CN210644837U - Full-size electrode slice - Google Patents
Full-size electrode slice Download PDFInfo
- Publication number
- CN210644837U CN210644837U CN201920761428.6U CN201920761428U CN210644837U CN 210644837 U CN210644837 U CN 210644837U CN 201920761428 U CN201920761428 U CN 201920761428U CN 210644837 U CN210644837 U CN 210644837U
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- conductive adhesive
- conducting resin
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- small
- big
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- Expired - Fee Related
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Abstract
A full-size electrode plate comprises a conductive main body, wherein one end of the conductive main body is connected with a wire, the conductive main body is embedded in an insulating layer and is fixedly connected with the insulating layer, the other side of the conductive main body is movably connected with a large conductive adhesive and a small conductive adhesive, the small conductive adhesive is embedded in the large conductive adhesive and is movably connected with the large conductive adhesive, and the outer layers of the large conductive adhesive and the small conductive adhesive are provided with protective films; the utility model discloses a conducting resin divide into big conducting resin and little conducting resin, big conducting resin and little conducting resin all can be dismantled, can select the big conducting resin of big model or the little conducting resin of small model as required, in order to avoid big conducting resin and little conducting resin disinfection unclean, thoroughly lead to the condition because of the cross infection that the physiotherapy electrode piece caused the dermatosis, the big conducting resin and the little conducting resin of this application can replace after finishing using, install new big conducting resin and little conducting resin again and use for next patient.
Description
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a full-size electrode slice.
Background
At present, a plurality of physiotherapy electrode plates are available in the medical market, the physiotherapy electrode plates are attached to corresponding treatment positions of a human body, the positive electrode and the negative electrode of the treatment instrument are communicated, and pulses generated by the treatment instrument have the functions of simulating acupuncture and massage treatment and the like through patches like a plurality of electric needles.
The physiotherapy electrode piece is the medical subassembly that physiotherapy equipment and do physiotherapy are indispensable. The existing physiotherapy electrode piece is repeatedly used for many times, however, because the physiotherapy electrode piece is directly contacted with the skin of a user in the using process, the physiotherapy electrode piece is disinfected after being used. However, in actual operation, cross infection of skin diseases caused by the physiotherapy electrode plates is easily caused due to unclean and incomplete disinfection, and great potential safety hazards exist.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a full-size electrode slice.
The utility model adopts the technical proposal that:
the utility model provides a full-size electrode slice, includes electrically conductive main part, and electrically conductive main part's one end is connected with the wire, and electrically conductive main part is embedded in the insulating layer, and with insulating layer fixed connection, the opposite side swing joint of electrically conductive main part is big conducting resin and little conducting resin, and little conducting resin is embedded in big conducting resin and both swing joint, and big conducting resin and little conducting resin's skin is provided with the protective film.
At least three coils are arranged around the large conductive adhesive and the small conductive adhesive, and the coils are fixedly arranged on the inner sides of the large conductive adhesive and the small conductive adhesive; the inner side of the insulating layer is provided with at least three magnet limiting holes, and the magnet limiting holes are matched with the coil in size.
The coil is integrally formed with the large conductive adhesive and the small conductive adhesive.
The bottom of the magnet limiting hole is fixedly provided with a magnet, the diameter of the magnet limiting hole is slightly larger than that of the coil, and the position of the magnet limiting hole corresponds to that of the coil.
The conductive main body and the insulating layer are adhered together through glue, and the conducting wire connected with the conductive main body extends out of the insulating layer.
The protective film is adsorbed on the outer sides of the large conductive adhesive and the small conductive adhesive.
The large conductive adhesive and the small conductive adhesive are both rectangular structures.
The size of the large conductive adhesive is 4cm multiplied by 4cm, and the size of the small conductive adhesive is 3cm multiplied by 3 cm; or the size of the large conductive adhesive is 5cm multiplied by 5cm, and the size of the small conductive adhesive is 4cm multiplied by 4 cm; or the size of the large conductive adhesive is 7cm multiplied by 12cm, and the size of the small conductive adhesive is 6cm multiplied by 9 cm.
The utility model has the advantages that: the utility model discloses a conducting resin divide into big conducting resin and little conducting resin, big conducting resin and little conducting resin all can be dismantled, can select the big conducting resin of big model or the little conducting resin of small model as required, in order to avoid big conducting resin and little conducting resin disinfection unclean, thoroughly lead to the condition because of the cross infection that the physiotherapy electrode piece caused the dermatosis, the big conducting resin and the little conducting resin of this application can replace after finishing using, install new big conducting resin and little conducting resin again and use for next patient.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the large conductive adhesive and the small conductive adhesive of the present invention.
Fig. 3 is a schematic structural diagram of the insulating layer of the present invention.
In the figure, 1, a lead, 2, a conductive body, 3, an insulating layer, 4, a magnet, 5, a coil, 6, large conductive adhesive, 7, small conductive adhesive, 8, a protective film, 9 and a magnet limiting hole are arranged.
Detailed Description
As shown in fig. 1 to 3, a full-size electrode plate comprises a conductive main body 2, one end of the conductive main body 2 is connected with a wire 1, the conductive main body 2 is embedded in an insulating layer 3 and is fixedly connected with the insulating layer 3, the other side of the conductive main body 2 is movably connected with a large conductive adhesive 6 and a small conductive adhesive 7, the small conductive adhesive 7 is embedded in the large conductive adhesive 6 and is movably connected with the large conductive adhesive 6 and the small conductive adhesive 7, and a protective film 8 is arranged on the outer layers of the large conductive adhesive 6 and the small conductive adhesive 7.
At least three coils 5 are arranged around the large conductive adhesive 6 and the small conductive adhesive 7, and the coils 5 are fixedly arranged on the inner sides of the large conductive adhesive 6 and the small conductive adhesive 7; the inside of insulating layer 3 is provided with the spacing hole of at least three magnet 9, and the size phase-match of the spacing hole of magnet 9 and coil 5.
The coil 5 is integrally formed with the large conductive adhesive 6 and the small conductive adhesive 7.
The bottom of the magnet limiting hole 9 is fixedly provided with a magnet 4, the diameter of the magnet limiting hole 9 is slightly larger than that of the coil 5, and the position of the magnet limiting hole 9 corresponds to that of the coil 5.
The conductive main body 2 and the insulating layer 3 are adhered together by glue, and the lead 1 connected with the conductive main body 2 extends out of the insulating layer 3.
The protective film 8 is adsorbed on the outer sides of the large conductive adhesive 6 and the small conductive adhesive 7.
The large conductive adhesive 6 and the small conductive adhesive 7 are both rectangular structures.
The size of the large conductive adhesive 6 is 4cm multiplied by 4cm, and the size of the small conductive adhesive 7 is 3cm multiplied by 3 cm; or the size of the large conductive adhesive 6 is 5cm multiplied by 5cm, and the size of the small conductive adhesive 7 is 4cm multiplied by 4 cm; or the size of the large conductive adhesive 6 is 7cm multiplied by 12cm, and the size of the small conductive adhesive 7 is 6cm multiplied by 9 cm.
The utility model discloses during the equipment, earlier with the spacing hole 9 of the magnet of corresponding position in the coil 5 corresponding insulating layer 3 on big conducting resin 6 and the little conducting resin 7 to insert coil 5 in the spacing hole 9 of corresponding magnet, then the outside adsorbs one deck protective film 8 can.
The utility model discloses during the use, if chooseing for use big conducting resin 6, then remove outer protective film 8, can work with 1 circular telegram of wire, coil 5 and 4 mutual absorption of magnet further make big conducting resin 6 and little conducting resin 7 be difficult to drop.
When the small conductive adhesive 7 is selected, the outer protective film 8 is removed, then the large conductive adhesive 6 is removed, the coil 5 on the large conductive adhesive 6 is pulled out from the magnet limiting hole 9 in the insulating layer 3, and then the lead 1 is electrified.
After the use, the power of the lead 1 is cut off, the large conductive adhesive 6 and the small conductive adhesive 7 need to be replaced, the coil 5 of the used large conductive adhesive 6 and the used small conductive adhesive 7 are pulled out from the magnet limiting hole 9, new large conductive adhesive 6 and new small conductive adhesive 7 are replaced, the coil 5 on the large conductive adhesive 6 and the coil 5 on the small conductive adhesive 7 are inserted into the corresponding magnet limiting hole 9, and finally, a layer of protective film 8 is adsorbed outside.
Claims (8)
1. A full-size electrode slice is characterized in that: including electrically conductive main part (2), the one end of electrically conductive main part (2) is connected with wire (1), electrically conductive main part (2) are embedded in insulating layer (3), and with insulating layer (3) fixed connection, the big conducting resin (6) of opposite side swing joint and little conducting resin (7) of electrically conductive main part (2), little conducting resin (7) are embedded in big conducting resin (6) and both swing joint, the skin of big conducting resin (6) and little conducting resin (7) is provided with protecting film (8).
2. A full size electrode sheet as defined in claim 1, wherein: at least three coils (5) are arranged around the large conductive adhesive (6) and the small conductive adhesive (7), and the coils (5) are fixedly arranged on the inner sides of the large conductive adhesive (6) and the small conductive adhesive (7); the inner side of the insulating layer (3) is provided with at least three magnet limiting holes (9), and the magnet limiting holes (9) are matched with the coil (5) in size.
3. A full size electrode sheet as defined in claim 2, wherein: the coil (5) is integrally formed with the large conductive adhesive (6) and the small conductive adhesive (7).
4. A full size electrode sheet as defined in claim 2, wherein: the bottom of the magnet limiting hole (9) is fixedly provided with a magnet (4), the diameter of the magnet limiting hole (9) is slightly larger than that of the coil (5), and the position of the magnet limiting hole (9) corresponds to that of the coil (5).
5. A full size electrode sheet as defined in claim 1, wherein: the conductive main body (2) and the insulating layer (3) are adhered together through glue, and the conducting wire (1) connected with the conductive main body (2) extends out of the insulating layer (3).
6. A full size electrode sheet as defined in claim 1, wherein: the protective film (8) is adsorbed on the outer sides of the large conductive adhesive (6) and the small conductive adhesive (7).
7. A full size electrode sheet as defined in claim 1, wherein: the large conductive adhesive (6) and the small conductive adhesive (7) are both rectangular structures.
8. A full size electrode sheet as defined in claim 7, wherein: the size of the large conductive adhesive (6) is 4cm multiplied by 4cm, and the size of the small conductive adhesive (7) is 3cm multiplied by 3 cm; or the size of the large conductive adhesive (6) is 5cm multiplied by 5cm, and the size of the small conductive adhesive (7) is 4cm multiplied by 4 cm; or the size of the large conductive adhesive (6) is 7cm multiplied by 12cm, and the size of the small conductive adhesive (7) is 6cm multiplied by 9 cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920761428.6U CN210644837U (en) | 2019-05-24 | 2019-05-24 | Full-size electrode slice |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920761428.6U CN210644837U (en) | 2019-05-24 | 2019-05-24 | Full-size electrode slice |
Publications (1)
Publication Number | Publication Date |
---|---|
CN210644837U true CN210644837U (en) | 2020-06-02 |
Family
ID=70823274
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201920761428.6U Expired - Fee Related CN210644837U (en) | 2019-05-24 | 2019-05-24 | Full-size electrode slice |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN210644837U (en) |
-
2019
- 2019-05-24 CN CN201920761428.6U patent/CN210644837U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200602 Termination date: 20210524 |
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CF01 | Termination of patent right due to non-payment of annual fee |