Electrode plate
By using notches on the substrate for engagement and magnetic adsorption, combined with automatic docking of the power terminals, the problem of inconvenient electrode connection is solved, enabling flexible splicing and rapid power connection, improving work efficiency and stability, and adapting to different working conditions.
Patent Information
- Application Number
- CN202520131099.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-21
AI Technical Summary
The existing electrode plate connection method is inconvenient, making it difficult to achieve a quick connection, and it is difficult to adjust after fixing, which affects work efficiency and flexibility.
The first and second notches on the substrate are engaged for connection, and the magnetic adsorption of the magnetic plate and magnetic ring enables rapid connection and power connection. At the same time, the connection process is simplified by the automatic docking of the power connection terminals and the power connection arc plate, and a resistance adjustment mechanism is provided to adapt to different working conditions.
It enables flexible splicing and rapid power connection of electrode sheets, improves work efficiency, enhances connection stability and adaptability, supports dynamic resistance adjustment, and meets the needs of different working conditions.
Smart Images

Figure CN223757726U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of electrode sheet, concretely relates to an electrode sheet. BACKGROUND
[0002] Electrode sheets are widely used in many fields such as medical treatment, industry, consumer electronics, and need to be connected with external devices or other electrode sheets to transmit electrical signals.
[0003] In actual use scenarios, there is an urgent need for the convenience and flexibility of electrode sheet splicing. However, most of the existing electrode sheet connection methods lack a convenient splicing design, are inconvenient to operate and have a large volume, and the pressure of the crimping type connection is difficult to guarantee consistency, is greatly affected by the environment, and is difficult to quickly realize connection, greatly affecting work efficiency. Once the welding type connection is completed, the relative position of the electrode sheet is fixed and difficult to adjust, and if the splicing direction needs to be changed or the electrode sheet of a different size needs to be replaced, the original welding structure must be destroyed and re-operated, which is time-consuming and laborious, and the electrode sheet is easily damaged. UTILITY MODEL CONTENTS
[0004] The utility model provides an electrode sheet, which has the characteristics of convenient and flexible splicing of electrode sheets.
[0005] The utility model provides the following technical scheme: a plurality of base plates and a plurality of electrode sheet bodies are arranged, the electrode sheet body is installed on one side of the corresponding base plate, a plurality of first notches are arranged on one side of the base plate, a plurality of second notches are arranged on the other side of the base plate, two base plates are connected through the first notch and the second notch, a connecting mechanism is arranged on the base plate, the connecting mechanism comprises a magnetic plate and a magnetic ring, the magnetic plate is embeddedly installed on the inner wall of the corresponding first notch, the magnetic ring is installed on one side of the corresponding second notch, the magnetic plate and the corresponding magnetic ring are magnetically adsorbed, an electricity connection mechanism is arranged on the base plate, the electricity connection mechanism comprises an electricity connection terminal and an electricity connection arc-shaped sheet, the electricity connection terminal is embeddedly installed on the inner wall of the corresponding first notch, two insertion grooves are arranged on the second notch, and the electricity connection arc-shaped sheet is installed on the inner wall of the corresponding insertion groove.
[0006] The electricity connection terminal corresponds in position to the magnetic plate, and the electricity connection arc-shaped sheet corresponds in position to the magnetic ring.
[0007] The magnetic plate is embeddedly installed on the inner wall of the corresponding first notch, the magnetic ring is installed on one side of the corresponding second notch, the magnetic plate and the corresponding magnetic ring are magnetically adsorbed, an electricity connection mechanism is arranged on the base plate, the electricity connection mechanism comprises an electricity connection terminal and an electricity connection arc-shaped sheet, the electricity connection terminal is embeddedly installed on the inner wall of the corresponding first notch, two insertion grooves are arranged on the second notch, and the electricity connection arc-shaped sheet is installed on the inner wall of the corresponding insertion groove.
[0008] Wherein, several of the substrate side are provided with a chute, several of the chute are provided with resistance adjusting mechanism, the resistance adjusting mechanism includes two conductive rods and conductive sliding block, the conductive sliding block is slidably connected to two the conductive rod side wall and the chute inner wall, the conductive rod is installed in the corresponding chute inner wall.
[0009] Wherein, several of the electrode piece body side wall are embeddedly installed with temperature sensor, two pressure sensors are installed on the substrate side.
[0010] The beneficial effects of the utility model are: through the cooperation of first gap, second gap, connecting mechanism and power connection mechanism, the magnetic plate and the magnetic ring can realize mutual attraction, so that two substrates are quickly connected, and the two substrates are connected and fixed at the same time, and the power connection work is completed synchronously, which is simple and convenient to operate, does not need to use traditional clamping, welding and pressure connection mode to connect, improves work efficiency, in addition, can be flexibly spliced into various lengths according to needs to meet the use demand of different working conditions.
[0011] The parts not involved in the device are the same as or can be realized by the prior art. DETAILED DESCRIPTION
[0012] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0013] Figure 2 It is a three-dimensional structure schematic diagram of the utility model in splicing state;
[0014] Figure 3 It is a three-dimensional exploded enlarged structure schematic diagram of connecting mechanism and power connection mechanism in the utility model;
[0015] Figure 4 It is a three-dimensional enlarged structure schematic diagram of resistance adjusting mechanism in the utility model.
[0016] In the drawing: 1, substrate;11, electrode piece body;12, first gap;13, second gap;131, slot;14, chute;15, temperature sensor;16, pressure sensor;2, connecting mechanism;21, magnetic plate;211, annular groove;22, magnetic ring;3, power connection mechanism;31, power connection terminal;32, power connection arc piece;4, resistance adjusting mechanism;41, conductive rod;42, conductive sliding block. DETAILED DESCRIPTION
[0017] Please refer to Figures 1-4The utility model provides following technical scheme: including a plurality of base plate 1 and a plurality of electrode sheet body 11, electrode sheet body 11 installs in corresponding base plate 1 one side, a plurality of base plate 1 one side all are equipped with first gap 12, a plurality of base plate 1 another all are equipped with second gap 13, two base plate 1 are connected through first gap 12 and second gap 13, a plurality of base plate 1 all are provided with connecting mechanism 2, connecting mechanism 2 includes magnetic plate 21 and magnetic ring 22, a plurality of magnetic plate 21 all are embeddedly installed in corresponding first gap 12 inner wall, a plurality of magnetic ring 22 all are installed in corresponding second gap 13 one side, magnetic plate 21 and corresponding magnetic ring 22 magnetic adsorption, a plurality of base plate 1 all are provided with electricity connection mechanism 3, electricity connection mechanism 3 includes electricity connection terminal 31 and electricity connection arc piece 32, a plurality of electricity connection terminal 31 all are embeddedly installed in corresponding first gap 12 inner wall, a plurality of second gap 13 all are equipped with two insertion slot 131, a plurality of electricity connection arc piece 32 all are installed with corresponding insertion slot 131 inner wall.
[0018] In the embodiment: a plurality of base plate 1 mutual splicing is used, two base plate 1 are connected through the butt joint of first gap 12 and second gap 13, so that two base plate 1 can realize electrode sheet body 11 homodirectional, and, two base plate 1 always are in both sides parallel, compared with traditional buckle type connection, the volume of connecting place is reduced, realizes nimble and light weight connection, when first gap 12 and second gap 13 butt joint, two base plate 1 drive respective connecting mechanism 2 to carry out corresponding approach, magnetic plate 21 and magnetic ring 22 are aligned, when first gap 12 and second gap 13 fit, magnetic plate 21 and magnetic ring 22 can realize mutual attraction, so that two base plate 1 complete quick connection, simultaneously, when two base plate 1 butt joint, complete automatic butt joint through two electricity connection terminal 31 and two electricity connection arc piece 32, electricity connection terminal 31 and electricity connection arc piece 32 all are in first gap 12 and second gap 13 fit area, one base plate 1 drives electricity connection terminal 31 and inserts into the insertion slot 131 on another base plate 1, so that the circuit between two base plate 1 realizes intercommunication, so that two base plate 1 realize connection fixed while, synchronous completion electricity connection work, simple and convenient operation, need not use traditional clamping piece, welding and pressure connection mode to connect, improve work efficiency, in addition, flexible splicing can be carried out according to the need and be used in various lengths, to satisfy the use demand of different working conditions.
[0019] The power connection terminal 31 corresponds to the position of the magnetic plate 21, and the power connection arc-shaped piece 32 corresponds to the position of the magnetic ring 22; the power connection terminal 31 is located in the hollow part on the inner side of the magnetic plate 21, and the magnetic plate 21 externally protects the power connection terminal 31, and the magnetic ring 22 also externally surrounds the corresponding slot 131 and the power connection arc-shaped piece 32, so that the butt joint work of the power connection terminal 31 and the power connection arc-shaped piece 32 can be carried out under the surrounding of the magnetic plate 21 and the magnetic ring 22, and the adsorption force of the magnetic plate 21 and the magnetic ring 22 can be more accurately applied to the connection of the power connection terminal 31 and the power connection arc-shaped piece 32, thereby improving the stability of the connection.
[0020] The magnetic plate 21 is provided with a plurality of annular grooves 211 on one side, and the magnetic ring 22 is clamped and connected to the inner wall of the corresponding annular groove 211; the size and shape of the annular groove 211 and the magnetic ring 22 correspond to each other, so that when the magnetic plate 21 and the magnetic ring 22 are butt jointed, the magnetic ring 22 can be completely inserted into the annular groove 211, so that the connection between the magnetic plate 21 and the magnetic ring 22 is more stable, and can resist lateral pulling force and reduce the occurrence of loosening.
[0021] The base plate 1 is provided with a plurality of sliding grooves 14 on one side, and the sliding groove 14 is provided with a resistance adjusting mechanism 4, which includes two conductive rods 41 and a conductive sliding block 42. The conductive sliding block 42 is slidingly connected to the side walls of the two conductive rods 41 and the inner wall of the sliding groove 14, and the conductive rod 41 is installed on the inner wall of the corresponding sliding groove 14. The sliding groove 14 accommodates the resistance adjusting mechanism 4, and the resistance adjusting mechanism 4 is located between the power connection mechanism 3 and the electrode piece body 11. By controlling the sliding of the conductive sliding block 42 in the sliding groove 14, the position of the conductive sliding block 42 on the two conductive rods 41 is changed, thereby changing the resistance value in the circuit, dynamically adjusting the electrode performance according to the actual application requirements, and meeting the use requirements in different working conditions, thereby improving the universality and adaptability of the electrode piece.
[0022] The temperature sensor 15 is embeddedly installed on the side wall of the electrode piece body 11, and the base plate 1 is provided with two pressure sensors 16 on one side; during use, the temperature sensor 15 and the pressure sensor 16 are in contact with the skin of the user together with the electrode piece body 11, so that the electrode piece not only can realize the basic conductive function, but also can monitor the related physical parameters in real time, and can monitor the body temperature of the patient and the adhesion pressure of the electrode piece and the skin at the same time, thereby providing more data support for medical diagnosis and treatment.
[0023] The utility model discloses a working principle and use flow: when splicing, the first gap 12 of a base plate 1 is inserted into the second gap 13 of another base plate 1 in alignment and is clamped, can make two base plates 1 splicing electrode piece body 11 homodromous and both sides parallel, compared with traditional buckle connection more deft light and handy. With the butt joint of first gap 12 and second gap 13, magnetic adsorption subassembly connecting mechanism 2 functions. Connecting mechanism 2 is composed of the magnetic plate 21 of first gap 12 inner wall and the magnetic ring 22 of second gap 13 one side, and they are adsorbed by magnetic attraction when close, and preliminary stable splicing, resist external force and prevent loosening. At the same time, the electrically conductive connecting assembly power connection mechanism 3 works. The power connection mechanism 3 contains the power connection terminal 31 of first gap 12 inner wall and the power connection arc piece 32 of slot 131 inner wall, and the position corresponds, and the power connection terminal 31 is wrapped by the magnetic plate 21. When first gap 12 and second gap 13 are pasted, the power connection terminal 31 is inserted into the slot 131 and makes the circuit communication, and mechanical splicing and power connection are completed simultaneously, simplify the process, improve the efficiency, and do not need traditional complex working procedure. In order to enhance stability, the magnetic plate 21 one side opens ring groove 211, and the magnetic ring 22 is tightly clamped with it, and resists lateral pulling. The electrode piece has dynamic performance adjustment function, and the sliding slot 14 of base plate 1 one side has resistance adjustment mechanism 4, which is composed of two conductive rods 41 and sliding conductive sliding block 42, and is located between relevant circuits, and the resistance value is changed by controlling the sliding of conductive sliding block 42, and the electrode performance is flexibly adjusted according to working condition.
Claims
1. An electrode sheet comprising a plurality of substrates (1) and a plurality of electrode sheet bodies (11) mounted on one side of the corresponding substrate (1), characterized in that: A plurality of the first gap (12) is opened on one side of the substrate (1), a plurality of the second gap (13) is opened on the other side of the substrate (1), the two substrates (1) are connected by the first gap (12) and the second gap (13), a plurality of the connecting mechanism (2) is arranged on the substrate (1), the connecting mechanism (2) comprises a magnetic plate (21) and a magnetic ring (22), a plurality of the magnetic plate (21) is embedded in the corresponding inner wall of the first gap (12), a plurality of the magnetic ring (22) is installed on one side of the corresponding second gap (13), the magnetic plate (21) and the corresponding magnetic ring (22) are magnetically adsorbed, a plurality of the power connection mechanism (3) is arranged on the substrate (1), the power connection mechanism (3) comprises a power connection terminal (31) and a power connection arc piece (32), a plurality of the power connection terminal (31) is embedded in the corresponding inner wall of the first gap (12), a plurality of the second gap (13) is provided with two insertion grooves (131), a plurality of the power connection arc piece (32) is installed in the inner wall of the corresponding insertion groove (131).
2. An electrode patch according to claim 1, characterized in that: The power connection terminal (31) corresponds to the position of the magnetic plate (21), and the power connection arc piece (32) corresponds to the position of the magnetic ring (22).
3. An electrode patch according to claim 1, characterized in that: A plurality of the magnetic plate (21) is provided with a ring-shaped groove (211) on one side, and the magnetic ring (22) is connected to the inner wall of the corresponding ring-shaped groove (211).
4. An electrode patch according to claim 1, characterized in that: A plurality of the sliding groove (14) is opened on one side of the substrate (1), and a plurality of the resistance adjusting mechanism (4) is arranged in the sliding groove (14), the resistance adjusting mechanism (4) comprises two conductive rods (41) and a conductive sliding block (42), the conductive sliding block (42) is connected to the side wall of the two conductive rods (41) and the inner wall of the sliding groove (14), and the conductive rod (41) is installed on the inner wall of the corresponding sliding groove (14).
5. An electrode as claimed in claim 1, wherein: A plurality of temperature sensors (15) are embedded in the side wall of the electrode piece body (11), and a plurality of pressure sensors (16) are installed on one side of the substrate (1).