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Project Manager Semiconductor Jobs in Columbia, SC

Senior Accountant

Columbia, SC · On-site

$68K - $86K/yr

Lead and manage the internal and external audit process by preparing key documentation ... Support the team with ad hoc projects and requests as they arise. Your Role in Our Values At Enpro ...

Senior Accountant

Columbia, SC · On-site

$68K - $86K/yr

Lead and manage the internal and external audit process by preparing key documentation ... Support the team with ad hoc projects and requests as they arise. Your Role in Our Values At Enpro ...

Project Manager Semiconductor information

See Columbia, SC salary details

$35.6K

$95K

$149.9K

How much do project manager semiconductor jobs pay per year?

As of Sep 8, 2026, the average yearly pay for project manager semiconductor in Columbia, SC is $94,995.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,600.00 and $113,800.00 per year, depending on experience, location, and employer.

What does a project manager in the semiconductor industry do?

A Project Manager in the semiconductor industry oversees the planning, execution, and completion of projects related to the design, manufacturing, or improvement of semiconductor products. They coordinate cross-functional teams, manage budgets and timelines, and ensure that project goals align with business objectives. Their responsibilities also include identifying risks, resolving issues, and communicating progress to stakeholders. Successful project managers in this field need strong technical knowledge, leadership skills, and the ability to adapt to rapidly changing technology and market demands.

What are the key skills and qualifications needed to thrive as a project manager in the semiconductor industry?

To thrive as a Project Manager in the semiconductor industry, you need strong project management expertise, a background in engineering or related technical fields, and experience with semiconductor processes. Familiarity with project management tools (such as MS Project or Jira), semiconductor design software, and certifications like PMP or Six Sigma are highly valued. Outstanding communication, leadership, and problem-solving abilities help coordinate cross-functional teams and navigate complex technical challenges. These skills ensure projects are delivered on time and within scope, driving innovation and efficiency in a highly competitive industry.

How does a project manager in the semiconductor industry typically collaborate with cross-functional teams during a project's lifecycle?

As a Project Manager in the semiconductor industry, you will regularly coordinate with engineering, manufacturing, supply chain, and quality assurance teams to ensure project milestones are met. This role requires frequent cross-departmental meetings to align on technical requirements, resolve bottlenecks, and manage timelines. Effective communication and the ability to translate complex technical details into actionable tasks are essential, as you’ll act as the bridge between technical teams and executive stakeholders. Collaboration tools and structured processes, such as Agile or Stage-Gate methodologies, are often used to maintain project visibility and momentum.

What is the difference between Project Manager Semiconductor vs Product Manager Semiconductor?

AspectProject Manager SemiconductorProduct Manager Semiconductor
Primary FocusManaging semiconductor projects, timelines, and resourcesDeveloping and managing semiconductor products and strategies
ResponsibilitiesProject planning, execution, and deliveryProduct lifecycle, market analysis, and customer needs
Required SkillsProject management, technical knowledge, coordinationMarket research, technical understanding, customer focus
Work EnvironmentEngineering teams, manufacturing, R&DMarketing, R&D, sales teams

The main difference between a Project Manager Semiconductor and a Product Manager Semiconductor lies in their focus. The Project Manager oversees the execution of specific semiconductor projects, ensuring timely delivery and resource management. In contrast, the Product Manager focuses on the overall success of semiconductor products, including market positioning and customer needs. Both roles require technical knowledge and industry experience but serve different strategic functions within the semiconductor industry.

What are popular job titles related to Project Manager Semiconductor jobs in Columbia, SC?

For Project Manager Semiconductor jobs in Columbia, SC, the most frequently searched job titles are:

What job categories do people searching Project Manager Semiconductor jobs in Columbia, SC look for?

The top searched job categories for Project Manager Semiconductor jobs in Columbia, SC are:

What cities near Columbia, SC are hiring for Project Manager Semiconductor jobs?

Cities near Columbia, SC with the most Project Manager Semiconductor job openings:

$125 - $150/hr

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Posted 6 days ago


Job description

Position Summary

The Electroplating Chemist is responsible for the development, optimization, scale-up, and commercialization of advanced electroplating processes and surface treatment of electrodeposited copper foil technologies for high-performance PCB, battery, and advanced electronics applications. This role combines hands-on laboratory work with pilot-scale and manufacturing support to develop new products, improve process capability, and solve complex technical challenges. The position serves as a key technical resource for innovation, product development, and continuous improvement initiatives.

Key Responsibilities Research & Product Development
  • Design and execute laboratory experiments to develop new electroplating bath chemistries, additives, and surface treatment technologies for electrodeposited copper foil manufacturing.
  • Develop next-generation plating processes to improve electrical, mechanical, thermal, and surface performance characteristics.
  • Investigate new materials, additives, and process technologies to support strategic growth initiatives.
  • Lead new product development projects from concept through commercial implementation.
  • Develop technical data packages and qualification plans for customer approvals.
Process Development & Scale-Up
  • Translate laboratory findings into pilot-scale and production-scale processes.
  • Design experiments (DOE) to optimize plating performance and establish process windows.
  • Evaluate relationships between plating chemistry, operating conditions, deposit structure, and product performance.
  • Support technology transfer from R&D to manufacturing operations.
  • Establish process control methodologies and operating specifications for new products.
Technical Problem Solving
  • Lead root-cause investigations involving plating defects, contamination events, and process instability.
  • Utilize analytical techniques to characterize deposits, surface morphology, and chemical composition.
  • Develop corrective actions and long-term solutions for complex technical issues.
  • Support customer-facing technical discussions and failure analysis investigations.
Laboratory & Analytical Activities
  • Perform chemical analysis and characterization of plating baths and deposits.
  • Utilize laboratory equipment to evaluate electrochemical performance, deposit properties, and material characteristics.
  • Maintain laboratory documentation, technical reports, and experimental databases.
  • Develop new analytical methods to support process development and quality improvement.
Customer & Market Development
  • Collaborate with sales and marketing teams to understand emerging technical requirements and market trends.
  • Generate technical presentations and reports for customers, management, and industry partners.
  • Participate in technical conferences, industry working groups, and collaborative development programs.
Intellectual Property & Innovation
  • Identify opportunities for patentable technologies and process innovations.
  • Maintain awareness of industry developments, competitive technologies, and emerging market opportunities.
  • Contribute to the company's intellectual property strategy and technology roadmap.
Required Qualifications
  • Bachelor's degree in Chemistry, Chemical Engineering, Materials Science, Electrochemistry, Metallurgy, or related technical field.
  • Minimum 5 years of hands-on electroplating, electrochemical process development, or surface finishing experience.
  • Strong understanding of electrochemistry, electrodeposition mechanisms, and plating process fundamentals.
  • Experience designing and executing structured experimental programs.
  • Proven ability to analyze technical data and draw actionable conclusions.
  • Strong technical writing and presentation skills.
Preferred Qualifications
  • Advanced degree (M.S. or Ph.D.) in Chemistry, Electrochemistry, Materials Science, or related field.
  • Experience developing copper, nickel, tin, silver, gold, or specialty alloy plating systems.
  • Experience in electrodeposited copper foil, printed circuit boards, semiconductor, battery materials, or advanced electronics manufacturing.
  • Knowledge of adhesion promoters, surface treatments, and foil roughening technologies for PCB laminates.
  • Familiarity with analytical tools such as SEM, EDS, XRF, ICP, HPLC, cyclic voltammetry, or surface characterization techniques.
  • Experience with statistical analysis, Design of Experiments (DOE), and process modeling.
  • Demonstrated record of successful commercialization of new products or processes.
Key Competencies
  • Scientific curiosity and innovation
  • Experimental design and execution
  • Electrochemical process expertise
  • Advanced analytical and data-driven problem solving
  • Project management and technical leadership
  • Cross-functional collaboration with R&D, Engineering, Operations, Quality, and Commercial teams
  • Technology commercialization
  • Safety, environmental, and regulatory compliance
Success Measures
  • Successful development and commercialization of new products.
  • Reduction in development cycle time.
  • Achievement of customer qualification milestones.
  • Patent disclosures and intellectual property generation.
  • Improvement in product performance and process capability.
  • Successful scale-up of laboratory technologies to production.
  • Technical leadership in strategic growth programs.
Ideal Candidate Profile

A hands-on electrochemist who enjoys spending time both in the laboratory and on the manufacturing floor, capable of developing novel plating technologies while solving real-world production challenges. This individual combines strong scientific rigor with practical manufacturing experience and has a demonstrated ability to move new technologies from concept to commercial reality. They should be comfortable working across R&D, engineering, quality, and production teams to accelerate product development and process improvement. The candidate should have a working understanding of process control for sequential-step electroplating lines.

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