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Production Support Engineer

Job in Suwanee, Gwinnett County, Georgia, 30174, USA
Listing for: Price Industries
Full Time position
Listed on 2026-04-29
Job specializations:
  • Engineering
    Manufacturing Engineer, Process Engineer, Quality Engineering, Mechanical Engineer
  • Manufacturing / Production
    Manufacturing Engineer, Quality Engineering
Salary/Wage Range or Industry Benchmark: 80000 - 100000 USD Yearly USD 80000.00 100000.00 YEAR
Job Description & How to Apply Below

Price Industries is seeking a corporate-level Production Support Engineer to drive design-for-manufacturing (DFM) and design-for-automation (DFA) initiatives across our HVAC manufacturing operations. This role partners closely with Operations to drive design-for-manufacturability across all plants, by analyzing existing designs and optimizing them for equipment, processes, and lean continuous improvement. Acting as the critical bridge between design and manufacturing, this position challenges both teams to ensure products are developed with real-world manufacturing capabilities in mind, from drawing through production.

This role partners directly with plant Operations teams, Design Engineering, Quality, Supply Chain, and Safety to optimize product designs, improve throughput, reduce scrap, and support safe, repeatable automated processes while meeting customer fitness-for-use expectations and applicable code body requirements.

Responsibilities
  • Partner with plant teams to identify and execute product design optimizations that improve manufacturing efficiency, yield, and ergonomics while reducing scrap and rework.
  • Apply DFM/DFA principles to product designs and assemblies, considering fabrication, forming, fastening, powder coat, and packaging/handling impacts.
  • Serve as a primary link between Operations and Design Engineering to communicate manufacturability constraints, capability data, and opportunities for standardization across business units.
  • Lead cross-functional problem solving for production issues driven by design or tolerance stack-up; develop corrective actions that protect customer performance and compliance requirements.
  • Develop and maintain an intake, prioritization, and tracking system for DFM changes, engineering requests, and automation opportunities; establish standard work, triage criteria, and reporting cadence.
  • Support automation and equipment scoping by assisting with process definition, cycle-time/takt assumptions, part presentation and fixturing concepts, acceptance criteria, and commissioning/validation plans.
  • Collaborate with Quality, Supply Chain, Sales, and Customer Service teams to ensure design and process changes are robust and scalable, including material/specification alignment, supplier capability considerations, inspection/validation needs, voice-of-customer impacts, and change implementation readiness.
  • Coordinate trials and implementation of design changes, including documentation, training support, and change readiness with Operations, Quality, and Supply Chain.
  • Use data (scrap, downtime, throughput, warranty/returns, quality escapes) to quantify opportunity size, build business cases, and measure post-implementation results.
  • Ensure all solutions meet customer fitness-for-use requirements and align with applicable codes, standards, and internal quality systems.
  • Promote continuous improvement culture by mentoring plant teams on DFM/DFA methods and sharing best practices across sites.
Qualifications
  • Bachelor’s degree in Mechanical Engineering, Manufacturing Engineering, Industrial Engineering, or related field (or equivalent combination of education and experience).
  • 3+ years of experience in a manufacturing engineering, product industrialization, production support, or process improvement role.
  • Demonstrated experience applying DFM principles to improve manufacturability, throughput, and scrap/yield in a production environment.
  • Working knowledge of fabrication and assembly processes; ability to evaluate tolerance, fit, and functional performance impacts of design changes.
  • Experience collaborating cross-functionally with Design Engineering, Quality, and Operations; ability to influence without direct authority.
  • Strong problem-solving capability (e.g., 8D, A3, DMAIC) with data-driven decision making.
  • Proficiency with common engineering tools (e.g., CAD viewing/markup, Excel/data analysis, basic statistical methods).
  • Lean / continuous improvement / Kaizen experience (e.g., standard work, waste elimination, root cause problem solving) with demonstrated results in a production environment.
  • Ability to travel 20–40% to manufacturing sites as needed.
  • Experience in sheet metal…
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