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Senior Reliability Engineer Jobs in Texas (NOW HIRING)

JOB SUMMARY The Senior Systems Reliability Engineer applies software engineering discipline to reliability problems - designing, building, and operating the systems that make production software ...

Role: Senior SRE Engineer Location: Washington DC - Hybrid We are seeking a high-caliber Senior SRE Engineer to join a premier client in Washington, DC , to spearhead the evolution of their ...

Senior Site Reliability Engineer

Plano, TX ยท On-site

$54.50 - $72.50/hr

The Senior Site Reliability Engineer acts as an advanced senior individual contributor responsible for designing, implementing, and maturing reliability engineering capabilities. The role focuses on ...

Senior .NET Software Engineer / SRE

Arlington, TX ยท On-site

$51.25 - $68.25/hr

Senior .NET Software Engineer / SRE DETAILS Location: Arlington, TX 76014 (hybrid onsite 2-days per week) Position Type: 6M C2H Hourly / Salary: to $160K+ (based on experience level) JOB SUMMARY Vaco ...

Senior Software Engineer, Reliability Remote, US About Nametag Nametag is building the future of secure digital identity. Our mission is to make it easy for people and organizations to prove who they ...

Senior Site Reliability Engineer

Plano, TX ยท On-site

$54.50 - $72.50/hr

The Senior GCP Site Reliability Engineer acts as an advanced senior individual contributor responsible for designing, implementing, and maturing reliability engineering capabilities. The role focuses ...

Senior Director - Observability | SRE

Coppell, TX ยท On-site

$52.50 - $70/hr

About the Role The Senior Director - Observability and SRE, is a strategic leader accountable for ensuring the reliability, availability, and performance of the enterprise technology ecosystem. This ...

Showing results 41-60

Senior Reliability Engineer information

See Texas salary details

$19

$60

$85

How much do senior reliability engineer jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for senior reliability engineer in Texas is $60.01, according to ZipRecruiter salary data. Most workers in this role earn between $49.47 and $71.88 per hour, depending on experience, location, and employer.

What does a senior reliability engineer do?

A Senior Reliability Engineer is responsible for ensuring that systems, products, or processes operate reliably and efficiently over time. They analyze failure data, design reliability tests, develop maintenance strategies, and work with cross-functional teams to improve system performance and reduce downtime. Their expertise helps organizations minimize risk, optimize lifecycle costs, and maintain high standards of quality and safety. Senior Reliability Engineers often mentor junior team members and play a key role in developing reliability standards and best practices.

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

To thrive as a Senior Reliability Engineer, you need expertise in reliability engineering principles, root cause analysis, and a relevant engineering degree such as mechanical, electrical, or industrial engineering. Familiarity with tools like FMEA, RCA software, CMMS, and certifications such as Certified Reliability Engineer (CRE) are often required. Strong analytical thinking, communication skills, and the ability to lead cross-functional teams set top performers apart. These skills are essential for minimizing downtime, improving system reliability, and ensuring safe, efficient operations.

What are some common challenges faced by senior reliability engineers, and how are they typically addressed within the team?

Senior Reliability Engineers often encounter challenges such as diagnosing complex system failures, balancing proactive maintenance with urgent reactive fixes, and ensuring consistent communication across multidisciplinary teams. These challenges are typically addressed through root cause analysis, prioritization frameworks, and fostering a culture of knowledge sharing. Regular collaboration with operations, maintenance, and engineering teams helps in developing effective solutions and continuous improvement strategies.

What is the difference between Senior Reliability Engineer vs Reliability Engineer?

AspectSenior Reliability EngineerReliability Engineer
CredentialsTypically requires 5+ years experience, certifications like CRE or Six SigmaEntry to mid-level, often with 2-4 years experience, similar certifications
Work EnvironmentDesigns and oversees reliability programs, leads projectsPerforms analysis, supports reliability improvements
Industry UsageUsed across manufacturing, energy, aerospaceCommon in same industries, often as a stepping stone to senior roles

The main difference between a Senior Reliability Engineer and a Reliability Engineer lies in experience, leadership responsibilities, and scope of work. Senior Reliability Engineers typically lead projects and develop strategies, while Reliability Engineers focus on analysis and supporting reliability initiatives. Both roles are vital in ensuring equipment and system dependability across industries.

How much do senior reliability engineers get paid?

Senior reliability engineers typically earn between $90,000 and $130,000 annually, depending on experience, industry, and location. They often have expertise in systems analysis, failure modes, and reliability tools like FMEA and RCM, which can influence compensation levels.

What are the most commonly searched types of Reliability Engineer jobs in Texas?

The most popular types of Reliability Engineer jobs in Texas are:

What job categories do people searching Senior Reliability Engineer jobs in Texas look for?

The top searched job categories for Senior Reliability Engineer jobs in Texas are:

What cities in Texas are hiring for Senior Reliability Engineer jobs?

Cities in Texas with the most Senior Reliability Engineer job openings:

Infographic showing various Senior Reliability Engineer job openings in Texas as of August 2026, with employment types broken down into 90% Full Time, 4% Part Time, 5% Contract, and 1% Nights. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $124,824 per year, or $60 per hour.

Senior Industrial Reliability Engineer

Allied Stone Inc

Desoto, TX โ€ข On-site

Full-time

Posted 3 days ago

New


Job description

SUMMARY OF POSITION AND RESPONSIBILITY

The Senior Industrial Reliability Engineer is responsible for driving manufacturing performance, operational efficiency, and continuous improvement across our cabinet manufacturing operations. This position will analyze production processes, labor utilization, equipment performance, material flow, and manufacturing data to identify opportunities to improve safety, quality, productivity, delivery, capacity, and cost.

The Senior Industrial Reliability Engineer will partner closely with Operations, Production, Maintenance, Engineering, Quality, Supply Chain, and other cross-functional teams to eliminate waste, reduce downtime, improve labor efficiency, optimize manufacturing processes, and increase production capacity.

This position will apply Industrial Engineering, Lean Manufacturing, data analytics, and continuous improvement methodologies to develop practical, measurable solutions that improve overall manufacturing performance. The Senior Industrial Reliability Engineer will also work closely with Maintenance to analyze equipment reliability and downtime trends and support initiatives that improve equipment uptime and asset performance.

This position requires a strong understanding of process mapping, data analysis, and project management methodologies to drive continuous improvement initiatives.

ESSENTIAL FUNCTIONS

Reasonable accommodation may be made to enable individuals with disabilities to perform these essential functions.

Industrial Engineering & Process Improvement

  • Analyze manufacturing processes, workflows, and production methods to identify opportunities to improve productivity, quality, safety, ergonomics, equipment utilization, and cost.
  • Conduct time studies, work measurement, and process observations to establish and maintain accurate labor standards and production rates.
  • Develop and maintain standard work, labor standards, production routings, and process documentation.
  • Analyze labor utilization, staffing levels, production rates, and units per labor hour to identify opportunities for improved labor efficiency.
  • Perform line balancing and workflow analysis to optimize staffing, equipment utilization, and production flow.
  • Identify and eliminate unnecessary motion, transportation, waiting, overproduction, defects, and other forms of manufacturing waste.
  • Develop recommendations for process changes, staffing adjustments, equipment improvements, and automation opportunities based on data and business needs.
  • Support ergonomic assessments and recommend improvements that reduce unnecessary motion, physical strain, and workplace injury risk.

Equipment Reliability & Downtime Reduction

  • Analyze equipment downtime, production interruptions, equipment performance, and maintenance data to identify recurring problems and improvement opportunities.
  • Partner with Maintenance leadership to identify root causes of equipment failures and develop sustainable corrective actions.
  • Support initiatives designed to reduce unplanned downtime and improve equipment reliability and availability.
  • Analyze and report equipment reliability metrics, including Overall Equipment Effectiveness (OEE), Mean Time Between Failures (MTBF), Mean Time to Repair (MTTR), equipment uptime, and downtime.
  • Utilize data from the CMMS to identify equipment trends, recurring failures, PM opportunities, and reliability improvement priorities.
  • Partner with Maintenance to evaluate and improve preventive and predictive maintenance strategies based on equipment performance and failure trends.
  • Support Maintenance in establishing measurable reliability goals and improvement initiatives.
  • The Industrial Engineer does not directly manage Maintenance activities or personnel but provides engineering analysis, data, and process improvement support to improve asset reliability.

Lean Manufacturing & Continuous Improvement

  • Lead Lean Manufacturing and Continuous Improvement initiatives across the manufacturing operation.
  • Facilitate Kaizen events, 5S initiatives, value stream mapping, visual management, and other Lean activities.
  • Facilitate root cause analysis and corrective action activities related to quality, equipment, production, and process issues.
  • Develop and implement continuous improvement projects with measurable goals, timelines, and financial impact.
  • Monitor project results to ensure improvements are sustained over time.
  • Promote a culture of continuous improvement and accountability throughout the organization.

Production, Capacity & Performance Analysis

  • Monitor production performance, throughput, scrap, labor efficiency, downtime, production rates, and other manufacturing KPIs.
  • Develop capacity models and analyze production requirements to identify staffing, equipment, and process needs.
  • Evaluate current and future production capacity based on demand, available labor, equipment capabilities, and process constraints.
  • Identify bottlenecks and develop recommendations to improve throughput and manufacturing capacity.
  • Support production planning by providing data-driven analysis of labor, equipment, and process capabilities.
  • Develop and maintain performance dashboards and reports for Operations and leadership.

Layout, Material Flow & Facility Optimization

  • Design and improve manufacturing layouts to optimize workflow, material flow, equipment utilization, safety, and space.
  • Evaluate material handling processes and identify opportunities to reduce transportation, handling, and unnecessary movement.
  • Support facility layout, expansion, relocation, and workflow optimization projects.
  • Utilize AutoCAD or other appropriate layout tools to develop and communicate proposed improvements.

Capital Projects, Automation & New Product Introduction

  • Support evaluation of new equipment, automation, and manufacturing technology.
  • Develop business cases and ROI/payback analyses for capital equipment, automation, and process improvement projects.
  • Evaluate expected labor savings, throughput improvements, quality improvements, capacity gains, and operating costs associated with proposed investments.
  • Support capital project planning, implementation, and post-project performance evaluation.
  • Support New Product Introduction (NPI) activities by evaluating manufacturing methods, capacity requirements, labor requirements, process flow, and production readiness.
  • Partner with Operations, Engineering, Quality, and Supply Chain to ensure new products and processes can be manufactured efficiently and consistently.

Data Analysis & Reporting

  • Develop, maintain, and report key manufacturing performance indicators.
  • Analyze production and maintenance data to identify trends, performance gaps, and improvement opportunities.
  • Translate complex operational data into clear recommendations for management.
  • Establish project baselines and measure financial and operational results following implementation.
  • Quantify improvements in labor, downtime, throughput, scrap, capacity, and manufacturing costs.
  • Prepare presentations and reports for Operations and senior leadership.

QUALIFICATIONS (EDUCATION, CERTIFICATIONS, AND/OR TRAINING)

Required Education:

  • Bachelor's degree in Industrial Engineering, Manufacturing Engineering, Mechanical Engineering, or a related technical discipline.
  • Master's degree in Engineering, Operations, or a related field is a plus.

Required Experience:

  • 5–7 years of Industrial Engineering experience in a manufacturing environment.
  • Proven experience improving manufacturing processes, labor productivity, throughput, and operational efficiency.
  • Experience conducting time studies, work measurement, line balancing, and developing labor standards.
  • Experience analyzing equipment downtime and partnering with Maintenance to improve equipment reliability.
  • Experience implementing Lean Manufacturing and Continuous Improvement methodologies.
  • Experience developing business cases, ROI analyses, and financial justifications for process improvements, automation, and capital investments.
  • Experience in cabinet manufacturing, wood products, furniture, building products, or other high-volume manufacturing environments is preferred.
  • Experience working in a fast-paced manufacturing environment with multiple production processes and cross-functional teams is preferred.

Preferred Experience:

  • Lean Six Sigma Green Belt or Black Belt.
  • Certified Manufacturing Engineer (CMfgE) or other relevant manufacturing/engineering certification.

ESSENTIAL SKILLS, KNOWLEDGE, ABILITY, AND MENTAL REQUIREMENTS

Required Skills & Knowledge

  • Strong analytical, quantitative, and problem-solving abilities.
  • Strong understanding of Industrial Engineering principles and manufacturing processes.
  • Advanced Microsoft Excel skills, including data analysis, pivot tables, lookups, and reporting.
  • Strong understanding of Lean Manufacturing and Continuous Improvement methodologies.
  • Experience with time studies, work measurement, labor standards, and line balancing.
  • Strong understanding of OEE, root cause analysis, process capability, and manufacturing performance metrics.
  • Ability to analyze production, labor, maintenance, and equipment performance data.
  • Ability to develop capacity models and identify production constraints and bottlenecks.
  • Strong project management skills and the ability to manage multiple improvement projects simultaneously.
  • Excellent communication and cross-functional collaboration skills.
  • Ability to influence teams and drive change without direct authority.
  • Experience with ERP/MRP systems.
  • Experience with a Computerized Maintenance Management System (CMMS) preferred.
  • Knowledge of AutoCAD or manufacturing layout software preferred.
  • Experience with manufacturing dashboards, data visualization, or business intelligence tools is a plus.
  • Strong understanding of workplace ergonomics and manufacturing safety principles.