Principal Mechanical Engineer at Viken Detection
Burlington, Massachusetts, United States -
Full Time


Start Date

Immediate

Expiry Date

16 Sep, 26

Salary

170000.0

Posted On

18 Jun, 26

Experience

10 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Mechanical System Architecture, Electromechanical System Design, SolidWorks, Onshape, Finite Element Analysis, Tolerance Analysis, Injection Molding, Structural Metals, Welded Assemblies, New Product Introduction, Technical Leadership, Risk Mitigation, Prototyping, Cross-functional Collaboration, Sustaining Engineering, Mechanical Simulation

Industry

Security and Investigations

Description
Description Viken Detection is seeking a highly experienced Principal Mechanical Engineer to provide technical leadership and architectural ownership across our advanced detection and imaging systems. This highest-level individual contributor role sets mechanical design strategy, drives cross-platform alignment, and tackles complex system-level challenges. The Principal Mechanical Engineer partners closely with Engineering, Physics, Program Management, and Operations to deliver high-performance, manufacturable, reliable, and cost-effective solutions from concept through sustaining engineering. Responsibilities Serve as mechanical system architect for major product platforms Lead system-level design decisions, trade studies, and risk mitigation Establish mechanical standards, best practices, and reusable design architectures Drive cross-functional alignment across mechanical, electrical, software, and physics teams Lead development of complex electromechanical systems including structures, mechanisms, and enclosures Drive early-stage innovation by assembling and testing proof-of-concept prototypes to validate concepts and reduce technical risk Own mechanical execution across the full product lifecycle from concept through sustaining Resolve high-impact, cross-subsystem technical challenges Oversee tolerance analysis, structural integrity, environmental robustness, and reliability Partner with Operations to ensure manufacturable, scalable, and cost-effective designs Lead mechanical NPI efforts, production readiness, and supplier engagement Incorporate production, quality, and field feedback into continuous improvement Mentor engineers and lead technical design reviews Influence engineering roadmaps, resourcing, and long-term technical strategy Advise engineering leadership on mechanical risk, capability, and execution Promote engineering rigor, documentation quality, and technical excellence Travel as needed (e.g., to suppliers, manufacturing partners, field deployments, or customer sites) to support development, integration, and issue resolution Requirements Bachelor’s or Master’s degree in Mechanical Engineering 10+ years of mechanical engineering experience in complex product development Proven technical lead or system owner on shipped products Experience designing electromechanical systems such as handheld devices, large-scale industrial or vehicle-mounted equipment, or precision mechanisms Strong knowledge of manufacturing processes including injection-molded plastics, structural metals, welded assemblies, and tolerance management Advanced proficiency with SolidWorks or Onshape; working knowledge of FEA and mechanical simulation Excellent communication and cross-functional collaboration skills Demonstrated ownership of designs from concept through full-rate production Experience with ruggedized, safety-critical, or harsh-environment products; collaboration with Physics or Imaging teams preferred Passion for mission-driven engineering and real-world impact Additional Information Location: This role is based in Burlington, MA. We are seeking local candidates, as relocation assistance is not available. Work Authorization: Applicants must be authorized to work in the U.S. on a full-time basis. We are unable to provide visa sponsorship for this position.
Responsibilities
Serve as the mechanical system architect to lead design strategy and technical execution for advanced detection and imaging platforms. Collaborate across multidisciplinary teams to deliver manufacturable, reliable, and cost-effective electromechanical solutions from concept through production.
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