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Site Reliability Engineer Jobs in Seneca, SC (NOW HIRING)

Asset Reliability & Equipment Performance * Develop and implement preventative, predictive, and ... Manage site facilities and critical utilities including: * Electrical systems * HVAC systems

... programming. * Safety First: Strictly follow LOTO and Arc Flash standards. * Reliability: Interpret schematics and P&IDs to improve site production and equipment longevity. What We're Looking For ...

... programming. * Safety First: Strictly follow LOTO and Arc Flash standards. * Reliability: Interpret schematics and P&IDs to improve site production and equipment longevity. What We're Looking For ...

EH&S Manager

Eastanollee, GA · On-site

$65K - $89K/yr

Background in Engineering, Science, Safety, or Environmental disciplines preferred * Associate ... reliability and innovation. * Our principal office is in London and our management office in the ...

Showing results 41-44

Site Reliability Engineer information

See Seneca, SC salary details

$10

$60

$87

How much do site reliability engineer jobs pay per hour?

As of Aug 10, 2026, the average hourly pay for site reliability engineer in Seneca, SC is $60.66, according to ZipRecruiter salary data. Most workers in this role earn between $52.16 and $69.33 per hour, depending on experience, location, and employer.

Is a site reliability engineer a stressful job?

A site reliability engineer (SRE) role can be stressful due to the responsibility of maintaining system uptime, handling incidents, and ensuring reliability under tight deadlines. The job often involves on-call duties, troubleshooting complex issues, and working with automation tools, which can contribute to work-related stress but also offers opportunities for skill development and problem-solving.

What is a site reliability engineer?

A site reliability engineer specializes in site reliability engineering, or SRE, a specific branch of operations first pioneered by Google. You are responsible for ensuring that when a website decides to scale a particular feature for various users to access, it does not break the underlying software or website functions. This means you need to use analytical problem-solving skills to determine how to make specific features on a new software release work on top of existing source code.

What are the key skills and qualifications needed to thrive as a site reliability engineer?

To thrive as a Site Reliability Engineer, you need a strong background in computer science, systems administration, and software engineering, often supported by a degree in a technical field. Familiarity with cloud platforms (like AWS or GCP), container orchestration (such as Kubernetes), infrastructure as code (Terraform or Ansible), and monitoring tools (Prometheus, Grafana) is typically expected. Strong problem-solving skills, effective communication, and a proactive mindset help SREs excel at incident management and cross-functional collaboration. These skills are crucial for maintaining system reliability, minimizing downtime, and driving continuous improvement in complex technical environments.

What are some of the most common challenges site reliability engineers face when balancing system reliability with rapid software delivery?

Site Reliability Engineers (SREs) often navigate the challenge of maintaining highly reliable systems while supporting fast-paced software releases. This involves managing incidents, automating processes to reduce manual toil, and working closely with development teams to embed reliability into the software development lifecycle. SREs must carefully prioritize their efforts between proactive improvements and urgent, reactive fire-fighting. Effective communication and collaboration with both operations and development teams are crucial to ensuring service uptime without slowing down innovation.

What is the difference between Site Reliability Engineer vs DevOps Engineer?

AspectSite Reliability EngineerDevOps Engineer
CredentialsTypically requires a computer science degree, certifications like AWS, Google Cloud, or KubernetesSimilar credentials, often with cloud certifications and scripting skills
Work EnvironmentFocuses on maintaining and improving system reliability, often in large-scale production environmentsWorks on automation, CI/CD pipelines, and deployment processes across development and operations teams
Industry UsageCommon in tech, cloud services, and large-scale enterprise companiesWidely used in software development, cloud, and IT organizations

Both roles require strong technical skills and cloud knowledge, but SREs focus more on system reliability and uptime, while DevOps engineers emphasize automation and deployment processes. They often collaborate but have distinct primary responsibilities.

What is a site reliability engineer?

A Site Reliability Engineer (SRE) is a professional who applies software engineering principles to infrastructure and operations problems. Their primary goal is to create scalable and highly reliable software systems, often bridging the gap between development and IT operations. SREs automate tasks, monitor system health, respond to incidents, and work to improve system reliability and performance. They also help define service level objectives (SLOs) and ensure systems meet customer expectations for uptime and availability.
What are popular job titles related to Site Reliability Engineer jobs in Seneca, SC? For Site Reliability Engineer jobs in Seneca, SC, the most frequently searched job titles are:
What cities near Seneca, SC are hiring for Site Reliability Engineer jobs? Cities near Seneca, SC with the most Site Reliability Engineer job openings:
Infographic showing various Site Reliability Engineer job openings in Seneca, SC as of August 2026, with employment types broken down into 1% As Needed, 81% Full Time, 15% Part Time, 1% Temporary, and 2% Contract. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution, with an average salary of $126,178 per year, or $60.7 per hour.

Maintenance Manager

Mergon

Anderson, SC • On-site

Other

Posted 10 days ago


Job description


The Maintenance Manager is responsible for leading all maintenance activities across the manufacturing facility to ensure the safe, reliable, and efficient operation of production equipment, utilities, facilities, and infrastructure. The role is critical in maximizing equipment uptime, reducing unplanned downtime, improving Overall Equipment Effectiveness (OEE), and supporting continuous improvement initiatives.


Maintenance Leadership

  • Lead, coach, and develop the maintenance team to achieve operational and business objectives.
  • Establish clear performance goals and development plans for maintenance personnel.
  • Foster a culture of safety, accountability, continuous improvement, and technical excellence.
  • Manage maintenance staffing, training, succession planning, and workforce capability development.

Asset Reliability & Equipment Performance

  • Develop and implement preventative, predictive, and condition-based maintenance programs.
  • Drive continuous improvement in equipment reliability and machine availability.
  • Monitor and improve key performance metrics including:
    • Equipment uptime
    • OEE
    • Mean Time Between Failures (MTBF)
    • Mean Time to Repair (MTTR)
    • Planned vs. reactive maintenance ratio
  • Lead root cause investigations into equipment failures and implement corrective actions.

Maintenance Planning & Execution

  • Develop and manage annual maintenance plans and shutdown schedules.
  • Ensure effective maintenance planning, scheduling, and execution through CMMS systems.
  • Prioritize maintenance activities to minimize disruption to production operations.
  • Ensure maintenance records, procedures, and documentation are maintained accurately.

Facilities & Utilities Management

  • Manage site facilities and critical utilities including:
    • Electrical systems
    • HVAC systems
    • Water and cooling systems
    • Compressed air systems
    • Building infrastructure
  • Coordinate contractor activities and ensure compliance with company and regulatory requirements.

Continuous Improvement

  • Lead TPM (Total Productive Maintenance) initiatives.
  • Identify and implement cost-saving and efficiency improvement projects.
  • Support automation and Industry 4.0 initiatives where appropriate.
  • Participate in capital investment projects and equipment upgrades.

Health, Safety & Environmental Compliance

  • Ensure all maintenance activities comply with health, safety, environmental, and regulatory requirements.
  • Conduct risk assessments and ensure safe systems of work are implemented.
  • Manage machine guarding, lockout/tagout procedures, and contractor safety.
  • Support ISO 45001, ISO 14001, IATF 16949 and other applicable management systems.

Budget & Cost Control

  • Develop and manage the maintenance budget.
  • Control spare parts inventory and maintenance expenditure.
  • Identify opportunities to reduce operational and maintenance costs.
  • Manage supplier relationships, service agreements, and contractor performance.

Capital Projects

  • Support installation and commissioning of new equipment.
  • Lead equipment modification and plant improvement projects.
  • Provide technical expertise for capital investment decisions.
  • Participate in project planning, budgeting, and execution


Key Performance Indicators (KPIs)

  • Equipment uptime %
  • OEE improvement
  • Unplanned downtime reduction
  • MTBF and MTTR performance
  • Planned maintenance compliance %
  • Maintenance budget adherence
  • Safety performance
  • Spare parts inventory accuracy
  • Engineering project delivery performance
  • Team capability and engagement