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Electrical Engineer I Jobs in Rochester, NY (NOW HIRING)

How I will Contribute: * Design, development, build and test PCB prototypes, conduct debugging and ... Electrical Engineering, Electronics Engineering, or a related field * Experience in RF and ...

How I will Contribute: * Design, development, build and test PCB prototypes, conduct debugging and ... Electrical Engineering, Electronics Engineering, or a related field * Experience in RF and ...

How I will Contribute: * Design, development, build and test PCB prototypes, conduct debugging and ... Electrical Engineering, Electronics Engineering, or a related field * Experience in RF and ...

In addition to applying their knowledge of electrical engineering concepts independently, they work ... Additional certifications (i.e. CEM, LEED AP, EIT, or PE) also a plus. * Proficient computer skills ...

In addition to applying their knowledge of electrical engineering concepts independently, they work ... Additional certifications (i.e. CEM, LEED AP, EIT, or PE) also a plus. * Proficient computer skills ...

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Showing results 1-20

Electrical Engineer I information

See Rochester, NY salary details

$49.8K

$109.6K

$165.8K

How much do electrical engineer i jobs pay per year?

As of Aug 24, 2026, the average yearly pay for electrical engineer i in Rochester, NY is $109,610.00, according to ZipRecruiter salary data. Most workers in this role earn between $81,900.00 and $130,200.00 per year, depending on experience, location, and employer.

What does an Electrical Engineer I do?

An Electrical Engineer I is an entry-level professional who assists in designing, developing, testing, and maintaining electrical systems and components. They typically work under the supervision of more experienced engineers, supporting projects related to power generation, electronics, communications, or control systems. Their daily tasks may include creating technical drawings, conducting tests, troubleshooting issues, and preparing documentation. This role is often the first step in an electrical engineering career, providing opportunities to gain hands-on experience and learn industry standards.

What are the key skills and qualifications needed to thrive as an Electrical Engineer I?

To thrive as an Electrical Engineer I, you need a solid understanding of electrical engineering principles, circuit design, and problem-solving, typically supported by a bachelor’s degree in electrical engineering or a related field. Familiarity with industry-standard software such as AutoCAD, MATLAB, and PCB design tools, as well as knowledge of relevant codes and standards, is often required. Strong analytical thinking, attention to detail, and effective teamwork and communication skills help you excel in collaborative project environments. These competencies ensure accurate project execution, innovation, and compliance with safety and quality standards.

What are some common challenges an Electrical Engineer I may face during their first year, and how can they overcome them?

As an Electrical Engineer I, you may encounter challenges such as adapting to company-specific design software, interpreting complex technical drawings, and managing multiple project deadlines. Building strong communication with senior engineers and team members can help you quickly clarify expectations and technical requirements. Proactively seeking feedback and participating in team meetings are excellent ways to learn best practices, improve your skills, and resolve issues efficiently as you grow in the role.

What is the difference between Electrical Engineer I vs Electrical Engineer II?

AspectElectrical Engineer IElectrical Engineer II
Required CredentialsBachelor's degree in Electrical Engineering; EIT/FE certification often preferredBachelor's degree; typically more experience, EIT/FE certification usually required
Work EnvironmentEntry-level engineering projects, supervised tasks, team collaborationMore independent responsibilities, complex project involvement
Employer & Industry UsageCommon in manufacturing, utilities, and tech companiesProgression within same industries, increased technical responsibilities

The main difference between Electrical Engineer I and Electrical Engineer II lies in experience and responsibility level. Electrical Engineer I is an entry-level role focused on learning and supporting projects, while Electrical Engineer II involves more independent work and complex tasks, reflecting increased expertise and responsibility.

Are electrical engineers still in demand?

Electrical engineers remain in demand due to ongoing advancements in renewable energy, automation, and electronics. They work in various sectors such as manufacturing, telecommunications, and power systems, often requiring skills in circuit design, programming, and industry standards. Job prospects are strong for those with relevant technical skills and certifications.
Infographic showing various Electrical Engineer I job openings in Rochester, NY as of August 2026, with employment types broken down into 83% Full Time, 11% Part Time, 5% Contract, and 1% Nights. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $109,610 per year, or $52.7 per hour.

Mechatronics Applications Engineer I

Progressive Machine & Design

Victor, NY • On-site

$60K - $85K/yr

Full-time

Re-posted 22 days ago


Job description

Description:

The Mechatronics Applications Engineer I will develop foundational skills in mechanical and electrical system design, machine costing, proposal development, and custom automation solutions. Working under the guidance of the Applications Manager and senior engineering team members, this role supports the quotation, design, and project development process for custom machinery and automation systems.


Essential Duties and Responsibilities:


Quotation and Applications Engineering
  • Review customer specifications and requirements to develop cost-effective mechanical, controls, and automation solutions.
  • Support senior Applications Engineers throughout the complete project lifecycle, gaining exposure to all phases of project development.
  • Prepare process flow diagrams, conceptual layouts, and technical clarification questions.
  • Develop detailed estimates for engineering, software development, machine assembly, wiring, plumbing, debugging, installation, and acceptance testing activities.
  • Review vendor quotations and internal cost estimates for accuracy and completeness.
  • Maintain and update costing databases and cost libraries.
  • Track and compare estimated project costs before and after peer review.
  • Present proposed machine concepts and solutions to prospective customers when appropriate.
Documentation and Design Support
  • Review project documentation for compliance with customer specifications and company standards.
  • Create accurate 2D machine layouts and supporting 3D models as required.
  • Perform tolerance analyses for assigned projects.
  • Develop timing diagrams and sequence charts for motion-based assembly and testing operations.
  • Assist in documenting and improving departmental processes and best practices.
Build-to-Print (BTP) Project Support
  • Participate in estimating and review activities for Build-to-Print projects.
  • Collaborate with fabrication and manufacturing teams to validate estimates and project requirements.
  • Support estimating activities across all shop disciplines, including:
    • Mechanical assembly
    • Electrical wiring
    • Pneumatic and fluid plumbing
    • Machine debugging
    • Skid preparation
    • Equipment installation
Learning and Development
  • Attend concept reviews, design meetings, customer calls, and team meetings.
  • Participate in assembly floor walkthroughs to gain understanding of manufacturing and assembly processes.
  • Observe machine debugging and testing activities to learn system functionality and labor requirements.
  • Follow awarded projects through installation and commissioning whenever possible.
  • Maintain a lessons-learned log and review findings with the Applications Manager on a regular basis.
  • Study similar automation systems through available project documentation and videos.
  • Seek guidance and mentorship from senior engineering team members.
  • Stay informed on emerging automation technologies and industry trends.
Customer and Site Support
  • Travel to customer facilities as required to gather project-critical information and support project development activities.
  • Maintain compliance with all company and customer safety requirements and procedures.
Requirements:

Education and Experience:

  • Bachelor's degree in Mechatronics Engineering, Mechanical Engineering, Electrical Engineering, or a related field; equivalent experience may be considered.
  • Preferred GPA of 3.0 or higher.
  • One to four years of experience in automation equipment, machine design, manufacturing, or a related industry.
  • Working knowledge of Geometric Dimensioning and Tolerancing (GD&T).
Communication Skills
  • Excellent verbal and written communication skills.
  • Ability to read, analyze, and interpret technical documents and procedures.
  • Ability to prepare clear technical reports and documentation.
  • Comfortable presenting technical concepts and cost information to customers and internal stakeholders.
  • Strong listening, note-taking, and information-gathering skills.
Professional Characteristics
  • Strong attention to detail and organizational skills.
  • Ability to manage priorities and meet deadlines.
  • Self-motivated with a desire to learn and grow within the automation industry.
  • Team-oriented with a collaborative mindset.
  • Customer-focused and committed to developing effective solutions.
  • Receptive to coaching, mentorship, and constructive feedback.
  • Ability to visualize and develop complex mechanical and electrical concepts.
  • Willingness to travel as required.
Problem-Solving and Reasoning
  • Ability to solve practical engineering problems with limited information.
  • Capable of interpreting information presented in written, verbal, pictorial, and schedule formats.
  • Able to work independently while applying established procedures and engineering judgment to new situations.
Computer Skills
  • Proficiency with AutoCAD or equivalent 2D CAD software.
  • Proficiency with SolidWorks or equivalent 3D CAD software.
  • Advanced proficiency with Microsoft Office applications.