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Rebar Machine Operator Jobs in El Sobrante, CA (NOW HIRING)

Our arms are heavy, our payloads are heavier, and our operating conditions run from Arizona desert ... Architect platforms for reconfigurability so we can adapt across construction tasks (PV, rebar ...

Rebar Machine Operator information

See El Sobrante, CA salary details

$12

$19

$25

How much do rebar machine operator jobs pay per hour?

As of Aug 6, 2026, the average hourly pay for rebar machine operator in El Sobrante, CA is $19.61, according to ZipRecruiter salary data. Most workers in this role earn between $17.64 and $21.01 per hour, depending on experience, location, and employer.

What does a rebar machine operator do?

A Rebar Machine Operator is responsible for operating machinery that cuts, bends, and shapes steel reinforcing bars (rebar) used in construction projects. They read blueprints or work orders, set up and adjust machines, and ensure that the finished products meet specified measurements and quality standards. The job requires attention to detail, mechanical aptitude, and adherence to safety protocols, as working with heavy machinery and steel can be hazardous.

What is the difference between Rebar Machine Operator vs Rebar Fabricator?

AspectRebar Machine OperatorRebar Fabricator
CertificationsOSHA safety training, equipment operation certificationsOSHA safety training, welding certifications
Work EnvironmentConstruction sites, manufacturing plantsFabrication shops, construction sites
Job ResponsibilitiesOperating rebar bending and cutting machinesCutting, bending, assembling rebar components

Rebar Machine Operators focus on operating machinery to shape rebar, while Rebar Fabricators are involved in assembling and preparing rebar components. Both roles require safety certifications and work in similar environments, but their primary tasks differ—machine operation versus fabrication and assembly.

Are rebar machine operators in demand?

Rebar machine operators are in demand in the construction industry due to ongoing infrastructure projects and new building developments. Skilled operators who can operate rebar bending and cutting machines efficiently are sought after, especially in regions with active construction activity. Employment prospects are generally favorable for those with experience and safety certifications.

What are some common challenges faced by rebar machine operators on the job?

Rebar Machine Operators often encounter challenges such as maintaining precision while cutting or bending rebar to specific measurements, especially under tight project deadlines. Working in environments that can be noisy and require strict adherence to safety protocols is also common. Additionally, operators may need to troubleshoot machinery issues quickly to minimize downtime and coordinate closely with other construction team members to ensure materials are prepared correctly for ongoing projects.

What are the key skills and qualifications needed to thrive as a rebar machine operator, and why are they important?

To thrive as a Rebar Machine Operator, you need mechanical aptitude, basic math skills, and experience with construction or manufacturing equipment, often supported by a high school diploma or equivalent. Familiarity with rebar cutting, bending machines, and safety protocols—sometimes enhanced by OSHA or equipment-specific certifications—is typically required. Strong attention to detail, problem-solving abilities, and effective communication make someone stand out in this role. These skills ensure precise fabrication, workplace safety, and efficient teamwork on construction projects.
What cities near El Sobrante, CA are hiring for Rebar Machine Operator jobs? Cities near El Sobrante, CA with the most Rebar Machine Operator job openings:

Senior Mechanical Engineer - Robotic Platforms

Gritt

South San Francisco, CA • On-site

$125K - $165K/yr

Full-time

Posted 14 days ago


Job description

Gritt is an intelligent system that combines robotics and AI to build the infrastructure that pulls society forward. Gritt deploys via simple attachments to common equipment found on construction sites and autonomously performs labor-intensive tasks, verification, and planning. Gritt systems are already building critical infrastructure in the harshest outdoor environments, starting with large-scale solar. The founding team includes experts in robotics and AI from Carnegie Mellon, Stanford, and MIT. Gritt is backed by Obvious Ventures, Union Square Ventures, First Round Capital, Climactic, Congruent Ventures, and other leading firms.
The Role
You'll own the mechanical integration of our robots onto heavy mobile base platforms - skid-steers and tracked vehicles in the 10,000 lb class - and lead programs that take systems from prototype to repeatable field deployment across construction environments. Our arms are heavy, our payloads are heavier, and our operating conditions run from Arizona desert heat to sub-zero winter cold. You'll make hard trade-offs on structure, mounting, sealing, thermal, and serviceability, and you'll make them fast.
Because our platform is general-purpose, you won't be designing for one task forever. The same base robot needs to handle different end-effectors, payloads, and workflows as we expand across construction. Designing for that kind of reconfigurability - without giving up ruggedness - is a core part of the job.
This is a hands-on senior role. You should be equally comfortable in CAD, on the shop floor with a torque wrench, and at a job site debugging a harness failure at 6 a.m..
What You'll Do
  • Lead mechanical integration programs that mate robotic arms and payloads to skid-steer and tracked vehicle platforms - structural mounting, load paths, power/data routing, and service access.
  • Design and specify heavy-duty mechanical systems - mounts, brackets, enclosures, actuators, end-effectors - built to survive continuous outdoor duty cycles on active construction sites.
  • Architect platforms for reconfigurability so we can adapt across construction tasks (PV, rebar, block work, and future applications) without rebuilding from scratch each time.
  • Own the environmental strategy: IP67-rated enclosures, gasketing, connector selection, thermal management across roughly -20°F to 120°F+, and ingress protection against dust, mud, rain, and snow.
  • Design, route, and validate wire harnesses and cable assemblies - strain relief, chafe protection, connector selection, service loops, and harness documentation a contract manufacturer can actually build.
  • Integrate sensor and lighting packages (cameras, LiDAR, IMUs, work lights, indicators) with attention to field-of-view, vibration isolation, cleanability, and serviceability.
  • Drive DFM, DFA, and DFS (design-for-service) from the first CAD review, not as an afterthought.
  • Run structural analysis (hand calcs and FEA) on critical load-bearing components; own the validation plan - vibration, shock, thermal, ingress, EMI - and see it through test.
  • Work directly with machine shops, sheet metal vendors, and harness houses. Release drawings, manage ECOs, and hold vendors to spec.
  • Go to the field. Diagnose failures, instrument systems, and carry learnings back into the next revision.

What We're Looking For
  • 7+ years of mechanical engineering experience, with meaningful time at a robotics, autonomous systems, or heavy equipment company that scaled real hardware into the field.
  • Direct experience integrating robotic arms, actuators, or heavy payloads onto mobile platforms - skid-steers, tracked vehicles, AGVs, off-road equipment, or equivalent heavy machinery.
  • Proven track record designing to IP67 (or stricter) and shipping systems that have survived real outdoor deployments across rain, snow, sub-zero cold, and high-heat/high-dust environments.
  • Strong hands-on cabling and harness design experience - you've specified connectors, drawn harness diagrams, and debugged the problems that come back from the field.
  • Expert CAD proficiency (OnShape/SolidWorks) and comfort with GD&T, tolerance stacks, and production-quality drawings.
  • Structural analysis chops on heavy systems - you can size a weldment, pick a bearing, and know when to run FEA vs. when hand calcs are enough.
  • Comfort moving fast in a scale-up: you've lived through the transition from one-off prototypes to low-volume production and know where the landmines are.
  • Willingness to travel to field sites (~15-25%), including active construction environments.

Bonus Points
  • Experience specifically with construction equipment, agricultural equipment, mining robotics, or defense ground vehicles.
  • Experience designing platforms intended to support multiple end-effectors, payloads, or task configurations.
  • Background integrating perception stacks - camera mounting, LiDAR calibration fixtures, sensor cleaning systems.
  • Familiarity with hydraulics, pneumatics, or high-current DC power distribution on mobile platforms.
  • Experience owning supplier relationships for castings, weldments, or large machined parts.
  • Prior work on systems operating in desert Southwest or northern-climate conditions specifically.

Why This Role
You'll own how our robots survive contact with the real world - across construction tasks, not just one. The problems are concrete, the feedback loop is fast, and the systems you design will be out on job sites being hammered by sun, mud, and construction crews within months. If you want to build serious machines doing serious work outdoors - and a platform general enough to tackle whatever construction throws at it next - we should talk.-----Gritt is an equal opportunity employer. We welcome applicants from all backgrounds.