Mobility Principal Engineer

IMRIS

• $130K — $155K *
Healthcare
8 - 10 years of experience
Job Overview by Ladders

Qualifications

  • BS, MS, or PhD in Mechanical Engineering, Mechatronics, Robotics, Electrical Engineering, or related discipline.
  • 10+ years of experience developing complex electro-mechanical systems.
  • Demonstrated experience leading safety-critical motion-control systems.
  • Strong expertise in mobility system architecture and motorized motion systems.
  • Experience with medical devices, robotics, automation, or heavy mobile equipment.

Responsibilities

  • Lead the design and development of mechanical subsystems for an MRI system.
  • Develop mobility mechanisms, patient handling systems, and equipment supports.
  • Create and maintain 3D CAD models and engineering documentation.
  • Collaborate with cross-functional teams to ensure successful system integration.
  • Develop and execute mechanical verification test plans and protocols.
  • Support compliance with medical device safety standards and quality documentation.

Benefits

  • Opportunity for technical leadership in a cutting-edge medical technology field.
  • Engagement with complex safety-critical systems that directly impact patient care.
  • Chance to work in a collaborative and interdisciplinary environment.
  • On-site position fostering team cohesion and immediate project involvement.
Full Job Description
We are currently searching for a Mobility Principal Engineer to join our team. This role will be performed on-site and is based at our location in North Billerica, MA. Please note: There is no relocation offered for this role. The ideal candidate will currently reside in the Greater Boston area.

JOB SUMMARY

The Mobility Principal Engineer will provide technical leadership for the architecture design, development, integration, verification for an MRI Mobility Subsystem. This role is responsible for ensuring the safe, reliable, and precise movement of an MRI system within the operating room environment.

The mobility subsystem is considered a highly complex safety-critical electro-mechanical system involving coordinated hardware and software control, functional safety, collision avoidance, MR safety controls, fault management, and regulatory compliance. The successful candidate will serve as the primary technical authority for all mobility-related engineering activities throughout the NPI program.

ESSENTIAL DUTIES AND RESPONSIBILITIES

Mechanical Design & Development

  • Lead the design and development of mechanical subsystems for an MRI system.
  • Develop mobility mechanisms, patient handling systems, equipment supports and structural assemblies.
  • Design and optimize cable routing solutions for signal, power, cooling, and RF-related components.
  • Create and maintain 3D CAD models, engineering drawings, assemblies, and design documentation.
  • Utilize rapid prototyping and 3D printing technologies to support concept evaluation, functional testing and design verification.


System Integration
  • Collaborate closely with Electrical, RF, Magnet, Gradient, Software Engineering teams to ensure successful system integration.
  • Resolve mechanical and electro-mechanical integration challenges during prototype builds.
  • Support design reviews and cross-functional technical discussions.
  • Develop and execute mechanical verification test plans and protocols.
  • Perform structural, vibration, shock, thermal, durability, transportation and lifecycle testing.


Regulatory & Quality Compliance
  • Support compliance with applicable medical device standards, including:
    • IEC 60601-1 Medical Electrical Equipment Safety
    • ISO 14971 Risk Management
  • Generate and maintain Design History File (DHF) documentation.


SUPERVISION RECEIVED AND EXERCISED

  • Reports to the Head of MRI Development
  • This role does not supervise any other employees.


KNOWLEDGE, SKILLS, AND ABILITIES REQUIREMENTS

Required Qualifications

  • BS, MS, or PhD in Mechanical Engineering, Mechatronics, Robotics, Electrical Engineering, or related discipline.
  • 10+ years of experience developing complex electro-mechanical systems.
  • Demonstrated experience leading safety-critical motion-control systems.
  • Strong expertise in:
    • Mobility system architecture
    • Motorized motion systems
    • Electro-mechanical integration
    • Functional safety
    • System verification and validation
  • Experience with medical devices, robotics, automation, or heavy mobile equipment.


Preferred Qualifications
  • MRI, CT, Surgical Robotics, Radiation Therapy, or Medical Imaging experience.
  • Experience with dockable patient tables, moving gantries, autonomous or semi-autonomous mobility systems.
  • Knowledge of:
    • IEC 60601-1
    • IEC 60601-1-6
    • ISO 14971
    • Functional safety principles
  • Experience supporting FDA 510(k) submissions and design controls.


Key Competencies
  • System Architecture
  • Technical Leadership
  • Electro-Mechanical Design
  • Motion Control Systems
  • Functional Safety Engineering
  • Fault Management
  • Risk Assessment & FMEA
  • Reliability Engineering
  • OR Workflow Integration
  • Cross-Functional Team Leadership


Compensation Disclaimer
The actual rate of pay offered within this range may depend on several factors, such as skills, knowledge, relevant education, experience, and market conditions. Additionally, our organization values pay equity and considers the internal equity of our team when making any offer. Hiring at the maximum of the range is not typical.

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