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Reliability Engineer Jobs in The Villages, FL (NOW HIRING)

The Reliability & Projects Engineer will be responsible for the identification, development, and implementation of innovative solutions to electrical/instrumentation/automation/networking reliability ...

ENGINEER AUTOMATION RELIABILITY

Brooksville, FL · On-site

$83K - $105K/yr

The Reliability & Projects Engineer will be responsible for the identification, development, and implementation of innovative solutions to electrical/instrumentation/automation/networking reliability ...

Lube Technician

Sumterville, FL · On-site

$14 - $19/hr

Meet with Mechanical Inspector and Reliability Engineer/Manager to give feedback of findings during daily routines. * Organize and plan maintenance each day. * Prepare for scheduled maintenance.

Lube Technician

Sumterville, FL · On-site

$14 - $19/hr

Meet with Mechanical Inspector and Reliability Engineer/Manager to give feedback of findings during daily routines. * Organize and plan maintenance each day. * Prepare for scheduled maintenance.

Key Responsibilities: - Develop, implement, and manage engineering and maintenance strategies to maximize operational efficiency and reliability of plant equipment. - Lead troubleshooting and problem ...

Job Summary The Entry Level Mechanical Engineer will support projects that improve plant safety, capacity, efficiency, reliability, and the work environment for operational employees. This role will ...

Job Summary The Entry Level Mechanical Engineer will support projects that improve plant safety, capacity, efficiency, reliability, and the work environment for operational employees. This role will ...

The Role The IT Operations Engineer is a mid-level technical role responsible for independently ... Identify recurring issues and recommend practical improvements to system reliability, support ...

Quality Engineer

Groveland, FL · On-site

$63K - $81K/yr

... Engineering license and continuous education through weekly webinars and company developed ... the reliability of our equipment. * Internal quality data is used to give direction on where to ...

Quality Engineer

Groveland, FL

$63K - $81K/yr

... Engineering license and continuous education through weekly webinars and company developed ... the reliability of our equipment. * Internal quality data is used to give direction on where to ...

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Reliability Engineer information

See The Villages, FL salary details

$53.5K

$103.4K

$123.6K

How much do reliability engineer jobs pay per year?

As of Sep 7, 2026, the average yearly pay for reliability engineer in The Villages, FL is $103,404.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,800.00 and $113,100.00 per year, depending on experience, location, and employer.

What is a reliability engineer?

Reliability Engineers are professionals responsible for ensuring that systems, equipment, or processes function consistently and efficiently over time. They analyze data, identify potential points of failure, and develop maintenance strategies to improve system reliability and minimize downtime. Their work spans various industries, including manufacturing, energy, and technology, and often involves collaborating with design, operations, and maintenance teams. By implementing reliability-centered maintenance and predictive analysis, they help organizations save costs and increase safety.

What does a reliability engineer do?

As a reliability engineer, your duties are to test and evaluate the manufacturing of products and components and ensure that the procedures are efficient and do not lead to abnormally high maintenance or operational costs. Your other responsibilities are to find solutions to product reliability risks. You may manage risk in a supply chain, develop loss prevention strategies, and track the entire lifecycle of product development, from building prototypes to moving a product into full-scale production. You analyze information from department heads and recommend strategies to reduce risk and ensure that the product works reliably.

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

To thrive as a Reliability Engineer, you need a solid background in engineering principles, failure analysis, and reliability modeling, typically with a degree in engineering or a related field. Familiarity with tools such as FMEA, Root Cause Analysis (RCA), reliability-centered maintenance (RCM) software, and certifications like Certified Reliability Engineer (CRE) are highly valued. Strong problem-solving abilities, attention to detail, and effective communication are crucial soft skills in this role. These skills ensure systems are dependable, downtime is minimized, and organizational performance and safety are optimized.

What are some typical challenges reliability engineers face when implementing preventive maintenance strategies?

Reliability Engineers often encounter challenges such as balancing preventive maintenance schedules with production demands, ensuring buy-in from operations teams, and accurately predicting equipment failures. They must analyze large sets of historical data to identify trends and root causes, which can be complex in facilities with diverse machinery. Collaboration with maintenance, operations, and engineering teams is essential to develop effective strategies that minimize downtime while optimizing resources.

What is the difference between Reliability Engineer vs Maintenance Engineer?

AspectReliability EngineerMaintenance Engineer
CredentialsTypically requires engineering degree, certifications in reliability or asset managementOften requires engineering or technical diploma, certifications in maintenance or equipment repair
Work EnvironmentFocuses on analysis, design, and improvement of systems for reliabilityHands-on maintenance, repair, and troubleshooting of equipment
Industry UsageCommon in manufacturing, energy, aerospace, and industrial sectorsPrevalent in manufacturing, facilities, and industrial plants

Reliability Engineers focus on designing and improving systems to prevent failures, using data analysis and modeling. Maintenance Engineers perform hands-on repairs and upkeep of equipment to ensure operational continuity. While both roles aim to optimize equipment performance, Reliability Engineers work proactively on system reliability, whereas Maintenance Engineers handle reactive and scheduled maintenance tasks.

Are reliability engineers in demand?

Reliability engineers are in high demand across industries such as manufacturing, energy, and aerospace due to their role in improving system performance and reducing downtime. Employers seek professionals with skills in data analysis, failure modes, and maintenance strategies, often requiring certifications like Certified Reliability Engineer (CRE). The job outlook is positive, with steady growth expected as companies prioritize operational efficiency and risk management.

How much do reliability engineers get paid?

Reliability engineers typically earn a median annual salary ranging from $70,000 to $110,000, depending on experience, location, and industry. Senior or specialized reliability engineers with certifications and advanced skills can earn higher salaries, often exceeding $120,000 annually.

What are popular job titles related to Reliability Engineer jobs in The Villages, FL?

For Reliability Engineer jobs in The Villages, FL, the most frequently searched job titles are:

What cities near The Villages, FL are hiring for Reliability Engineer jobs?

Cities near The Villages, FL with the most Reliability Engineer job openings:

Infographic showing various Reliability Engineer job openings in The Villages, FL as of August 2026, with employment types broken down into 100% Full Time. Highlights an 75% In-person, and 25% Remote job distribution, with an average salary of $103,404 per year, or $49.7 per hour.

Electric Reliability & Standards Engineer

City of Ocala

Ocala, FL

$124K - $155K/yr

Full-time

Re-posted 24 days ago


Key responsibilities

  • Lead the analysis and improvement of system reliability performance, including monitoring, investigating outages, and recommending corrective actions.

  • Develop, review, and enforce construction and material standards, and provide training on these standards to staff.

  • Lead the development and application of protection schemes, conduct fault and coordination studies, and maintain relay settings and protective-device parameters.


Job description

Description GENERAL DESCRIPTION OF POSITION This professional engineering position is responsible for ensuring the reliability, safety, and standardization of Ocala Electric Utility's transmission and distribution systems. The Electric Reliability & Standards Engineer leads the analysis and improvement of system reliability performance, manages the development and enforcement of construction and material standards, and provides technical direction for protection coordination, fault studies, and corrective design. The position collaborates closely with the Electric Engineering Supervisor - Planning & Design to ensure design practices align with system reliability strategies and long-term infrastructure goals.

It functions as a technical authority and subject-matter expert supporting Engineering, Operations, and Procurement to strengthen electric system integrity, efficiency, and customer reliability. This position reports directly to the Engineering & GIS Manager or designee. Examples of Duties ESSENTIAL DUTIES AND RESPONSIBILITIES Lead System Reliability Analysis and Performance Improvement: Monitor, analyze, and report on electric system reliability indices (SAIDI, SAIFI, CAIDI, MAIFI, etc.)

Investigate outages, equipment failures, and recurring reliability concerns. Recommend corrective actions and coordinate implementation with Operations, Engineering, and T&D field crews. Develop and maintain dashboards and reports that track reliability trends and performance improvements across the utility.

Develop and Maintain Construction and Material Standards: Lead the creation, review, and publication of electric system construction and material standards. Evaluate materials and vendors to ensure quality, availability, and cost-effectiveness. Maintain the approved materials catalog and coordinate with all stakeholders on specification updates and stocking strategies.

Provide training and guidance to engineers, technicians, and field staff on new standards, materials, and procedures to ensure consistency and compliance. Perform Protection, Coordination, and Relaying Engineering: Lead the development and application of protection philosophies, coordination standards, and distribution relaying schemes for the transmission and distribution system. Conduct system-wide fault and coordination studies to ensure proper protection margins, device selectivity, and compliance with reliability and safety standards.

Develop, maintain, and verify relay settings and protective-device parameters, including reclosers, fuses, and sectionalizing equipment. Collaborate with Substation, T&D, and System Operations personnel to implement, test, and validate protection and automation schemes. Provide technical guidance on relay applications, coordination practices, and communication interfaces supporting system protection and reliability objectives.

Provide Engineering Governance and Technical Expertise: Serve as a subject-matter expert during post-event technical evaluations, reliability investigations, and engineering reviews. Maintain system models and reliability-related datasets. Review and recommend technology, automation, and analytical tools that improve reliability performance.

Participate in cross-departmental working groups addressing reliability, standards, and asset performance. Support Operational Coordination and System Analysis: Provide technical and analytical support to System Operations, Substation, and T&D staff to ensure effective coordination and reliable system performance. Collaborate on operational planning, event analysis, and post-incident reviews to identify system improvements and enhance protection and reliability practices.

Serve as a reliability liaison between Engineering and System Operations to align operational activities with engineering standards and reliability objectives. Lead Continuous Improvement and Documentation Initiatives: Maintain detailed records of reliability studies, standards revisions, and materials evaluations. Prepare technical reports and presentations for management summarizing reliability trends, material performance, and improvement initiatives.

Support long-term planning efforts and contribute to capital improvement recommendations through data-driven reliability analysis. Perform any other related duties as required or assigned. Minimum Qualifications To perform this job successfully, an individual must be able to perform each essential duty mentioned satisfactorily.

The requirements listed below are representative of the knowledge, skill, and/or ability required. EDUCATION AND EXPERIENCE Bachelor's degree in engineering (electrical preferred; mechanical considered) from an accredited college or university. Minimum of eight (8) years of progressively responsible experience in electric utility reliability, protection, or standards engineering.

Experience must include system analysis, fault and coordination studies, and the development or maintenance of protective-device settings and construction standards. Must demonstrate extensive knowledge of the National Electrical Safety Code (NESC), IEEE protection and coordination standards, and electric utility engineering analysis and modeling software. An equivalent combination of education and training may be considered.

REQUIRED CERTIFICATES, LICENSES, REGISTRATIONS Must possess a valid Florida Driver's License with an acceptable driving record. Certification or documented training in electric utility protection and coordination principles is preferred at time of hire and required within twelve (12) months of employment. PREFERRED CERTIFICATES, LICENSES, REGISTRATIONS E.I.T

(Engineer-in-Training) or F.E. (Fundamentals of Engineering) certification preferred. P.E

(Professional Engineer) license desirable. Specialized training or certification in protective relaying, coordination, or power-system protection. Supplemental Information ANALYTICAL ABILITY / PROBLEM SOLVING MODERATELY DIRECTED.

Activities covered by wide-ranging policies and courses of action, and generally directed as to execution and review. PLANNING With regard to general assignments in planning time, method, manner and/or sequence of performance of own work. CONSIDERABLE RESPONSIBILITY; may also occasionally assist in the planning of work assignments performed by others within a limited area of operation.

DECISION MAKING Performs work operations which permit opportunity for decision-making of minor importance. FREQUENTLY; Performs work operations which permit opportunity for decision-making of major importance. FREQUENTLY; COMMUNICATION SKILLS Ability to read, analyze, and understand common scientific and technical journals, financial reports, and legal documents; Ability to respond to complex or difficult inquiries or complaints.

MATHEMATICAL SKILLS Ability to comprehend and apply principles of advanced calculus, modern algebra, and advanced statistical theory. CRITICAL THINKING SKILLS Ability to apply principles of logical or scientific thinking to a wide range of intellectual and practical problems. Ability to deal with noverbal, logical or scientific symbolism such as formulas, scientific equations, and graphs.

SUPERVISION RECEIVED Under general direction, WORKING FROM POLICIES AND GENERAL DIRECTIVES. RARELY REFERS SPECIFIC CASES TO supervisor unless clarification or interpretation of the organization's policy is required. MENTAL DEMAND HIGHLY INTENSE; Continual involvement with strategic and operational management functions which relate to both the short-term and long-term time periods.

USE OF MACHINES, EQUIPMENT AND/OR COMPUTER Regular use of highly complex machines and equipment; specialized or advanced software programs. ACCURACY Probable errors would normally not be detected in succeeding operations and could have serious effects in relationships with patrons and/or with the operations of other segments of the organization. Frequent possibilities of error would exist at all times.

PUBLIC CONTACT Regular contacts with patrons initiated by the employee. Involves furnishing and obtaining information and, attempting to influence the decisions of those contacted. Failure to exercise proper judgment may result in important losses to the organization.

EMPLOYEE CONTACT Contact with other departments or offices and also frequently with individuals in middle level positions; consulting on problems that necessitate judgment and tact, plus frequent contact with senior level internal officials. SOFTWARE SKILLS REQUIRED Accounting Basic Alphanumeric Data Entry Intermediate Contact Management Basic Database Advanced Enterprise Resource Planning Intermediate Human Resources Systems Basic Payroll Systems None Presentation/PowerPoint Advanced Programming Languages Intermediate Spreadsheet Advanced Word Processing/Typing Advanced ADDITIONAL SOFTWARE SKILLS Proficient in specialized engineering and analytical software used for electric system modeling, protection coordination, and reliability analysis. Experienced with data visualization and reporting platforms to evaluate system performance and support decision-making.

Demonstrates strong skills in Microsoft Office applications, AutoCAD, and GIS-based programs to develop, document, and maintain construction standards and technical records. Experience with Milsoft modeling software or similar electric utility analysis platforms is preferred. OTHER SKILLS Requires expert knowledge of electric system reliability, protection coordination, and construction standards.

Must demonstrate strong analytical, critical thinking, and problem-solving skills with the ability to evaluate complex technical data and develop sound engineering recommendations. Requires a high level of attention to detail and the ability to manage multiple priorities while maintaining accuracy and efficiency. Must possess strong written and verbal communication skills and the ability to collaborate effectively with staff at all levels, contractors, and other utility departments.

Demonstrates sound professional judgment, initiative, and a commitment to continuous improvement in support of system reliability and operational excellence. PHYSICAL ACTIVITIES While performing the functions of this job, the employee may be required to: Stand Frequently Walk Frequently Sit Regularly Use hands to handle or feel Continuously Reach with hands and arms Regularly Climb or balance Occasionally Stoop, kneel, crouch or crawl Occasionally Talk or hear Continuously Taste or smell Never WEIGHT LIFT REQUIREMENTS The employee must occasionally lift and/or move: Up to 50 pounds VISION REQUIREMENT Specific vision abilities required by this job may include: Ability to adjust focus (work duties that require the ability to adjust the eye to bring an object into sharp focus at various distances or focal lengths). ENVIRONMENTAL CONDITIONS The following work environment characteristics described here are representative of those an employee encounters while performing essential functions of this job.

Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. Work near moving mechanical parts (spinning shafts, engines, lifts, etc.) Occasionally Work in high, precarious places (tall structures, bucket lifts, extension ladders, etc.) Never Fumes or airborne particles (painting, sanding, solvents, flying lint or dust particles, etc.) Never Toxic or caustic chemicals (including potential for chemical spills, etc.) Never Outdoor weather conditions (exposure to outdoor heat, cold or inclement weather) Regularly Wet or humid conditions (not weather-related, such as greenhouse, carwash, etc.) Never Extreme cold (not weather-related, such as freezer, cold storage, etc.) Never Extreme heat not weather-related, such as furnace, kitchen, ovens, etc. where temp is regularly above 100 degrees F) Never Risk of electrical shock (live electrical wires, equipment that retains power after shutoff) Regularly Work with explosives (TNT, dynamite, nitroglycerine or other related explosives) Never Risk of radiation (x-ray equipment, nuclear radiation, electromagnetic radiation, etc.) Occasionally Vibration (jack hammer, soil compactor, equipment that creates high vibration, etc.) Never The noise level in the work environment is usually Moderate (business office with computers/printers, light traffic, etc.) ADDITIONAL INFORMATION Emphasis is on engineering governance, system protection, and reliability analysis

This position requires a high degree of technical independence, analytical judgment, and professional accountability to ensure that construction standards, materials, and operating practices support long-term system reliability, safety, and efficiency. Work involves close collaboration with Engineering, T&D, Substation, Operations, and Procurement staff to evaluate system performance and implement reliability improvements. The position functions as a senior technical expert responsible for maintaining compliance with applicable codes, standards, and industry best practices.

Participation in after-hours response, technical review, or post-event analysis may occasionally be required. This is not necessarily an exhaustive list of all responsibilities, skills, duties, requirements, efforts, or working conditions associated with the job. While this is intended to be an accurate reflection of the current job, management reserves the right to revise the job or to require that other or different tasks be performed when circumstances change (e.g., emergencies, changes in personnel, workload, rush jobs, or technological developments).