Senior Human Factors Engineer - Robotics

Lila Sciences

$110K — $130K *
Consumer Technology
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • 4-8 years in UX research or human factors specifically for complex operational software
  • Experience designing high-density, high-stakes operational displays such as control rooms
  • Proficient in core research methods like contextual inquiry and usability testing
  • Strong skills in information architecture and interaction design, particularly using Figma
  • Experience designing human-in-the-loop systems to enhance situational awareness
  • Ability to communicate effectively across teams and defend design decisions with strong evidence

Responsibilities

  • Lead usability research through contextual inquiries and tests to inform UI decisions
  • Design information architecture and interaction patterns for critical displays
  • Prototype and validate user flows using Figma for various operational UIs
  • Define supervisor workflows for operators within automated systems
  • Collaborate closely with software engineers to translate research insights into actionable design
  • Promote and maintain accessibility standards throughout the design process

Benefits

  • Collaborative work environment with innovative projects in robotics
  • Opportunity to influence the development of cutting-edge technology
  • Direct involvement in enhancing user safety and operational efficiency
  • Emphasis on research-driven design decisions
  • Potential for impact in regulated and safety-critical domains
Full Job Description
Your Impact at LILA

You will be the human-factors voice for Robotics, working on the software that runs Lila's autonomous labs. Partnering with software engineers and researchers, you'll make its most demanding surfaces - simulation, research operations, orchestration, and SCADA-style monitoring - clear, safe, and trustworthy under pressure, directly shaping how fast the factory runs and how few mistakes it makes.

What You'll Be Building
  • Lead usability research: run contextual inquiry, task analysis, and usability testing to ground UI decisions in real workflows.
  • Design for high-stakes displays: shape information architecture and interaction patterns for high-density orchestration and SCADA-style monitoring where situational awareness is paramount.
  • Prototype and validate: build Figma prototypes and testable flows for simulation, lab, and capacity-planning UIs, then iterate from evidence.
  • Design human-in-the-loop workflows: define how operators supervise, intervene in, and trust automated and AI-driven processes.
  • Partner with engineering: embed with the software engineers who build these UIs, translating research into specs, patterns, and design-system contributions.
  • Champion accessibility: set and uphold accessibility and interaction standards as the platform grows.

What You'll Need to Succeed
  • UX research depth: 4-8 years in UX research or human factors for complex operational, industrial, or scientific software - this is a research-first role.
  • Operational-display design: high-density, high-stakes interfaces such as control rooms, monitoring dashboards, or data-heavy tooling.
  • Core research methods: contextual inquiry, task analysis, and usability testing, turned into clear direction.
  • Interaction & IA craft: strong information-architecture and interaction-design skills, with prototyping in Figma or equivalent.
  • Human-in-the-loop & situational awareness: designing for operator supervision and error prevention.
  • Cross-functional communication: partnering with engineers and domain experts and defending design decisions with evidence.

Bonus Points For
  • Human factors in regulated, safety-critical domains: systems-engineering rigor and prior HF/UX work in aerospace, manufacturing, or healthcare/life sciences. Grounding in ISO 9241-210 (human-centred design) or WCAG 2.2 (accessibility) a plus.
  • Scientific or lab context: laboratory, robotics, manufacturing, or other regulated/operational environments.
  • SCADA & control systems: familiarity with control-room HMI design (ANSI/ISA-101), SCADA, or MES interfaces (you'll design the UI, not own the system).
  • Quantitative methods: survey design, behavioral analytics, or other quantitative research alongside qualitative work.
  • AI-driven interfaces: designing interfaces for AI-assisted or autonomous workflows.


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