Physiotherapy instrument and skin care assembly
By using a single pair of electrodes to achieve charging and microcurrent functions, the problem of complex structure and high cost of existing physiotherapy devices has been solved, resulting in structural simplification and cost reduction.
Patent Information
- Application Number
- CN202422541795.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing physiotherapy devices require separate charging and microcurrent structures, resulting in complex overall structures, numerous manufacturing processes, and high costs.
By sharing a pair of electrodes for charging and generating microcurrent, an independent charging circuit and microcurrent circuit are formed. The on/off state of the circuit is controlled by a trigger switch or sensor, simplifying the electrode setup.
The number of electrodes was reduced, lowering production and material costs, while simplifying the structure and increasing the strength of the casing.
Smart Images

Figure CN223516805U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to physiotherapy device technical field, especially a physiotherapy instrument and skin care subassembly. BACKGROUND
[0002] With the improvement of people's life quality and the change of aesthetic concept, more and more consumers, especially women, pay attention to beauty care. When users carry out beauty care, through the physiotherapy instrument, the skin can better absorb the nutrient ingredients in the skin care product, and at the same time, the skin quality is improved, the skin is tightened, the pigmentation is reduced and the spots are faded, etc. Or, through the stimulation of the physiotherapy instrument, the skin can be stimulated to reduce the generation of wrinkles or relieve fatigue.
[0003] The existing physiotherapy instrument needs to set the charging structure and the related electronic physiotherapy structure at the same time, different mounting parts need to be set on the shell for these structures, and even a hole needs to be opened on the shell, which leads to complex overall structure, multiple process flow and high cost. UTILITY MODEL CONTENT
[0004] The main purpose of the utility model is to provide a physiotherapy instrument and skin care subassembly, which aims to simplify the overall structure and reduce the production cost.
[0005] To achieve the above purpose, the utility model provides a physiotherapy instrument, which comprises:
[0006] The physiotherapy instrument is characterized by comprising: a shell, a battery, a circuit board and two first electrodes, the battery and the circuit board are electrically connected and arranged in the shell, and the two first electrodes are exposed outside the shell.
[0007] The battery, the circuit board and the two first electrodes are connected to form a micro-current circuit, and the battery, the circuit board and the two first electrodes are also connected to form a charging circuit, and the micro-current circuit and the charging circuit are two independent circuits.
[0008] The micro-current circuit is configured to form a micro-current loop when the two first electrodes are in contact with the skin.
[0009] The charging circuit is configured to form a charging loop when the two first electrodes are in contact with the charging seat.
[0010] Optionally, the shell is further provided with a trigger switch, and the trigger switch is electrically connected with the circuit board.
[0011] Optionally, the physiotherapy instrument further comprises a stimulating element, the circuit board is electrically connected with the stimulating element, and the trigger switch is further used to control the opening and closing of the stimulating element.
[0012] Optionally, the stimulating element comprises one or a combination of a light therapy lamp, a vibration motor, a hot compress module, and a cold compress module.
[0013] Optionally, the first electrode is a rolling ball, and the rolling ball is in rolling connection with the shell.
[0014] The utility model discloses still propose a kind of skin care components, comprising:
[0015] The utility model discloses still propose a kind of skin care components, comprising:
[0016] The utility model discloses still propose a kind of skin care components, comprising:
[0017] Optionally, the receiving container comprises a receiving part and a charging part, the receiving part has the receiving cavity, and the charging part is provided with a charging seat, the charging seat has two second electrodes, when the cover part is covered in place with the receiving cavity, the two first electrodes and the two second electrodes are in one-to-one correspondence and form the charging loop.
[0018] Optionally, the cover part and the receiving part are sleeved by screwing, the physiotherapy part has a physiotherapy surface, the charging seat has a charging surface, the physiotherapy surface and the charging surface are oppositely arranged, the first electrode is arranged on the physiotherapy surface, and the second electrode is arranged on the charging surface.
[0019] The physiotherapy surface and the charging surface are respectively perpendicular to the rotation axis of the cover part, or the physiotherapy surface and the charging surface are respectively arranged in parallel with the rotation axis of the cover part.
[0020] Optionally, the charging seat is further provided with a germicidal lamp, and the germicidal lamp is arranged to face the first electrode.
[0021] Optionally, the physiotherapy part has a physiotherapy surface, the first electrode is arranged on the physiotherapy surface, the cover part has a cover cavity for the opening to extend into, and the physiotherapy surface is arranged away from the cover cavity.
[0022] The technical scheme of the utility model, by the electrode for charging and the electrode for generating micro-current share an electrode, so that the two functions of charging and micro-current only need to set one pair of electrodes, without setting one pair of electrodes for charging and micro-current respectively, reducing the setting of one pair of electrodes, which is conducive to the simplification of structure, and also reduces production cost and material cost. Furthermore, the shell also does not need to set too many holes for the electrode, so that the structural strength of the shell can be ensured to a certain extent. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0024] Figure 1 It is a structure schematic view of the skin care assembly in the embodiment of the present application.
[0025] Figure 2 It is a structure schematic view of the skin care assembly in the embodiment of the present application. Figure 1
[0026] Figure 3 It is a sectional view along A-A of the skin care assembly in the embodiment of the present application. Figure 2
[0027] Figure 4 It is a structure schematic view of the physiotherapy apparatus in the embodiment of the present application. Figure 1
[0028] Figure 5 It is a structure schematic view of the storage container in the embodiment of the present application. Figure 1
[0029] Figure 6 It is an exploded schematic view of the skin care assembly in the embodiment of the present application. Figure 1
[0030] Figure 7 It is an exploded schematic view of the skin care assembly in the embodiment of the present application from another angle. Figure 1
[0031] Figure 8 It is a structure schematic view of the physiotherapy apparatus in another embodiment of the present application.
[0032] Figure 9 It is an exploded schematic view of the skin care assembly in still another embodiment of the present application.
[0033] Figures 10 to 13 It is a principle schematic view of the physiotherapy apparatus in different embodiments of the present application.
[0034] Explanation of drawing reference numerals:
[0035] 100, skin care assembly; 10, physiotherapy device; 11, shell; 111, light-transmitting structure; 112, mounting hole; 113, fixing hole; 121, battery; 122, circuit board; 123, first electrode; 124, trigger switch; 125, sensor; 126, light shield; 13, micro-current circuit; 131, first switch; 14, charging circuit; 141, second switch; 15, stimulating element; 151, phototherapy lamp; 152, temperature stimulating module; 1521, heat-conducting member; 1522, temperature element; 16, physiotherapy part; 161, physiotherapy surface; 17, cover part;
[0036] 20, storage container; 21, storage part; 211, storage cavity; 212, opening; 22, charging part; 221, mounting cavity; 23, charging base; 231, second electrode; 232, sterilization lamp; 233, charging surface; 234, charging interface. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0038] It should be noted that in the description of the present application, if the terms "first", "second", etc. appear, "first", "second" are only used for convenient description of different components or names, and cannot be understood as indicating or implying the order relationship, relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features with "first", "second" can explicitly or implicitly include at least one of the features. In addition, if "and / or" appears throughout the text, it means that it includes three parallel schemes, for example, "A and / or B", including A scheme, or B scheme, or A and B schemes that meet at the same time.
[0039] The embodiment of the present application provides a physiotherapy device, which is used for physiotherapy on human body, including but not limited to phototherapy, micro-current stimulation, vibration stimulation, hot compress, cold compress, and ball massage.
[0040] Please refer to Figures 1 to 4 and Figure 10 and Figure 12The utility model discloses a physiotherapy instrument 10, including shell 11, battery 121, circuit board 122 and two first electrode 123, battery 121 and circuit board 122 electric connection and set up in shell 11, two first electrode 123 is exposed in shell 11 outside, to be able to contact with skin. Among them, battery 121, circuit board 122 and two first electrode 123 are connected to form micro-current circuit 13, battery 121, circuit board 122 and two first electrode 123 are connected to form charging circuit 14, and micro-current circuit 13 and charging circuit 14 are two independent circuits;Micro-current circuit 13 is configured to form a micro-current loop when two first electrode 123 contacts the skin;Charging circuit 14 is configured to form a charging loop when two first electrode 123 contacts the charging seat 23.
[0041] Micro-current circuit 13 and charging circuit 14 are two independent circuits, when the micro-current loop is generated, the charging loop is not generated, at this time only has micro-current stimulation;Similarly, when the charging loop is generated, the micro-current loop does not exist, at this time only for charging battery 121.
[0042] The utility model discloses a technical scheme, through the electrode of charging and the electrode of generating micro-current share electrode, so charging and micro-current two functions only need to set up a pair of electrodes, need not set up a pair of electrodes for charging and micro-current respectively, reduce a pair of electrode's setting, be favorable to the simplification of structure, also reduced production cost and material cost. Furthermore, the shell 11 also need not set up too many holes for electrode, therefore can guarantee the structural strength of shell 11 to some extent. When two first electrode 123 are not connected, at this time micro-current circuit 13 and charging circuit 14 do not form a loop, only when two first electrode 123 are electrically connected, one of micro-current circuit 13 and charging circuit 14 forms a loop.
[0043] The mode of realizing the separate on-off of micro-current circuit 13 and charging circuit 14 has multiple, for example, in an embodiment, a button or a touch switch is arranged on the corresponding circuit to control;In another embodiment, whether the first electrode 123 contacts the skin or the charging seat 23 can be judged according to the resistance value when the two first electrodes 123 are electrically connected;In still another embodiment, a sensor 125 can be arranged, and whether the first electrode 123 contacts the skin or the charging seat 23 can be judged according to the parameter detected by the sensor 125.
[0044] The mode of realizing the separate on-off of micro-current circuit 13 and charging circuit 14 will be introduced in detail through several embodiments as follows:
[0045] Please refer to Figure 3 、 Figure 10 and Figure 12In the first embodiment, the shell 11 is further provided with a trigger switch 124, which is electrically connected with the circuit board 122. The circuit board 122 controls the on-off of the micro-current circuit 13 and the charging circuit 14 according to the trigger signal of the trigger switch 124. When the micro-current circuit 13 is in the on state, the charging circuit 14 is in the off state; when the micro-current circuit 13 is in the off state, the charging circuit 14 is in the on state.
[0046] Specifically, the trigger switch 124 is a mechanical key or a touch screen. When the trigger switch 124 is pressed downward, the trigger switch 124 contacts the circuit board 122 and generates a trigger signal to the circuit board 122. At this time, the circuit board 122 controls the micro-current circuit 13 to be in the on state and controls the charging circuit 14 to be in the off state. When the two first electrodes 123 contact the skin, the two first electrodes 123 are electrically connected through the skin. Thus, the battery 121, the circuit board 122, the two first electrodes 123 and the skin form a micro-current loop, so as to stimulate the skin with micro-current.
[0047] Conversely, when the circuit board 122 does not receive the trigger signal, the circuit board 122 controls the micro-current circuit 13 to be in the off state and controls the charging circuit 14 to be in the on state. When the two first electrodes 123 contact the second electrode 231 on the charging seat 23, the two first electrodes 123 are electrically connected through the charging seat 23. Thus, the battery 121, the circuit board 122, the two first electrodes 123 and the charging seat 23 form a charging loop, so as to charge the battery 121.
[0048] Further, the micro-current circuit 13 can be provided with a first switch 131, and the charging circuit 14 can be provided with a second switch 141. When the circuit board 122 receives the trigger signal, the circuit board 122 controls the first switch 131 to be on and controls the second switch 141 to be off, so that the micro-current circuit 13 is in the on state and the charging circuit 14 is in the off state. When the circuit board 122 does not receive the trigger signal, the circuit board 122 controls the first switch 131 to be off and controls the second switch 141 to be on.
[0049] Please refer to Figure 6 Further, the physiotherapy instrument 10 further comprises a stimulating element 15 for providing physiotherapy functions. The circuit board 122 is electrically connected with the stimulating element 15, and the trigger switch 124 is further used for controlling the opening and closing of the stimulating element 15. The trigger switch 124 is used as a start key of the physiotherapy functions of the physiotherapy instrument 10. When the trigger switch 124 is pressed, the physiotherapy functions such as micro-current stimulation function, light therapy function, vibration stimulation function, etc. are all turned on, so as to perform physiotherapy on the user. When the trigger switch 124 is not pressed, the physiotherapy functions are turned off, so as to perform charging.
[0050] Specifically, the stimulating element 15 includes one or a combination of a light therapy lamp 151, a vibration motor, and a temperature stimulating module 152.
[0051] Taking the light therapy lamp 151 as an example, a portion of the shell 11 can be provided as a light-transmitting structure 111, the light therapy lamp 151 is located inside the shell 11, and the light therapy lamp 151 is further fixed on the circuit board 122 and arranged to face the light-transmitting structure 111 to emit light outward of the light-transmitting structure 111 for light therapy. Alternatively, the first electrode 123 and the light-transmitting structure 111 are located on the same side of the shell 11, so that micro-current stimulation can be performed at the same time as light therapy. Of course, in other embodiments, the light therapy lamp 151 can also be directly arranged outside the shell 11.
[0052] Taking the temperature stimulating module 152 as an example, the temperature stimulating module 152 includes a heat-conducting member 1521 and a temperature element 1522. The heat-conducting member 1521 is a metal member, which is exposed outside the shell 11 and can quickly transfer heat generated by the temperature element 1522 to the skin by contacting the skin. When the temperature element 1522 cools, the heat-conducting member 1521 can apply cold compress to the skin; when the temperature element 1522 heats, the heat-conducting member 1521 can apply hot compress to the skin. The temperature element 1522 can be a semiconductor, which can switch the heat-conducting member 1521 between cooling and heating by changing the current direction of the semiconductor. Alternatively, the temperature element 1522 is a heating resistor to heat the heat-conducting member 1521.
[0053] In some embodiments, the temperature element 1522 is located inside the shell 11 and electrically connected to the circuit board 122, the shell 11 is provided with a mounting hole 112, and the heat-conducting member 1521 is embedded in the mounting hole 112. The heat-conducting member 1521 can be flush with the outer surface of the shell 11, or the heat-conducting member 1521 can protrude from the outer surface of the shell 11. The temperature element 1522 directly contacts the inner side of the heat-conducting member 1521, or the temperature element 1522 contacts the inner side of the heat-conducting member 1521 through a heat-conducting silicone grease. In this way, the heat or cold generated by the temperature element 1522 is transferred to the heat-conducting member 1521.
[0054] In this embodiment, the shell 11 is further provided with two fixing holes 113, and the two first electrodes 123 are installed in the two fixing holes 113 one by one. In order to synchronize the micro-current stimulation and the temperature stimulation, the heat-conducting member 1521 and the first electrode 123 are arranged on the same side of the shell 11, i.e., the fixing hole 113 and the mounting hole 112 are opened on the same side surface of the shell 11. When the physiotherapy device 10 acts on the skin, the skin can simultaneously contact the two first electrodes 123 and the heat-conducting member 1521, so that the micro-current stimulation is performed by the first electrode 123 while the cold compress or hot compress is performed by the heat-conducting member 1521.
[0055] Optionally, the protruding height of the first electrode 123 on the outer surface of the shell 11 is equal to the protruding height of the heat conduction member 1521 on the outer surface of the shell 11, so that there is substantially no height difference between the first electrode 123 and the heat conduction member 1521, ensuring that both of them can contact the skin at the same time.
[0056] In some other embodiments, the temperature stimulation module 152 is arranged on the outer side of the shell 11.
[0057] In the second embodiment, the circuit board 122 controls the on-off of the micro-current circuit 13 and the charging circuit 14 according to the actual resistance value between the two first electrodes 123; when the actual resistance value is greater than the first threshold value, the circuit board 122 controls the micro-current circuit 13 to be connected and controls the charging circuit 14 to be disconnected; when the actual resistance value is less than the second threshold value, the circuit board 122 controls the micro-current circuit 13 to be disconnected and controls the charging circuit 14 to be connected.
[0058] When the first electrode 123 contacts the skin or the charging base 23, the resistance value of the skin and the resistance value of the charging base 23 must be very different, and the on-off of the micro-current circuit 13 and the charging circuit 14 can be controlled by detecting the difference in resistance value.
[0059] The first threshold value can be selected according to the resistance value of the skin, and the first threshold value can be selected between 2 kilo-ohms and 20 mega-ohms.
[0060] The second threshold value can be determined according to the charging voltage and current. Taking the portable physiotherapy instrument 10 as an example, its charging voltage is between 4.5V and 18V, and on this basis, the size of the second threshold value can be obtained according to the specific charging current.
[0061] In the third embodiment, when the circuit board 122 receives the input signal of the first electrode 123, it controls the micro-current circuit 13 to be disconnected and controls the charging circuit 14 to be connected. Specifically, when the two first electrodes 123 contact the charging base 23, the charging base 23 will input a charging signal to the first electrode 123, at which time the circuit board 122 can control the first switch 131 to be disconnected and the second switch 141 to be connected according to the input charging signal. Conversely, when the two first electrodes 123 are electrically connected, and the circuit board 122 does not receive the input charging signal of the first electrode 123, the circuit board 122 controls the first switch 131 to be connected and the second switch 141 to be disconnected.
[0062] Please refer to Figure 11 and Figure 13 In the fourth embodiment, the physiotherapy instrument 10 further comprises a sensor 125, and the circuit board 122 controls the on-off of the micro-current circuit 13 and the charging circuit 14 according to the data detected by the sensor 125.
[0063] In an embodiment, the sensor 125 is a temperature sensor 125, when the temperature detected by the temperature sensor 125 is greater than or equal to a first preset temperature, the circuit board 122 controls the micro-current circuit 13 to be connected; when the temperature detected by the temperature sensor 125 is less than the first preset temperature, the circuit board 122 controls the charging circuit 14 to be connected.
[0064] The body surface temperature is generally between 36-37℃, and considering that the body surface temperature can be affected by cold air and thus can be lowered, the first preset temperature can be set to 34℃ or 35℃, when the temperature sensor 125 contacts the skin and detects a temperature greater than or equal to the first preset temperature, it indicates that the two first electrodes 123 are contacting the skin at this time, and thus the circuit board 122 controls the micro-current circuit to be connected and controls the charging circuit 14 to be disconnected.
[0065] In another embodiment, the sensor 125 is a position sensor 125, and the circuit board 122 controls the connection and disconnection of the micro-current circuit 13 and the charging circuit 14 according to the data detected by the position sensor 125. Taking the position sensor 125 as a Hall sensor 125 as an example, the charging base 23 is provided with a magnet, when the physiotherapy device 10 is docked with the charging base 23 for charging, the Hall sensor 125 detects a relatively large magnetic field strength, at this time the circuit board 122 controls the charging circuit 14 to be connected according to the relatively large magnetic field strength signal so as to charge. When the physiotherapy device 10 is separated from the charging base 23, the Hall sensor 125 detects a relatively small magnetic field strength or cannot detect a magnetic field, at this time the circuit board 122 controls the micro-current circuit 13 to be connected according to the relatively small magnetic field strength signal.
[0066] Further, the physiotherapy device 10 further comprises a rolling ball, the rolling ball is in rolling connection with the shell 11, and the rolling ball can perform rolling massage on the skin. In some specific application scenarios, the first electrode 123 can be in the form of a rolling ball, so that the rolling massage can be performed at the same time of the micro-current stimulation.
[0067] Of course, the first electrode 123 can also be directly fixed with the shell 11 and cannot move relative to the shell 11. In this embodiment, the first electrode 123 can be in the form of a plate or a cover or other shapes. When the first electrode 123 is in the form of a plate, the first electrode 123 is directly attached to the outer surface of the shell 11, at this time the fixed hole 113 can not be provided; when the first electrode 123 is in the form of a cover, the cover of the first electrode 123 is embedded into the fixed hole 113.
[0068] The physiotherapy device 10 can be sold and used independently as a single component; or the physiotherapy device 10 can also be used in combination with a container of skin care products, and for this purpose, the utility model embodiment further provides a skin care assembly 100, which comprises a storage container 20 and a physiotherapy device 10, and the structure of the physiotherapy device 10 is as described above, which will not be described herein again.
[0069] Please refer to Figure 4 and Figure 5 The storage container 20 has a storage cavity 211 for storing skin care products, and the storage cavity 211 has an opening 212. The physiotherapy device 10 includes a physiotherapy part 16 and a cover part 17, the first electrode 123 is arranged on the physiotherapy part 16, and the cover part 17 is used to cover the opening 212.
[0070] The storage cavity 211 of the storage container 20 is open, that is, it has the opening 212 described above, which is used for the user to take the skin care products or fill the storage cavity 211 with skin care products.
[0071] The storage container 20 can be a soft tube or a glass bottle, and the shape of the storage container 20 can be flat or cylindrical.
[0072] The physiotherapy device 10 not only serves as a cover for the skin care assembly 100, but also has a physiotherapy function, which is equivalent to adding a physiotherapy function to a sealed cover that stores skin care products. The space of the cover is reasonably utilized, and the integration of functions is realized. Therefore, after using skin care products to apply to the skin, the cover can be used for physiotherapy immediately, and there is no need to additionally purchase other separate physiotherapy devices 10.
[0073] The storage container 20 includes a storage part 21 and a charging part 22, the storage part 21 has a storage cavity 211, the charging part 22 is provided with a charging seat 23, the charging seat 23 has two second electrodes 231, and when the cover part 17 is properly covered with the storage cavity 211, the two first electrodes 123 and the two second electrodes 231 correspondingly contact and form a charging circuit. In this embodiment, when skin physiotherapy is not needed and the physiotherapy device 10 is covered on the storage container 20, the charging seat 23 in the storage container 20 can charge the physiotherapy device 10, and there is no need to additionally plug the physiotherapy device 10 into other charging equipment for charging, thereby realizing the integration of functions. When the physiotherapy device 10 is taken away from the storage container 20 for skin physiotherapy, the physiotherapy device 10 stops charging and generates a micro-current stimulation when the first electrode 123 contacts the skin.
[0074] In the third embodiment, the magnet can be arranged on the storage container 20, and the Hall sensor 125 and the magnet are used to detect whether the physiotherapy device 10 is covered on the storage container 20.
[0075] In other embodiments, the storage container 20 can be provided with a detection element, such as a photoelectric sensor 125 or a pressure sensor 125. When the physiotherapy device 10 is properly covered on the storage container 20, the physiotherapy device 10 will block the light of the photoelectric sensor 125, or the physiotherapy device 10 will generate a large pressure on the pressure sensor 125. Therefore, the detection element sends a related detection signal to the circuit board 122 of the physiotherapy device 10, so that the circuit board 122 controls the on-off of the micro-current circuit 13 and the charging circuit 14.
[0076] Please refer to Figure 7 Further, the charging part 22 is provided with a mounting cavity 221, and the charging seat 23 is arranged in the mounting cavity 221, so that the charging seat 23 can be accommodated in the charging part 22, thereby playing a protection role. In order to supply power to the charging seat 23, the charging part 22 can be perforated for the charging interface 234 on the charging seat 23 to pass through a charging line, which is used to connect the charging interface 234 and an external power supply device.
[0077] The mounting cavity 221 has an opening in the same direction as the opening 212, and the second electrode 231 is exposed from the opening to be able to contact the first electrode 123, and at the same time, the charging seat 23 can also be assembled into the mounting cavity 221 from the opening. In order to avoid the charging seat 23 from being separated from the mounting cavity 221, the inner wall of the mounting cavity 221 can be provided with some clamping protrusions to abut against the charging seat 23, thereby preventing the charging seat 23 from being separated from the opening. Alternatively, the charging seat 23 is bonded to the cavity wall of the mounting cavity 221 by adhesive, thereby realizing the fixation of the two.
[0078] Please refer to Figure 3 and Figure 4 In some embodiments, the physiotherapy part 16 has a physiotherapy surface 161, and the first electrode 123 is arranged on the physiotherapy surface 161; the charging seat 23 is further provided with a sterilization lamp 232, and the sterilization lamp 232 is arranged to face the physiotherapy surface 161. When the physiotherapy device 10 is covered in place with the storage container 20, the light emitted by the sterilization lamp 232, for example, a UV lamp, can be used to disinfect the physiotherapy surface 161 and the first electrode 123 on the physiotherapy surface 161, thereby ensuring the cleanliness of the first electrode 123 when it contacts the skin and reducing the risk of skin infection. Specifically, the sterilization lamp 232 is arranged to face the opening of the mounting cavity 221.
[0079] In some embodiments, the covering part 17 is sleeved with the storage part 21 through threads, or in other embodiments, the physiotherapy device 10 can be directly sleeved with the storage part 21, and the two are sleeved through a tight fit.
[0080] Specifically, taking threaded connection as an example, the storage part 21 is provided with external threads around the opening 212, and the covering part 17 is provided with internal threads, and the internal threads and the external threads are rotationally matched along a rotation axis. In this embodiment, the physiotherapy part 16 is arranged eccentrically relative to the rotation axis, and optionally, the physiotherapy part 16 and the covering part 17 are distributed in a direction perpendicular to the rotation axis. In this way, the physiotherapy part 16 can be held to rotate the entire physiotherapy device 10, the rotation arm is longer, and a smaller force can be used to easily rotate the physiotherapy part 16.
[0081] Please refer to Figure 4 and Figure 5For example, the charging seat 23 is arranged on the receiving container 20, the charging docking position of the physiotherapy device 10 and the charging seat 23 can be located on a surface perpendicular to the rotation axis or on a surface parallel to the rotation axis. Specifically, the physiotherapy part 16 has a physiotherapy surface 161, the charging seat 23 has a charging surface 233, and the physiotherapy surface 161 and the charging surface 233 are arranged opposite to each other. The first electrode 123 is arranged on the physiotherapy surface 161, and the second electrode 231 is arranged on the charging surface 233. In some embodiments, the physiotherapy surface 161 and the charging surface 233 are respectively perpendicular to the rotation axis of the cover part 17. In other embodiments, the physiotherapy surface 161 and the charging surface 233 are respectively arranged parallel to the rotation axis of the cover part 17, and when the physiotherapy part 16 is covered to the receiving part 21 and the two are covered in place, the physiotherapy surface 161 and the charging surface 233 are in contact, thereby preventing the physiotherapy part 16 from continuing to rotate and playing a limiting role.
[0082] As shown in Figure 8 and Figure 9 of course, in other embodiments, the receiving container 20 can also not be provided with the charging seat 23, and the physiotherapy device 10 is charged and connected with other charging equipment. For example, in a specific embodiment, the physiotherapy device (10a / 10b) has a physiotherapy surface 161, and the first electrode (123a / 123b) is arranged on the physiotherapy surface 161; the cover part 17 has a cover cavity (not shown in the figure) for the opening 212 to extend into, and the physiotherapy surface 161 is arranged away from the cover cavity. Or in other specific embodiments, the physiotherapy surface 161 can also be arranged on a surface adjacent to the cover cavity, such as a side surface.
[0083] Figure 9 Another form of the receiving container 20b is shown in
[0084] Please refer to Figure 7 Further, the physiotherapy device 10 further comprises a light shielding piece 126, which is located between the phototherapy lamp 151 and the light transmission structure 111, and a light transmission hole is arranged on the light shielding piece 126 for each phototherapy lamp 151.
[0085] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced equivalently; and these modifications or replacements do not drive the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A physiotherapy apparatus, characterised in that, The physiotherapy device comprises: a shell, a battery, a circuit board and two first electrodes, the battery and the circuit board are electrically connected and arranged in the shell, and the two first electrodes are exposed outside the shell; the battery, the circuit board and the two first electrodes are connected to form a micro-current circuit and a charging circuit, the micro-current circuit and the charging circuit are two independent circuits; the micro-current circuit is configured to form a micro-current loop when the two first electrodes are in contact with the skin; the charging circuit is configured to form a charging loop when the two first electrodes are in contact with a charging seat.
2. The physiotherapy apparatus of claim 1, wherein, The shell is further provided with a trigger switch, and the trigger switch is electrically connected with the circuit board.
3. The physiotherapy device as described in claim 2, characterized in that, The physiotherapy device further comprises a stimulating element, the circuit board is electrically connected with the stimulating element, and the trigger switch is further used to control the opening and closing of the stimulating element.
4. The physiotherapy device as described in claim 3, characterized in that, The stimulating element comprises one or a combination of a light therapy lamp, a vibration motor, a hot compress module and a cold compress module.
5. The physiotherapy apparatus of any one of claims 1 to 4, wherein the at least one light source is a light emitting diode. The first electrode is a ball, and the ball is in rolling connection with the shell.
6. A skin care assembly characterized by, The physiotherapy device comprises: a storage container, the storage container has a storage cavity for storing skin care products, and the storage cavity has an opening; and The physiotherapy device according to any one of claims 1 to 5 comprises a physiotherapy part and a cover part, the first electrode is arranged on the physiotherapy part, and the cover part is used to cover the opening.
7. The skin care kit of claim 6, wherein, The storage container comprises a storage part and a charging part, the storage part has the storage cavity, the charging part is provided with a charging seat, the charging seat has two second electrodes, and when the cover part covers the storage cavity in place, the two first electrodes and the two second electrodes are in one-to-one correspondence and form the charging loop.
8. The skin care kit of claim 7, wherein, The cover part and the storage part are rotatably sleeved through threads, the physiotherapy part has a physiotherapy surface, the charging seat has a charging surface, the physiotherapy surface and the charging surface are arranged opposite to each other, the first electrode is arranged on the physiotherapy surface, and the second electrode is arranged on the charging surface; wherein the physiotherapy surface and the charging surface are perpendicular to the rotation axis of the cover part, or the physiotherapy surface and the charging surface are arranged parallel to the rotation axis of the cover part.
9. The skin care kit of claim 7, wherein, The charging seat is further provided with a sterilization lamp, and the sterilization lamp is arranged to face the first electrode.
10. The skin care kit of claim 6, wherein, The physiotherapy part has a physiotherapy surface, the first electrode is arranged on the physiotherapy surface, the cover part has a cover cavity for the opening to extend into, and the physiotherapy surface is arranged away from the cover cavity.