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Electromechanical Systems Engineering Technology Jobs

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

... trades and engineering teams to ensure all systems meet safety, quality, cost, and schedule ... Why HII We build the world's most powerful, survivable naval ships and defense technology solutions ...

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Electromechanical Systems Engineering Technology information

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$89.9K

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How much do electromechanical systems engineering technology jobs pay per year?

As of Jun 9, 2026, the average yearly pay for electromechanical systems engineering technology in the United States is $89,897.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,000.00 and $104,500.00 per year, depending on experience, location, and employer.

What is an Electromechanical Systems Engineering Technology job?

An Electromechanical Systems Engineering Technology job involves designing, developing, and maintaining automated systems that integrate electrical, mechanical, and computer technologies. Professionals in this field work with robotics, automated manufacturing systems, and smart devices to improve efficiency and performance. They may be involved in troubleshooting, programming, system testing, and ensuring machines operate reliably. Careers can be found in industries such as automotive, aerospace, healthcare, and manufacturing. This role requires a solid understanding of electronics, mechanics, and control systems to optimize system functionality and automation.

What are typical daily responsibilities for someone working in Electromechanical Systems Engineering Technology?

Professionals in Electromechanical Systems Engineering Technology typically spend their days designing, assembling, and testing electromechanical equipment and systems. They troubleshoot and repair machinery, collaborate with engineers to improve system performance, and perform preventive maintenance to minimize downtime. The role often involves documenting work, interpreting technical blueprints, and ensuring compliance with safety or industry standards. Successful team collaboration with engineers, machinists, and production staff is key to ensuring projects run smoothly and equipment remains operational.

What are the key skills and qualifications needed to thrive in the Electromechanical Systems Engineering Technology position, and why are they important?

Success in Electromechanical Systems Engineering Technology requires a strong background in mechanical and electrical engineering principles, typically supported by an associate or bachelor's degree in engineering technology or a related field. Familiarity with CAD software, PLC programming, automation systems, and relevant safety certifications like OSHA are highly valued. Critical thinking, problem-solving ability, and effective teamwork are important soft skills for this profession. These competencies enable professionals to design, troubleshoot, and maintain integrated systems vital to efficient industrial and manufacturing operations.

More about Electromechanical Systems Engineering Technology jobs
What cities are hiring for Electromechanical Systems Engineering Technology jobs? Cities with the most Electromechanical Systems Engineering Technology job openings:
What states have the most Electromechanical Systems Engineering Technology jobs? States with the most job openings for Electromechanical Systems Engineering Technology jobs include:
What job categories do people searching Electromechanical Systems Engineering Technology jobs look for? The top searched job categories for Electromechanical Systems Engineering Technology jobs are:

Electromechanical Systems Engineer

Allient Incorporated

Rochester, NY • On-site

$75K - $110K/yr

Full-time

Posted 4 days ago


Allient rating

8.0

Company rating: 8.0 out of 10

Based on 6 frontline employees who took The Breakroom Quiz

140th of 417 rated machine equipment manufacturers


Job description

Allient Inc. is currently in growth mode and seeking a Electromechanical Systems Engineer to join our team in Rochester, New York!

The Electromechanical Systems Engineer researches, designs, troubleshoots, and develops electromechanical systems in collaboration with hardware, software, manufacturing, and product development teams. This role combines deep technical problem solving, hands-on system integration, and practical engineering execution across electrical, mechanical, and controls domains, leading the diagnosis, bring-up, testing, and optimization of complex motion control, power electronics, and electromechanical systems. The role requires a high degree of independence and ownership in complex projects, including system-level debugging, prototype development, feasibility testing, root-cause investigation, support, troubleshooting, maintenance, and improvement of engineering infrastructure, test stands, and production equipment associated with assigned product lines and development programs, and driving issues from initial symptom through validated corrective action. Apply now!

Responsibilities:

Develop, Integrate, and Optimize Electromechanical Systems

  • Design, integrate, troubleshoot, and optimize electromechanical systems spanning electrical, mechanical, controls, and motion domains.
  • Perform hardware bring-up, system integration, wiring, harnessing, and subsystem assembly activities required to create functional engineering and product systems.
  • Own system builds, modifications, and integration activities to support development, testing, and operational readiness.
  • Work collaboratively across hardware, software, manufacturing, and product teams to achieve integrated system performance objectives.

Diagnose, Test, and Resolve Complex System-Level Issues

  • Troubleshoot complex electromechanical systems across electrical, mechanical, controls, firmware interaction, and system integration boundaries using structured, hands-on debugging methods.
  • Develop and execute testing, signal analysis, hardware bring-up, and real-time system investigations using oscilloscopes, power electronics instrumentation, and practical engineering diagnostic techniques.
  • Design, build, and adapt test setups, prototypes, fixtures, harnesses, and integration configurations to replicate issues, validate solutions, and evaluate new concepts or technical approaches.
  • Drive technical issues from initial symptom through root cause, corrective action, and validated resolution, including engineering, manufacturing, field, and customer-reported issues, while producing accurate, actionable technical data and documentation.

Support Engineering Infrastructure, Test Systems, and Production Equipment

  • Support troubleshooting, maintenance, modification, and continuous improvement of engineering infrastructure, test stands, laboratory systems, and production equipment associated with assigned products and development programs.
  • Develop, modify, or upgrade fixtures, harnesses, interfaces, and supporting hardware required to sustain and improve engineering and production capabilities.
  • Support transition from legacy equipment toward improved systems, tooling, and next-generation engineering infrastructure where applicable.
  • Promote safe operation and practical maintenance practices for energized electrical systems, motion equipment, and laboratory environments.

Support Product Development, Validation, and Continuous Improvement

  • Collaborate with electrical, mechanical, software, manufacturing, quality, and product teams to support new product development and system integration activities.
  • Provide direct, actionable engineering feedback based on observed system behavior, testing outcomes, and field or operational experience.
  • Identify design weaknesses, integration gaps, manufacturability concerns, and reliability risks, and support implementation of corrective improvements.
  • Develop and maintain clear technical documentation, including test procedures, troubleshooting records, work instructions, lessons learned, and continuous improvement of methods, tools, and practices.

Qualifications:

Education & Experience:

  • Bachelor’s degree in Electrical Engineering, Mechanical Engineering, Electromechanical Engineering, Mechatronics Engineering, or a related engineering discipline.
  • Associate’s degree in engineering, engineering technology, or a related technical field with exceptional hands-on electromechanical experience will be considered.
  • Minimum 3 to 5 years of experience

Technical Skills Required:

  • Strong hands-on experience with electromechanical systems spanning electrical, mechanical, controls, and motion domains.
  • Demonstrated ability to independently troubleshoot complex system-level issues.
  • Strong proficiency with engineering laboratory equipment and diagnostic instrumentation, including oscilloscopes and real-time signal analysis.
  • Hands-on experience with hardware bring-up, system integration, wiring, harnessing, and electromechanical assembly activities.
  • Ability to confidently read and interpret electrical schematics, mechanical drawings, wiring diagrams, and technical documentation.
  • Experience working with motors, servo drives, motion control systems, power electronics, or similar.
  • Practical mechanical aptitude, including assembly, modification, fit-up, and basic fabrication.
  • Ability to operate effectively with limited guidance, incomplete information.
  • Must be a U.S. person due to ITAR regulations.

Optional, Desirable Technical Skills:

  • Experience supporting new product development (NPD) from prototype through validation and production readiness.
  • Motion control experience, including servo systems, motors, drives, BLDC, FOC, feedback devices, or related control architectures.
  • Experience with power electronics, switching power systems, motor drives, or high-power electromechanical systems.
  • Knowledge of, or demonstrated ability to rapidly learn and apply, industrial communication technologies including EtherCAT, CANopen, or related industrial protocols.
  • Experience interacting with, troubleshooting, or debugging embedded systems, firmware-controlled hardware, or real-time control systems.
  • Experience with PCB bring-up, hardware validation, and electronics troubleshooting.
  • Familiarity with schematic capture, PCB layout (Altium), and Solid modeling CAD (Solidworks).
  • Experience supporting manufacturing builds, production troubleshooting, engineering test systems, or operational equipment
  • Experience designing or fabricating fixtures, harnesses, integration setups, or quick-turn engineering solutions.

Additional Required Competencies:

  • Strong problem-solving and analytical skills.
  • Ability to work independently.
  • Excellent verbal and written communication skills.
  • Commitment to quality, efficiency, and innovation.
  • Experience in cross-functional team collaboration


*To learn more about Allient, visit our website at www.Allient.com

*Allient Inc. provides equal employment opportunities to all employees and applicants for employment and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state, or local laws. This applies to all terms and conditions of employment, including recruiting, hiring, placement, promotion, termination, layoff, recall, transfer, leaves of absence, compensation, and training.