ITO CONDUCTIVE GLASS 3-4 OHM 1.1MM MAGNETRON SPUTTERED COATINGRESEARCH 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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This product requires cleaning before use to remove surface contaminants acquired during manufacturing and handling. Dry, dust-free storage is essential to preserve the ITO coating's optical and electrical properties.
- Surface Contamination: ITO conductive glass surfaces may accumulate dust, grease, and organic contaminants during production, packaging, and transport, making cleaning mandatory before use.
- Edge Handling: Handle substrates by the edges using cleanroom-compatible tweezers to avoid surface contamination of the ITO-coated side.
- Storage Conditions: Store unused substrates in a dry, dust-free environment to maintain surface cleanliness.
- Custom Order Verification: For custom laser-cut or engraved pieces, verify dimensional tolerances and edge quality requirements at the time of order.
What is the sheet resistance tolerance for the 3–4 Ω/sq ITO coating, and can the resistance be customized for specific optoelectronic applications?
The standard sheet resistance for this ITO conductive glass is 3–4 Ω/sq, as produced by magnetron sputtering. Custom square resistance from 1 Ω to 10000 Ω is available, allowing tailoring for applications requiring either higher conductivity or higher transparency. Substrate thickness can also be customized from 0.05 mm to 10 mm.
Which substrate materials are compatible with this ITO coating, and what options are available for high-temperature processing?
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. For applications requiring high-temperature processing, borosilicate, quartz, or sapphire substrates are available options.
What are the recommended handling and cleaning procedures for ITO conductive glass to maintain surface integrity?
ITO surfaces may accumulate dust and organic contaminants during production and transport; 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 (1.1 mm, 3–4 Ω/sq) uses magnetron sputtered coating on multiple base glass options, offering customizable resistance and thickness with in-house precision laser processing. Key operational constraints include mandatory pre-use cleaning and cleanroom handling to avoid surface contamination.
Positive
- Extensive substrate material selection: Available substrates include soda-lime float glass, ultra-white glass, borosilicate glass, quartz glass, K9 optical glass, and single-crystal sapphire, with high-borosilicate options from Asahi, SCHOTT, and Corning stocked regularly, enabling matching of thermal expansion and optical properties for diverse applications.
- Full-range resistance and thickness customization: Square resistance can be specified from 1 Ω to 10000 Ω and substrate thickness from 0.05 mm to 10 mm via magnetron sputtering, covering the complete specification range required for varied research and industrial optoelectronic device fabrication.
Trade-offs
- Surface contamination risk: ITO conductive glass surfaces may accumulate dust, grease, and organic contaminants during production, packaging, and transport; cleaning is mandatory before use to ensure reliable electrical and optical performance.
- Handling and storage constraints: Substrates must be handled by edges using cleanroom-compatible tweezers to avoid surface contamination, and unused substrates must be stored in a dry, dust-free environment to maintain surface cleanliness.
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).






