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Oil Field Rotation Jobs in Burbank, CA (NOW HIRING)

... field. Our company cultivates a supportive work environment with significant growth potential and ... Performing oil and lube services to maintain optimal engine performanceCompleting tire rotations ...

... field. Our company cultivates a supportive work environment with significant growth potential and ... Performing oil and lube services to maintain optimal engine performance * Completing tire rotations ...

... field. Our company cultivates a supportive work environment with significant growth potential and ... Performing oil and lube services to maintain optimal engine performance * Completing tire rotations ...

Head of Manufacturing

Hawthorne, CA · On-site

$180 - $220/hr

Bachelor's degree in manufacturing or mechanical engineering or another related field, or the ... energy, oil and gas, or automotive. * Strong background in fluid systems, mechanical assembly ...

... rotation of mats, ensuring functioning of lighting equipment, tee alignment, maintaining clean ... Provide customer service by fielding member or guest concerns and directing them to a supervisor

... rotation of mats, ensuring functioning of lighting equipment, tee alignment, maintaining clean ... Provide customer service by fielding member or guest concerns and directing them to a supervisor

... rotation of mats, ensuring functioning of lighting equipment, tee alignment, maintaining clean ... Provide customer service by fielding member or guest concerns and directing them to a supervisor

Showing results 21-40

Oil Field Rotation information

See Burbank, CA salary details

$15

$26

$41

How much do oil field rotation jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for oil field rotation in Burbank, CA is $26.44, according to ZipRecruiter salary data. Most workers in this role earn between $20.58 and $30.58 per hour, depending on experience, location, and employer.

What is an oil field rotation?

Oil field rotation jobs are positions in the oil and gas industry where employees work on a rotational schedule, typically spending a set number of days or weeks working on-site (often in remote locations) followed by an equivalent period of time off. This rotation system allows workers to manage the demanding and often challenging work environment by providing extended rest periods. Common rotation schedules are 14 days on/14 days off or 28 days on/28 days off. These jobs can include roles like drilling engineers, rig operators, and maintenance personnel. Rotation work is popular in offshore rigs and remote land-based oil fields due to the distance from workers’ homes.

What are the key skills and qualifications needed for an oil field rotation?

To thrive in an Oil Field Rotation position, you need strong mechanical aptitude, physical stamina, and knowledge of drilling or production operations, often backed by a high school diploma or technical certification. Familiarity with industry-specific equipment such as drilling rigs, SCADA systems, and safety protocols like HAZWOPER or OSHA certifications is common. Strong teamwork, adaptability, and effective communication are essential soft skills to manage the demanding and variable work environment. These abilities are crucial for ensuring operational efficiency, safety, and consistent performance during extended rotational shifts in remote locations.

What can I expect from the work schedule and lifestyle in an oil field rotation?

Oil field rotation roles typically involve working in remote locations for set periods, such as two weeks on followed by two weeks off. During your work period, you may work long shifts—often 12 hours per day—living onsite with your crew. This schedule allows for extended time off but can be physically demanding and requires being away from home for long stretches. Many find the rotation system rewarding due to the concentrated work periods and the opportunity to build strong camaraderie with teammates, but it’s important to prepare for the challenges of remote living and maintaining work-life balance.

What is the difference between Oil Field Rotation vs Oil Rig Worker?

AspectOil Field RotationOil Rig Worker
CertificationsBasic safety training, H2S, BOP certificationsSimilar certifications, often including safety and equipment operation
Work EnvironmentOn-site rotation schedules, traveling between sitesOn offshore or onshore rigs, physically demanding
Employer & Industry UsageUsed to describe rotation schedules for various rolesRefers to personnel working directly on rigs
Search & Comparison IntentUnderstanding rotation schedules and job rolesJob responsibilities and working conditions

Oil Field Rotation typically refers to the scheduling system for workers, including safety and operational rotations, while Oil Rig Worker describes the personnel performing hands-on tasks on rigs. Both roles often share similar certifications and work environments, but the term 'rotation' emphasizes scheduling, whereas 'rig worker' focuses on job duties.

What job categories do people searching Oil Field Rotation jobs in Burbank, CA look for?

The top searched job categories for Oil Field Rotation jobs in Burbank, CA are:

What cities near Burbank, CA are hiring for Oil Field Rotation jobs?

Cities near Burbank, CA with the most Oil Field Rotation job openings:

Infographic showing various Oil Field Rotation job openings in Burbank, CA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $54,992 per year, or $26.4 per hour.

Mechanical Design Engineer II (PCS)

53 Stations

Torrance, CA • On-site

$115 - $150/hr

Other

Posted 3 days ago

New


Job description

About Us

At Antares, our long-term mission is to make clean energy abundant from Earth to the Asteroid Belt. We’re fueled by the belief that advanced nuclear energy can strengthen our military, solve the climate crisis, elevate global living standards, and expand humanity's presence in outer space. To achieve our mission, we’re building mass-producible, inherently safe, deployable microreactors that can be used terrestrially, underwater, and in space.

The Antares team hails from SpaceX, the White House, the Pentagon, the Department of Energy, MIT, Rigetti Computing, General Atomics, Relativity Space, Ursa Major, and National Laboratories like Idaho, Oak Ridge, Los Alamos, and Savannah River. Antares has raised over $600M in venture capital from top-tier investors and has hundreds of million-dollars on contract with the military services, NASA, and the Department of Energy.

About the Role

As a Mechanical Design Engineer on the Power Conversion System (PCS), you will design the hardware that turns a set of individually developed machines (turbomachinery, motor-generator, recuperator, and primary heat exchanger) into one installed, testable, and operable power plant. Your design scope covers the working-fluid pressure boundary, the structural and layout architecture that carries and aligns the rotating machinery, and the high-temperature hardware that must survive it. This role resolves what happens between the components: routing, supports, thermal growth, leak-tightness, access, and assembly sequence. You will hold the mechanical arrangement and the pressure budget, work the mechanical interfaces to the major PCS components and to the reactor and safety systems, and carry that hardware from concept through fabrication, assembly, and test. You will support test rig design and instrumentation placement, then take what the data says about component life and performance into the next design revision.

The ideal candidate has taken gas-loop, pressure-boundary, or rotating-machinery hardware from concept through fabrication and test, is comfortable designing to low leak requirements and thermal growth as hard requirements rather than afterthoughts, and does their best work when the requirements are still moving. Experience packaging high-temperature machinery or building first-of-a-kind hardware is a strong differentiator.

Key Responsibilities:
  • Own the mechanical arrangement and pressure budget of the Power Conversion System and close the loop with cycle performance on parasitic losses.

  • Design the working-fluid pressure boundary including piping, joints, penetrations, and isolation with leak-tightness and pressure retention as first-class requirements of a closed cycle.

  • Define the mechanical arrangement, maintenance architecture including skid or module arrangement, supports, anchors, and alignment of the rotating machinery, accounting for thermal growth, machinery loads, safety, transport, and seismic conditions.

  • Manage mechanical interfaces to major PCS components, reactor, and safety systems.

  • Support test rig design and instrumentation placement. Utilize collected data to improve component life and performance.

  • Engineer components for high-temperature and high-stress service using metals and advanced materials, in partnership with materials and structural analysis.

  • Perform design-for-manufacturability and assembly assessments, including assembly sequence, access, maintainability, and field installation.

  • Work with Mechanical, Electrical, Safety, and Nuclear teams to ensure the designs meet the overall objectives and requirements.

Basic Qualifications:
  • Bachelor's degree in Mechanical, Aerospace, or a related engineering discipline

  • 2+ years of full-cycle design engineering experience

  • Experience designing pressure-retaining or leak-tight fluid hardware and supporting pressure and leak verification

  • Experience releasing production-intent mechanical drawings and models for fabrication, including GD&T and tolerance stack-up

  • Experience designing hardware for elevated-temperature or high-stress service, including material selection

  • Experience working the mechanical interfaces between multiple components integrated into a single assembly

Preferred Skills & Experience:
  • Experience in the Nuclear, Aerospace, Automotive, Power Generation, Motorsports, or Oil and Gas industries

  • Experience designing to pressure-boundary codes and standards such as ASME B31.3 or ASME BPVC Section VIII, and writing or executing pressure and leak test procedures

  • Experience with compressible flow, and with flow network or pressure-drop modeling to close a system pressure budget

  • Experience packaging or integrating rotating machinery, including alignment, supports, and machinery loads

  • Experience with high-temperature systems: thermal growth accommodation, expansion joints and bellows, and insulation design

  • Experience with skid-mounted or modular plant packaging, system layout, and designing for maintenance access

  • Experience with piping flexibility and stress analysis, and with structural FEA of supports and anchors

  • Experience with high-temperature metals and advanced materials, including creep-limited design in stainless steels or nickel superalloys

  • Experience designing to transport and seismic load cases

  • Experience supporting test rig design, instrumentation and sensor placement, and using test data to drive design changes

  • Experience with design engineering tools such as NX, ANSYS or Femap, and other product lifecycle software

  • Experience commissioning first-of-a-kind hardware and supporting bring-up and troubleshooting

  • Experience in a demanding, fast-paced development environment

Salary Range:
  • Mechanical Design Engineer II - $115,000 - $150,000

Location:
  • We are located in Torrance, CA in a 322,000 square foot, brand new facility featuring large open spaces for team collaboration, R&D, and production, as well as easy access to the 405, 105, and 110 freeways. Our facility is in the heart of Los Angeles' vibrant emerging tech ecosystem alongside many other high growth startups and enterprises.

Culture

At Antares, we like to specifically tie each role to our founding document’s set of values–here are the top five cultural values we think you should believe at your core to be successful:

  • Think in Systems - Energy and Defense are complex ecosystems with numerous stakeholders with competing priorities, conflicting policies, perverse incentives, and emergent and path-dependent properties. First principles thinking alone is insufficient. Think probabilistically and then take action. “If you want to be certain, then you are apt to be obsolete.” Over-optimizing the components often degrades the system

  • Obsess over the End User - The customer and end user are often not the same. We will never build globally competitive commercial products if we lose sight of our end users and their entire interaction with the product life cycle

  • Be Unconstrained by Convention - Our only limits are the laws of physics. Many, even experts, will say what we are working on is impossible. They said the same about SpaceX reusing rockets. Generationally impactful companies, by definition, must accomplish the seemingly impossible. If it were easy, it would have already been done. Never shy away from a solution because it has never been tried before, and never choose to do something because that's “how it's always been done”

  • Go Where the Work I s - Never miss a chance to meet a customer, user, or stakeholder face to face, even if that means hopping on a plane. If you can’t make it, find a teammate who can channel your intentions and go in your place. Deep work can be done from anywhere, but we believe teams are built in person, and aim to maximize our time together

  • Operate in the Grey - Embrace nuance in pursuit of truth. Question every fundamental assumption

Equal Opportunity

Antares is an Equal Opportunity Employer. Employment decisions are based solely on merit, competence, and qualifications, without regard to race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability, or any other legally protected status.

ITAR Requirements

To conform to U.S. Government export regulations, applicant must be a (i) U.S. citizen or national, (ii) U.S. lawful, permanent resident (aka green card holder), (iii) Refugee under 8 U.S.C. § 1157, or (iv) Asylee under 8 U.S.C. § 1158, or be eligible to obtain the required authorizations from the U.S. Department of State. Learn more about the ITAR here.

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