Purpose-built for modern air defense training, it delivers adaptive payloads, twin-engine
reliability, and dynamic threat replication under real-world conditions.
ROTATION MODEL
High-Speed Threat Emulation
High-G Manoeuvre Capability
Twin-Jet Propulsion System
Long Endurance with Extended Range
Multi-Spectral Signature Simulation
Catapult Launch & Rapid Turnaround
PLATFORM CAPABILITIES
High-Speed Threat Emulation
High-G Manoeuvre Capability
Twin-Jet Propulsion System
Long Endurance with Extended Range
Multi-Spectral Signature Simulation
Catapult Launch & Rapid Turnaround
Technical parameters
Built with a robust composite airframe and twin
jet propulsion, the MSTARC-80 achieves
exceptional thrust-to-weight performance,
enabling it to carry diverse signature-emulation
payloads while maintaining aerodynamic
efficiency. Its structural design supports sustained
high-speed operations and high-G manoeuvres
for realistic threat replication in demanding
defence training environments.
Wingspan
1.85 meters
Length
3 meters
Gross Weight
160 Kg
Max Payload
30 Kg
Power Plant
Twin jet engine
Operational parameters
The MSTARC-80’s speed and altitude profile allow
it to replicate a broad spectrum of aerial threats
— from low-level, high-speed sea-skimming
missile approaches to high-altitude strike
simulations. Its extended operational range and
climb performance enable complete engagement
sequences from launch through intercept,
providing a realistic and repeatable training asset
for defence forces
Cruise Speed
120 m/s
Stall Speed
45 m/s
Max Speed
200 m/s
Max Altitude
8,000 m (MSL)
Min altitude
20 m (sea state 1)
Payload Capabilities
The MSTARC-80 features a configurable payload
system with hot-swappable mission modules,
allowing rapid reconfiguration for varied threat
profiles. Payload mounts are engineered for
secure carriage and safe deployment during highspeed, high-G manoeuvres, enabling realistic
multi-spectrum threat replication for advanced
training scenarios.
Smoke tracking flares (up to 8) —
Produce persistent visual trails for
optical tracking and live gunnery
practice.
Hot Nose —
Generates forward heat
signature for realistic missile and aircraft
IR tracking scenarios.
Infrared tracking flares (up to 16) —
Emulate heat signatures for IR seekers
and flare-dispersion countermeasure
testing.
IFF transponder (Modes A & C) —
Integration for
identification/interrogation training and
scenario realism.
Luneberg lenses (360°) —
Dramatically
increase radar cross section for realistic
radar tracking and SAM training.
Frequency-specific active radar
augmenters —
Programmable repeaters
to emulate different radar return
characteristics.
Radar altimeter / sea-skimming module
—
Enables low-altitude maritime threat
profiles and sea-skimming simulations
Acoustic & Doppler radar MDI /
instrumentation —
Telemetry and
signature sensors to provide postmission analysis and range
instrumentation data.