TRACER AIRBORNE SIGNAL INTELLIGENCE SYSTEM

Detects and geolocates radio signal sources at distances over 20+ km*

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* Performance depends on conditions and configuration. Details are provided during a live presentation.

Detects various signal sources: UAV control points, EW systems, radar, Wi-Fi, and more

Shows frequencies that are not covered by EW in your area

Identifies active FPV control frequencies for more effective jamming

Azimuth + coordinates of detected emitters

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Based on our internal data, the majority of losses are caused by enemy strike UAVs, as well as artillery adjusted using UAVs

Typical solutions often “fight the UAV” rather than the operator behind it

The goal is to identify control points and other sources of emissions

РЕР TRACER 2.0

Changing the approach to countering UAVs

Problem

Changing the approach

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Illustration
Illustration
Illustration

* Performance depends on conditions and configuration. Details are provided during a live presentation.

Illustration
Illustration
Illustration
Illustration

Detects various signal sources: UAV control points, EW systems, radar, Wi-Fi, and more

Shows frequencies that are not covered by EW in your area

Identifies active FPV control frequencies for more effective jamming

Illustration

Azimuth + coordinates of detected emitters

Detects and geolocates radio signal sources at distances over 20+ km*

TRACER AIRBORNE SIGNAL INTELLIGENCE SYSTEM

Illustration

Problem

Changing the approach to countering UAVs

Changing the approach

РЕР TRACER 2.0

Based on our internal data, the majority of losses are caused by enemy strike UAVs, as well as artillery adjusted using UAVs

Illustration
Illustration

Typical solutions often “fight the UAV” rather than the operator behind it

Illustration

The goal is to identify control points and other sources of emissions

What is it TRACER

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TRACER — an airborne signal intelligence system

The system includes a hexacopter equipped with radio-electronic intelligence systems (SDR-based) and a ground control station

FEATURES OF TRACER SYSTEM

Identifies active frequencies to improve jamming effectiveness

FPV control frequencies

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illustration

UAV control points, EW systems, radar, Wi-Fi, and other emitters

Long-range signal source detection

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illustration

Direction finding and coordinate refinement by changing the measurement point

Azimuth + coordinates

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illustration

Shows frequencies/areas that are not covered by EW in your area

“Windows” in the spectrum

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illustration

Detects and intercepts analog FPV signal, shows frequency and direction

Intercepting analog video from FPV

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illustration

FEATURES OF TRACER SYSTEM

UAV control points, EW systems, radar, Wi-Fi, and other emitters

Long-range signal source detection

Illustration
illustration

Direction finding and coordinate refinement by changing the measurement point

Azimuth + coordinates

Illustration
illustration

Identifies active frequencies to improve jamming effectiveness

FPV control frequencies

Illustration
illustration

Detects and intercepts analog FPV signal, shows frequency and direction

Detects and intercepts analog FPV signal, shows frequency and direction

Illustration
illustration

“Windows” in the spectrum

Shows frequencies/areas that are not covered by EW in your area

Illustration
illustration

How system works

Captures the frequency and signal parameters

Target signal detection

2

Determines the direction (azimuth) to the emission source

Direction finding

3

Refines the source location on the map

Coordinate refinement

4

The built-in spectrum analyzer helps find the required signal

Radio spectrum monitoring

1

How system works

The built-in spectrum analyzer helps find the required signal

Radio spectrum monitoring

1

Captures the frequency and signal parameters

Target signal detection

2

Determines the direction (azimuth) to the emission source

Direction finding

3

Refines the source location on the map

Coordinate refinement

4

Gallery

Want a TRACER demonstration for your unit? Message us

TRACER Technical Specifications

* Actual performance depends on conditions, terrain, and configuration. Full details are provided during the presentation

Direction-finding accuracy:

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over 20 km (for ELRS 1W with a directional antenna)

Signal detection/direction-finding range:

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7.0 kg

Weight:

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40 min

Time in the air:

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up to 7 km

Radio link range:

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300–6000 MHz (expandable with antennas)

Scanning and direction-finding frequency range: 

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What it provides for your unit

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Better understanding of the radio environment and active emitters in the area

Expected result for the unit

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Timely information on FPV control frequencies to improve EW effectiveness

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Helps plan unit operations considering EW/UAV control activity

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Fewer “blind spots”: visibility into frequencies/areas not covered by EW

FAQ

  • Message us on Telegram/WhatsApp or leave a request — we’ll arrange the time and come for a demonstration.

  • Across Ukraine (location and conditions are agreed individually).

  • There are options tailored to your unit’s needs — details during the presentation.

  • Yes. After you contact us, we will provide a full description and answer your questions.

  • UAV control points, EW systems, radar, Wi-Fi, and other emitters (depending on conditions).

  • Short answer: performance depends on conditions. Base figures are in the specifications section; details during the demonstration.

Want a TRACER presentation for your unit?

 Contact us — we’ll come and demonstrate it in operation

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