Technology Introduction

Ion Heating

Differentiated Heating Method!
Achieving Technological Innovation

Precise power control is possible because of the different heating methods

Category Gas Boiler Electric Boiler Heat Pump Ion Heating System
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Principle Combustion Metal Electric Resistance Transferring low-temperature heat to high-temperature Water Molecule Friction Heat
Energy Conversion Efficiency 80% 90% 65% 99.9%
Heat Transfer Method Transferring heat to water Transferring heat to water Transferring heat to water Water directly producing heat

Heating Principle - Ion Heating
Direct heat generation using ions in water

Heating method utilizing ions, similar to ionized wind aircraft and ion spacecraft technology without fuel

Heat density is denser and higher
at the same temperature

Heat is generated by friction between individual electron particles and water molecules, preventing rapid cooling and using less energy.

Differentiated Heating Method

High efficiency with 99.6% energy conversion efficiency

Artificial Intelligence Control

Real-time temperature and current control
with artificial intelligence

AI detects temperature changes of just 0.5°C in real-time
Ultra-precise 10-stage control even for 0.1kW power consumption

Dramatic reduction in cumulative electricity usage

Exergy Efficiency

The AI ultra-precise power control of the ion heating system
prevents heat waste

Electricity Usage

Don't be confused about efficiency!

We compared electricity usage by recreating winter weather conditions.
Energy consumption is 28.1% less than that of heat pumps.

[Electricity Usage Verification Test]

Company Inverter Heat Pump Performance Comparison

*May vary depending on site conditions

[Hot Water Heating Verification Test]

Heating speed is approximately twice as fast
as the metal resistance heating method of electric boilers
of the same class in our verification test

Energy savings are possible because temperature rises
twice as fast as electric boilers, and power is saved