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Production Planning Engineer Jobs in Texas (NOW HIRING)

The Capacity Planning Engineer is responsible for the strategic planning, forecasting, monitoring ... Partner with Product Management to assess infrastructure requirements for new service offerings.

Description The Capacity Planning Engineer is responsible for the strategic planning, forecasting ... Partner with Product Management to assess infrastructure requirements for new service offerings.

Production Planning Intern

Houston, TX

$14.25 - $18.50/hr

The Production Planning Intern will collaborate closely with the ERP Demand Planner and Production ... Collaborate with project scheduling, engineering, manufacturing, and accounting teams at TAS to ...

Production Planning Intern

Houston, TX

$14.25 - $18.50/hr

The Production Planning Intern will collaborate closely with the ERP Demand Planner and Production ... Collaborate with project scheduling, engineering, manufacturing, and accounting teams at TAS to ...

Production Planning Intern

Waco, TX ยท On-site

$13.75 - $17.75/hr

Production Planning Intern Job ID: 38493 Job Schedule: 9/80 Regular Job Location: Waco, TX Plans ... Converts engineering drawings into work instructions and bills of material driving procurement ...

## Production Planning AnalystApplylocations: US-TX-TEXAS CITYtime type: Full timeposted on: Posted ... Bachelor's degree in chemical engineering, industrial engineering, or a related scientific field.

Designs and performs production cost modeling (UPLAN) studies to accomplish economic transmission planning under the direction of a senior level engineer or management * Helps develop improvements to ...

Designs and performs production cost modeling (UPLAN) studies to accomplish economic transmission planning under the direction of a senior level engineer or management * Helps develop improvements to ...

Showing results 21-40

Production Planning Engineer information

See Texas salary details

$47K

$122.7K

$134.2K

How much do production planning engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for production planning engineer in Texas is $122,668.00, according to ZipRecruiter salary data. Most workers in this role earn between $133,200.00 and $133,200.00 per year, depending on experience, location, and employer.

What is a production planning engineer?

Production Planning Engineers are professionals responsible for organizing, controlling, and optimizing manufacturing processes within a company. They develop production schedules, coordinate resources, and ensure that products are manufactured efficiently, on time, and within budget. Their role involves close collaboration with other departments such as procurement, quality control, and logistics to minimize delays and costs while maintaining product quality. Production Planning Engineers also analyze workflow, identify areas for improvement, and use planning software to enhance overall productivity.

How does a production planning engineer typically collaborate with other departments to ensure smooth manufacturing operations?

Production Planning Engineers regularly work with procurement, quality assurance, and manufacturing teams to coordinate schedules, manage material flows, and resolve bottlenecks. They facilitate communication by updating all stakeholders on production timelines and addressing any supply or resource issues that arise. This collaboration is essential to maintain efficiency, meet delivery deadlines, and ensure that production goals align with overall business objectives. Effective teamwork and proactive problem-solving are key aspects of the role.

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

To thrive as a Production Planning Engineer, you need a solid background in industrial engineering, supply chain management, and manufacturing processes, often supported by a relevant bachelor's degree. Familiarity with ERP/MRP systems, production scheduling software, and Lean or Six Sigma certifications is typically required. Strong analytical thinking, problem-solving, and communication skills help you coordinate cross-functional teams and adapt to changing production demands. These competencies are crucial for optimizing workflows, minimizing costs, and ensuring timely delivery in a manufacturing environment.

What is the difference between Production Planning Engineer vs Manufacturing Engineer?

AspectProduction Planning EngineerManufacturing Engineer
CredentialsBachelor's in Industrial Engineering, Manufacturing, or related fieldsBachelor's in Mechanical, Industrial, or Manufacturing Engineering
Work EnvironmentOffice-based with collaboration in production facilitiesFactory floor and design offices
Industry UsageManufacturing, production, supply chainManufacturing, process improvement, product design

While both roles focus on manufacturing processes, a Production Planning Engineer primarily manages production schedules and resource allocation, whereas a Manufacturing Engineer focuses on designing and improving manufacturing processes. Understanding these differences helps in selecting the right career path or job search focus.

Are production planning engineers in demand?

Production planning engineers are in demand across manufacturing, automotive, and supply chain industries due to their role in optimizing production processes and reducing costs. Employers seek candidates with skills in ERP systems, data analysis, and project management, and the profession is expected to grow as companies focus on efficiency and lean manufacturing practices.

Do production planning engineers make good money?

Production planning engineers typically earn competitive salaries that vary based on experience, location, and industry. They often have opportunities for advancement and may receive benefits such as bonuses or overtime pay, especially in manufacturing or industrial settings. Overall, the role can be financially rewarding for qualified professionals with relevant skills and certifications.

Is production planning a stressful job?

Production planning engineers often work in fast-paced environments where meeting deadlines and managing resources efficiently can create stress. The role requires strong organizational skills, attention to detail, and the ability to handle multiple priorities, which can contribute to job-related stress levels.
Infographic showing various Production Planning Engineer job openings in Texas as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 11% Part Time, 3% Contract, and 1% Nights. Highlights an 87% Physical, 3% Hybrid, and 10% Remote job distribution, with an average salary of $122,668 per year, or $59 per hour.

Capacity Planning Engineer

FiberLight LLC

Allen, TX โ€ข On-site

Full-time

Re-posted 20 days ago


Job description

The Capacity Planning Engineer is responsible for the strategic planning, forecasting, monitoring, and optimization of FiberLight's transport, IP/MPLS, Ethernet, optical, and backbone network infrastructure. This role ensures sufficient network capacity is available to support customer growth while maximizing the utilization of existing assets, minimizing service delivery delays, and supporting the company's long-term network expansion strategy.
As part of the Strategic Engineering team, the Capacity Planning Engineer develops and maintains the tools, dashboards, engineering standards, and forecasting models used to monitor network utilization, identify capacity constraints, and proactively initiate augmentation projects before customer demand or network performance is impacted.
This position serves as the subject matter expert for network capacity management across FiberLight's MPLS backbone, Layer 2 Ethernet services, optical transport infrastructure, DWDM spectrum utilization, fiber route availability, and infrastructure expansion planning. Success in this role enables predictable service delivery, informed capital planning, improved network efficiency, and scalable growth across the organization.
Essential Job Functions
Network Capacity Planning
  • Develop and maintain long-term capacity strategies for FiberLight's national and regional network infrastructure.
  • Monitor utilization across IP/MPLS, Ethernet, optical transport, DWDM, and backbone network environments.
  • Forecast network growth using historical utilization trends, customer demand, sales projections, and strategic business initiatives.
  • Identify potential capacity constraints and recommend infrastructure augmentations before service delivery or network performance is impacted.
  • Maintain short-term and long-term capacity forecasts ranging from 30 days to 36 months.

MPLS & Ethernet Network Capacity Management
  • Monitor and analyze utilization across all MPLS backbone links and core network infrastructure.
  • Track Layer 2 Ethernet service consumption and available switching capacity.
  • Develop and maintain capacity models that support customer growth while preserving network performance and reliability.
  • Establish and manage oversubscription policies for customer-facing services.
  • Define utilization thresholds and engineering triggers requiring capacity review or augmentation.

Optical Transport & Spectrum Management
  • Monitor wavelength utilization across FiberLight's optical transport platforms.
  • Maintain visibility into available optical spectrum across all transport routes.
  • Track channel assignments, wavelength availability, amplifier loading, route diversity, and overall transport capacity.
  • Identify risks related to spectrum exhaustion and recommend capacity upgrades, route optimization, or network redesigns.
  • Develop standards and policies governing wavelength allocation and spectrum utilization.

Capacity Monitoring, Reporting & Automation
  • Design and develop dashboards that provide actionable visibility into network utilization and capacity trends.
  • Create and maintain automated reporting for:
  1. Backbone utilization
  2. Optical spectrum availability
  3. Port utilization
  4. Circuit consumption
  5. Fiber pair utilization
  6. Transport capacity
  7. Equipment capacity
  8. Growth and demand trends
  • Partner with Business Intelligence and IT teams to automate reporting, forecasting, and capacity analytics.
  • Develop predictive tools and models that identify future network constraints before they affect customer orders or operational performance.

Engineering Standards & Governance
  • Develop and maintain engineering standards, policies, and procedures related to:
  • Capacity planning methodologies
  • Oversubscription ratios
  • Backbone utilization thresholds
  • Optical spectrum management
  • Capacity augmentation triggers
  • Demand forecasting
  • Equipment lifecycle planning
  • Strategic customer capacity reservations
  • Establish engineering review processes that support consistent capacity planning and decision-making.
  • Maintain comprehensive documentation supporting capacity planning processes, forecasting models, and engineering methodologies.

Network Augmentation Planning
  • Identify and prioritize backbone expansion requirements and capacity upgrade opportunities.
  • Recommend router, switch, optical transport, fiber, and infrastructure augmentations to support future growth.
  • Develop business cases and technical justifications supporting capital investment decisions.
  • Coordinate augmentation projects with Engineering, Construction, Procurement, Operations, and Finance teams.
  • Ensure augmentation initiatives align with business objectives, customer demand, and network performance goals.

Strategic Engineering & Cross-Functional Collaboration
  • Partner with Product Management to assess infrastructure requirements for new service offerings.
  • Support Sales Engineering by validating network capacity for strategic customer opportunities.
  • Participate in network architecture planning and long-term infrastructure initiatives.
  • Evaluate emerging technologies that improve scalability, efficiency, automation, and network performance.
  • Support mergers, acquisitions, and network integration efforts through capacity assessments and planning activities.

Operational Excellence
  • Reduce emergency capacity augmentations through proactive forecasting and planning.
  • Improve installation success rates by ensuring adequate network resources are available before customer orders enter implementation.
  • Monitor and analyze capacity-related service impacts and identify root causes.
  • Develop and maintain Key Performance Indicators (KPIs) that measure network utilization, growth, performance, and overall network health.
  • Drive continuous improvement initiatives focused on planning methodologies, reporting capabilities, operational processes, and engineering efficiency.
  • Ideal Candidate Profile

Requirements
Required Qualifications:
  • Bachelor's degree in Electrical Engineering, Telecommunications, Computer Science, or a related technical discipline, or equivalent industry experience.
  • 8+ years of experience in telecommunications engineering, transport engineering, IP engineering, network planning, or strategic engineering.
  • Strong understanding of:
  1. MPLS networking
  2. Layer 2 Ethernet services
  3. DWDM optical transport
  4. ROADM architectures
  5. Optical spectrum management
  6. Carrier Ethernet
  7. Fiber infrastructure
  8. Backbone engineering
  • Experience with network capacity planning methodologies.
  • Experience forecasting network growth and developing augmentation strategies.
  • Strong understanding of oversubscription models and utilization planning.
  • Ability to analyze large datasets and identify utilization trends.
  • Experience developing engineering dashboards and reporting tools.
  • Strong analytical, organizational, and communication skills.

Preferred Qualifications:
  • Experience with Fujitsu 1Finity optical transport platforms.
  • Experience with Juniper routing and switching platforms.
  • Familiarity with NetBrain, Netcracker, GIS systems, SolarWinds, or other network management platforms.
  • Experience with Python, Power BI, SQL, or other automation and reporting tools.
  • Knowledge of hyperscale networking and high-capacity transport architectures.
  • CCNP, JNCIP, MEF, or equivalent industry certifications preferred.