State Estimation Engineer

Reposted 8 Hours Ago
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Redwood City, CA, USA
In-Office
Senior level
Robotics
We are at the forefront of revolutionizing robotic manipulation
The Role
The State Estimation Engineer will design and implement state estimation algorithms, develop sensor fusion pipelines, and push boundaries with classical and learning-based methods, owning the full stack from prototype to production.
Summary Generated by Built In
Join us to shape the next frontier of AI-driven robotics!

Dyna Robotics makes general-purpose robots powered by a proprietary embodied AI foundation model that generalizes and self-improves across varied environments with commercial-grade performance. Dyna's robots have been deployed at customers across multiple industries. Its frontier model has the top generalization and performance in the industry.

Dyna Robotics was founded by repeat founders Lindon Gao and York Yang, who sold Caper AI for $350 million, and former DeepMind research scientist Jason Ma. The company has raised over $140M, backed by top investors, including CRV and First Round. We're positioned to redefine the landscape of robotic automation.

Position Overview:

As our first dedicated State Estimation Engineer, you are the architect of the robot’s spatial intelligence. You will own the systems that allow our robots to understand where they are and how they move within complex, unstructured environments.

This is a foundational role. You will bridge the gap between high-frequency sensor data and high-level AI reasoning, ensuring our robots achieve the industry’s top generalization and performance.

What You’ll Do
  • Build the Spatial Core: Design and implement robust indoor SLAM and state estimation systems fusing LiDAR, Camera, IMU, and odometry. You will own the full stack, from factor graphs and EKF/UKF to optimization-based methods.

  • Sensor Fusion & Calibration: Develop automated pipelines for multi-sensor time-synchronization and calibration (VIO, visual SLAM), ensuring the "Skill Capture" data we collect is ground-truth quality.

  • Push the Frontier: Balance robust classical techniques with cutting-edge learned dynamics and neural filtering. You decide when to ship a reliable geometric solution versus when to invest in a differentiable approach.

  • Cross-Functional Synergy: Collaborate closely with Perception, Motion Planning, and AI teams to translate raw sensor streams into safe, smooth, and natural robotic motion.

  • Production Reliability: Move beyond simulation. You will build the diagnostic infrastructure and validation benchmarks needed to deploy robots into diverse, real-world customer environments.

What You’ll Bring
  • 5+ Years of Real-World Impact: A track record of taking estimation systems from prototype to production on physical hardware (not just in Sim).

  • Mathematical Mastery: Deep understanding of spatial math, including 3D rotation representations (SO(3)), frame transformations, and camera projections.

  • Software Excellence: Proficiency in C++ for real-time, low-latency systems and Python for rapid tooling and research.

  • Ownership Mindset: As the first hire in this domain, you thrive in a fast-paced environment where you define the roadmap and the tech stack.

Bonus Points For
  • MS/PhD with a focus on SLAM, VIO, or Factor Graphs (e.g., experience with GTSAM).

  • Familiarity with state estimation for manipulators or high-degree-of-freedom robotic systems.

  • Hands-on experience with learned dynamics or neural-inertial navigation.

At Dyna Robotics, we build technology for the real world, which requires a team as diverse as the environments our robots inhabit. We are an equal opportunity employer committed to technical rigor and mutual respect.

Don’t let a checklist stop you. Data shows that underrepresented groups often only apply if they meet 100% of the criteria. We value problem-solving and grit over keyword matching. If you’re passionate about the intersection of geometry and robotics, we want to hear from you—even if you don't check every box.

Skills Required

  • 5+ years building state estimation systems on physical robots
  • Deep expertise in sensor fusion, localization, and filtering/optimization methods
  • Strong foundation in probability, linear algebra, optimization, and 3D geometry
  • Proficiency in C++ for real-time systems; Python for tooling
  • Track record of taking an estimation system from prototype to production deployment
Am I A Good Fit?
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The Company
0 Employees

What We Do

Our mission is to empower businesses by automating repetitive, stationary tasks with affordable, intelligent robotic arms. Leveraging the latest advancements in foundation models, we're driving the future of general-purpose robotics—one manipulation skill at a time

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