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Slam Operator Jobs (NOW HIRING)

Senior SLAM Engineer

Seattle, WA · On-site

$100 - $130/hr

Senior SLAM Machine Learning Engineer About us AIM builds autonomy for the real world - robots that ... operating on jobsites across the world. We replace decades of manual, error‑prone, high‑risk ...

Utility Operator I

Fort Smith, AR

$25.15/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Utility Operator is accountable to ensure the safe and productive operation of the plant ... Administer all facets of the safety and health policies while adhering to the SLAM risk method ...

The Mine Operator is responsible for operating basic mining equipment and assisting in daily mining ... Support and Move Safety Culture Forward by immediately reporting Hazards, Conduct SLAM prior to ...

Utility Operator I

Fort Smith, AR · On-site

$25.15/hr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Utility Operator is accountable to ensure the safe and productive operation of the plant ... Administer all facets of the safety and health policies while adhering to the SLAM risk method ...

Packaging Operator

Middleton, TN · On-site

$14 - $16.75/hr

The Packaging Operator is responsible for safely operating and monitoring packaging equipment and ... Conduct SLAM prior to performing each task. * Report any problems to immediate lead person ...

Software Engineer

Newnan, GA

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Implement and maintain SLAM (Simultaneous Localization and Mapping) navigation algorithms ... Comfort operating in fast-paced industrial development cycles * Strong collaboration with ...

Lead Tech Operations Maintenance

Cranbury, NJ · On-site

$26 - $42.53/hr

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Qualifications 4+ years of experience working with commercial operating systems and general ... Inventory and account for repair parts for the AS and SLAM Ordering repair parts for the AS and ...

Lead Tech Operations Maintenance

Cranbury, NJ · On-site

$26 - $42.53/hr

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Qualifications * 4+ years of experience working with commercial operating systems and general ... Able to complete training to become a PSI SLAM Line and Swisslog- Supper User and become proficient ...

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Showing results 1-20

Slam Operator information

What is the difference between Slam Operator vs Crane Operator?

AspectSlam OperatorCrane Operator
CertificationsOSHA certification, specialized trainingOSHA certification, crane operation license
Work EnvironmentConstruction sites, industrial facilitiesConstruction sites, shipping yards, industrial plants
Industry UsageMaterial handling, demolition, constructionHeavy lifting, lifting equipment operation
Job FocusOperating slam hammers or compactorsOperating cranes for lifting and moving heavy loads

While both Slam Operators and Crane Operators work in construction and industrial environments, Slam Operators primarily handle equipment like slam hammers and compactors, focusing on material compaction. Crane Operators specialize in operating cranes for lifting and moving heavy materials. Both roles require OSHA certification, but their equipment and specific tasks differ significantly.

What is a slam operator?

Slam Operators are professionals responsible for operating machines or systems that move, sort, or process packages in warehouses or distribution centers. Their main duties include monitoring automated equipment, ensuring packages are correctly labeled and routed, troubleshooting minor machine issues, and maintaining a safe work environment. They play a crucial role in the efficiency of logistics operations, helping to ensure that goods reach their destinations quickly and accurately. Attention to detail and adherence to safety protocols are important in this role.

What are the key skills and qualifications needed to thrive as a slam operator?

To thrive as a Slam Operator, you need a solid understanding of warehouse logistics, equipment operation, and inventory control, often requiring a high school diploma or equivalent. Familiarity with warehouse management systems (WMS), barcode scanners, and material handling tools is typically necessary. Attention to detail, reliability, and strong teamwork skills help ensure efficient and accurate operations. These abilities are crucial for maintaining smooth workflow, minimizing errors, and supporting overall warehouse productivity.

What are some common challenges faced by slam operators, and how can they be addressed in the workplace?

Slam Operators often encounter challenges such as managing repetitive tasks, adhering to strict safety protocols, and handling the physical demands of the job. To address these, many workplaces provide ergonomic training, rotate tasks to reduce fatigue, and foster a strong safety culture through regular briefings. Collaboration with supervisors and maintenance teams is also crucial to ensure that equipment runs smoothly and any issues are quickly resolved, helping to maintain both productivity and safety on the floor.
More about Slam Operator jobs
Infographic showing various Slam Operator job openings in the United States as of August 2026, with employment types broken down into 43% Full Time, 55% Part Time, 1% Contract, and 1% Nights. Highlights an 99% Physical, and 1% Remote job distribution.

Senior SLAM Engineer

AIM

Seattle, WA • On-site

$100 - $130/hr

Other

Posted 9 days ago


Job description

Senior SLAM Machine Learning Engineer

About us

AIM builds autonomy for the real world - robots that move mountains. Our systems fuse software, hardware, robotics, and mission‑critical infrastructure into ruggedized, safety‑critical machinery operating on jobsites across the world. We replace decades of manual, error‑prone, high‑risk work with intelligent machines that reshape how earthmoving is done.

Localization and mapping are core capabilities of our autonomy platform. Our machines must know precisely where they are in complex, constantly changing environments: terrain that is being actively dug, moved, and reshaped by the machines themselves. Unlike road vehicles that can rely on static HD maps and distinct lane lines, AIM machines operate in dynamic, often feature‑poor landscapes. This creates novel challenges in Simultaneous Localization and Mapping (SLAM), state estimation, and sensor fusion.

We’re building the SLAM systems that allow machines to navigate reliably, build accurate topographical representations on the fly, and operate safely under harsh physical conditions.

We’re growing fast, scaling globally, and building the engineering foundation that will define the next century of construction.

About you

You’re an engineer who is ready to take one of the most difficult state estimation and mapping problems where algorithmic theory meets the messy, physical world.

You have experience building production SLAM or state estimation systems that are proven to work on real hardware. You understand how localization algorithms behave under real‑world constraints such as severe sensor vibration, track/wheel slip, GPS‑denied environments, and featureless terrain.

You enjoy working across the full localization stack - from designing sensor configuration, integration and calibration (IMU, LiDAR, GNSS, kinematics), through factor graph optimization and map management, to deployment on edge compute for real‑time control loops.

You take ownership of outcomes, not just algorithms. You debug deeply, validate rigorously, and iterate quickly using field data to continuously improve system robustness.

You’re motivated by building state estimation systems that enable safe, reliable autonomy in environments where failure is not acceptable.

About us together

We are solving SLAM problems that do not exist in traditional autonomy domains.

AIM machines operate in environments that are constantly evolving - digging soil, moving rock, loading trucks, and reshaping terrain. These environments introduce challenges such as:

  • Dynamic terrain

  • Feature‑poor environments

  • Sensor occlusion

  • Dust, and environmental noise

  • Vibration and degrading calibration

We will design algorithms that perform reliably in these environments. We will build SLAM systems that integrate tightly with perception, planning, controls, and machine operations. And we will continuously close the loop between field data and algorithm improvements.

If that excites you - you’re the kind of Senior SLAM Engineer who will thrive here.

What you will own

As a Senior SLAM Engineer, you will design, develop, and deploy the state estimation, mapping and calibration systems that allow AIM’s autonomous machines to navigate and understand their changing environment.

Design & Advance SLAM Systems

  • Architect and develop robust multi‑sensor fusion algorithms (LiDAR, IMU, GNSS, wheel odometry/kinematics) for high‑frequency, low‑latency state estimation.

  • Advance AIM’s mapping stack, including point cloud registration, loop closure, and dynamic map updating.

  • Develop algorithms to detect and react to outlier measurements caused by dust, sliding terrain, or sensor degradation.

Own Sensor Calibration Pipelines

  • Design, build, and maintain automated calibration pipelines for complex multi‑sensor rigs (LiDAR, Camera, INS/IMU).

  • Develop algorithms for online and offline intrinsic, extrinsic, and spatio‑temporal calibration to ensure high precision despite severe machine vibration and mechanical wear.

  • Create scalable calibration routines that can be executed by field operators on active jobsites without needing specialized laboratory environments.

Build Production Localization Systems

  • Implement and optimize multi‑modal localization algorithms (graph or filter based) for real‑time deployment on edge hardware.

  • Build scalable tools for map management, alignment, and distribution across fleets of machines.

Integrate SLAM with the Autonomy Stack

  • Collaborate with perception, planning, and controls teams to provide stable, continuous state estimates required for precise, heavy‑duty manipulation and navigation.

  • Ensure SLAM outputs interact safely with machine‑centric awareness and safety systems.

  • Design localization interfaces that are robust, testable, and observable.

Use Field Data to Improve System Performance

  • Analyze real‑world telemetry and logs collected from deployed machines to characterize drift, analyze loop‑closure failures, and improve system reliability.

  • Identify edge cases and failure modes and develop robust, mathematically sound solutions.

  • Work closely with field engineers and operators to validate localization performance under real, punishing operating conditions.

Qualifications

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

  • 5+ years of professional experience building SLAM, state estimation, or localization systems.

  • Strong mathematical foundation in 3D geometry, linear algebra, probabilistic robotics, kinematics, and optimization.

  • Deep expertise in modern state estimation techniques (e.g., Extended/Unscented Kalman Filters, Particle Filters) and optimization frameworks (e.g., GTSAM, Ceres Solver, g2o).

  • Hands‑on experience developing and maintaining automated sensor calibration pipelines (intrinsic, extrinsic, and spatio‑temporal) for multi‑sensor suites (LiDAR, Camera, IMU, GNSS).

  • Exceptional programming ability in modern C++ (C++14/17 and beyond) and Python for tooling/analysis.

  • Experience with LiDAR odometry and mapping (LOAM variants), point cloud registration (ICP, NDT), and handling large 3D point clouds.

  • Experience tightly coupling IMU data with LiDAR, visual, or GNSS measurements.

  • Experience debugging complex, real‑world robotic system behavior using data, logs, and performance metrics.

  • Experience working in robotics.

Preferred Qualifications

  • Experience building SLAM systems for off‑road autonomous vehicles, agriculture, mining, or heavy machinery.

  • Experience developing continuous/online calibration algorithms to correct mechanical shifts during operation.

  • Experience dealing with complex vehicle kinematics and severe wheel/track slip.

  • Familiarity with handling map obsolescence in dynamic environments.

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