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Advanced Ceramic Thin Film Coatings An Enhanced Material Inc. Company · Medford, OR
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Advanced Ceramic Thin Film Coatings
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Safety Data Sheet Technical Data Sheet
Emissivity 0.92 @ 650°C
Temp Range −40°C to 650°C
Film Thickness 0.5 – 1.0 mil
Adhesion ASTM D3359 — 5B
Salt Spray >1000 hrs ASTM B117
Hardness 9H Pencil
Cure Temp Ambient or 250°F
Coverage ~200 ft² / qt
Application Spray — HVLP / Airless
UV Resistance Excellent
VOC <250 g/L
Substrate Steel · Al · Ti · Ceramic
Emissivity 0.92 @ 650°C
Temp Range −40°C to 650°C
Film Thickness 0.5 – 1.0 mil
Adhesion ASTM D3359 — 5B
Salt Spray >1000 hrs ASTM B117
Hardness 9H Pencil
Cure Temp Ambient or 250°F
Coverage ~200 ft² / qt
Application Spray — HVLP / Airless
UV Resistance Excellent
VOC <250 g/L
Substrate Steel · Al · Ti · Ceramic
Ceragraph — Advanced Materials
Emissivity0.92
Max Temp650°C
Hardness9H
Adhesion5B

Smarter
Coatings.

Advanced ceramic thin film technologies engineered for demanding environments where surface performance decides outcomes.

Explore Applications Discover the Platform
Industrial — Corrosion and wear control
Industrial Corrosion & wear control
Aerospace — Heat and reliability
Aerospace Heat & reliability
Data Centers — Thermal efficiency at scale
Data Centers Thermal efficiency at scale
Thermal Systems — Thermal management focus
Thermal Systems Thermal management focus
Emissivity — TC 0.92 @ 650°C
Operating Range −40 – 650 °C
Salt Spray — AC >1000 HRS ASTM B117
Film Thickness 0.5 – 1.0 MIL DFT
Pencil Hardness 9H ASTM D3363

Surface Philosophy

Control the Surface.
Control the Outcome.

Most component failures begin at the surface. Heat, friction, corrosion, oxidation, and chemical exposure all attack the interface between your material and the environment. Ceragraph technologies are engineered to defend that boundary — extending service life, reducing failure rates, and maintaining performance where conventional coatings fall short.

In data centers alone, thermal inefficiency costs operators billions annually in excess energy and cooling infrastructure. The surface is where that efficiency is won or lost.

40% of data center energy consumption attributed to cooling — a surface-level problem with a surface-level solution.
3× improvement in radiative heat transfer efficiency when high-emissivity ceramic coatings are applied to heat exchanger surfaces.
1000+ hours of validated salt spray resistance — ASTM B117 — for Ceragraph AC on steel substrates.

The Ceragraph Platform

Two Systems.
One Platform.

Engineered for different failure modes. Deployed from the same technical framework.

Protective System

Ceragraph AC

Anti-Corrosion Coating

A graphene-reinforced ceramic coating engineered to resist corrosion, UV degradation, and chemical attack on metal surfaces. Delivers durable, high-adhesion protection in a thin, sprayable film — without the weight or complexity of traditional epoxy systems.

Salt Spray Resistance>1000 hrs — ASTM B117
Adhesion5B — ASTM D3359
Pencil Hardness9H — ASTM D3363
DFT0.5 – 1.0 mil
Explore AC View TDS →

Thermal System

Ceragraph TC

Thermal Conductive Coating

A high-emissivity ceramic coating engineered to move heat away from critical components rapidly. Reduces heat soak, stabilizes thermal cycling, and extends component life in high-load environments — from EV power electronics to data center cooling infrastructure.

Emissivity0.92 @ 650°C
Operating Range−40°C to 650°C
Adhesion5B — ASTM D3359
ApplicationSpray — HVLP / Airless
Explore TC View TDS →

Data center server corridor — thermal load at scale
Data Center Thermal Efficiency

The Heat Problem
Is a Surface Problem.

Data centers consume over 200 TWh of electricity annually — roughly 40% of which goes to cooling. Ceragraph TC applied to heat exchangers, cold plates, and server chassis surfaces increases radiative heat transfer efficiency, reducing the thermal load that drives cooling energy demand.

200 TWh Annual global data center electricity consumption — and growing with AI workloads.
~40% Share attributed to cooling infrastructure — a direct surface efficiency opportunity.
0.92ε Ceragraph TC emissivity — near-blackbody performance for maximum radiative heat dissipation.
Explore Data Center Applications Talk to an Engineer

Applications

Where It Performs

Designed for environments that punish conventional finishes.

01

Industrial

Corrosion control, wear resistance, and chemical protection for infrastructure, equipment, and manufactured components.

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02

Aerospace

Thermal stability and surface reliability for propulsion components, structural surfaces, and high-cycle assemblies.

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03

Data Centers

Thermal efficiency coatings for server chassis, heat exchangers, cold plates, and cooling infrastructure at hyperscale.

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04

Thermal Systems

High-emissivity coatings for exhaust, heat exchangers, and thermal management surfaces under sustained load.

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Explore All Applications Talk to an Engineer

Documentation

Confidence Comes From Documentation.

Every Ceragraph product ships with complete technical documentation. We support your evaluation process with clear data, application guidance, and safety information — so your team can move from interest to implementation without ambiguity.

Looking for something specific? Contact us and we will route you quickly.

Technical Data SheetsFull performance specifications, application parameters, and test data for AC and TC.
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Safety Data SheetsGHS-compliant SDS documentation for safe handling, storage, and disposal.
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Application GuidanceSurface preparation, spray parameters, cure schedules, and inspection criteria.
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Engineering SupportDirect access to our technical team for product selection and evaluation support.
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Engineering Support

Engineering Support,
Not Just a Product.

We help you define a path forward. Whether you need product selection guidance, process documentation, or support structuring an evaluation, our team is available to work through the specifics with you — before and after the sale.

Talk to an Engineer Contact Ceragraph
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