RSUTS

The Radar Seeker Unit Test System (RSUTS) is a high-performance testing platform designed for comprehensive evaluation of missile radar seeker units. It enables complete testing of seeker interfaces, passive detection, active jamming, inter-missile communication, active altimetry and imaging, as well as active monopulse search and tracking capabilities. The system is suitable for use across missile development, production, and maintenance phases, providing reliable verification of radar guidance subsystems.

The RSUTS supports advanced simulation of radar echoes and target returns, and allows precise measurement of transmitted signal characteristics including bandwidth, pulse width, intra-pulse features, and power. It can generate broadband passive signals for sensitivity and capture testing, provide required control commands and auxiliary data for seamless interaction with the seeker, and record output measurement and imaging data for performance analysis. Test results are automatically compiled into professional reports.

Key advantages include fully automated and unattended testing capabilities, flexible single-step professional mode, rapid one-key operation mode, and integration with onboard computer simulations for real-time radar sequence control. The system ensures high accuracy, repeatability, and reliability for all radar seeker testing scenarios.

Specifications

Active RF Band: Ku, Ka
Active Signal Bandwidth: 1 GHz
Echo Data Storage Capacity: 1–4 TB
Extended Targets: 1–64
Passive RF Frequency Range: 0.38–18 GHz, 1 GHz bandwidth
Passive RF Output Frequency Accuracy: ≤ 10 kHz
Passive Channels: 1–2
Timing Control Interfaces: 1 Mbps / 4 Mbps 1553B, CAN2.0, Fiber Optic
Recording Interfaces: Serial LVDS, Parallel LVDS, RS422, Fiber Optic
Recorded Data Storage Capacity: 2–8 TB
Motion Target Simulator: Lateral/Longitudinal Range: –400 mm to +400 mm, Position Accuracy ≤1 mm
Microwave Anechoic Chamber: 2–40 GHz
Absorber Plate Reflectivity: ≤ –35 dB

Main Features:

  • Comprehensive functionality, capable of standalone operation

  • Simulates onboard computing for radar sequence control

  • Rapid test mode with automatic report generation

  • Professional test mode with single-step operation and open parameter settings

  • Automated and unattended testing with programmable power-on/off functions

Application Areas:

  • Research, development, production, testing, acceptance, and inspection of missile radar seeker units

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