CN211158159U - Rotary medium frequency interference electric therapeutic apparatus - Google Patents
Rotary medium frequency interference electric therapeutic apparatus Download PDFInfo
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- CN211158159U CN211158159U CN201921766664.3U CN201921766664U CN211158159U CN 211158159 U CN211158159 U CN 211158159U CN 201921766664 U CN201921766664 U CN 201921766664U CN 211158159 U CN211158159 U CN 211158159U
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Abstract
The utility model discloses a rotary medium-frequency interference electrotherapy device, which comprises a host, a control panel, an output channel and a control mechanism, wherein the output end of the control panel is connected with the input end of the control mechanism, and the output end of the control mechanism is connected with the input end of the output channel; the control panel comprises a first control panel and a second control panel, a first output channel is arranged below the first control panel, a second output channel is arranged below the second control panel, the output ends of the first control panel and the second control panel are respectively connected with the input end of the control mechanism, and the output end of the control mechanism is respectively connected with the input ends of the first output channel and the second output channel; the end of the adsorption lead wire is provided with an adsorption guide, and the adsorption guide is internally provided with a water-absorbing sponge. The utility model discloses a binary channels are treated, and the patient can use two passageways to treat simultaneously, also can two patients treat simultaneously, has shortened the time that the patient waited for, has improved work efficiency.
Description
Technical Field
The utility model relates to the technical field of medical equipment, especially a rotation type intermediate frequency interference electricity treatment device.
Background
The medium frequency interference therapeutic equipment is a universal method for making physical therapy and recovery of human body by using alternating current whose frequency is 1kHz-100 kHz. The medium frequency electrotherapy is to inject medium frequency current to subcutaneous tissue through human skin by more than two electrodes, and relieve pain by beating massage and electrotherapy to simulate acupuncture.
The medium frequency interference therapeutic apparatus is widely applied in rehabilitation departments and physical therapy departments, mainly has the functions of easing pain, expanding blood vessels, promoting blood circulation and diminishing inflammation, and is suitable for various cervical spondylosis, osteoarthropathy, lumbar intervertebral disc protrusion, lumbar strain, joint sprain, scapulohumeral periarthritis, apoplexy sequelae, central and peripheral paralysis, neuralgia, radiculitis, sciatica, lumbocrural pain, myositis, tenosynovitis, habitual constipation, enteroparalysis, gastroptosis, traumatic fracture, lumbar intervertebral disc protrusion, contusion, hypertension (early stage), migraine, peripheral nerve injury, nerve paralysis, postoperative urine retention, urinary incontinence and nocturia, early occlusive endarteritis, disuse muscular atrophy and the like.
The intermediate frequency interference therapeutic apparatus on the current market is generally a single-channel therapeutic apparatus, when a patient needs to treat a plurality of parts, after the treatment of one part is completed, the treatment of the next part is carried out, so that the treatment time of the patient is prolonged, the waiting time of the patient after treatment is increased, and the working efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a rotation type intermediate frequency interference electricity treatment device is provided, can use simultaneously by two passageways, reduces the time that the patient treated, improves work efficiency.
In order to solve the technical problem, the utility model adopts the following technical proposal.
The rotary medium-frequency interference electrotherapeutic apparatus comprises a host machine arranged on the ground, wherein the host machine is provided with a control panel for inputting a control command, an output channel for connecting an electrode to treat a patient and a control mechanism arranged in the host machine and used for generating a medium-frequency signal according to the control command, the output end of the control panel is connected with the input end of the control mechanism, and the output end of the control mechanism is connected with the input end of the output channel; the control panel comprises a first control panel for inputting a channel instruction and a second control panel for inputting a second channel instruction, wherein a first output channel for connecting the adsorption lead wire and the electrode output wire is arranged below the first control panel, a second output channel for connecting the adsorption lead wire and the electrode output wire is arranged below the second control panel, the output ends of the first control panel and the second control panel are respectively connected with the input end of the control mechanism, and the output end of the control mechanism is respectively connected with the input ends of the first output channel and the second output channel; the tip of adsorbing the lead wire is provided with and is used for adsorbing the absorption conductor on one's body of patient, adsorbs the inside of conductor and is provided with the sponge that absorbs water that is used for electrically conducting.
The control mechanism comprises a treatment mode adjusting module for adjusting a treatment mode, a time setting module for setting treatment time, a difference frequency adjusting module for adjusting difference frequency, a dynamic rhythm adjusting module for adjusting dynamic rhythm and a controller for sending a control instruction according to setting information, wherein the output ends of the mode adjusting module, the time setting module, the difference frequency adjusting module and the dynamic rhythm adjusting module are respectively connected with the input end of the controller.
Above-mentioned rotation type intermediate frequency interference electrotherapy device, control mechanism still includes the pressure adjustment module that is used for adjusting the adsorption pressure of adsorption conductor, and the input of controller is connected to the output of pressure adjustment module.
Above-mentioned rotation type intermediate frequency interference electricity treatment device, all be provided with the display screen that is used for showing the settlement information on first control panel and the second control panel, the output of the input connection controller of display screen.
Above-mentioned rotation type intermediate frequency interference electricity treatment device, the display screen is tangible liquid crystal display.
Above-mentioned rotation type intermediate frequency interference electrotherapy device, be provided with the hot plate that is used for heating the sponge that absorbs water on the host computer, the output of the input connection controller of hot plate.
Due to the adoption of the technical scheme, the utility model has the following technical progress.
The utility model discloses a binary channels are treated, and the patient can use two passageways to treat simultaneously, has practiced thrift the time that the patient was treated, can also treat simultaneously by two patients, has shortened the time that the patient waited for greatly, has improved work efficiency.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a block diagram of the present invention;
fig. 3 is a circuit diagram of a power module according to the present invention;
fig. 4 is a circuit diagram of a treatment mode adjustment module according to the present invention;
fig. 5 is a circuit diagram of the difference frequency adjustment module of the present invention;
FIG. 6 is a circuit diagram of the dynamic rhythm adjustment module of the present invention;
fig. 7 is a circuit diagram of the controller and peripheral circuits according to the present invention;
fig. 8 is a circuit diagram of an electrode output circuit according to the present invention;
wherein: 1. the hot plate comprises a main machine, 2, a first control panel, 3, a first output channel, 4, a second control panel, 5, a second output channel and 6, wherein the main machine is connected with the main machine through a hot plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
The structure of the rotary medium-frequency interference electrotherapy device is shown in figure 2, and comprises a host 1, a control panel, an output channel and a control mechanism. The main machine 1 is arranged on the ground, the control panel is arranged on the main machine and used for inputting a control command, the output channel is arranged on the main machine 1 and used for connecting the electrode to treat a patient, and the control mechanism is used for generating an intermediate frequency signal according to the control command. The output end of the control panel is connected with the input end of the control mechanism, and the output end of the control mechanism is connected with the input end of the output channel.
The control panel comprises a first control panel 2 and a second control panel 4. The first control panel 2 is used for inputting a channel control command, the second control panel 4 is used for inputting a second channel control command, and the output ends of the first control panel 2 and the second control panel 4 are respectively connected with the input end of the control mechanism.
The output channel is arranged below the control panel and comprises a first output channel 3 and a second output channel 5. The first output channel 3 is used for connecting the adsorption lead wire and the electrode output wire to output one channel, the second output channel 5 is used for connecting the adsorption lead wire and the electrode output wire to output two channels, and the input ends of the first output channel 3 and the second output channel 5 are respectively connected with the input end of the control mechanism. And the first output channel 3 and the second output channel 5 are both provided with wiring terminals for connecting adsorption lead wires and electrode output wires.
One end of the adsorption lead wire is connected to the wiring terminal of the output channel, the other end of the adsorption lead wire is provided with an adsorption guide for adsorbing a patient, and a water-absorbing sponge is arranged in the adsorption guide and used for conducting electricity. When the device is used, the water-absorbing sponge is soaked in a proper amount of warm water and squeezed to remove redundant water, the water-absorbing sponge is placed into the adsorption guide, the connecting end of the adsorption guide line is inserted into the wiring terminal of the output channel, and the adsorption guide is adsorbed to the focus position of a patient.
One end of the electrode output line is connected to the wiring terminal of the output channel, and the other end of the electrode output line is provided with an electrode plate.
The mechanism block diagram of the control mechanism is shown in fig. 2, and comprises a treatment mode adjusting module, a time setting module, a difference frequency adjusting module, a dynamic rhythm adjusting module, a pressure adjusting module, a controller and a display screen. The treatment mode adjusting module is used for adjusting the treatment mode, the time setting module is used for setting the treatment time, the difference frequency adjusting module is used for adjusting the difference frequency of the treatment, the dynamic rhythm adjusting module is used for adjusting the dynamic rhythm of the treatment, the pressure adjusting module is used for adjusting the adsorption pressure of the adsorption guide, the controller is used for sending out a control instruction according to the setting information, and the display screen is used for displaying the setting information. The output ends of the treatment mode adjusting module, the time setting module, the difference frequency adjusting module, the dynamic rhythm adjusting module and the pressure adjusting module are connected with the input end of the controller, and the output end of the controller is connected with the input end of the display screen.
The utility model discloses still include power module, power module's circuit diagram is shown in fig. 3, is used for providing the power for treatment device, comes output 5V, 3.3V and-5V's power respectively through steady voltage chip U3L M25968-5.0, U4ASM1117 and U5L M7905 respectively, supplies power for each module in the device.
Fig. 4 shows a circuit diagram of the treatment mode adjusting module, which adopts T L C7528CN as a main chip, and corresponding pins of T L C7528CN are connected with corresponding pins of a single chip to select a treatment mode.
The circuit diagram of the difference frequency adjusting module is shown in fig. 5, and an L M423 operational amplifier is adopted, and the output end of the operational amplifier is connected with the corresponding pin of the single chip microcomputer to realize the adjustment of the difference frequency.
The circuit diagram of the dynamic rhythm adjusting module is shown in fig. 6, and an L M423 operational amplifier is also adopted, and the output end of the operational amplifier is connected with the corresponding pin of the singlechip to realize the adjustment of the dynamic rhythm.
The circuit diagram of the controller and the peripheral circuit is shown in fig. 7, the controller adopts an STM32F103VET6 single chip microcomputer to realize the control function, meanwhile, the single chip microcomputer and the peripheral circuit realize the pressure regulation and the time setting, the pressure regulation function is realized through an OSC pin, and the time setting function is realized through SWDIO and SWWC L K pins.
The single chip microcomputer drives the electrode slice to treat the patient according to a set mode through the electrode output circuit, the circuit diagram of the electrode output circuit is as shown in fig. 8, an output signal of the single chip microcomputer is received through a T L C7528OUT end, the signal is processed through L M324 and TDA2003, and then the signal is respectively connected with an adsorption lead wire or an electrode output wire through P13, P17, P18 and P19 to be output, and the focus part of the patient is treated through the adsorption lead or the electrode slice.
The display screen is tangible liquid crystal display, sets up respectively on first control panel and second control panel, and medical personnel can carry out treatment mode's settlement through the display screen, and after the settlement was accomplished, the parameter and the remaining time of showing this treatment on the display screen.
In order to avoid using the absorption conductor to treat in winter, the temperature of the water in the water absorption sponge is too low to bring discomfort to the patient, the heating plate 6 is arranged on the main machine 1 and used for heating the water absorption sponge, and the input end of the heating plate 6 is connected with the output end of the controller. Before the adsorption guide is used, the water absorption sponge of the adsorption guide is placed on the heating plate downwards, and is adsorbed to the focus of a patient after the water absorption sponge is heated.
The utility model discloses when treating the patient, according to the patient's state of an illness needs, select to use and adsorb lead line and electrode output line, adjust first output channel's treatment mode through first control panel, will adsorb lead line or electrode output line and insert on first output channel's binding post, adjust second output channel's treatment mode through second control panel, will adsorb lead line or electrode output line and insert on second output channel's binding post, then will adsorb the focus position that the lead line adsorbs the patient, the electrode slice pastes the focus position of patient and treats, after treating the treatment, the therapeutic instrument is automatic to be shut down, it can to take off and adsorb lead line or electrode output line.
The utility model discloses two passageway simultaneous workings can get into rotation type treatment mode, fixes four electrode points at patient's focus position, adds the electricity one by one and carries out the rotatory circulation amazing to patient's focus position, realizes the more accurate treatment of deeper layer, further improvement the effect of treatment.
The utility model discloses can use simultaneously by two passageways, practice thrift the time of patient's treatment, can also treat simultaneously by two patients, shorten the time that the patient waited for greatly, improve work efficiency.
Claims (6)
1. The rotary type medium-frequency interference electrotherapy device comprises a host (1) arranged on the ground, wherein the host (1) is provided with a control panel for inputting a control instruction, an output channel for connecting an electrode to treat a patient and a control mechanism arranged in the host (1) and used for generating a medium-frequency signal according to the control instruction, the output end of the control panel is connected with the input end of the control mechanism, and the output end of the control mechanism is connected with the input end of the output channel; the method is characterized in that: the control panel comprises a first control panel (2) used for inputting a channel instruction and a second control panel (4) used for inputting a second channel instruction, a first output channel (3) used for connecting an adsorption lead wire and an electrode output wire is arranged below the first control panel (2), a second output channel (5) used for connecting an adsorption lead wire and an electrode output wire is arranged below the second control panel (4), the output ends of the first control panel (2) and the second control panel (4) are respectively connected with the input end of the control mechanism, and the output end of the control mechanism is respectively connected with the input ends of the first output channel (3) and the second output channel (5); the tip of adsorbing the lead wire is provided with and is used for adsorbing the absorption conductor on one's body of patient, adsorbs the inside of conductor and is provided with the sponge that absorbs water that is used for electrically conducting.
2. The rotary MF-interference electrotherapeutic apparatus as claimed in claim 1, wherein: the control mechanism comprises a treatment mode adjusting module for adjusting a treatment mode, a time setting module for setting treatment time, a difference frequency adjusting module for adjusting difference frequency, a dynamic rhythm adjusting module for adjusting dynamic rhythm and a controller for sending a control instruction according to setting information, wherein the output ends of the mode adjusting module, the time setting module, the difference frequency adjusting module and the dynamic rhythm adjusting module are respectively connected with the input end of the controller.
3. The rotary MF-interference electrotherapeutic apparatus as claimed in claim 2, wherein: the control mechanism further comprises a pressure adjusting module for adjusting the adsorption pressure of the adsorption guide, and the output end of the pressure adjusting module is connected with the input end of the controller.
4. The rotary MF-interference electrotherapeutic apparatus as claimed in claim 2, wherein: and the first control panel (2) and the second control panel (4) are both provided with display screens for displaying set information, and the input ends of the display screens are connected with the output end of the controller.
5. The rotary MF-interference electric therapy apparatus as claimed in claim 4, wherein: the display screen is a touchable liquid crystal display screen.
6. The rotary MF-interference electrotherapeutic apparatus as claimed in claim 2, wherein: the host machine (1) is provided with a heating plate (6) for heating the water absorption sponge, and the input end of the heating plate is connected with the output end of the controller.
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CN201921766664.3U CN211158159U (en) | 2019-10-21 | 2019-10-21 | Rotary medium frequency interference electric therapeutic apparatus |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115554602A (en) * | 2022-10-13 | 2023-01-03 | 云禾智能科技(天津)有限公司 | Tumor therapeutic apparatus combining alternating electric field and interference electricity |
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2019
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115554602A (en) * | 2022-10-13 | 2023-01-03 | 云禾智能科技(天津)有限公司 | Tumor therapeutic apparatus combining alternating electric field and interference electricity |
CN115554602B (en) * | 2022-10-13 | 2023-10-27 | 云禾智能科技(天津)有限公司 | Tumor therapeutic apparatus combining alternating electric field and interference electricity |
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