Annular radiator and ultrashort wave therapeutic machine based on same
By using an annular radiator and an open capacitor mechanism in the ultra-short wave therapy machine to adjust the electromagnetic wave oscillation mode and energy output, the problem of poor treatment results caused by different physical conditions in different patients is solved, and more efficient ultra-short wave energy absorption and more accurate treatment effects are achieved.
Patent Information
- Application Number
- CN202510189596.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-02-20
AI Technical Summary
When treating different patients, the existing ultra-short wave therapy machine has inconsistent absorption and response of ultra-short wave energy due to differences in the patient's physical condition and tissue characteristics, which affects the treatment effect. Especially for fat patients and patients with skin allergies, the treatment effect is not good.
The ring radiator and an open capacitor mechanism are used to adjust the oscillation mode and energy output of the electromagnetic waves to ensure that the ultra-short wave energy is better absorbed by the lesion tissue, and the equipment is upgraded and optimized by unlocking components to improve the treatment effect.
Through stable TEM mode electromagnetic wave oscillation, the absorption efficiency of ultra-short wave energy is improved, the vibration and heat generation of lesion tissue are enhanced, local blood circulation and white blood cell activity are promoted, the treatment effect is significantly improved, and the performance and electromagnetic compatibility of the equipment are improved.
Smart Images

Figure CN120037609A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of medical devices, and more specifically, it is a circular radiator and an ultrashort wave therapy apparatus based on the circular radiator. Background Art
[0002] In the current fast-paced and high-pressure modern lifestyle, people work at their desks for long hours and lack exercise, suffering from various chronic diseases, musculoskeletal pain, and mental anxiety. Yoga, with its unique combination of physical postures, breathing regulation, and meditation relaxation, has gradually become a popular choice for the public to improve physical health and relieve mental stress.
[0003] A patent with the Chinese invention patent publication number CN 106039577 A discloses an ultrashort wave comprehensive osteoarticular therapy apparatus, including an ultrashort wave therapy table, characterized in that: a headrest is provided on the upper side of the ultrashort wave therapy table, a lower limb support is provided on the right side of the headrest, a support telescopic cylinder is provided on the upper side of the lower limb support, a telescopic arm is provided on the upper side of the support telescopic cylinder, a connecting shaft is provided on the upper side of the telescopic arm, a height control rod is provided on the lower side of the connecting shaft, a lifting control frame is provided on the lower side of the height control rod, a therapy device control machine is provided on the front side of the ultrashort wave therapy table, a control machine switch is provided on the front side of the therapy device control machine, a displacement control key is provided on the lower side of the control machine switch, a therapy device control board is provided on the right side of the displacement control key, control buttons are provided on the front side of the therapy device control board, and an ultrashort wave regulation knob is provided on the right side of the therapy device control board. The beneficial effect of the present invention is that the ultrashort wave comprehensive osteoarticular therapy apparatus is dexterously designed and easy to operate, can perform efficient ultrashort wave therapy on osteoarticular diseases, relieve the pain of patients, improve the rehabilitation speed and rehabilitation effect, and provide an effective treatment method for the treatment of osteoarticular diseases.
[0004] However, the above technology has the following defects: due to differences in the physical conditions and tissue characteristics of different patients, the absorption and response to ultrashort waves are also different. For example, obese patients have a thicker fat layer, which may absorb and scatter more ultrashort waves, resulting in a reduction in the energy reaching the lesion and affecting the treatment effect. For some patients with overly sensitive skin or special constitutions, they may not be able to tolerate conventional doses of ultrashort wave therapy.
[0005] Therefore, the present invention provides a circular radiator and an ultrashort wave therapy apparatus based on the circular radiator. Summary of the Invention
[0006] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art.
[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: The annular radiator described in the present invention includes a main chassis. At the bottom of the front surface of the main chassis, a container cabinet is slidably clamped. A split capacitor mechanism is sleeved and connected to the inner bottom wall of the container cabinet. The split capacitor mechanism includes a cover plate A that fits on the bottom surface of the container cabinet. On the upper surface of the cover plate A, there is a corresponding cover plate B. Screws are provided on the surface of the cover plate A. The inner arc surface of the cover plate A is fixedly installed with an inner cylinder decorative plate through screws. An intermediate decorative plate is placed on the outer arc surface of the inner cylinder decorative plate. At the bottom of the outer arc surface of the intermediate decorative plate, a long support column is fixedly installed through screws. The other end of the long support column is fixedly installed with an outer cylinder decorative plate through screws. The top ends of the intermediate decorative plate and the outer cylinder decorative plate are welded and fixed to the bottom surface of the annular cover plate B. The intermediate decorative plate and the inner cylinder decorative plate form two poles of the split capacitor mechanism, and the outer cylinder decorative plate, the intermediate decorative plate, and the inner cylinder decorative plate form the split capacitor mechanism.
[0008] The present invention also provides an ultrashort wave therapy apparatus that uses the above-mentioned annular radiator, including an end cover. A touch display screen is fixedly installed on the upper surface of the end cover. On both sides of the top of the back surface of the main chassis, hanging metal frames are fixedly installed through bolts. An ultrashort wave head wire is provided inside the hanging metal frame. The top end of the hanging metal frame is connected to an upper limb ultrashort wave therapy head through the ultrashort wave head wire.
[0009] Preferably, the lower surface of the end cover extends into the interior of the main chassis. On one side where the lower surface of the end cover extends, it is fixedly abutted against a therapy apparatus housing. At the top of the upper surface of the therapy apparatus housing, there is a hem. One side surface of the hem fits on the extended end of the end cover. A hook-shaped end is provided on the inner arc surface of the therapy apparatus housing near the hem. A therapy bottom box is provided between the hook-shaped end and the hem. At the top of the upper surface of the therapy bottom box, there is an inclined top. The surface of the inclined top fits on the inner arc surface of the therapy apparatus housing.
[0010] Preferably, a rectangular catch is provided on the top of the inner side wall of the therapy apparatus housing away from the hook-shaped end. The inner side wall of the rectangular catch is movably clamped with the main chassis. At the bottom end face of the therapy bottom box near the inclined top, there is an annular receiving end. The extended lower surface of the end cover is placed on the top of the annular receiving end. The outer arc surface of the therapy bottom box is annularly placed on the outer layer of the container cabinet, and the inner side wall of the therapy bottom box is slidably clamped with the container cabinet.
[0011] Preferably, there is a bent surface between the therapy bottom box and the annular receiving end. A power supply therapy box is movably lapped on the top of the bent surface. At the edge of the upper surface of the power supply therapy box, there is a concave connecting part. There is a gap between the bottom of the concave connecting part and the bent surface of the annular receiving end. Through holes are opened on both sides of the upper surface of the end cover, and corresponding through holes are opened on the inner bottom wall of the concave connecting part.
[0012] Preferably, an unlocking component is connected through the through hole at the top of the end cover, and the unlocking component includes a middle card kit movably sleeved on the inner arc surface of the through hole, a groove is provided at the bottom of the outer arc surface of the middle card kit, the inner arc surface of the groove is movably engaged with the top of the concave connecting part, and a lug button part is movably engaged at the top of the middle card kit, and a ring hook is provided on the lower surface of the lug button part.
[0013] Preferably, both ends of the annular hook are movably connected with a bottom connecting kit, the inner arc surface of the bottom connecting kit is provided with a series groove, the bottom of the outer arc surface of the bottom connecting kit is provided with a ring connecting plate, the upper surface of the ring connecting plate is fitted with the bottom surface of the annular hook, the outer arc surface of the ring connecting plate is abutted against the inner wall of the middle clamping kit, and the inner arc surface of the series groove is threadedly connected with a bolt sleeve.
[0014] Preferably, an engaging plate is fixedly installed between the bolt sleeve and the bottom end of the bottom connection kit, and the engaging plate is movably engaged in the gap between the concave connecting portion and the annular receiving end, and the unlocking component connects the end cover, the power supply treatment box, the treatment bottom box and the treatment instrument shell in series.
[0015] Preferably, a panel is fixedly mounted on one side surface of the container, the panel and the main box are in the same plane, a top cover plate is movably sleeved on the upper surface of the container, a heat dissipation hole is opened in the middle of the upper surface of the top cover plate, and an integrated box is fixedly mounted on one side of the lower surface of the top cover plate.
[0016] Preferably, an air outlet is provided on the outer end face of the integrated box, a metal mesh shielding pad is fixedly installed on the inner wall of the integrated box, a conductive rubber shielding pad is connected between the top cover plate and the integrated box, a wire mesh shielding strip is sleeved on the upper surface of the conductive rubber shielding pad, the integrated box is placed inside the container and is adapted to the open capacitor mechanism.
[0017] The beneficial effects of the present invention are as follows:
[0018] 1. Through the open capacitor mechanism, the vertical relationship between the electric field and the magnetic field required by the TEM mode and their distribution characteristics in space can still be maintained. The resonant cavity can still maintain stable TEM mode electromagnetic wave oscillations and related electromagnetic functions, and through stable electromagnetic wave oscillations, the ultrashort wave can be better absorbed by the diseased tissue. At a specific frequency, the ultrashort wave can make the diseased part vibrate more violently under the oscillation of the resonant cavity, generate more heat, promote local blood circulation, enhance the working ability of white blood cells, help eliminate soreness, and avoid reducing the energy reaching the lesion and affecting the treatment effect.
[0019] 2. The separation of the open capacitor mechanism from the main chassis is achieved through the unlocking component. After disassembly, some components of the ultrashort wave therapy apparatus can be upgraded, replacing them with more advanced electronic components, optimizing the internal circuit design. Through these operations, the performance of the device can be significantly improved, such as enhancing the stability of the output power, making the energy supply during the treatment process more stable and reliable, improving the accuracy of the treatment frequency, making the treatment effect more precise and effective, and better meeting the clinical treatment needs.
[0020] 3. A double shielding is formed by the external shielding and the internal shielding of the outer cylinder decorative panel. The external shielding can block various electromagnetic interference sources from the external environment, preventing the stray electromagnetic fields generated by electronic devices, radio frequency signals of communication base stations, etc. from entering the open capacitor mechanism, avoiding their impact on the electrical performance of the capacitor, and ensuring that the capacitor operates in a stable electromagnetic environment. The internal shielding of the outer cylinder decorative panel further constructs a protective barrier inside the open capacitor mechanism, preventing possible electromagnetic leakage inside and also preventing electromagnetic interference between different internal components, improving the electromagnetic compatibility of the entire mechanism. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present invention will be further described below with reference to the accompanying drawings.
[0022] Figure 1 is an overall three-dimensional view of the ultrashort wave therapy apparatus of the present invention;
[0023] Figure 2 is a partial sectional internal display view of the ultrashort wave therapy apparatus of the present invention;
[0024] Figure 3 is an overall plan sectional view of the treatment bottom box and the unlocking component in the present invention;
[0025] Figure 4 is a three-dimensional sectional structure schematic diagram of the outer protective shell of the treatment apparatus in the present invention;
[0026] Figure 5 is a three-dimensional disassembled structure schematic diagram of the unlocking component in the present invention;
[0027] Figure 6 is an internal display view of the disassembled container cabinet in the present invention;
[0028] Figure 7 is a structure schematic diagram of the open capacitor mechanism inside the container cabinet in the present invention;
[0029] Figure 8 is a three-dimensional exploded view of the bottom of the top cover plate in the present invention;
[0030] Figure 9 is a three-dimensional sectional disassembled view of the open capacitor mechanism in the present invention;
[0031] Figure 10It is a schematic cross-sectional view of the open capacitor mechanism of the present invention.
[0032] In the figure: 1, main chassis; 2, container cabinet; 201, panel; 3, open capacitor mechanism; 301, cover plate A; 302, cover plate B; 303, screw; 304, inner cylinder trim panel; 305, intermediate trim panel; 306, long support column; 307, outer cylinder trim panel; 4, end cover; 5, touch display screen; 6, hanging metal rack; 7, therapeutic instrument housing; 701, hem; 702, hook end; 703, rectangular hook; 8, treatment bottom box; 801, inclined top; 802, annular receiving end; 10, power supply and treatment box; 101, concave connecting part; 11, gap; 12, unlocking component; 121, middle clamping kit; 122, groove; 123, lug button; 124, annular hook; 125, bottom connecting kit; 126, series slot; 127, annular connecting plate; 128, bolt sleeve; 129, meshing plate; 13, top cover plate; 14, heat dissipation hole; 15, integrated box; 16, air outlet; 17, metal mesh shielding gasket; 18, conductive rubber shielding gasket; 19, wire mesh shielding strip. Detailed implementation manners
[0033] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0034] As Figure 6 , Figure 7 , Figure 9 and Figure 10 shown, the present invention provides an annular radiator and an ultra-short wave therapeutic apparatus based on the annular radiator, including a main chassis 1. A container cabinet 2 is slidably clamped at the bottom of the front surface of the main chassis 1. An open capacitor mechanism 3 is sleeved and connected to the inner bottom wall of the container cabinet 2. The open capacitor mechanism 3 includes a cover plate A 301 attached to the bottom surface of the container cabinet 2. A corresponding cover plate B 302 is provided on the upper surface of the cover plate A 301. Screws 303 are provided on the surface of the cover plate A 301. An inner cylinder trim panel 304 is fixedly installed on the inner arc surface of the cover plate A 301 through the screws 303. An intermediate trim panel 305 is placed on the outer arc surface of the inner cylinder trim panel 304. A long support column 306 is fixedly installed on the bottom of the outer arc surface of the intermediate trim panel 305 through the screws 303. The other end of the long support column 306 is fixedly installed with an outer cylinder trim panel 307 through the screws 303. The top ends of the intermediate trim panel 305 and the outer cylinder trim panel 307 are welded and fixed to the bottom surface of the annular cover plate B 302. The intermediate trim panel 305 and the inner cylinder trim panel 304 form two poles of the open capacitor mechanism 3. The outer cylinder trim panel 307, the intermediate trim panel 305 and the inner cylinder trim panel 304 form the open capacitor mechanism 3.
[0035] The outer cylinder decorative plate 307, the middle decorative plate 305 and the inner cylinder decorative plate 304 constitute an open capacitor, and the middle decorative plate 305 and the inner cylinder decorative plate 304 constitute the two poles of the open capacitor. The top of the middle decorative plate 305 and the top of the outer cylinder decorative plate 307 are welded and fixed to the bottom surface of the cover plate A 301 of the annular structure to form a short-circuit inductor. At this time, the electromagnetic wave in the resonant cavity works in the TEM mode. In the TEM mode, the current forms a closed loop on the cross section of the coaxial structure, and the electric field and the magnetic field are distributed around the current, and the electric field and the magnetic field are perpendicular to each other in space. They change in a specific law in the coaxial structure to form a stable electromagnetic distribution.
[0036] Since the current flows axially, the inner cylinder trim 304 can serve as a part of the current carrier or conductor, and cooperate with the central conductor and other components of the coaxial structure to guide the current to flow along a specific axial path. The middle trim 305 is located between the inner cylinder trim 304 and the outer cylinder trim 307, and plays a transition and isolation role. In terms of maintaining the TEM mode, it helps to stabilize the distribution of the electric and magnetic fields. Since the TEM mode requires that the electric and magnetic fields are regularly distributed in a specific space, the middle trim 305 can adjust and constrain the distribution range and intensity of the electromagnetic field through its own material and structural characteristics.
[0037] Moreover, this cutting method will not change the distribution law of the electric field and the magnetic field in the plane perpendicular to the axial direction. The vertical relationship between the electric field and the magnetic field required by the TEM mode and their distribution characteristics in space can still be maintained, so it will not affect the normal operation of the resonant cavity. The resonant cavity can still maintain stable TEM mode electromagnetic wave oscillations and related electromagnetic functions.
[0038] In addition, the dielectric properties of diseased tissue are different from those of normal tissue. By adjusting the electromagnetic wave oscillation of the resonant cavity, the ultrashort wave can be better absorbed by the diseased tissue. At a specific frequency, the ultrashort wave can make the diseased part vibrate more violently under the oscillation of the resonant cavity, generate more heat, promote local blood circulation, enhance the working ability of white blood cells, and help eliminate soreness. For muscle-rich areas, the energy output of the resonant cavity can be appropriately increased. For joints, due to their complex structure, smaller radiators can be used to act more accurately on the diseased joints. For areas with thinner skin and higher sensitivity, the energy density can be reduced to avoid skin damage.
[0039] Meanwhile, the interaction of electric fields is utilized to achieve the transfer of energy from the ultra-short wave therapy main chassis 1 to the open capacitance mechanism 3. At the output end of the ultra-short wave therapy machine, there is an electrode structure close to the annular resonator. When the ultra-short wave therapy machine generates a high-frequency electric field, this electric field will generate an induced electric field around the annular resonator, causing charged particles such as electrons in the annular resonator to be affected by the electric field force and generating corresponding oscillating currents to achieve the coupled input of energy. In this case, a capacitive coupling plate is provided at the entrance of the annular resonator to form a capacitive coupling with the output electrode of the ultra-short wave therapy machine and introduce the ultra-short wave energy into the annular resonator.
[0040] As Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 shown, it includes an end cover 4. A touch display screen 5 is fixedly installed on the upper surface of the end cover 4. On both sides of the top of the back surface of the main chassis 1, hanging metal frames 6 are fixedly installed through bolts. Ultra-short wave head wires are provided inside the hanging metal frames 6. The top ends of the hanging metal frames 6 are connected to upper limb ultra-short wave therapy heads through ultra-short wave head wires.
[0041] The lower surface of the end cover 4 extends into the interior of the main chassis 1. One side where the lower surface of the end cover 4 extends is fixedly abutted against the therapy instrument housing 7. A hem 701 is provided at the top of the upper surface of the therapy instrument housing 7. One side surface of the hem 701 is attached to the extended end of the end cover 4. A hook-shaped end 702 is provided on the inner arc surface of the therapy instrument housing 7 close to the hem 701. There is a treatment bottom box 8 between the hook-shaped end 702 and the hem 701. An inclined top 801 is provided at the top of the upper surface of the treatment bottom box 8. The surface of the inclined top 801 is attached to the inner arc surface of the therapy instrument housing 7.
[0042] On the top of the inner side wall of the therapeutic instrument housing 7, away from one side of the hook-shaped end 702, there is a rectangular hook 703. The inner side wall of the rectangular hook 703 is movably clamped with the main chassis 1. On the bottom end face of the treatment bottom box 8 near the inclined top 801, there is an annular receiving end 802. The lower surface of the end cover 4 extends and is placed on the top of the annular receiving end 802. The outer arc surface of the treatment bottom box 8 is annularly placed on the outer layer of the container cabinet 2. The inner side wall of the treatment bottom box 8 is slidably clamped with the container cabinet 2. There is a bent surface between the treatment bottom box 8 and the annular receiving end 802. On the top of the bent surface, there is a power supply and treatment box 10 movably lapped. At the edge of the upper surface of the power supply and treatment box 10, there is a concave connecting part 101. There is a gap 11 between the bottom of the concave connecting part 101 and the bent surface of the annular receiving end 802. Through holes are opened on both sides of the upper surface of the end cover 4. Corresponding through holes are opened on the inner bottom wall of the concave connecting part 101. An unlocking component 12 is penetrated and connected in the through hole at the top of the end cover 4. The unlocking component 12 includes a middle clamping sleeve 121 movably sleeved on the inner arc surface of the through hole. At the bottom of the outer arc surface of the middle clamping sleeve 121, there is a groove 122. The inner arc surface of the groove 122 is movably clamped with the top end of the concave connecting part 101. A lug button 123 is movably clamped on the top of the middle clamping sleeve 121. On the lower surface of the lug button 123, there is an annular hook 124. Both ends of the annular hook 124 are movably clamped with a bottom connecting sleeve 125. On the inner arc surface of the bottom connecting sleeve 125, there is a series connection groove 126. At the bottom of the outer arc surface of the bottom connecting sleeve 125, there is an annular connecting plate 127. The upper surface of the annular connecting plate 127 is attached to the bottom surface of the annular hook 124. The outer arc surface of the annular connecting plate 127 abuts against the inner wall of the middle clamping sleeve 121. A bolt sleeve 128 is threadedly connected to the inner arc surface of the series connection groove 126. A meshing plate 129 is fixedly installed between the bolt sleeve 128 and the bottom end of the bottom connecting sleeve 125. The meshing plate 129 is movably clamped in the gap 11 between the concave connecting part 101 and the annular receiving end 802. The unlocking component 12 connects the end cover 4, the power supply and treatment box 10, the treatment bottom box 8 and the therapeutic instrument housing 7 in series.
[0043] The bottom end of the end cover 4 extends into the interior of the main chassis 1, and its bottom abuts against the annular receiving end 802 of the treatment bottom box 8. On the outer arc surface of the treatment bottom box 8, there is an inclined top 801. The inner side wall of the therapeutic instrument housing 7, together with the hook-shaped end 702 and the folded edge 701 on one side, forms a cavity structure. The inclined top 801 can be tightly sleeved in this cavity, realizing a firm connection between the two.
[0044] On the bent end face of the annular receiving end 802, there is a power supply and treatment box 10 placed. The concave connecting part 101 at the top of the power supply and treatment box 10 corresponds to the bottom surface of the end cover 4. Through this structural design, the therapeutic instrument housing 7, the treatment bottom box 8, the end cover 4 and the power supply and treatment box 10 are cooperated and assembled into a complete and unified whole.
[0045] It is worth mentioning that the power supply treatment box 10 is equipped with a wire supply end, through which it can stably supply power to the touch display screen 5 and the hanging metal rack 6, providing indispensable energy support for the normal operation of the entire treatment device and ensuring the coordinated operation of each part of the device.
[0046] The top surface of the end cover 4 is provided with a through hole, which corresponds to the through hole at the top of the concave connecting part 101. Inside these two opposite through holes, the middle clamping kit 121 is connected through. At the top of the outer arc surface of the middle clamping kit 121, there is a trapezoidal convex part, which can be clamped to the top of the through hole, playing a preliminary positioning and fixing role. At the same time, the inner arc surface of the middle clamping kit 121 is firmly clamped with the bottom connecting kit 125. Moreover, the top of the middle clamping kit 121 is also connected to the annular hook 124 at the bottom end of the concave connecting part 101, forming a tight connection system. In this way, when the lug button 123 at the top is rotated, based on the connection relationship between the components, the entire kit can be driven to rotate synchronously.
[0047] The inner cavity of the bottom connecting kit 125 is provided with a series connection groove 126. Inside the series connection groove 126, a bolt sleeve 128 is connected by threads. At the gap 11 between the bolt sleeves 128 connected to the series connection groove 126, a semi-circular meshing plate 129 is fixedly installed. This meshing plate 129 abuts against the gap 11 between the concave connecting part 101 and the annular receiving end 802, playing a key connecting role.
[0048] When the lug button 123 at the top is rotated, the entire kit will rotate as a whole. Among them, the bolt sleeve 128 in the bottom connecting kit 125 is mainly used to fix the meshing plate 129. Since the lug button 123 is vertically connected to the bottom connecting kit 125, when the bolt sleeve 128 is continuously rotated upward, the bottom connecting kit 125 will move upward, forming a sandwich layer with the lug button 123, and then tightly connecting the treatment instrument housing 7, the treatment bottom box 8, the end cover 4 and the power supply treatment box 10 into a whole, ensuring the stable structure and operation of the device.
[0049] When it is necessary to disassemble the ultrashort wave therapy machine, rotate the lug button 123 in the reverse direction. The meshing plate 129 will rotate synchronously and drive, and be withdrawn from the gap 11. Then, it is rotated out of the treatment bottom box 8, and then the entire top housing can be disassembled, realizing the separation of the open capacitor mechanism 3 and the main chassis 1. After the disassembly, some components of the ultrashort wave therapy machine can be upgraded, more advanced electronic components can be replaced, and the internal circuit design can be optimized. Through these operations, the performance of the device can be significantly improved, such as enhancing the stability of the output power, making the energy supply during the treatment process more stable and reliable, improving the accuracy of the treatment frequency, making the treatment effect more accurate and effective, and better meeting the clinical treatment needs.
[0050] Such as Figure 5 、 Figure 6 andFigure 7 As shown, a panel 201 is fixedly installed on one side surface of the container 2. The panel 201 is in the same plane as the main chassis 1. A top cover plate 13 is movably sleeved on the upper surface of the container 2. A heat dissipation hole 14 is opened in the middle of the upper surface of the top cover plate 13. On one side of the lower surface of the top cover plate 13, an integration box 15 is fixedly installed. An air outlet 16 is provided on the outer end surface of the integration box 15. A metal mesh shielding gasket 17 is fixedly installed on the inner side wall of the integration box 15. A conductive rubber shielding gasket 18 is connected between the top cover plate 13 and the integration box 15. A wire mesh shielding strip 19 is sleeved on the upper surface of the conductive rubber shielding gasket 18. The integration box 15 is placed inside the container 2 and is adapted to the open capacitor mechanism 3.
[0051] At the top of the open capacitor mechanism 3, an integration box 15 is integrally installed. The metal mesh shielding gasket 17 is fixed inside the integration box 15. Its function is to effectively shield electromagnetic interference and ensure the stable operation of internal electronic components. On the top cover plate 13 of the entire surface of the integration box 15, a conductive rubber shielding gasket 18 is installed, further enhancing the shielding effect. At the same time, by utilizing the good conductivity and flexibility of the conductive rubber, close fitting is achieved, reducing electromagnetic leakage.
[0052] On the surface of the top cover plate 13, a wire mesh shielding strip 19 is also fixedly installed. The wire mesh shielding strip 19 is a circular tubular object carefully woven from metal wires. This structure endows it with both the rigidity of metal and a certain degree of flexibility. The rigidity ensures that it can maintain a stable shape during installation and use and is not easily deformed, while the flexibility enables it to flexibly adapt to different installation surfaces to achieve better sealing and shielding effects. Moreover, since it is woven from metal wires, the wire mesh shielding strip 19 has countless fine holes, which endow it with the function of air permeability. While achieving electromagnetic shielding, it will not cause heat accumulation due to poor air circulation, effectively enhancing the practicability and stability of the entire shielding structure.
[0053] Double shielding is formed by the external shielding and the internal shielding of the outer cylinder decorative plate 307. The external shielding can block various electromagnetic interference sources from the external environment, prevent the stray electromagnetic fields generated by electronic devices, the radio frequency signals of communication base stations, etc. from entering the open capacitor mechanism 3, avoid their influence on the electrical performance of the capacitor, and ensure that the capacitor works in a stable electromagnetic environment. The internal shielding of the outer cylinder decorative plate 307 further constructs a protective barrier inside the open capacitor mechanism 3, prevents possible internal electromagnetic leakage, and also prevents electromagnetic mutual interference between different internal components, improving the electromagnetic compatibility of the entire mechanism.
[0054] The above front, back, left, right, up, and down are all based on the Figure 1 in the attached drawings of the specification. Taking the perspective of the observer as the standard, the side of the device facing the observer is defined as the front, and the left side of the observer is defined as the left, and so on.
[0055] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the protection scope of the present invention.
[0056] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only used to illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and all these changes and improvements fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A ring radiator, characterized in that: It comprises a main box (1), the front bottom of the main box (1) is provided with a container cabinet (2) which is slidably connected, and the inner bottom wall of the container cabinet (2) is sleeved with an open capacitor mechanism (3); The open capacitor mechanism (3) comprises a cover plate A (301) attached to the bottom surface of the container (2); a cover plate B (302) corresponding to the cover plate A (301) is provided on the upper surface of the cover plate A (301); screws (303) are provided on the surface of the cover plate A (301); an inner cylinder decorative plate (304) is fixedly mounted on the inner arc surface of the cover plate A (301) by means of screws (303); an intermediate decorative plate (305) is placed on the outer arc surface of the inner cylinder decorative plate (304); and the bottom of the outer arc surface of the intermediate decorative plate (305) is fixedly mounted by means of screws (303). A long support column (306) is fixedly installed, and the other end of the long support column (306) is fixedly installed with an outer cylinder decorative plate (307) by means of a screw (303); the top end of the middle decorative plate (305) and the top end of the outer cylinder decorative plate (307) are welded and fixed to the bottom surface of the cover plate B (302) of the annular structure; the middle decorative plate (305) and the inner cylinder decorative plate (304) constitute the two poles of the open capacitor mechanism (3); and the outer cylinder decorative plate (307), the middle decorative plate (305) and the inner cylinder decorative plate (304) constitute the open capacitor mechanism (3).
2. An ultrashort wave therapy machine, using the annular radiator according to claim 1, characterized in that: The invention comprises an end cover (4), a touch display screen (5) being fixedly mounted on the upper surface of the end cover (4), a suspension metal frame (6) being fixedly mounted on both sides of the top of the back side of the main box (1) by means of bolts, an ultrashort wave head wire being arranged inside the suspension metal frame (6), and an upper limb ultrashort wave treatment head being connected to the top of the suspension metal frame (6) by means of the ultrashort wave head wire.
3. The ultrashort wave therapy machine according to claim 2, characterized in that: The lower surface of the end cover (4) extends to the interior of the main chassis (1); one side of the extended lower surface of the end cover (4) is fixedly abutted against a therapeutic device housing (7); a folded edge (701) is provided at the top of the upper surface of the therapeutic device housing (7); one side surface of the folded edge (701) is fitted on the extended end of the end cover (4); a hook-shaped end (702) is provided on the inner curved surface of the therapeutic device housing (7) close to the folded edge (701); a therapeutic base box (8) is provided between the hook-shaped end (702) and the folded edge (701); a slanted top (801) is provided at the top of the upper surface of the therapeutic base box (8); the surface of the slanted top (801) is fitted on the inner curved surface of the therapeutic device housing (7).
4. The ultrashort wave therapy machine according to claim 3, characterized in that: A rectangular hook (703) is provided on the top of the inner side wall of the therapeutic device housing (7) away from the hook-shaped end (702), and the inner side wall of the rectangular hook (703) is movably engaged with the main chassis (1). An annular receiving end (802) is provided on the bottom end surface of the therapeutic base box (8) close to the inclined top (801), and the lower surface of the end cover (4) is extended and placed on the top of the annular receiving end (802). The outer arc surface of the therapeutic base box (8) is placed in an annular shape on the outer layer of the container (2), and the inner side wall of the therapeutic base box (8) is slidably engaged with the container (2).
5. The ultrashort wave therapy machine according to claim 4, characterized in that: A bending surface is provided between the treatment base box (8) and the annular receiving end (802), the top of the bending surface is movably overlapped with a power supply treatment box (10), a concave connecting portion (101) is provided at the edge of the upper surface of the power supply treatment box (10), a gap (11) is provided between the bottom of the concave connecting portion (101) and the bending surface of the annular receiving end (802), through holes are provided on both sides of the upper surface of the end cover (4), and corresponding through holes are provided on the inner bottom wall of the concave connecting portion (101).
6. The ultrashort wave therapy machine according to claim 5, characterized in that: An unlocking component (12) is connected through the through hole at the top of the end cover (4), and the unlocking component (12) includes a middle card set (121) movably sleeved on the inner arc surface of the through hole, a groove (122) is provided at the bottom of the outer arc surface of the middle card set (121), the inner arc surface of the groove (122) is movably engaged with the top of the concave connecting part (101), and a lug button (123) is movably engaged at the top of the middle card set (121), and a ring hook (124) is provided on the lower surface of the lug button (123).
7. The ultrashort wave therapy machine according to claim 6, characterized in that: Both ends of the annular hook (124) are movably connected with a bottom connection kit (125), the inner arc surface of the bottom connection kit (125) is provided with a series groove (126), the bottom of the outer arc surface of the bottom connection kit (125) is provided with a ring connection plate (127), the upper surface of the ring connection plate (127) is in contact with the bottom surface of the annular hook (124), the outer arc surface of the ring connection plate (127) is in contact with the inner wall of the middle clamping kit (121), and the inner arc surface of the series groove (126) is threadedly connected with a bolt sleeve (128).
8. The ultrashort wave therapy machine according to claim 7, characterized in that: An engaging plate (129) is fixedly installed between the bolt sleeve (128) and the bottom end of the bottom connection kit (125), and the engaging plate (129) is movably engaged in the gap (11) between the concave connecting portion (101) and the annular receiving end (802). The unlocking component (12) connects the end cover (4), the power supply treatment box (10), the treatment bottom box (8) and the treatment device housing (7) in series.
9. The ultrashort wave therapy machine according to claim 8, characterized in that: A panel (201) is fixedly mounted on one side surface of the container (2), the panel (201) and the main chassis (1) are in the same plane, a top cover plate (13) is movably sleeved on the upper surface of the container (2), a heat dissipation hole (14) is provided in the middle of the upper surface of the top cover plate (13), and an integrated box (15) is fixedly mounted on one side of the lower surface of the top cover plate (13).
10. The ultrashort wave therapy machine according to claim 9, characterized in that: The outer end surface of the integrated box (15) is provided with an air outlet (16), the inner wall of the integrated box (15) is fixedly mounted with a metal mesh shielding pad (17), a conductive rubber shielding pad (18) is connected between the top cover plate (13) and the integrated box (15), the upper surface of the conductive rubber shielding pad (18) is sleeved with a wire mesh shielding strip (19), and the integrated box (15) is placed inside the container (2) and is compatible with the open capacitor mechanism (3).
Citation Information
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