Senior Robotics Software Engineer - Autonomy Architecture

Gravis-Robotics

Zürich

Vor Ort

CHF 120.000 - 180.000

Vollzeit

Vor 10 Tagen
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Zusammenfassung

Gravis Robotics is a high-growth ETH Zurich spin-out building autonomous robotics for construction. The autonomy team architecture enables multiple tasks to share a unified software stack while staying stable and scalable.

You will own task-level architecture for autonomous behaviors, define module boundaries, and guide tooling to ensure robust, high-quality software across C++ and Python.

Qualifikationen

  • Bachelor's or Master's degree in Robotics, Computer Science, Electrical Engineering, or related field.
  • 5+ years developing complex C++ systems with modern C++ (17+).
  • Strong Python for tooling, configuration and simulation scripting.
  • Experience designing large, modular software systems with long-term maintainability.
  • High standards for software quality and long-term maintainability.

Aufgaben

  • Own the task-level architecture shared across autonomous behaviors.
  • Define clear module boundaries between behavior orchestration and shared logic.
  • Implement component tests and telemetry/metrics pipelines.
  • Identify technical debt early to guide sustainable solutions.
  • Act as the go-to person for software quality: modern C++ practices and Python.

Kenntnisse

Modern C++ (17+)
Python
Software architecture
Software quality
Modular software design

Ausbildung

Bachelor's or Master's degree in Robotics/CS/EE

Tools

clang-tidy
Sanitizers
Static analysis
Linting
Typing
Test setup

Jobbeschreibung

Gravis Robotics is a high-growth Series A start-up backed by SoftBank, bringing Physical AI to the construction industry, turning heavy construction machines into autonomous robots.

Gravis began as an ETH Zurich spin-out, and our unique combination of learning-based automation and augmented remote control lets one operator safely conduct a fleet of earthmoving machines in a gamified environment.

Backed by deep robotics research and now deployed across multiple countries with leading construction and equipment partners, our team is rapidly growing to bring this technology to a trillion-dollar industry.

The Gravis RACK is a machine-agnostic retrofit kit that adds autonomy to excavators and wheel loaders from 10 to 100+ tonnes: LiDAR and camera sensing, GNSS RTK, networking hardware and rugged edge compute that works offline. Paired with the Slate tablet and our Copilot software, it lets an operator run a machine manually, with AI assistance, or fully autonomously. Increasingly, we also build custom hardware to adapt our machines for highly specialized, robust applications beyond traditional excavation.


About the Job

The autonomy team at Gravis architects autonomous behaviors for different tasks, e.g. different types of excavation or truck loading. This role owns the architecture that lets those behaviors live in the same software stack as opposed to creating one SW stack per behavior. You'll be responsible for how tasks are decomposed and orchestrated, for the interfaces between, and for the software quality. We are looking for a senior roboticist with C++ and Python expertise and high standards for software quality, who can make clear, pragmatic architectural calls that let the system grow without losing stability.

What you'll do

Architecture

  • Own the task-level architecture shared across our autonomous behaviors

  • Define clear module boundaries and responsibilities between behavior orchestration, factor out common logic across different tasks

  • Implement component tests and telemetry/metrics collection pipelines

  • Identify technical debt early enough to guide the team toward sustainable solutions

  • Act as the go-to person for software quality: modern C++ practices, code structure, error handling, robustness. Likewise for Python.

Configuration & tooling

  • Design an easily extensible and testable module for deploying policies that can be reused across tasks and supports schema versioning for observations, so a deployed policy pins the exact version of the computations it was trained against

  • Provide technical leadership on C++ and Python tooling (clang-tidy, sanitizers, static analysis, linting, typing, test setup)

  • Work with our incoming simulation team to unify training, benchmarking and evaluation tooling across tasks, so adding a task doesn't mean forking tooling and infrastructure

What we're looking for

Required

  • Bachelor's or Master's degree in Robotics, Computer Science, Electrical Engineering, or a related field

  • 5+ years developing complex C++ systems, with deep knowledge of modern C++ (17 and onwards)

  • Strong Python for tooling, configuration and simulation-side scripting

  • Strong experience designing large, modular software systems that outlived their first use case

  • High standards for software quality and long-term maintainability

Nice to have

  • Experience with behavior trees, state machines, or other task orchestration frameworks in production

  • Experience working alongside learned controllers in a production stack - deployment, versioning, observation pipelines. No need to train them.

  • Motion planning, geometric algorithms, or spatial data structures

  • Feature-flagged deployments, staged rollouts, or long-lived platforms

This role is a great fit if…
  • You want to make systems work reliably in the real world, and enjoy thinking through the edge cases

  • You'd rather our next behavior be a configuration than a dedicated piece of software

  • You want the best idea to win regardless of who had it, and you'd rather be corrected by the numbers than agreed with

  • You take a result end-to-end: when something needs to happen, you use or ask for whatever it takes, even outside your scope

  • You're a software purist, but pragmatic - first make it work, then make it right, and cut corners consciously when it's the right call


Gravis is an equal opportunity employer. We are committed to building an inclusive and diverse team, and do not discriminate based on race, colour, ancestry, national origin, religion, sex, sexual orientation, age, gender identity, gender expression, disability, veteran status, or other legally protected characteristics.

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