Humanoid develops general-purpose humanoid robots for industrial and daily tasks. The technology combines AI and robotics to create adaptable, safe robots for hazardous and monotonous environments.…
Humanoid develops general-purpose humanoid robots for industrial and daily tasks. The technology combines AI and robotics to create adaptable, safe robots for hazardous and monotonous environments.…
“Mitch Kapor listed as a lead investor on a company profile”
Founders
What we do
Join the Team
Systems Architect
On-SiteVancouver, British Columbia, CA
On-Site • Vancouver, British Columbia, CA
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Humanoid is the first AI and robotics company in the UK, creating the world’s most advanced, reliable, commercially scalable, and safe humanoid robots. Our first humanoid robot HMND 01 is a next-gen labour automation unit, providing highly efficient services across various use cases, starting with industrial applications.
We are assembling a world-class robotics engineering team in Vancouver to solve some of the hardest problems in humanoid robotics — including biped locomotion, wheeled humanoid mobility platforms, whole-body manipulation, distributed robotic control systems, and scalable humanoid architectures.
We are looking for a
Systems Architect
to define and drive the overall architecture of Humanoid’s robotic platforms, including both bipedal humanoid robots and wheeled humanoid robotic systems designed for industrial environments.
If you are excited about defining the architecture of complex robotic systems operating in the real world, we want to hear from you.
Our Mission
At Humanoid we strive to create the world’s leading, commercially scalable, safe, and advanced humanoid robots that seamlessly integrate into daily life and amplify human capacity.
About The Role
As a Systems Architect at Humanoid, you will be responsible for defining the technical foundation and evolution of their robotic platforms, specifically designing the integrated architecture that unifies mechanical, electrical, compute, sensing, AI, and software subsystems. The role requires deep expertise in robotics systems engineering, humanoid robot architecture, distributed control systems, and hardware-software co-design. The architect will collaborate with multidisciplinary teams to ensure the robots meet high standards for performance, reliability, and scalability for real-world deployment.
What You’ll Do
We’re Looking For
Bonus Qualifications
Experience working on humanoid robots or legged robotics platforms
Experience with wheeled robotic platforms used in industrial or logistics environments
Experience with robot perception systems and multi-sensor fusion
Familiarity with ROS / ROS2 or robotic middleware architectures
Experience building AI-enabled robotic systems
Experience with robot digital twins and advanced simulation environments
Experience in robotics startups, aerospace, autonomous vehicles, or advanced robotics companies.
What We Offer
Comprehensive extended health benefits starting on your first day, including fully paid medical and dental, virtual care, employee and family assistance, and worldwide emergency medical support.
Meaningful time off to rest and recharge: 23 days of annual leave (accrued), 15 days of paid sick leave, and paid company holidays.
Equity included–we believe builders should share in what they build.
Free daily catered lunch, snacks, and drinks in‑office.
Collaboration with top‑tier engineers, researchers, and product experts in AI and robotics.
Freedom to influence the product and own key initiatives.
How to Apply
Does this role sound like the perfect fit for you?
Fill in the form and include links or files that showcase the best of what you’ve built and achieved.
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Develop and implement technical strategies aligned with the company’s mission and long-term robotics roadmap
Define and own the overall system architecture for humanoid robots, including bipedal and wheeled robotic platforms
Architect system-level designs for mobility, manipulation, sensing, compute architecture, communication networks, and power systems
Collaborate with cross-functional engineering leads and subject matter experts to design scalable robotic platforms
Define and manage system-level requirements and ensure alignment across all engineering teams
Establish interfaces and integration strategies across mechanical, electrical, embedded, controls, and AI subsystems
Lead system-level trade studies and guide critical technical decisions using structured, evidence-based analysis
Present architectural directions, technical trade-offs, and system roadmaps to engineering leadership
Identify and resolve system bottlenecks impacting performance, reliability, or scalability
Define distributed computing architectures for perception, control, and autonomous decision-making
Create and maintain system architecture documentation, including block diagrams, interface specifications, and design narratives
Establish technical standards, system integration strategies, and best practices
Guide system integration efforts across engineering teams to ensure reliable and high-performing robotic platforms
Identify and mitigate technical risks throughout the product development lifecycle
Stay up to date on emerging robotics technologies, architectures, and industry best practices.
15+ years of industry experience in robotics, autonomous systems, or complex electromechanical platforms
5+ years of experience in system architecture or technical leadership roles
Bachelor’s, Master’s, or Ph.D. in Robotics, Computer Science, Electrical Engineering, Mechanical Engineering, or a related field
Strong knowledge of robotic system design, including kinematics, dynamics, motion control, and perception systems
Experience designing complex robotics or autonomous systems architectures
Strong understanding of hardware-software co-design and real-time robotics computing architectures
Experience with distributed robotic systems and middleware frameworks
Familiarity with embedded systems, microcontrollers, FPGAs, and high-performance compute platforms
Experience integrating AI/ML systems, sensor fusion, and autonomous decision-making pipelines
Understanding of power systems, battery technologies, and communication networks
Experience with system simulation tools such as Gazebo, Simulink, or similar environments
Strong analytical and systems thinking skills with the ability to manage trade-offs between performance, cost, and complexity
Ability to lead cross-disciplinary engineering collaboration in fast-paced robotics development environments.