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The cooling system

Included

Cable/Connector

assembly

TMEVnet maximizes the performance of conductors by maintaining the inside of cables in an extremely low-temperature cooling environment of -40℃ through a new method called liquid evaporation phase change. By utilizing the principle that the electrical resistance of conductors decreases as the temperature decreases, it aims to greatly improve power transmission efficiency.

Our 'liquid evaporation phase change technology' integrates the power system and cooling system to form a cooling zone.

A method of minimizing electrical resistance that impedes the flow of current in a conductor.

01

Power terminal
cooling system

Pink Poppy Flowers
Pink Poppy Flowers

03

02

01

02

Cable
cooling system

Pink Poppy Flowers

03

Two phase change
cooling system

Pink Poppy Flowers

Intelligent active thermal management system

DC pin temperature

Hotspot ΔT

Cable return temperature

Cooling efficiency metric

Compressor temperature and pressure

Refrigerant two-phase state

Current and voltage → R = V / I

AI analysis engine

Degradation pattern learning

Anomaly prediction

Level 1

Normal PID control

Level 2

Soft derating alarm

Level 3

Channel isolation and blocking

No derating

Maintain full performance

Lifetime prediction possible

Preventive maintenance alert

Cable/Connector Assembly Business Model

Cooling System 01

OPTION 01

TM single-phase solution

Insulating oil + cooling system

Retrofit integration into existing platforms.
(applied to existing systems without new development)

To be updated later

Cooling System 02

OPTION 02

TM two-phases solution

Two-phase boiling cooling system

Overcoming the thermal limits of existing systems through latent heat of vaporization, fundamentally blocking the PIN thermal runaway loop.

To be updated later

Cooling System 03

OPTION 03

TM megawatt solution

Direct 2-phase nucleate boiling cooling system

Direct 2-phase flow nucleate boiling · megawatt-class next-generation platform.

To be updated later

Power TM

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