Possible Threats

  • Explosion threat
    Possibility of destroying a facility (critical
    infrastructure element) or causing damage
    to the facility, personnel
  • Threat of hazardous substances

    Possibility of contaminating the facility with

    chemical, radioactive, or biological agents

    posing a threat to life and health

  • Threat of disruption of technological processes by creating an accident

    Critical damage to production lines,

    pipelines, and other equipmen

  • Threat of theft of material
    and other assets
    Intrusion into the facility with the aim of
    stealing material assets
  • Threat of information disclosure
    Intrusion into the facility to reveal security
    systems or locations of critical elements for
    further exploitation
  • Threat of theft of personal data
    and classified/commercial
    information
    Intrusion into the facility for photo/video
    capture of restricted information
  • Threat of disabling/temporarily
    disabling technical security
    equipment
    Flights of UAVs provoking activation of
    countermeasures while simultaneously
    “blinding” technical security equipment
    sensitive to air defence systems

We protect against next UAV types

  • Small UAVs
    Number of control/telemetry channels: 5
    Payload capacity: up to 2х kg
    Speed: up to 110 km/h
    RCS:0,01 m2
    Typical combat payload: 1 VOG/F1 grenade
  • Civil modified or Light strike UAVs

    Number of control/telemetry channels: 12+

    Payload capacity: up to 20 kg

    Speed: up to 250 km/h

    RCS: up to 1 m2

    Typical combat payload: High-explosive, thermobaric,

    incendinary ammunition; RPG-7 type warhead

  • SupportSmall UAVs, modified

    Number of control/telemetry channels: 5

    Payload capacity: up to 2х kg

    Speed: up to 11 km/h

    RCS: 0,01 m2

    Typical combat payload: 1-2 VOG F1 grenades

  • Maritime UAVs
    Number of control/telemetry channels: 12+
    Payload capacity: unlimited, models are evolving
    with high payload potential
    Speed: high
    RCS: low, nearly invisible to radar
Our clients and industries
Oil & Gas and
energy sector
Petrochemical
industry
Transport
infrastructure
Manufacturing
and R&D facilities
Administrative
facilities
Mass gathering
sites
Devices and software
  • Detector
    Reception range
    400 – 6000 MHz

    Radio scanning sector, azimuth × elevation
    360 × 60 degrees

    Operating temperature range
    –50 °C to +50 °C
  • RF Jammer
    Impact on UAV control channels, data transmission, and GNSS reception within
    0.25 – 1 GHz, 1.2 GHz, 1.4 GHz, 1.6 GHz, 1.7 GHz, 1.9 GHz, 2.4 GHz, 5.2 GHz, 5.6 GHz, 5.8 GHz

    Electronic suppression sector, azimuth × elevation - 360 × 60 degrees

    Operating temperature range
    –50 °C to +50 °C
  • Mobile UAV detection
    Frequency range in which the detection of radio signals of UAV control channels works,
    300 - 6000 MHz

    Azimuth direction determination accuracy*, degrees - 25

    Bearing determination range for FPV type UAVs, DJI Mavic 3, Autel, up to - 1000 meters
  • False Navigation Signal Module
    Effective spoofing range
    4000 meters and above

    Impact on navigation systems
    Glonass L1, Beidou B1I
    GPS L2, L5

    Operating temperature range
    –50 °C to +50 °C
Operator PC workstation
  • Intuitive
    interface
  • 2D/3D map
    background
  • Flexible
    configuration
  • Differentiated
    device control
Complex solutions
  • Basic complex device

    For small and medium facilities

    UAV detection, direction finding, and electronic suppression

  • Advance complex device

    For large critical infrastructure facilities

    UAV detection, direction finding, and electronic suppression (synthesizer type)

Regional Counter-UAS system
The regional control station includes on-site and off-site regional radio frequency detector complexes that provide data on UAV detection at protected facilities and/or in inter-facility space with the output of information to the regional monitoring point’s automated workstation, as well as monitoring points of the relevant government agencies.
If the UAV is used legally (the flight is registered and
permission is available), no countermeasures are taken.
Otherwise, the data is sent to the relevant government
agencies to make a decision on the application of
countermeasures.
National Counter-UAS system
The unification of regional monitoring points into a single system will ensure continuous control of UAS use throughout the country.
Creation of this architecture will establish suitable conditions for taking preventive measures to protect critically important objects. This task is crucial the context of the avalanche-like growth of the use of unmanned systems in various sectors life agriculture, oil & gas, logistics etc.
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