Custom avionics test equipment and HILs solutions for aerospace & defense. MIL-STD-1553B, ARINC protocols, HIL simulation
Advanced Avionics Test Equipment (ATE) Solutions for Mission-Critical Systems
Advanced Testing & Simulation Solutions
We deliver cutting-edge testing and simulation solutions for mission-critical electronic systems.
Our comprehensive suite combines Automatic Test Equipment (ATE) with Hardware-in-the-Loop (HIL) simulation platforms, designed for aerospace and defense applications.
Automatic Test Equipment (ATE) & Integration
Our state-of-the-art Automatic Test Equipment solutions automate complex electronic testing processes with minimal human intervention, ensuring accuracy, repeatability, and efficiency in validating mission-critical systems.
Key Features:
- Multi-UUT Testing Capability: Ground-based test facilities supporting single or multiple Units Under Test
- Comprehensive Testing Levels: SRU/Interface level and LRU/Functional level testing
- Advanced Simulation: Interface data simulation and real-time acquisition systems
- Intelligent Automation: Script-based test automation for consistent, repeatable results
- Real-time Analysis: Offline data analysis systems for detailed performance insights
- Video Display Integration: Specialized display systems for video output validation
- Signal Management: Advanced signal conditioning and distribution capabilities
- Safety First: Built-in safety protocols and protection mechanisms
Hardware-in-the-Loop (HIL) Simulation
Our HIL simulation platforms enable comprehensive testing of embedded systems by creating virtual environments that replicate real-world operating conditions, significantly reducing development time and costs.
Key Features:
- Accelerated Testing: Faster and more accurate test execution
- Risk Mitigation: Minimize hardware damage through virtual testing
- Cost Efficiency: Reduce development expenses by identifying issues early
- Resource Optimization: Efficient utilization of engineering resources
- Performance Enhancement: Improved system performance through iterative testing
Engineering Accuracy, Speed, and Reliability in Flight
Enhance precision and efficiency in aerospace testing with advanced ATE solutions.
Our systems deliver faster, more accurate results while optimizing engineering resources and reducing risks.
Cost Effective
Optimized testing processes minimize operational expenses.
Reduced Development Time
Accelerates project timelines through efficient automation.
Improved System Performance
Ensures reliable and precise testing for critical aerospace systems.
Reduced Test Cycle Time
Faster testing boosts productivity and reduces downtime.
Reduction of Data and Errors
Enhanced accuracy minimizes rework and ensures compliance.
Faster and More Accurate Tests
High-speed, high-precision testing improves efficiency.
Effective use of Engineering Resources
Automates routine tasks, freeing teams for innovation.
Minimized Risks
Reduces potential failures through consistent and reliable testing.
Redefining Aerospace Testing with Advanced ATE Solutions
Our Automatic Test Equipment ensures uncompromised accuracy and reliability for mission-critical aerospace systems.
Through smart automation and intelligent data validation, we deliver faster, safer, and more efficient testing processes.
End-to-End Testing Excellence
From SRU to LRU to complete system-level testing, we ensure comprehensive coverage.
Real & Simulated Environments
Interface seamlessly with actual units or simulation systems for flawless validation.
Smart Data Intelligence
Advanced acquisition and offline analysis systems enable data-driven decision-making.
Power & Signal Integrity
Built-in conditioning, safety protocols, and efficient distribution for uncompromised performance.
Next-Level Automation
Custom scripts and model integration streamline workflows, minimizing human intervention.
Immersive Visualization
Real-time video and data displays enhance accuracy and operational insights.
Advanced Hardware & Integration for Precision Aerospace Testing
Our ATE hardware modules are engineered for accuracy, reliability, and seamless integration.
From power distribution and signal conditioning to custom enclosures and modular SLSC systems, every component is designed to optimize performance, reduce downtime, and ensure mission-critical compliance.
Power Distribution Unit
Ensure seamless power management for mission-critical aerospace systems.
- Reliable Performance – Consistent power flow to all test modules.
- Built-In Safety – Overload and surge protection to safeguard equipment.
- Optimized Efficiency – Intelligent power routing minimizes energy loss.
- Mission-Ready Design – Built for high-demand aerospace environments.
Signal Conditioning
Deliver clean, precise, and interference-free signals for high-accuracy testing.
- Noise-Free Accuracy – Filters unwanted electrical noise for clear data.
- Level Adjustment – Ensures signal compatibility with various test units.
- High-Fidelity Data – Maintains measurement precision under harsh conditions.
- Enhanced Reliability – Critical for complex aerospace validation processes.
Switching Units
Seamlessly switch between multiple test points with aerospace-grade reliability.
- Fast Reconfiguration – Reduces downtime with quick routing adjustments.
- Aerospace-Grade Durability – Built for demanding testing environments.
- Workflow Optimization – Supports complex test sequences efficiently.
- Precision Control – Maintains accuracy across all switching operations.
BIBO (Break-In / Break-Out)
Flexible test point access for real-time monitoring and troubleshooting.
- Non-Disruptive Access – Modify connections without halting test cycles.
- Real-Time Insights – Identify and address issues instantly.
- Enhanced Flexibility – Perfect for dynamic aerospace test scenarios.
- Cycle Time Reduction – Speeds up testing and improves throughput.
Custom Enclosures and Schematics
Secure, accessible, and engineered for maximum operational efficiency.
- Tailored Design – Built to fit specific aerospace testing requirements.
- Enhanced Safety – Protects sensitive equipment from environmental factors.
- Streamlined Integration – Detailed schematics ensure smooth setup.
- Optimized Layout – Improves accessibility and reduces maintenance time.
SLSC Integration
Future-ready modularity for evolving aerospace testing needs.
- Scalable Architecture – Easily expand systems as requirements grow.
- Plug-and-Play Compatibility – Simplifies integration with modular platforms.
- Automation-Ready – Supports advanced testing scripts and workflows.
- Long-Term Efficiency – Reduces cost and complexity of future upgrades.
TEDLinx – Expertise in Advanced ATE Solutions
Delivering comprehensive, turnkey solutions for Aerospace & Automotive Avionics Test Systems, TEDLinx covers every stage – from system engineering to qualification and certification – ensuring precision, reliability, and compliance with global standards.
Our Capabilities
Our advanced Automatic Test Equipment (ATE) is designed to test avionics LRUs with seamless accuracy across multiple interfaces:
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Data Buses
MIL-STD-1553B, ARINC-429, RS-422/485/232
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Connectivity
Ethernet, USB, Discrete & Analog I/O
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Specialized Testing
Synchro/Resolver, Audio/Video Signals
Built for compliance with ICD (Interface Control Document) requirements, our solutions deliver repeatable, efficient, and high-precision validation.
Why TEDLinx is Your Go-To Partner for ATE Development
Domain Expertise
Proven experience in Aerospace & Automotive testing challenges.
End-to-End Expertise
Complete lifecycle support from design to testing & certification.
Modular & Scalable
Future-ready systems that adapt to evolving standards.
Compliance & Reliability
Built to meet AS9100, ISO 26262, AEC-Q100 standards.
Innovation-Driven
Continuous R&D in AI-based testing, IoT diagnostics, and next-gen HIL systems.
Competitive Edge
Faster verification & validation to reduce costs and accelerate deployment.
Ready to enhance your avionics testing capabilities?
Contact TEDLinx today for a custom ATE consultation and discover how our proven testing solutions can accelerate your aerospace development timeline while ensuring mission-critical reliability.