Job Opportunities API

The Public Ledger of Openings

← Back to the ledger

Mechanical Engineer, Kinematic Systems and Mechanisms

Helsing
CompanyHelsing
CategoryEngineering
LocationMunich
RemoteOn-site (inferred)
EmploymentNot stated
LevelNot stated
SalaryNot stated by the employer
Posted2 Jun 2026
Last verified11 Aug 2026
SourceEmployer ATS (greenhouse)
Applications are handled by the employer, not by us.Apply on the employer's site →
Description
Who we are Helsing is a defence AI company. Our mission is to protect our democracies. We aim to achieve technological leadership, so that open societies can continue to make sovereign decisions and control their ethical standards.   As democracies, we believe we have a special responsibility to be thoughtful about the development and deployment of powerful technologies like AI. We take this responsibility seriously.   We are an ambitious and committed team of engineers, AI specialists and customer-facing programme managers.  We are looking for mission-driven people to join our European teams – and apply their skills to solve the most complex and impactful problems. We embrace an open and transparent culture that welcomes healthy debates on the use of technology in defence, its benefits, and its ethical implications.   The role As Mechanical Engineer, Kinematic Systems and Mechanisms, you will own the design,  analysis  and validation of high-performance moving systems for Helsing's drone platforms, from deployment mechanisms and folding structures through to landing gears and robotic joints. Working across kinematic synthesis, multi-body dynamics, precision  engineering  and hands-on prototype iteration, you will translate complex mechanical requirements into flight-worthy, testable hardware.    The day-to-day Own mechanism architecture from concept through to validated hardware, performing kinematic synthesis, multi-body dynamics analysis, torque and force profiling and FEA to ensure every moving system meets structural, performance and weight requirements before design is committed   Select and integrate electro-mechanical actuators, precision bearings, gearboxes, linkages and structural joints, applying advanced GD&T to ASME Y14.5 or ISO 1101 standards to control backlash, alignment and thermal expansion across complex moving assemblies   Build and iterate functional mechanism prototypes hands-on, evaluating kinematic behaviour and structural integrity under operationally relevant conditions, and design lifetime and fatigue test campaigns that validate analytical models and drive technical maturation   Produce robust 3D models, 2D manufacturing drawings, kinematic analysis reports and design documentation that meet aerospace quality standards, ensuring full traceability from requirement through to verified design output   Collaborate with systems, structures and avionics teams across design reviews and integration milestones, ensuring kinematic assemblies interface correctly with the broader airframe and that mechanism reliability is maintained across the full range of environmental and operational conditions   You should apply if you Have designed and delivered complex kinematic mechanisms and moving systems for aerospace, drone or similarly demanding applications, with demonstrated proficiency in multi-body dynamics tools such as MSC Adams, MotionSolve or SolidWorks Motion alongside FEA for structural validation   Are proficient in 3D and 2D CAD and PLM workflows using SolidWorks/PDM or Siemens NX/Teamcenter, and can apply advanced GD&T and statistical tolerance stack-up analysis to control precision and fit in complex moving assemblies   Have selected and integrated precision mechanical components, including bearings, gearboxes, ball screws and high-strength fasteners, with a working knowledge of aerospace-grade materials and manufacturing processes including CNC machining, composites and additive manufacturing   Have set up test rigs and executed functional, environmental and lifetime test campaigns on kinematic systems, using physical test data to correlate and refine analytical models