Table type fascia permeameter

By designing a desktop fascia penetration device that integrates multifunctional physiotherapy components and intelligent control circuits, the problems of limited functionality and insufficient electrode design in existing electronic physiotherapy equipment have been solved, providing an efficient, comfortable, and personalized physiotherapy experience.

CN223569848UActive Publication Date: 2025-11-21SHENZHEN XINHUAYI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422182566.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-11-21
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

Existing electronic physiotherapy devices have limited functions, and their electrode design and heating efficiency are insufficient, making it difficult to meet users' diverse and personalized physiotherapy needs.

Method used

A desktop fascia penetration device was designed, integrating multifunctional physiotherapy components and intelligent control circuits, including first, second, and third physiotherapy components and a touch screen. The device enables convenient operation of various physiotherapy modes through the built-in control circuit on the PCB board.

Benefits of technology

It achieves a multifunctional, efficient, and comfortable physiotherapy experience, ensuring convenient and safe operation, and providing users with personalized health enjoyment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a table type fascia permeameter which comprises a shell, a 24V power supply connecting port, a switch, a touch screen, a first electrode interface, a second electrode interface, a third electrode interface, a PCB (Printed Circuit Board), a first physical therapy component, a second physical therapy component and a third physical therapy component, the touch screen is arranged on the front surface of the shell, and a control circuit is arranged in the PCB and is arranged in the shell; the PCB is arranged in the shell and is connected with a first electrode interface, a second electrode interface and a third electrode interface which are arranged on one side of the shell, the switch and the 24V power supply connecting port are arranged on one side of the shell, and the 24V power supply connecting port is used for supplying power to a control circuit arranged in the PCB; according to the table type fascia permeameter, the multifunctional physiotherapy assembly is integrated, efficient and comfortable physiotherapy experience is achieved, meanwhile, it is ensured that operation is convenient and safe through the intelligent control circuit, and unprecedented personalized health enjoyment is brought to a user.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of permeameter, specifically relates to a table type fascia penetration appearance. BACKGROUND

[0002] With the acceleration of modern life rhythm and the increase of work pressure, people pay more and more attention to physical health and relaxation. Although traditional physiotherapy methods such as massage and acupuncture are effective, they are limited by time and place, and it is difficult to meet the convenient needs of modern people. In recent years, electronic physiotherapy equipment has gradually been favored by the market due to its portability, efficiency and diversity. However, the existing electronic physiotherapy equipment on the market has single function, and can only provide single massage or hot compress function, which is difficult to meet the needs of users for diversified and personalized physiotherapy experience.

[0003] In addition, the traditional physiotherapy instrument also has defects in electrode design and heating efficiency, such as poor electrode material leading to poor conductivity and uneven heating, which seriously affects the physiotherapy effect and user experience. Therefore, it is particularly important to develop a table type fascia penetration appearance which integrates multiple physiotherapy functions and has the characteristics of high efficiency, safety and comfort. SUMMARY

[0004] Therefore, the main purpose of the utility model is to provide a table type fascia penetration appearance.

[0005] To achieve the above purpose, the technical scheme of the utility model is as follows:

[0006] The utility model embodiment one provides a table type fascia penetration appearance, including casing, 24V power connection, switch, touch -sensitive screen, first electrode interface, second electrode interface, third electrode interface, PCB board, first physiotherapy component, second physiotherapy component, third physiotherapy component, the touch -sensitive screen sets up in the front of casing, the PCB board built -in control circuit is set up in the casing, and is connected with the first electrode interface, second electrode interface, third electrode interface set up in one side of casing, the switch and 24V power connection all set up in one side of casing, 24V power connection is used to give the power supply of the control circuit built -in of PCB board, the switch is used to open and close the control circuit built -in of PCB board, the first physiotherapy component is connected with first electrode interface, the second physiotherapy component is connected with second electrode interface, the third physiotherapy component is connected with third electrode interface.

[0007] In the above scheme, the first physiotherapy component includes a first interface end, a first connecting line, a first tap, two pieces of first silicone conductive heating plates, an adjustable heating probe, one end of the first interface end is connected with a first electrode interface, the other end of the first interface end is connected with the first tap through the first connecting line, the first tap is connected with the two pieces of first silicone conductive heating plates and the adjustable heating probe respectively;

[0008] The second physiotherapy component includes a second interface end, a second connecting line, a second tap, a second silicone conductive heating plate, and a conductive heating ultrasonic probe, one end of the second interface end is connected with a second electrode interface, the other end of the second interface end is connected with the second tap through the second connecting line, the second tap is connected with the second silicone conductive heating plate and the conductive heating ultrasonic probe respectively;

[0009] The third physiotherapy component includes a third interface end, a third connecting line, a third tap, and three pieces of third silicone conductive heating plates, one end of the third interface end is connected with a third electrode interface, the other end of the third interface end is connected with the third tap through the third connecting line, and the third tap is connected with the three pieces of third silicone conductive heating plates.

[0010] In the above scheme, the control circuit includes a master control chip, a power supply circuit, a micro electric circuit, a superconducting circuit, a music module circuit, a card swiping module circuit, a touch circuit, a display circuit, a fan circuit, and a buzzer circuit, the input end of the power supply circuit is connected with a 24V power supply connection port, the output end of the power supply circuit is connected with the power input end of the master control chip, the output end of the master control chip is connected with the input end of the micro electric circuit, the input end of the superconducting circuit, the input end of the music module circuit, the input end of the card swiping module circuit, the input end of the touch circuit, the input end of the display circuit, the input end of the fan circuit, and the input end of the buzzer circuit respectively.

[0011] In the scheme, the power supply circuit includes a 24V power supply output end, a power management chip, a first three-terminal voltage regulator integrated circuit, a second three-terminal voltage regulator integrated circuit, a first diode, a fourth diode, a first inductor, a 12V power supply output end, a 5V power supply output end, a 3.3V power supply output end, a twenty-seventh capacitor, a thirty-third capacitor, a twenty-ninth capacitor, a thirty-first capacitor, a thirtieth capacitor, the second end of the 24V power supply connector is connected with the negative electrode of the first diode, the first end of the twenty-seventh capacitor, the first end of the thirty-third capacitor, the 24V power supply output end and the VIN end of the power management chip respectively, the first end of the 24V power supply connector is connected with the positive electrode of the first diode, the second end of the twenty-seventh capacitor, the second end of the thirty-third capacitor, the GND end of the power management chip, the OUT end of the power management chip, the positive electrode of the fourth diode and the first end of the twenty-ninth capacitor in sequence and grounded, the PUT end of the power management chip is connected with the negative electrode of the fourth diode and the first end of the first inductor respectively, the second end of the first inductor is connected with the second end of the twenty-ninth capacitor, the 12V power supply output end and the FEEDBACK end of the power management chip respectively, the 12V power supply output end is connected with the VIN end of the first three-terminal voltage regulator integrated circuit, the VOUT end of the first three-terminal voltage regulator integrated circuit is connected with the 5V power supply output end and the first end of the thirty-first capacitor respectively, the second end of the thirty-first capacitor is connected with the GND end of the first three-terminal voltage regulator integrated circuit in sequence and grounded, the 5V power supply output end is connected with the VIN end of the second three-terminal voltage regulator integrated circuit and the first end of the fourth capacitor respectively, the second end of the fourth capacitor is connected with the GND end of the second three-terminal voltage regulator integrated circuit and the first end of the thirtieth capacitor in sequence and grounded, the second end of the thirtieth capacitor is connected with the VOUT end of the second three-terminal voltage regulator integrated circuit and the 3.3V power supply output end respectively, and the 3.3V power supply output end is connected with the PA1 end, the PA4 end, the VDD_1 end, the VDD_2 end and the VDD_3 end of the main control chip respectively.

[0012] In the scheme, the microcircuit includes a first micro electrical connection end, a thirteenth transformer, a first triode, a second triode, a third triode, a fourth triode, a ninth triode, a third resistor, a fifteenth resistor, a fourteenth resistor, a twelfth resistor, a twenty-second resistor, a sixteenth resistor, a twenty-fifth resistor, a fourteenth resistor, a thirtieth resistor, a twenty-third resistor, a thirteenth resistor, a thirteenth capacitor, a fourteenth capacitor, a fifteenth capacitor, a second micro electrical connection end, a twenty-first transformer, a fifth triode, a sixth triode, a seventh triode, an eighth triode, a thirteenth triode, a twentieth resistor, a twenty-eighth resistor, a seventeenth resistor, a twenty-sixth resistor, a twenty-seventh resistor, an eighteenth resistor, a thirty-first resistor, a nineteenth resistor, a twenty-first resistor, a twenty-ninth resistor, a seventh resistor, an eighth resistor, a ninth resistor, a third capacitor, a fifth capacitor, a sixth capacitor, a sixteenth capacitor, a first end of the first micro electrical connection end is connected with a first end of the third resistor and a first end of the thirteenth transformer, a second end of the first micro electrical connection end is connected with a second end of the third resistor and a second end of the thirteenth transformer, a third end of the thirteenth transformer is connected with a base of the first triode, a fourth end of the thirteenth transformer is connected with a base of the third triode, a collector of the third triode is connected with a first end of the fifteenth resistor and a first end of the fourteenth resistor, an emitter of the third triode is connected with a second end of the fifteenth resistor and grounded, a second end of the twenty-fourth resistor is connected with a PA8 end of a master control chip, a fourth end of the first micro electrical connection end is connected with a base of the fourth triode, a collector of the fourth triode is connected with a first end of the sixteenth resistor and a first end of the twenty-fifth resistor, an emitter of the fourth triode is connected with a second end of the sixteenth resistor, a second end of the twenty-fifth resistor is connected with a PA6 end of the master control chip, a base of the second triode is connected with a 12V power supply output end, a collector of the second triode is connected with a first end of the thirteenth capacitor and a first end of the twenty-third resistor, a second end of the twenty-third resistor is connected with a base of the ninth triode and a first end of the fourteenth resistor, a second end of the fourteenth resistor is connected with the 12V power supply output end, a collector of the ninth triode is connected with a PB0 end of the master control chip through a thirtieth resistor in series, an emitter of the second triode is connected with an ED1 end of the master control chip and a first end of the fifteenth capacitor through a thirteenth resistor in series, a second end of the fifteenth capacitor is connected with an emitter of the ninth triode and grounded, the 24V power supply output end is connected with a third end of the first micro electrical connection end, a first end of the second micro electrical connection end is connected with the 24V power supply output end, a second end of the second micro electrical connection end is connected with a base of the eighth triode, and the like.The collector of the eighth transistor is connected with the first end of the twenty-first resistor and the first end of the twenty-ninth resistor respectively, the emitter of the eighth transistor is connected with the second end of the twenty-first resistor, the first end of the fifth capacitor, the first end of the third capacitor and the first end of the sixth capacitor and grounded, the second end of the twenty-ninth resistor is connected with the PA0 end of the main control chip, the second end of the fifth capacitor is connected with the first end of the seventh resistor, the first end of the ninth resistor and the 3.3V power output end in series with the eighth resistor, the second end of the seventh resistor is connected with the second end of the third capacitor, the second end of the ninth resistor is connected with the second end of the sixth capacitor, the 12V power output end is connected with the base of the sixth transistor, the collector of the sixth transistor is connected with the first end of the fourteenth capacitor and the first end of the twenty-seventh resistor respectively, the second end of the twenty-seventh resistor is connected with the base of the thirteenth transistor and the first end of the eighteenth resistor respectively, the second end of the eighteenth resistor is connected with the 12V power output end, the collector of the thirteenth transistor is connected with the PA2 end of the main control chip in series with the thirty-first resistor, the emitter of the sixth transistor is connected with the ED1 end of the main control chip and the first end of the sixteenth capacitor in series with the nineteenth resistor, the second end of the sixteenth capacitor is connected with the emitter of the thirteenth transistor and grounded, the third end of the second micro electric connection end is connected with the first end of the twenty-first transformer and the first end of the fourth resistor, the fourth end of the second micro electric connection end is connected with the second end of the twenty-first transformer and the second end of the fourth resistor, the third end of the twenty-first transformer is connected with the base of the seventh transistor, the fourth end of the twenty-first transformer is connected with the base of the fifth transistor, the fifth end of the twenty-first transformer is connected with the ED1 end of the main control chip, the collector of the seventh transistor is connected with the first end of the twentieth resistor and the first end of the twenty-eighth resistor respectively, the second end of the twenty-eighth resistor is connected with the PA1 end of the main control chip, the emitter of the seventh transistor is connected with the second end of the twentieth resistor and grounded, the collector of the fifth transistor is connected with the first end of the seventeenth resistor and the first end of the twenty-sixth resistor respectively, the second end of the twenty-sixth resistor is connected with the PA3 end of the main control chip, the emitter of the fifth transistor is connected with the second end of the seventeenth resistor and grounded.

[0013] In the scheme, the superconducting circuit includes a superconducting connection end, an eleventh transistor, a third diode, a second diode, a twelfth transistor, a tenth transistor, a fourteenth transistor, a thirty-fifth resistor, a thirty-fourth resistor, a thirty-sixth resistor, a forty-first resistor, a forty-second resistor, a forty-fifth resistor, a forty-third resistor, a forty-sixth resistor, a thirty-eighth resistor, a thirty-ninth resistor, a fortieth resistor, a thirty-seventh resistor, a second inductor, an eighteenth capacitor, a twenty-first capacitor, a twenty-fifth capacitor, a twenty-second capacitor, a twenty-sixth capacitor, a twenty-eighth capacitor, a first end of the superconducting connection end is connected with a CSB end of a master control chip, a second end of the superconducting connection end is connected with a first end of the twenty-first capacitor and a first end of the twenty-fifth capacitor respectively, a second end of the twenty-first capacitor is connected with a positive electrode of the second diode and a negative electrode of the third diode through a forty-first resistor in series, the negative electrode of the second diode is connected with a first end of the thirty-sixth resistor, a first end of the eighteenth capacitor and a PC5 end of the master control chip respectively, a second end of the eighteenth capacitor is connected with a second end of the thirty-sixth resistor, a positive electrode of the third diode, a first end of the thirty-fifth resistor and an emitter of the eleventh transistor and then grounded, a collector of the eleventh transistor is connected with a second end of the thirty-fifth resistor and a second end of the thirty-fourth resistor respectively, a first end of the thirty-fourth resistor is connected with a PB5 end of the master control chip, a base of the eleventh transistor is connected with a fourth end of the superconducting connection end, a third end of the superconducting connection end is connected with a 5V power output end, a second end of the twenty-fifth capacitor is connected with a first end of the twenty-second capacitor, a first end of the forty-second resistor and a first end of the forty-sixth resistor respectively, a second end of the forty-sixth resistor is connected with a collector of the twelfth transistor, an emitter of the twelfth transistor is grounded, a base of the twelfth transistor is connected with the CSB end of the master control chip, a first end of the twenty-eighth capacitor and a first end of the second inductor respectively, a second end of the second inductor is connected with a 24V power output end, a second end of the twenty-eighth capacitor is grounded, a second end of the twenty-second capacitor is connected with a first end of the forty-fifth resistor and a first end of the twenty-sixth capacitor and then grounded, a second end of the forty-fifth resistor is connected with a second end of the forty-second resistor, a first end of the twenty-sixth capacitor and a first end of the forty-third resistor respectively, a second end of the forty-third resistor is connected with a collector of the tenth transistor, an emitter of the tenth transistor is connected with the 24V power output end and a first end of the fortieth resistor, a second end of the fortieth resistor is connected with a base of the tenth transistor and a first end of the thirty-ninth resistor respectively, a second end of the thirty-ninth resistor is connected with a base of the fourteenth transistor, a collector of the fourteenth transistor is connected with a first end of the thirty-seventh resistor and a first end of the thirty-eighth resistor respectively,The second end of the thirty-seventh resistor is connected with the PB6 end of the master control chip, and the second end of the thirty-eighth resistor is connected with the emitter of the fourteenth three-terminal device and then grounded.

[0014] In the scheme, the music module circuit comprises a voice chip, a control chip, a driving chip, a thirty-third resistor, a thirty-second resistor, a tenth resistor, an eleventh resistor, a second resistor, a seventh capacitor, a ninth capacitor, an eighth capacitor, a tenth capacitor, an eleventh capacitor, a twelfth capacitor, a power amplifier output end and a voice output end. The second end of the voice chip is connected with the PB4 end of the master control chip in series with the thirty-third resistor. The third end of the voice chip is connected with the PB3 end of the master control chip in series with the thirty-second resistor. The fifth end of the voice chip is connected with the 5V power supply output end. The sixth end of the voice chip is connected with the first end of the voice output end. The seventh end of the voice chip is connected with the second end of the voice output end. The first end of the control chip is connected with the first end of the tenth capacitor and then grounded. The second end of the control chip is connected with the third end of the control chip and the second end of the tenth capacitor respectively. The fourth end of the control chip is connected with the first end of the eleventh resistor and the first end of the tenth resistor respectively. The second end of the eleventh resistor is connected with the fifth end of the control chip and the first end of the power amplifier output end respectively. The sixth end of the control chip is connected with the first end of the eleventh capacitor, the first end of the twelfth capacitor and the 5V power supply output end respectively. The seventh end of the control chip is connected with the second end of the eleventh capacitor and the second end of the twelfth capacitor and then grounded. The second end of the tenth resistor is connected with the first end of the eighth capacitor and the first end of the ninth capacitor in series with the seventh capacitor. The second end of the ninth capacitor is connected with the eighth end of the driving chip. The second end of the eighth capacitor is connected with the ninth end of the driving chip. The sixth end of the driving chip is connected with the 5V power supply output end and the first end of the second resistor respectively. The second end of the second resistor is connected with the third end of the driving chip. The tenth end of the driving chip is connected with the PA10 end of the master control chip. The eleventh end of the driving chip is connected with the PA9 end of the master control chip.

[0015] In the scheme, the card swiping module circuit comprises a card swiping port. The first end of the card swiping port is connected with the PA12 end of the master control chip. The second end of the card swiping port is connected with the PA15 end of the master control chip. The third end of the card swiping port is connected with the PC10 end of the master control chip. The fourth end of the card swiping port is connected with the PC11 end of the master control chip. The fifth end of the card swiping port is connected with the PC12 end of the master control chip. The seventh end of the card swiping port is connected with the PD2 end of the master control chip. The eighth end of the card swiping port is connected with the 3.3V power supply output end.

[0016] In the scheme, the touch circuit includes a touch panel, a first end of the touch panel is connected with a PB15 end of the master control chip, a second end of the touch panel is connected with a PB13 end of the master control chip, a third end of the touch panel is connected with a PC7 end of the master control chip, a fourth end of the touch panel is connected with a PB14 end of the master control chip, a fifth end of the touch panel is connected with a PC8 end of the master control chip, a sixth end of the touch panel is connected with a PB12 end of the master control chip, a seventh end of the touch panel is connected with a PC9 end of the master control chip, an eighth end of the touch panel is connected with a PB1 end of the master control chip, a ninth end of the touch panel is connected with a PA11 end of the master control chip, an eleventh end of the touch panel is connected with a 3.3V power output end, and a tenth end and a twelfth end of the touch panel are connected and grounded.

[0017] In the scheme, the display circuit includes a screen output port, a first capacitor, a second capacitor, a fifth resistor and a sixth resistor, a first end of the screen output port is connected with a second end of the screen output port and a first end of the second capacitor, and then grounded, a second end of the second capacitor is connected with a third end of the screen output port, a fourth end of the screen output port, a first end of the sixth resistor and a PB10 end of the master control chip, a second end of the sixth resistor is connected with a 3.3V power output end and a first end of the fifth resistor, a second end of the fifth resistor is connected with a PB11 end of the master control chip, a first end of the first capacitor and a fifth end of the screen output port, a second end of the first capacitor is grounded, and a seventh end of the screen output port is connected with a 12V power output end and an eighth end of the screen output port.

[0018] In the scheme, the fan circuit includes a fan output port, a fifth diode, a fifteenth triode, a forty-eighth resistor and a forty-seventh resistor, a first end of the fan output port is connected with a 12V power output end and a negative electrode of the fifth diode, a second end of the fan output port is connected with a positive electrode of the fifth diode and a base of the fifteenth triode, an emitter of the fifteenth triode is grounded, a collector of the fifteenth triode is connected with a first end of the forty-seventh resistor in series with the forty-eighth resistor, and a second end of the forty-seventh resistor is connected with a PA11 end of the master control chip.

[0019] In the scheme, the buzzer circuit includes a buzzer, a sixteenth triode and a forty-fourth resistor, a first end of the buzzer is connected with a 5V power output end, a second end of the buzzer is connected with a base of the sixteenth triode, an emitter of the sixteenth triode is grounded, and a collector of the sixteenth triode is connected with a PB7 end of the master control chip in series with the forty-fourth resistor.

[0020] Compared with the prior art, the utility model has the advantages that:

[0021] The desktop fascia penetration instrument integrates the multifunctional physiotherapy component, realizes efficient and comfortable physiotherapy experience, and ensures convenient and safe operation through the intelligent control circuit, and brings unprecedented personalized health enjoyment for users. BRIEF DESCRIPTION OF DRAWINGS

[0022] The drawings described herein are used to disclose further understanding of the utility model, constitute a part of the utility model, and the illustrative embodiment of the utility model and its explanation are used to explain the utility model, and do not constitute undue limitation on the utility model.

[0023] Figure 1 It is the structure schematic view of a desktop fascia penetration instrument of the utility model embodiment;

[0024] Figure 2 It is the structure schematic view of the first physiotherapy component in the desktop fascia penetration instrument of the utility model embodiment;

[0025] Figure 3 It is the structure schematic view of the second physiotherapy component in the desktop fascia penetration instrument of the utility model embodiment;

[0026] Figure 4 It is the structure schematic view of the third physiotherapy component in the desktop fascia penetration instrument of the utility model embodiment;

[0027] Figure 5 It is the circuit structure block diagram of the control circuit in the desktop fascia penetration instrument of the utility model embodiment;

[0028] Figure 6 It is the circuit structure schematic view of the main control chip in the control circuit of the utility model embodiment;

[0029] Figure 7 It is the circuit structure schematic view of the power supply circuit in the control circuit of the utility model embodiment;

[0030] Figure 8 It is the circuit structure schematic view of the micro electric circuit in the control circuit of the utility model embodiment;

[0031] Figure 9 It is the superconducting circuit structure schematic view in the control circuit of the utility model embodiment Figure 1 ;

[0032] Figure 10 It is the superconducting circuit structure schematic view in the control circuit of the utility model embodiment Figure 2 ;

[0033] Figure 11The circuit structure schematic diagram of the music module circuit in the control circuit is shown in the embodiment of the utility model.

[0034] Figure 12 The circuit structure schematic diagram of the card swiping module circuit in the control circuit is shown in the embodiment of the utility model.

[0035] Figure 13 The circuit structure schematic diagram of the touch circuit in the control circuit is shown in the embodiment of the utility model.

[0036] Figure 14 The circuit structure schematic diagram of the display circuit in the control circuit is shown in the embodiment of the utility model.

[0037] Figure 15 The circuit structure schematic diagram of the fan circuit in the control circuit is shown in the embodiment of the utility model.

[0038] Figure 16 The circuit structure schematic diagram of the buzzer circuit in the control circuit is shown in the embodiment of the utility model. DETAILED DESCRIPTION

[0039] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail by combining with the drawings and embodiments.

[0040] The same or similar reference numerals in the drawings of the embodiments correspond to the same or similar components; in the description of the utility model, it should be understood that the terms "first", "second", "third" and the like are only for the convenience of distinguishing the same components for description, and do not indicate or imply the number of the components referred to, and should not be understood as the limitation of the patent.

[0041] It should be noted that in this paper, the term "including", "containing" or any other variant thereof is intended to cover non-exclusive containing, so that the process, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes the elements inherent in such process, article or device.

[0042] The utility model embodiment one provides a table type fascia membrane permeameter, such as Figures 1-4As shown, including the shell 1, 24V power connection P8, switch 2, touch screen 3, the first electrode interface 41, the second electrode interface 42, the third electrode interface 43, PCB board, the first physiotherapy component, the second physiotherapy component, the third physiotherapy component, the touch screen 3 is arranged on the front of the shell 1, the PCB board built-in control circuit is arranged in the shell 1, and is connected with the first electrode interface 41, the second electrode interface 42 and the third electrode interface 43 arranged on one side of the shell 1, the switch 2 and the 24V power connection P8 are arranged on one side of the shell 1, the 24V power connection P8 is used to power the control circuit built-in PCB board, the switch 2 is used to open and close the control circuit built-in PCB board, the first physiotherapy component is connected with the first electrode interface 41, the second physiotherapy component is connected with the second electrode interface 42, and the third physiotherapy component is connected with the third electrode interface 43.

[0043] As shown in Figure 1 and Figure 2 , the first physiotherapy component includes a first interface end 51, a first connecting line 52, a first subhead 53, two pieces of first silica gel conductive heating plate 54, an adjustable heating probe 55, one end of the first interface end 51 is connected with the first electrode interface 41, the other end of the first interface end 51 is connected with the first subhead 53 through the first connecting line 52, and the first subhead 53 is connected with the two pieces of first silica gel conductive heating plate 54 and the adjustable heating probe 55 respectively.

[0044] As shown in Figure 1 and Figure 3 , the second physiotherapy component includes a second interface end 61, a second connecting line 62, a second subhead 63, a second silica gel conductive heating plate 64, and a conductive heating ultrasonic probe 65, one end of the second interface end 61 is connected with the second electrode interface 42, the other end of the second interface end 61 is connected with the second subhead 63 through the second connecting line 62, and the second subhead 63 is connected with the second silica gel conductive heating plate 64 and the conductive heating ultrasonic probe 65 respectively.

[0045] As shown in Figure 1 and Figure 4 , the third physiotherapy component includes a third interface end 71, a third connecting line 72, a third subhead 73, and three pieces of third silica gel conductive heating plate 74, one end of the third interface end 71 is connected with the third electrode interface 43, the other end of the third interface end 71 is connected with the third subhead 73 through the third connecting line 72, and the third subhead 73 is connected with the three pieces of third silica gel conductive heating plate 74.

[0046] As shown in Figure 5As shown, the control circuit includes a master chip U1, a power supply circuit, a micro electric circuit, a superconducting circuit, a music module circuit, a card swiping module circuit, a touch circuit, a display circuit, a fan circuit, a buzzer circuit, an input end of the power supply circuit is connected with a 24V power supply connection port P8, an output end of the power supply circuit is connected with a power input end of the master chip U1, an output end of the master chip U1 is connected with an input end of the micro electric circuit, an input end of the superconducting circuit, an input end of the music module circuit, an input end of the card swiping module circuit, an input end of the touch circuit, an input end of the display circuit, an input end of the fan circuit and an input end of the buzzer circuit respectively.

[0047] As Figure 5 and Figure 7As shown, the power supply circuit includes a 24V power supply output, a power management chip L3, a first three-terminal voltage regulator integrated circuit VR1, a second three-terminal voltage regulator integrated circuit VR2, a first diode D1, a fourth diode D4, a first inductor L1, a 12V power supply output, a 5V power supply output, a 3.3V power supply output, a twenty-seventh capacitor C27, a thirty-third capacitor C33, a twenty-ninth capacitor C29, a thirty-first capacitor C31, a thirtieth capacitor C30, the second end of the 24V power supply connection port P8 is connected with the negative electrode of the first diode D1, the first end of the twenty-seventh capacitor C27, the first end of the thirty-third capacitor C33, the 24V power supply output, and the VIN end of the power management chip L3, respectively, the first end of the 24V power supply connection port P8 is connected with the positive electrode of the first diode D1, the second end of the twenty-seventh capacitor C27, the second end of the thirty-third capacitor C33, the GND end of the power management chip L3, the OUT end of the power management chip L3, and the positive electrode of the fourth diode D4 in sequence and then grounded, the PUT end of the power management chip L3 is connected with the negative electrode of the fourth diode D4 and the first end of the first inductor L1, respectively, the second end of the first inductor L1 is connected with the second end of the twenty-ninth capacitor C29, the 12V power supply output, and the FEEDBACK end of the power management chip L3, respectively, the 12V power supply output is connected with the VIN end of the first three-terminal voltage regulator integrated circuit VR1, the VOUT end of the first three-terminal voltage regulator integrated circuit VR1 is connected with the 5V power supply output and the first end of the thirty-first capacitor C31, respectively, the second end of the thirty-first capacitor C31 is connected with the GND end of the first three-terminal voltage regulator integrated circuit VR1 and then grounded, the 5V power supply output is connected with the VIN end of the second three-terminal voltage regulator integrated circuit VR2 and the first end of the fourth capacitor C4, respectively, the second end of the fourth capacitor C4 is connected with the GND end of the second three-terminal voltage regulator integrated circuit VR2 and the first end of the thirtieth capacitor C30 in sequence and then grounded, the second end of the thirtieth capacitor C30 is connected with the VOUT end of the second three-terminal voltage regulator integrated circuit VR2 and the 3.3V power supply output, respectively, and the 3.3V power supply output is connected with the PA1 end, the PA4 end, the VDD_1 end, the VDD_2 end, and the VDD_3 end of the main control chip U1.

[0048] As Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9As shown, the microcircuit shown includes a first micro electrical connection end P1, a thirteenth transformer T13, a first triode Q1, a second triode Q2, a third triode Q3, a fourth triode Q4, a ninth triode Q9, a third resistor R3, a fifteenth resistor R15, a fourteenth resistor R14, a twelfth resistor R12, a twenty-second resistor R22, a sixteenth resistor R16, a twenty-fifth resistor R25, a twenty-fourth resistor R24, a thirtieth resistor R30, a twenty-third resistor R23, a thirteenth resistor R13, a thirteenth capacitor C13, a fourteenth capacitor C14, a fifteenth capacitor C15, a second micro electrical connection end P2, a twenty-first transformer T21, a fifth triode Q5, a sixth triode Q6, a seventh triode Q7, an eighth triode Q8, a thirteenth triode Q10, a twentieth resistor R20, a twenty-eighth resistor R28, a seventeenth resistor R17, a twenty-sixth resistor R26, a twenty-seventh resistor R27, an eighteenth resistor R18, a thirty-first resistor R31, a nineteenth resistor R19, a twenty-first resistor R21, a twenty-ninth resistor R29, an eighth resistor R8, a ninth resistor R9, a third capacitor C3, a fifth capacitor C5, a sixth capacitor C6, a sixteenth capacitor C16, a first end of the first micro electrical connection end P1 is connected with a first end of the third resistor R3 and a first end of the thirteenth transformer T13 respectively, a second end of the first micro electrical connection end P1 is connected with a second end of the third resistor R3 and a second end of the thirteenth transformer T13 respectively, a third end of the thirteenth transformer T13 is connected with a base of the first triode Q1, a fourth end of the thirteenth transformer T13 is connected with a base of the third triode Q3, a collector of the third triode Q3 is connected with a first end of the fifteenth resistor R15 and a first end of the twenty-fourth resistor R24 respectively, an emitter of the third triode Q3 is connected with a second end of the fifteenth resistor R15 and grounded in sequence, a second end of the twenty-fourth resistor R24 is connected with a PA8 end of the master control chip U1, a fourth end of the first micro electrical connection end P1 is connected with a base of the fourth triode Q4, a collector of the fourth triode Q4 is connected with a first end of the sixteenth resistor R16 and a first end of the twenty-fifth resistor R25 respectively, an emitter of the fourth triode Q4 is connected with a second end of the sixteenth resistor R16, a second end of the twenty-fifth resistor R25 is connected with a PA6 end of the master control chip U1, a base of the second triode Q2 is connected with a 12V power supply output end, a collector of the second triode Q2 is connected with a first end of the thirteenth capacitor R13 and a first end of the twenty-third resistor R23 respectively, a second end of the twenty-third resistor R23 is connected with a base of the ninth triode Q9 and a first end of the fourteenth resistor R14 respectively, a second end of the fourteenth resistor R14 is connected with the 12V power supply output end,The collector of the ninth transistor Q9 is connected with the PB0 end of the main control chip U1 after connecting with the thirtieth resistor R30 in series, the emitter of the second transistor Q2 is respectively connected with the ED1 end of the main control chip U1 and the first end of the fifteenth capacitor C15 after connecting with the thirteenth resistor R13 in series, the second end of the fifteenth capacitor C15 is connected with the emitter of the ninth transistor Q9 and then grounded, the third end of the first micro electric connection end P1 is connected with the 24V power output end, the first end of the second micro electric connection end P2 is connected with the 24V power output end, the second end of the second micro electric connection end P2 is connected with the base of the eighth transistor Q8, the collector of the eighth transistor Q8 is respectively connected with the first end of the twenty-first resistor R21 and the first end of the twenty-ninth resistor R29, the emitter of the eighth transistor Q8 is respectively connected with the second end of the twenty-first resistor R21, the first end of the fifth capacitor C5, the first end of the third capacitor C3 and the first end of the sixth capacitor C6 and then grounded, the second end of the twenty-ninth resistor R29 is connected with the PA0 end of the main control chip U1, the second end of the fifth capacitor C5 is connected with the first end of the seventh resistor R7, the first end of the ninth resistor R9 and the 3.3V power output end after connecting with the eighth resistor R8 in series, the second end of the seventh resistor R7 is connected with the second end of the third capacitor C3, the second end of the ninth resistor R9 is connected with the second end of the sixth capacitor C6, the base of the sixth transistor Q6 is connected with the 12V power output end, the collector of the sixth transistor Q6 is respectively connected with the first end of the fourteenth capacitor C14 and the first end of the twenty-seventh resistor R27, the second end of the twenty-seventh resistor R27 is respectively connected with the base of the thirteenth transistor Q10 and the first end of the eighteenth resistor R18, the second end of the eighteenth resistor R18 is connected with the 12V power output end, the collector of the thirteenth transistor Q10 is connected with the PA2 end of the main control chip U1 after connecting with the thirty-first resistor R31 in series, the emitter of the sixth transistor Q6 is respectively connected with the ED1 end of the main control chip U1 and the first end of the sixteenth capacitor C16 after connecting with the nineteenth resistor R19 in series, the second end of the sixteenth capacitor C16 is connected with the emitter of the thirteenth transistor Q10 and then grounded, the first end of the twenty-first transformer T21 and the first end of the fourth resistor R4 are connected with the third end of the second micro electric connection end P2, the second end of the twenty-first transformer T21 and the second end of the fourth resistor R4 are connected with the fourth end of the second micro electric connection end P2, the base of the seventh transistor Q7 is connected with the third end of the twenty-first transformer T21, the base of the fifth transistor Q5 is connected with the fourth end of the twenty-first transformer T21, the ED1 end of the main control chip U1 is connected with the fifth end of the twenty-first transformer T21, the collector of the seventh transistor Q7 is respectively connected with the first end of the twentieth resistor R20 and the first end of the twenty-eighth resistor R28,The second end of the twenty-eighth resistor R28 is connected with the PA1 end of the master control chip U1, the emitter of the seventh transistor Q7 is connected with the second end of the twentieth resistor R20 and then grounded, the collector of the fifth transistor Q5 is connected with the first end of the seventeenth resistor R17 and the first end of the twenty-sixth resistor R26 respectively, the second end of the twenty-sixth resistor R26 is connected with the PA3 end of the master control chip U1, and the emitter of the fifth transistor Q5 is connected with the second end of the seventeenth resistor R17 and then grounded.

[0049] As Figure 5 , Figure 6 , Figure 7 and Figure 10As shown, the superconducting circuit includes a superconducting connection end P9, an eleventh transistor Q11, a third diode D3, a second diode D2, a twelfth transistor Q12, a tenth transistor Q13, a fourteenth transistor Q14, a thirty-fifth resistor R35, a thirty-fourth resistor R34, a thirty-sixth resistor R36, a forty-first resistor R41, a forty-second resistor R42, a forty-fifth resistor R45, a forty-third resistor R43, a forty-sixth resistor R46, a thirty-eighth resistor R38, a thirty-ninth resistor R39, a fortieth resistor R40, a thirty-seventh resistor R37, a second inductor L2, an eighteenth capacitor C18, a twenty-first capacitor C21, a twenty-fifth capacitor C25, a twenty-second capacitor C22, a twenty-sixth capacitor C26, a twenty-eighth capacitor C28, a first end of the superconducting connection end P9 is connected with a CSB end of the master control chip U1, a second end of the superconducting connection end P9 is connected with a first end of the twenty-first capacitor C21 and a first end of the twenty-fifth capacitor C25 respectively, a second end of the twenty-first capacitor C21 is connected with an anode of the second diode D2 and a negative electrode of the third diode D3 through a forty-first resistor R41 in series, a negative electrode of the second diode D2 is connected with a first end of the thirty-sixth resistor R36, a first end of the eighteenth capacitor C18 and a PC5 end of the master control chip U1 respectively, a second end of the eighteenth capacitor C18 is connected with a second end of the thirty-sixth resistor R36, a positive electrode of the third diode D3, a first end of the thirty-fifth resistor R35 and an emitter of the eleventh transistor Q11 and grounded, a collector of the eleventh transistor Q11 is connected with a second end of the thirty-fifth resistor R35 and a second end of the thirty-fourth resistor R34 respectively, a first end of the thirty-fourth resistor R34 is connected with a PB5 end of the master control chip U1, and a base of the eleventh transistor Q11 is connected with a fourth end of the superconducting connection end P9.The third end of the superconducting connecting end P9 is connected with the 5V power output end, the second end of the twenty-fifth capacitor C25 is connected with the first end of the twenty-second capacitor C22, the first end of the forty-second resistor R42 and the first end of the forty-sixth resistor R46 respectively, the second end of the forty-sixth resistor R46 is connected with the collector of the twelfth transistor Q12, the emitter of the twelfth transistor Q12 is grounded, the base of the twelfth transistor Q12 is connected with the CSB end of the master control chip U1, the first end of the twenty-eighth capacitor C28 and the first end of the second inductor L2 respectively, the second end of the second inductor L2 is connected with the 24V power output end, the second end of the twenty-eighth capacitor C28 is grounded, the second end of the twenty-second capacitor C22 is connected with the first end of the forty-fifth resistor R45 and the first end of the twenty-sixth capacitor C26 respectively and then grounded, the second end of the forty-fifth resistor R45 is connected with the second end of the forty-second resistor R42, the first end of the twenty-sixth capacitor C26 and the first end of the forty-third resistor R43 respectively, the second end of the forty-third resistor R43 is connected with the collector of the tenth three transistor Q13, the emitter of the tenth three transistor Q13 is connected with the 24V power output end and the first end of the fortieth resistor R40, the second end of the fortieth resistor R40 is connected with the base of the tenth three transistor Q13 and the first end of the thirty-ninth resistor R39 respectively, the second end of the thirty-ninth resistor R39 is connected with the base of the fourteenth transistor Q14, the collector of the fourteenth transistor Q14 is connected with the first end of the thirty-seventh resistor R37 and the first end of the thirty-eighth resistor R38 respectively, the second end of the thirty-seventh resistor R37 is connected with the PB6 end of the master control chip U1, the second end of the thirty-eighth resistor R38 is connected with the emitter of the fourteenth transistor Q14 and then grounded.

[0050] As Figure 5 , Figure 6 , Figure 7 and Figure 11As shown, the music module circuit includes voice chip U2, control chip U3, drive chip U4, thirty-third resistor R33, thirty-second resistor R32, tenth resistor R10, eleventh resistor R11, second resistor R2, seventh capacitor C7, ninth capacitor C9, eighth capacitor C8, tenth capacitor C10, eleventh capacitor C11, twelfth capacitor C12, power amplifier output end P4, voice output end P7, the second end of the voice chip U2 is connected with the PB4 end of the master control chip U1 after being connected with the thirty-third resistor R33 in series, the third end of the voice chip U2 is connected with the PB3 end of the master control chip U1 after being connected with the thirty-second resistor R32 in series, the fifth end of the voice chip U2 is connected with the 5V power supply output end, the sixth end of the voice chip U2 is connected with the first end of the voice output end P7, the seventh end of the voice chip U2 is connected with the second end of the voice output end P7, the first end of the control chip U3 is connected with the first end of the tenth capacitor C10 and then grounded, the second end of the control chip U3 is connected with the third end of the control chip U3 and the second end of the tenth capacitor C10 respectively, the fourth end of the control chip U3 is connected with the first end of the eleventh resistor R11 and the first end of the tenth resistor R10 respectively, the second end of the eleventh resistor R11 is connected with the fifth end of the control chip U3 and the first end of the power amplifier output end P4 respectively, the sixth end of the control chip U3 is connected with the first end of the eleventh capacitor C11, the first end of the twelfth capacitor C12 and the 5V power supply output end respectively, the seventh end of the control chip U3 is connected with the second end of the eleventh capacitor C11 and the second end of the twelfth capacitor C12 respectively and then grounded, the second end of the tenth resistor R10 is connected with the first end of the eighth capacitor C8 and the first end of the ninth capacitor C9 respectively after being connected with the seventh capacitor C7 in series, the second end of the ninth capacitor C9 is connected with the eighth end of the drive chip U4, the second end of the eighth capacitor C8 is connected with the ninth end of the drive chip U4, the sixth end of the drive chip U4 is connected with the 5V power supply output end and the first end of the second resistor R2 respectively, the second end of the second resistor R2 is connected with the third end of the drive chip U4, the tenth end of the drive chip U4 is connected with the PA10 end of the master control chip U1, the eleventh end of the drive chip U4 is connected with the PA9 end of the master control chip U1.

[0051] As Figure 5 , Figure 6 , Figure 7 and Figure 12As shown, the card swiping module circuit includes a card swiping port P6, a first end of the card swiping port P6 is connected with a PA12 end of the master control chip U1, a second end of the card swiping port P6 is connected with a PA15 end of the master control chip U1, a third end of the card swiping port P6 is connected with a PC10 end of the master control chip U1, a fourth end of the card swiping port P6 is connected with a PC11 end of the master control chip U1, a fifth end of the card swiping port P6 is connected with a PC12 end of the master control chip U1, a seventh end of the card swiping port P6 is connected with a PD2 end of the master control chip U1, and an eighth end of the card swiping port P6 is connected with a 3.3V power output end.

[0052] As shown in Figure 5 , Figure 6 , Figure 7 and Figure 13 , the touch circuit includes a touch panel P5, a first end of the touch panel P5 is connected with a PB15 end of the master control chip U1, a second end of the touch panel P5 is connected with a PB13 end of the master control chip U1, a third end of the touch panel P5 is connected with a PC7 end of the master control chip U1, a fourth end of the touch panel P5 is connected with a PB14 end of the master control chip U1, a fifth end of the touch panel P5 is connected with a PC8 end of the master control chip U1, a sixth end of the touch panel P5 is connected with a PB12 end of the master control chip U1, a seventh end of the touch panel P5 is connected with a PC9 end of the master control chip U1, an eighth end of the touch panel P5 is connected with a PB1 end of the master control chip U1, a ninth end of the touch panel P5 is connected with a PA11 end of the master control chip U1, and eleventh and twelfth ends of the touch panel P5 are connected and grounded.

[0053] As shown in Figure 5 , Figure 6 , Figure 7 and Figure 14 , the display circuit includes a screen output port P3, a first capacitor C1, a second capacitor C2, a fifth resistor R5, and a sixth resistor R6, a first end of the screen output port P3 is connected with a second end of the screen output port P3 and a first end of the second capacitor C2 respectively and then grounded, a second end of the second capacitor C2 is connected with a third end of the screen output port P3, a fourth end of the screen output port P3, a first end of the sixth resistor R6, and a PB10 end of the master control chip U1 respectively, a second end of the sixth resistor R6 is connected with a 3.3V power output end and a first end of the fifth resistor R5 respectively, a second end of the fifth resistor R5 is connected with a PB11 end of the master control chip U1, a first end of the first capacitor C1, and a fifth end of the screen output port P3 respectively, a second end of the first capacitor C1 is grounded, and a seventh end of the screen output port P3 is connected with a 12V power output end and an eighth end of the screen output port P3 respectively.

[0054] As Figure 5 , Figure 6 , Figure 7 and Figure 15 indicated, the fan circuit includes a fan output port P11, a fifth diode D5, a fifteenth transistor Q15, a forty-eighth resistor R48, a forty-seventh resistor R47, a first end of the fan output port P11 is connected with a 12V power supply output end and a negative electrode of the fifth diode D5 respectively, a second end of the fan output port P11 is connected with a positive electrode of the fifth diode D5 and a base of the fifteenth transistor Q15 respectively, an emitter of the fifteenth transistor Q15 is grounded, a collector of the fifteenth transistor Q15 is connected with a first end of the forty-seventh resistor R47 after being connected with the forty-eighth resistor R48 in series, and a second end of the forty-seventh resistor R47 is connected with a PA11 end of the main control chip U1.

[0055] As Figure 5 , Figure 6 , Figure 7 and Figure 16 indicated, the buzzer circuit includes a buzzer LS1, a sixteenth transistor Q16 and a forty-fourth resistor R44, a first end of the buzzer LS1 is connected with a 5V power supply output end, a second end of the buzzer LS1 is connected with a base of the sixteenth transistor Q16, an emitter of the sixteenth transistor Q16 is grounded, and a collector of the sixteenth transistor Q16 is connected with a PB7 end of the main control chip U1 after being connected with the forty-fourth resistor R44 in series.

[0056] The working principle of the utility model is as follows:

[0057] The desktop fascia penetration instrument of the utility model realizes efficient and safe physiotherapy process through the integrated multifunctional physiotherapy component and control circuit. The user first sets the required physiotherapy mode and parameters such as temperature, time, etc. through the touch screen. Subsequently, the 24V power supply supplies power to the main control chip and other functional modules through the power supply circuit. After receiving the user instruction, the main control chip controls the corresponding physiotherapy component to start working.

[0058] In the first physiotherapy component, the current generates heat through the first silica gel conductive heating plate, the heat is uniformly conducted to the human tissue, and the adjustable heating probe can adjust the temperature according to the requirement, realizing accurate physiotherapy. The second physiotherapy component combines the conductive heating ultrasonic probe, not only providing the hot compress effect, but also promoting muscle relaxation and blood circulation through ultrasonic waves. The third physiotherapy component expands the physiotherapy area and enhances the effect through the three third silica gel conductive heating plates.

[0059] During the entire treatment process, the control circuit monitors the device status in real time, ensures that the current, temperature and other parameters are within the safe range, and maintains the internal heat dissipation of the device through the fan circuit to prevent overheating. At the same time, the micro-electric circuit and the superconducting circuit optimize the transmission of electric energy and improve the treatment efficiency. In addition, the music module circuit plays soothing music to create a relaxed atmosphere and improve user experience.

[0060] The desktop fascia penetration instrument provided by the utility model has the following beneficial effects through integrating various physiotherapy components and advanced control circuits:

[0061] Multifunctional integration: The desktop fascia penetration instrument designed by the utility model integrates the first physiotherapy component, the second physiotherapy component and the third physiotherapy component, and has various physiotherapy functions such as silicone conductive heating, conductive heating ultrasonic probe and the like. Users can select different physiotherapy modes according to their own needs to realize personalized and diversified physiotherapy experience.

[0062] Efficient heating and uniform conduction: The first, second and third physiotherapy components all adopt silicone conductive heating plates as heating elements, which have excellent heat conduction performance and biocompatibility, can ensure that heat is uniformly and quickly conducted to human tissues, and improve the physiotherapy effect. Meanwhile, the settings of the adjustable heating probe and the conductive heating ultrasonic probe further enhance the pertinence and effectiveness of physiotherapy.

[0063] Intelligent control and safety guarantee: The control circuit integrates multiple functional modules such as a master control chip, a power circuit, a micro-electric circuit and the like, realizes intelligent control and safety protection of the physiotherapy device. Through touch screen operation, users can easily set physiotherapy parameters such as temperature, time and the like. Meanwhile, the control circuit also has safety functions such as overcurrent protection, overheat protection and the like to ensure the safety of users during use.

[0064] User experience optimization: The utility model also designs a music module circuit and a fan circuit, which can play soothing music and provide appropriate heat dissipation effect during physiotherapy, further improving the comfort and experience of users. In addition, the addition of the card swiping module circuit provides users with a convenient payment method and enhances the market competitiveness of the product.

[0065] In summary, the desktop fascia penetration instrument provided by the utility model not only has various physiotherapy functions, but also has the characteristics of high efficiency, safety and comfort, can meet the diversified needs of modern people for health physiotherapy, and has broad market application prospects.

[0066] The above is only a preferred embodiment of the utility model, and is not used to limit the protection scope of the utility model.

Claims

1. A desktop fascia permeation device, characterized in that, The device includes a housing, a 24V power connector, a switch, a touchscreen, a first electrode interface, a second electrode interface, a third electrode interface, a PCB board, a first physiotherapy component, a second physiotherapy component, and a third physiotherapy component. The touchscreen is located on the front of the housing. The PCB board has a built-in control circuit inside the housing and is connected to the first electrode interface, the second electrode interface, and the third electrode interface located on one side of the housing. The switch and the 24V power connector are both located on one side of the housing. The 24V power connector supplies power to the built-in control circuit on the PCB board, and the switch is used to turn the built-in control circuit on and off. The first physiotherapy component is connected to the first electrode interface, the second physiotherapy component is connected to the second electrode interface, and the third physiotherapy component is connected to the third electrode interface.

2. The desktop fascia permeation device according to claim 1, characterized in that, The first physiotherapy component includes a first interface end, a first connecting line, a first tap, two first silicone conductive heating plates, and an adjustable heating probe. One end of the first interface end is connected to a first electrode interface, and the other end of the first interface end is connected to the first tap via the first connecting line. The first tap is connected to the two first silicone conductive heating plates and the adjustable heating probe, respectively. The second physiotherapy component includes a second interface terminal, a second connecting line, a second tap, a second silicone conductive heating plate, and a conductive heating ultrasound probe. One end of the second interface terminal is connected to a second electrode interface, and the other end of the second interface terminal is connected to the second tap via the second connecting line. The second tap is connected to the second silicone conductive heating plate and the conductive heating ultrasound probe, respectively. The third physiotherapy component includes a third interface terminal, a third connecting line, a third tap, and a third silicone conductive heating plate. One end of the third interface terminal is connected to the third electrode interface, and the other end of the third interface terminal is connected to the third tap via the third connecting line. The third tap is connected to three third silicone conductive heating plates respectively.

3. A desktop fascia permeation device according to claim 2, characterized in that, The control circuit includes a main control chip, a power supply circuit, a micro-electric circuit, a superconducting circuit, a music module circuit, a card swiping module circuit, a touch circuit, a display circuit, a fan circuit, and a buzzer circuit. The input terminal of the power supply circuit is connected to a 24V power supply port, and the output terminal of the power supply circuit is connected to the power input terminal of the main control chip. The output terminal of the main control chip is connected to the input terminals of the micro-electric circuit, the superconducting circuit, the music module circuit, the card swiping module circuit, the touch circuit, the display circuit, the fan circuit, and the buzzer circuit, respectively.

4. A desktop fascia permeation device according to claim 3, characterized in that, The power supply circuit includes a 24V power output terminal, a power management chip, a first three-terminal voltage regulator IC, a second three-terminal voltage regulator IC, a first diode, a fourth diode, a first inductor, a 12V power output terminal, a 5V power output terminal, a 3.3V power output terminal, a 27th capacitor, a 33rd capacitor, a 29th capacitor, a 31st capacitor, and a 30th capacitor. The second terminal of the 24V power connector is connected to the negative terminal of the first diode, the first terminal of the 27th capacitor, the first terminal of the 33rd capacitor, the 24V power output terminal, and the VIN terminal of the power management chip. The first terminal of the 24V power connector is connected to the positive terminal of the first diode, the second terminal of the 27th capacitor, the second terminal of the 33rd capacitor, the GND terminal of the power management chip, the OUT terminal of the power management chip, the positive terminal of the fourth diode, and the first terminal of the 29th capacitor, and then grounded. The PUT terminal of the power management chip is connected to the negative terminal of the fourth diode and the first terminal of the first inductor. The second end of an inductor is connected to the second end of the twenty-ninth capacitor, the 12V power output terminal, and the FEEDBACK terminal of the power management chip. The 12V power output terminal is connected to the VIN terminal of the first three-terminal voltage regulator IC. The VOUT terminal of the first three-terminal voltage regulator IC is connected to the 5V power output terminal and the first end of the thirty-first capacitor. The second end of the thirty-first capacitor is connected to the GND terminal of the first three-terminal voltage regulator IC and then grounded. The 5V power output terminal is connected to the VIN terminal of the second three-terminal voltage regulator IC and the first end of the fourth capacitor. The second end of the fourth capacitor is connected to the GND terminal of the second three-terminal voltage regulator IC and the first end of the thirtieth capacitor and then grounded. The second end of the thirtieth capacitor is connected to the VOUT terminal of the second three-terminal voltage regulator IC and the 3.3V power output terminal. The 3.3V power output terminal is connected to the PA1, PA4, VDD_1, VDD_2, and VDD_3 terminals of the main control chip.

5. A desktop fascia permeation device according to claim 4, characterized in that, The micro-circuit shown includes a first micro-connection terminal, a thirteenth transformer, a first transistor, a second transistor, a third transistor, a fourth transistor, a ninth transistor, a third resistor, a fifteenth resistor, a fourteenth resistor, a twelfth resistor, a twenty-second resistor, a sixteenth resistor, a twenty-fifth resistor, a twenty-fourth resistor, a thirtieth resistor, a twenty-third resistor, a thirteenth resistor, a thirteenth capacitor, a fourteenth capacitor, a fifteenth capacitor, a second micro-connection terminal, a twenty-first transformer, a fifth transistor, a sixth transistor, a seventh transistor, an eighth transistor, a thirteenth transistor, a twentieth resistor, a twenty-eighth resistor, a seventeenth resistor, a twenty-sixth resistor, a twenty-seventh resistor, an eighteenth resistor, and a thirty-first resistor. Resistors, including the nineteenth, twenty-first, twenty-ninth, seventh, eighth, and ninth resistors, as well as the third, fifth, sixth, and sixteenth capacitors, are connected as follows: the first terminal of the first micro-connection is connected to the first terminal of the third resistor and the first terminal of the thirteenth transformer, respectively; the second terminal of the first micro-connection is connected to the second terminal of the third resistor and the second terminal of the thirteenth transformer, respectively; the third terminal of the thirteenth transformer is connected to the base of the first transistor; the fourth terminal of the thirteenth transformer is connected to the base of the third transistor; the collector of the third transistor is connected to the first terminal of the fifteenth and fourteenth resistors, respectively; and the emitter of the third transistor is connected to the first... The second terminal of resistor 15 is connected to ground. The second terminal of resistor 24 is connected to PA8 of the main control chip. The fourth terminal of the first micro-connection terminal is connected to the base of transistor 4. The collector of transistor 4 is connected to the first terminal of resistor 16 and resistor 25. The emitter of transistor 4 is connected to the second terminal of resistor 16. The second terminal of resistor 25 is connected to PA6 of the main control chip. The base of transistor 25 is connected to the 12V power output terminal. The collector of transistor 25 is connected to the first terminal of capacitor 13 and resistor 23. The second terminal of resistor 23 is connected to the base of transistor 9 and resistor 14. The first terminal of the transistor is connected to the main control chip. The second terminal of the fourteenth resistor is connected to the 12V power output terminal. The collector of the ninth transistor is connected in series with the thirtieth resistor and then to the PB0 terminal of the main control chip. The emitter of the second transistor is connected in series with the thirteenth resistor and then to the ED1 terminal of the main control chip and the first terminal of the fifteenth capacitor. The second terminal of the fifteenth capacitor is connected to the emitter of the ninth transistor and then grounded. The 24V power output terminal is connected to the third terminal of the first micro-connection terminal. The first terminal of the second micro-connection terminal is connected to the 24V power output terminal. The second terminal of the second micro-connection terminal is connected to the base of the eighth transistor. The collector of the eighth transistor is connected to the first terminal of the twenty-first resistor and the first terminal of the twenty-ninth resistor.The emitter of the eighth transistor is connected to the second terminal of the twenty-first resistor, the first terminal of the fifth capacitor, the first terminal of the third capacitor, and the first terminal of the sixth capacitor, and then grounded. The second terminal of the twenty-ninth resistor is connected to the PA0 terminal of the main control chip. The second terminal of the fifth capacitor is connected in series with the eighth resistor and then to the first terminal of the seventh resistor, the first terminal of the ninth resistor, and the 3.3V power output terminal. The second terminal of the seventh resistor is connected to the second terminal of the third capacitor. The second terminal of the ninth resistor is connected to the second terminal of the sixth capacitor. The 12V power output terminal is connected to the base of the sixth transistor. The collector of the sixth transistor is connected to the first terminal of the fourteenth capacitor and the first terminal of the twenty-seventh resistor. The second terminal of the twenty-seventh resistor is connected to the base of the thirteenth transistor and the first terminal of the eighteenth resistor. The second terminal of the eighteenth resistor is connected to the 12V power output terminal. The collector of the thirteenth transistor is connected in series with the thirty-first resistor and then to the PA2 terminal of the main control chip. The emitter of the sixth transistor is connected in series with the nineteenth resistor and then to the ED1 terminal of the main control chip and the sixteenth resistor. The first terminal of the capacitor is connected; the second terminal of the sixteenth capacitor is connected to the emitter of the thirteenth transistor and then grounded; the third terminal of the second micro-connection terminal is connected to the first terminal of the twenty-first transformer and the first terminal of the fourth resistor; the fourth terminal of the second micro-connection terminal is connected to the second terminal of the twenty-first transformer and the second terminal of the fourth resistor; the third terminal of the twenty-first transformer is connected to the base of the seventh transistor; the fourth terminal of the twenty-first transformer is connected to the base of the fifth transistor; the fifth terminal of the twenty-first transformer is connected to the ED1 terminal of the main control chip; the collector of the seventh transistor is connected to the first terminal of the twentieth resistor and the first terminal of the twenty-eighth resistor; the second terminal of the twenty-eighth resistor is connected to the PA1 terminal of the main control chip; the emitter of the seventh transistor is connected to the second terminal of the twentieth resistor and then grounded; the collector of the fifth transistor is connected to the first terminal of the seventeenth resistor and the first terminal of the twenty-sixth resistor; the second terminal of the twenty-sixth resistor is connected to the PA3 terminal of the main control chip; and the emitter of the fifth transistor is connected to the second terminal of the seventeenth resistor and then grounded.

6. A desktop fascia permeation device according to claim 5, characterized in that, The superconducting circuit includes a superconducting connection terminal, an eleventh transistor, a third diode, a second diode, a twelfth transistor, a thirteenth transistor, a fourteenth transistor, a thirty-fifth resistor, a thirty-fourth resistor, a thirty-sixth resistor, a forty-first resistor, a forty-second resistor, a forty-fifth resistor, a forty-third resistor, a forty-sixth resistor, a thirty-eighth resistor, a thirty-ninth resistor, a fortieth resistor, a thirty-seventh resistor, a second inductor, an eighteenth capacitor, a twenty-first capacitor, a twenty-fifth capacitor, a twenty-second capacitor, a twenty-sixth capacitor, and a twenty-eighth capacitor. The first end of the superconducting connection terminal is connected to the CSB terminal of the main control chip, and the second end of the superconducting connection terminal is connected to the twenty-first capacitor. The first terminal of the device is connected to the first terminal of the 25th capacitor. The second terminal of the 21st capacitor is connected in series with the 41st resistor and then connected to the anode of the 2nd diode and the cathode of the 3rd diode. The cathode of the 2nd diode is connected to the first terminal of the 36th resistor, the first terminal of the 18th capacitor, and the PC5 terminal of the main control chip. The second terminal of the 18th capacitor is connected to the second terminal of the 36th resistor, the anode of the 3rd diode, the first terminal of the 35th resistor, and the emitter of the 11th transistor, and then grounded. The collector of the 11th transistor is connected to the second terminals of the 35th resistor and the 34th resistor. The first terminal of the 34th resistor is connected to the PB5 terminal of the main control chip. The base of the eleventh transistor is connected to the fourth terminal of the superconducting connection. The third terminal of the superconducting connection is connected to the 5V power output terminal. The second terminal of the twenty-fifth capacitor is connected to the first terminal of the twenty-second capacitor, the first terminal of the forty-second resistor, and the first terminal of the forty-sixth resistor. The second terminal of the forty-sixth resistor is connected to the collector of the twelfth transistor. The emitter of the twelfth transistor is grounded. The base of the twelfth transistor is connected to the CSB terminal of the main control chip, the first terminal of the twenty-eighth capacitor, and the first terminal of the second inductor. The second terminal of the second inductor is connected to the 24V power output terminal. The second terminal of the twenty-eighth capacitor is grounded. The second terminal of the twenty-second capacitor is connected to the forty-fifth capacitor... The first terminal of the resistor and the first terminal of the twenty-sixth capacitor are connected to ground. The second terminal of the forty-fifth resistor is connected to the second terminal of the forty-second resistor, the first terminal of the twenty-sixth capacitor, and the first terminal of the forty-third resistor. The second terminal of the forty-third resistor is connected to the collector of the thirteenth transistor. The emitter of the thirteenth transistor is connected to the 24V power output terminal and the first terminal of the fortieth resistor. The second terminal of the fortieth resistor is connected to the base of the thirteenth transistor and the first terminal of the thirty-ninth resistor. The second terminal of the thirty-ninth resistor is connected to the base of the fourteenth transistor. The collector of the fourteenth transistor is connected to the first terminals of the thirty-seventh resistor and the thirty-eighth resistor.The second terminal of the thirty-seventh resistor is connected to the PB6 terminal of the main control chip, and the second terminal of the thirty-eighth resistor is connected to the emitter of the fourteenth transistor and then grounded.

7. A desktop fascia permeation device according to claim 6, characterized in that, The music module circuit includes a voice chip, a control chip, a driver chip, a 33rd resistor, a 32nd resistor, a 10th resistor, an 11th resistor, a 2nd resistor, a 7th capacitor, a 9th capacitor, a 8th capacitor, a 10th capacitor, an 11th capacitor, a 12th capacitor, a power amplifier output terminal, and a voice output terminal. The second terminal of the voice chip is connected in series with the 33rd resistor and then connected to the PB4 terminal of the main control chip. The third terminal of the voice chip is connected in series with the 32nd resistor and then connected to the PB3 terminal of the main control chip. The fifth terminal of the voice chip is connected to the 5V power output terminal. The sixth terminal of the voice chip is connected to the first terminal of the voice output terminal. The seventh terminal of the voice chip is connected to the second terminal of the voice output terminal. The first terminal of the control chip is connected to the first terminal of the 10th capacitor and then grounded. The second terminal of the control chip is connected to the third terminal of the control chip and the second terminal of the 10th capacitor. The fourth terminal of the control chip is connected to the first terminal of the 11th resistor and the 12th capacitor. The first end of the 10 resistor is connected. The second end of the 11th resistor is connected to the fifth end of the control chip and the first end of the power amplifier output. The sixth end of the control chip is connected to the first end of the 11th capacitor, the first end of the 12th capacitor, and the 5V power output. The seventh end of the control chip is connected to the second end of the 11th capacitor and the second end of the 12th capacitor and then grounded. The second end of the 10th resistor is connected in series with the 7th capacitor and then to the first end of the 8th capacitor and the first end of the 9th capacitor. The second end of the 9th capacitor is connected to the 8th end of the driver chip. The second end of the 8th capacitor is connected to the 9th end of the driver chip. The sixth end of the driver chip is connected to the 5V power output and the first end of the second resistor. The second end of the second resistor is connected to the third end of the driver chip. The tenth end of the driver chip is connected to the PA10 end of the main control chip. The eleventh end of the driver chip is connected to the PA9 end of the main control chip.

8. A desktop fascia permeation device according to claim 7, characterized in that, The card swiping module circuit includes a card swiping port. The first end of the card swiping port is connected to the PA12 terminal of the main control chip, the second end of the card swiping port is connected to the PA15 terminal of the main control chip, the third end of the card swiping port is connected to the PC10 terminal of the main control chip, the fourth end of the card swiping port is connected to the PC11 terminal of the main control chip, the fifth end of the card swiping port is connected to the PC12 terminal of the main control chip, the seventh end of the card swiping port is connected to the PD2 terminal of the main control chip, and the eighth end of the card swiping port is connected to the 3.3V power output terminal. The touch circuit includes a touchpad. The first end of the touchpad is connected to the PB15 terminal of the main control chip. The second end of the touchpad is connected to the PB13 terminal of the main control chip. The third end of the touchpad is connected to the PC7 terminal of the main control chip. The fourth end of the touchpad is connected to the PB14 terminal of the main control chip. The fifth end of the touchpad is connected to the PC8 terminal of the main control chip. The sixth end of the touchpad is connected to the PB12 terminal of the main control chip. The seventh end of the touchpad is connected to the PC9 terminal of the main control chip. The eighth end of the touchpad is connected to the PB1 terminal of the main control chip. The ninth end of the touchpad is connected to the PA11 terminal of the main control chip. The eleventh end of the touchpad is connected to the 3.3V power output terminal. The tenth and twelfth ends of the touchpad are connected to ground.

9. A desktop fascia permeation device according to claim 8, characterized in that, The display circuit includes a screen output port, a first capacitor, a second capacitor, a fifth resistor, and a sixth resistor. The first end of the screen output port is connected to the second end of the screen output port and the first end of the second capacitor, and then grounded. The second end of the second capacitor is connected to the third end of the screen output port, the fourth end of the screen output port, the first end of the sixth resistor, and the PB10 terminal of the main control chip. The second end of the sixth resistor is connected to the 3.3V power output terminal and the first end of the fifth resistor. The second end of the fifth resistor is connected to the PB11 terminal of the main control chip, the first end of the first capacitor, and the fifth end of the screen output port. The second end of the first capacitor is grounded. The seventh end of the screen output port is connected to the 12V power output terminal and the eighth end of the screen output port.

10. A desktop fascia permeation device according to claim 9, characterized in that, The fan circuit includes a fan output port, a fifth diode, a fifteenth transistor, a forty-eighth resistor, and a forty-seventh resistor. The first end of the fan output port is connected to the 12V power output terminal and the negative terminal of the fifth diode. The second end of the fan output port is connected to the positive terminal of the fifth diode and the base of the fifteenth transistor. The emitter of the fifteenth transistor is grounded. The collector of the fifteenth transistor is connected in series with the forty-eighth resistor and then connected to the first end of the forty-seventh resistor. The second end of the forty-seventh resistor is connected to the PA11 terminal of the main control chip. The buzzer circuit includes a buzzer, a sixteenth transistor, and a forty-fourth resistor. The first end of the buzzer is connected to the 5V power output terminal, the second end of the buzzer is connected to the base of the sixteenth transistor, the emitter of the sixteenth transistor is grounded, and the collector of the sixteenth transistor is connected in series with the forty-fourth resistor and then connected to the PB7 terminal of the main control chip.