Systems Architecture, Integration, and Test Engineer (mechanical)

Saronic · Defense · Austin, TX · Engineering

Seeking a Systems Architecture, Integration, and Test Engineer (Mechanical) to drive mechanical reliability and systems integration for autonomous vessels. Responsibilities include defining use cases, system architecture, requirements, and leading verification/validation testing. The role involves cross-functional collaboration, failure analysis, and developing preventive maintenance plans. Requires experience with advanced hardware systems, autonomous systems, failure analysis, and architecting test campaigns.

What you'd actually do

  1. Define top-down use cases, system architecture, and design reference missions for products alongside product architects and responsible engineers
  2. Define, document, and maintain system requirements (design criteria) using Jama and in-house developed tools/environments.
  3. Work closely with engineering teams to ensure requirements are accurately interpreted and implemented.
  4. Maintain up-to-date technical documentation for system requirements, testing requirements, verification and validation.
  5. Clearly articulate technical information to stakeholders at all levels, ensuring alignment of objectives across engineering, software, and mission operations.

Skills

Required

  • Mechanical Engineering
  • Systems Architecture
  • Systems Integration
  • Test Engineering
  • Reliability Engineering
  • Requirements Management
  • Failure Analysis
  • Root Cause Analysis
  • Risk Management
  • Test Campaign Design
  • Test Plan Execution
  • Industry Standards (MIL-STDs, ABS Rules, ABYC, COLREGs, ISO, NASA, IEC, IEEE)
  • Advanced Hardware Systems
  • Autonomous Systems
  • Complex Electronics Systems

Nice to have

  • Jama
  • DOORS
  • Innoslate
  • 3DX
  • Cameo
  • Flow
  • Palantir Foundry
  • Python
  • Java
  • C++
  • Data Collection
  • Data Analysis
  • Feedback Loops

What the JD emphasized

  • mechanical reliability
  • systems integration
  • predictive analysis
  • proactive failure modes and effects analysis
  • comprehensive verification and qualification testing
  • design reliability
  • continuous improvement
  • reliability and performance
  • advanced hardware systems
  • autonomous systems
  • complex electronics systems
  • failure analysis
  • root cause analysis methodologies
  • corrective action management
  • risk management
  • architecting and designing test campaigns
  • creating & executing test plans
  • hardware design best practices
  • analysis best practices