ITO Conductive Glass 7–10 Ω/sq 1.1mm Sputtered ATOMFAIR®

Price range: $49.00 through $366.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Magnetron-sputtered ITO conductive glass, 1.1mm thick with 7–10 Ω/sq sheet resistance; sizes from 10×10 to 100×100mm. Order now.

ITO CONDUCTIVE GLASS 7-10 OHM 1.1MM MAGNETRON SPUTTERED COATING

RESEARCH GRADE MATERIAL

Product Overview

This ITO Conductive Glass is manufactured by depositing an indium tin oxide thin film onto soda-lime or borosilicate base substrates via 7-10 Ohm magnetron sputtered coating technology. The product delivers excellent optical transmission with a wide bandgap, high visible-light transmittance, and stable electrical conductivity, making it a reliable optoelectronic device substrate for flat panel displays, solar cells, photoelectric window coatings, and various optoelectronic components. This listing is for 1.1 mm thickness with 7–10 Ω/sq sheet resistance. Square resistance is customizable from 1 Ω to 10000 Ω, with substrate thickness ranging from 0.05 mm to 10 mm. The product supports free selection of base materials manufactured to specification. Full precision laser cutting custom processing services—including laser cutting, engraving, etching, hole drilling, edge grinding, and polishing—are available to meet exact dimensional and patterning requirements.

Technical Specifications

PARAMETER DETAILS
Material Type ITO (Indium Tin Oxide) Conductive Glass
Coating Process Magnetron Sputtering
Thickness 1.1 mm
Square Resistance 7–10 Ω/sq
Custom Resistance Range 1 Ω–10000 Ω
Custom Thickness Range 0.05 mm–10 mm
Available Substrates Soda-Lime Float Glass / Ultra-White Glass / Borosilicate Glass / Quartz Glass / K9 Optical Glass / Sapphire Glass
Stock High-Borosilicate Substrates Asahi / SCHOTT / Corning (FTO/ITO Available)
Processing Services Laser Cutting / Engraving / Etching / Hole Drilling / Edge Grinding / Polishing / Ultrasonic Cleaning / Coating
Custom Shapes Square / Round / Hole / Slot / Irregular Workpieces
Custom Configurations Other substrate materials, dimensions, and processing specifications are available upon request. Please contact us via email for custom orders.

Key Features & Advantages

  • Extensive Substrate Material Selection: Available substrates include standard 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, with both FTO and ITO conductive coatings available.
  • Full-Range Resistance and Thickness Coverage: Square resistance from 1 Ω to 10000 Ω can be produced via magnetron sputtering. Substrate thickness spans from 0.05 mm ultra-thin sheets to 10 mm thick plates, matching the complete specification range required for diverse research and industrial applications.
  • Complete In-House Precision Processing: Integrated equipment for laser cutting, precision engraving, chemical etching, hole drilling, edge grinding, polishing, ultrasonic cleaning, and coating enables high-precision finished parts delivered from a single source, eliminating the need for multiple vendor coordination.
  • Flexible Custom Geometries and Markings: Supports square, round, hole-drilled, slotted, and irregular-shaped workpieces. Laser lettering, pattern etching, and precision cutting services allow device identification marking and custom electrode patterning directly on the coated substrate.

APPLICATION SCOPE: Transparent electrode substrate for flat panel display devices. Current collector for thin-film and perovskite solar cells. Photoelectric window coatings for sensors and detectors. Transparent conductive substrate for organic light-emitting diodes and optoelectronic components. Electrode platform for electrochemical biosensing and spectroelectrochemistry. EMI shielding windows for electronic instrumentation. The magnetron-sputtered ITO coating provides wide bandgap optical transparency combined with stable low-resistivity electrical performance across all application domains.
PACKAGING: This listing is for 1.1 mm thickness with 7–10 Ω/sq sheet resistance. Each substrate is interleaved with cleanroom-grade lint-free separation film and packed in a rigid protective container to prevent mechanical damage and particulate contamination during transit. Custom resistance, thickness, substrate material, and processing specifications are manufactured to order. For bulk quantities or tailored configurations, please contact us via email.
IMPORTANT NOTICE: ITO conductive glass surfaces may accumulate dust, grease, and organic contaminants during production, packaging, and transport. Cleaning is mandatory before use. Handle substrates by the edges using cleanroom-compatible tweezers to avoid surface contamination of the ITO-coated side. For custom laser-cut or engraved pieces, verify dimensional tolerances and edge quality requirements at the time of order. Store unused substrates in a dry, dust-free environment to maintain surface cleanliness. For detailed cleaning protocols, consult the user guidelines provided with the shipment.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This ITO conductive glass substrate requires mandatory cleaning before use to remove surface contaminants accumulated during production and transport. Handle substrates by edges with cleanroom-compatible tweezers and store in a dry, dust-free environment to maintain surface integrity.

  • Surface Contamination Sensitivity: ITO conductive glass surfaces may accumulate dust, grease, and organic contaminants, necessitating cleaning prior to use.
  • Mandatory Cleaning: Cleaning is mandatory before use to ensure optimal performance; consult provided guidelines for detailed protocols.
  • Handling Procedure: Handle substrates by the edges using cleanroom-compatible tweezers to avoid surface contamination.
  • Storage Requirement: Store unused substrates in a dry, dust-free environment to prevent surface degradation.
  • Custom Processing Verification: For custom laser-cut or engraved pieces, verify dimensional tolerances and edge quality at the time of order.

How does the 7–10 Ω/sq sheet resistance of this ITO glass affect its optical transmittance for visible-light applications?

The 7–10 Ω/sq sheet resistance provides a balance between conductivity and optical transparency. Higher sheet resistance (e.g., 100 Ω/sq) typically yields higher transmittance but lower conductivity, while lower resistance (e.g., 1 Ω/sq) increases conductivity at the expense of transparency. The magnetron-sputtered ITO coating on this substrate achieves wide bandgap optical transparency with stable low-resistivity performance, suitable for applications like flat panel displays and solar cells where both properties are critical.

What substrate material options are available for this ITO conductive glass, and how do they affect performance in high-temperature or UV-sensitive applications?

Available substrates include soda-lime float glass, ultra-white glass, borosilicate glass, quartz glass, K9 optical glass, and single-crystal sapphire. For high-temperature processes (e.g., annealing above 500°C), borosilicate or quartz glass is recommended due to their higher thermal stability. For UV-sensitive applications, quartz or sapphire substrates offer superior UV transmission. High-borosilicate substrates from Asahi, SCHOTT, and Corning are stocked regularly.

What are the mandatory cleaning and handling procedures for this ITO conductive glass to avoid surface contamination and ensure reliable device performance?

The ITO surface may accumulate dust, grease, 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 1.1 mm ITO conductive glass with 7–10 Ω/sq sheet resistance, produced by magnetron sputtering, offers broad substrate material options and full-range customization of resistance and thickness, making it suitable for transparent electrodes in displays, solar cells, and optoelectronics. However, users must account for mandatory pre-use cleaning and strict storage/handling protocols to maintain surface integrity.

Positive

  • Extensive Substrate Material Selection: Available substrates include soda-lime, ultra-white, borosilicate, quartz, K9 optical, and sapphire glass, with high-borosilicate options from Asahi, SCHOTT, and Corning stocked regularly, enabling precise optical and thermal matching for diverse research applications.
  • Full-Range Resistance and Thickness Customization: Square resistance can be tailored 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 optoelectronic and electrochemical device designs.

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 ensure reliable electrical contact and optical performance.
  • Strict Storage and Handling Conditions: Substrates must be stored in a dry, dust-free environment and handled only by edges with cleanroom tweezers to prevent surface contamination that could compromise 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).

size

10×10×1.1mm, 20×20×1.1mm, 50×50×1.1mm, 100×100×1.1mm