SUMMERY OF THE UTILITY MODEL
The utility model provides a therapeutic apparatus which has the advantages of various treatment scenes, portability, easy operation and remarkable treatment effect.
In order to solve the above problems, the present invention provides a therapeutic apparatus, comprising: a host including a first connection port and a first channel port; the control assembly is detachably connected with the host and comprises a second connecting port; the treatment head comprises a first wiring harness and a first electrode plate, and one end of the first wiring harness is inserted into the first channel port so that the treatment head is electrically connected with the host; and a portable electrode pad assembly comprising a third connection port and a second electrode pad; the control assembly is assembled with the host, the first connecting port is connected with the second connecting port in an inserting mode, and the control assembly controls the first electrode slice to output electric stimulation; the control assembly is not assembled with the host, the second connecting port is connected with the third connecting port in an inserting mode, and the control assembly controls the second electrode slice to output electric stimulation.
As an optional technical solution, the control component includes a second logic control chip and a switch button, the switch button is started, and the second logic control chip controls the first electrode piece or the second electrode piece to output electrical stimulation.
As an optional technical solution, the host includes a first logic control chip, when the control component is assembled with the host, and the first connection port is plugged with the second connection port, the first logic control chip and the second logic control chip establish a communication connection, start the switch button, and the first logic control chip controls the infrared light source in the therapy head to output infrared light.
As an optional technical solution, the treatment head includes a transparent protective cover, and the infrared rays emitted by the infrared light source penetrate through the transparent protective cover to be emitted.
As an optional technical scheme, the vibration massage machine further comprises a vibration massager, the host further comprises a second passage port, the vibration massager is inserted into the second passage port, and the first logic control chip controls the vibration massager to output vibration stimulation.
As an optional technical solution, the portable electrode pad assembly includes a second wire harness, and the third connection port and the second electrode pad are respectively disposed at two opposite ends of the second wire harness.
As an optional technical scheme, the treatment head further comprises a body, wherein a first magnetic part is arranged on the body; the first electrode plate comprises a second magnetic piece; the first magnetic part and the second magnetic part are magnetically attracted to each other, so that the first electrode slice is detachably connected to the body.
As an optional technical scheme, the number of the first electrode plates is two, and the two first electrode plates are symmetrically arranged on two sides of the central line of the body.
As an optional technical solution, the host further includes an upper cover, a push button and a chute, the push button is connected to the first connection interface; the upper cover comprises a containing part, and the control assembly is placed in the containing part; the push button is pushed to slide along the sliding groove, and the push button drives the first connecting interface to extend out of the accommodating part and be connected with the second connecting interface in an inserting mode.
As an optional technical solution, the accommodating part further comprises a positioning concave part; the bottom of the control assembly is provided with a clamping structure; the clamping structure is placed in the positioning concave part to pre-position the control assembly in the accommodating part.
Compared with the prior art, the utility model provides a therapeutic apparatus, which comprises a host and a control module which are detachably connected, wherein when the host is electrically connected with the control module, the control module controls a therapeutic head of the host to perform electrical stimulation treatment, and when the control module is used independently, the control module and a portable electrode plate component together provide variable electrical stimulation treatment for a user; the convenience of the therapeutic apparatus used under multiple scenes is increased.
The utility model is described in detail below with reference to the drawings and specific examples, but the utility model is not limited thereto.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to embodiments and accompanying drawings. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
As shown in fig. 1 to 7, the present invention provides an apparatus 100, comprising: the main machine 10, the control assembly 20, the treatment head 30 and the portable electrode sheet assembly 200, wherein the main machine 10 comprises a first connection port 11 and a first channel port 131; the control component 20 is detachably connected with the host computer 10, and the control component 20 comprises a second connection port 21; the treatment head 30 comprises a first wiring harness 33 and a first electrode plate 32, wherein one end of the first wiring harness 33 is inserted into the first channel port 131 so that the treatment head 30 is electrically connected with the main machine 10; the portable electrode pad assembly 200 includes a third connection port 203 and a second electrode pad 201; the control assembly 20 is assembled with the host computer 10, the first connection port 11 is inserted into the second connection port 21, the control assembly 20 is electrically connected with the host computer 10, and the control assembly 10 controls the first electrode plate 32 to output electrical stimulation; the control component 20 is not assembled with the host computer, the second connection port 21 is plugged with the third connection port 203, the control component 20 is electrically connected with the portable electrode plate component 200, and the control component 20 controls the second electrode plate 201 to output electrical stimulation.
In this embodiment, the control component 20 may be separately plugged into the portable electrode pad assembly 200 to enable the portable electrode pad assembly 200 to output electrical stimulation, which is particularly suitable for treatment in a user's outgoing scene. In addition, after the control component 20 and the main machine 10 are assembled, the control component 20 controls the first electrode plate 32 of the therapy head 30 connected with the main machine 10 to output electric stimulation, and the therapeutic device is particularly suitable for therapy in a home scene of a user.
In other words, the present invention provides the therapeutic apparatus 100, and the host 10 and the control unit 20 which are detachably connected to each other, so that the therapeutic apparatus 100 can be used in a variety of usage scenarios, and the control unit 20 has a significant portable advantage due to its small size and light weight.
In a preferred embodiment, the control assembly 20 includes a second logic control chip (not shown) and a switch button 24, the switch button 24 is activated, and the second logic control chip controls the first electrode pad 32 or the second electrode pad 201 to output an electrical stimulus.
That is, the electrical stimulation provided by the therapeutic apparatus 100 is controlled by the control unit 20. In addition, the control component 20 can adjust the intensity of the output electrical stimulation through the built-in driving circuit according to the treatment requirements in different treatment schemes, and perform medium-frequency electrical stimulation treatment, low-frequency electrical stimulation treatment and the like.
In a preferred embodiment, the host 10 includes a first logic control chip (not shown), when the control component 20 is assembled with the host 10, the first connection port 11 and the second connection port 21 are plugged, the first logic control chip and the second logic control chip propose communication connection, the switch button 24 is activated, and the first logic control chip controls the infrared light source 34 built in the therapy head 30 to output infrared light.
It should be noted that the therapeutic apparatus can be used for providing electrical stimulation therapy and infrared therapy, and is therefore suitable for physical therapy of diseases requiring electrical stimulation and infrared therapy, such as hyperplasia of mammary glands. It can promote the dissipation of breast nodules, lumps and inflammation, soften scar, relieve adhesion, excite nerve and muscle, promote lactation, promote involution of uterus, and promote puerperal urination.
As shown in fig. 1 and 7, the therapy head 30 includes a body 31, and an infrared light source 34 is disposed in the inner cavity of the body 31. The body 31 of the treatment head 30 includes a transparent shield 35 assembled to the bottom of the body 31, and the infrared light source 34 emits infrared light from the transparent shield 35.
Preferably, a reflective cover 36 is further disposed in the body 31, the reflective cover 36 is disposed opposite to the transparent protective cover 35 and defines a mounting chamber, and the infrared light source 34 is horizontally mounted in the mounting chamber. By "horizontally mounted" it is meant that the reflector 36 and the transparent shield 35 are positioned on opposite upper and lower sides of the infrared light source 34, respectively. The infrared rays emitted from the infrared source 34 upwards are directly emitted to the inner surface of the reflector 36, and the infrared rays emitted from the infrared source 34 downwards are directly emitted to the transparent shield 35. Compared with the treatment device using the upright infrared lamp, the horizontally arranged infrared light source 34 is closer to the user, so that better thermal effect can be achieved.
In this embodiment, a reflective layer is formed on a side of the reflective cover 36 facing the infrared light source 34, and is used for reflecting light emitted from the infrared light source 34 to face the transparent protective cover 35 and emit the light through the transparent protective cover 35.
In a preferred embodiment, the infrared light is irradiated to the skin surface of the user through the transparent shield 35 and the slots on the transparent shield 35. The infrared ray passes through fluting direct contact user skin, and infrared utilization efficiency is better.
In a preferred embodiment, the transparent shield 35 is formed, for example, from a flame retardant material.
As shown in fig. 1, the therapeutic apparatus 100 further comprises a vibration massage device 40, the main body 10 further comprises a second opening 132, and one end of the third wire harness 42 of the vibration massage device 40 is inserted into the second opening 131, so that the vibration massage device 40 is electrically connected to the main body 10.
When the main machine 10 and the control component 20 are assembled, the first connection port 11 and the second connection port 21 are plugged, the main machine 10 is electrically connected with the control component 20, the first logic control chip and the second logic control chip are in communication connection, and the first logic control chip controls the vibration massager 40 to output vibration stimulation.
In this embodiment, the second logic control chip establishes a communication connection with the first logic control chip, and the first logic control chip is configured to read parameters of an infrared treatment scheme and a vibration treatment scheme in a treatment scheme in the second logic control chip.
Further, the communication module of the control component 20 interacts with the setup data of the communication module of the intelligent terminal of the user to obtain the treatment plan stored in the application program of the intelligent terminal, and the treatment plan includes at least one of an electrical stimulation treatment plan parameter, an infrared treatment plan parameter, and a vibration treatment plan parameter according to the actual treatment requirement.
The communication modules are respectively Bluetooth modules.
As shown in fig. 1, the vibration massage device 40 further includes a button 41, and the vibration massage device 40 includes a built-in power supply device, wherein the connection harness 42 is pulled out from the second passage opening 132, the button 41 is pressed, and the vibration massage device 40 can independently output the vibration stimulation by the power supply of the built-in power supply device.
In a preferred embodiment, the main body 10 houses a first battery (not shown); a second battery (not shown) built into the control unit 20; when the first connection interface is plugged with the second connection structure 21, the host 10 is electrically connected with the control component 20, wherein when the switch button 24 of the control component 20 is started, the first battery provides voltage required by the operation of the control component 20; when the switch button 24 of the control unit 20 is not activated, the first battery charges the second battery.
That is, when the host 10 and the control unit 20 are used in combination, only the first battery built in the host 10 is used to supply power. Preferably, the capacity of the first battery is greater than the capacity of the second battery.
In addition, when the control module 20 is connected to the portable electrode tab assembly 200 for use, the second battery provides the voltage required for operation of the control module 20.
As shown in fig. 1 and 8, the number of the first electrode sheets 32 is 2, and two first electrode sheets 32 are symmetrically arranged on both sides of the center line C of the body 31. Preferably, the angle between the first electrode sheet 32 and the center line C is 80 to 90 °. The verification proves that the electrode plate conforms to the principle of human engineering, and the electrode plate 20 has the best fit degree with the chest skin of a user during treatment, so that the treatment is more comfortable.
In addition, a first magnetic member is disposed on the first electrode plate 32, a second magnetic member is disposed at the bottom of the body 31, and the first magnetic member and the second magnetic member are magnetically attracted to each other, so that the first electrode plate 32 is fixed on the body 31. The first magnetic part and the second magnetic part are, for example, a male magnetic buckle and a female magnetic buckle matched with each other. Two metal magnetic buckles are arranged on each first electrode plate, two strong magnetic buckles are correspondingly arranged at the bottom of the body 31, and the mode of the double magnetic buckles enables the first electrode plates and the bottom of the body 31 to be more firm in magnetic attraction.
During treatment, the first electrode plates 32 symmetrically arranged along the central line C of the body 31 can bear the weight of the treatment body 31, the treatment body 31 does not need to be held by hands, and the fixation of the treatment body 31 can be realized after the first electrode plates 32 made of the soft PU material of gel are contacted and attached with skin, so that hands are completely liberated in the treatment process.
As shown in fig. 6 and 7, the portable electrode tab assembly 200 includes a third mating terminal 203, a second connecting wire harness 202, and a second electrode tab 201, wherein the second electrode tab 201 and the third mating terminal 203 are respectively located at two opposite ends of the second connecting wire harness 202.
In a preferred embodiment, the first connection port 11, the second connection port 21, and the third connection port 203 are, for example, Type C sockets.
As shown in fig. 2 to 4, the first connection port 11 is located inside the host 10; the host 10 includes an upper cover 12 and a push button 13, wherein the push button 13 slides in a sliding slot 123 of the upper cover 12 to drive the first connection port 11 to extend out from the accommodating portion 121 of the upper cover 12, and further the first connection port 11 and the second connection port 21 are plugged into each other.
In this embodiment, the control assembly 20 is placed in the accommodating portion 121 of the upper cover 12, the accommodating portion 121 includes a positioning recess 122 and a clamping structure 124, and the positioning recess 122 and the clamping structure 23 at the bottom of the control assembly 20 are adapted to pre-position the control assembly 20.
The assembly process of the main unit 10 and the control unit 20 generally includes:
after the positioning concave part 122 and the clamping structure 23 are pre-positioned, the sliding push button 13 is moved from the initial position to the middle position, the clamping structure 124 extends out of the concave part 122 and is clamped in the clamping groove 22 around the control component 20, so as to limit the displacement of the control component 20, and at this time, the first connection port 11 and the second connection port 21 are aligned, but the two are not inserted; by further pushing the push button 13 to move to the target position in the slide groove 123, the first connection port 11 is inserted into the second connection port 21 of the control assembly 20.
It should be noted that, before the first connection port 11 and the second connection port 21 are plugged, the first connection port 11 and the second connection port 21 are buckled by the buckling structure 124 and the clamping groove 21 to limit displacement of the control component 20 in multiple dimensions, so as to ensure that the first connection port 11 and the second connection port 21 are aligned with each other and can be plugged accurately, and therefore, the problem of abnormal plugging and damage to the connection ports caused by misalignment of the first connection port 11 and the second connection port 21 is not easily caused.
In addition, in the process of separating the host 10 and the control assembly 20, the push button 13 is pushed, and the first connection port 11 is withdrawn from the second connection port 21; and continuously, the push button 13 is pushed to release the buckling of the buckling structure 124 and the clamping groove 21, the displacement limitation of the control component 20 is removed, the first connection port 11 and the second connection port 21 are ensured to be released from the splicing relation when the control component 20 is taken out from the host computer 10, the first connection port 11 and the second connection port 21 cannot be damaged due to external force, and fool-proofing can be realized.
In a preferred embodiment, the holding structure 23 at the bottom of the control assembly 20 can hold the user's clothes when in use, so as to avoid the situation that the control assembly 20 is lost due to the separation between the second plugging end 22 of the control assembly 20 and the third plugging end 203 of the portable electrode pad assembly 200 during use.
To sum up, the utility model provides a therapeutic apparatus, which is suitable for treating diseases such as hyperplasia of mammary glands and the like, and comprises a host and a control module which are detachably connected, wherein when the host is electrically connected with the control module, the control module controls a therapeutic head of the host to carry out electrical stimulation treatment, and when the control module is used independently, the control module and a portable electrode plate component provide variable electrical stimulation treatment for a user together; the convenience of the therapeutic apparatus used under multiple scenes is increased.
The present invention has been described in relation to the above embodiments, which are only exemplary of the implementation of the present invention. Furthermore, the technical features mentioned in the different embodiments of the present invention described above may be combined with each other as long as they do not conflict with each other. It is to be noted that the present invention may take various other embodiments, and that various changes and modifications may be effected therein by one skilled in the art without departing from the spirit and scope of the utility model as defined in the appended claims.