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Design and Development of a High-Reliability Programmable Aerospace Electronics System
  1. case
  2. Design and Development of a High-Reliability Programmable Aerospace Electronics System

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Design and Development of a High-Reliability Programmable Aerospace Electronics System

intechhouse.com
Other industries
Manufacturing

Challenges in Aerospace Electronics Design

The client required a programmable device for aerospace vehicles that balances manufacturability, low weight, and customizability while maintaining reliability in extreme space conditions. Existing solutions lacked versatility for diverse mission requirements and robustness in harsh environments.

About the Client

A pioneering aerospace company specializing in cutting-edge light launcher projects since 2020, focused on innovative aerospace mission solutions.

Key Project Goals

  • Develop a compact, lightweight programmable device for aerospace applications
  • Ensure adaptability to varying mission requirements through reconfigurable hardware/software
  • Achieve high reliability in extreme environmental conditions
  • Optimize power efficiency for aerospace operations
  • Provide long-term scalability for future aerospace projects

Core System Requirements

  • FPGA-enabled System-on-Chip (SoC) for reconfigurable logic and CPU integration
  • Multi-layer PCB with High-Density Interconnect (HDI) technology for compact design
  • Integrated Power Management IC (PMIC) for energy optimization
  • Ruggedized protective enclosure for environmental protection
  • Support for real-time aerospace mission parameters

Technology Stack

FPGA
Altium Designer
LTspice
Vivado

System Integrations

  • Aerospace vehicle telemetry systems
  • Mission-specific sensor interfaces
  • Existing client infrastructure for launcher projects

Non-Functional Requirements

  • Extreme temperature and vibration resistance
  • Weight optimization below 500g
  • Real-time processing latency <1ms
  • Scalable architecture for future missions
  • Compliance with aerospace safety standards (e.g., ECSS)

Expected Business Impact

Enables next-generation aerospace missions through adaptable electronics, reduces long-term development costs via reconfigurable hardware, enhances mission success rates with high-reliability components, and establishes foundation for sustained collaboration on digital aerospace projects.

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