2

Remote Hydraulic System Design Engineer Jobs in Oregon

This role is remote. What You'll Do (Key Responsibilities) * Develop and maintain electrical ... Review and redline vendor submittals for UPS systems, battery systems, cooling distribution units ...

Mechanical Design Engineer

OR ยท On-site +1

$75K - $102K/yr

Position Overview We are seeking a Mechanical Design Engineer to support satellite mechanical ... Conduct structural, mechanical system, and satellite payload equipment layout studies to determine ...

Civil Engineering Tutor

Eugene, OR ยท Remote

$18 - $40/hr

... and hydraulic system design. Guides students through analyzing determinate and indeterminate ... Emphasizes applying engineering principles to real infrastructure challenges and connects civil ...

Civil Engineering Tutor

OR ยท Remote

$18 - $40/hr

... and hydraulic system design. Guides students through analyzing determinate and indeterminate ... Emphasizes applying engineering principles to real infrastructure challenges and connects civil ...

Civil Engineering Tutor

Portland, OR ยท Remote

$18 - $40/hr

... and hydraulic system design. Guides students through analyzing determinate and indeterminate ... Emphasizes applying engineering principles to real infrastructure challenges and connects civil ...

Staff RFIC Design Engineer

Hillsboro, OR ยท On-site +1

$144K - $187K/yr

We combine product and technology leadership, systems-level expertise and global manufacturing ... Experience supporting remote engineering teams. * Be able to work independently, communicate well ...

New

Senior SCADA Engineer, Design (Remote)

OR ยท On-site +1

$104K - $143K/yr

This role is fully remote. Specific location details and expectations will be discussed during the ... Lead and own the in-house design of SCADA monitoring and control systems for utility-scale ...

Staff RFIC Design Engineer

Bend, OR ยท On-site +1

$144K - $187K/yr

We combine product and technology leadership, systems-level expertise and global manufacturing ... Experience supporting remote engineering teams. * Be able to work independently, communicate well ...

New

Senior Staff Mfg. Design Engineer

Salem, OR ยท On-site +1

$163K - $212K/yr

Strong knowledge of actuation systems, robotic kinematics, sensors, and cable management is a plus ... Design, Supply Chain, Manufacturing, Production, Quality, Test, Systems Engineering, and Program ...

Senior ASIC Physical Design Engineer

OR ยท On-site +1

$170K - $250K/yr

The Role We are seeking a Senior ASIC Physical Design Engineer to help implement advanced SoCs that power next-generation satellite and space systems. In this role, you will contribute to the full ...

Principal ASIC Physical Design Engineer

OR ยท On-site +1

$190K - $280K/yr

The Role We are looking for a Principal ASIC Physical Design Engineer to lead the implementation of complex SoCs for next-generation satellite and space systems. You will own the full physical design ...

Senior Software Engineer - Design Systems

OR ยท On-site +1

$388K - $558K/yr

You'll collaborate closely with system designers and engineers, to drive innovation around the distribution and adoption of the Design System. You'll lead and champion projects and effectively ...

Lead Satellite Mechanical Design Engineer

OR ยท On-site +1

$110K - $133K/yr

This role is responsible for leading the mechanical design of the complete satellite system ... Create, maintain, and improve standards for engineering drawings, specifications, and design for ...

Conduct design feasibility studies to evaluate the package design goals for size, cost, and system ... S. Electrical Engineering or equivalent experience * Minimum of 5+ years proven experience in Mask ...

next page

Showing results 1-20

Remote Hydraulic System Design Engineer information

What does a remote hydraulic system design engineer do?

A Remote Hydraulic System Design Engineer is responsible for designing, analyzing, and optimizing hydraulic systems used in machinery and equipment, often working from a remote location. Their duties include creating technical drawings, selecting hydraulic components, performing simulations, and collaborating with other engineers and clients through digital communication tools. They ensure that hydraulic systems meet performance, safety, and efficiency standards, and may also provide troubleshooting support and documentation. Working remotely, they use specialized software to design and model systems, making it possible to contribute to projects without being on-site.

What are the key skills and qualifications needed to thrive as a remote hydraulic system design engineer?

To thrive as a Remote Hydraulic System Design Engineer, you need a solid background in mechanical engineering, fluid dynamics, and hydraulic system design, typically supported by a relevant engineering degree and professional certification (e.g., PE or equivalent). Familiarity with CAD software (such as AutoCAD or SolidWorks), hydraulic simulation tools, and industry standards is essential. Strong problem-solving abilities, effective communication, and self-motivation are crucial soft skills for collaborating remotely and managing complex projects. These skills ensure the engineer can design efficient, reliable hydraulic systems while coordinating effectively with global teams and meeting client requirements.

How does a remote hydraulic system design engineer typically collaborate with on-site teams during the project lifecycle?

As a Remote Hydraulic System Design Engineer, collaboration with on-site teams is often achieved through regular video conferences, shared digital platforms for design reviews, and cloud-based project management tools. Clear and proactive communication is essential to address any real-time issues that may arise during installation or testing. Engineers frequently participate in virtual walkthroughs, provide technical documentation, and offer remote troubleshooting support to ensure seamless coordination between design and implementation teams. This collaborative approach helps maintain project timelines and quality standards despite geographical separation.

What is the difference between Remote Hydraulic System Design Engineer vs Hydraulic Systems Technician?

AspectRemote Hydraulic System Design EngineerHydraulic Systems Technician
CredentialsBachelor's in Mechanical or Hydraulic Engineering, certifications like PE or FE often preferredTechnical diploma or associate degree in hydraulics or related field
Work EnvironmentDesign offices, remote collaboration, project planningField sites, maintenance facilities, on-site troubleshooting
Industry UsageDesigning hydraulic systems for machinery, vehicles, industrial equipmentInstalling, maintaining, repairing hydraulic systems
Search & Comparison IntentUnderstanding design roles, qualifications, remote work optionsTechnical skills, hands-on work, certifications

The Remote Hydraulic System Design Engineer focuses on designing hydraulic systems remotely, requiring engineering credentials and design expertise. In contrast, the Hydraulic Systems Technician handles installation and maintenance on-site, emphasizing technical skills and practical experience. Both roles are essential in hydraulic industry projects but differ in responsibilities, work environment, and qualifications.

What are popular job titles related to Remote Hydraulic System Design Engineer jobs in Oregon?

For Remote Hydraulic System Design Engineer jobs in Oregon, the most frequently searched job titles are:

What job categories do people searching Remote Hydraulic System Design Engineer jobs in Oregon look for?

The top searched job categories for Remote Hydraulic System Design Engineer jobs in Oregon are:

What cities in Oregon are hiring for Remote Hydraulic System Design Engineer jobs?

Cities in Oregon with the most Remote Hydraulic System Design Engineer job openings:

Infographic showing various Remote Hydraulic System Design Engineer job openings in Oregon as of August 2026, with employment types broken down into 1% As Needed, 71% Full Time, 26% Part Time, and 2% Contract. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution.

Senior Mechanical Design Engineer - Liquid Cooling Systems

Armada

OR โ€ข On-site, Remote

$89K - $123K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 28 days ago


Job description

About the Roleย 
  • Armada is seeking aย Senior Mechanical Systems / Design Engineerย to lead the design and development of liquid cooling and mechanical distribution systems for our modular AI data center platforms.ย 
  • This role sits at the intersection of mechanical design, hydraulic engineering, thermal infrastructure, manufacturing, controls, and commissioning.ย 
  • You will own the mechanical distribution architecture connecting heat-rejection equipment, pumps, piping, manifolds, coolant distribution units, rack cooling systems, and modular interconnects. You will translate system requirements into practical, serviceable, and repeatable designs that can be manufactured in a factory and deployed consistently across multiple sites.ย 
  • This is not a traditional consulting or drawing-review role. You will helpย establishย the design rules, technical standards, interfaces, and commissioning philosophy behind the product itself.ย 

Whatย You'llย Own
ย 

Mechanical and Liquid Cooling Architectureย 

  • Own the end-to-end mechanical cooling and fluid-distribution architecture for modular data center platforms.ย 
  • Define primary, secondary, and rack-level cooling boundaries.ย 
  • Establish pumping, flow-control, pressure-management, balancing, and redundancy strategies.ย 
  • Align heat-rejection equipment,ย distributionย piping, CDUs, rack manifolds, rear-door heat exchangers, and other cooling interfaces.ย 
  • Develop scalable architectures that support multiple product configurations and deployment sizes.ย 

Hydraulic System Designย 

  • Perform and review pipe-sizing, flow, pressure-drop, pump-head, and system-volume calculations.ย 
  • Develop hydraulic models for water and glycol-based systems.ย 
  • Account for fluid concentration, viscosity, temperature, fittings, valves, strainers, heat exchangers, and equipment pressure losses.ย 
  • Define control-valve, balancing-valve, bypass, minimum-flow, and differential-pressure strategies.ย 
  • Validate system performance across normal, part-load, maintenance, startup, and failure conditions.ย 

Mechanical Design and Documentationย 

  • Own P&IDs, mechanical schematics, equipment schedules, valve schedules, instrumentation schedules, and design calculations.ย 
  • Develop mechanical design criteria, basis-of-design requirements, and standard details.ย 
  • Define clear equipment andย scopeย boundaries between plant systems, modules, CDUs, rack cooling, and field interconnections.ย 
  • Maintain disciplined revision control and technical traceability across the mechanical design package.ย 
  • Review vendor drawings, submittals, calculations, and equipment selections for compliance with system intent.ย 


Modular Product Integration
ย 

  • Define mechanical interfaces between factory-built modules and field-installed infrastructure.ย 
  • Develop repeatable interconnect strategies for supply and return piping, manifolds, flexible connections, isolation valves, quick disconnects, drains, vents, and leak detection.ย 
  • Establish labeling, connection, access, and installation standards that reduce field variability.ย 
  • Support product configurations designed for transport, rapid installation, and phased expansion.ย 

Design for Manufacturing and Serviceabilityย 

  • Develop layouts that support repeatable fabrication, assembly, inspection, testing, and installation.ย 
  • Standardize piping routes, fittings, valve assemblies, supports, connection points, and mechanical components where practical.ย 
  • Coordinate equipment clearances, removal paths, service access, drain points, vent points, and filter or strainer access.ย 
  • Partner with manufacturing teams to resolve buildability issues and improve future revisions.ย 
  • Translate field and factory feedback into product improvements.ย 

Controls and Instrumentation Integrationย 

  • Define the mechanical measurement and control requirements for temperature, flow, differential pressure, pressure, leak detection, fluid level, pump status, and valve position.ย 
  • Partner withย controlsย engineers to develop system operating sequences and alarm strategies.ย 
  • Support pump staging,ย variable-speedย control, minimum-flow protection, equipment enablement, and failure-response logic.ย 
  • Help ensure mechanical system data is available for commissioning, operations, and remote monitoring.ย 

Commissioning-First Designย 

  • Design systems for safe and efficient filling, flushing, venting, draining, testing, balancing, and startup.ย 
  • Define isolation, bypass, temporary connection, and load-bank testing requirements.ย 
  • Develop or support factory acceptance, site acceptance, and integrated systems testing procedures.ย 
  • Establish performance-verification criteria for flow, pressure, temperature, heat rejection, controls, alarms, and failure modes.ย 
  • Work directly with commissioning and field teams during startup and troubleshooting.ย 

Cross-Functional Engineering Leadershipย 

  • Partner with thermal, electrical, controls, structural, manufacturing, commissioning, supply chain, and product teams.ย 
  • Coordinate directly with OEMs, equipment manufacturers, fabricators, and engineering partners.ย 
  • Identifyย interface risks, design gaps, and single points of failure early.ย 
  • Make clear technical decisions whileย maintainingย alignment across the broader product architecture.ย 
  • Communicate complex system behavior in a practical way to both technical and nontechnical stakeholders.ย 
What Makes This Role Differentย 

Product ownershipย 

  • You will help define a repeatable mechanical platform rather than deliver a one-time project.ย 

Concept through deploymentย 

  • You will see designs move from calculations and P&IDs into fabrication, factory testing, commissioning, and field operation.ย 

High-density infrastructureย 

  • You will solve mechanical and liquid-cooling challenges associated with AI, HPC, and other high-heat-density compute platforms.ย 

Direct technical impactย 

  • Your decisions will shape equipmentย selection, system reliability, factory assembly, field deployment, and long-term serviceability.ย 
What You Bringย 
  • 7 or more years of experience designing mechanical cooling, hydraulic distribution, process cooling, or mission-critical infrastructure systems.ย 
  • Experience with data centers, semiconductor facilities, industrial process cooling, central utility plants, or comparable high-reliability environments.ย 
  • Strong knowledge of pipe sizing, pump selection, pressure-drop analysis, flow balancing, system volume, and hydraulic control.ย 
  • Experience developing and owning P&IDs, mechanical calculations, equipment schedules, valve schedules, and instrumentation requirements.ย 
  • Practical knowledge ofย chilled-water, condenser-water, glycol, or process-fluid systems.ย 
  • Experience designing for commissioning, maintenance, isolation, flushing, venting, draining, and service access.ย 
  • Ability to coordinate across engineering, manufacturing, controls, commissioning, and field teams.ย 
  • Strong technical judgment and the abilityย to ownย work with limited oversight.ย 
Nice to Haveย 
  • Experience with direct liquid cooling for AI or HPC systems.ย 
  • Experience with CDUs, rack manifolds, cold plates, rear-door heat exchangers, liquid-to-liquid heat exchangers, or liquid-to-air systems.ย 
  • Background in modular, prefabricated, skid-based, or containerized infrastructure.ย 
  • Experience with AFT Fathom, Pipe-Flo, or comparable hydraulic modeling tools.ย 
  • Familiarity with CFD, thermal modeling, or transient analysis.ย 
  • Proficiencyย with AutoCAD, Revit, Plant 3D, SolidWorks, Inventor, or similar design tools.ย 
  • Experience supporting FAT, SAT, IST, or field commissioning.ย 
  • Professional Engineer license or equivalent technical depth.ย 
Compensation

For U.S. Based candidates: To ensure fairness and transparency, the starting base salary range for this role for candidates in the U.S. are listed below, varying based on location experience, skills, and qualifications.

In addition to base salary,ย this role will also be offered equity and subsidized benefits (details available upon request).

We use a geographic pay structure based on cost-of-labor markets. ย 

  • Tier 1 (e.g., SF Bay Area, NYC, Seattle): $157,600 - $185,000ย 
  • Tier 2 (most U.S. metro areas): $137,040ย ย - $171,300ย 
  • Tier 3 (other cities):ย $130,188 - $162,735

Final compensation will beย determinedย by experience, scope, and level, and may vary from the posted range.ย 

Benefits
  • Competitive base salary and equity
  • Medical, dental, and vision (subsidized cost)
  • Health savings accounts (HSA), flexible spending accounts (FSA), and dependent care FSAs (DCFSA)
  • Retirement plan options, including 401(k) and Roth 401(k)
  • Unlimited paid time off (PTO)
  • 14 paid company holidays per year

#LI-AB1

#LI-Remote