ITO CONDUCTIVE GLASS 7-10 OHM 0.7MM 100 PCS MAGNETRON SPUTTEREDRESEARCH GRADE MATERIAL
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TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official quotations.
EMAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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The ITO-coated glass surface is susceptible to contamination from dust, grease, and organic residues. Cleaning is mandatory before each use, and substrates must be stored in a dry, dust-free environment to maintain surface integrity.
- Surface contamination risk: The ITO conductive glass surfaces may accumulate dust, grease, and organic contaminants during production, packaging, and transport.
- Mandatory cleaning: Cleaning is mandatory before use to remove contaminants.
- Edge handling requirement: Handle substrates by the edges using cleanroom-compatible tweezers to avoid surface contamination of the ITO-coated side.
- Storage condition: Store unused substrates in a dry, dust-free environment to maintain surface cleanliness.
- Custom verification: For custom laser-cut or engraved pieces, verify dimensional tolerances and edge quality requirements at the time of order.
What sheet resistance range is available for this ITO conductive glass, and can it be customized for specific research applications?
The standard sheet resistance is 7–10 Ω/sq, but the product supports customization from 1 Ω to 10000 Ω via magnetron sputtering. Substrate thickness can also be customized from 0.05 mm to 10 mm, allowing researchers to tailor electrical and optical properties to their specific experimental requirements.
Which substrate materials are available for this ITO conductive glass, and how do they differ for optoelectronic applications?
Available substrates include soda-lime float glass, ultra-white glass, borosilicate glass, quartz glass, K9 optical glass, and single-crystal sapphire. High-borosilicate substrates from Asahi, SCHOTT, and Corning are stocked regularly. The choice of substrate affects thermal stability, optical clarity, and chemical resistance, with quartz and sapphire offering superior performance for high-temperature or UV applications.
What are the recommended handling and cleaning procedures for ITO conductive glass to avoid surface contamination?
ITO surfaces may accumulate dust, grease, and organic contaminants during production and transport, so cleaning is mandatory before use. Handle substrates by the edges using cleanroom-compatible tweezers to avoid contaminating the ITO-coated side. Store unused substrates in a dry, dust-free environment. For detailed cleaning protocols, consult the user guidelines provided with the shipment.
This ITO conductive glass substrate (7–10 Ω/sq, 0.7 mm thickness, 100 pieces) uses magnetron-sputtered indium tin oxide on a choice of glass substrates, delivering wide bandgap optical transparency and stable low-resistivity electrical performance for optoelectronic device fabrication. The product requires mandatory pre-use cleaning and edge-only handling to prevent surface contamination.
Positive
- Magnetron-sputtered ITO coating: The magnetron-sputtered indium tin oxide film provides wide bandgap optical transparency combined with stable low-resistivity electrical performance, suitable for transparent electrode applications in displays, solar cells, and optoelectronic components.
- Extensive substrate and customization options: Available substrates include soda-lime, borosilicate, quartz, K9 optical glass, and sapphire, with square resistance customizable from 1 Ω to 10000 Ω and thickness from 0.05 mm to 10 mm, enabling precise matching to research requirements.
Trade-offs
- Mandatory pre-use cleaning required: ITO surfaces may accumulate dust, grease, and organic contaminants during production and transport; cleaning is mandatory before use to maintain electrical and optical performance.
- Strict handling and storage protocols: Substrates must be handled by edges with cleanroom-compatible tweezers and stored in a dry, dust-free environment to avoid surface contamination that degrades device performance.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).






