CN216570425U - Multifunctional therapeutic instrument controller - Google Patents
Multifunctional therapeutic instrument controller Download PDFInfo
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- CN216570425U CN216570425U CN202122766747.6U CN202122766747U CN216570425U CN 216570425 U CN216570425 U CN 216570425U CN 202122766747 U CN202122766747 U CN 202122766747U CN 216570425 U CN216570425 U CN 216570425U
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Abstract
The utility model discloses a multifunctional therapeutic instrument controller, comprising: the intelligent control system comprises a main control MCU, an extended MCU, a Bluetooth module and a display screen circuit which are respectively connected with the main control MCU, a plurality of silicon controlled control circuits, a plurality of pulse output circuits, a heating resistor, an electrode connected with the pulse output circuits and a first rectification voltage stabilizing circuit, wherein the silicon controlled control circuits, the pulse output circuits and the heating resistor are respectively connected with the extended MCU. The silicon controlled rectifier control circuit is used for controlling the heating resistor, the heating resistor is used for heating so as to provide thermotherapy, and the pulse output circuit is used for generating pulse electric shock and providing pulse electric shock physiotherapy; the electric heating physiotherapy device can provide thermotherapy and electric shock physiotherapy at the same time, can effectively reduce cost and is greatly convenient for users to use.
Description
Technical Field
The utility model relates to the technical field of controllers, in particular to a multifunctional therapeutic instrument controller.
Background
The therapeutic apparatus is a health care machine with certain health care function, is commonly used for limb pain diseases such as cervical vertebra pain and lumbar muscle strain, and can effectively relieve pain under the action of the therapeutic apparatus. The existing therapeutic apparatus has single function, and when various therapeutic functions are needed, various therapeutic apparatuses are needed, so that the cost is extremely high, and the popularization and the application of products are not facilitated. Furthermore, a plurality of therapeutic apparatuses are used together, so that the use is very inconvenient.
Accordingly, the prior art is deficient and needs improvement.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: the multifunctional therapeutic apparatus controller can provide multiple therapeutic functions and is convenient for users to use.
The technical scheme of the utility model is as follows: there is provided a multi-functional therapeutic instrument controller comprising: the system comprises a main control MCU, an extended MCU, a Bluetooth module, a display screen circuit, a plurality of silicon controlled control circuits, a plurality of pulse output circuits, a heating resistor, electrodes and a first rectification voltage stabilizing circuit, wherein the extended MCU, the Bluetooth module and the display screen circuit are respectively connected with the main control MCU; the silicon controlled rectifier circuit includes: the transformer comprises a transformer and a bidirectional triode thyristor, wherein a primary coil of the transformer is connected with external alternating current, one end of a secondary coil of the transformer is connected with the T1 end of the bidirectional triode thyristor, two ends of the heating resistor are respectively connected with the other end of the secondary coil and the T2 end of the bidirectional triode thyristor, and the G end of the bidirectional triode thyristor is connected with the expansion MCU; the first rectification voltage stabilizing circuit is electrically connected with external alternating current.
The main control MCU is used for controlling the whole controller, and the extended MCU is used for assisting the main control MCU to control the whole controller; the Bluetooth module is used for carrying out Bluetooth connection with an intelligent terminal (such as an intelligent mobile phone), so that a user can directly operate the intelligent terminal, and the use of the intelligent terminal is facilitated; the display screen circuit is used for displaying the state of the controller, the silicon controlled control circuit is used for controlling the heating resistor, the heating resistor is used for heating so as to provide thermal therapy, and the pulse output circuit is used for generating pulse electric shock and providing pulse electric shock physical therapy; the electric heating physiotherapy device can provide thermal therapy and electric shock physiotherapy at the same time, can effectively reduce cost and is greatly convenient for users to use.
Further, the multifunctional therapeutic apparatus controller further comprises: a buzzer circuit, the buzzer circuit comprising: the power supply comprises a buzzer and an NPN type triode, wherein one end of the buzzer is connected with the first rectifying and voltage stabilizing circuit, the other end of the buzzer is connected with a collector of the NPN type triode, an emitting electrode of the NPN type triode is grounded, and a base electrode of the NPN type triode is connected with the main control MCU. The buzzer is used for outputting warning sound.
Further, the multifunctional therapeutic apparatus controller further comprises: and the loudspeaker is connected with the Bluetooth module. The loudspeaker is used for playing sound.
Further, the display screen circuit includes: the display driving circuit, the digital display screen connected with the display driving circuit, and the second rectifying and voltage stabilizing circuit electrically connected with the external alternating current.
Further, the model of master control MCU is STM8S105K4-1, the model of extension MCU is PC8P629, the model of the bluetooth chip that bluetooth module adopted is: AC 695N.
By adopting the scheme, the utility model provides the multifunctional therapeutic apparatus controller, the silicon controlled control circuit is used for controlling the heating resistor, the heating resistor is used for heating so as to provide thermal therapy, and the pulse output circuit is used for generating pulse electric shock and providing pulse electric shock physical therapy; the electric heating physiotherapy device can provide thermal therapy and electric shock physiotherapy at the same time, can effectively reduce cost and is greatly convenient for users to use.
Drawings
FIG. 1 is a circuit diagram of a master MCU according to the present invention;
FIG. 2 is a circuit diagram of an extended MCU;
FIG. 3 is a schematic circuit diagram of a Bluetooth module of the present invention;
FIG. 4 is a schematic circuit diagram of the thyristor control circuit of the present invention;
FIG. 5 is a schematic circuit diagram of a pulse output circuit of the present invention;
FIG. 6 is a circuit schematic of a first rectifying voltage regulator circuit according to the present invention;
FIG. 7 is a circuit schematic of a second rectifying voltage regulator circuit of the present invention;
FIG. 8 is a circuit schematic of a portion of a display driver circuit of the present invention;
FIG. 9 is a schematic circuit diagram of another portion of the display driver circuit of the present invention;
fig. 10 is a schematic circuit diagram of a digital display panel according to the present invention.
Detailed Description
The utility model is described in detail below with reference to the figures and the specific embodiments.
Referring to fig. 1 to 10, the present invention provides a multi-functional therapeutic apparatus controller, comprising: the intelligent electronic device comprises a main control MCU10, an expansion MCU11, a Bluetooth module 12 and a display screen circuit which are respectively connected with the main control MCU10, a plurality of silicon controlled rectifier control circuits, a plurality of pulse output circuits 13, a heating resistor 14, electrodes 14 and a first rectification voltage stabilizing circuit 15, wherein the silicon controlled rectifier control circuits, the pulse output circuits 13 and the heating resistor 14 are respectively connected with the expansion MCU 11; the silicon controlled rectifier circuit includes: the transformer 16 and the bidirectional triode thyristor 17, wherein a primary coil of the transformer 16 is connected with external alternating current, one end of a secondary coil of the transformer 16 is connected with a T1 end of the bidirectional triode thyristor 17, two ends of the heating resistor 14 are respectively connected with the other end of the secondary coil and a T2 end of the bidirectional triode thyristor 17, and a G end of the bidirectional triode thyristor 17 is connected with the expansion MCU 11; the first rectifying and voltage stabilizing circuit 15 is connected with external alternating current.
The main control MCU10 is used for controlling the whole controller, and the extended MCU11 is used for assisting the main control MCU10 to control the whole controller; the bluetooth module 12 is used for bluetooth connection with an intelligent terminal (such as an intelligent mobile phone), so that a user can directly operate the intelligent terminal, and the use of the user is facilitated; the display screen circuit is used for displaying the state of the controller, the silicon controlled control circuit is used for controlling the heating resistor 14, the heating resistor 14 is used for heating so as to provide thermal therapy, and the pulse output circuit 13 is used for generating pulse electric shock and providing pulse electric shock physical therapy; the electric heating physiotherapy device can provide thermal therapy and electric shock physiotherapy at the same time, can effectively reduce cost and is greatly convenient for users to use.
In this embodiment, the multifunctional therapeutic apparatus controller further comprises: a buzzer circuit, the buzzer circuit comprising: the high-voltage power supply comprises a buzzer 18 and an NPN type triode 19, wherein one end of the buzzer 18 is connected with a first rectification voltage stabilizing circuit 15, the other end of the buzzer 18 is connected with a collector 14 of the NPN type triode 19, an emitter of the NPN type triode 19 is grounded, and a base of the NPN type triode 19 is connected with a main control MCU 10. The buzzer 18 is used for outputting a warning sound.
In this embodiment, the multifunctional therapeutic apparatus controller further comprises: and a loudspeaker 20 connected with the Bluetooth module 12. The speaker 20 is used to play sound.
In this embodiment, the display screen circuit includes: the display driving circuit 21, the digital display screen 22 connected with the display driving circuit 21, and the second rectifying and voltage stabilizing circuit 23 electrically connected with the external alternating current.
In this embodiment, the model of the main control MCU10 is STM8S105K4-1, the model of the extension MCU11 is PC8P629, and the model of the bluetooth chip adopted by the bluetooth module 12 is: AC 695N.
In summary, the present invention provides a multi-functional therapeutic apparatus controller, wherein the thyristor control circuit is used for controlling a heating resistor, the heating resistor is used for heating to provide thermal therapy, and the pulse output circuit is used for generating pulse electric shock to provide pulse electric shock physiotherapy; the electric heating physiotherapy device can provide thermal therapy and electric shock physiotherapy at the same time, can effectively reduce cost and is greatly convenient for users to use.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (5)
1. A multifunctional therapeutic apparatus controller is characterized by comprising: the system comprises a main control MCU, an extended MCU, a Bluetooth module, a display screen circuit, a plurality of silicon controlled control circuits, a plurality of pulse output circuits, a heating resistor, electrodes and a first rectification voltage stabilizing circuit, wherein the extended MCU, the Bluetooth module and the display screen circuit are respectively connected with the main control MCU; the silicon controlled rectifier circuit includes: the primary coil of the transformer is connected with external alternating current, one end of the secondary coil of the transformer is connected with the T1 end of the bidirectional thyristor, two ends of the heating resistor are respectively connected with the other end of the secondary coil and the T2 end of the bidirectional thyristor, and the G end of the bidirectional thyristor is connected with the expansion MCU; the first rectification voltage stabilizing circuit is electrically connected with external alternating current.
2. The multifunctional therapeutic apparatus controller of claim 1, further comprising: a buzzer circuit, the buzzer circuit comprising: the power supply comprises a buzzer and an NPN type triode, wherein one end of the buzzer is connected with the first rectifying and voltage stabilizing circuit, the other end of the buzzer is connected with a collector of the NPN type triode, an emitting electrode of the NPN type triode is grounded, and a base electrode of the NPN type triode is connected with the main control MCU.
3. The multifunctional therapeutic apparatus controller of claim 1, further comprising: and the loudspeaker is connected with the Bluetooth module.
4. The multifunctional therapeutic apparatus controller of claim 1, wherein the display circuit comprises: the display driving circuit, the digital display screen connected with the display driving circuit, and the second rectification voltage stabilizing circuit electrically connected with external alternating current.
5. The multifunctional therapeutic apparatus controller according to claim 1, wherein the model of the main control MCU is STM8S105K4-1, the model of the extended MCU is PC8P629, and the model of the bluetooth chip adopted by the bluetooth module is: AC 695N.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122766747.6U CN216570425U (en) | 2021-11-11 | 2021-11-11 | Multifunctional therapeutic instrument controller |
Applications Claiming Priority (1)
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CN202122766747.6U CN216570425U (en) | 2021-11-11 | 2021-11-11 | Multifunctional therapeutic instrument controller |
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CN216570425U true CN216570425U (en) | 2022-05-24 |
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CN202122766747.6U Active CN216570425U (en) | 2021-11-11 | 2021-11-11 | Multifunctional therapeutic instrument controller |
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2021
- 2021-11-11 CN CN202122766747.6U patent/CN216570425U/en active Active
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