High-risk response concept / Hardware prototype in development

FireGuard

Autonomous Tracked Firefighting Robot

Put the machine closer to danger.
Keep responders at a safer distance.

An autonomous tracked firefighting robot concept exploring thermal imaging, route planning, and AI-assisted decision support for high-risk environments.

Current stageThermal sensing / tracked chassis
Next milestoneControlled simulation testing
F/G — Concept vehicle studyDESIGN STUDY / 01
FireGuard tracked firefighting robot concept drawing An engineering-style concept drawing of a low-profile tracked vehicle with a sensor mast, thermal camera, and adjustable suppression nozzle. This is an illustration, not a photograph of a prototype. THERMAL SENSORSUPPRESSION NOZZLETRACKED BASE
TAIWAN
FIELD STUDY
Thermal field concept Illustration / not prototype imagery
Tracked mobility / Sensing / Suppression conceptFIELD ROBOTICS
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Keep people beyond the danger line. Bring better information into the field.

DESIGNED FOR HIGH-RISK RESPONSE

Perception / Localization / Decision support

See more of the scene.
Support the next decision.

FireGuard is being developed around one goal: reduce the need for people to approach extreme heat and smoke. Each capability will be evaluated through prototype work and controlled testing.

A

Thermal imaging and sensor fusion

Combine thermal camera and heat-sensor inputs to inform situational awareness and heat-source assessment.

Prototype integration
B

SLAM navigation and route planning

Explore simultaneous localization and mapping, then evaluate tracked mobility across complex terrain.

Testing planned
C

Claude AI context understanding

Explore how language-model assistance could organize mission context. On-scene decisions remain with the incident commander.

Concept validation

! FireGuard is an early-stage concept with a hardware prototype in development. Autonomous navigation, fire detection, and suppression performance have not yet been validated in simulation or outdoor tests.

Designed for high-risk response

Start where people cannot stay for long.

These are early use-case concepts. Any real deployment would require testing, professional procedures, and on-scene command approval.

01 / OUTDOORTerrain / Wind / Hotspots

Wildland fires

Explore remote observation and response support in hot, smoky, or hard-to-reach terrain.

02 / INDUSTRIALHeat / Equipment / Standoff

Storage tank and industrial fires

Study a mobile platform that could help teams assess conditions from a safer distance.

03 / CONFINEDComms / Visibility / Egress

Mining and confined-space incidents

Evaluate tracked mobility and sensor feedback for remote reconnaissance in limited-access areas.

A step-by-step validation path

Build from the chassis.
Work toward the field.

Dates below are current planning targets and may change with prototype integration and test results.

  1. Current stage

    Hardware prototype

    Thermal sensing module integration
    Tracked chassis testing

    In progress
  2. Q4 2026 / Target

    Simulation testing

    Evaluate sensing, navigation, and control workflows in a controlled environment.

    Planned
  3. Q2 2027 / Expected

    MVP outdoor validation

    Assess the platform and operating workflow in an initial outdoor validation.

    Expected

Help us make the prototype safer

We welcome expert guidance.

Perspectives from robotics, AI, firefighting, and disaster response can help shape what FireGuard should become.

Contact Hannn Technologies clippp40810@gmail.com