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Manufacturing Engineer Jobs in Philadelphia, PA (NOW HIRING)

The Manufacturing Engineer will support precision manufacturing, process engineering, and continuous improvement in a highly regulated production environment serving aerospace, medical device, and ...

Manufacturing Engineer

Philadelphia, PA · On-site

$69K - $89K/yr

Aerospace Manufacturing Engineer is to be responsible for the in depth understanding of all aircraft systems such as Mechanical and Avionic, to effectively orchestrate each phase of the aircraft ...

Manufacturing Engineer The Manufacturing Engineer will collaborate closely with engineering, production, and procurement teams to enhance production processes and ensure that designs are ...

Manufacturing Engineer The Manufacturing Engineer will collaborate closely with engineering, production, and procurement teams to enhance production processes and ensure that designs are ...

Manufacturing Engineer

Kulpsville, PA · On-site

$72K - $93K/yr

Stein Seal is seeking a skilled Manufacturing Engineer that will be responsible for supporting all manufacturing operations while driving continuous improvement using lean manufacturing principals.

Manufacturing Engineer

Trenton, NJ

$73K - $94K/yr

RBC Bearings is a well-known international manufacturer and marketer of highly engineered precision plain, roller and ball bearings. We have been providing bearing solutions to our customers since ...

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Manufacturing Engineer information

See Philadelphia, PA salary details

$47.9K

$86.4K

$121.1K

How much do manufacturing engineer jobs pay per year?

As of Aug 22, 2026, the average yearly pay for manufacturing engineer in Philadelphia, PA is $86,391.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,700.00 and $94,900.00 per year, depending on experience, location, and employer.

What is a manufacturing engineer?

A manufacturing engineer is a specialized engineer who improves product manufacturing processes. As a manufacturing engineer, your primary duties are to design and develop production systems and improve the tools and systems within the manufacturing process. You will use computer software such as CAD to create, modify, and test the products and manufacturing processes.

What are some common challenges a manufacturing engineer faces in optimizing production processes?

Manufacturing Engineers often encounter challenges such as balancing efficiency with product quality, minimizing production costs while maintaining safety standards, and implementing new technologies without disrupting existing workflows. They may also need to troubleshoot equipment malfunctions and coordinate with cross-functional teams, such as quality assurance and maintenance, to resolve issues quickly. Staying up-to-date with industry advancements and continuous improvement methodologies like Lean or Six Sigma is essential to overcoming these challenges and driving process enhancements.

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

To thrive as a Manufacturing Engineer, you need a solid background in engineering principles, process optimization, and quality control, typically supported by a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD software, Six Sigma or Lean Manufacturing certifications, and experience with automation systems are commonly required. Strong problem-solving, teamwork, and communication skills help you effectively collaborate and drive continuous improvement. These abilities ensure efficient production processes, cost reduction, and high product quality in a competitive manufacturing environment.

What is the difference between Manufacturing Engineer vs Mechanical Engineer?

AspectManufacturing EngineerMechanical Engineer
Required CredentialsBachelor's in Manufacturing, Industrial, or Mechanical Engineering; certifications like CMfgEBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentFactories, production plants, manufacturing facilitiesDesign offices, research labs, manufacturing settings
Industry UsageManufacturing, production, industrial sectorsAutomotive, aerospace, energy, product design

Manufacturing Engineers focus on optimizing production processes and workflows within manufacturing environments, while Mechanical Engineers design and analyze mechanical systems. Both roles require engineering degrees, but Manufacturing Engineers are more involved in process improvement and production efficiency, whereas Mechanical Engineers often work on product design and mechanical system development.

How much do manufacturing engineers earn?

Manufacturing engineers typically earn a median annual salary of around $70,000 to $90,000, depending on experience, location, and industry. Salaries can increase with advanced skills, certifications, and managerial responsibilities.

What are the most commonly searched types of Manufacturing Engineer jobs in Philadelphia, PA?

The most popular types of Manufacturing Engineer jobs in Philadelphia, PA are:

What cities near Philadelphia, PA are hiring for Manufacturing Engineer jobs?

Cities near Philadelphia, PA with the most Manufacturing Engineer job openings:

Infographic showing various Manufacturing Engineer job openings in Philadelphia, PA as of August 2026, with employment types broken down into 88% Full Time, 7% Part Time, 3% Contract, and 2% Nights. Highlights an 95% Physical, 2% Hybrid, and 3% Remote job distribution, with an average salary of $86,391 per year, or $41.5 per hour.

Manufacturing Engineer

Talnt

West Chester, PA

$90K - $130K/hr

Full-time

Posted 9 days ago


Job description

About the Role:
The Manufacturing Engineer will support precision manufacturing, process engineering, and continuous improvement in a highly regulated production environment serving aerospace, medical device, and other quality-critical industries. This role is ideal for a hands-on Manufacturing Engineer, Process Engineer, or Aerospace Manufacturing Engineer with experience in CNC machining, manufacturing process development, quality systems, and regulated standards such as AS9100 and ISO 13485. The engineer will work closely with production, quality, engineering, and operations teams to improve manufacturability, process capability, quality, cost, and on-time delivery.

Responsibilities:

  • Develop, document, implement, and optimize manufacturing processes for precision-machined components used in aerospace, medical device, and other highly regulated applications.
  • Create and improve manufacturing process plans, work instructions, routings, tooling strategies, fixtures, process documentation, and production methods for CNC machining operations.
  • Support new product introduction, NPI, by reviewing engineering drawings, specifications, GD&T requirements, tolerances, materials, and customer requirements to establish robust manufacturing processes.
  • Apply Design for Manufacturability, DFM, principles to identify production risks, recommend design or process improvements, and improve cost, quality, throughput, and repeatability.
  • Lead continuous improvement initiatives using Lean Manufacturing, root cause analysis, corrective and preventive action, CAPA, 5 Why, process capability, and data-driven problem-solving methodologies.
  • Partner with CNC programmers, machinists, quality engineers, inspectors, and production leadership to troubleshoot machining, tooling, dimensional, and process-related issues.
  • Support process validation, first article inspection, FAI, process capability studies, PFMEA, control plans, and other quality documentation required for regulated manufacturing.
  • Ensure manufacturing processes and documentation comply with applicable quality management systems and industry requirements, including AS9100, ISO 9001, ISO 13485, and customer-specific requirements.
  • Analyze cycle times, scrap, rework, tooling performance, equipment utilization, and production data to identify opportunities for productivity improvement and cost reduction.
  • Support investigations of nonconforming material and customer quality issues by determining root causes, implementing corrective actions, and verifying effectiveness.

Qualifications:

  • Bachelor's degree in Manufacturing Engineering, Mechanical Engineering, Industrial Engineering, or a closely related engineering discipline.
  • Professional experience in manufacturing engineering, process engineering, or production engineering within precision machining, aerospace manufacturing, medical device manufacturing, or another regulated manufacturing environment.
  • Working knowledge of CNC machining processes, including milling, turning, cutting tools, fixtures, workholding, machining parameters, and precision manufacturing practices.
  • Ability to interpret complex engineering drawings, specifications, geometric dimensioning and tolerancing, GD&T, and tight tolerance requirements.
  • Experience developing manufacturing processes, work instructions, process routings, production documentation, and standardized manufacturing methods.
  • Knowledge of regulated quality systems and standards such as AS9100, ISO 9001, ISO 13485, or comparable aerospace and medical device manufacturing requirements.
  • Experience with root cause analysis, corrective action, CAPA, Lean Manufacturing, continuous improvement, and structured problem-solving techniques.
  • Strong analytical and troubleshooting skills with the ability to work cross-functionally with manufacturing, quality, operations, engineering, and supply chain teams.

Desired Qualifications:

  • Experience manufacturing complex, tight-tolerance components for aerospace, defense, aviation, medical device, surgical, or other highly regulated applications.
  • Familiarity with aerospace first article inspection requirements, including AS9102, FAI documentation, traceability, and configuration-controlled manufacturing processes.
  • Experience with medical device quality systems, process validation, risk management, PFMEA, control plans, and ISO 13485 requirements.
  • Knowledge of CAD/CAM software, CNC programming, ERP/MRP systems, statistical process control, SPC, and manufacturing data analysis.
  • Experience applying Lean, Six Sigma, Kaizen, 5S, value stream mapping, cycle-time reduction, and other operational excellence methodologies.
  • Demonstrated ability to lead manufacturing improvement projects from problem identification through implementation, validation, documentation, and sustained production performance.