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Control System Engineer Jobs in Florida (NOW HIRING)

Control Systems Engineer

Deland, FL · On-site

$80K - $110K/yr

... system 3. Controls industrial processes using electronic software and applications such as ... control panels, programmable logic controllers (PLCs), and instruments. • Knowledge in the proper ...

GENERAL FUNCTION The Control Systems Engineer will design, program, integrate, and sustain control ... Coordinate with machine builders, system integrators, and component vendors; review designs, run ...

Control Systems Engineer

West Palm Beach, FL · On-site +1

$100K - $150K/yr

We're looking for a Control Systems Engineer to join our team! This position will focus on managing specialized work efficiently, with confidence and competence. The position requires above average ...

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Control System Engineer information

See Florida salary details

$45.6K

$81.3K

$131.1K

How much do control system engineer jobs pay per year?

As of Jul 22, 2026, the average yearly pay for control system engineer in Florida is $81,287.00, according to ZipRecruiter salary data. Most workers in this role earn between $62,800.00 and $94,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Control System Engineer, and why are they important?

To excel as a Control System Engineer, you need a solid background in electrical or mechanical engineering, strong analytical skills, and experience with control theory and system design. Familiarity with PLC programming, SCADA systems, MATLAB/Simulink, and certifications such as Professional Engineer (PE) are highly valued. Strong problem-solving abilities, attention to detail, and effective communication help you collaborate with multidisciplinary teams and manage complex projects. These skills are essential for designing, implementing, and maintaining reliable automation systems that optimize performance and safety in various industries.

What are Control System Engineers?

Control System Engineers are professionals who design, develop, and maintain systems that manage, regulate, and automate processes in industries such as manufacturing, energy, and transportation. They use principles of engineering, mathematics, and computer science to ensure that machinery and processes operate efficiently, safely, and within desired parameters. Their work often involves programming controllers, integrating sensors and actuators, and troubleshooting complex automated systems.

What engineers make $200,000 a year?

Control System Engineers with extensive experience, advanced certifications, and specialized skills in automation, robotics, or software development can earn $200,000 or more annually. High salaries are often found in industries like aerospace, defense, or large manufacturing firms, especially for those in senior or managerial roles.

What does a control system engineer do?

A control system engineer designs, develops, and maintains automated systems that regulate machinery and processes. They analyze system requirements, create control algorithms, and use tools like PLCs and SCADA software to ensure optimal performance and safety. This role often requires knowledge of electrical, mechanical, and software engineering principles, along with troubleshooting skills.

What engineers make $300,000 a year?

Control System Engineers with extensive experience, advanced skills in automation, and specialized certifications can earn salaries approaching or exceeding $300,000 annually, especially in high-demand industries like aerospace, oil and gas, or large-scale manufacturing. Senior engineers often have leadership roles, advanced degrees, and expertise in programming, system integration, and project management that contribute to higher compensation.

What engineers make $500,000 a year?

Control System Engineers in specialized industries such as aerospace, defense, or oil and gas can reach annual salaries of $500,000 or more, especially with extensive experience, advanced certifications, and leadership roles. High compensation often involves working on complex projects, requiring expertise in automation, programming, and system integration, along with long hours or on-site responsibilities.

What is the difference between Control System Engineer vs Automation Engineer?

AspectControl System EngineerAutomation Engineer
CredentialsBachelor's in Electrical, Mechanical, or Control Engineering; certifications like CSCP or ISABachelor's in Electrical, Mechanical, or Automation Engineering; similar certifications
Work EnvironmentDesign, develop, and maintain control systems in manufacturing, energy, or industrial settingsDesign and implement automated systems and processes in manufacturing or production environments
Industry UsageCommonly employed in industries requiring control systems such as oil & gas, manufacturing, and utilitiesUsed in industries focusing on process automation, robotics, and production efficiency

Control System Engineers and Automation Engineers share similar educational backgrounds and certifications. While Control System Engineers focus on designing and maintaining control systems, Automation Engineers concentrate on implementing automated processes. Both roles are vital in industrial settings, often overlapping but with distinct primary responsibilities.

What are some common challenges Control System Engineers face when working on multidisciplinary project teams?

Control System Engineers frequently collaborate with professionals from mechanical, electrical, and software engineering backgrounds. One of the main challenges is ensuring smooth communication and integration across these disciplines, as each team may have different priorities, terminologies, and workflows. Additionally, coordinating timelines and requirements to align control system design with hardware and software constraints can be complex. Proactive communication, clear documentation, and regular cross-team meetings help overcome these hurdles and ensure project success.
Infographic showing various Control System Engineer job openings in Florida as of July 2026, with employment types broken down into 1% As Needed, 74% Full Time, 20% Part Time, 1% Temporary, 3% Contract, and 1% Nights. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $81,287 per year, or $39.1 per hour.
Control Systems Engineer

Control Systems Engineer

Performance Designs, Inc.

Deland, FL • On-site

$80K - $110K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 10 days ago


Job description

Benefits:
  • 401(k)
  • 401(k) matching
  • Dental insurance
  • Health insurance
  • Paid time off
  • Vision insurance
  • Wellness resources

                                                                                                
Job Title:  Control Systems Engineer                 EEO Classification: Professional
Department:  Engineering                        FLSA Status:  Salaried, Exempt
Reports to:  Engineering Manager
Position Summary: 
Responsible for automation, instrumentation and controls, including computer hardware and software, used in devices and machines for the company’s parachute manufacturing processes. This includes configuring and integrating electronic and mechanical hardware with software products in a manufacturing environment. 
The Systems Engineer must identify, troubleshoot and repair problems in instrumentation and controls systems that occur in production equipment and processes. He/she must be able to run tests, isolate problems, replace faulty instruments, install cables, and perform other tasks, as necessary. This individual will also perform preventive maintenance and calibration of plant instrumentation and controls systems. The ideal candidate would also have interest and understanding of mechanical machine design fundamentals. This person would be skilled in designing, constructing, and implementing electrical control panels for automation equipment including developing electrical schematics with drawing software (AutoCAD and/or SolidWorks).
Essential Duties and Responsibilities
1.    Troubleshoots, installs, maintains, modifies, calibrates, inspects, and repairs instrumentation process control systems, motor starters, controls and variable frequency drives.
2.    Coordinates the engineering and development of a laser table electrical system and provides guidance to maintenance staff during installation and maintenance of laser system
3.    Controls industrial processes using electronic software and applications such as scientific and analytic computer software, calculators, voltage and current meters, electronic probes, process multi-meters and specialized calibration equipment.
4.    Helps with all electronic/mechanical test equipment including hydraulic tensile machines.
5.    Assists in the design of software for test/manufacturing equipment
6.    Calibrates all electrical equipment used for production and testing of materials
7.    Performs other inherent duties related to but not limited to the above
Job Specific Competencies
·         Knowledge of electrical safe work practices and procedures including laser safety and machine safety standards (LOTO, e-stops).
·         Knowledge of the function and operation of electronic controlling, measuring, recording, transmitting, testing and diagnostic equipment.
·         Knowledge of industrial automation, control panels, programmable logic controllers (PLCs), and instruments.
·         Knowledge in the proper applications of instruments that control a process function.
·         Ability to troubleshoot and program with electronic related software.
·         Ability to create and write-to SQL databases for material traceability.
·         Ability to work with scientific and analytic computer software, calculators, voltage and current meters, electronic probes, process multi-meters and specialized calibration equipment, in an industrial operations setting.
·         Ability to troubleshoot, edit, configure and program controls systems such as PLCs, Human Machine Interface, drives, SCADA or other proprietary agency/department software with minimal supervision.
·         Ability to design, construct, assemble and rearrange circuits and perform other modifications to manufacturing and test equipment.
·         Ability to interpret engineering plans, diagrams, schematics, PLC ladder logic, and blueprints.
·         Proficient in AutoCAD and/or SolidWorks drawing software to create and maintain flow diagrams, schematics, and BOMS.
 
 
Knowledge, Skills and Abilities
·         Must have problem solving skills
·         Must be analytical and innovative 
·         Must be computer literate with experience in word processing, spread sheets and databases
·         Must have experience in reading and writing directly to SQL databases.
·         Must have experience in robotic controls.
·         AutoCAD or equivalent experience preferred
·         Must be able to multi-task and able to handle multiple projects simultaneously
·         Excellent written and verbal communication skills required for communication with all levels of the organization, customers and vendors.
·         Basic understanding of ISO standards.
Education and Experience Requirements
·         B.S. in engineering discipline (Electrical or Mechanical) with minimum of 5 years related experience preferred.
·         Consideration for no degree with 10+ years related work experience.
·         Must be proficient in Labview, Windows systems and visual programming languages. Python, C/C++ and/or C# preferred.
·         Must have experience with stepper and servo motors and controllers.
·         OMRON/PMAC as well as PLC programming and implementation experience strongly preferred
·         Factory Equipment Safety Standards
 
 
Physical Requirements
 
·         Finger, hand and arm dexterity necessary for preparing and maintaining reports and files and for computer keyboarding
·         Visual acuity necessary to identify electrical and mechanical defects and to read blueprints and schematics
·         Listening skills crucial for communicating with staff, customers and vendors
·         Must be able to sit for extended periods of time
·         Must be able to stand, walk and climb stairs on a routine basis
·         Ability to kneel, stoop, bend at waist and crouch when troubleshooting equipment
Work environment characteristics described here are representative of those that must be met by an employee to successfully perform the essential functions of this job.  Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions of the job.