Micro-electric physiotherapy instrument
By centralizing the buttons and electrodes to the end of the housing in the microelectrotherapy instrument, and optimizing the distribution of the circuit board and power supply, the problem of the existing microelectrotherapy instrument is solved, and a more compact and portable design is achieved.
Patent Information
- Application Number
- CN202420672101.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-02
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-04-02
AI Technical Summary
The existing microelectrotherapy instruments are not compact in structure, which makes them inconvenient to carry around.
A microelectrotherapy instrument is designed, with two ends of the housing, the buttons and electrodes are concentrated at the end of the housing, the circuit board and the power supply are distributed in a compact manner, the charging contacts are located on the same side of the housing, and a sink groove is set in the box for placing the electrodes, and the charging thimble passes through the via.
The microelectrotherapy instrument has a more compact structure, reducing weight and volume, making it more suitable for carrying around.
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Figure CN222871171U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of physical therapy equipment, in particular to a micro-electric physical therapy instrument. Background Art
[0002] A physiotherapy device refers to an instrument for performing physiotherapy on a user, and a micro-electric physiotherapy device refers to an instrument for stimulating a user with a weak electric current to achieve physiotherapy. In the prior art, the micro-electric physiotherapy device has a non-compact structure and is not convenient to carry around.
[0003] Therefore, the prior art still needs to be improved and developed. Utility Model Content
[0004] The technical problem to be solved by the present invention is to provide a micro-electric therapy device in view of the above-mentioned defects of the prior art, aiming to solve the problem that the micro-electric therapy device in the prior art is not compact in structure and is not convenient to carry around.
[0005] The technical solution adopted by the utility model to solve the technical problem is as follows:
[0006] A micro-electric therapy device, comprising:
[0007] a housing having a first end and a second end;
[0008] A first electrode and a first button are respectively arranged on two sides of the first end;
[0009] A second electrode and a second button are respectively arranged on two sides of the second end;
[0010] Wherein, the first electrode and the second electrode are both located on the same side of the shell.
[0011] The micro-electric therapy device, wherein the first electrode is a detachable magnetic electrode; and / or the second electrode is a detachable magnetic electrode.
[0012] The micro-electric therapy device, wherein the micro-electric therapy device further comprises:
[0013] A first circuit board and a first power supply are located between the first electrode and the first button;
[0014] A second circuit board and a controller are located between the second electrode and the second button;
[0015] Wherein, the first circuit board is electrically connected to the second circuit board;
[0016] The first power source, the first button, and the first electrode are all connected to the first circuit board;
[0017] The controller, the second button, and the second electrode are all connected to the second circuit board.
[0018] The micro-electric therapy device, wherein a Bluetooth module is provided on the second circuit board.
[0019] The micro-electric therapy device, wherein the micro-electric therapy device further comprises:
[0020] A charging contact point is arranged on the housing;
[0021] Wherein, the charging contact and the first electrode are both located on the same side of the shell;
[0022] The charging contact is electrically connected to the first circuit board.
[0023] The micro-electric therapy device, wherein the micro-electric therapy device further comprises:
[0024] The box body has a first sink and a second sink;
[0025] Wherein, the first sink is used to place the first electrode;
[0026] The second sink is used for placing the second electrode.
[0027] The micro-electric therapy device, wherein the micro-electric therapy device further comprises:
[0028] The third circuit board and the second power supply are both located in the box body;
[0029] A charging ejector pin, arranged on the third circuit board;
[0030] Wherein, the third circuit board and the second power supply are both located between the first sink and the second sink;
[0031] The third circuit board is electrically connected to the second power supply;
[0032] The charging pin is located at a corresponding position of the charging contact.
[0033] The micro-electric therapy device, wherein the box body comprises:
[0034] An outer layer and an inner layer connected to each other; the inner layer is provided with vias;
[0035] wherein the inner layer forms the first sink and the second sink;
[0036] The third circuit board and the second power supply are located between the outer layer and the inner layer;
[0037] The charging pin passes through the via hole.
[0038] The micro-electric therapy device, wherein the micro-electric therapy device further comprises:
[0039] A cover body connected to the box body;
[0040] A third button is arranged on the cover;
[0041] Wherein, the third button is electrically connected to the third circuit board.
[0042] The micro-electric therapy device, wherein the box body is provided with a charging port, and the charging port is electrically connected to the third circuit board.
[0043] Beneficial effect: The first button is arranged on the front side of the first end, the first electrode is arranged on the back side of the first end, the second button is arranged on the front side of the second end, and the second electrode is arranged on the back side of the second end. The buttons and electrodes are concentrated at the end of the shell, making the structure of the entire micro-electric therapy device more compact. BRIEF DESCRIPTION OF THE DRAWINGS
[0044] Figure 1 It is a schematic structural diagram of the housing, electrodes and buttons in the embodiment of the utility model.
[0045] Figure 2 It is a schematic diagram of the structure of the housing and the electrodes in the embodiment of the utility model.
[0046] Figure 3 It is a cross-sectional view of the housing, electrodes and buttons in the embodiment of the utility model.
[0047] Figure 4 It is a structural schematic diagram of the box body and the cover body in the embodiment of the utility model.
[0048] Figure 5 It is a structural schematic diagram of the micro-electric therapy device in the embodiment of the utility model in the open state.
[0049] Figure 6 It is a cross-sectional view of the box body, shell, electrodes and buttons in the embodiment of the utility model.
[0050] Figure 7 It is a first structural schematic diagram of the micro-electric therapy device in the embodiment of the utility model in the closed state.
[0051] Figure 8 It is a second structural schematic diagram of the micro-electric therapy device in the embodiment of the utility model in the covered state.
[0052] Description of reference numerals:
[0053] 10. Shell; 11. First end; 12. Second end; 13. Second magnetic member; 21. First electrode; 211. First magnetic member; 212. Pole piece; 22. Second electrode; 23. First button; 24. Second button; 25. First circuit board; 251. Charging contact; 26. First power source; 27. Second circuit board; 28. Controller; 29. Bluetooth module; 30. Box body; 31. First sink; 32. Second sink; 33. Outer layer; 34. Inner layer; 341. Via hole; 35. Platform; 41. Third circuit board; 42. Second power source; 43. Charging ejector pin; 44. Indicator; 45. Charging port; 50. Cover; 51. Third button. DETAILED DESCRIPTION
[0054] In order to make the purpose, technical solution and advantages of the utility model clearer and more specific, the utility model is further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0055] Please also see Figure 1-Figure 8 The utility model provides some preferred embodiments of a micro-electric therapy instrument.
[0056] like Figure 1 As shown, the micro-electric therapy device includes:
[0057] The housing 10 has a first end 11 and a second end 12;
[0058] The first electrode 21 and the first button 23 are respectively disposed on two sides of the first end 11;
[0059] The second electrode 22 and the second button 24 are respectively disposed on two sides of the second end 12;
[0060] The first electrode 21 and the second electrode 22 are both located on the same side of the housing 10 .
[0061] Specifically, the shell 10 has two ends, namely a first end 11 and a second end 12, with a spacing between the first end 11 and the second end 12. The shell 10 can be waist-shaped, "8"-shaped or dumbbell-shaped, the first end 11 can be in an outwardly convex arc shape, and the second end 12 can be in an outwardly convex arc shape. The electrode refers to an electrode for microcurrent stimulation to the user, and the button refers to a button for controlling the electrode, for example, a button for adjusting the size of the microcurrent of the electrode, a button for starting or shutting down the electrode, a button for adjusting the stimulation mode of the microcurrent, etc. In different stimulation modes, the stimulation intensity, stimulation frequency, and stimulation duration are not exactly the same. The first electrode 21 and the second electrode 22 can be positive and negative poles to each other. The first button 23 and the second button 24 can be buttons with different functions. Blood circulation can be promoted by microcurrent stimulation.
[0062] The first button 23 is arranged on the front side of the first end 11, the first electrode 21 is arranged on the back side of the first end 11, the second button 24 is arranged on the front side of the second end 12, and the second electrode 22 is arranged on the back side of the second end 12. The buttons and electrodes are concentrated at the end of the shell 10, so that the structure of the entire micro-electric therapy device is more compact. Since the buttons and electrodes are concentrated at the end of the shell 10, the volume of the middle part of the shell 10 becomes smaller to reduce the weight of the entire micro-electric therapy device. The middle part of the shell 10 is a concave arc, which is convenient for handholding.
[0063] In a preferred embodiment of the present invention, please also refer to Figure 2-Figure 3 , the first electrode 21 is a detachable magnetic electrode; and / or the second electrode 22 is a detachable magnetic electrode.
[0064] Specifically, the first electrode 21 and the second electrode 22 can be detachable magnetic electrodes, and the detachable magnetic electrodes include: a first magnetic member 211 and a pole piece 212 connected to each other. A second magnetic member 13 is provided at the end of the shell 10, and a magnetic connection is formed between the first magnetic member 211 and the second magnetic member 13. The first magnetic member 211 and the second magnetic member 13 can be magnets and iron blocks respectively, or both can be magnets. The pole piece 212 can be a hydrogel pole piece 212, which is more skin-friendly.
[0065] In a preferred embodiment of the present invention, please also refer to Figure 2-Figure 3 , the micro-electric therapy device also includes:
[0066] A first circuit board 25 and a first power source 26 are located between the first electrode 21 and the first button 23;
[0067] A second circuit board 27 and a controller 28 are located between the second electrode 22 and the second button 24;
[0068] The first circuit board 25 is electrically connected to the second circuit board 27 ; the first power supply 26 , the first button 23 , and the first electrode 21 are all connected to the first circuit board 25 ; the controller 28 , the second button 24 , and the second electrode 22 are all connected to the second circuit board 27 .
[0069] Specifically, the first power supply 26 supplies power to the first circuit board 25, the second circuit board 27, the controller 28, the first electrode 21, and the second electrode 22. The first button 23 faces the first circuit board 25, and the second button 24 faces the second circuit board 27. The controller 28 may be a microcontroller unit (MCU). The first power supply 26 is located at the first end 11, and the controller 28 is located at the second end 12, which is conducive to a more symmetrical structure.
[0070] In a preferred embodiment of the present invention, please also refer to Figure 1-Figure 3 A Bluetooth module 29 is disposed on the second circuit board 27 .
[0071] Specifically, a Bluetooth module 29 is also provided on the second circuit board 27, and the controller 28 and the Bluetooth module 29 are both located at the second end 12 to balance the weight of the first power source 26. The Bluetooth module 29 is used to communicate with the terminal so as to control the micro-electric therapy instrument through the terminal. The terminal is installed with an APP of the micro-electric therapy instrument to control the micro-electric therapy instrument.
[0072] In a preferred embodiment of the present invention, please also refer to Figure 2-Figure 3 , the micro-electric therapy device also includes:
[0073] A charging contact 251, disposed on the housing 10;
[0074] The charging contact 251 and the first electrode 21 are both located on the same side of the housing 10 ; the charging contact 251 is electrically connected to the first circuit board 25 .
[0075] Specifically, in order to facilitate charging the first power source 26, a charging contact 251 is provided on the housing 10, and the charging contact 251 is located on the reverse side of the housing 10. There may be two or three charging contacts 251. The charging contact 251 may be located in the middle of the housing 10 near the first end 11, closer to the first power source 26.
[0076] In a preferred embodiment of the present invention, please also refer to Figure 4-Figure 5 , the micro-electric therapy device also includes:
[0077] The box body 30 has a first sink 31 and a second sink 32;
[0078] The first sink 31 is used to place the first electrode 21 ; the second sink 32 is used to place the second electrode 22 .
[0079] Specifically, a box body 30 can be configured for the shell 10, and the shell 10 can be placed in the box body 30. A first sink groove 31 and a second sink groove 32 are formed in the box body 30. When the shell 10 is placed in the box body 30, the first electrode 21 is placed in the first sink groove 31, and the second electrode 22 is placed in the second sink groove 32.
[0080] The bottom of the first sink 31 and the bottom of the second sink 32 are both provided with support protrusions for supporting the electrode. Since the middle of the shell 10 is a concave arc, the gap between the middle of the shell 10 and the inner wall of the box body 30 is large, which is convenient for grasping and convenient for taking and placing the shell 10.
[0081] In a preferred embodiment of the present invention, please also refer to Figure 4-Figure 6 , the micro-electric therapy device also includes:
[0082] The third circuit board 41 and the second power supply 42 are both located in the box body 30;
[0083] A charging pin 43 is provided on the third circuit board 41;
[0084] Among them, the third circuit board 41 and the second power supply 42 are both located between the first sink 31 and the second sink 32; the third circuit board 41 is electrically connected to the second power supply 42; and the charging pin 43 is located at a corresponding position of the charging contact 251.
[0085] Specifically, the first power source 26 is a rechargeable power source, and a second power source 42 is also provided in the box body 30, and the second power source 42 charges the first power source 26. Since the volume of the shell 10 is small, the size and power of the first power source 26 are limited, and the second power source 42 is mounted on the box body 30, and the second power source 42 has a larger size and power, so as to charge the first power source 26 and improve the endurance of the first power source 26. The third circuit board 41 and the second power source 42 are both located between the first sink 31 and the second sink 32. The charging pin 43 contacts the charging contact 251 so that the second power source 42 charges the first power source 26. The charging pin 43 can be an elastic pin to improve the reliability of the contact between the charging pin 43 and the charging contact 251.
[0086] In a preferred embodiment of the present invention, please also refer to Figure 5-Figure 6 , the box body 30 includes:
[0087] An outer layer 33 and an inner layer 34 are connected to each other; a via 341 is provided on the inner layer 34;
[0088] Wherein, the inner layer 34 forms the first sink 31 and the second sink 32;
[0089] The third circuit board 41 and the second power supply 42 are located between the outer layer 33 and the inner layer 34;
[0090] The charging pin 43 passes through the through hole 341 .
[0091] Specifically, the box body 30 adopts a two-layer structure, specifically including an inner layer 34 and an outer layer 33, the outer layer 33 is wrapped outside the inner layer 34, and a sandwich space is formed between the inner layer 34 and the outer layer 33 for placing the third circuit board 41 and the second power supply 42. The inner layer 34 forms a first sink 31 and a second sink 32 to support and place the shell 10, and the position between the first sink 31 and the second sink 32 forms a high platform 35, and the third circuit board 41 and the second power supply 42 are installed under the high platform 35. A third magnetic attraction member can also be arranged below the first sink 31 and below the second sink 32, and a magnetic attraction force is formed between the third magnetic attraction member and the first magnetic attraction member 211 (or the second magnetic attraction member 13), so that the shell 10 is attached to the box body 30. The first magnetic attraction member 211 (or the second magnetic attraction member 13) and the third magnetic attraction member can be a magnet and an iron block respectively, or both can be magnets.
[0092] In a preferred embodiment of the present invention, please also refer to Figure 7-Figure 8 , the micro-electric therapy device also includes:
[0093] A cover body 50 connected to the box body 30;
[0094] A third button 51 is disposed on the cover 50;
[0095] The third button 51 is electrically connected to the third circuit board 41 .
[0096] Specifically, the box body 30 may be provided with a cover 50, which is connected to the box body 30, and may be specifically connected in a rotating manner, in a detachable manner, etc. A third button 51 is provided on the cover 50, which may be a button for turning on and off the charging of the second power source 42, or a button for adjusting the charging mode. Of course, an indicator 44 may also be provided on the cover 50 or the box body 30 to indicate the charging status of the first power source 26, for example, the state in which the first power source 26 is being charged, the state in which it is not being charged, or the state in which it is fully charged. The indicator 44 may be an indicator light, and the number of the indicators 44 may be one or more.
[0097] In a preferred embodiment of the present invention, please also refer to Figure 7-Figure 8 The box body 30 is provided with a charging port 45 , and the charging port 45 is electrically connected to the third circuit board 41 .
[0098] Specifically, the second power source 42 can be a rechargeable power source. A charging port 45 is also provided on the box body 30. An external power source charges the second power source 42 through the charging port 45. Of course, the charging port 45 can also charge the first power source 26. If both the first power source 26 and the second power source 42 are not fully charged, the first power source 26 can be charged first, and then the second power source 42 can be charged.
[0099] It should be understood that the application of the present invention is not limited to the above examples. For ordinary technicians in this field, improvements or changes can be made according to the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.
Claims
1. A micro-electric therapy device, characterized in that: It includes: a housing having a first end and a second end; A first electrode and a first button are respectively arranged on two sides of the first end; A second electrode and a second button are respectively arranged on two sides of the second end; Wherein, the first electrode and the second electrode are both located on the same side of the shell.
2. The micro-electric therapy device according to claim 1, characterized in that: The first electrode is a detachable magnetic electrode; and / or the second electrode is a detachable magnetic electrode.
3. The micro-electric therapy device according to any one of claims 1-2, characterized in that: The micro-electric therapy apparatus also includes: A first circuit board and a first power supply are located between the first electrode and the first button; A second circuit board and a controller are located between the second electrode and the second button; Wherein, the first circuit board is electrically connected to the second circuit board; The first power source, the first button, and the first electrode are all connected to the first circuit board; The controller, the second button, and the second electrode are all connected to the second circuit board.
4. The micro-electric therapy device according to claim 3, characterized in that: The second circuit board is provided with a Bluetooth module.
5. The micro-electric therapy device according to claim 4, characterized in that: The micro-electric therapy apparatus also includes: A charging contact point is arranged on the housing; Wherein, the charging contact and the first electrode are both located on the same side of the shell; The charging contact is electrically connected to the first circuit board.
6. The micro-electric therapy device according to claim 5, characterized in that: The micro-electric therapy apparatus also includes: The box body has a first sink and a second sink; Wherein, the first sink is used to place the first electrode; The second sink is used for placing the second electrode.
7. The micro-electric therapy device according to claim 6, characterized in that: The micro-electric therapy apparatus also includes: The third circuit board and the second power supply are both located in the box body; A charging ejector pin, arranged on the third circuit board; Wherein, the third circuit board and the second power supply are both located between the first sink and the second sink; The third circuit board is electrically connected to the second power supply; The charging pin is located at a corresponding position of the charging contact.
8. The micro-electric therapy device according to claim 7, characterized in that: The box body comprises: An outer layer and an inner layer connected to each other; the inner layer is provided with vias; wherein the inner layer forms the first sink and the second sink; The third circuit board and the second power supply are located between the outer layer and the inner layer; The charging pin passes through the via hole.
9. The micro-electric therapy device according to claim 7, characterized in that: The micro-electric therapy apparatus also includes: A cover body connected to the box body; A third button is arranged on the cover; Wherein, the third button is electrically connected to the third circuit board.
10. The micro-electric therapy device according to claim 7, characterized in that: The box body is provided with a charging port, and the charging port is electrically connected to the third circuit board.