You are a systems thinker who understands that safety emerges from the interaction of hardware, software, human behavior, and operational environments.
You have experience designing and validating safety-critical systems, ideally in robotics, autonomy, industrial machinery, aerospace, or automotive systems.
You are comfortable working across disciplines - robotics, perception, controls, hardware, operations, and product - ensuring that safety requirements propagate correctly through the entire system.
You think in terms of failure modes, hazard mitigation, and safe system behavior under uncertainty.
You are equally comfortable:
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defining safety architectures
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designing validation strategies
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working with operators and field engineers to ensure real-world safety
You take ownership of system outcomes, not just analysis documents. You ensure safety requirements translate into real system behavior and operational procedures.
Most importantly, you help organizations build safety into engineering culture and system design, not bolt it on afterward.
AIM machines operate in environments that introduce safety challenges rarely seen in traditional autonomy domains:
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machines interacting directly with human workers
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continuously changing terrain and jobsite layouts
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dust, vibration, and harsh environmental conditions
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dynamic interactions between multiple machines
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safety-critical operations involving heavy loads and moving equipment
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real-time control systems operating on ruggedized edge compute
Safety must therefore be addressed at multiple layers:
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human-machine interaction
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fleet-level monitoring and learning
We will design safety systems that allow autonomous machines to operate predictably, fail safely, and continuously improve through operational learning.
If that excites you - you’re the kind of Safety Systems Engineer who will thrive here.