ITO-PET Conductive Film 25 Ω/sq 100×300 mm ATOMFAIR®

$44.00

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.

Research-grade ITO-PET film with 25 Ω/sq resistance, 100 × 300 mm sheets, ≤3% haze, and 0.05-0.175 mm thickness options. Order now.

ITO-PET CONDUCTIVE FILM 25 OHM 100×300MM FLEXIBLE TRANSPARENT ELECTRODE

RESEARCH GRADE MATERIAL

Product Overview

This ITO-PET Conductive Film is a laboratory-grade flexible transparent electrode manufactured via 25 Ohm magnetron sputtered deposition of indium tin oxide onto a PET transparent film substrate, followed by high-temperature annealing. Supplied in 100 × 300 mm sheets, the film delivers stable 25 Ω/sq conductivity with haze ≤3%, 100% coating adhesion, and curl ≤10 mm, making it a reliable flexible transparent electrode for bendable optoelectronic devices and printed electronics research. The annealed ITO coating exhibits excellent thermal stability, maintaining performance variation ≤1.3 after both 120-minute 80°C baking and -40°C freezing, and is fully -40°C to 80°C thermal cycling compatible. Available in three substrate thicknesses—0.05 mm, 0.125 mm, and 0.175 mm—to accommodate varying mechanical flexibility requirements in experimental designs.

Technical Specifications

PARAMETER DETAILS
Product Name ITO-PET Conductive Film
Product Type Laboratory Consumable
Manufacturing Process Magnetron Sputtering + High-Temperature Annealing
Sheet Dimensions 100 × 300 mm
Available Thickness 0.05 mm / 0.125 mm / 0.175 mm
Square Resistance 25 Ω/sq
Haze ≤3%
Coating Adhesion 100%
Curl ≤10 mm
Thermal Stability (80°C Baking 120 min) Variation ≤1.3
Thermal Stability (-40°C Freezing 120 min) Variation ≤1.3
Thermal Cycling Range -40°C to 80°C
Custom Configurations Other thickness specifications and sheet dimensions are available upon request. Please contact us via email for custom orders.

Key Features & Advantages

  • Wide-Range Thermal Cycling Stability: The annealed ITO-PET film withstands -40°C to 80°C thermal cycling with performance variation ≤1.3 after both high-temperature baking and cryogenic freezing, ensuring reliable electrode performance across diverse experimental thermal environments.
  • High Optical Quality with Low Haze: Haze ≤3% combined with 100% coating adhesion delivers minimal light scattering and zero delamination risk, essential for precision optical measurements and transparent device applications where interface quality governs performance.
  • Three Substrate Thickness Options: Available in 0.05 mm, 0.125 mm, and 0.175 mm, allowing selection of optimal mechanical flexibility versus handling robustness for specific experimental configurations from ultra-flexible sensors to self-supporting electrodes.
  • Performance Design Principle: With consistent substrate and manufacturing parameters, increasing ITO coating thickness reduces surface resistance while correspondingly decreasing optical transmittance—enabling informed thickness selection based on application-specific conductivity-transparency trade-offs.

APPLICATION SCOPE: Flexible transparent electrode for bendable organic light-emitting diodes and polymer solar cells. Transparent conductive substrate for flexible perovskite photovoltaic research. Electrode platform for wearable electrochemical sensors and biosensors. Transparent heater element for defogging and de-icing studies. Electromagnetic interference shielding layer for flexible electronics. Touch panel and flexible display prototype development. The ITO-PET film combines optical transparency, electrical conductivity, and mechanical flexibility for bendable transparent electrode applications where rigid glass substrates are unsuitable.
PACKAGING: Each ITO-PET conductive film sheet measures 100 × 300 mm and is available in three thickness specifications: 0.05 mm, 0.125 mm, and 0.175 mm. The conductive side is protected by a removable cover film. Sheets are packed flat between rigid backing boards in a protective envelope to prevent creasing and contamination during transit. Custom sheet dimensions and thickness specifications are available upon request. For bulk quantities or tailored configurations, please contact us via email.
IMPORTANT NOTICE: The fundamental performance relationship applies: increasing ITO coating thickness decreases surface resistance while reducing optical transmittance. Select thickness based on the conductivity-transparency balance required. Handle the film by edges only; avoid touching the ITO-coated surface. Remove the protective cover film immediately prior to use. Store in a dry, dust-free environment at room temperature. Avoid folding or creasing to preserve coating integrity. For detailed usage 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®

The ITO-PET conductive film requires careful handling to preserve the annealed ITO coating integrity. The film must be stored in dry, dust-free conditions at room temperature and protected from mechanical stress and thermal extremes beyond -40°C to 80°C.

  • Thermal Cycling Limits: The film is compatible with -40°C to 80°C thermal cycling, but exceeding this range may cause performance variation greater than 1.3.
  • Handling Precautions: Avoid touching the ITO-coated surface to prevent contamination and damage to the conductive layer.
  • Storage Conditions: Store in a dry, dust-free environment at room temperature to maintain coating adhesion and optical properties.
  • Mechanical Stress Avoidance: Avoid folding or creasing the film to prevent delamination and loss of conductivity.
  • Protective Film Removal: Remove the protective cover film immediately prior to use to avoid adhesion residues and surface contamination.

How does the thickness of ITO-PET conductive film affect the balance between sheet resistance and optical transmittance?

Increasing ITO coating thickness reduces surface resistance while correspondingly decreasing optical transmittance. For this 25 Ω/sq film, the three substrate thickness options (0.05 mm, 0.125 mm, 0.175 mm) allow researchers to select the optimal conductivity-transparency trade-off for their specific application, such as flexible OLEDs or perovskite solar cells.

What are the critical handling and storage requirements for ITO-PET conductive film to maintain coating integrity?

The film must be handled by edges only to avoid touching the ITO-coated surface, and the protective cover film should be removed immediately prior to use. Storage requires a dry, dust-free environment at room temperature, and folding or creasing must be avoided to preserve coating integrity. These precautions ensure 100% coating adhesion and prevent delamination or performance degradation.

What thermal cycling conditions can ITO-PET conductive film withstand without significant performance degradation?

The annealed ITO-PET film is compatible with thermal cycling from -40°C to 80°C, maintaining performance variation ≤1.3 after both 120-minute 80°C baking and -40°C freezing. This stability ensures reliable electrode performance across diverse experimental thermal environments, including cryogenic and elevated temperature conditions.

This ITO-PET conductive film (25 Ω/sq, 100×300 mm) is a flexible transparent electrode with annealed magnetron-sputtered ITO on PET, offering stable conductivity, ≤3% haze, and -40°C to 80°C thermal cycling stability with ≤1.3 variation. Available in three thicknesses (0.05–0.175 mm) for mechanical flexibility tuning, but requires careful edge-only handling and dry, dust-free storage to preserve coating integrity.

Positive

  • Wide-range thermal cycling stability: Annealed ITO-PET withstands -40°C to 80°C thermal cycling with performance variation ≤1.3 after both 80°C baking and -40°C freezing, ensuring reliable electrode performance across diverse experimental thermal environments.
  • Low haze with full coating adhesion: Haze ≤3% combined with 100% coating adhesion delivers minimal light scattering and zero delamination risk, essential for precision optical measurements and transparent device applications where interface quality governs performance.

Trade-offs

  • Handling sensitivity of ITO surface: The ITO-coated surface must not be touched; handle film only by edges. Avoid folding or creasing to preserve coating integrity, as mechanical stress can degrade conductivity and adhesion.
  • Controlled storage environment required: Store in a dry, dust-free environment at room temperature to prevent moisture absorption, dust contamination, or thermal degradation of the PET substrate and ITO coating.

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).

thickness

0.175mm, 0.125mm, 0.05mm

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