Advanced Plasma Technology
Proprietary plasma sources engineered for precise, repeatable and energy-efficient deposition at industrial scale.

Xtreme Plasma Coating Platform
PlasmX develops advanced plasma surface engineering technologies for semiconductor, solar, aerospace and fusion energy manufacturing.
Precision
Performance
Possibilities
Sub-micron layer control delivers consistent, high-quality coatings for demanding applications.
Dense, high-adhesion coatings improve component life, efficiency and reliability in critical environments.
Enabling new materials, applications and innovations across industries that shape the future.
What We Do
PlasmX develops advanced plasma coating and surface engineering technologies that enhance durability, efficiency and manufacturing performance for high-value industrial applications.
Proprietary plasma sources engineered for precise, repeatable and energy-efficient deposition at industrial scale.
Functional metal and ceramic layers that transform durability, conductivity, thermal behaviour and wear performance.
From qualification to production line integration, we take coating processes from laboratory proof to factory throughput.
Industries
Higher cell efficiency and lower cost per watt.
Ultra-clean chamber and wafer-grade surfaces.
Plasma-facing components built to survive extremes.
Thermal, erosion and corrosion protection at altitude.
Tooling life and productivity at production speed.
Advanced surface engineering for next-generation data storage.
Technology
One platform, engineered from the plasma source upward, delivering coating properties that conventional thermal and wet processes cannot reach.

Coat sensitive substrates without thermal damage or distortion.
Metallurgically bonded interfaces that resist delamination.
Near pore-free microstructures for barrier performance.
A single platform across a broad materials library.
Short cycle times that fit production takt, not lab schedules.
Linear scale-up from pilot cell to multi-line deployment.
Process Flow
Plasma cleaning and activation of the substrate.
Controlled high-density plasma field is established.
Metal or ceramic feedstock enters the plasma stream.
Coating builds layer by layer at low temperature.
Adhesion, density and thickness verified in process.
Why PlasmX
Shorter coating cycles and inline qualification compress lead times, so production capacity grows without new floor space.
Denser, better-bonded coatings extend component life and reduce failures, warranty exposure and unplanned downtime.
Low-temperature, low-waste processing removes hazardous chemistry and cuts the energy footprint per part.
Process data captured on every part gives engineering teams traceability and repeatability they can audit.
Applications

Efficiency-enhancing layers for next-generation photovoltaics.

Plasma-facing armour and first-wall protection systems.
Particle-controlled chamber and carrier coatings.

Hard, low-friction surfaces that multiply tool life.

Thermal barrier and erosion-resistant coatings.

Custom functional layers for emerging material systems.
About PlasmX
To redefine advanced manufacturing through breakthrough plasma technologies.
To become the global leader in next-generation plasma surface engineering.
Newsroom
The new pilot line brings qualification and low-volume production of plasma coatings under one roof.
Read moreLatest platform revision delivers dense ceramic layers without thermal distortion of the base material.
Read moreContamination control and component lifetime are reshaping how fabs specify chamber hardware.
Read moreOur engineering team will share results from fusion and aerospace qualification programmes.
Read moreContact
Speak with our engineering team about qualification programmes, pilot coatings and production deployment.