T:3000
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UNMANNED
GROUND SYSTEMS

Ultra-light ballistic and fragmentation-protection solutions for unmanned ground systems. The main principle is to protect critical UGV components locally, without creating an excessively heavy hull, preserving range, autonomy and payload capacity of the platform

LOCAL PROTECTION OF CRITICAL SYSTEMS

PROTECTION FOR UGVs

Local protection of critical systems of an unmanned ground vehicle
ULTRA-LIGHT BALLISTIC COMPOSITES

PROTECTION FOR BATTERIES, COMMUNICATIONS AND ONBOARD ELECTRONICS

For a UGV, it is important to protect not the entire hull equally, but the components that determine power, control and stable platform operation. Ultra-light ballistic composites are used for local protection of batteries, communication systems, onboard electronics and other sensitive elements that must remain operational after fragment impact or mechanical damage

Casualty transport in a protected unmanned ground vehicle
PAYLOAD CAPACITY PRESERVATION

PROTECTED UGV FOR EVACUATION TASKS

For an unmanned ground vehicle, every kilogram affects range, operating time and available payload capacity. Instead of a fully enclosed heavy hull, local panels reinforce critical zones while leaving the platform with enough capacity for useful payload — including casualty transport in a protected configuration

FUNCTIONS AND CRITICAL FEATURES

PROTECTION PRINCIPLES FOR UNMANNED GROUND SYSTEMS

LOCAL PROTECTION

PANELS ARE INSTALLED WHERE THEY ARE REALLY NEEDED

PANELS
CRITICAL ZONES
MODULARITY

For a UGV, reinforcing individual critical components is more efficient than creating a fully enclosed heavy armored hull. This approach keeps protection where it is needed without overloading the entire platform

CRITICAL ELECTRONICS

PROTECTION OF COMMUNICATION, CONTROL AND ONBOARD SYSTEMS

COMMUNICATION
ELECTRONICS
CONTROL

Communication systems, onboard electronics and control units are critical for robotic platform operation. Their local protection increases UGV survivability without excessive mass growth across the whole structure

ENERGY RESOURCE

BATTERY PROTECTION WITHOUT LOSS OF RANGE

BATTERIES
RANGE
AUTONOMY

Battery packs require protection, but excessive mass reduces platform operating time. Ultra-light composites help balance energy-system protection and preserved UGV autonomy

WEIGHT AND MOBILITY

EVERY KILOGRAM AFFECTS MOVEMENT, OPERATION AND PAYLOAD

MASS
MOTION
PAYLOAD

For an unmanned ground system, protection weight directly affects range, operating time and available payload capacity. Armoring therefore has to be precise, lightweight and functionally justified

EVACUATION CONFIGURATION

PROTECTED CASUALTY TRANSPORT

EVACUATION
PROTECTION
PAYLOAD CAPACITY

Preserved payload capacity allows the UGV to be used in a protected evacuation configuration. Local panels help protect important platform systems without consuming the resource required for casualty transport

Need ultra-light protection for a UGV without critical loss of range, autonomy and payload capacity?

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