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Electromechanical Engineer Jobs in Vermont (NOW HIRING)

Aftermarket Design Engineer

Colchester, VT ยท On-site

$90 - $130/hr

... electromechanical engineering, vibration and failure analysis. Competency in reading, understanding, and translating customer technical requirements enables the Aftermarket Design Engineer to arrive ...

... electromechanical engineering, vibration and failure analysis. Competency in reading, understanding, and translating customer technical requirements enables the Aftermarket Design Engineer to arrive ...

... electromechanical engineering, vibration and failure analysis. Competency in reading, understanding, and translating customer technical requirements enables the Aftermarket Design Engineer to arrive ...

Bachelor of Science in Mechanical Engineering (BSME) or Mechanical Engineering Technology Bachelor of Science (METBS) or Bachelor of Science in Electromechanical Engineering (BSEME) and 1-3 years ...

Bachelor of Science in Mechanical Engineering (BSME) or Mechanical Engineering Technology Bachelor of Science (METBS) or Bachelor of Science in Electromechanical Engineering (BSEME) and 1-3 years ...

Mechanical or Electromechanical Design * Optics * Manufacturing or Quality Engineering * Embedded Systems or Controls Most importantly, you: * Have a genuine passion for engineering, lighting and ...

As a Systems Engineer, you'll help design fuel system components for some of the world's leading ... Familiarity with embedded systems and assembly of electromechanical systems. * DO 160G experience.

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Showing results 1-20

Electromechanical Engineer information

See Vermont salary details

$38.3K

$95.6K

$145.7K

How much do electromechanical engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for electromechanical engineer in Vermont is $95,583.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,500.00 and $111,100.00 per year, depending on experience, location, and employer.

What is an electromechanical engineer?

Electromechanical Engineers are professionals who design, develop, and maintain systems and devices that combine electrical and mechanical components. They work on a wide range of products such as robotics, automated manufacturing equipment, and sensors. Their expertise allows them to bridge the gap between electrical engineering and mechanical engineering, ensuring that these complex systems operate efficiently and reliably. Electromechanical engineers often collaborate with other specialists to create innovative solutions for industries like manufacturing, automotive, aerospace, and healthcare.

What are the key skills and qualifications needed to thrive as an electromechanical engineer, and why are they important?

To thrive as an Electromechanical Engineer, you need a solid grounding in mechanical and electrical engineering principles, typically supported by a bachelor's degree in a related field. Familiarity with CAD software, PLC programming, and industry standards such as ISO or IEC is commonly required, and certifications like EIT or PE can be advantageous. Strong problem-solving abilities, effective communication, and teamwork are essential soft skills in this multidisciplinary role. These skills and qualifications enable engineers to design, test, and maintain complex electromechanical systems safely and efficiently in diverse industries.

What are some typical daily challenges faced by electromechanical engineers, and how can candidates prepare for them?

Electromechanical Engineers often encounter challenges such as troubleshooting complex systems that integrate both electrical and mechanical components, managing tight project deadlines, and coordinating with multidisciplinary teams. Candidates can prepare by gaining hands-on experience with both hardware and software, developing strong problem-solving skills, and familiarizing themselves with industry-standard tools and practices. Effective communication and adaptability are also crucial, as the role frequently involves collaborating with design, manufacturing, and quality assurance teams to solve issues and improve product functionality.

What is the difference between Electromechanical Engineer vs Mechanical Engineer?

AspectElectromechanical EngineerMechanical Engineer
Required CredentialsBachelor's in Electrical, Mechanical, or Electromechanical Engineering; often certifications in electrical systemsBachelor's in Mechanical Engineering; may include certifications in CAD or manufacturing
Work EnvironmentDesign, develop, and test electromechanical systems, often in manufacturing or automation settingsDesign and analyze mechanical systems, machinery, and thermal systems in various industries
Industry UsageElectromechanical systems, robotics, automation, manufacturingMechanical systems, automotive, aerospace, HVAC

Electromechanical Engineers focus on integrating electrical and mechanical components, working on systems like robotics and automation. Mechanical Engineers primarily design and analyze mechanical systems. Both roles require engineering degrees but differ in specialization and application areas.

What are electromechanical engineering jobs?

Electromechanical engineering jobs involve designing, developing, and maintaining systems that combine electrical and mechanical components, such as robotics, automation equipment, and manufacturing machinery. These roles typically require knowledge of circuit design, control systems, and the use of tools like CAD software, with many positions requiring a bachelor's degree in engineering and relevant certifications.

What does an electromechanical engineer do?

An electromechanical engineer designs, develops, and tests electrical and mechanical systems, often working with robotics, automation, and machinery. They use tools like CAD software and may require knowledge of electrical circuits, mechanical components, and control systems to ensure integrated functionality in various industries.

What are the most commonly searched types of Electromechanical Engineer jobs in Vermont?

The most popular types of Electromechanical Engineer jobs in Vermont are:

What are popular job titles related to Electromechanical Engineer jobs in Vermont?

For Electromechanical Engineer jobs in Vermont, the most frequently searched job titles are:

What job categories do people searching Electromechanical Engineer jobs in Vermont look for?

The top searched job categories for Electromechanical Engineer jobs in Vermont are:

Infographic showing various Electromechanical Engineer job openings in Vermont 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 $95,583 per year, or $46 per hour.

Aftermarket Design Engineer

Socket.dev

Colchester, VT โ€ข On-site

$90 - $130/hr

Other

Posted 4 days ago


Job description

Department Focus

The Design Engineering function supports business needs and continuous improvement efforts through appropriate technical product and engineering principle development of employees and management.

Job Description and Duties Principal Duties:
  • Contract design responsibility to translate design specifications and code requirements into the requisite product design; oversee preparation of manufacturing drawings, procedures, and analytical design reports. Many of these activities will require close collaboration with contract management, quality assurance, and manufacturing personnel.
  • Review customer purchase orders for engineering content and completeness to meet design and contract requirements.
  • Provide documented technical and analytical support assistance to clients for determining the suitability for operation of HTI equipment outside of original intended design parameters, justification of modes of operation for regulatory compliance, redeployment of equipment, failure modes and root cause determination. Technical support assistance to end users in the installation, operation, maintenance and technical oversight of HTI manufactured equipment.
  • Writing Technical Evaluations for customer revisions, material substitutions, or acceptable deviations from design subject to review and approval by customers.
  • Reviewing and updating legacy documents and drawings in compliance with Code and Customer Design Specifications, consistent with HTI current standards. This includes researching and determining material equivalencies and providing the requisite Technical Evaluations in the support of updating, repairing, overhauling and maintenance activities of HTI equipment to support HTI Aftermarket Parts, Aftermarket Units, and Service Application Engineering activities.
  • Application Sales, Field Service, Shop Service and Aftermarket Sales technical support in determining the appropriate application of equipment, interpretation of specifications, material recommendations, Code compliance and providing supplementary data to support sales activities.
  • Contact point for drawing and sketch generation for Application Engineering, and technical support of Aftermarket procurement and subcontract activities.
  • Review and disposition of Engineering Change Requests, and derive total scope of engineering work related to the requested change.
  • Manufacturing support providing technical assistance to the manufacturing floor to assist in achieving specified design requirements and resolution of conflicts that arise in attaining the specified design or contractual obligations for Parts, Aftermarket Units, and Nuclear/Safety Service jobs.
  • Dispositioning Discrepant Material Reports related to ASME Code Section I, III, VIII and Safety Related Aftermarket Units, Parts, and Service.

In order to perform the assigned duties it is necessary to have well developed analytical skills as it applies to rotating mechanical equipment design and analysis and a fundamental understanding of mechanical engineering principles including mechanical design, and material selection, and other disciplines such as material science, electromechanical engineering, vibration and failure analysis. Competency in reading, understanding, and translating customer technical requirements enables the Aftermarket Design Engineer to arrive at reasonable, timely and cost effective solutions.

Other related duties as required.

Minimum qualifications:
  • Bachelor's Degree in Engineering and 5-10 years of engineering and analysis in the field of industrial rotating machinery such as pumps, turbines or compressors.
  • Concentration in the power generation or chemical process industries a plus.
  • Exhibit a thorough understanding of pertinent codes, governing regulations and industry practice. Demonstrated experience utilizing the ASME Code Section VIII or Section III desired.
  • Ability to read & interpret engineering drawings, standards and specifications
  • Comprehensive understanding of mechanical engineering principles associated with the design, analysis and operation of rotating machinery.
  • Engineering work in centrifugal pumps a plus.
  • Expected travel is less than 5% yearly
  • Proficient in MathCad, Word, Excel, PowerPoint, Outlook and the Internet
  • Competency in SolidWorks
  • Strong interpersonal and problem-solving skills
  • Detail oriented, organized, works independently, and highly motivated
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