Skip to content

Open nowPosted 181 days ago

Senior Robotics Motion Planning Engineer

Workable (global search)108,016 open roles

Where
Woburn, MA, United States
Get the CV for this job

From $25 per CV, paid once. No subscription.

Your applicationOpen nowSenior Robotics Motion Planning EngineerWorkable (global search) · Woburn, MA, United States
  1. YouYes, apply to this one.

  2. CV RocketCV written for this posting.

  3. 25 readersRecruiter, hiring manager, skeptic. Round after round.

  4. CV RocketApplied on Workable (global search)'s own form.

The reply lands in your private mailbox

3×more interviews than doing it yourself with ChatGPT.

The clock on this job

Early applications get read.

7.9% of postings close within 7 days. Measured by our own scanner across the market. Workable (global search) postings stay open a median of 7 days.

Share of postings closed within
  1. 1.6%1 day
  2. 3.6%3 days
  3. 7.9%7 days
  4. 14.9%14 days
  5. 34.0%30 days
This job: posted 181 days ago

Workable (global search) median: 7 days open

The posting

About ATI:

Automated Tire (ATI) is on a mission to reinvent tire changing and wheel balancing using cutting-edge robotics. We are transforming a process that hasn’t fundamentally changed in decades into an automated, high-performance system built for the future of automotive service.

Founded by experienced entrepreneurs with multiple successful exits and backed by leading players across the automotive and tire industries, ATI is building technology that will redefine how cars are serviced. Our team combines deep robotics expertise with real world deployment, moving fast from prototype to production and scaling solutions directly in the field.

If you are excited by hands-on robotics, real-world impact, and the challenge of building category-defining technology from the ground up, ATI is the place to do the most meaningful work of your career.

Position Overview:

We are looking for a Senior Robotics Engineer with deep expertise in motion planning to join our amazing software team. This is a hands-on, high-ownership role that will be the primary technical driver for implementing motion planning and control on our unique multi-axis robotic platform. This role will be responsible for deploying robust path planning and collision avoidance capabilities, working closely with perception, workflow and low-level hardware teams to build a robust and reliable robot unlike any other.

Our system leverages multi-axis linear and rotational actuators to perform precision tire service operations. Our system has multiple manipulators that work in concert together in confined spaces where the risk of collision is high. The ideal candidate will understand the planning capabilities of the ROS 2 and MoveIt ecosystems deeply enough to configure and adapt its kinematic model, planning scene, and planner interfaces (OMPL, STOMP, CHOMP, Pilz) for our unique hardware topology.

ATI is a small, gritty and talented team doing work that is genuinely hard. You will have direct access to hardware, real influence over technical direction, and no shortage of interesting problems to tackle.

Key Responsibilities:

  • Lead software system definition and integration of custom multi-axis hardware, handling URDF/SRDF modeling, planner selection and tuning, axis grouping, and defining joint-specific motion profiles
  • Engineer fast, efficient collision-aware trajectory planning that can adapt to environmental obstacles and internal kinematic limits.
  • Develop path planning solutions using OMPL (RRT, RRT-Connect, PRM) and evaluate deterministic alternatives (i.e., Pilz Industrial Motion Planner) for repeatable, production-safe trajectories
  • Work with the motion team to build and maintain ROS 2 nodes for real-time actuator state feedback, joint state publishing, and trajectory execution against robotic hardware interfaces
  • Collaborate with systems and hardware engineering to define kinematic constraints, velocity/acceleration limits, and safety interlocks for each axis of motion
  • Debug and optimize motion performance in the field during site deployments — this is a bring-your-laptop-to-the-robot role when needed
  • Write clean, testable code that can be maintained and extended; document your designs clearly for cross-functional audiences

Requirements

  • Deep expertise in motion planning algorithms, including sampling-based methods (e.g., RRT, RRT*), probabilistic roadmaps (PRM), and trajectory optimization techniques (e.g., CHOMP, STOMP, TrajOpt) with a strong preference for 2+ years of hands-on experience with MoveIt or MoveIt 2 in production or near-production systems.
  • Strong problem solving skills with a proven ability to diagnose and resolve complex hardware-software integration issues, from high-level trajectory failures to low-level actuator constraints.
  • Solid understanding of collision avoidance strategies, occupancy representations (e.g., OctoMap, voxel grids), and safety-aware planning.
  • Hands-on experience with kinematic solvers such as KDL, TRAC-IK, or equivalent, with a strong understanding of forward and inverse kinematics for serial and parallel manipulators.
  • Proven ability to build production-grade systems that achieve reliable, sub-second planning under real-world constraints including dynamic obstacles and tight tolerances.
  • Strong proficiency in C++ and/or Python within the ROS2 ecosystem, with a firm grasp of real-time performance considerations, memory management, and software design patterns.
  • Experience working with robotic simulation environments for development and validation.

Preferred Qualifications:

  • BS/MS/PhD in Robotics, Mechanical Engineering, Computer Science, or a related field.
  • Background in automotive service equipment, industrial automation, or other mechatronic systems outside of traditional robot arms
  • Experience with real-time trajectory execution, hardware-in-the-loop testing, or safety-rated motion control
  • Full-stack robotics experience spanning motor control and drive systems, hardware abstraction layers (HAL), and low-level firmware interfacing.
  • Exposure to sensor integration and perception, including LiDAR, depth cameras, IMUs, and point cloud processing (e.g., PCL, Open3D), SLAM, or object detection as it pertains to reactive and perception-driven motion planning.
From $25, paid onceGet the CV for this job

What happens when you press

One press. We do the rest.

  1. A CV for this posting

    Written against Workable (global search)'s own wording, from every piece of relevant proof in your profile.

  2. 25 readers review it

    Recruiter, hiring manager, skeptic and more read every draft, round after round. You get the best round.

    The review screen in CV Rocket: how each CV was read, round by round.
  3. We apply on Workable (global search)'s form

    Our application engine gets through the hardest forms there are. Where a question needs you, AI suggests the best answer. Don't want us applying from our IP addresses? Use our Chrome extension: we apply straight from your own browser.

    An application in CV Rocket: every answer filled in on the employer's form.
  4. Every reply, sorted

    Workable (global search)'s answer lands in your private mailbox, and we classify it on arrival: interview, question, rejection.

    The CV Rocket inbox: each employer reply classified as an interview, an action or a rejection.
  5. Reply with AI

    AI helps you write the email, checks it and sends it. We show you whether the recruiter read it.

  6. The interview in your calendar

    Full integration with your calendar. The invitation goes straight in.

    An interview invitation in the CV Rocket inbox, added to the candidate's calendar.
Get the CV for this job

From $25 per CV, paid once. No subscription.

Why it works

3×

more interviews than doing it yourself with ChatGPT.

ChatGPT writes a CV and never learns what happened to it. We see every reply. For each CV we know:

  • How it was written, and how the review scored it
  • When we applied, and how long after the posting went up
  • Which posting, which company, which city
  • Who got the interview, and who heard nothing

That is how we know which CVs get called.

Get the CV for this job

From $25 per CV, paid once. No subscription.

The numbers game

More applications. More interviews.

Every application goes out with its own CV, written for that posting and paid once. Send enough of them and the law of large numbers finds you the job.

By hand5–10
With CV Rocket100
applications a day

Nearby

Live postings like this one

Same employer first, then the same role elsewhere.

Before you press

Straight answers

Get the CV for this job

From $25 per CV, paid once. No subscription.

What if my background isn't good enough?

We make the most of the background you have. The CV uses every piece of relevant proof your profile holds, and one of the 25 readers reads your whole profile and flags what the CV left out.

Do you really apply for me?

Yes, on the employer's own form, the hardest ones included. Where a question needs you, you answer it right there and AI suggests the best answer. Don't want us applying from our IP addresses? Use our Chrome extension: we apply straight from your own browser.

Is it a subscription?

No. You pay once per CV, from $25. Every application goes out with its own CV, written for that posting.

One job. One CV.
Paid once.

Pick the posting you want. We write for it, apply for you and catch the reply.

Get the CV for this job

From $25 per CV, paid once. No subscription.