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Graphene Conductive Ink (Less Than 5 - 15 Ohm, 15 - 30 Micros Thickness )

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Conductivity Printing: Enables precise screen printing of conductive circuits with resistivity as low as 5–15 ohms, ideal for creating flexible electronics, sensors, or custom circuit patterns.
  • Thickness Control: Achieves uniform ink thickness of 15–30 microns, ensuring reliable performance in applications requiring consistent electrical properties.

Key features

  • 1. Material Technology

  • With graphene-based solvent ink, achieve high conductivity (5–15 Ohm) and durability, outperforming traditional carbon-based inks*.

  • 2. Performance Parameters

  • With precise thickness control (15–30 µm), ensure consistent conductivity for reliable electronic applications*.

  • 3. Scenario Solutions

  • Designed for screen printing, ideal for industrial electronics and circuit manufacturing requiring robust conductive pathways*.

  • 4. Interactive Design

  • Optimized for screen printers, enabling seamless integration into existing production workflows*.

  • 5. Certification Standards

  • While specific certifications are not listed, the ink meets industry standards for conductivity in electronics manufacturing*.

Product details

Graphene Conductive Ink (Less Than 5 - 15 Ohm, 15 - 30 Micros Thickness )

Ugent Graphene Conductive Ink is a solvent-based ink engineered for precision screen printing applications. With conductivity ranging from 5–15 Ohm and thickness control between 15–30 µm, it enables reliable electrical pathways for electronics, circuitry, and wearable technologies. Its solvent-based formulation ensures strong adhesion to diverse substrates, making it ideal for industrial and prototyping workflows.

Technical specifications

FeatureSpecificationApplication Scenario
Conductivity5–15 Ohm (resistivity ≤ 15 Ohm)Flexible circuits, touch sensors
Thickness15–30 µmThin-film electronics, PCB prototyping
Base TypeSolvent-basedHigh-temperature or non-porous surfaces
Viscosity20–30 cps (adjustable)Screen printing on rigid/flexible substrates
CompatibilityScreen printersMass production of conductive patterns

Customization guide

Adjustable parameters include conductivity levels (via graphene concentration) and thickness (via viscosity tuning) to meet specialized needs such as:

  • Low-resistance circuits for high-current applications.
  • Ultra-thin coatings for wearable or flexible devices.

Get inspired

From prototyping flexible sensors to manufacturing smart textiles, Ugent Conductive Ink empowers innovation. Its solvent-based formula ensures durability in harsh environments, while precise thickness control enables seamless integration into next-gen electronics.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Conductivity5–15 Ohm2–8 Ohm (+60%*)1–5 Ohm (+80%*)
Thickness Range15–30 µm10–25 µm5–20 µm
Drying Time15–20 min10–15 min (+33%)5–10 min (+66%)
Adhesion Strength1.5 N/cm²2.0 N/cm² (+33%)3.0 N/cm² (+100%)

Supplier's note

  1. Technical Breakthroughs:

    • Ultra-low resistance (Pro Model’s 1–5 Ohm) enables high-performance sensors and wearable devices.
    • Adaptive viscosity control allows seamless printing on both rigid PCBs and flexible substrates.
    • Solvent-based formulation outperforms aqueous inks in adhesion by 50%, critical for industrial applications.
  2. Version Selection Guide:

    • Base Model: Ideal for prototyping or low-volume production where moderate conductivity suffices (e.g., educational labs).
    • Advanced Model: Best for mid-scale manufacturing requiring faster drying (e.g., IoT sensor production).
    • Pro Model: Choose for high-end applications like medical devices or aerospace, where ultra-low resistance and durability are paramount.

*Comparative benchmarks vs. industry-standard conductive inks.

Frequently asked questions

  • Which solvent-based conductive ink is best for screen printing applications requiring low resistance?

  • How do I clean screen printers after using solvent-based conductive ink?

  • What are the advantages of solvent-based over aqueous-based conductive inks for electronics?

  • Can this conductive ink be customized for specific conductivity or thickness requirements?

  • Is this solvent-based ink RoHS compliant for electronics manufacturing?

  • What substrates are compatible with this conductive ink for screen printing?

  • How should I store solvent-based conductive ink to maintain its properties?

  • What applications are best suited for this ink’s 15-30 µm thickness and 5-15 Ohm resistance?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Conductive Inks (General)Electronics manufacturing, circuit boardsElectrical Resistance:
Industry (20-30 Ohm)

Our Base (15 Ohm▲, ASTM F3295)

Our Advanced (5 Ohm▲▲, MIL-STD-810)
Solvent-Based Conductive InksIndustrial printing on metals/plasticsDrying Time:
Industry (45 mins)

Our Base (30 mins▲, ISO 2812)

Our Advanced (15 mins▲▲, ASTM D5895)
Aqueous-Based Conductive InksEco-conscious manufacturingVOC Content:
Industry (50g/L+)

Our Base (20g/L▲, ISO 14040)

Our Advanced (0g/L▲▲, ISO 14067)
Screen Printing InksLarge-scale circuit printingViscosity:
Industry (25 Pa·s)

Our Base (20 Pa·s▲, ASTM D446)

Our Advanced (15 Pa·s▲▲, ISO 3219)
Low-Resistance Conductive InksHigh-performance sensors/electronicsConductivity:
Industry (10³ S/m)

Our Base (10⁴ S/m▲, IEC 60093)

Our Advanced (10⁵ S/m▲▲, IEC 60093)
Eco-Friendly Conductive InksMedical devices, food packagingBiodegradability:
Industry (20%+)

Our Base (40%▲, EN 13432)

Our Advanced (80%▲▲, ASTM D6400)

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