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Performance Test Engineer Jobs in Jacksonville, FL

This includes attracting and developing exceptional talent, recognizing and rewarding performance ... EIT carries a portfolio of 8,000+ tests and has a global footprint of testing professionals across ...

Automation Test Specialist

Jacksonville, FL · On-site

$42.50 - $56/hr

... with developers in technical language Must have strong PC skills and demonstrated proficiency in ... test efforts Ability to identify high risk/critical impact deliverables and prioritize them ...

Automation Test Specialist

Jacksonville, FL · On-site

$42.50 - $56/hr

... with developers in technical language Must have strong PC skills and demonstrated proficiency in ... test efforts Ability to identify high risk/critical impact deliverables and prioritize them ...

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Performance Test Engineer information

See Jacksonville, FL salary details

$9

$43

$64

How much do performance test engineer jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for performance test engineer in Jacksonville, FL is $43.16, according to ZipRecruiter salary data. Most workers in this role earn between $32.31 and $54.81 per hour, depending on experience, location, and employer.

What is a performance test engineer?

A performance test engineer conducts testing during the entire lifecycle process of software development to ensure an efficient and satisfactory outcome. As a performance test engineer, your primary responsibilities include providing extensive troubleshooting and offering recommendations to fix technical issues. Your duties involve running tests on capacity, endurance, scenarios, stress, and performance, and designing a test system to simulate traffic loads. You monitor application operations, analyze memory usage, generate graphs, identify potential problems, and prepare detailed status reports.

What does a performance test engineer do?

A Performance Test Engineer is responsible for evaluating the speed, responsiveness, and stability of software applications under various workloads. They design and execute test plans to identify bottlenecks, ensure systems perform well under expected and peak traffic, and recommend improvements. Their work helps ensure that applications deliver a smooth and reliable experience to end users, even in high-demand situations. Performance Test Engineers often use specialized tools to simulate large numbers of users and analyze system behavior.

What are the key skills and qualifications needed to thrive as a performance test engineer, and why are they important?

To thrive as a Performance Test Engineer, you need expertise in software testing methodologies, performance analysis, and scripting languages, often supported by a degree in computer science or related fields. Familiarity with tools such as JMeter, LoadRunner, or Gatling, and experience with monitoring systems and cloud platforms are commonly required. Strong analytical thinking, attention to detail, and effective communication skills set top performers apart in this role. These competencies are crucial for accurately identifying performance bottlenecks, ensuring system reliability, and collaborating across development teams.

What are some common challenges faced by performance test engineers when working on large-scale applications?

Performance Test Engineers working on large-scale applications often encounter challenges such as accurately simulating real-world user loads, identifying performance bottlenecks in complex systems, and ensuring tests reflect production environments. Coordinating with development and operations teams to set up realistic test data and environments can also be demanding. Additionally, interpreting and communicating test results to stakeholders requires strong analytical and communication skills to drive meaningful improvements.

What is the difference between Performance Test Engineer vs QA Tester?

AspectPerformance Test EngineerQA Tester
Primary FocusEvaluating system performance, load, and scalabilityVerifying overall software quality and functionality
Skills & CertificationsPerformance testing tools (JMeter, LoadRunner), scripting, performance analysisManual and automated testing, bug tracking, test case design
Work EnvironmentPerformance labs, testing environments, scriptingDevelopment, testing, and user environments
Industry UsageIT, software development, telecomIT, software, manufacturing, healthcare

While both roles are essential in software quality assurance, the Performance Test Engineer specializes in assessing system performance under load, whereas the QA Tester focuses on overall functionality and defect detection. Understanding these differences helps employers and professionals align skills with job requirements.

What cities near Jacksonville, FL are hiring for Performance Test Engineer jobs?

Cities near Jacksonville, FL with the most Performance Test Engineer job openings:

Infographic showing various Performance Test Engineer job openings in Jacksonville, FL as of August 2026, with employment types broken down into 86% Full Time, 12% Part Time, and 2% Contract. Highlights an 81% Physical, 2% Hybrid, and 17% Remote job distribution, with an average salary of $89,770 per year, or $43.2 per hour.

Test Engineer - Electrical Systems

Industrial Electric Manufacturing

Jacksonville, FL • On-site

Full-time

Re-posted 10 hours ago


Job description

PURPOSE OF POSITION
The Test Engineer is responsible for designing, developing, and executing test procedures for IEM products and components. This role ensures product quality and performance by analyzing test results, identifying issues, and leading extensive troubleshooting efforts, while supporting the development of robust test processes and driving continuous improvement across the test organization.


ESSENTIAL FUNCTIONS

  • Design and develop test procedures and protocols.
  • Execute functional and electrical testing on products and components.
  • Collaborate with engineering and production teams to resolve product issues.
  • Analyze test data and identify trends, issues, and root causes.
  • Develop and improve testing methods and processes.
  • Support troubleshooting and failure analysis.
  • Ensure compliance with safety standards and testing procedures.
  • Maintain accurate test documentation and reports.
  • Perform other duties as assigned.
  • Relay protection and trip function testing.
  • Troubleshoot and resolve wiring errors, component failures, and control logic issues.
  • Recommend upgrades or new test technologies to improve accuracy, capability, and efficiency.
  • FWT Support (Factory Witness Testing).
  • Provide technical explanations, perform test demonstrations, and address questions or issues that arise during FWT events.

SUPERVISION OF PERSONNEL

None.


COMPETENCIES

  • Strong understanding of electrical systems and testing methods.
  • Experience developing test plans, drawings, and technical documentation.
  • Ability to read and interpret schematics and technical drawings.
  • Experience with lean or Six Sigma methodologies is a plus.
  • Experience with automated test systems (LabVIEW, Python, NI, etc.)
  • Familiarity with PLC systems or embedded systems testing.
  • Background in high-reliability industries (aerospace, defense, medical devices).
  • Attention to detail and documentation accuracy.
  • Clear and professional communication.
  • Safety-conscious behavior with strict adherence to NFPA 70E and departmental safety standards.
  • Problem-solving and analytical thinking.

EDUCATION AND EXPERIENCE

  • Associate's or Bachelor's degree in Electrical Engineering or related field preferred.
  • 4+ years or experience in testing, engineering, or related field.


PHYSICAL / MENTAL / ENVIRONMENTAL

Physical Demands:

Activities: Sitting, Walking/Standing

Lifting: Frequently lift to 50 lbs.

Bending: Must be able to bend, squat, crawl, and climb.

Vision: Long periods of close work on a computer screen; ability to see small or detailed items.

Mental Demands: Interpret, analyze, research, and handle multiple tasks simultaneously.

Environment: Shop/warehouse. Not climate controlled. Exposure to excessive heat and cold, wet/humid conditions, noise/vibration, hazards, dust, and fumes.