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Manufacturing Systems Engineer Jobs in Florida (NOW HIRING)

As a Systems Engineer your role is to leverage Power BI reporting, develop QuickBase apps to ... Examine trends in the data for clue to improve manufacturing efficiency. * Create Power BI reports ...

... manufacturing development; production and deployment; and operation and support phases of the ... Plan and execute technical reviews, audits, systems engineering technical reviews, assessments, and ...

... manufacturing development; production and deployment; and operation and support phases of the ... Plan and execute technical reviews, audits, systems engineering technical reviews, assessments, and ...

... manufacturing development; production and deployment; and operation and support phases of the ... Plan and execute technical reviews, audits, systems engineering technical reviews, assessments, and ...

Mechanical Systems Engineer Onsite Kennedy Space Center /Florida - No Hybrid or remote is available ... Support manufacturing, integration, qualification, and testing activities, including evaluation of ...

Lead Systems Engineer

Melbourne, FL · On-site

$125K - $175K/yr

Collaborate closely with software, hardware, test engineering, manufacturing, configuration management, and program management teams to ensure cohesive system behavior and robust verification ...

Ensure strong coordination across systems, software, hardware, mechanical, test, quality, manufacturing, and program management teams to achieve program objectives. * Mentor and guide engineers ...

Lead Systems Engineer

Melbourne, FL · On-site

$125K - $175K/yr

Collaborate closely with software, hardware, test engineering, manufacturing, configuration management, and program management teams to ensure cohesive system behavior and robust verification ...

You will leverage Model-Based Systems Engineering (MBSE) principles to establish seamless ... Develop, expand, and maintain complex parametric manufacturing and O&S lifecycle models within ...

You will leverage Model-Based Systems Engineering (MBSE) principles to establish seamless ... Develop, expand, and maintain complex parametric manufacturing and O&S lifecycle models within ...

You will leverage Model-Based Systems Engineering (MBSE) principles to establish seamless ... Develop, expand, and maintain complex parametric manufacturing and O&S lifecycle models within ...

Systems Engineer (Experienced) Company: The Boeing Company Boeing Defense, Space & Security (BDS ... Bachelor of Science degree in Engineering, Engineering Technology (including Manufacturing ...

Posted today

Systems Engineer (Experienced) Company: The Boeing Company Boeing Defense, Space & Security (BDS ... Bachelor of Science degree in Engineering, Engineering Technology (including Manufacturing ...

Posted today

Showing results 41-60

Manufacturing Systems Engineer information

See Florida salary details

$30.3K

$82.4K

$118.4K

How much do manufacturing systems engineer jobs pay per year?

As of Sep 4, 2026, the average yearly pay for manufacturing systems engineer in Florida is $82,364.00, according to ZipRecruiter salary data. Most workers in this role earn between $63,500.00 and $106,500.00 per year, depending on experience, location, and employer.

What is a manufacturing systems engineer?

Manufacturing Systems Engineers are professionals who design, implement, and optimize integrated systems used in manufacturing processes. They work to improve efficiency, quality, and productivity by analyzing workflows, selecting appropriate technologies, and ensuring systems work seamlessly together. Their role often involves coordinating between different departments, troubleshooting system issues, and implementing automation or process improvements. They play a key part in modernizing manufacturing operations and ensuring products are made efficiently and to high standards.

What are the key skills and qualifications needed to thrive as a manufacturing systems engineer?

To thrive as a Manufacturing Systems Engineer, you need a solid background in industrial or manufacturing engineering, process optimization, and analytical problem-solving, usually backed by a relevant engineering degree. Familiarity with CAD software, ERP systems, automation tools, and certifications like Six Sigma or Lean Manufacturing are typically required. Strong project management, communication, and teamwork skills help you collaborate across departments and drive continuous improvement initiatives. These competencies are crucial for optimizing production efficiency, ensuring product quality, and supporting the overall success of manufacturing operations.

What are some common challenges faced by manufacturing systems engineers when integrating new technologies into existing production lines?

Manufacturing Systems Engineers often encounter challenges such as ensuring compatibility between new technologies and legacy equipment, minimizing production downtime during upgrades, and training staff to effectively use new systems. They must carefully plan and coordinate with cross-functional teams—including production, IT, and quality assurance—to address potential disruptions and maintain product quality. Effective communication and thorough testing are key to a smooth integration process.

What is the difference between Manufacturing Systems Engineer vs Manufacturing Process Engineer?

AspectManufacturing Systems EngineerManufacturing Process Engineer
Primary FocusDesign, optimize, and integrate manufacturing systems and automationDevelop and improve manufacturing processes and workflows
Skills & CertificationsSystems engineering, automation, PLC programming, CADProcess analysis, Lean, Six Sigma, CAD
Work EnvironmentManufacturing plants, automation labsProduction lines, process development areas
Industry UsageManufacturing, automation, industrial engineeringManufacturing, process improvement, quality control

While both roles support manufacturing efficiency, Manufacturing Systems Engineers focus on integrating and automating entire systems, whereas Manufacturing Process Engineers concentrate on refining specific production processes. Understanding these distinctions helps in choosing the right career path or job search focus.

What job categories do people searching Manufacturing Systems Engineer jobs in Florida look for?

The top searched job categories for Manufacturing Systems Engineer jobs in Florida are:

Infographic showing various Manufacturing Systems Engineer job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 10% Part Time, 4% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $82,364 per year, or $39.6 per hour.

UAS Chief Engineer- Additive Manufacturing

AEVEX

Tampa, FL • On-site

Full-time

Re-posted 14 days ago


Job description

The UAS Chief Engineer provides technical leadership, strategic direction, and execution oversight for the design, development, integration, and sustainment of advanced additively manufacturing unmanned systems. This role is responsible for end-to-end system engineering across air, ground, maritime, and/or multi-domain unmanned platforms, ensuring mission effectiveness, survivability, cybersecurity resilience, and compliance with applicable defense standards and regulations. The Chief Engineer serves as the primary technical authority for their assigned platform or product area, guiding cross-functional engineering teams, aligning technical roadmaps with customer requirements, and ensuring delivery of high-performance, secure, and reliable systems within cost and schedule constraints. This position works closely with government stakeholders, program management, operations, and executive leadership.

Essential Functions

  • Provide overall technical leadership for additive manufactured unmanned system development programs, from concept through deployment and sustainment.
  • Serve as the technical authority for system architecture, design trade studies, integration strategies, and risk management.
  • Research and drive advancements in designs centered around additive manufacturing of UAS across the portfolio
  • Lead system engineering processes including requirements development, decomposition, verification, validation, and configuration management.
  • Oversee multidisciplinary engineering teams (mechanical, electrical, software, controls, AI/ML, autonomy, communications, cybersecurity, and systems engineering).
  • Develop and maintain technical roadmaps aligned with defense customer needs and emerging operational requirements.
  • Ensure compliance with applicable DoD standards, MIL-STDs, airworthiness/safety certifications, cybersecurity frameworks (e.g., RMF), and export regulations (e.g., ITAR/EAR).
  • Direct integration of autonomy, navigation, sensors, communications, propulsion, and payload systems into cohesive, mission-ready platforms.
  • Lead major technical reviews (SRR, PDR, CDR, TRR, PRR), ensuring readiness and program maturity at each phase.
  • Identify, assess, and mitigate technical risks related to reliability, survivability, resilience, and mission performance.
  • Support proposal development, customer briefings, and technical strategy discussions with government and defense partners.
  • Foster innovation in autonomy, AI-enabled decision-making, resilient communications, and human-machine teaming.
  • Mentor senior engineering staff and establish best practices in additive manufacturing, systems engineering, and product development.
  • Perform other duties as assigned.

Standard Essential Functions

  • Regular and reliable attendance on a full time basis [or in accordance with posted schedule].
  • Responsible for exhibiting professional behavior with both internal and external business associates that reflects positively on the company and is consistent with the company's policies and practices.
  • Embodies AEVEX's cultural values and aligns daily actions with department goals and company culture.

Qualifications and Competencies

  • Security Clearance-Ability to obtain/maintain a Top Secret/SCI DoD clearance, U.S. Citizenship required.
  • Demonstrated expertise in complex systems engineering for unmanned or autonomous defense systems.
  • Extensive knowledge in additive manufacturing of UAS systems; composites, polymers, metals.
  • Strong working knowledge of DfX principles; Design for Manufacturability, Procurement, Testability, Modularity, Cost.
  • Strong knowledge of platform integration across hardware, embedded systems, software, autonomy, and communications.
  • Proven ability to lead large, multidisciplinary technical teams in a regulated defense environment.
  • Deep understanding of systems architecture, model-based systems engineering (MBSE), and lifecycle management.
  • Familiarity with defense acquisition processes and government contracting environments.
  • Working knowledge of cybersecurity requirements for defense systems, including secure communications and resilient architectures.
  • Exceptional analytical, problem-solving, and decision-making skills.
  • Strong written and verbal communication skills, with experience presenting to senior defense stakeholders.
  • Understand of supply chain as it relates to autonomous systems development, rapid production scaling and design for manufacturing.

Education / Certifications

  • Bachelor's degree in Aerospace Engineering, Electrical Engineering, Mechanical Engineering, Systems Engineering, Computer Engineering, or a related technical field required.
  • Master's degree in Engineering, Systems Engineering, Robotics, Computer Science, or related field preferred.

Experience

  • 15+ years of progressive engineering experience in defense, aerospace, robotics, or autonomous systems development.
  • 10+ years of experience with progressive technical experience in engineering roles, with a proven track record of technical design and development
  • 7+ years in senior technical leadership roles (e.g., Lead Engineer, Chief Engineer, Technical Director, or equivalent).
  • 7+ years in senior technical engineering roles centered around additive manufacturing principles, programs, and execution
  • Demonstrated experience leading at least one full lifecycle unmanned or autonomous system development program.
  • Experience interfacing directly with DoD customers, prime contractors, and/or government program offices.
  • Background in integrating sensors, navigation systems, propulsion systems, C2 systems, autonomy software, or mission payloads into operational platforms.
  • Experience with test and evaluation planning, field demonstrations, and operational deployment support.
  • Experience with manufacturing technologies that enable rapid development, test and demonstration of capabilities.
  • Experience with safety-critical systems and applicable certification standards.

Physical Requirements

The physical demands 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. While performing the duties the employee is: Frequently required to sit, and to reach to use computers and other office equipment For the purpose of this summary, occasionally is used to represent up to 1/3 of the time given to the work day, frequently represents 1/3 to 2/3 of the time and constantly represents 2/3 or more of the time.