A T-shaped physiotherapy machine
By designing a three-way physiotherapy machine that integrates ultrasound and radiofrequency functions, the problems of poor compatibility and complex operation of existing equipment have been solved, achieving functional integration and portability, and improving user experience and treatment efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN NUOPUN TECH CO LTD
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-04
AI Technical Summary
Existing treatment devices have limited functionality, requiring the separate purchase of ultrasound and radiofrequency equipment, resulting in poor compatibility, complex operation, and negatively impacting user experience and treatment efficiency.
Design a three-way physiotherapy machine that integrates ultrasound and radiofrequency functions into one unit. It adopts an integrated host module, including a display panel, ultrasound and radiofrequency control modules, and connects to an ultrasound handpiece, a radiofrequency handpiece and a negative electrode plate through a pluggable port, supporting ultrasound and radiofrequency treatment alone or in combination.
It integrates ultrasound and radiofrequency functions, simplifies operation, avoids signal interference and compatibility issues, saves space, is easy to carry and use, and improves user experience and treatment efficiency.
Smart Images

Figure CN224585203U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of health physiotherapy equipment technology, and more specifically, to a three-way physiotherapy machine. Background Technology
[0002] Ultrasound and radiofrequency ablation, as non-invasive physical therapy techniques, have been widely used in clinical and sports medicine. Ultrasound therapy generates biological effects through high-frequency mechanical vibrations, promoting tissue repair and blood circulation; radiofrequency ablation uses electromagnetic frequencies to generate heat in human tissues, achieving skin lifting and tightening, and reducing wrinkles.
[0003] Currently, most therapeutic devices on the market have limited functionality, typically offering only one of ultrasound or radiofrequency functions. Users who need both functions must purchase two separate devices, increasing costs, taking up more space, and making them inconvenient to use and carry. Furthermore, poor compatibility between different devices and complex operating procedures negatively impact user experience and treatment efficiency.
[0004] Therefore, it is necessary to provide a portable physiotherapy device that integrates ultrasound and radiofrequency functions to solve the problems of limited functionality and inconvenience in use in existing technologies. Summary of the Invention
[0005] The technical problem to be solved by this utility model is to provide a three-way physiotherapy machine that is compact in structure, integrates functions, and is easy to operate, addressing the shortcomings of the existing technology, such as poor compatibility between different devices, complex operation procedures, and impact on user experience and treatment efficiency.
[0006] The technical solution adopted by this utility model to solve its technical problem is: to construct a three-way physiotherapy machine, which has: The box body is designed as a hollow structure, and a handle and a buckle are provided on the outer extension of the box body; The main unit module is housed within the enclosure, wherein... The host module includes a display panel, an ultrasonic control module, and a radio frequency control module; The display panel is equipped with an LCD screen, an IC card sensing area, and a control area; The control area is equipped with multiple potentiometers for adjusting the ultrasonic intensity output by the ultrasonic control module and the radio frequency intensity and frequency output by the radio frequency control module. The housing has a pluggable output port, which is connected to the ultrasonic handle, the radio frequency handle and the negative electrode plate respectively.
[0007] In some embodiments, the ultrasonic control module supports collimated ultrasonic wave output at a frequency of 1 MHz. The radio frequency control module supports frequency adjustment from 29Hz to 66Hz.
[0008] In some embodiments, the radio frequency handle is used in conjunction with the negative electrode to form a closed circuit, and the output radio frequency energy generates heat through human tissue.
[0009] In some implementations, the ultrasound handpiece can be used alone or in conjunction with the radio frequency control module to achieve synergistic effects on human tissue.
[0010] In some embodiments, a digital indicator light for displaying radio frequency strength is provided below the LCD screen, including multiple green, orange and red indicator lights, which are divided into a total of 8 intensity levels.
[0011] In some implementations, the IC card sensing area is used to sense the IC card to unlock host functions and control treatment levels and durations.
[0012] In some embodiments, the housing includes a cooperating upper shell and a lower shell. The upper housing and the lower housing are connected by a hinge.
[0013] In some implementations, the host module further includes a power board and a motherboard, the power board being used for voltage conversion, and the motherboard integrating display and control circuitry.
[0014] The three-way physiotherapy machine described in this utility model includes a housing and a main unit module. The main unit module includes a display panel, an ultrasound control module, and a radio frequency control module. The display panel has an LCD screen, an IC card sensing area, and a control area. The control area has multiple potentiometers for adjusting the ultrasound intensity output by the ultrasound control module and the radio frequency intensity and frequency output by the radio frequency control module. A pluggable output port is located inside the housing, which connects to the ultrasound handle, the radio frequency handle, and the negative electrode plate, respectively. Compared with existing technologies, integrating ultrasound and radio frequency, two mainstream physical therapy technologies, into a single device allows users to perform single-mode treatment or synergistic treatment of both modes. The integrated main unit module design (integrating the motherboard, power board, and control system) avoids signal interference, compatibility issues, and asynchronous operation that may occur when using two independent devices. The integrated housing design completely solves the pain point of users needing to purchase, store, and transport two independent devices. The handle and buckle design make it resemble a portable toolbox, greatly saving space and facilitating movement and use in different scenarios such as home, clinic, or business trips. Attached Figure Description
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the accompanying drawings: Figure 1This is a perspective view of one embodiment of the three-way physiotherapy machine provided by this utility model; Figure 2 This is a perspective view of another embodiment of the three-way physiotherapy machine provided by this utility model; Figure 3 This is a cross-sectional view of an embodiment of the three-way physiotherapy machine provided by this utility model; Figure 4 This is an exploded view of one embodiment of the three-way physiotherapy machine provided by this utility model. Detailed Implementation
[0016] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0017] like Figures 1-4 As shown, in the first embodiment of the three-way physiotherapy machine of this utility model, the three-way physiotherapy machine 10 includes at least a housing (101, 102) and a main unit module. The housings (101, 102) are configured with a hollow internal structure 101a, which is used to install the main unit module and the ultrasonic handpiece 105. The main unit module is used for display, ultrasound, and radio frequency output control. Specifically, the box body (101, 102) is configured as a hollow structure 101a, and a handle 104a and a buckle 104b are provided on the outer extension of the box body (101, 102); The main unit module is housed within the enclosures (101, 102). The main unit module includes a display panel 107, a radio frequency control module, and an ultrasonic control module; The display panel 107 is located on the upper surface of the host module, and it includes an LCD screen 106c, an IC card sensing area 106a, and an operating area 113. The control area 113 is located at the bottom of the display panel 107 and has three potentiometers (113a-113c). From left to right, the potentiometers (113a-113c) control the radio frequency intensity, radio frequency frequency, and ultrasonic intensity, respectively. The ultrasonic intensity output by the ultrasonic control module and the radio frequency intensity and radio frequency output by the radio frequency control module 113a can be adjusted by manipulating potentiometers (113a-113c). Furthermore, the housing (101, 102) is equipped with pluggable output ports (112a, 112b, and 112c). These output ports (112a, 112b, and 112c) are connected to the ultrasound handpiece 105, the radiofrequency handpiece, and the negative electrode 114, respectively. Through the cooperation of the ultrasound control module and the radiofrequency control module, the product can simultaneously provide both ultrasound and radiofrequency electrotherapy functions. This integrates two mainstream physical therapy technologies—ultrasound and radiofrequency—into a single device, allowing users to perform single-mode treatment or synergistic treatment of both modes. The integrated host module design (integrating motherboard, power board, and control system) avoids signal interference, compatibility issues, and asynchronous operation that may occur when using two independent devices. The integrated box design completely solves the pain point of users having to buy, store, and move two separate devices. The handle and buckle design make it like a portable toolbox, which greatly saves space and makes it easy to move and use in different scenarios such as home, clinic, or business trip.
[0018] In some implementations, to ensure the effectiveness of the physiotherapy, the ultrasound control module can support collimated ultrasound output at a frequency of 1MHz. The radio frequency control module supports frequency adjustment from 29Hz to 66Hz.
[0019] In some implementations, to ensure the effectiveness of the physiotherapy, the radio frequency handle can be used in conjunction with the negative electrode 114 to form a closed circuit, and the output radio frequency energy generates heat through human tissue.
[0020] In some implementations, to improve ease of use, the ultrasound handpiece 105 can be used alone or simultaneously with the radio frequency control module to achieve synergistic effects on human tissue.
[0021] In some implementations, such as Figure 4 As shown, the LCD screen 106c has a digital indicator light below it for displaying the radio frequency strength, including multiple green, orange and red indicator lights, which are divided into 8 intensity levels.
[0022] In some implementations, such as Figure 4 As shown, the IC card sensing area 106a is used to sense the IC card to unlock the host function and control the treatment level and time. The IC sensing area is used to house the IC card unlocking level adjustment function.
[0023] In some implementations, such as Figure 4 As shown, the housing (101, 102) includes an upper shell 101 and a lower shell 102 that fit together. The upper housing 101 and the lower housing 102 are connected by a hinge, and the lower housing 102 can be flipped along one end of the upper housing 101; A sealing element 104 is provided between the end faces of the upper housing 101 and the lower housing 102, and a handle 104a and a buckle 104b are provided at the front end of the sealing element 104. Specifically, the front end of the upper housing 101 is separated from the front end of the lower housing 102. The left side of the upper housing 101 is the main unit module, and the right side of the upper housing 101 is the monopolar radio frequency handle, the negative electrode plate 114, and the ultrasonic handle 105. All of the above modules are connected to the pluggable output ports of the main unit module inside the housing (101, 102) via wires.
[0024] In some implementations, the host module also includes a power board 107 and a motherboard 106b, the power board 107 being used for voltage conversion and the motherboard integrating display and control circuitry.
[0025] Its working principle is as follows: Connect the 220V socket via the pluggable cable, press the rocker switch to turn on the power, and the screen will display numbers. To prevent accidental touches, you need to place the IC card in the sensing area first. The LCD screen will display the remaining time of the treatment and the ultrasound level. A treatment session can be set to 42min-46min. Below the digital display screen is a dynamic light strip to indicate the intensity of the radio frequency effect; The control area 113 is equipped with three potentiometers (113a-113c) arranged in parallel, which are used to control the intensity and frequency of radio frequency and ultrasound, respectively. The inner side 103a of the semi-open box 130 is used to place the ultrasonic handpiece 105. A radially arranged partition 112 is provided on the opposite side of the inner side 103a. Three detachable output channels or ports (112a, 112b and 112c) are opened in the partition 112, which are the ultrasonic, negative electrode 114 and radio frequency handpiece channels, respectively.
[0026] In addition, ultrasound can be used alone, while electrotherapy requires the simultaneous use of a metal handpiece and a negative electrode plate 114. When using radiofrequency, the energy released by the instrument's treatment head (metal head or metal handpiece) finally flows through the body to the negative electrode (negative electrode plate), which has strong energy, good penetration, and a treatment depth of 10mm-15mm. When radio frequency beauty devices are working, the human body becomes part of the circuit. Since the human body has impedance, when the radio frequency current passes through different parts of the body, it will generate different amounts of heat depending on the magnitude of the impedance. The greater the impedance, the greater the heat generated. The impedance of muscle is about 100Ω, the impedance of skin is about 300Ω, and the impedance of fat is over 2000Ω. When the target is set to the middle layer of connective tissue in the dermis, radiofrequency will form an electromagnetic field under the skin, which will act on the water molecules in the collagen, causing the water molecules to vibrate and rotate at a speed of millions of times per second to generate heat. When the temperature reaches 30°C-50°C, the collagen fibers contract and tighten, resulting in a noticeable lifting effect on the face and tighter skin. When the target is set to the deep dermis, it will stimulate the immediate contraction of collagen fibers and produce a series of physical reactions after the tissue is heated, which will enhance metabolism and enable the fibroblasts in the dermis to continuously synthesize new collagen, synthesize elastin, and secrete base fluid, thereby restoring the skin to its original elasticity and making it plump and smooth again. When the target is set to the subcutaneous tissue layer, the fat cells in the subcutaneous tissue layer will shrink in volume when heated, thereby achieving the effect of weight loss and slimming. When radiofrequency is applied to a living organism, it can cause vasodilation, accelerated blood and lymph circulation, increased capillary and cell membrane permeability, increased intracellular enzyme activity, and accelerated metabolism. The ultrasonic frequency of this device is 1MHz, and the radio frequency is 29-66Hz.
[0027] The embodiments of the present invention have been described above with reference to the accompanying drawings. However, the present invention is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present invention without departing from the spirit and scope of the claims. All of these forms are within the protection scope of the present invention.
Claims
1. A three-way physiotherapy machine, characterized in that, have: The box body is designed as a hollow structure, and a handle and a buckle are provided on the outer extension of the box body; The main unit module is housed within the enclosure, wherein... The host module includes a display panel, an ultrasonic control module, and a radio frequency control module; The display panel is equipped with an LCD screen, an IC card sensing area, and a control area; The control area is equipped with multiple potentiometers for adjusting the ultrasonic intensity output by the ultrasonic control module and the radio frequency intensity and frequency output by the radio frequency control module. The housing has a pluggable output port, which is connected to the ultrasonic handle, the radio frequency handle and the negative electrode plate respectively.
2. The three-way physiotherapy machine according to claim 1, characterized in that, The ultrasonic control module supports collimated ultrasonic output at a frequency of 1MHz. The radio frequency control module supports frequency adjustment from 29Hz to 66Hz.
3. The three-way physiotherapy machine according to claim 1 or 2, characterized in that, The radio frequency handle is used in conjunction with the negative electrode to form a closed circuit, and the output radio frequency energy generates heat through human tissue.
4. The three-way physiotherapy machine according to claim 1 or 2, characterized in that, The ultrasound handpiece can be used alone or in conjunction with the radio frequency control module to achieve synergistic effects on human tissue.
5. The three-way physiotherapy machine according to claim 1, characterized in that, Below the LCD screen are digital indicator lights for displaying radio frequency strength, including multiple green, orange and red indicator lights, divided into a total of 8 intensity levels.
6. The three-way physiotherapy machine according to claim 1, characterized in that, The IC card sensing area is used to sense IC cards to unlock the host functions and control the treatment level and time.
7. The three-way physiotherapy machine according to claim 1, characterized in that, The enclosure includes an upper shell and a lower shell that fit together. The upper housing and the lower housing are connected by a hinge.
8. The three-way physiotherapy machine according to claim 1, characterized in that, The host module also includes a power board and a motherboard. The power board is used for voltage conversion, and the motherboard integrates display and control circuits.