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TUNGA MOBILE
TEST SYSTEM

A modular, economical and scalable solution for Electronic Warfare (EW), radar and communication system test activities.

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TUNGA EW — Mobile Test System

Tunga EW Mobile Test System is a modular, economical, and scalable solution designed to increase the efficiency and reduce the cost of test activities carried out for Electronic Warfare (EW), radar and communication systems.

By centering verification and validation processes within a modular framework, the system aims to overcome the challenges encountered in these phases with ease.

Rather than being deployed at a fixed point, the system is designed to carry configurable payloads which reduce the need for maneuvering by the target platform. Desired test scenarios can be performed easily through the repositioning of the Tunga EW Mobile Test System around the target.

The system allows for a variety of mission executions depending on the integrated payload:

Integration of an RF emission infrastructure onto the mobile platform enables transmission of controlled signals to the target Radar Electronic Support (ESM) System from different azimuth/elevation angles.

With the integration of a modular spectrum analyzer, it becomes possible to evaluate the efficiency of emission sources.

Attaching an RF reflector to the platform enables the simulation of a low-cost target with high Radar Cross Section (RCS) for source radars. By altering its position at various speeds, the tracking capabilities of the source radar system can be tested.

In addition to current configurations, custom design and production services are provided to meet specific test requirements of system manufacturers and integrators. These test activities are supported and documented by our experienced systems engineering team.

General Features
  • Low power consumption
  • Scenario creation via user interface software
  • Autonomous test execution capability
  • Manual control option for test scenarios
  • Emergency return-to-launch-point capability
  • SWaP (Size, Weight, and Power) optimized design
  • Target tracking via onboard camera for maximum efficiency
  • >20 minutes of flight time with payload
System Hardware Components
  • Custom-built Drone
  • Flight Control Board, GPS & Telemetry
  • Remote Controller
  • Li-Po Battery
  • 1000W Charger
  • 3-Axis Gimbal
  • High-Resolution Camera
  • Compact Test Module
  • Payload
  • Payload Power System
  • Payload Power System Charger Kit
RF Emitter Version Features
  • Optional harmonic suppression module
  • Operating frequency range: 2 – 18 GHz
  • Emission via double-ridged horn antenna
  • Broadband high-gain RF power amplifier
  • Frequency adjustment resolution: 0.1 Hz
  • Amplitude adjustment in 0.01 dB steps
  • Supports Pulse, AM, FM modulation types
  • FMCW chirp signal capability
  • Minimum pulse width: 1 μs
  • Adjustable pulse width with 1 μs resolution
  • Frequency and amplitude scanning (linear and list mode)
RF RTSA Version Features
RTSA40 System
  • Receiver antenna tailored for operational needs
  • Superheterodyne digital receiver architecture
  • RTSA receiver with 9 kHz–40 GHz coverage
  • 100 MHz analysis bandwidth with adjustable sampling
  • 400 GHz/s spectrum sweep rate
  • DANL: –141 dBm/Hz
  • Phase noise: –86 dBc/Hz @ 10 kHz
  • FPGA-based digital signal processing
RTSA20 System
  • Receiver antenna tailored for operational needs
  • Superheterodyne digital receiver architecture
  • RTSA receiver with 9 kHz–20 GHz coverage
  • 100 MHz analysis bandwidth with adjustable sampling
  • 1.2 THz/s spectrum sweep rate
  • FPGA-based digital signal processing
RF Reflector Version Features
  • Integration capability with different types of reflectors
  • Mechanical design enabling high-speed movement
  • Extended airborne time enabled by low power consumption

CONTACT US

Address:

Ankara University Teknokent, Bahçelievler Mah.
319 Cad. No: 35, C1/5 06830, Gölbaşı, Ankara

Phone:

+90 (312) 485 66 99