Lead Safety Systems Engineer
AI summary of the role
Lead the system safety architecture and validation framework for AIM's autonomous heavy machinery fleet.
What you’ll do
- Define system-level safety architectures across hardware, software, and control systems including redundancy, fault detection, and safe-state transitions.
- Develop and maintain the structured system safety case with traceability between hazards, requirements, mitigations, and validation evidence.
- Lead comprehensive hazard analysis using FMEA, HAZOP, FTA, and STPA across mechanical, electrical, software, and operational systems.
- Define Operational Design Domains (ODD) and mechanisms for detecting boundary violations.
What you’ll bring
- Bachelor's or Master's degree in Systems Engineering, Mechanical Engineering, Electrical Engineering, Robotics, or related technical field.
- 7+ years of experience designing or validating safety-critical systems.
- Experience with system safety analysis methods such as FMEA, HAZOP, FTA, or STPA.
- Strong understanding of hardware-software system integration.
Technologies
FMEA · HAZOP · FTA · STPA · ISO 17757 · ISO 19014 · ISO 13849 · IEC 61508 · ISO 26262 · SOTIF
About AIM
Retrofits existing heavy earthmoving equipment (any make, model, size, age) into autonomous AI-driven fleets for mining, construction, and defense.
Series A
Source and classification
Internal deployment & tooling · Evidence for this classification:
operating on ruggedized edge compute Safety must therefore be addressed at multiple layers: system architecture autonomy behavior machine control systems human-machine interaction operational procedures 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. What you will own As the Lead Safety Systems Engineer, you will define and implement the system safety architecture and validation framework for AIM’s autonomous machines. You will work across engineering and operations teams to ensure that safety is designed, validated, and continuously improved across the entire autonomy stack and deployed fleet. Lead System Safety Architecture Define system-level
More from the job description
About AIM AIM builds autonomy for the real world - robots that move mountains. Our systems fuse software, hardware, robotics, and mission-critical infrastructure into ruggedized, safety-critical machinery operating on jobsites across the world. We replace decades of manual, error-prone, high-risk work with intelligent machines that reshape how earthmoving is done. Autonomous heavy machinery introduces safety challenges that do not exist in traditional robotics or automotive autonomy. AIM machines operate in dynamic environments where terrain is constantly changing, multiple machines operate in close proximity, and human workers interact directly with robotic equipment. Safety is therefore not a single subsystem - it is a system-level property that must be designed into every layer of the autonomy stack and operational workflow. We’re building the safety systems, architectures, and validation frameworks that allow autonomous machines to operate reliably around people, equipment, and critical infrastructure. We’re growing fast, scaling globally, and building the engineering foundation that will define the next century of construction. About you 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 ro [... source excerpt omitted ...] inery, 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: analyzing hazards defining safety architectures designing validation strategies 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. M [... source excerpt omitted ...] rate 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. What you will own As the Lead Safety Systems Engineer, you will define and implement the system safety architecture and validation framework for AIM’s autonomous machines. You will work across engineering and operations teams to ensure that safety is designed, validated, and continuously improved across the entire autonomy stack and deployed fleet. Lead System Safety Architecture Define system-level safety architectures across hardware, software, and control systems. Design safety layers including redun
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