Full-Time

Staff Systems Safety-Collision Avoidance

Rhoda AI

Rhoda AI

51-200 employees

Develops heavy-lifting general-purpose humanoid robots

Compensation Overview

$225k - $280k/yr

Mountain View, CA, USA

In Person

Bachelor's

Category
AI & Machine Learning (1)
Required Skills
Python
MATLAB
Robotics
Computer Vision

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Requirements
  • A Bachelor of Science degree in Engineering with a focus on optics, vision pipeline, and image processing.
  • At least 5 years of safety engineering experience in robotics, autonomous vehicles, or other safety-critical human-interactive systems.
  • Working knowledge of functional safety standards, including ISO 26262, ISO 13849, ISO 10218, ISO/TS 15066, IEC 61508, and UL 4600, and the ability to adapt them to novel domains.
  • Experience designing safety systems for complex electromechanical products with significant safety aspects.
  • Experience with optics, machine vision, computer vision, laser sensors, LiDAR, time-of-flight cameras, and other cameras.
  • Experience with safety analysis methods including System-Theoretic Process Analysis, Failure Modes and Effects Analysis, and fault tree analysis.
  • Ability to work across the full stack, including lenses, sensors, image signal processors, compute processing, artificial intelligence algorithms, behavior prediction, and trajectory control.
  • Hands-on engineering experience with test benches, measurement, and root-cause analysis.
  • Hands-on experience verifying and validating safety requirements using hardware-in-the-loop and software-in-the-loop testing.
Responsibilities
  • Own the collision avoidance safety case for humanoid robot platforms from hazard identification through validation and field monitoring.
  • Lead Hazard Analysis and Risk Assessment, System-Theoretic Process Analysis, Failure Modes and Effects Analysis, and fault tree analysis for perception, planning, and actuation subsystems involved in collision detection and avoidance.
  • Define and validate minimum safety distances, detection zones, and timing, spatial, and force constraints for dynamic human-robot shared spaces, adapting established detection and approach-speed frameworks to humanoid mobility and manipulation.
  • Apply Safety Of The Intended Functionality methodology to identify and reduce risk from perception limitations, edge cases, and unknown-unsafe scenarios, and incorporate it into continuous scenario discovery and triage.
  • Define safety requirements for object and human detection, tracking, intent prediction, and fallback behaviors under sensor degradation or occlusion.
  • Develop Functional Safety Concepts, Functional Safety Requirements, and Technical Safety Requirements for collision avoidance features.
  • Derive requirements for fail-safe and fail-operational behaviors, degraded states, minimal risk maneuvers, and human-robot interactions.
  • Develop test cases for collision avoidance verification and validation.
  • Define, engineer, deploy, and use system safety verification and validation equipment at hardware-in-the-loop, software-in-the-loop, and system levels.
  • Support incident investigation, near-miss analysis, and closed-loop safety requirement updates as fleet data accumulates.
Desired Qualifications
  • Experience with humanoid robots, automotive, or autonomous mobile robots.
  • Experience in an autonomous driving engineering program with hands-on ownership of Safety Of The Intended Functionality processes, including scenario-based risk assessment, triggering condition analysis, and unknown-unsafe scenario reduction.
  • Certification as a Functional Safety Engineer in Machinery Safety or Automotive/Autonomous Driving.
  • Experience defining and validating safety-rated sensor fusion or redundant perception architectures.
  • Exposure to simulation-based scenario generation and coverage argument tooling, including scenario mining and adversarial scenario generation, from autonomous-vehicle Safety Of The Intended Functionality work.
  • In-depth understanding of safety-critical architectures for vision pipelines, compute, networking, and power distribution.
  • Strong quantitative modeling skills using Python or MATLAB for simulation, scenario analysis, and statistical validation of safety claims.

Rhoda AI is building a two-armed humanoid robot designed as a general-purpose bimanual manipulation platform for industrial use. Its product centers on heavy-lifting and complex manipulation in factory and logistics environments, where many humanoid robots struggle. The robot combines dual arms with software and sensors that enable grasping, coordinating with both hands, and performing tasks that require strength and precision in industrial settings. Rhoda AI differentiates itself by targeting heavy-lift capabilities in robotics, a gap for many competitors, supported by a team with deep robotics and AI expertise and substantial funding. The company aims to bring commercially viable humanoid robots to industrial markets, competing with other players in factory automation and logistics robotics, with the goal of transforming how manual work is automated in manufacturing and related sectors.

Company Size

51-200

Company Stage

Series A

Total Funding

$680M

Headquarters

San Jose, California

Founded

2024

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Simplify Jobs

Simplify's Take

What believers are saying

  • Rhoda raised $450 million on March 10, 2026, signaling deep investor conviction.
  • The company reported a manufacturing evaluation under two minutes per cycle without human intervention.
  • Leading industrial partners across manufacturing and logistics give Rhoda immediate pilot and distribution paths.

What critics are saying

  • Figure AI’s $39 billion valuation and BMW deployments compress Rhoda’s market-entry window.
  • Tesla’s Optimus factory conversion in 2026 can flood industrial buyers with cheaper robots.
  • Rhoda’s $1.7 billion price tag before shipments makes a stealth failure existential by 2027.

What makes Rhoda AI unique

  • Jagdeep Singh, Gordon Wetzstein, and Vincent Clerc combine hardware, AI, and robotics execution.
  • Rhoda’s FutureVision targets video-predictive control for industrial tasks beyond controlled lab demos.
  • Heavy-lifting bimanual manipulation targets factories where current humanoids fail on payloads.

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Benefits

Company Equity

Growth & Insights and Company News

Headcount

6 month growth

-5%

1 year growth

-5%

2 year growth

-5%
Bloomberg
Mar 10th, 2026
AI robotics startup Rhoda valued at $1.7B after raising $450M to train robots using online videos

Rhoda AI, a startup developing artificial intelligence models trained on publicly available internet videos to direct robots in industrial tasks, has raised $450 million in funding led by Premji Invest. The round values the company at $1.7 billion post-money. The startup's AI model learns from millions of online videos to teach robots to perform various industrial tasks, including in unfamiliar conditions. The approach represents a novel data source for robotics training, aiming to expand robots' capabilities beyond controlled environments.

Forbes
Oct 15th, 2025
These Well-Funded AI Startups Are Building Humanoid Robots In Stealth

Flush with hundreds of millions of dollars in new funding, Rhoda AI and Genesis AI are developing humanoids they hope can go head-to-head with robots from Figure AI and Tesla.