The Tx/Rx Module is a high-precision simulation and interference system designed for advanced electronic warfare and navigation security. Engineered for comprehensive GNSS coverage, this module provides critical capabilities for simulating and manipulating satellite signals, ensuring robust control over navigation environments in high-stakes operational scenarios.
Integrating multi-constellation support with sophisticated simulation modes, the module enables precise deceptive distance control and rapid initialization. Whether deployed for forced landing protocols or directional dispersal, this Tx/Rx Module delivers professional-grade reliability for wireless communication and electronic defense infrastructures.
Detailed Parameters
| GPS Support | L1 (1575.42MHz ± 1.023MHz) | BDS Support | B1 (1561.098MHz ± 2.046MHz) |
|---|---|---|---|
| GLONASS Support | G1 (1602MHz ± 4MHz) | GALILEO Support | E1 (1575.42MHz ± 12.276MHz) |
| Simulation Modes | Directional Dispersal, Navigation Interference | Special Functions | Forced Landing, Circling Function |
| Deceptive Distance | > 500m (at 10dbm) | Initialization Time | Rapid Power-on Initialization |
| Comm. Protocol | UDP Protocol | Custom Interface | Serial Communication Support |
Key Advantages
Multi-GNSS Compatibility
Seamlessly supports GPS, BDS, GLONASS, and GALILEO for global operational versatility.
Rapid Deployment
Ultra-fast power-on initialization ensures the system is operational in critical seconds.
High Precision Deception
Achieves deceptive distances exceeding 500m at 10dbm for effective signal manipulation.
Dynamic Simulation
Advanced circling and forced landing modes for precise target control and neutralization.
Flexible Integration
Compatible with UDP and customizable serial communication for diverse system architectures.
Directional Control
Optimized directional dispersal modes to minimize collateral signal impact.
Product Gallery
Management Platforms
Signal Orchestration
Centralized control of Tx/Rx frequencies and simulation modes across multiple modules.
Protocol Customization
Tailored UDP and serial communication settings for seamless hardware integration.
Real-time Monitoring
Instant feedback on signal strength, deceptive distance, and system health status.
Automation Scripts
Pre-programmed sequence for forced landing and circling functions to reduce human error.
Network Topology
Scalable architecture allowing for a network of modules to cover wide geographic areas.
Security Encryption
Secure command links to prevent unauthorized access to the simulation control plane.
Investment Return Comparison
| Feature Metric | Standard Modules | Our Tx/Rx Module |
|---|---|---|
| GNSS Range | Single Constellation | Quad-Constellation Support |
| Init Speed | Slow/Manual | Rapid Power-on Auto-init |
| Control Logic | Basic Jamming | Advanced Simulation/Deception |
| Integration | Fixed Protocol | UDP & Custom Serial Support |
| Precision | Low/Variable | High (>500m Deception) |
Frequently Asked Questions
The module provides comprehensive support for GPS L1, BDS B1, GLONASS G1, and GALILEO E1 frequencies, ensuring global coverage.
The forced landing function simulates navigation data that triggers a target drone's safety protocol, compelling it to land in a controlled area.
By manipulating the signal phase and timing, the module can make a receiver perceive its location as being more than 500m away from its actual position.
Yes, the module uses the UDP protocol and supports customized serial communication, making it highly compatible with third-party management software.
Interference generally disrupts the signal to cause loss of lock, while deception provides false but plausible data to lead the target to a specific location.
Yes, its compact design and rapid initialization make it an ideal component for vehicle-mounted jammer and spoofing systems.







