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Avionics

Enhancing Safety and Efficiency in Aviation​

Avionics

Avionics

Enhancing Safety and Efficiency in Aviation​

Flying High with Avionics​

Flying High with Avionics​

The advancements in Avionics, which have evolved fly-by-wire and glass cockpits to effectively declutter the cockpit, are not just technological feats. These are significant developments affecting the potential future growth of aviation. Avionics in the twenty-first century must meet a wide range of requirements, such as platformization, autonomous flight, miniaturization, fuel efficiency, improved aircraft capacity, higher performance, operation simplification, unmanned air mobility, and integration with various sensors. Each of these developments has had a major impact on how aviation has evolved.

Avionics play a crucial role in enabling efficiency through effective flight management, flight controls, and fuel management, whether it's for a complete or hybrid electric energy source. A battery management system is necessary to ensure proper power distribution, conversion, and storage at different thrust levels during lift, cruise, and landing. In addition to ensuring improved endurance, this also contributes to fuel cell weight reduction to enhance aerodynamics. Additionally, it is satisfying for airlines to be able to increase flight capacity through efficient operations. Consistent pilot experience across different families of avionics for different aircraft platforms ensures efficient pilot operations and can significantly reduce training costs for airliners when switching between fleets.​

Tata Elxsi provides a comprehensive engineering toolkit to enable avionics development. We take care of everything, from embedded software development that complies with the rigorous DO-178B/C security standards for critical systems to hardware design and analysis. We have experience designing boards and FPGAs in accordance with DO-254 guidelines. Additionally, we offer modeling and simulation solutions to predict performance before physical implementation. Our reverse engineering capabilities are at your service. Finally, we design test rigs and automate test execution to guarantee functionality and reliability in your avionics. ​

Flying High with Avionics​
Here’s How We Can Help You ​

Here’s How We Can Help You ​

Here’s How We Can Help You ​

Scaling down Avionics form factor, without compromising the functions

  • Software development based on DO178C 
  • Design and development of Micro-Electronics, FPGA based VHDL programming based on DO254
  • Environmental Requirements based on DO160G/MIL810


Provide common operations and performance between LRUs that are installed in different fleet.

  • Incremental Software Development based on DO178C 
  • Change Impact analysis for the Supplemental Certification


Accelerating the development of microelectronics and providing improved operational safety and efficiency.

  • Rapid Prototyping and Testing​​
  • Product engineering – Proof of concept to production
  • Model development & Verification


AI-Powered Cybersecurity Tool

  • Software development for mitigation of cybersecurity threats​
  • Security testing of applications and systems: functional testing, penetration testing​​
  • Designing for infrastructure security: network security, endpoint security​
  • DevSecOps consulting ​

Service Framework

Avionics

Why Tata Elxsi​

  • Trusted Ally in Avionics: Comprehensive Design, and Development for safety and  mission-critical systems​
  • Airborne Systems & Standards: Skilled team with experience in Aerospace, Defense and Space System Certification​
  • Speed and Effectiveness: Proficiency to facilitate faster and more efficient New Product Development (NPD)​

In Focus

Gateway unit for Mars Mission Probe
Case Study

Gateway unit for Mars Mission Probe

DO 178 C compliant  Verification & Validation of Turbofan Jet Engine software
Case Study

DO 178 C compliant  Verification & Validation of Turbofan Jet Engine software

DO254 DAL A FPGA Verification & Validation
Case Study

DO254 DAL A FPGA Verification & Validation

LIDAR-based Rotor Proximity Warning System (R-PWS) Development
Case Study

LIDAR-based Rotor Proximity Warning System (R-PWS) Development

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