Senior Robotics Engineer (Universal Robots, India) (Bangalore, IN)

LitePoint

Bengaluru

On-site

INR 1,500,000 - 2,100,000

Full time

14 days+
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Benefits offered by this job

Global team
Growth & development
Ownership of work
Health insurance
On-site collaboration

Job summary

Universal Robots, part of Teradyne Robotics, Bangalore, is seeking engineers to develop, test, and optimize software and firmware for various cobot platforms. You’ll design, build, and scale simulation infrastructure across cloud and on‑prem GPUs, write production‑quality C++/Python, and ensure simulated behavior mirrors real hardware.

The role requires hands‑on ROS/ROS2 experience, robotics simulation tools, and strong systems engineering fundamentals.

Qualifications

  • Bachelor's or Master's degree in Robotics, Computer Science, Mechatronics, Electrical Engineering, or related field.
  • 3–5 years of software engineering experience in robotics or simulation systems.
  • Strong proficiency in C++ and Python with production-quality code.
  • Foundations in API design, data structures, concurrency, debugging.

Responsibilities

  • Design and own major components of the simulation platform and pipelines.
  • Scale simulation infra across cloud and on-prem GPUs; manage scheduling and fault tolerance.
  • Write production-grade C++ and Python; balance fidelity and performance.
  • Build and maintain robot models: kinematics, dynamics, sensors, controllers.
  • Develop ROS-based integrations with real hardware and simulators.
  • Create tooling to configure, launch, monitor, and analyze simulations.

Skills

C++/Python
ROS/ROS2
Distributed systems
API design
Observability

Education

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

Tools

ROS
Gazebo
MuJoCo
NVIDIA Isaac Sim
Docker

Job description

Our Purpose

TERADYNE, where experience meets innovation and driving excellence in every connection. We are fueled by creativity and diversity of thought and in our workforce. Our employees are supported to innovate and learn something new every day. We cultivate a culture of inclusion for all employees that respects their individual strengths, views, and experiences. We believe that our differences enable us to be a better team – one that makes better decisions, drives innovation and delivers better business results.

Universal Robots, part of Teradyne Robotics, is the world market leader in collaborative robots (cobots), making products that empower our customers and positively transform the way they work. Teradyne Robotics is a division of Teradyne and includes Universal Robots and Mobile Industrial Robots (MiR). Our global R&D organization of 200+ engineers builds the software and systems behind every cobot we ship.

Opportunity Overview

You will join a team of talented and passionate engineers developing, testing, and optimizing the software and firmware running on our various robot platforms.

Your responsibilities and tasks include:
  • Design, build, and own major components of the simulation platform — services, APIs, orchestration layers, and the pipelines that tie them together.
  • Architect and scale simulation infrastructure across cloud and on‑premises GPU environments, including job scheduling, resource allocation, environment versioning, and fault tolerance.
  • Write performant, production‑quality C++ and Python, and make pragmatic engineering trade‑offs between simulation fidelity, runtime performance, and maintainability.
  • Build and maintain accurate robot models — kinematics, dynamics, sensors, and controllers — ensuring simulated behaviour faithfully reflects real hardware.
  • Implement and optimise ROS‑based integrations so simulated robots interoperate seamlessly with the same software stack running on physical systems.
  • Develop the tooling and internal services that let engineers, application teams, and customers configure, launch, monitor, and analyse simulation runs.
  • Build capabilities for importing customer models and environments, and for creating custom scenarios and workflows that reflect real deployment conditions.
  • Contribute to multi‑agent simulation supporting fleet‑level coordination, zone layout, and multi‑robot interaction scenarios.
  • Build the data layer behind simulation — storage, retrieval, and versioning of large‑scale simulation outputs, logs, and sensor streams.
  • Establish automated testing, validation, and benchmarking frameworks that measure simulation fidelity and tie results to integration time and fleet performance.
  • Own reliability and observability for the systems you build, including instrumentation, monitoring, and diagnosis of performance bottlenecks across the stack.
  • Contribute to CI/CD pipelines and deployment tooling that keep simulation systems continuously validated and easy to ship.
  • Work with research scientists to productionise world models and generated 3D scenes into reliable, repeatable simulation workflows.
  • Participate actively in design and code reviews, help uphold engineering standards, and support the growth of engineers around you.
  • Partner with product, application, and customer‑facing teams to translate real deployment challenges into simulation capabilities.
All About You

We seek individuals who share our passion and determination. Our commitment to customer success drives us to go the extra mile. If you're ready to join us in this mission, take a closer look at the minimum criteria for the position.

We value diversity in culture, competence, and experience. We expect you to bring a number of qualifications to be considered for this role.

Mandatory Qualifications
  • Bachelor's or Master's degree in Robotics, Computer Science, Mechatronics, Electrical Engineering, or a related technical field.
  • 3–5 years of professional software engineering experience, with meaningful time spent building robotics or simulation systems.
  • Strong programming proficiency in C++ and Python, with a demonstrated ability to write production‑quality, well‑tested, maintainable code.
  • Solid software engineering foundations — API and service design, data structures, concurrency, performance profiling, and debugging complex systems.
  • Hands‑on experience with ROS or ROS2, including building nodes, working with the middleware, and integrating with robot hardware or simulators.
  • Practical experience with at least one robotics simulation environment (e.g. Gazebo, Isaac Sim, MuJoCo, Webots, or CoppeliaSim).
  • Working understanding of robotics fundamentals — kinematics, dynamics, control, coordinate transforms, and sensor modelling.
  • Experience building and operating software infrastructure: containerisation, CI/CD pipelines, and deployment of services in cloud or on‑premises environments.
  • Comfortable owning a system end to end — design, implementation, testing, deployment, and ongoing maintenance — in a Linux environment with modern development workflows.
Proficiency required in at least five of the following qualifications:
  • Backend service development and distributed systems design, including scheduling, queuing, and fault‑tolerant architectures.
  • Cloud infrastructure and orchestration — AWS, Azure, or GCP, with Docker and Kubernetes.
  • GPU‑accelerated simulation and rendering, including experience with CUDA or NVIDIA Isaac Sim / Omniverse.
  • Physics engines and their tuning for contact‑rich or high‑fidelity robotic interaction (PhysX, Bullet, ODE, MuJoCo).
  • Data pipelines and time‑series or large‑scale sensor data handling, including schema design and storage optimisation.
  • Observability and reliability engineering — logging, metrics, tracing, and diagnosing issues in distributed systems.
  • Mobile robotics concepts including SLAM, navigation stacks, path planning, and fleet management.
  • Manipulator robotics including motion planning, trajectory generation, and collision checking.
  • 3D geometry, scene representation, and asset pipelines (USD, URDF, SDF, mesh processing).
  • Multi‑agent or fleet‑scale simulation and the coordination and performance challenges it introduces.
  • Machine learning workflows and experience deploying trained models into production systems.
  • Digital twin development and sim‑to‑real validation methodologies.
  • Real‑time systems, embedded software, or robot firmware development.
Personal Attributes

Candidates should demonstrate ambition, organizational skills, and adaptability. Independence, initiative, responsibility, and ownership are vital. A pragmatic approach, commitment to continuous learning, and dedication to work quality are expected.

What We Offer

At Universal Robots we set a high bar and in return we provide an exciting career in a fast‑growing, technology‑driven company where you work alongside skilled and talented colleagues from around the world.

  • Global team, local impact — Be part of a world‑class R&D organisation managed from Denmark while making a tangible difference from our Bangalore office every day.
  • Growth and development — A manager with continuous focus on team spirit, employee development, and skill building.
  • Empowerment — Ownership of your work and the products you help create; we trust our engineers to make informed decisions that benefit the organisation.
  • Health insurance and additional benefits.
  • On‑site collaboration with co‑located product and software teams, fostering strong working relationships and rapid feedback.

We are only considering candidates local to position location and are unable to provide relocation for this position.

This position is not eligible for visa sponsorship.

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