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Fluid Power Engineering Jobs in Oregon (NOW HIRING)

Maintain test infrastructure fluid systems: monitor water quality and compressed air/water piping ... Comfort using common hand and power tools (e.g., impact wrenches, drills, torque wrenches, hand ...

Maintain test infrastructure fluid systems: monitor water quality and compressed air/water piping ... Comfort using common hand and power tools (e.g., impact wrenches, drills, torque wrenches, hand ...

$100K - $152K/yr

This position will offer you the ability to directly apply your knowledge of thermodynamics, heat transfer, fluid mechanics, and experience in power plant engineering * You will be preparing or ...

$100K - $152K/yr

This position will offer you the ability to directly apply your knowledge of thermodynamics, heat transfer, fluid mechanics, and experience in power plant engineering * You will be preparing or ...

$145K - $222K/yr

... power plant modifications. The position will involve coordinating with multiple internal and ... in thermodynamics, fluid mechanics, and heat transfers * Proven experience managing multi ...

$145K - $222K/yr

... power plant modifications. The position will involve coordinating with multiple internal and ... in thermodynamics, fluid mechanics, and heat transfers * Proven experience managing multi ...

Senior Computational Engineer

Portland, OR · On-site

$110K - $152K/yr

Evaluate power, propulsion, hydrodynamic loading, device performance, and other key metrics using ... Engineering, Physics, Applied Mathematics, or a similar field. * Strong foundation in fluid ...

Senior Computational Engineer

Portland, OR · On-site

$110K - $152K/yr

Evaluate power, propulsion, hydrodynamic loading, device performance, and other key metrics using ... Engineering, Physics, Applied Mathematics, or a similar field. * Strong foundation in fluid ...

Senior Computational Engineer

Portland, OR · On-site

$110K - $152K/yr

Evaluate power, propulsion, hydrodynamic loading, device performance, and other key metrics using ... Engineering, Physics, Applied Mathematics, or a similar field. * Strong foundation in fluid ...

$134K - $205K/yr

... Engineering from an ABET accredited program with academic coursework in thermodynamics, fluid mechanics, and heat transfers * A minimum of 12 years of experience in the nuclear power industry

$118K - $180K/yr

... Engineering from an ABET accredited program with academic coursework in thermodynamics, fluid mechanics, and heat transfers * A minimum of 10 years of experience in the power industry * Working ...

$84K - $129K/yr

... Engineering from an ABET accredited program with academic coursework in thermodynamics, fluid mechanics, and heat transfers * A minimum of 5 years of experience in the power industry * Working ...

Electrical Engineer

Eugene, OR · On-site +1

$74K - $127K/yr

Analyze complex electrical engineering problems and develops cost-effective and viable solutions ... Design modifications to existing power generation system. * Integrate state-of-the-art technology ...

Electrical Engineer

Rufus, OR · On-site +1

$104K - $127K/yr

Analyze complex electrical engineering problems and develops cost-effective and viable solutions ... Design modifications to existing power generation system. * Integrate state-of-the-art technology ...

$99K/yr

Engineering. To be acceptable, the program must: (1) lead to a bachelor's degree in a school of ... c) fluid mechanics, hydraulics; (d) thermodynamics; (e) electrical fields and circuits; (f) nature ...

Showing results 41-60

Fluid Power Engineering information

See Oregon salary details

$49.2K

$155.3K

$184K

How much do fluid power engineering jobs pay per year?

As of Aug 7, 2026, the average yearly pay for fluid power engineering in Oregon is $155,281.00, according to ZipRecruiter salary data. Most workers in this role earn between $123,200.00 and $182,900.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a fluid power engineer, and why are they important?

To thrive as a Fluid Power Engineer, you need a solid background in mechanical or hydraulic engineering, fluid mechanics, and system design, typically supported by a relevant engineering degree. Familiarity with CAD software, hydraulic simulation tools, and industry certifications like those from the International Fluid Power Society (IFPS) are commonly required. Strong problem-solving, attention to detail, and effective communication skills help engineers collaborate with multidisciplinary teams and address complex system requirements. These skills are vital for designing efficient, safe, and reliable fluid power systems used in various industrial applications.

What are some typical challenges faced by fluid power engineers in project development, and how can they be addressed?

Fluid power engineers often encounter challenges such as system leakage, efficiency losses, and component compatibility during project development. Addressing these issues requires thorough system analysis, careful selection of compatible hydraulic or pneumatic components, and rigorous testing during the design phase. Collaborating closely with manufacturers, maintenance teams, and control engineers can help identify and resolve potential problems early, ensuring reliable and cost-effective solutions. Continuous learning about new technologies and industry standards also plays a key role in overcoming these challenges.

What is the difference between Fluid Power Engineering vs Mechanical Engineering?

AspectFluid Power EngineeringMechanical Engineering
CredentialsBachelor's in Mechanical or Fluid Power Engineering, certifications like NFPA or FPEBachelor's in Mechanical Engineering, PE license often preferred
Work EnvironmentManufacturing plants, hydraulic and pneumatic system design labsFactories, design offices, research labs
Industry UsageHydraulic systems, pneumatic controls, fluid power systemsBroader mechanical systems, thermodynamics, structural design

Fluid Power Engineering focuses specifically on hydraulic and pneumatic systems, requiring specialized knowledge in fluid dynamics and control systems. Mechanical Engineering covers a wider range of mechanical systems, including thermodynamics, materials, and structural analysis. While both fields share foundational engineering principles, Fluid Power Engineers specialize in designing and maintaining fluid-based systems used in various industries.

What is fluid power engineering?

Fluid power engineering is a branch of engineering that focuses on the use, design, and maintenance of systems that transmit and control power through fluids under pressure, such as hydraulics (liquids) and pneumatics (gases). Fluid power engineers design components and systems like pumps, valves, actuators, and circuits used in machinery, vehicles, and industrial equipment. These systems are widely used in industries such as manufacturing, construction, and aerospace due to their efficiency and reliability in controlling force and motion. Fluid power engineers also work on improving the efficiency, safety, and environmental impact of these systems.

How do you become a fluid power engineer?

To become a fluid power engineer, you typically need a bachelor's degree in mechanical, electrical, or fluid power engineering. Gaining experience with hydraulic and pneumatic systems, along with proficiency in CAD software and industry standards, is important. Professional certifications, such as those from the International Fluid Power Society, can also enhance career prospects.

What does a fluid power engineer do?

A fluid power engineer designs, develops, and maintains systems that use pressurized fluids, such as hydraulics and pneumatics, to generate power and control machinery. They analyze system performance, select appropriate components, and ensure safety and efficiency, often using tools like CAD software and adhering to industry standards. This role typically requires knowledge of fluid dynamics, mechanical systems, and relevant certifications.
What are popular job titles related to Fluid Power Engineering jobs in Oregon? For Fluid Power Engineering jobs in Oregon, the most frequently searched job titles are:
What job categories do people searching Fluid Power Engineering jobs in Oregon look for? The top searched job categories for Fluid Power Engineering jobs in Oregon are:
What cities in Oregon are hiring for Fluid Power Engineering jobs? Cities in Oregon with the most Fluid Power Engineering job openings:
Infographic showing various Fluid Power Engineering job openings in Oregon as of August 2026, with employment types broken down into 76% Full Time, 20% Part Time, 3% Contract, and 1% Nights. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $155,281 per year, or $74.7 per hour.

Test Engineering Technician

Panthalassa

Portland, OR

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 24 days ago


Job description

About the Company

Panthalassa is a renewable energy and ocean technology company committed to rapidly developing and deploying technologies that will ensure a sustainable future for Earth by unlocking the vast energy potential of its oceans. Our mission is to capture civilizational levels of ultra-low-cost renewable energy for applications including computing and affordable renewable fuels delivered to shore.

We are headquartered in Portland, Oregon, and operate as a public benefit corporation backed by leading venture capitalists, philanthropic investors, and university endowments. Our team includes individuals with experience at SpaceX, Tesla, Apple, Blue Origin, the U.S. military, and leading research universities. We operate as an idea meritocracy-where the best ideas win-and we're building the most capable engineering and operations team on the planet.

About the Job

We are seeking a Test Engineering Technician to join our cross-functional Test Engineering team as its first dedicated technician, reporting to the Engineering Manager for Test Engineering. You will take primary responsibility for the physical operation, maintenance, and upgrade of our existing large-scale test facilities, as well as helping build new test systems, with an emphasis on mechanical systems (roughly 3/4 of the role) and supporting electrical/instrumentation work (roughly 1/4 of the role).

This is a hands-on role in a climate-controlled, well-lit shop and lab environment. You'll keep test rigs running reliably between campaigns, support the mechanical and electrical engineers who design and run the tests, and, once trained, work at the operator's console. You'll work closely with the Turbogenerator Development, Mechanical Engineering, Electrical Engineering, and Node Integration & Test teams.

Responsibilities
  • Perform physical operation, maintenance, and upgrades on existing test rigs, and support the build of new test systems.
  • Maintain test infrastructure fluid systems: monitor water quality and compressed air/water piping, pumps, and filters, performing routine preventive maintenance.
  • Maintain inventory of spare parts, tools, and supplies; identify and procure what's needed to keep test operations running.
  • Operate mobile elevated work platforms (MEWPs) and overhead cranes; work safely at elevation and lift large objects (up to 50 lbs) as part of routine test rig operations.
  • Perform light fabrication tasks in support of test setups, such as drilling and basic use of mills or lathes; interface with our welders and machinists on more complex fabrication needs.
  • Assemble and troubleshoot electrical cables and harnesses; perform basic continuity checks and instrumentation calibration using a digital multimeter and related tools.
  • Apply working knowledge of low-voltage instrumentation concepts in support of test setups.
  • Troubleshoot systems by tracing signals, identifying likely root causes, and methodically eliminating variables through controlled tests.
  • Write and follow test procedures and maintenance documentation for the systems you operate and maintain.
  • Once trained, operate test rigs from the operator's console in support of test campaigns.
  • Maintain a clean, organized, and safe working environment; follow lock-out/tag-out (LOTO) procedures.
  • Support adjacent teams (Turbogenerator Development, Mechanical Engineering, Electrical Engineering, Node Integration & Test) as testing priorities require.
Required Qualifications
  • Hands-on technical background such as an engineering R&D lab, academic research lab, aerospace test facility, aircraft mechanic, capital equipment or automation machinery, automotive mechanic, or industrial maintenance.
  • Prior experience working closely with mechanical or electrical engineering teams.
  • Comfort working on elevated platforms and operating an overhead crane.
  • Familiarity with lock-out/tag-out (LOTO) procedures and a demonstrated commitment to a clean, safe working environment.
  • Basic fabrication skills: drilling, and comfort around mills or lathes.
  • Comfort using common hand and power tools (e.g., impact wrenches, drills, torque wrenches, hand crimpers) and precision measuring tools (calipers, micrometers).
  • Basic electrical skills: using a digital multimeter for continuity checks and basic instrumentation calibration, and a conceptual understanding of low-voltage instrumentation.
  • Strong troubleshooting instincts: tracing signals, identifying root causes, and systematically eliminating variables.
  • Strong verbal and written communication skills, including writing clear test procedures and maintenance documentation.
  • Willingness to be trained as a Non-Qualified Electrical Safety Worker, with the potential to grow into a Qualified Electrical Safety Worker.
Desired Qualifications
  • Soldering experience for cable-building.
  • Ability to read and interpret P&IDs, wiring diagrams, and engineering drawings.
  • Experience building or modifying test stands or ground support equipment (GSE), not just maintaining existing rigs.
  • Experience working with pressurized or high-pressure systems.
  • Familiarity with data acquisition (DAQ) systems.

The above qualifications are desired, not required. We encourage you to apply if you are a strong candidate with only some of the desired skills and experience listed.

Growth Opportunities

This role offers growth opportunities, including a path toward becoming a Qualified Electrical Safety Worker and toward broader technical responsibility on the Test Engineering team.

Additional Requirements
  • You may be required to be on your feet for up to 8 hours per day and occasionally lift objects weighing 50 pounds or more.
  • You should be comfortable occasionally working in elevated work areas, including on mobile elevated work platforms, ladders, and platforms, while using appropriate safety equipment.
Compensation and Benefits

If hired for this full-time role, you will receive:

  • Cash compensation of $105,000 - $125,000.

  • Equity in the company. We're all owners and if we're successful, this equity should be far and away the most valuable component of your compensation.

  • A benefits package that helps you take care of yourself and your family, including:

    • Flexible paid time off

    • Health insurance (the company pays 100% of gold level PPO plan for full time employees, their partners, and dependents)

    • Dental insurance (the company pays 100% for full time employees and 100% for their partners and dependents)

    • Vision insurance (the company pays 100% for full time employees, their partners, and dependents)

    • Disability insurance (the company pays 100% for a policy to provide long term financial support if you become disabled)

    • Ability to contribute to tax-advantaged accounts, including 401(k), health FSA, and dependent care FSA

  • Relocation assistance to facilitate your move to Portland (if needed).

Location

This is an onsite position. Our offices, lab, and shop are located in Portland, Oregon.