MSTARC 200

Fastest. Smartest. Dominant

With superior speed, precision countermeasures, and rugged endurance, it prepares forces for next-gen engagement complexity.

ROTATION MODEL

Twin-Jet Propulsion System

High-G Manoeuvre Capability (up to 8 g)

Long Endurance with Extended Range

Multi-Spectral Signature Simulation

Multi-Spectral Signature Simulation

Catapult Launch & Rapid Deployment

PLATFORM CAPABILITIES

Twin-Jet Propulsion System

High-G Manoeuvre Capability (up to 8 g)

Supersonic Threat Emulation

Long Endurance with Extended Range

Multi-Spectral Signature Simulation

Catapult Launch & Rapid Deployment

Technical parameters

Built with an advanced composite airframe and high-thrust twin-jet propulsion, the MSTARC-200 achieves exceptional aerodynamic efficiency and structural resilience for high-G, high-speed operations. Its design supports sustained supersonic flight, allowing the replication of advanced aerial threats for defence system training and evaluation.

Wingspan

2.33 meters

Length

3.7 meters

Gross Weight

240 Kg

Max Payload

40 Kg

Power Plant

Twin jet engine

Operational parameters

The MSTARC-200’s supersonic speed, altitude capabilities, and manoeuvrability enable it to emulate fifth-generation fighter and missile profiles, from low-level, high-speed sea-skimming runs to high-altitude strike simulations. Its extended tactical range and climb performance allow complete engagement sequences, from detection to interception, providing realistic and repeatable scenarios for defence forces.

Cruise Speed

150 m/s

Stall Speed

40 m/s

Max Speed

250 m/s

Max Altitude

10,000 m (MSL)

Min altitude

20 m (sea state 1)

Payload Capabilities

The MSTARC-200 features a modular, hotswappable payload system for mission flexibility. Payload mounts are designed for secure carriage and deployment during high-speed, high-G manoeuvres, enabling realistic multi-spectral threat replication.

Smoke tracking flares (up to 8) —

Produce visible trails for optical tracking and live-fire training.

Hot Nose —

Generates forward heat signature for realistic IR tracking scenarios.

Infrared tracking flares (up to 16) —

Simulate heat signatures for seeker engagement and countermeasure testing.

IR and radar chaff decoy dispensing pods —

For electronic countermeasure training.

IFF transponder (Modes A & C) —

For identification and radar integration training.

Luneberg lenses (360°) —

Increase radar cross-section for SAM and radar tracking exercises

Frequency-specific active radar augmenters —

Programmable to simulate different radar returns

Radar altimeter / sea-skimming module —

Enables low-altitude maritime threat profiles

Acoustic & Doppler radar MDI / instrumentation —

For telemetry and post-mission analysis.

External payload carriage —

Supports 30–45 kg class missile loads for strike simulation.