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Electrical Engineering Technology Jobs in Florida

Bachelor's degree in Electrical Engineering or Electrical Engineering Technology from an ABET-accredited program is required. * Minimum of five (5) years of professional electrical engineering ...

Bachelor's degree in Electrical Engineering or Electrical Engineering Technology from an ABET-accredited program is required. * Minimum of five (5) years of professional electrical engineering ...

Bachelor's degree in Electrical Engineering or Electrical Engineering Technology from an ABET-accredited program is required. * Minimum of five (5) years of professional electrical engineering ...

Electrical Engineer (Hybrid)

Tampa, FL · Hybrid

$100K - $150K/yr

Diploma in Electrical Engineering Technology or Bachelor's degree in Electrical Engineering. 1-6 ... years of relevant experience in design and drafting for transmission and distribution projects.

Electrical Engineer (Hybrid)

Tampa, FL · Hybrid

$100K - $150K/yr

Diploma in Electrical Engineering Technology or Bachelor's degree in Electrical Engineering. 1-6 ... years of relevant experience in design and drafting for transmission and distribution projects.

Electrical Engineer (Hybrid)

Tampa, FL · On-site

$100K - $150K/yr

Required Qualifications: • Diploma in Electrical Engineering Technology or Bachelor's degree in ... Electrical Engineering. • 1-6 years of relevant experience in design and drafting for ...

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Electrical Engineering Technology information

See Florida salary details

$37.7K

$83K

$125.5K

How much do electrical engineering technology jobs pay per year?

As of Jul 30, 2026, the average yearly pay for electrical engineering technology in Florida is $83,017.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,000.00 and $98,600.00 per year, depending on experience, location, and employer.

What is Electrical Engineering Technology?

Electrical Engineering Technology is a field that focuses on the practical application of electrical engineering principles. It involves designing, developing, testing, and maintaining electrical and electronic systems, such as circuits, devices, and equipment. Professionals in this field often work on implementing and troubleshooting technology in industries like manufacturing, telecommunications, and energy. Unlike electrical engineers, technologists typically concentrate more on applied aspects and hands-on work rather than theoretical design. This makes Electrical Engineering Technology a key link between engineering concepts and real-world solutions.

What can I do with an electrical engineering technology degree?

An electrical engineering technology degree prepares graduates for roles such as electrical technician, systems installer, maintenance engineer, or project technician. These positions involve designing, testing, installing, and maintaining electrical systems and equipment, often requiring knowledge of circuit design, troubleshooting, and relevant tools like CAD software. Certification and hands-on experience can enhance job prospects in industries like manufacturing, telecommunications, and energy.

What career can I do with electrical technology?

With a background in electrical engineering technology, you can pursue careers such as electrical technician, systems installer, maintenance engineer, or electrical designer. These roles often involve working with electrical systems, circuit design, and troubleshooting in industries like manufacturing, construction, or energy, and may require knowledge of tools like CAD software and safety certifications.

Can you make $500,000 as an electrical engineer?

Electrical engineering technology roles typically do not reach $500,000 annually; such high salaries are usually associated with senior engineering positions, management roles, or specialized consulting, often requiring extensive experience, advanced skills, and sometimes additional certifications. Most electrical engineers earn a median salary significantly below that figure, though top earners in certain industries or locations may approach high six-figure incomes.

What is the work of electrical engineering technology?

Electrical engineering technologists design, develop, test, and maintain electrical systems and equipment, such as circuits, control systems, and power distribution. They often work with tools like oscilloscopes and CAD software and may assist engineers in project implementation and troubleshooting. Their work environment includes laboratories, manufacturing plants, and construction sites, and they typically require technical certifications or associate degrees.

What is the difference between Electrical Engineering Technology vs Electrical Engineering?

AspectElectrical Engineering TechnologyElectrical Engineering
EducationAssociate's or Bachelor's degree in Electrical Engineering TechnologyBachelor's or Master's degree in Electrical Engineering
CertificationsOptional certifications like Certified Engineering Technician (CET)Professional Engineer (PE) license often required
Work EnvironmentPractical, hands-on roles in manufacturing, maintenance, and testingTheoretical, design-focused roles in research, development, and system design
Job ResponsibilitiesImplementing designs, troubleshooting, testing, and maintaining electrical systemsDesigning systems, analyzing complex problems, developing new technologies

Electrical Engineering Technology professionals focus on applying electrical principles in practical settings, while Electrical Engineers are more involved in designing and developing new electrical systems and technologies. Both roles are essential in the industry, but they differ in education, responsibilities, and career paths.

What are some typical projects or tasks an Electrical Engineering Technologist might work on in a team setting?

Electrical Engineering Technologists often collaborate on projects such as designing and testing electrical systems, troubleshooting equipment, and assisting in the development of prototypes. They work closely with engineers, technicians, and other team members to ensure systems meet safety and performance standards. Daily responsibilities can include drafting layouts, assembling and testing components, and documenting results, often requiring clear communication and problem-solving within a multidisciplinary team. This collaborative environment not only enhances technical skills but also provides valuable experience for career advancement.

What are the key skills and qualifications needed to thrive as an Electrical Engineering Technologist, and why are they important?

To thrive as an Electrical Engineering Technologist, a solid understanding of electrical theory, circuit design, troubleshooting, and typically an associate’s or bachelor’s degree in electrical engineering technology are essential. Familiarity with industry-standard tools like oscilloscopes, multimeters, AutoCAD, and PLC programming, as well as certifications such as CET (Certified Engineering Technologist), is often required. Strong problem-solving abilities, attention to detail, and effective communication skills help technologists excel in team environments and client interactions. These competencies are crucial for ensuring the safe, efficient, and innovative development, testing, and maintenance of electrical systems.
What are the most commonly searched types of Electrical Engineering Technology jobs in Florida? The most popular types of Electrical Engineering Technology jobs in Florida are:
What cities in Florida are hiring for Electrical Engineering Technology jobs? Cities in Florida with the most Electrical Engineering Technology job openings:
Infographic showing various Electrical Engineering Technology job openings in Florida as of July 2026, with employment types broken down into 89% Full Time, 8% Part Time, 2% Contract, and 1% Nights. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $83,017 per year, or $39.9 per hour.

Faculty in Electrical Engineering Technology (EET): Part-time

Excelsior College

Saint Petersburg, FL

Part-time

Re-posted 11 days ago


Job description

Be part of Excelsior’s growing presence in St. Petersburg and help shape an innovative, workforce-focused engineering program that blends flexibility with hands-on learning.
Excelsior University is growing—and we’re making a meaningful investment in education and workforce development in the St. Petersburg, Florida community. As we expand our hybrid learning model, we are building a dynamic pool of part-time faculty and lab instructors to support our undergraduate Electrical Engineering Technology (EET) program.
This is an exciting opportunity to help shape the future of applied engineering education while working with adult learners developing real-world, career-ready skills.

Our hybrid EET program blends the flexibility of asynchronous online learning with the power of hands-on, in-person labs at our St. Petersburg site. As an instructor, you will guide students through both environments—teaching online while leading lab sessions that reinforce applied skills and workforce readiness.

Courses are delivered in an 8-week format, with the majority of content—including theory, discussions, and assignments—offered asynchronously online. On-site lab sessions are typically 3 hours, held in the evenings every other week to provide hands-on, applied learning that complements online instruction.

Depending on qualifications and program needs, instructors may be assigned to courses such as:

  • ELEC152 – Circuit Theory I: Fundamentals of circuit analysis (DC circuits, power, energy, circuit theorems)
  • ELEC153 – Circuit Theory II: AC circuit analysis (phasors, impedance, resonance, filters)
  • ELEC160 – Electronics I: Semiconductor devices, biasing, amplifier design
  • ELEC161 – Electronics II: Advanced electronics including operational amplifiers, filters, oscillators, and high-frequency circuits

Key Responsibilities:

  • Facilitate engaging in-person and hybrid lab sessions aligned with course outcomes
  • Demonstrate subject matter expertise through active engagement in discussions, learning activities, and applied instruction
  • Create an effective and engaging learning environment through consistent and meaningful online presence and communication
  • Reinforce online learning through practical demonstrations, real-world applications, and connections between theory and practice
  • Guide students through applied learning activities such as:
    • DC and AC circuit analysis and troubleshooting
    • Breadboarding and prototyping
    • Use of oscilloscopes, multimeters, signal generators, and simulation tools
    • Semiconductor device testing and amplifier design
    • Operational amplifier circuits, filters, and frequency response analysis
  • Challenge students’ thinking and support critical analysis across perspectives and settings
  • Provide timely, substantive, and constructive feedback on assignments and lab performance
  • Maintain clear academic standards and support student success through ongoing communication and responsiveness
  • Maintain safe, functional, and industry-relevant lab environments
  • Collaborate with faculty, site staff, and technicians to ensure a seamless hybrid learning experience
  • Contribute to the continuous improvement of Excelsior’s hybrid instructional model

Required Qualifications:

  • Master’s degree in Electrical Engineering, Electronics Engineering Technology, or a closely related field
  • Minimum of 2 years of industry or technical experience
  • Ability to support both asynchronous online instruction and in-person lab facilitation
  • Familiarity with standard laboratory equipment and safety protocols

Preferred Qualifications:

  • Doctoral degree in a related discipline
  • College-level teaching experience, particularly with adult and nontraditional learners
  • Experience with online teaching platforms and learning management systems
  • Industry certifications or licensure (e.g., PE, CET)
  • Demonstrated ability to integrate workforce-relevant skills into instruction

Application Note

This posting is for a pool of part-time instructors. Teaching assignments will be based on qualifications, availability, and program needs. Candidates may be considered for multiple courses and lab sections.

Compensation is provided at a rate of $1,000 per credit hour per course, with low-enrollment courses paid at a directed study rate. The salary range reflects the University’s good faith estimate at the time of posting.