CN210169133U - Heat preservation gloves are used in capacitive touch screen operation - Google Patents
Heat preservation gloves are used in capacitive touch screen operation Download PDFInfo
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- CN210169133U CN210169133U CN201920499371.7U CN201920499371U CN210169133U CN 210169133 U CN210169133 U CN 210169133U CN 201920499371 U CN201920499371 U CN 201920499371U CN 210169133 U CN210169133 U CN 210169133U
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- gloves
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- 210000005224 forefinger Anatomy 0.000 claims abstract description 5
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- 229910052613 tourmaline Inorganic materials 0.000 claims description 7
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- 229920000742 Cotton Polymers 0.000 claims description 5
- 239000004020 conductor Substances 0.000 claims description 5
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- YOCUPQPZWBBYIX-UHFFFAOYSA-N copper nickel Chemical compound [Ni].[Cu] YOCUPQPZWBBYIX-UHFFFAOYSA-N 0.000 claims description 3
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Images
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- Gloves (AREA)
Abstract
The utility model discloses a heat preservation gloves are used in electric capacity touch-sensitive screen operation, including the gloves body, heating element and electrically conductive fingertip touch screen cover, the gloves body includes the gloves inlayer, gloves heat preservation and gloves are outer, heating element is including the body and the battery that generate heat, the body that generate heat is pasted on the gloves heat preservation, body and battery electricity are connected generates heat, the thumb of gloves body, arbitrary fingertip position is equipped with the cyclic annular opening of gloves in forefinger and the middle finger, it is equipped with glove connection portion just to be close to the cyclic annular opening part of gloves on the gloves body, electrically conductive fingertip touch screen is sheathe in and is equipped with touch screen cover connection portion, electrically conductive fingertip touch screen cover is sheathe in and is close to touch screen cover cyclic annular opening part and is equipped with touch screen cover connection portion, electrically. The utility model discloses can initiatively give the human body and provide the heat, electrically conductive fingertip touches the screen cover and can conveniently touch the screen operation, when needs fingerprint identification, convenient to detach, when wearing and tearing, is convenient for change.
Description
Technical Field
The utility model belongs to the technical field of articles for daily use, concretely relates to heat preservation gloves are used in capacitive touch screen operation.
Background
Gloves are daily necessities, especially winter, because the weather is cold, gloves are as cold-proof apparatus winter commonly used, especially to some people of riding bicycle, driving motorcycle or storage battery car be indispensable more, current general gloves do not all generate heat the device, only keep warm the facility, rely on the temperature that human self produced to resist external microthermal environment, in very cold winter, especially meet the wind-blowing at some driving process, although gloves are very thick, human heat still is difficult to maintain lastingly, easily produces chilblain. In addition, the gloves generally achieve the effect of keeping out the cold by thickening the thickness inside the gloves, but the gloves are too thick, which causes inconvenience in hand movement.
Most of the existing electronic screens such as mobile phones and tablet computers adopt a capacitive touch screen technology, which works by using current induction of a human body. The capacitive touch screen is a four-layer composite glass screen, the inner surface and the interlayer of the glass screen are respectively coated with one layer of ITO, the outermost layer is a thin-layer silica glass protective layer, the interlayer ITO coating serves as a working surface, four electrodes are led out from four corners, and the inner layer of ITO serves as a shielding layer to guarantee a good working environment. After the common gloves are worn, the electronic screen cannot be operated.
Therefore, there is a need for a heat-insulating glove for operating a capacitive touch screen, which is comfortable to wear, has a heating function, and can operate an electronic screen.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a heat preservation gloves is used in capacitive touch screen operation.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
the utility model provides a heat preservation glove for operating a capacitive touch screen, which comprises a glove body, a heating component and a conductive fingertip touch screen sleeve, wherein the glove body comprises a glove inner layer, gloves heat preservation and gloves are outer, the gloves heat preservation sets up between gloves inlayer and gloves are outer, heating element is including the body and the battery that generate heat, the body that generate heat is pasted on the gloves heat preservation, body and battery electricity that generate heat are connected, the thumb of gloves body, arbitrary fingertip position is equipped with the cyclic annular opening of gloves in forefinger and the middle finger, it is equipped with the gloves connecting portion just to be close to the cyclic annular opening part of gloves on the gloves body, electrically conductive fingertip touch screen sheathes in and is equipped with touch screen cover annular opening, electrically conductive fingertip touch screen sheathes in and is close to touch screen cover annular opening part and is equipped with touch screen cover connecting portion, electrically conductive fingertip touch screen sheathes.
The utility model discloses compare in prior art, simple structure is reasonable, and the heating element generates heat to reduce scattering and disappearing of heat energy through the gloves heat preservation, can give the human body heat supply voluntarily, the thickness of gloves is less, wears comfortablely, and simultaneously, electrically conductive fingertip touch screen cover can make things convenient for the touch screen operation, when needs fingerprint identification, convenient to detach, when wearing and tearing, the change of being convenient for.
Preferably, the glove connecting portion is a button sewn on the glove body, and the touch screen sleeve connecting portion is a button hole formed in the conductive fingertip touch screen sleeve.
Preferably, the glove connecting part is a snap-fit female button sewn on the glove body, and the touch screen sleeve connecting part is a snap-fit male button adhered to the conductive fingertip touch screen sleeve.
As preferred scheme, the gloves connecting portion are the gloves magic subsides of making up in the cyclic annular opening part of gloves body, and touch screen cover connecting portion are the touch screen cover magic subsides of pasting in the touch screen lantern ring form opening part of electrically conductive fingertip touch screen cover, and gloves magic subsides and touch screen cover magic subsides mutually support.
As a preferred scheme, the inner layer of the glove is made of pure cotton spandex or high-elasticity lycra cloth; the glove heat insulation layer is far infrared tourmaline self-heating cloth; the outer layer of the glove is made of leather fabric, and the thickness of the outer layer of the glove is 0.5-0.8 mm; the heating body is a heating sheet and/or a heating film, the heating sheet is a carbon fiber heating body, the length of the carbon fiber heating body is 5-10cm, and the width of the carbon fiber heating body is 4-8 cm.
By adopting the preferred scheme, the pure cotton spandex or the high-elasticity lycra fabric has a plurality of novel fibers with excellent textile performance and has good elasticity and elastic recovery rate. In addition, far infrared tuo malin spontaneous heating cloth warmth-keeping protective equipment raw and other materials, intelligence is generated heat, and tuo malin layer that generates heat immediately according to body surface temperature and internal conditions. The tourmaline heating function point starts to heat when the skin temperature reaches a certain temperature. Various gem grade mineral nano fine powders (tourmaline powder, germanium powder and the like) are extracted by American high technology, and a negative ion far infrared cloth layer compounded by polymer energy reactor is adopted by combining the traditional Chinese medicine thermal moxibustion theory and adopting the condensation process. The far infrared ray and the stronger platinum magnet are continuously released by absorbing external energy and natural heat energy of a human body, can permeate skin and subcutaneous tissues, generate a resonance absorption effect with qi and blood in cells, and enhance the release of active substances in blood vessels. Meanwhile, the leather fabric is wear-resistant, breathable, bright in color, soft and elastic, waterproof and rainproof; has good toughness and durability.
In addition, the electrothermal conversion rate of the carbon fiber heating element is more than 30% higher than that of heating elements such as metal wires, and the thermal efficiency is as high as 99.9%; when the carbon fiber heating body is electrified, 99.9 percent of electric energy is converted into far infrared radiation with the wavelength of 5-20 microns which is extremely beneficial to the human health, and the electromagnetic wave is 0; the service life is long, and the service life of the carbon fiber heating body is as long as that of a building and can be as long as 50 years. The carbon fiber heats to 3000 ℃ in an anaerobic state, and the mechanical property of the carbon fiber is not changed; the tensile strength is 3-4 times higher than that of steel, the rigidity is 2-3 times higher than that of steel, and the fatigue resistance is 2 times higher than that of steel; under the condition of electric heating, the defects of low strength and easy oxidation and burning of electric heating materials such as metal wires, PTC, silicon carbide and the like are overcome.
According to the preferable scheme, the conductive fingertip touch screen sleeve is made of a nickel-copper conductive material, and the thickness of the touch screen body is 0.08-0.1 mm.
Preferably, the battery comprises a battery block and a switch, the battery block is electrically connected with the heating body, and the switch is electrically connected between the battery block and the heating body.
Preferably, the battery comprises a solar energy storage assembly, a battery block and a switch, the solar energy storage assembly comprises a film sleeve, a solar cell panel, a cell panel connecting line, a battery controller and a storage battery block, the film sleeve is of an annular structure, the inner surface of the film sleeve is pasted on the wrist of the glove body, the solar cell panel is pasted in the film sleeve along the circumferential direction of the film sleeve, the solar cell panel is electrically connected with the battery controller through the cell panel connecting line and then electrically connected with the battery controller, the battery controller is electrically connected with the storage battery block, the storage battery block is electrically connected with the heating body, and the switch is electrically connected between the storage battery block and the heating body.
By adopting the preferable scheme, the solar energy storage assembly is added, and solar energy is converted into a power supply to be stored in the storage battery block so as to supply power to the heating body.
Preferably, the battery block is electrically connected with a USB interface.
By adopting the preferable scheme, the USB interface can be used for charging the mobile phone and the tablet personal computer.
Drawings
Fig. 1 is the overall structure schematic diagram of the heat preservation glove for the operation of the capacitive touch screen of the present invention.
Fig. 2 is the utility model relates to a structural schematic diagram of glove heat preservation layer in heat preservation glove for capacitive touch screen operation.
Fig. 3 is a schematic structural diagram of a first embodiment of a thumb, a forefinger and a middle finger of the heat preservation glove for operating a capacitive touch screen of the present invention.
Fig. 4 is a schematic structural diagram of a first embodiment of the glove ring-shaped opening of the glove body in the heat-insulating glove for operating the capacitive touch screen.
Fig. 5 is a schematic structural diagram of a first embodiment of a touch screen sleeve annular opening of a conductive fingertip touch screen sleeve in the heat preservation glove for capacitive touch screen operation of the present invention.
Fig. 6 is a schematic structural diagram of a second embodiment of the thumb, the index finger and the middle finger of the heat preservation glove for operating the capacitive touch screen of the present invention.
Fig. 7 is a schematic structural view of a second embodiment of the glove ring-shaped opening of the glove body in the heat-insulating glove for operating the capacitive touch screen.
Fig. 8 is a schematic structural diagram of a second embodiment of a touch screen sleeve annular opening of a conductive fingertip touch screen sleeve in the heat preservation glove for capacitive touch screen operation of the present invention.
Fig. 9 is a schematic structural diagram of a third embodiment of the thumb, the index finger and the middle finger of the heat preservation glove for operating the capacitive touch screen of the present invention.
Fig. 10 is a schematic structural view of a third embodiment of the glove ring opening of the glove body in the heat preservation glove for operating a capacitive touch screen of the present invention.
Fig. 11 is a schematic structural diagram of a third embodiment of a touch screen sleeve annular opening of a conductive fingertip touch screen sleeve in an insulating glove for operating a capacitive touch screen according to the present invention.
Fig. 12 is a schematic view of the overall structure of another preferred embodiment of the heat preservation glove for operating a capacitive touch screen according to the present invention.
Fig. 13 is a schematic structural diagram of a solar energy storage module in a heat preservation glove for operating a capacitive touch screen according to the present invention.
The glove comprises a glove body, a heat insulation layer, a heating component and a conductive fingertip touch screen sleeve, wherein the glove body comprises 1 an outer layer, 2 an inner layer, 3 an insulation layer, 4 and 5.
Detailed Description
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
In order to achieve the object of the present invention, as shown in fig. 1-2, in one embodiment of the present invention, there is provided a heat insulating glove for capacitive touch screen operation, comprising a glove body, a heating element and a conductive fingertip touch screen sleeve 20, wherein the glove body comprises a glove inner layer, a glove heat insulating layer 40 and a glove outer layer 10, the glove heat insulating layer 40 is disposed between the glove inner layer and the glove outer layer 10, the heating element comprises a heating body 50 and a battery, the heating body 50 is adhered on the glove heat insulating layer 40, the heating body 50 is electrically connected with the battery, any fingertip position of the thumb, the forefinger and the middle finger of the glove body is provided with a glove annular opening, a glove connecting portion 11 is disposed on the glove body and close to the glove annular opening, the conductive fingertip touch screen sleeve 20 is provided with a touch screen sleeve annular opening, the conductive fingertip sleeve 20 is provided with a touch screen sleeve, the conductive fingertip touch screen sleeve 20 is detachably connected with the glove body through a mutually matched touch screen sleeve connecting part 21 and a glove connecting part 11.
Compared with the prior art, the heat-insulation glove has the advantages that the structure is simple and reasonable, the heating assembly generates heat, heat energy dissipation is reduced through the glove heat-insulation layer, heat can be supplied to a human body actively, the glove is small in thickness and comfortable to wear, meanwhile, the conductive fingertip touch screen sleeve can facilitate touch screen operation, when fingerprint identification is needed, the heat-insulation glove is convenient to detach and wear, and replacement is convenient.
As shown in fig. 3 to 5, in order to further optimize the implementation effect of the present invention, in another embodiment of the present invention, on the basis of the foregoing, the glove connecting portion 11 is 2 buttons sewn on the glove body, and the touch screen sleeve connecting portion 21 is 2 button holes opened on the conductive fingertip touch screen sleeve.
As shown in fig. 6 to 8, in order to further optimize the implementation effect of the present invention, in another embodiment of the present invention, on the basis of the foregoing, the glove connecting portion 11 is 2 snap-fit female fasteners sewn on the glove body, and the touch screen sleeve connecting portion 21 is 2 snap-fit male fasteners adhered on the conductive fingertip touch screen sleeve.
As shown in fig. 9 to 11, in order to further optimize the utility model discloses an implement the effect the utility model discloses an in another kind of implementation, on the basis of the aforesaid content, gloves connecting portion 11 is for making up the gloves magic subsides in the gloves ring opening part of gloves body, and touch screen cover connecting portion 21 is for pasting in the touch screen cover magic subsides of the touch screen cover ring form opening part of electrically conductive fingertip touch screen cover, and gloves magic subsides and touch screen cover magic subsides mutually support.
In order to further optimize the implementation effect of the present invention, in another embodiment of the present invention, based on the above content, the material of the glove inner layer is pure cotton spandex or high-elasticity lycra fabric; the glove heat insulation layer is far infrared tourmaline self-heating cloth; the outer layer 10 of the glove is made of leather fabric, and the thickness of the outer layer is 0.5-0.8 mm; the heating body is a heating sheet, the heating sheet is a carbon fiber heating body, and the length and the width of the carbon fiber heating body are 5-10cm and 4-8cm respectively.
By adopting the preferred scheme, the pure cotton spandex or the high-elasticity lycra fabric has a plurality of novel fibers with excellent textile performance and has good elasticity and elastic recovery rate. In addition, far infrared tuo malin spontaneous heating cloth warmth-keeping protective equipment raw and other materials, intelligence is generated heat, and tuo malin layer that generates heat immediately according to body surface temperature and internal conditions. The tourmaline heating function point starts to heat when the skin temperature reaches a certain temperature. The American high technology extracts various gem grade mineral nano fine powder tourmaline powder, germanium powder and the like, combines the traditional Chinese medicine thermal moxibustion theory, and adopts a negative ion far infrared cloth layer compounded by condensing the process into a high molecular energy reactor. The far infrared ray and the stronger platinum magnet are continuously released by absorbing external energy and natural heat energy of a human body, can permeate skin and subcutaneous tissues, generate a resonance absorption effect with qi and blood in cells, and enhance the release of active substances in blood vessels. Meanwhile, the leather fabric is wear-resistant, breathable, bright in color, soft and elastic, waterproof and rainproof; has good toughness and durability.
In addition, the electrothermal conversion rate of the carbon fiber heating element is more than 30% higher than that of heating elements such as metal wires, and the thermal efficiency is as high as 99.9%; when the carbon fiber heating body is electrified, 99.9 percent of electric energy is converted into far infrared radiation with the wavelength of 5-20 microns which is extremely beneficial to the human health, and the electromagnetic wave is 0; the service life is long, and the service life of the carbon fiber heating body is as long as that of a building and can be as long as 50 years. The carbon fiber heats to 3000 ℃ in an anaerobic state, and the mechanical property of the carbon fiber is not changed; the tensile strength is 3-4 times higher than that of steel, the rigidity is 2-3 times higher than that of steel, and the fatigue resistance is 2 times higher than that of steel; under the condition of electric heating, the defects of low strength and easy oxidation and burning of electric heating materials such as metal wires, PTC, silicon carbide and the like are overcome.
In order to further optimize the implementation effect of the present invention, in another embodiment of the present invention, on the basis of the foregoing, the material of the conductive fingertip touch screen sleeve 20 is nickel-copper conductive material, and the thickness of the touch screen body is 0.08-0.1 mm.
When a finger touches the metal layer, a coupling capacitance is formed between the user and the touch screen surface due to the electric field of the human body, and for high frequency currents, the capacitance is a direct conductor, so that the finger draws a small current from the contact point. The currents respectively flow out of the electrodes on the four corners of the touch screen, the currents flowing through the four electrodes are in direct proportion to the distances from the fingers to the four corners, and the controller obtains the position of a touch point through accurate calculation of the proportion of the four currents. And the conductive fingertip touch screen sleeve is made of a conductive material, so that the operation of the electronic screen can be realized.
In order to further optimize the effect of the present invention, in another embodiment of the present invention, on the basis of the foregoing, the battery includes a battery block 60 and a switch, the battery block 60 is electrically connected to the heat generating body 50, and the switch is electrically connected between the battery block 60 and the heat generating body 50.
In order to further optimize the utility model discloses an implement the effect, in the utility model discloses an in another kind of implementation, on the basis of the aforesaid, the battery includes solar energy storage component 30, battery block 60 and switch, solar energy storage component 30 includes film cover 31, solar cell panel 32, panel connecting wire 33, battery controller and battery block, the film cover is the loop configuration, the internal surface of film cover 31 is pasted in the wrist department of gloves body, solar cell panel 32 is pasted in film cover 31 along the circumferencial direction of film cover, be connected the back through panel connecting wire 33 electricity between the solar cell panel 32 and be connected with battery controller electricity, battery controller is connected with the battery block electricity, battery block and heating body electricity are connected, the switch electricity is connected between battery block and heating body.
By adopting the preferable scheme, the solar energy storage assembly is added, and solar energy is converted into a power supply to be stored in the storage battery block so as to supply power to the heating body.
In order to further optimize the implementation effect of the present invention, in another embodiment of the present invention, on the basis of the foregoing content, the battery block is further electrically connected to a USB interface.
By adopting the preferable scheme, the USB interface can be used for charging the mobile phone and the tablet personal computer.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected" and "connected" are to be construed broadly, and may for example be fixedly connected, detachably connected, or integrally connected; may be directly connected or indirectly connected through an intermediate. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many modifications and improvements can be made without departing from the inventive concept, and all of them belong to the protection scope of the present invention.
Claims (9)
1. A heat-insulating glove for operating a capacitive touch screen is characterized by comprising a glove body, a heating assembly and a conductive fingertip touch screen sleeve (20), wherein the glove body comprises a glove inner layer, a glove heat-insulating layer (40) and a glove outer layer (10), the glove heat-insulating layer (40) is arranged between the glove inner layer and the glove outer layer (10), the heating assembly comprises a heating body (50) and a battery, the heating body (50) is pasted on the glove heat-insulating layer (40), the heating body (50) is electrically connected with the battery, a glove annular opening is arranged at any fingertip position of a thumb, a forefinger and a middle finger of the glove body, a glove connecting part (11) is arranged on the glove body and close to the glove annular opening, a touch screen sleeve annular opening is arranged on the conductive fingertip touch screen sleeve (20), a touch screen sleeve connecting part (21) is arranged on the conductive fingertip touch screen sleeve (20, the conductive fingertip touch screen sleeve (20) is detachably connected with the glove body through a touch screen sleeve connecting part (21) and a glove connecting part (11) which are matched with each other.
2. The heat-insulating glove for operating the capacitive touch screen according to claim 1, wherein the glove connecting part (11) is a button sewn on the glove body, and the touch screen sleeve connecting part (21) is a button hole opened on the conductive fingertip touch screen sleeve.
3. The heat preservation glove for operating the capacitive touch screen according to claim 1, wherein the glove connecting part (11) is a snap-fit female button sewn on the glove body, and the touch screen sleeve connecting part (21) is a snap-fit male button adhered on the conductive fingertip touch screen sleeve.
4. The heat-insulating glove for operating the capacitive touch screen according to claim 1, wherein the glove connecting portion (11) is a glove magic tape sewn at the annular opening of the glove body, the touch screen sleeve connecting portion (21) is a touch screen sleeve magic tape adhered at the annular opening of the touch screen sleeve of the conductive fingertip touch screen sleeve, and the glove magic tape and the touch screen sleeve magic tape are matched with each other.
5. The thermal insulation glove for operating the capacitive touch screen according to claim 1, wherein the inner layer of the glove is made of pure cotton spandex or high-elasticity lycra cloth; the glove heat insulation layer is far infrared tourmaline self-heating cloth; the glove outer layer (10) is made of leather fabric and has the thickness of 0.5-0.8 mm; the heating body is a heating sheet and/or a heating film, the heating sheet is a carbon fiber heating body, the length of the carbon fiber heating body is 5-10cm, and the width of the carbon fiber heating body is 4-8 cm.
6. The heat preservation glove for operating the capacitive touch screen is characterized in that the conductive fingertip touch screen sleeve (20) is made of a nickel-copper conductive material, and the thickness of the touch screen body is 0.08-0.1 mm.
7. The thermal glove for operating the capacitive touch screen according to claim 1, wherein the battery comprises a battery block (60) and a switch, the battery block (60) is electrically connected with the heat generating body (50), and the switch is electrically connected between the battery block (60) and the heat generating body (50).
8. The thermal glove for operating the capacitive touch screen according to claim 1, wherein the battery comprises a solar energy storage assembly (30), a battery block (60) and a switch, the solar energy storage assembly (30) comprises a film sleeve (31), a solar panel (32), a panel connecting line (33), a battery controller and a battery block, the film sleeve is of a ring structure, the inner surface of the film sleeve (31) is pasted on the wrist of the glove body, the solar panel (32) is pasted in the film sleeve (31) along the circumferential direction of the film sleeve, the solar panel (32) is electrically connected with the battery controller through the panel connecting line (33), the battery controller is electrically connected with the battery block, the battery block is electrically connected with the heating body, and the switch is electrically connected between the battery block and the heating body.
9. The heat preservation glove for operating the capacitive touch screen is characterized in that a USB interface is electrically connected to the storage battery block.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920499371.7U CN210169133U (en) | 2019-04-12 | 2019-04-12 | Heat preservation gloves are used in capacitive touch screen operation |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920499371.7U CN210169133U (en) | 2019-04-12 | 2019-04-12 | Heat preservation gloves are used in capacitive touch screen operation |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN210169133U true CN210169133U (en) | 2020-03-24 |
Family
ID=69830920
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201920499371.7U Expired - Fee Related CN210169133U (en) | 2019-04-12 | 2019-04-12 | Heat preservation gloves are used in capacitive touch screen operation |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN210169133U (en) |
-
2019
- 2019-04-12 CN CN201920499371.7U patent/CN210169133U/en not_active Expired - Fee Related
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