Diabetes therapeutic instrument
Technical Field
The utility model relates to the field of diabetes treatment instruments, in particular to a diabetes treatment instrument.
Background
Diabetes mellitus is the third largest killer which seriously threatens human health after cardiovascular and cerebrovascular diseases and tumors. The disease causes the dysfunction of microvascular and microcirculation of patients due to hyperglycemia, and causes diabetic eye disease, diabetic nephropathy and diabetic liver disease; damage of large blood vessel can cause diabetic hypertension, hyperlipemia, arteriosclerosis, cerebral thrombosis, cerebral hemorrhage, and coronary heart disease; the damage of nervous system can cause diabetes polyneuritis, gangrene of limbs, skin pruritus, pruritus vulvae, diabetic hypofunction, and diabetic impotence. The existing physical therapy method causes patients to have no pain and no wound, and is popular with the patients. However, the treatment effect of the existing treatment instrument is not ideal, the treatment condition of the treatment instrument cannot be intuitively controlled, and the use is inconvenient.
Disclosure of Invention
In order to solve the problem, the utility model provides a diabetes therapeutic apparatus, which aims at providing a diabetes composite magnetic field therapeutic apparatus which can visually control the treatment parameter status, is convenient to use and has good treatment effect.
In order to achieve the purpose, the technical scheme adopted by the utility model is a diabetes treatment instrument, which comprises a main machine shell, wherein a power module, a control mainboard, a power output circuit board and an ozone generator are arranged inside the main machine shell, the ozone generator is provided with an ozone output port extending out of the main machine shell, and the surface of the main machine shell is provided with a display screen, an operation key component and a plurality of signal output ports; the output end of the power supply module and the output end of the operation key assembly are connected with the input end of the control mainboard, and the output end of the control mainboard is respectively connected with the input end of the display screen, the input end of the ozone generator and the input end of the power output circuit board; the output end of the power output circuit board is electrically connected with the signal output ports; the treatment probe comprises a plurality of signal output ports, wherein the number of the signal output ports corresponds to that of the treatment probes, one end of each treatment probe is provided with a signal input port, and a magnetic field generator is arranged in each treatment probe.
Furthermore, the power module comprises a power interface, a transformer and a filter, wherein the power interface extends to the back of the host shell, the output end of the power interface is connected with the input end of the filter, the output end of the filter is connected with the input end of the transformer, and the output end of the transformer is connected with the input end of the control mainboard.
Further, the host computer shell includes that the host computer shell includes drain pan, center, face-piece, wherein the center laminating is at the inner wall of drain pan, just the face-piece lid closes the upper end at the center.
The inner wall of the face shell is provided with a display opening corresponding to the display screen and a key opening corresponding to the operation key assembly; the display screen is arranged at the display opening through the screen support, and the operation key assembly is arranged at the key opening through the key support.
Further, still including installing two mainboard supports in center inner wall bottom, wherein two mainboard supports are vertical and parallel placement, two mainboard support fixed connection are respectively at the both ends of control mainboard.
Further, the inside wall integrated into one piece of drain pan has a plurality of spacers that extend along vertical direction, just the lateral wall of center is provided with the constant head tank that corresponds with the spacer, wherein the center laminating is at the inner wall of drain pan, and the spacer of drain pan pegs graft in the constant head tank of center.
Furthermore, the lateral wall of center is provided with a plurality of louvre that distributes along the horizontal direction.
Furthermore, a placing through groove for placing the ozone generator is arranged in the middle frame, and an upper cover is covered at the upper end of the placing through groove; and the back of the bottom shell is provided with a clamping opening communicated with one side of the placing through groove, wherein the surface of the clamping opening is covered with a front cover.
Furthermore, the upper cover is provided with a mounting hole, a wire passing block is assembled in the mounting hole, and a wire passing notch is formed in the surface of the wire passing block.
The beneficial effects of the utility model reside in that: in the technical scheme of the invention, the power supply module, the control mainboard and the ozone generator are arranged in the main body shell, wherein the ozone generator is provided with an ozone output port extending out of the main body shell, the control mainboard inputs signals to the control mainboard by using the operation key assembly, the control mainboard controls the power output circuit board to generate corresponding electric signals (high-voltage pulse, low-voltage alternating current and low-voltage direct current) according to the input parameters, and the electric signals (high-voltage pulse, low-voltage alternating current and low-voltage direct current) are sent to the treatment probe connected with the signal output port through the signal output port, so that the treatment probe can convert the electric signals into magnetic fields with different parameters required by treatment. When magnetic fields with different parameters are placed on different acupuncture points, the magnetic therapy, acupuncture, scraping, moxibustion, thermal therapy, massage and the like can be realized, and different bioelectricity is generated to activate cells; the probe can supplement the magnetic field energy required and deficient by the human body, and the magnetic field with good repair function and appropriate parameters on the islet cells can reduce the degree of freedom of methyl on the beta cell telomere in the islet and repair the damaged beta cells; and the vibration and the magnetoelectric heat energy have the functions of auxiliary massage and heat treatment.
Meanwhile, the independent power switch can control the ozone generator to be started, a user can place the guide rubber tube externally connected with the ozone output port to a place needing treatment, the sterilization and disinfection functions can be realized, and the functions of sterilization and infection prevention are realized for diabetic feet.
Meanwhile, the control mainboard reflects the output control signals on the display screen at the same time, so that an operator can know the treatment condition timely and intuitively and adjust the treatment scheme timely according to the treatment condition. The diabetes therapeutic apparatus provided by the invention can visually control the treatment condition, is convenient to use and has a good treatment effect.
Drawings
Fig. 1 is a schematic view of the three-dimensional structure of the diabetes therapeutic apparatus of the present invention.
Fig. 2 is a schematic view of the three-dimensional structure of the diabetes therapeutic apparatus of the present invention without the face shell.
Fig. 3 is a rear view of the diabetes treatment device of the present invention.
Fig. 4 is a perspective view of the middle bottom case and the middle frame of the present invention.
Fig. 5 is a rear view schematically illustrating the assembly of the middle bottom case and the middle frame of the present invention.
Fig. 6 is a schematic perspective view of the assembly of the middle housing, the display screen and the operation button assembly.
Fig. 7 is a rear view schematically showing the assembly of the middle housing, the display screen and the operation key assembly.
Fig. 8 is a block diagram of the diabetes treatment device of the present invention.
The reference numbers illustrate: 1. a face shell; 2. a middle frame; 21. heat dissipation holes; 22. positioning a groove; 23. placing a through groove; a front cover; 3. a bottom case; 31. positioning plates; 32. clamping a port; 4. a display screen; 41. a screen support; 5. an operation key assembly; 51. a key holder; 6. a signal output port; 7. a transformer; 8. a power interface; 9. an ozone generator; 91. an upper cover; 92. a wire passing block; 10. a control main board; 11. a main board support; 12. and (6) turning a switch. 13. A power output circuit board; 14. a filter; probe A; probe B; a C probe; a D probe; e probe; 20. a signal input port; 200. a magnetic field generator.
Detailed Description
Referring to fig. 1-8, the present invention relates to a diabetes therapeutic apparatus, which comprises a main body casing, wherein a power module, a control main board 10, a power output circuit board 13, and an ozone generator 9 are disposed inside the main body casing, wherein the ozone generator 9 is provided with an ozone output port extending to the outside of the main body casing, and a display screen 4, an operation button assembly 5, and a plurality of signal output ports 6 are disposed on the surface of the main body casing; the output end of the power supply module and the output end of the operation key assembly 5 are both connected with the input end of the control mainboard 10, and the output end of the control mainboard 10 is respectively connected with the input end of the display screen 4, the input end of the ozone generator 9 and the input end of the power output circuit board 13; the output end of the power output circuit board 13 is electrically connected with the signal output ports 6; the treatment probe comprises a plurality of signal output ports 6, wherein the number of the signal output ports 6 corresponds to that of the treatment probes, one end of each treatment probe is provided with a signal input port 20, and a magnetic field generator 200 is arranged in each treatment probe.
In the technical scheme of the invention, a power supply module, a control mainboard 10 and an ozone generator 9 are arranged in a main body shell, wherein the ozone generator 9 is provided with an ozone output port extending out of the main body shell, an operation key assembly 5 is used for inputting signals to the control mainboard 10, the control mainboard 10 controls a power output circuit board 13 to generate corresponding electric signals (high-voltage pulse, low-voltage alternating current and low-voltage direct current) according to input parameters, and the electric signals (high-voltage pulse, low-voltage alternating current and low-voltage direct current) are sent to a treatment probe connected with a signal output port 6 through the signal output port 6, so that the treatment probe can convert the electric signals into different parameter magnetic fields required by treatment.
Twelve meridians of the human body are connected with 365 acupuncture points of the human body and are connected with all cells of the human body to interact with each other. Each acupoint has different biological and physical characteristics; when the magnetic fields with different parameters are placed on different acupuncture points, the effects of acupuncture, scraping, moxibustion, thermal therapy and the like can be achieved, and different bioelectricity is generated to activate cells; the probe can supplement the magnetic field energy required and deficient by the human body, and the magnetic field with good repair function and appropriate parameters on the islet cells can reduce the degree of freedom of methyl on the beta cell telomere in the islet and repair the damaged beta cells; and the vibration and the magnetoelectric heat energy have the functions of auxiliary massage and heat treatment.
Meanwhile, the control main board 10 can control the ozone generator 9 to be started, a user can place the guide rubber pipe externally connected with the ozone output port to a place needing treatment, the sterilization and disinfection functions can be realized, and the functions of sterilization and infection prevention are realized for diabetic feet.
Meanwhile, the control mainboard 10 reflects the output control signals on the display screen 4, so that the operator can know the treatment condition timely and intuitively and adjust the treatment scheme timely according to the treatment condition. The diabetes therapeutic apparatus provided by the invention can visually control the treatment condition, is convenient to use and has a good treatment effect.
Further, the power module includes a power interface 8, a transformer 7, and a filter 14, where the power interface 8 extends to the back of the main case, an output end of the power interface 8 is connected to an input end of the filter 14, an output end of the filter 14 is connected to an input end of the transformer 7, and an output end of the transformer 7 is connected to an input end of the control main board 10. It can be understood that the diabetes therapeutic apparatus can be directly connected with an external power supply through the power interface 8, but because the voltage of the external power supply is higher, the transformer 7 can reduce the voltage of the external power supply from 220V to 12-24V suitable for the diabetes therapeutic apparatus by arranging the transformer 7, so that the safety and the service life of the diabetes therapeutic apparatus are improved. And the back of the main machine shell is also provided with a toggle switch 12 connected with the control mainboard 10 for controlling the starting or the closing of the therapeutic apparatus.
In the application, a probe A15, a probe B16, a probe C17, a probe D18 and a probe E19 are shared, wherein the probe A15 is input with 12V direct current, and a neodymium iron boron permanent magnet is driven by a speed-regulating brushless direct current motor to generate a rotating magnetic field; the probe B16 is input with 12V-24V direct current to generate two static magnetic fields of a weak gear and a strong gear; the C probe 17 is input with 12V-24V direct current to generate two constant magnetic fields of a weak gear and a strong gear; 12V-24V alternating current is input into the D probe 18 to generate two alternating magnetic fields of a weak gear and a strong gear; the probe E19 generates two pulse magnetic fields of strong gear and weak gear by inputting 150V,15V direct current and pulse signals; and the ozone generator 9 inputs 12V direct current and generates ozone gas under the action of the high-voltage module.
Further, the host shell comprises a bottom shell 3, a middle frame 2 and a face shell 1, wherein the middle frame 2 is attached to the inner wall of the bottom shell 3, and the face shell 1 covers the upper end of the middle frame 2.
Further, the multifunctional mobile phone comprises a screen support 41 and a key support 51, wherein a display opening corresponding to the display screen 4 and a key opening corresponding to the operation key assembly 5 are arranged on the inner wall of the face shell 1; the display screen 4 is mounted at the display opening through the screen bracket 41, and the operation key assembly 5 is mounted at the key opening through the key bracket 51. The screen support 41 and the key support 51 are respectively used for fixing the display screen 4 and the operation key assembly 5, so that the display screen 4 and the operation key assembly 5 are more stable.
Further, still including installing two mainboard supports 11 in 2 inner wall bottoms of center, wherein two mainboard supports 11 are vertical and parallel placement, two mainboard support 11 fixed connection are respectively at the both ends of control mainboard 10. The control mainboard 10 is arranged in the middle frame 2 through two mainboard supports 11, and the connection is stable.
Further, the inside wall integrated into one piece of drain pan 3 has a plurality of spacers 31 that extend along vertical direction, just the lateral wall of center 2 is provided with the constant head tank 22 that corresponds with spacer 31, wherein the laminating of center 2 is at the inner wall of drain pan, and the spacer 31 of drain pan pegs graft in the constant head tank 22 of center 2, and runs through the bottom of drain pan and center 2 through the screw for be connected between center 2 and the drain pan, because spacer 31 pegs graft and can make things convenient for both counterpoint cooperation easy to assemble in the constant head tank 22 of center 2, and can avoid taking place the condition of off normal.
Further, the outer side wall of the middle frame 2 is provided with a plurality of heat dissipation holes 21 distributed along the horizontal direction. A plurality of heat dissipation holes 21 are distributed in the middle of the outer side wall of the middle frame 2 along the horizontal direction, and the heat dissipation holes 21 are arranged corresponding to the transformer 7. It can be understood that the host casing is provided with a transformer 7 (and possibly a power supply), and when the transformer 7 is connected with an external power supply to supply power to each module, the transformer 7 generates heat. In order to avoid the influence of overheating of the transformer 7 on the normal operation of other components such as the control mainboard 10 in the host casing, the host casing is provided with heat dissipation holes 21, and the heat dissipation holes 21 are arranged corresponding to the transformer 7. The heat dissipation hole 21 is arranged to well solve the heat dissipation problem of the host shell.
Further, a placing through groove 23 for placing the ozone generator 9 is arranged in the middle frame 2, and an upper cover 91 is covered at the upper end of the placing through groove 23; and the back of the bottom shell 3 is provided with a clamping opening 32 communicated with one side of the placing through groove 23, wherein the front cover 24 is covered on the surface of the clamping opening 32. In this application, for the convenience of the installation to ozone generator 9, install ozone generator 9 and place logical groove 23, and closed upper cover 91 at the upper end lid of placing logical groove 23, and install through the screw in the one side of placing logical groove 23 and be used for the spacing ozone clamp plate to ozone generator 9, finally through the card is established the surface lid of mouth 32 and is closed front cover 24. When the ozone generator needs to be disassembled, the front cover 24 is opened, the ozone pressing plate is opened by a screwdriver, and then the ozone generator 9 is taken out of the placing through groove 23.
Further, the upper cover 91 is provided with a mounting hole, the mounting hole is internally provided with a wire passing block 92, and the surface of the wire passing block 92 is provided with a wire passing notch. The ozone generator 9 needs a connecting wire to be connected with the control main board 10, that is, one end of the connecting wire is electrically connected with a terminal of the ozone generator 9, and the other end of the connecting wire passes through the wire passing notch to be connected with the control main board 10.
The above embodiments are only for describing the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and improvements made by the technical solution of the present invention by those skilled in the art are all within the scope of the present invention as defined by the claims.