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Industrial Hydraulics Application Engineer

Hydrotech Isaacs
Posted 24 days ago, valid for 17 days
Location

West Chester, OH 45071, US

Salary

Competitive

Contract type

Full Time

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Sonic Summary

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  • Join an engineering team in Cincinnati, OH, Canton, OH, or De Pere, WI to design hydraulic systems for heavy industry.
  • The role involves collaborating with customers and sales teams to develop system concepts, schematics, and support projects from design to commissioning.
  • Candidates should have a degree in Mechanical Engineering or a related field, with at least 3 years of experience in industrial hydraulics or systems integration.
  • Proficiency in CAD software such as AutoCAD or SolidWorks, along with strong circuit design skills, is required, and familiarity with UL/CE standards is a plus.
  • This position offers impactful engineering work with a salary range of $70,000 to $90,000 and includes up to 15% travel.

Description

Cincinnati, OH • Canton, OH • De Pere, WI

Join our engineering team and help design the hydraulic systems that power heavy industry. In this role, you’ll partner with customers and sales teams to shape system concepts, build schematics, size components, and support projects from design through commissioning. If you enjoy solving complex hydraulic challenges, collaborating across teams, and getting hands-on in the field, this is your kind of work.


What You’ll Do

  • Develop hydraulic circuits, layouts, and BOMs
  • Support proposals, testing, commissioning, and troubleshooting
  • Work directly with customers and internal engineering teams
  • Provide technical expertise across the full project lifecycle

What You Bring

  • Degree in Mechanical Engineering, Fluid Power, or related field
  • 3+ years in industrial hydraulics or systems integration
  • Strong circuit design and component selection skills
  • CAD proficiency (AutoCAD, SolidWorks, etc.)
  • Familiarity with UL/CE standards a plus

Why This Role   Impactful engineering work, a mix of office and field, and the chance to shape real-world hydraulic systems. Travel up to 15%.




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