TRCS ARCHITECTURE • ACTIVE COOLING CONTROL

Portable cooling solution with embedded refrigeration.

On the market, cooling solutions are often either short-lived ice-pack systems or simple ventilation setups. THERMOGYS develops a portable, compressor-based cooling solution for private users and professionals who need sustained thermal relief in real heat.

Portable active cooling Sustained thermal relief Private & professional use

System Capabilities

In active development
01

Thermal sensing

Sensor placement and body mapping

02

Embedded response

Low-latency control logic

03

Active heat extraction

Compact closed-loop thermal management

Why it matters

Most field cooling systems are either short-lived or underpowered.

Current solutions generally fall into two industrial failure modes:

  • Ice-pack based cooling with limited duration and no active thermal control.
  • Ventilation-only systems that rely on airflow without embedded refrigeration.

THERMOGYS combines wearable form factor, embedded refrigeration and closed-loop control for stable thermal regulation in demanding conditions.

  • Portable active cooling for personal and professional use.
  • More than ventilation: true thermal regulation.
  • Built for sustained comfort in high-heat environments.
  • Precision-controlled PID algorithm for adaptive, real-time thermal response.
  • Modular architecture optimized for seamless OEM integration.
  • Mitigates physiological stress to sustain cognitive performance in critical roles.

How it works

Compact embedded refrigeration with precise closed-loop control.

Configure a thermal setpoint, engage the refrigeration system, and maintain stable temperature through intelligent PID regulation.

01
Thermal target icon

Define thermal target

Set the target temperature or cooling demand through the control interface.

02
Refrigeration icon

Activate refrigeration

The compressor and pump engage to provide active thermal extraction, not simple airflow.

03
Stability icon

Sustain thermal stability

PID-based control holds the system at the selected setpoint despite external load changes.

Use cases

Built for people who need more than a fan or a temporary solution.

The same architecture can support private comfort, field use, and professional heat-exposure scenarios.

Industrial workers

For long shifts in hot environments, where comfort and thermal safety are tightly linked.

Outdoor and field use

For people exposed to sun, heat, and sustained physical effort in demanding conditions.

Private and professional wear

A wearable solution that goes beyond passive systems and brings active thermal relief.

Concrete applications

Three quick examples of where the system is aimed.

Technology

TRCS Architecture: Portable Embedded Refrigeration.

Our proprietary Thermo Regulated Cooling Systems (TRCS) architecture delivers precise, active thermal control optimized for wearable integration.

Portable cooling architecture

A compact, compressor-based cooling path built for wearability and sustained use using R1234yf.

Embedded regulation

Sensing and control logic tuned to maintain stable thermal performance in real conditions using PID control.

Wearable integration

A format designed for integration into personal gear and professional equipment.

OEM & Technology Licensing

Demonstrating TRCS with a pilot partner.

The TRCS architecture is currently deployed in an exclusive pilot with a partner in the industrial wearable sector. Our production capacity is dedicated to optimizing this first field iteration rather than accepting broad public orders.

Proprietary Core System

Our algorithmic logic and fluid routing architecture are standardized, tested, and exclusive to our framework.

OEM Integration (Sales)

We supply the thermal modules and logic controllers for direct integration into your manufactured gear.

Application R&D

Our engineering consulting is strictly dedicated to adapting our system's form factor to your product's constraints.

Licensing & Supply

Flexible B2B models ranging from compiled software licensing (.hex) to complete hardware module supply.

DEVELOPMENT TIMELINE

R&D Roadmap & Work Packages

A visual roadmap for the TRCS demonstrator, with clear milestones, active work packages, and the next validation phases.

Nov 2025 — Sept 2026

Phase 1 - Complete

Theoretical Framework & Feasibility

Thermodynamic modeling and component sourcing. This phase culminates in a technical validation report, establishing the foundational architecture for embedded refrigeration.

Ongoing

Phase 2 We are here

Parallel Work Packages

Concurrent engineering tracks to accelerate deployment and drive the demonstrator into field validation.

  • WP1 - Hardware Prototyping: Physical integration of the micro-compressor, heat exchangers, and fluid routing.
  • WP2 - Control Logic: Development of the automated PID algorithm for low-latency thermal regulation and sensor data processing.

Upcoming

Phase 3

Field Testing & Validation

Exclusive deployment with our pilot partner. Real-world testing to validate thermal endurance, mechanical resilience, and physiological stress mitigation.

Future

Phase 4

Architecture Iteration & OEM Supply

Hardware optimization based on field telemetry and the transition to OEM supply integration.

Contact us

Bring THERMOGYS into your next product.

We are not accepting new public orders at this time. For future R&D discussions or to be informed when OEM licensing opens, contact us.

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