Systems Engineering   

Systems Engineering

End-to-end systems architecture, requirements management, and integration for complex multi-disciplinary product programs.

Capabilities-Systems-Engineering

Systems engineering at Hydrix provides the structured foundation for complex product development. It ensures that every requirement is defined, every interface is understood, and every risk is managed across the full lifecycle of regulated and mission-critical technologies.

We coordinate multidisciplinary teams across mechanical, electronics, software, and human factors to deliver cohesive, high-performing systems. This integrated approach improves technical outcomes, reduces rework, and accelerates time to market.

Systems Engineering Capabilities

  • Requirements capture, traceability, and configuration control
    Structured processes to define, manage, and maintain clear requirements from stakeholder input through to verification and validation.
  • Functional and physical architecture development
    Designing robust system architectures that balance complexity, performance, and scalability.
  • Hardware-software interface specification
    Precise definition and documentation of interfaces to reduce ambiguity and integration risk.
  • Risk analysis and hazard mitigation
    Application of ISO 14971 including Hazard Analysis, FMEA, fault tree analysis, and other tools to identify and address system-level risks.
  • Verification and validation strategy
    Planning and execution of V&V aligned with ISO 13485, FDA QSR, and defence-grade quality frameworks.
  • Trade-off analysis
    Evaluation of technical options with respect to usability, manufacturability, safety, and regulatory compliance.
  • Product lifecycle planning
    Development of system-level roadmaps and plans that support scalable, maintainable, and certifiable solutions.

Core Capabilities

Structured processes to define, manage, and maintain clear requirements from stakeholder input through to verification and validation.

Designing robust system architectures that balance complexity, performance, and scalability.

Precise definition and documentation of interfaces to reduce ambiguity and integration risk.

Application of ISO 14971 including Hazard Analysis, FMEA, fault tree analysis, and other tools to identify and address system-level risks.

Planning and execution of V&V aligned with ISO 13485, FDA QSR, and defence-grade quality frameworks.

Evaluation of technical options with respect to usability, manufacturability, safety, and regulatory compliance.

Development of system-level roadmaps and plans that support scalable, maintainable, and certifiable solutions.

Why Hydrix

Our systems engineers work across every domain and discipline, ensuring that integration is not left to chance. We turn fragmented requirements into cohesive, compliant systems that perform reliably in the real world. From Class III implants to ruggedised defence electronics, our systems thinking drives product success.

Explore further capabilities

Product Engineering & Realisation

Human Centered Product Design

Market Strategy & Execution

AI, IoT & Secure Platforms

Recent Systems Engineering Projects

Folio Mobile Ceryx 2 blurred

Pioneering Cardiac Pacemaker System

Ceryx Medical, a UK-based innovator in bioelectronics, is developing a cutting-edge cardiac pacemaker system designed to enhance heart function by mimicking the body’s natural rhythms. Leverage…

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Folio SRH Mobile 1

New Era in Artificial Heart Technology

Scandinavian RealHeart (SRH), a Swedish medtech company, is redefining the future of mechanical circulatory support with its groundbreaking Total Artificial Heart (TAH). Inspired by the human…

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Folio Mobile Imdex 1

Enhancing Geological Survey Tools

IMDEX’s LOGRx (formerly IQ-LOGGER) is a digital handheld tool that enhances the speed and accuracy of capturing structural orientations in diamond core samples, crucial for geological interpretations. Initially…

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