
01
Fireproof life-saving suits
Rated to 2000°C. Self-heals in one-tenth of a second. Built for firefighter turnout gear and emergency rescue suits in burning structures.
New-generation firefighter suit rated to 2000°C.
The Heat Capsule by Green Heat Technology turns direct low-voltage power into hundreds of degrees of heat in seconds — wrapped in a specially developed fabric rated to withstand extreme heat.
Fossil-fuel heating is being phased out — the EU's EPBD already bans new gas boilers and clears them out entirely by 2040. But pushing all heating onto the electric grid would raise winter demand by ~75% and collapse existing infrastructure.
Heat pumps fail below -10°C and on old radiator systems. Resistive heaters drain bills. And diesel — the fallback of the Arctic, and of all off-grid life — costs 3–4× more than the mainland grid.
people worldwide live without access to any grid
European households expected to leave the grid by 2050
winter grid demand if heating goes fully electric
where heat pumps lose efficiency and fail
The world needs a new heat source: electric, off-grid capable, and thermally inefficient in exactly the places the old systems give a breakdown.
How technologies compare across the four factors that matter in an energy-crunch world.
← swipe table →
| Technology | Carbon | Grid | Cold climate | Cost |
|---|---|---|---|---|
Heat Capsule | Zero | Off-grid | Maximum | Low |
Gas combi boiler | Critical | Absolute | Good | Medium |
Heat pump | Zero | Absolute | COP loss | Very high |
Resistive heater | Zero | Absolute | Good | High bills |
Heat pumps fall short in old radiator buildings, resistive heaters burn cash. The Heat Capsule fills the gap with thermal inertia — the only solid heat-buffer in the class.
A thermodynamic leap: a compact 20 cm × 3 cm core that produces the heat of a full-size boiler — within seconds, from a battery. Traditional systems scream in huge boilers; the capsule does it a micron optical.
The proprietary "Smart Fabric" is the thermal heart. Inside a thermal-shock-proof glass shield, copper coils move the heat to water impulses in milliseconds.
Capsule anatomy
Thermal core
Integrated Smart Fabric with a proprietary material layout.
Glass shield
High-heat, thermal-shock-resistant housing.
Copper interface
Wound tubes transfer heat to the liquid instantly.
20 cm × 3 cm
Industrial miniaturization — the size of a pen.
The Heat Capsule: a column of deliberate heat, engineered to produce results traditional boilers measure in tonnes.
It is a conductive fabric obtained by carbonizing raw material woven to usage requirements under high heat. It stands out as fully organic and antibacterial — unlike its counterparts.
Active carbon molecules formed in the weave can generate electricity and withstand extreme heat.
It can block radio-frequency (RF) and GSM signals.
It is unaffected by highly acidic environments and can be used as a water and air filter.
R&D continues for new use cases across more industries.
The same carbonized textile opens fire, stealth, chemistry, signals, radiation, industry and munitions — a platform, not a single product.

01
Rated to 2000°C. Self-heals in one-tenth of a second. Built for firefighter turnout gear and emergency rescue suits in burning structures.
New-generation firefighter suit rated to 2000°C.

02
Special camouflage for army and special forces. Laminated onto UCAV, UAV and drone airframes with binders such as epoxy so platforms stay off radar. Thermal suits can vanish from imaging systems.
Thermal camouflage — invisible to thermal imaging.

03
The weave is so robust that even strong acids cannot destroy it. Chemical protection for surfaces, tanks and industrial plant.
Resistant to every kind of acid.

04
RF and GSM blocking built into the textile — rooms and enclosures that cut phone and radio signals.
Signal blocking.

05
Does not pass radiation. Enables hospital X-ray rooms and shielded medical spaces without conventional lead-heavy builds.
X-ray rooms and hospital shielding.

06
Conductive enough for industry: injection heat and related process lines. Also studied as a carbon replacement in batteries and for corrosion control in hydrogen fuel cells.
Industrial heat, batteries, fuel cells.

07
Coating the inner surface of ammunition boxes removes explosion risk at high temperatures. Even if a depot detonates, munitions can be protected and recovered.
Heat- and blast-resistant ammunition transport and safe storage.
Operating data observed in laboratory tests of the working prototype.
Direct battery/solar compatibility — no inverter, no gaps.
Our own test instruments ran out of range before the capsule did.
21V / 14A reaches 490°C; 20V / 16A → 460°C; 13V / 14A → 370°C.
A purpose-built fabric engineered to withstand extreme heat.
Keeps half its heat ~30 minutes after power cuts — a thermal buffer.
Duty cycle interruption beat the grid on overall consumption.
Amorphous thin-film panels collect visible light — even on overcast days.
A 24V battery bank is charged with conditioner, without inverter losses.
The thermostat pulses low-voltage power into the capsule on demand.
The core hits 400°C+ in seconds, boils the exchanger's water — and the circulation carries warmth to the radiators.
When power cuts, thermal inertia keeps heating for ~30 minutes. Drain-back or closed-circuit antifreeze guarantees winter safety.
Measured results from the working prototype — plus the fabric capabilities investors ask about first.
21V / 14A reaching 490°C in 14 seconds.
The capsule core igniting and sustaining.
Withstands up to 2000°C. Fireproof. Self-heals in a second.
From defense stealth to hospital X-ray rooms — the same carbonized fabric, specified per sector.

01
Special-forces thermal camouflage, UAV/UCAV coatings that stay off radar, fireproof gear and explosion-safe ammunition crates.

02
Radiation-shielding X-ray rooms, antibacterial surfaces and compact high-heat sterilization.

03
Lightweight, high-strength hood and body coatings with corrosion resistance.

04
Epoxy-laminated stealth skins for unmanned aircraft — flight-endurance platforms that radar cannot lock.

05
Conductive industrial heat, injection heating and the 24 V Heat Capsule line.

06
2000°C fireproof, self-healing fabrics for firefighter suits and life-saving turnout gear.

07
Metal-laminated hulls that stay off radar, resist fire and fight corrosion at sea.

08
On site and in the structure: corrosion-inhibiting wraps and coatings that protect rebar and concrete.

09
Fabric instead of charcoal in batteries; corrosion-prevention studies in hydrogen fuel cells.

Our fabric can be laminated with binders such as epoxy so unmanned aircraft stay off radar.
Flight record: 27 hours 3 minutes

Thermal camouflages can be produced to provide invisibility against thermal imaging systems.

Ships and boats laminated onto metal surfaces can be built so they are not caught by radar; they can also be made fire-resistant. Corrosion-resistant hulls and bodyworks can be produced.

Can be used to provide hygiene on surfaces.

Resistant to all kinds of acids.

Has lightweight and high-strength hood coating properties.

When concrete spalls and rebar rusts, the fabric’s corrosion-inhibiting wrap protects the structure.

The fabric can replace charcoal (carbon) inside battery cells.

Corrosion-prevention studies in hydrogen fuel cells.

Coating the inner surface of ammunition crates removes explosion risk at high temperatures; even if a depot detonates, munitions can be protected and recovered.

Kenan Kartal
Scientist shaping heat at the molecular level
Behind the numbers is a scientist who spent years studying how matter handles heat at the limit — Kenan turned that knowledge into a manufacturable technology: the Heat Capsule.
Now he is opening the door to patient, serious capital partners who can carry the technology from the lab bench to mass production.
“Trust is not a pitch — it is what you can measure. We take what we prove in the lab into the field, step by step, openly.”
We open the founding round with a working prototype in hand. A proven-energy-savings economy, 100% grid independence and a platform that runs from consumer hot water to heavy industrial lines and military gear.
30–60% measured energy savings vs. conventional systems — short payback.
Inverter-free DC from sun and battery; future-proof against gas-bans.
One core, form-factor flexibility from consumer to heavy industry to defence.
Proprietary material recipe and geometric layout; all data trade-secret.
Everything runs on a working prototype. Live measured data, live demonstrations.
490°C / 14 s
Measured high
21V — battery
Driven by
500°C+
Lab limit
30–60%
Savings
Pre-production. Full technical and financial package available under NDA.
We open the founding round with a working prototype in hand. A proven-energy-savings economy, 100% grid independence and a platform that runs from consumer hot water to heavy industrial lines and military gear.
≈24 MB
Investor presentation (PPTX) / Yatırımcı sunumu (PPTX)
↓Measured temperature climb to 490°C at 21V / 14A in 14 seconds.
Capsule core ignition and sustained heat without combustion.
Withstands up to 2000°C. Fireproof. Self-heals in a second.
PPTX + 3 Videos (≈164 MB)
Working core, measured thermal series, security case.
Field pairs at furnace and OEM customers, certification.
Serial capsule line, quality control, supply chain.
Global manufacturing, licensing and platform wins.
Laboratory product photos and the technical detail sheet. Click the detail image to enlarge.
Main Capsule
Tap to enlarge
Capsule Detail
Tap the image to enlarge the technical sheet
Tap · EnlargeSerious investors and strategic partners are invited to a live demonstration — on the bench or by video.
All conversations stay confidential.