.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2026-09-15
Estimated Expiration
2035-05-22

AI Technical Summary

Technical Problem

[0006]本实用新型的目的是克服现有技术中存在的随身携带使用时固定不方便的缺陷与问题,提供一种随身携带使用时固定方便的组合式理疗腰带

Benefits of technology

[0029]1. This utility model discloses a combined physiotherapy belt, comprising a physiotherapy device and a strap. The front of the strap is connected to the upper side of an outer layer of stain-resistant and waterproof fabric. Straps are provided on both the left and right sides of the strap. Multiple evenly arranged sub-adhesives are provided on the left strap, and a female adhesive patch is provided on the right end of the right strap. The female adhesive patch and the sub-adhesive patches are bonded together. The magnetic component of the physiotherapy device corresponds one-to-one with the second magnetic component of the strap and is magnetically connected. In application, the physiotherapy device is first connected to the strap through the magnetic attraction between the magnetic component of the physiotherapy device and the second magnetic component of the strap. Then, according to the treatment area and the user's body shape, the physiotherapy device is aligned with the desired treatment area. After selecting the treatment area, adjust the tightness of the straps by adjusting the alignment of the right-side female adhesive strip and the left-side female adhesive strip, and then secure both straps. Once secured, activate the physiotherapy device to treat the desired area. The adjustable female-female adhesive strip structure ensures that the physiotherapy belt fits snugly against various parts of the body during portable use, effectively solving the problems of inconvenient fixation and poor environmental adaptability of traditional physiotherapy equipment. The magnetic adsorption design of the magnetic component and the second magnetic component allows for quick and reliable connection between the physiotherapy device and the strap, preventing accidental separation during use and further improving the convenience and stability of fixation. Therefore, this invention is not only convenient to use when carried, but also improves the convenience and stability of fixation.

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Abstract

A kind of combined physiotherapy waistband, including physiotherapy instrument and bandage;Physiotherapy instrument includes outer layer dirt-resistant waterproof cloth, FPC electronic part, bottom layer dirt-resistant waterproof cloth;The lower side of the outer layer dirt-resistant waterproof cloth is connected with the upper side of FPC electronic part, the lower side of FPC electronic part is connected with the upper side of bottom layer dirt-resistant waterproof cloth;The front of bandage is connected with the upper side of outer layer dirt-resistant waterproof cloth, and the left and right sides of bandage are each equipped with binding strip, a plurality of evenly arranged sub-paste are arranged on left side binding strip, the front of the right end of right side binding strip is provided with female paste, and female paste is bonded with sub-paste;Surface circuit layer of FPC electronic part is divided into surface main circuit area and several surface branch circuit areas, and resistance wire distributed in surface branch circuit area is circuit-connected with surface main circuit area;Bottom surface circuit layer of FPC electronic part is divided into bottom surface main circuit area and several copper sheets, and copper sheet is circuit-connected with bottom surface main circuit area by connecting circuit.Therefore, the design is fixed conveniently when being carried.
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Description

Technical Field

[0001] This utility model relates to an improvement of physiotherapy technology, belonging to the field of rehabilitation physiotherapy, and particularly to a combined physiotherapy waist belt. Background Technology

[0002] As people's living standards continue to improve, the pace of life accelerates, and work pressure increases, the demand for relieving work stress and physical and mental fatigue is becoming increasingly prominent, leading to the entry of various health care devices into households. Currently, the most common health care device is the massage device, which applies mechanical stimulation to various parts of the body through massage heads, effectively improving sub-health conditions such as muscle soreness and stiffness. However, existing portable massage devices are limited by their fixed design, resulting in large size and heavy weight, making them inconvenient to carry and use.

[0003] Chinese patent application No. 201610610363.6, filed on July 29, 2016, discloses a portable thermal shoulder physiotherapy device, including an outer cover, a heating pad, a thermal sensor, a placement bag, and a controller. The outer cover includes an arm area, a shoulder area, and a circular chest strap. Connectors are provided on both sides of the arm area. The arm area is used to apply treatment around the upper arm; the shoulder area is used to apply treatment to the shoulder; the chest strap is used to wrap around the patient's chest; a placement bag is provided on the inner wall of the outer cover; the heating pad is fixed to the inner wall of the outer cover at a position corresponding to the placement bag; the thermal sensor is located inside the placement bag; the outer cover and the controller are independent of each other; the thermal sensor and the heating pad are electrically connected to the controller via pluggable wires; a lithium battery is used, with a voltage lower than the safe voltage for human use, ensuring high patient safety. Although this patent allows for application to the shoulder for physiotherapy, it still has the following drawbacks:

[0004] The design still suffers from the problem of being inconvenient to secure when carried around.

[0005] The information disclosed in this background section is intended only to enhance the understanding of the overall background of this patent application and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Summary of the Invention

[0006] The purpose of this invention is to overcome the defects and problems of the existing technology, such as the inconvenience of fixing when carried and used, and to provide a combination physiotherapy belt that is convenient to fix when carried and used.

[0007] To achieve the above objectives, the technical solution of this utility model is: a combined physiotherapy waist belt, which includes a physiotherapy device and a strap;

[0008] The physiotherapy device includes an outer layer of stain-resistant and waterproof fabric, an FPC electronic component, and a bottom layer of stain-resistant and waterproof fabric; the lower side of the outer layer of stain-resistant and waterproof fabric is connected to the upper side of the FPC electronic component, and the lower side of the FPC electronic component is connected to the upper side of the bottom layer of stain-resistant and waterproof fabric.

[0009] The front of the strap is connected to the upper side of the outer stain-resistant and waterproof fabric. There are straps on both the left and right sides of the strap. There are multiple evenly arranged sub-adhesives on the left strap and a female adhesive on the right end of the right strap. The female adhesive is bonded to the sub-adhesives.

[0010] The FPC electronic component includes, from top to bottom, a component layer, a surface insulating coating, a surface circuit layer, an FPC substrate layer, a bottom circuit layer, and a bottom insulating coating; the lower surface of the surface insulating coating is surface-to-surface bonded to the upper surface of the FPC substrate layer, the lower surface of the FPC substrate layer is surface-to-surface bonded to the upper surface of the bottom insulating coating, the surface circuit layer is sandwiched between the lower surface of the surface insulating coating and the upper surface of the FPC substrate layer, and the bottom circuit layer is sandwiched between the lower surface of the FPC substrate layer and the upper surface of the bottom insulating coating;

[0011] The upper half of the component layer is a control circuit area, and the lower half is a power supply circuit area; the surface insulating coating includes a surface main board and several surface support boards. The upper half of the surface main board is a surface control area, and the lower half is a surface power supply area. The surface control area has several first holes, and the surface power supply area has several second holes. The surface circuit layer is divided into a surface main circuit area and several surface support circuit areas. The upper half of the surface main circuit area is a surface control circuit, and the lower half is a surface power supply circuit. The surface control circuit and the surface power supply circuit are connected. The surface support circuit areas have resistance wires, and the resistance wires are connected to the surface main circuit area. The FPC substrate layer includes a substrate layer main board and several substrate layer support boards. The upper half of the substrate layer main board is a substrate layer control area, and the lower half is a substrate layer power area. The substrate layer control area has several first vias, and the substrate layer power area has several second vias. The bottom circuit layer is divided into a bottom main circuit area and several copper sheets. The upper half of the bottom main circuit area is a bottom control circuit, and the lower half is a bottom power circuit. The bottom control circuit and the bottom power circuit are connected. The copper sheets are connected to the bottom main circuit area through connecting circuits. The bottom insulating coating includes a bottom main board and several bottom support boards. The bottom support boards have corresponding openings.

[0012] The control circuit area sequentially passes through the first hole and contacts the surface control circuit; the power circuit area sequentially passes through the second hole and contacts the surface power circuit; the control circuit area sequentially passes through the first hole, the surface control circuit, and the first via to contact the bottom control circuit; the power circuit area sequentially passes through the second hole, the surface power circuit, and the second via to contact the bottom power circuit; the control circuit area is electrically connected to the surface control circuit; the power circuit area is electrically connected to the surface power circuit; the control circuit area is electrically connected to the bottom control circuit; the power circuit area is electrically connected to the bottom power circuit; the surface support plate, the matrix layer support plate, and the bottom support plate have the same area; the area of ​​the surface support circuit area is less than or equal to the area of ​​the surface support plate; the window corresponds vertically to the copper sheet, and the area of ​​the window is less than or equal to the area of ​​the copper sheet.

[0013] The inner cavity of the strap is provided with a plurality of second magnetic components, the second magnetic components including a second sponge, a second gauze, and a second magnetic block; the middle part of the second sponge is provided with a groove adapted to the second magnetic block, the second magnetic block is located in the groove of the second sponge, and the second magnetic block is flush with the upper side of the second sponge; the second magnetic block and the upper side of the second sponge are connected to the second gauze.

[0014] The physiotherapy device also includes a shaping yarn and several magnetic components; the shaping yarn is disposed between the lower side of the outer stain-resistant and waterproof fabric and the upper side of the FPC electronic component; the magnetic component includes a first sponge, a first gauze, and a magnetic block, the middle of the first sponge is provided with a groove adapted to the magnetic block, the magnetic block is located in the groove of the first sponge, and the magnetic block is flush with the upper side of the first sponge; the upper side of the shaping yarn is connected to the lower side of the first sponge, and the upper side of the first sponge and the magnetic block is connected to the lower side of the first gauze;

[0015] The magnetic component corresponds one-to-one with the second magnetic component, and the magnetic component and the second magnetic component are magnetically connected.

[0016] The inner cavity of the strap is provided with a first protective cotton and a second protective cotton in sequence, with the back of the first protective cotton and the front of the second protective cotton attached together.

[0017] Each of the protective cotton components has a through-hole for mounting at the corresponding location of the second magnetic component. Each second magnetic component passes through the corresponding mounting hole and connects to the front of the second protective cotton component.

[0018] The physiotherapy device also includes several physiotherapy TPUs; the physiotherapy TPUs include an outer ring and a raised layer, the side of the raised layer is connected to the inner ring of the outer ring, and a placement cavity is formed between the raised layer and the outer ring;

[0019] The bottom stain-resistant and waterproof fabric has mounting holes that correspond one-to-one with the therapeutic TPU. Each of the raised layers protrudes from the corresponding mounting hole, and the lower side of the outer ring is fixedly connected to the upper side of the bottom stain-resistant and waterproof fabric.

[0020] The number of surface support plates, surface circuit support areas, matrix layer support plates, copper sheets, and bottom support plates is the same as the number of physiotherapy TPUs.

[0021] The surface support plate, surface circuit area, matrix layer support plate, copper sheet, and bottom support plate are all placed inside the placement cavity.

[0022] The physiotherapy device also includes several finger-shaped sponges, the number of which is the same as the number of physiotherapy TPUs; the lower side of the finger-shaped sponge is attached to the upper side of the surface support plate and then placed in the placement cavity.

[0023] The physiotherapy device also includes a sponge layer and a second sponge layer; the lower side of the second sponge layer is connected to the upper side of the first gauze, the upper side of the second sponge layer is connected to the lower side of the first sponge layer, and the upper side of the first sponge layer is connected to the lower side of the outer stain-resistant and waterproof fabric.

[0024] The power circuit area is connected to the external power circuit board; the external power circuit board is connected to the charging head and the battery pack respectively; the battery pack is connected to the power circuit area through the external power circuit board.

[0025] The external power circuit board, charging head, and battery pack are located between the shaping yarn and the two sponge layers;

[0026] The lower end of the outer stain-resistant and waterproof fabric has a through charging port, through which the charging head protrudes.

[0027] The physiotherapy device also includes a switch, which is connected to the control circuit area.

[0028] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0029] 1. This utility model discloses a combined physiotherapy belt, comprising a physiotherapy device and a strap. The front of the strap is connected to the upper side of an outer layer of stain-resistant and waterproof fabric. Straps are provided on both the left and right sides of the strap. Multiple evenly arranged sub-adhesives are provided on the left strap, and a female adhesive patch is provided on the right end of the right strap. The female adhesive patch and the sub-adhesive patches are bonded together. The magnetic component of the physiotherapy device corresponds one-to-one with the second magnetic component of the strap and is magnetically connected. In application, the physiotherapy device is first connected to the strap through the magnetic attraction between the magnetic component of the physiotherapy device and the second magnetic component of the strap. Then, according to the treatment area and the user's body shape, the physiotherapy device is aligned with the desired treatment area. After selecting the treatment area, adjust the tightness of the straps by adjusting the alignment of the right-side female adhesive strip and the left-side female adhesive strip, and then secure both straps. Once secured, activate the physiotherapy device to treat the desired area. The adjustable female-female adhesive strip structure ensures that the physiotherapy belt fits snugly against various parts of the body during portable use, effectively solving the problems of inconvenient fixation and poor environmental adaptability of traditional physiotherapy equipment. The magnetic adsorption design of the magnetic component and the second magnetic component allows for quick and reliable connection between the physiotherapy device and the strap, preventing accidental separation during use and further improving the convenience and stability of fixation. Therefore, this invention is not only convenient to use when carried, but also improves the convenience and stability of fixation.

[0030] 2. In this utility model, a combined physiotherapy waist belt, the surface circuit layer of the FPC electronic component is divided into a surface main circuit area and a surface branch circuit area. The upper half of the surface main circuit area is a surface control circuit, and the surface branch circuit area has resistance wires distributed thereon. The resistance wires are connected to the surface main circuit area. The bottom circuit layer of the FPC electronic component is divided into a bottom main circuit area and a copper sheet. The upper half of the bottom main circuit area is a bottom control circuit, and the copper sheet is connected to the bottom main circuit area through a connecting circuit. In application, when the current flows through the surface control circuit of the FPC electronic component to the resistance wires in the surface branch circuit area, the current generates heat due to the work done, which has a heating physiotherapy function. At the same time, the current flows through the bottom control circuit of the FPC electronic component to the copper sheet, causing the copper sheet to heat up. Based on this, the bottom control circuit controls the intermittent conduction of the current in the entire circuit (the bottom control circuit can be edited according to the existing technology) so that the copper sheet flows with intermittent current, so that the area that needs physiotherapy and is attached to the copper sheet continuously feels regular intermittent current stimulation, thereby producing a pulse effect. Therefore, this invention not only improves the convenience and stability of fixation, but also has the therapeutic effects of heating and pulse.

[0031] 3. In this utility model, a combined physiotherapy belt, the power circuit area is electrically connected to an external power circuit board. The external power circuit board is electrically connected to the charging head and the battery pack. The battery pack is electrically connected to the power circuit area through the external power circuit board. A through charging port is provided at the lower end of the outer layer of stain-resistant and waterproof fabric, through which the charging head protrudes. In use, the battery pack acts as an independent power source, continuously and stably providing power to the power circuit area to ensure the normal operation of all functions of the physiotherapy device. When the battery is low and needs to be replenished, simply connect the charging head through the charging port to an external power source to charge the battery pack through the external power circuit board. Alternatively, the charging head can also be connected to an external power source to directly power the physiotherapy device, enabling it to operate. This provides two power supply modes, facilitating use in various scenarios and enhancing portability. Therefore, this utility model is not only simple to fix and reliable in effect, but also highly portable.

[0032] 4. In this utility model, a combined physiotherapy waist belt, the side circumference of the raised layer in the physiotherapy TPU is connected to the inner circumference of the outer ring of the physiotherapy TPU, forming a placement cavity between the raised layer and the outer ring. The surface support plate, surface circuit area, matrix layer support plate, copper sheet, and bottom support plate are all placed in the placement cavity. In application, the branches of the FPC electronic components are arranged from top to bottom as follows: surface support plate, surface circuit area, matrix layer support plate, copper sheet, and bottom support plate. The copper sheet contacts the area requiring physiotherapy through the opening in the bottom support plate. If the copper sheet directly contacts the area requiring physiotherapy, the area will experience discomfort due to excessive stimulation when the copper sheet heats up and continuously outputs intermittent current stimulation. By placing the branches of the FPC electronic components in the placement cavity, the copper sheet contacts the area requiring physiotherapy through the physiotherapy TPU. The physiotherapy TPU provides a certain degree of heat insulation for the heat generated by the copper sheet and reduces the stimulation of the area requiring physiotherapy by the intermittent current continuously released by the copper sheet, avoiding discomfort caused by strong stimulation and increasing skin-friendly comfort. Therefore, this invention not only offers flexible charging methods but also enhances user comfort. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the structure of this utility model.

[0034] Figure 2 This is a schematic diagram of the strap structure in this utility model.

[0035] Figure 3 This is a cross-sectional view of the strap in this utility model.

[0036] Figure 4 This is a schematic diagram of the structure of a protective cotton in this utility model.

[0037] Figure 5 This is a schematic diagram of the physiotherapy device in this utility model.

[0038] Figure 6 This is a schematic diagram of the structure of the FPC electronic component in this utility model.

[0039] Figure 7 This is a schematic diagram of the component layer in the FPC electronic component of this utility model.

[0040] Figure 8 This is a schematic diagram of the surface insulating coating in the FPC electronic component of this utility model.

[0041] Figure 9 This is a schematic diagram of the surface circuit layer in the FPC electronic component of this utility model.

[0042] Figure 10 This is a schematic diagram of the structure of the FPC matrix layer in the FPC electronic component of this utility model.

[0043] Figure 11 This is a schematic diagram of the bottom circuit layer in the FPC electronic component of this utility model.

[0044] Figure 12 This is a schematic diagram of the bottom insulating coating in the FPC electronic component of this utility model.

[0045] Figure 13 This is a schematic diagram of the structure of the therapeutic TPU in this utility model.

[0046] Figure 14 This is a schematic diagram of the structure of the physiotherapy device in this utility model, taken from the angle of the bottom layer of stain-resistant and waterproof fabric.

[0047] Figure 15 This is a schematic diagram of the overall structure of the FPC electronic component in this utility model.

[0048] Figure 16 This is a schematic diagram of the structure of the physiotherapy device in this utility model, taken from the angle of the outer layer of stain-resistant and waterproof fabric.

[0049] Figure 17 This is a schematic diagram of the structure of the magnetic component in this utility model.

[0050] Figure 18 This is a schematic diagram of the structure of the second magnetic component in this utility model.

[0051] Figure 19 This is a schematic diagram of the structure of the bottom layer stain-resistant and waterproof fabric in this utility model.

[0052] In the diagram: Physiotherapy device A, outer stain-resistant and waterproof fabric 1, charging port 12, switch 121, switch label 122, strap 13, first protective cotton 131, mounting port 132, second protective cotton 134, binding strip 14, female adhesive patch 15, female adhesive patch 16, second magnetic component 17, second sponge 171, second gauze 172, second magnetic block 173, first sponge layer 2, second sponge layer 21, battery pack 3, mounting hole 4, shaping yarn 5, magnetic component 6, first sponge 61, first gauze 6 2. Magnetic block 63, Finger-shaped sponge 7, FPC electronic component 8, Component layer 81, Control circuit area 811, Power circuit area 812, Surface insulating coating 82, Surface main board 821, Surface control area 8211, Surface power area 8212, Surface support plate 822, First hole 8231, Second hole 8232, Surface circuit layer 83, Surface main circuit area 831, Surface control circuit 8311, Surface power circuit 8312, Surface support circuit area 832, Electric 833, FPC substrate layer 84, substrate layer main board 841, substrate layer control area 8411, substrate layer power supply area 8412, substrate layer support plate 842, first via 8431, second via 8432, bottom surface circuit layer 85, bottom surface main circuit area 851, bottom surface control circuit 8511, bottom surface power supply circuit 8512, copper sheet 852, connection circuit 8521, bottom surface insulating coating 86, bottom surface main board 861, bottom surface support plate 862, window 863, external Power circuit board 88, charging head 881, physiotherapy TPU 9, outer ring 91, raised layer 92, placement cavity 93, bottom stain-resistant and waterproof fabric 10, straight line segment 101, arc segment 102, arc segment 103, arc segment 104, two straight line segments 105, four arc segments 106, five arc segments 107, six arc segments 108, three straight line segments 109, seven arc segments 110, four straight line segments 111, eight arc segments 112, nine arc segments 113, ten arc segments 114. Detailed Implementation

[0053] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0054] See Figure 1 — Figure 19 A combination physiotherapy belt, the combination physiotherapy belt includes a physiotherapy device A and a strap 13;

[0055] The physiotherapy device A includes an outer layer of stain-resistant and waterproof fabric 1, an FPC electronic component 8, and a bottom layer of stain-resistant and waterproof fabric 10; the lower side of the outer layer of stain-resistant and waterproof fabric 1 is connected to the upper side of the FPC electronic component 8, and the lower side of the FPC electronic component 8 is connected to the upper side of the bottom layer of stain-resistant and waterproof fabric 10.

[0056] The front of the strap 13 is connected to the upper side of the outer stain-resistant and waterproof fabric 1. There are straps 14 on both the left and right sides of the strap 13. Multiple evenly arranged sub-adhesives 16 are provided on the left strap 14. A female adhesive 15 is provided on the front of the right end of the right strap 14. The female adhesive 15 is bonded to the sub-adhesives 16.

[0057] The FPC electronic component 8 includes, from top to bottom, a component layer 81, a surface insulating coating 82, a surface circuit layer 83, an FPC substrate layer 84, a bottom circuit layer 85, and a bottom insulating coating 86. The lower surface of the surface insulating coating 82 is surface-to-surface bonded to the upper surface of the FPC substrate layer 84, the lower surface of the FPC substrate layer 84 is surface-to-surface bonded to the upper surface of the bottom insulating coating 86, the surface circuit layer 83 is sandwiched between the lower surface of the surface insulating coating 82 and the upper surface of the FPC substrate layer 84, and the bottom circuit layer 85 is sandwiched between the lower surface of the FPC substrate layer 84 and the upper surface of the bottom insulating coating 86.

[0058] The upper half of the component layer 81 is a control circuit area 811, and the lower half is a power supply circuit area 812; the surface insulating coating 82 includes a surface main board 821 and several surface support boards 822. The upper half of the surface main board 821 is a surface control area 8211, and the lower half is a surface power supply area 8212. The surface control area 8211 has several first holes 8231 distributed therein, and the surface power supply area 8212 has several second holes 8232 distributed therein; the surface circuit layer 83 is divided into a surface main circuit area 831 and several surface support circuit areas 832. The upper half of the surface main circuit area 831 is a surface control circuit 8311, and the lower half is a surface power supply circuit 8312. The surface control circuit 8311 and the surface power supply circuit 8312 are connected in circuit. The surface support circuit areas 832 have resistance wires 833 distributed therein, and the resistance wires 833 are connected in circuit to the surface main circuit area 831; the F The PC substrate layer 84 includes a substrate layer main board 841 and several substrate layer support boards 842. The upper half of the substrate layer main board 841 is a substrate layer control area 8411, and the lower half is a substrate layer power area 8412. The substrate layer control area 8411 has several first vias 8431, and the substrate layer power area 8412 has several second vias 8432. The bottom circuit layer 85 is divided into a bottom main circuit area 851 and several copper sheets 852. The upper half of the bottom main circuit area 851 is a bottom control circuit 8511, and the lower half is a bottom power circuit 8512. The bottom control circuit 8511 and the bottom power circuit 8512 are connected. The copper sheets 852 are connected to the bottom main circuit area 851 through a connecting circuit 8521. The bottom insulating coating 86 includes a bottom main board 861 and several bottom support boards 862. The bottom support boards 862 have corresponding windows 863.

[0059] The control circuit area 811 passes through the first hole 8231 and contacts the surface control circuit 8311. The power circuit area 812 passes through the second hole 8232 and contacts the surface power circuit 8312. The control circuit area 811 passes through the first hole 8231, the surface control circuit 8311, and the first via 8431 and contacts the bottom control circuit 8511. The power circuit area 812 passes through the second hole 8232, the surface power circuit 8312, and the second via 8432 and contacts the bottom power circuit 8512. The control circuit area 811 contacts the surface control circuit 8511. Circuit 8311 is connected to the power supply circuit area 812 and the surface power supply circuit 8312 are connected to each other; the control circuit area 811 is connected to the bottom control circuit 8511 and the power supply circuit area 812 is connected to the bottom power supply circuit 8512; the surface support plate 822, the matrix layer support plate 842 and the bottom support plate 862 have the same area; the area of ​​the surface support circuit area 832 is less than or equal to the area of ​​the surface support plate 822; the window 863 corresponds vertically to the copper sheet 852 and the area of ​​the window 863 is less than or equal to the area of ​​the copper sheet 852.

[0060] The inner cavity of the strap 13 is provided with a plurality of second magnetic components 17, each of which includes a second sponge 171, a second gauze 172, and a second magnetic block 173. The middle part of the second sponge 171 is provided with a groove that matches the second magnetic block 173. The second magnetic block 173 is located in the groove of the second sponge 171 and is flush with the upper side of the second sponge 171. The upper side of the second magnetic block 173 and the second sponge 171 is connected to the second gauze 172.

[0061] The physiotherapy device A also includes a shaping gauze 5 and several magnetic components 6; the shaping gauze 5 is disposed between the lower side of the outer stain-resistant and waterproof fabric 1 and the upper side of the FPC electronic component 8; the magnetic component 6 includes a first sponge 61, a first gauze 62, and a magnetic block 63, the middle part of the first sponge 61 is provided with a groove adapted to the magnetic block 63, the magnetic block 63 is located in the groove of the first sponge 61, and the magnetic block 63 is flush with the upper side of the first sponge 61; the upper side of the shaping gauze 5 is connected to the lower side of the first sponge 61, and the upper side of the first sponge 61 and the magnetic block 63 is connected to the lower side of the first gauze 62;

[0062] The magnetic component 6 corresponds one-to-one with the second magnetic component 17, and the magnetic component 6 and the second magnetic component 17 are magnetically connected.

[0063] The inner cavity of the strap 13 is provided with a first protective cotton 131 and a second protective cotton 134 in sequence, with the back of the first protective cotton 131 and the front of the second protective cotton 134 in contact.

[0064] Each of the protective cotton 131 has a through mounting port 132 corresponding to the second magnetic component 17. Each second magnetic component 17 passes through the corresponding mounting port 132 and connects to the front of the second protective cotton 134.

[0065] The physiotherapy device A also includes several physiotherapy TPUs 9; each physiotherapy TPU 9 includes an outer ring 91 and a raised layer 92, the side of the raised layer 92 is connected to the inner ring of the outer ring 91, and a placement cavity 93 is formed between the raised layer 92 and the outer ring 91.

[0066] The bottom stain-resistant and waterproof fabric 10 has mounting holes 4 that correspond one-to-one with the therapeutic TPU 9. Each of the raised layers 92 passes through the corresponding mounting hole 4, and the lower side of the outer ring 91 is fixedly connected to the upper side of the bottom stain-resistant and waterproof fabric 10.

[0067] The number of surface support plate 822, surface circuit support area 832, matrix layer support plate 842, copper sheet 852, and bottom support plate 862 is the same as the number of physiotherapy TPU9;

[0068] The surface support plate 822, the surface circuit support area 832, the matrix layer support plate 842, the copper sheet 852, and the bottom support plate 862 are all placed in the placement cavity 93.

[0069] The physiotherapy device A also includes several finger-shaped sponges 7, the number of which is the same as the number of physiotherapy TPU9; the lower side of the finger-shaped sponge 7 is attached to the upper side of the surface support plate 822 and then placed in the placement cavity 93.

[0070] The physiotherapy device A also includes a sponge layer 2 and a second sponge layer 21; the lower side of the second sponge layer 21 is connected to the upper side of the first gauze 62, the upper side of the second sponge layer 21 is connected to the lower side of the first sponge layer 2, and the upper side of the first sponge layer 2 is connected to the lower side of the outer stain-resistant and waterproof fabric 1.

[0071] The power circuit area 812 is connected to the external power circuit board 88; the external power circuit board 88 is connected to the charging head 881 and the battery pack 3 respectively; the battery pack 3 is connected to the power circuit area 812 through the external power circuit board 88.

[0072] The external power circuit board 88, the charging head 881, and the battery pack 3 are located between the shaping yarn 5 and the two sponge layers 21.

[0073] The lower end of the outer stain-resistant and waterproof fabric 1 is provided with a through charging port 12, and the charging head 881 extends out of the charging port 12.

[0074] The physiotherapy device A also includes a switch 121, which is connected to the control circuit area 811.

[0075] The supplementary description of this utility model is as follows:

[0076] In this invention, the magnetic block 63 is preferably a magnet; the second magnetic block 173 is a magnet.

[0077] The present invention preferably has a switch mark 122 on the upper end of the outer stain-resistant and waterproof fabric 1, which corresponds to the position of the switch 121. When using the physiotherapy device A, the user can conveniently and accurately operate the switch 121 at the corresponding position through the switch mark 122 to turn the physiotherapy device A on or off. The operation process is simple and intuitive, which effectively improves the ease of use of the product.

[0078] Preferably, the strap 13 of this invention has two arc-shaped surfaces 133 symmetrically arranged at its top and bottom, and the two arc surfaces 133 have the same curvature.

[0079] Preferably, the sub-attachment 16 is disposed on the reverse side of the left binding strip 14.

[0080] Example 1:

[0081] See Figure 1 — Figure 19A combined physiotherapy waist belt includes a physiotherapy device A and a strap 13. The physiotherapy device A includes an outer stain-resistant and waterproof fabric 1, an FPC electronic component 8, and a bottom stain-resistant and waterproof fabric 10. The lower side of the outer stain-resistant and waterproof fabric 1 is connected to the upper side of the FPC electronic component 8, and the lower side of the FPC electronic component 8 is connected to the upper side of the bottom stain-resistant and waterproof fabric 10. The front of the strap 13 is connected to the upper side of the outer stain-resistant and waterproof fabric 1. Straps 14 are provided on both the left and right sides of the strap 13. Multiple evenly arranged sub-adhesives 16 are provided on the left strap 14, and a female adhesive patch 15 is provided on the front of the right end of the right strap 14. The female adhesive patch 15 is attached to the sub-adhesives 16. The FPC electronic component 8 comprises, from top to bottom, a component layer 81, a surface insulating coating 82, a surface circuit layer 83, an FPC substrate layer 84, a bottom circuit layer 85, and a bottom insulating coating 86. The lower surface of the surface insulating coating 82 is surface-to-surface bonded to the upper surface of the FPC substrate layer 84, and the lower surface of the FPC substrate layer 84 is surface-to-surface bonded to the upper surface of the bottom insulating coating 86. The surface circuit layer 83 is sandwiched between the lower surface of the surface insulating coating 82 and the upper surface of the FPC substrate layer 84, and the bottom circuit layer 85 is sandwiched between the lower surface of the FPC substrate layer 84 and the upper surface of the bottom insulating coating 86. The upper half of the component layer 81 is a control circuit area 811, and the lower half is a power supply circuit area 812. The surface insulating coating 82 includes a surface main board 821 and several surface support boards 822. The upper half of the surface main board 821 is a surface control area 8211, and the lower half is a surface power supply area 8212. The surface control area 8211 has several first holes 8231 distributed therein, and the surface power supply area 8212 has several second holes 8232 distributed therein. The surface circuit layer 83 is divided into a surface main circuit area 831 and several surface support circuit areas 832. The upper half of the surface main circuit area 831 is a surface control circuit 8311. The lower half is a surface power circuit 8312, and the surface control circuit 8311 is connected to the surface power circuit 8312. The surface branch circuit area 832 is distributed with resistance wires 833, and the resistance wires 833 are connected to the surface main circuit area 831. The FPC substrate layer 84 includes a substrate layer main board 841 and several substrate layer branch boards 842. The upper half of the substrate layer main board 841 is a substrate layer control area 8411, and the lower half is a substrate layer power area 8412. The substrate layer control area 8411 is distributed with several first vias 8431, and the substrate layer power area 8412 is distributed with several second vias 8432.The bottom circuit layer 85 is divided into a bottom main circuit area 851 and several copper sheets 852. The upper half of the bottom main circuit area 851 is a bottom control circuit 8511, and the lower half is a bottom power circuit 8512. The bottom control circuit 8511 and the bottom power circuit 8512 are connected. The copper sheets 852 are connected to the bottom main circuit area 851 through a connecting circuit 8521. The bottom insulating coating 86 includes a bottom main board 861 and several bottom support boards 862. The bottom support boards 862 have corresponding openings 863. The control circuit area 811 passes through the first hole 8231 and contacts the surface control circuit 8311. The power circuit area 812 passes through the second hole 8232 and contacts the surface power circuit 8312. The control circuit area 811 passes through the first hole 8231 and the surface control circuit 8311 in sequence. The first via 8431 contacts the bottom control circuit 8511. The power circuit area 812 passes sequentially through the second hole 8232, the surface power circuit 8312, and the second via 8432, contacting the bottom power circuit 8512. The control circuit area 811 is electrically connected to the surface control circuit 8311, and the power circuit area 812 is electrically connected to the surface power circuit 8312. The control circuit area 811 is electrically connected to the bottom control circuit 8511, and the power circuit area 812 is electrically connected to the bottom power circuit 8512. The surface support plate 822, the matrix layer support plate 842, and the bottom support plate 862 have the same area. The area of ​​the surface support circuit area 832 is less than or equal to the area of ​​the surface support plate 822. The window 863 corresponds vertically to the copper sheet 852, and the area of ​​the window 863 is less than or equal to the area of ​​the copper sheet 852.

[0082] In application, first connect the strap 13 to the physiotherapy device A. Then, according to the treatment area and the user's body shape, align the physiotherapy device A with the area requiring treatment. Adjust the adhesion position of the female patch 15 and the female patch 16 to fix the straps 14 on both sides. After fixing, start the physiotherapy device A to enter the working state. At this time, on the surface circuit layer 83 of the FPC electronic component 8, current is supplied to the surface control circuit 8311 through the surface power circuit 8312. The current flows into the resistance wire 833 of the surface branch circuit area 832 under the control of the surface control circuit 8311, causing the resistance wire 833 to heat up and generate heat, thus realizing the heating physiotherapy function. Simultaneously, on the bottom circuit layer 85 of the FPC electronic component 8, current is supplied to the bottom control circuit 8511 through the bottom power circuit 8512. The current flows to the copper sheet 852 through the bottom control circuit 8511, causing the copper sheet 852 to heat up. Based on this, the bottom control circuit 8511 controls the current in the entire circuit. Intermittent conduction (by editing the bottom control circuit according to existing technology) allows intermittent current to flow through the copper sheet 852, thereby continuously stimulating the treatment area attached to the copper sheet 852 with regular intermittent current, thus producing a pulse effect. Due to the isolation and support of the FPC matrix layer 84, the circuits between the surface circuit layer 83 and the bottom circuit layer 85 can operate independently without interference, each stably completing its corresponding function. The surface insulating coating 82 and the bottom insulating coating 86 protect the surface circuit layer 83 and the bottom circuit layer 85 respectively, effectively reducing the influence of external factors and ensuring the stability of the function of the physiotherapy device A. In addition, the bottom stain-resistant and waterproof fabric 10 and the outer stain-resistant and waterproof fabric 1 further protect the FPC electronic components 8 as a whole. During use, the physiotherapy device A provides physiotherapy to the target area through the dual effects of heat and pulse, while the adjustable mother-and-child adhesive structure of the strap 13 ensures a stable fit of the device in portable scenarios.

[0083] Example 2:

[0084] The basic content is the same as in Embodiment 1, except that: the inner cavity of the strap 13 is provided with a plurality of second magnetic components 17, each second magnetic component 17 including a second sponge 171, a second gauze 172, and a second magnetic block 173; the middle part of the second sponge 171 is provided with a groove adapted to the second magnetic block 173, the second magnetic block 173 is located in the groove of the second sponge 171, and the second magnetic block 173 is flush with the upper side of the second sponge 171; the upper side of the second magnetic block 173 and the second sponge 171 is connected to the second gauze 172; the physiotherapy device A also includes a shaping gauze 5 and a plurality of magnetic components 6; the shaping gauze 5 is provided with Between the lower side of the outer stain-resistant and waterproof fabric 1 and the upper side of the FPC electronic component 8; the magnetic component 6 includes a first sponge 61, a first gauze 62, and a magnetic block 63. The middle part of the first sponge 61 is provided with a groove that matches the magnetic block 63. The magnetic block 63 is located in the groove of the first sponge 61 and is flush with the upper side of the first sponge 61. The upper side of the shaping yarn 5 is connected to the lower side of the first sponge 61, and the upper side of the first sponge 61 and the magnetic block 63 are connected to the lower side of the first gauze 62. The magnetic component 6 and the second magnetic component 17 correspond one-to-one and are magnetically connected.

[0085] In application, magnetic component 6 and second magnetic component 17 are magnetically connected, specifically, second magnetic block 173 and magnetic block 63 are magnetically attracted. Utilizing the magnetic attraction between second magnetic block 173 and magnetic block 63, the physiotherapy device A and strap 13 can be quickly and reliably connected as one unit, ensuring that the physiotherapy device A and strap 13 will not easily separate during use. For the second magnetic component 17, the groove of the second sponge 171 can position and fix the second magnetic block 173. The second gauze 172 covers the second magnetic block 173 and the second sponge 171, further protecting and fixing the second magnetic block 173, preventing it from losing its magnetism and failing due to external factors. For the magnetic component 6, the groove of the first sponge 61 not only fixes the magnetic block 63, but also effectively blocks the magnetic field of the magnetic block 63, preventing it from interfering with the FPC electronic component 8 below and ensuring the normal operation of the electronic component; the first gauze 62 covers the magnetic block 63 and the first sponge 61, further protecting and fixing the magnetic block 63, preventing it from losing its magnetism and failing due to external factors; in addition, the shaping gauze 5 is connected to the lower side of the first sponge 61, which can enhance the structural stability of the entire physiotherapy device A, and at the same time ensure that the magnetic component 6 always stays in the right position during use, so as to play the function of cooperating and fixing the magnetic component 6 with the second magnetic component 17 in the strap 13.

[0086] Example 3:

[0087] The basic content is the same as in Embodiment 1, except that: the inner cavity of the strap 13 is provided with a first protective cotton 131 and a second protective cotton 134 in sequence, the back of the first protective cotton 131 is in contact with the front of the second protective cotton 134; the first protective cotton 131 is provided with a through mounting port 132 corresponding to the second magnetic component 17, and each second magnetic component 17 passes through the corresponding mounting port 132 and connects to the front of the second protective cotton 134.

[0088] In application, the mounting port 132 of the first protective cotton 131 positions the second magnetic component 17 while avoiding interference from extra materials on the magnetic connection. The second protective cotton 134 covers one side of the second magnetic component 17 in a full-coverage manner, reducing the demagnetizing effect of external factors on the second magnetic component 17 without affecting the adsorption force between the magnetic component 6 and the second magnetic component 17. In addition, the design of two layers of protective cotton, the first protective cotton 131 and the second protective cotton 134, can also increase the fullness of the product and make the wearer more comfortable.

[0089] Example 4:

[0090] The basic content is the same as in Embodiment 1, except that: the physiotherapy device A further includes several physiotherapy TPUs 9; each physiotherapy TPU 9 includes an outer ring 91 and a raised layer 92, the side of the raised layer 92 is connected to the inner ring of the outer ring 91, and a placement cavity 93 is formed between the raised layer 92 and the outer ring 91; the bottom stain-resistant and waterproof fabric 10 has mounting holes 4 corresponding to the physiotherapy TPUs 9, each raised layer 92 passes through the corresponding mounting hole 4, and the lower side of the outer ring 91 is fixedly connected to the upper side of the bottom stain-resistant and waterproof fabric 10; The number of surface support plate 822, surface circuit support area 832, matrix layer support plate 842, copper sheet 852, and bottom support plate 862 is the same as the number of physiotherapy TPU9; the surface support plate 822, surface circuit support area 832, matrix layer support plate 842, copper sheet 852, and bottom support plate 862 are all placed in the placement cavity 93; the physiotherapy device A also includes a number of finger-shaped sponges 7, the number of which is the same as the number of physiotherapy TPU9; the lower side of the finger-shaped sponge 7 is attached to the upper side of the surface support plate 822 and then placed in the placement cavity 93.

[0091] In application, the branches of the FPC electronic component 8, from top to bottom, are: surface support plate 822, surface branch circuit area 832, matrix layer support plate 842, copper sheet 852, and bottom support plate 862. The copper sheet 852 contacts the area requiring treatment through the opening 863 in the bottom support plate 862. If the copper sheet 852 directly contacts the area requiring treatment, the area will experience discomfort due to excessive stimulation when the copper sheet 852 heats up and continuously outputs intermittent current stimulation. Therefore, by placing all the branches of the FPC electronic component 8 within the placement cavity 93, the copper sheet 852... When the therapeutic TPU9 comes into contact with the area requiring treatment, it provides some insulation against the heat generated by the copper sheet 852 and reduces the stimulation of the area by the intermittent current continuously released by the copper sheet 852, avoiding discomfort caused by strong stimulation and increasing skin-friendliness and comfort. In addition, the soft material of the finger-shaped sponge 7 can cushion the movement of other components, preventing damage to the branches of the FPC electronic components 8 due to shaking and friction during use. At the same time, the finger-shaped sponge 7 makes the part of the therapeutic device A that fits against the human body softer.

[0092] Example 5:

[0093] The basic content is the same as in Embodiment 1, except that: the physiotherapy device A further includes a sponge layer 2 and a second sponge layer 21; the lower side of the second sponge layer 21 is connected to the upper side of the first gauze 62, the upper side of the second sponge layer 21 is connected to the lower side of the first sponge layer 2, and the upper side of the first sponge layer 2 is connected to the lower side of the outer stain-resistant and waterproof fabric 1.

[0094] In application, a sponge layer 2 and a sponge layer 21 are attached to the underside of the outer stain-resistant and waterproof fabric 1 and are located between the outer stain-resistant and waterproof fabric 1 and the bottom stain-resistant and waterproof fabric 10. This effectively prevents the inner components from causing wear or scratches to the outer stain-resistant and waterproof fabric 1 and extends the service life of the outer stain-resistant and waterproof fabric 1.

[0095] Example 6:

[0096] The basic content is the same as in Embodiment 1, except that: the power circuit area 812 is connected to the external power circuit board 88; the external power circuit board 88 is connected to the charging head 881 and the battery pack 3 respectively; the battery pack 3 is connected to the power circuit area 812 through the external power circuit board 88; the external power circuit board 88, the charging head 881, and the battery pack 3 are located between the shaping yarn 5 and the two sponge layers 21; the lower end of the outer stain-resistant and waterproof fabric 1 is provided with a through charging port 12, and the charging head 881 passes through the charging port 12.

[0097] In application, battery pack 3 can serve as an independent power source, continuously and stably providing power to the power circuit area 812, thereby ensuring the normal operation of all functions of the physiotherapy device A. When the power is insufficient and needs to be replenished, simply connect the charging head 881 extending from the charging port 12 to an external power source, and the battery pack 3 can be charged through the external power circuit board 88. In addition, the charging head 881 can also be connected to an external power source to directly provide power to the physiotherapy device A, enabling the physiotherapy device A to operate. It can provide two power supply modes, which are convenient for use in various scenarios and have better portability. At the same time, the external power circuit board 88, the charging head 881, and the battery pack 3 are located between the shaping yarn 5 and the two sponge layers 21. The two sponge layers 21 can provide buffer protection and reduce the damage of external forces to the external power circuit board 88, the charging head 881, and the battery pack 3. Moreover, the positioning support of the shaping yarn 5 helps to maintain the stability of the circuit connection and ensure stable current transmission.

[0098] Example 7:

[0099] The basic content is the same as in Embodiment 1, except that the physiotherapy device A also includes a switch 121, which is connected to the control circuit area 811.

[0100] When in use, turn on switch 121 of the physiotherapy device A according to the usage requirements. The control circuit area 811 and the power supply circuit area 812 start working, with the power supply circuit area 812 providing electrical energy. First, current flows through the power supply circuit area 812 into the surface power supply circuit 8312, supplying power to the surface control circuit 8311. Under the control of the surface control circuit 8311, current flows to the resistance wire 833 in the surface branch circuit area 832, causing the resistance wire 833 to heat up and release heat, producing a heating effect. At the same time, current flows through the power supply circuit area 812 into the bottom surface power supply circuit 8512, supplying power to the bottom surface control circuit. Power is supplied by circuit 8511, and the bottom control circuit 8511 then transmits the current to copper plate 852, causing copper plate 852 to generate heat. Based on this, the bottom control circuit 8511 controls the intermittent conduction of the current in the entire circuit according to the preset program logic, so that the current on copper plate 852 presents an intermittent flow state, so that the area that needs physiotherapy and is attached to copper plate 852 can continuously feel regular intermittent current stimulation, producing a pulse effect. After switch 121 is closed, control circuit area 811 and power supply circuit area 812 stop working, and the entire physiotherapy device A stops operating.

[0101] Example 8:

[0102] The basic content is the same as in Embodiment 1, except that: the bottom stain-resistant and waterproof fabric 10 includes a straight line segment 101, an arc segment 102, a second arc segment 103, a third arc segment 104, and two straight lines 105; one end of the straight line segment 101 is connected to one end of the arc segment 102, the other end of the arc segment 102 is connected to one end of the second arc segment 103, the other end of the second arc segment 103 is connected to one end of the third arc segment 104, the other end of the third arc segment 104 is connected to one end of the two straight lines 105, the other end of the two straight lines 105 is connected to the fourth arc segment 106, the other end of the fourth arc segment 106 is connected to one end of the fifth arc segment 107, and the fifth arc segment 105... The other end of 7 is connected to one end of the six-arc segment 108; the other end of the six-arc segment 108 is connected to one end of the three-straight segment 109, the other end of the three-straight segment 109 is connected to one end of the seven-arc segment 110, the other end of the seven-arc segment 110 is connected to one end of the four-straight segment 111, the other end of the four-straight segment 111 is connected to one end of the eight-arc segment 112, the other end of the eight-arc segment 112 is connected to one end of the nine-arc segment 113, the other end of the nine-arc segment 113 is connected to one end of the ten-arc segment 114, and the other end of the ten-arc segment 114 is connected to the other end of the straight segment 101; the outer layer of stain-resistant and waterproof fabric 1 has the same shape and size as the bottom layer of stain-resistant and waterproof fabric 10.

[0103] The above description is only a preferred embodiment of the present utility model. The protection scope of the present utility model is not limited to the above embodiments. Any equivalent modifications or changes made by those skilled in the art based on the content disclosed in the present utility model should be included in the protection scope recorded in the claims.

Claims

1. A combination physiotherapy waist belt, characterized in that: The combined physiotherapy belt includes a physiotherapy device (A) and a strap (13). The physiotherapy device (A) includes an outer layer of stain-resistant and waterproof fabric (1), an FPC electronic component (8), and a bottom layer of stain-resistant and waterproof fabric (10); the lower side of the outer layer of stain-resistant and waterproof fabric (1) is connected to the upper side of the FPC electronic component (8), and the lower side of the FPC electronic component (8) is connected to the upper side of the bottom layer of stain-resistant and waterproof fabric (10). The front of the strap (13) is connected to the upper side of the outer stain-resistant and waterproof fabric (1). The strap (13) has straps (14) on both the left and right sides. Multiple evenly arranged sub-adhesives (16) are provided on the left strap (14). The right end of the right strap (14) has a female adhesive (15) on the front. The female adhesive (15) is bonded to the sub-adhesives (16). The FPC electronic component (8) includes, from top to bottom, a component layer (81), a surface insulating coating (82), a surface circuit layer (83), an FPC substrate layer (84), a bottom circuit layer (85), and a bottom insulating coating (86); the lower surface of the surface insulating coating (82) is surface-to-surface bonded to the upper surface of the FPC substrate layer (84), the lower surface of the FPC substrate layer (84) is surface-to-surface bonded to the upper surface of the bottom insulating coating (86), the surface circuit layer (83) is sandwiched between the lower surface of the surface insulating coating (82) and the upper surface of the FPC substrate layer (84), and the bottom circuit layer (85) is sandwiched between the lower surface of the FPC substrate layer (84) and the upper surface of the bottom insulating coating (86); The upper half of the component layer (81) is a control circuit area (811), and the lower half is a power supply circuit area (812). The surface insulating coating (82) includes a surface main board (821) and several surface support boards (822). The upper half of the surface main board (821) is a surface control area (8211), and the lower half is a surface power supply area (8212). The surface control area (8211) has several first holes (8231), and the surface power supply area (8212) has several second holes (8231). 2) The surface circuit layer (83) is divided into a surface main circuit area (831) and several surface branch circuit areas (832). The upper half of the surface main circuit area (831) is a surface control circuit (8311), and the lower half is a surface power supply circuit (8312). The surface control circuit (8311) and the surface power supply circuit (8312) are connected in circuit. The surface branch circuit areas (832) are distributed with resistance wires (833), and the resistance wires (833) are connected in circuit to the surface main circuit area (831). The FP The C-substrate layer (84) includes a substrate layer main board (841) and several substrate layer support boards (842). The upper half of the substrate layer main board (841) is a substrate layer control area (8411), and the lower half is a substrate layer power area (8412). The substrate layer control area (8411) is distributed with several first vias (8431), and the substrate layer power area (8412) is distributed with several second vias (8432). The bottom circuit layer (85) is divided into a bottom main circuit area (851) and several copper sheets (852). The upper half of the main circuit area (851) is the bottom control circuit (8511), and the lower half is the bottom power supply circuit (8512). The bottom control circuit (8511) and the bottom power supply circuit (8512) are connected by circuit. The copper sheet (852) is connected to the bottom main circuit area (851) by circuit through the connection circuit (8521). The bottom insulating coating (86) includes a bottom main board (861) and several bottom support plates (862). The bottom support plates (862) have corresponding windows (863). The control circuit area (811) passes through the first hole (8231) and contacts the surface control circuit (8311) in sequence; the power circuit area (812) passes through the second hole (8232) and contacts the surface power circuit (8312) in sequence; the control circuit area (811) passes through the first hole (8231), the surface control circuit (8311), and the first via (8431) in sequence and contacts the bottom control circuit (8511); the power circuit area (812) passes through the second hole (8232), the surface power circuit (8312), and the second via (8432) in sequence and contacts the bottom power circuit (8512); the control circuit area (811) and the surface control circuit (812) contact the bottom control circuit (8511) in sequence; the control circuit area (811) and the surface control circuit (811) contact the bottom control circuit (8511) in sequence; the control circuit area (811) and the surface control circuit (812) contact the bottom control circuit (8512 ... The control circuit (8311) is connected to the power supply circuit area (812), which is connected to the surface power supply circuit (8312); the control circuit area (811) is connected to the bottom control circuit (8511), which is connected to the bottom power supply circuit (8512); the surface support plate (822), the matrix layer support plate (842), and the bottom support plate (862) have the same area; the area of ​​the surface support circuit area (832) is less than or equal to the area of ​​the surface support plate (822); the window (863) corresponds to the copper sheet (852) vertically, and the area of ​​the window (863) is less than or equal to the area of ​​the copper sheet (852).

2. The combined physiotherapy belt according to claim 1, characterized in that: The inner cavity of the strap (13) is provided with a plurality of second magnetic components (17), the second magnetic components (17) including a second sponge (171), a second gauze (172), and a second magnetic block (173); the middle part of the second sponge (171) is provided with a groove that matches the second magnetic block (173), the second magnetic block (173) is located in the groove of the second sponge (171), and the second magnetic block (173) is flush with the upper side of the second sponge (171); the upper side of the second magnetic block (173) and the second sponge (171) are connected to the second gauze (172).

3. The combined physiotherapy belt according to claim 2, characterized in that: The physiotherapy device (A) also includes a shaping yarn (5) and several magnetic components (6); the shaping yarn (5) is disposed between the lower side of the outer stain-resistant and waterproof fabric (1) and the upper side of the FPC electronic component (8); the magnetic component (6) includes a first sponge (61), a first gauze (62), and a magnetic block (63), the middle part of the first sponge (61) is provided with a groove adapted to the magnetic block (63), the magnetic block (63) is located in the groove of the first sponge (61), and the magnetic block (63) is flush with the upper side of the first sponge (61); the upper side of the shaping yarn (5) is connected to the lower side of the first sponge (61), and the upper side of the first sponge (61) and the magnetic block (63) is connected to the lower side of the first gauze (62); The magnetic component (6) corresponds one-to-one with the second magnetic component (17), and the magnetic component (6) and the second magnetic component (17) are magnetically connected.

4. A combined physiotherapy belt according to claim 2, characterized in that: The inner cavity of the strap (13) is provided with a first protective cotton (131) and a second protective cotton (134) in sequence, with the back of the first protective cotton (131) and the front of the second protective cotton (134) in contact; Each of the protective cotton (131) has a through mounting port (132) corresponding to the second magnetic component (17). Each second magnetic component (17) passes through the corresponding mounting port (132) and connects to the front of the second protective cotton (134).

5. A combined physiotherapy belt according to claim 1, characterized in that: The physiotherapy device (A) also includes several physiotherapy TPUs (9); the physiotherapy TPU (9) includes an outer ring (91) and a raised layer (92), the side of the raised layer (92) is connected to the inner ring of the outer ring (91), and a placement cavity (93) is formed between the raised layer (92) and the outer ring (91). The bottom stain-resistant and waterproof fabric (10) has mounting holes (4) that correspond one-to-one with the physiotherapy TPU (9). Each of the raised layers (92) passes through the corresponding mounting hole (4), and the lower side of the outer ring (91) is fixedly connected to the upper side of the bottom stain-resistant and waterproof fabric (10).

6. A combined physiotherapy belt according to claim 5, characterized in that: The number of the surface support plate (822), surface circuit support area (832), matrix layer support plate (842), copper sheet (852), and bottom support plate (862) is the same as the number of the physiotherapy TPU (9); The surface support plate (822), surface circuit support area (832), matrix layer support plate (842), copper sheet (852), and bottom support plate (862) are all placed in the placement cavity (93).

7. A combined physiotherapy belt according to claim 5, characterized in that: The physiotherapy device (A) also includes several finger-shaped sponges (7), the number of which is the same as the number of physiotherapy TPU (9); the lower side of the finger-shaped sponge (7) is attached to the upper side of the surface support plate (822) and then placed in the placement cavity (93).

8. A combined physiotherapy belt according to claim 3, characterized in that: The physiotherapy device (A) also includes a sponge layer (2) and a second sponge layer (21); the lower side of the second sponge layer (21) is connected to the upper side of the first gauze (62), the upper side of the second sponge layer (21) is connected to the lower side of the first sponge layer (2), and the upper side of the first sponge layer (2) is connected to the lower side of the outer stain-resistant and waterproof fabric (1).

9. A combined physiotherapy belt according to claim 8, characterized in that: The power circuit area (812) is connected to the external power circuit board (88); the external power circuit board (88) is connected to the charging head (881) and the battery pack (3) respectively; the battery pack (3) is connected to the power circuit area (812) through the external power circuit board (88). The external power circuit board (88), charging head (881), and battery pack (3) are located between the shaping yarn (5) and the two sponge layers (21); The lower end of the outer stain-resistant and waterproof fabric (1) is provided with a through charging port (12), and the charging head (881) extends out from the charging port (12).

10. A combined physiotherapy waist belt according to claim 1, characterized in that: The physiotherapy device (A) also includes a switch (121), which is connected to the control circuit area (811).

Citation Information

Patent Citations

  • A portable thermo-sensitive shoulder physiotherapy instrument

    CN106109084A