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| Film type | ESD film |
| Thickness | 50 micron |
| Width | 500 mm |
| Tape Width | 0-20 mm |
| Brand | Shilpent |
| Size | Width 8 mm x Length 20 m |
| Packaging Type | In a White plastic core |
| Total Tape Thickness Without Liner | 8mm, 12mm, 25mm, 50mm |
| Usage/Application | Research & Devlopment |
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Minimum Order Quantity: 1 Piece
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| Tape Width | 2 Inch |
| Shape | Round |
| Type | Single Sided |
| Material | Copper |
| Size | 1/2 inch |
| Brand | Shilpent |
| Adhesive | Self Adhesive |
| Length | 33m |
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Minimum Order Quantity: 5 Piece
Product Brochure
| Grade Standard | Research |
| Width | 2mm |
| Surface resistivity | 0.027 Ohms/ sq |
| Color | Black |
| Usage/Application | Research & Devlopment |
| Material | Graphene |
| Diameter | 8"x4" |
| Density | 2 g/cm3 |
| Brand | Shipent |
The GrapheneSheet is the only form of carbon (or solid material) in which every atom is available for a chemical reaction from two sides (due to the 2D structure). Particles at the edges of a graphene sheet have unique chemical reactivity. Graphene has a significant ratio of edge atoms of an allotrope. Graphene sheets are mostly the finest materials in the world. The graphene sheet is a single-atom-thick planar sheet of Carbon iotas which packed in a hexagonal lattice structure.
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Minimum Order Quantity: 10 Piece
Product Brochure
| Film type | Shielding film |
| Thickness | 0.175 mm |
| Width | 500 mm |
| Thickness(mm) | 175 micron |
| Color | Tranparent |
| Material | PET Sheet |
| Size | As client required |
| Feature | Conductive |
| Size (inch x inch) | 16inch x 16inch |
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Minimum Order Quantity: 10 Piece
Product Brochure
| Film type | ESD film |
| Thickness | 50 micron |
| Width | 500 mm |
| Brand | Shilpent |
| Weight | 25gm |
| Shape | Circle |
| Form Factor | Solid |
| Diameter | 1" to 4" |
| Resistivity | Less than 10 ohms |
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Minimum Order Quantity: 25 Piece
Product Brochure
| Film type | ESD film |
| Width | 500 mm |
| Thickness | 250micron to 0.5mm |
| Size | 1" to 4" |
| Shape | Circle |
| Polished Surface | Single Side Polished |
| Resistivity | Less than 10ohms |
| MOQ | 5 pieces |
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Product Brochure
| Film type | Polyethylene terephthalate |
| Thickness | 0.175mm |
| Width | 100mm |
| Surface resistivity | 8 – 10ohms/sq |
| Color | Transparent |
| Roll length | 200 m |
| Transmittance | >75% |
ITO (Indium Tin Oxide) coated PET is made by layering Tin Oxide on to a thin and transparent sheet of optical material, in this case, PET. An advanced sputtering method is used by us to create highly-effective ITO coated PET films. The sputtering coating method uses a vacuum-based technique to give perfect uniformity and adhesion to the ITO coat.
Apart from ITO coated PET sheet, other similar products include ITO coating on heat-stabilized film, transparent rigid polyester film, an anti-glare film. Not only this, but customized ITO coated products are also available on order.
The polyester film which coated is capable of excellent transmittance and resistance properties. It is even better than coating glass substrates. The ITO coated plastic is a remarkably flexible and versatile material. The innovative method used allows making one side of the transparent film conductive while the complete film remains transparent. Advanced coating technology will enable us to produce efficiently-stable products. There are numerous applications of ITO coated PET sheets in industries, such as aerospace, and electronics
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| Film type | Polyethylene Naphthalate |
| Thickness | 125 micron |
| Width | 50 mm |
| Surface resistivity | <15ohms/sq |
| Color | Transparent |
| Roll length | 50 m |
| Transparency | > 75% |
| Surface Roughness | < 2 nm |
The ITO Coated PEN sheet (Indium Tin Oxide coated Polyethylene Naphthalate) is a transparent, conductive substrate featuring an Indium Tin Oxide layer applied via magnetron sputtering on one surface, with the other remaining insulated. With its superior light transmittance, this film is highly suitable for advanced applications like dye-sensitized solar cells, as it offers excellent thermal stability and chemical resistance.
As a flexible, ready-to-use material, the ITO Coated PEN film is ideal for fabricating various flexible electronics, including touchscreens and sensors. Variants with low sheet resistance are well-suited for applications demanding high conductivity, such as transparent electrodes in thin-film solar cells, electrochromic devices, and thin-film switches. High resistance versions are commonly employed in touchscreen production for mobile communication devices.
PEN, with a chemical structure similar to polyethylene terephthalate (PET), exceeds PET in terms of physical and mechanical strength, gas barrier efficiency, chemical and UV resistance, heat tolerance, and radiation durability. The significantly higher cost of PEN compared to PET limits its broader adoption despite its superior properties.
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Product Brochure
| Film type | Polyethylene terephthalate |
| Thickness | 0.175mm |
| Width | 406 mm |
| Surface resistivity | 10^10 ohm |
| Color | Transparent |
| Roll length | 200 m |
| Transmittance | >75% |
ITO (Indium Tin Oxide) coated PET is made by layering Tin Oxide on to a thin and transparent sheet of optical material, in this case, PET. An advanced sputtering method is used by us to create highly-effective ITO coated PET films. The sputtering coating method uses a vacuum-based technique to give perfect uniformity and adhesion to the ITO coat.
Apart from ITO coated PET sheet, other similar products include ITO coating on heat-stabilized film, transparent rigid polyester film, an anti-glare film. Not only this, but customized ITO coated products are also available on order.
The polyester film which coated is capable of excellent transmittance and resistance properties. It is even better than coating glass substrates. The ITO coated plastic is a remarkably flexible and versatile material. The innovative method used allows making one side of the transparent film conductive while the complete film remains transparent. Advanced coating technology will enable us to produce efficiently-stable products. There are numerous applications of ITO coated PET sheets in industries, such as aerospace, and electronics
Additional Information:
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Product Brochure
| Film type | Polyethylene Naphthalate |
| Thickness | 125 micron |
| Width | 240 mm |
| Surface resistivity | <15ohms/sq |
| Color | Transparent |
| Roll length | 50 m |
| Transparency | > 75% |
| Surface Roughness | < 2 nm |
The ITO Coated PEN sheet (Indium Tin Oxide coated Polyethylene Naphthalate) is a transparent, conductive substrate featuring an Indium Tin Oxide layer applied via magnetron sputtering on one surface, with the other remaining insulated. With its superior light transmittance, this film is highly suitable for advanced applications like dye-sensitized solar cells, as it offers excellent thermal stability and chemical resistance.
As a flexible, ready-to-use material, the ITO Coated PEN film is ideal for fabricating various flexible electronics, including touchscreens and sensors. Variants with low sheet resistance are well-suited for applications demanding high conductivity, such as transparent electrodes in thin-film solar cells, electrochromic devices, and thin-film switches. High resistance versions are commonly employed in touchscreen production for mobile communication devices.
PEN, with a chemical structure similar to polyethylene terephthalate (PET), exceeds PET in terms of physical and mechanical strength, gas barrier efficiency, chemical and UV resistance, heat tolerance, and radiation durability. The significantly higher cost of PEN compared to PET limits its broader adoption despite its superior properties.
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Product Brochure
| Film type | Carbon loaded film |
| Width | 200 mm |
| Color | Grey |
| Roll length | 50 m |
| Density | 1 to 8 grams/cm3 |
| Tensile Strength | 28MPa |
| carbon content | 98% |
| L x W | 2 x 2 |
A Graphene conductive sheet is a single layer of Graphene (an allotrope of carbon) or, in other words, a one-atom-thick sheet of Graphene. It has a 2-dimensional hexagonal honeycomb-like structure. It is one of the thinnest and finest materials on the earth. It has sp2 hybridization exhibiting carbon-to-carbon bonds making the product sustainable and reliable for vivid applications.
It is a two-dimensional but single layer of carbon allotrope. When multiple layers of Graphene are stacked together, graphite has been obtained. The atomic structure of graphite and that of Graphene conductive sheets is the same. Since it is not in powder form, instead it is a thin film; there are more chances that it may suffer damages.
There are various methods to obtain the product, such as chemical vapor deposition (CVD), thermal exfoliation, chemical exfoliation, scotch tape, vacuum thermal annealing, direct ultrasound sonication, Graphene oxide reduction, micromechanical cleavage, and many more. At Shilpa enterprises, since we produce the product in bulk quantity, we use the chemical vapor deposition (CVD) method, as it is one of the best methods to obtain the product. In addition to this, there are a few additives that use to produce the compound. NaCl is one of the essential ingredients in the process of synthesizing the Graphene conductive sheet. Often the product is 98% pure since some filler can help improve the properties of the product.
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