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Manufacturing Process Engineer Jobs in Fremont, CA

Manufacturing Process Engineer

San Jose, CA · On-site

$87K - $116K/yr

Job Type Full-time Description Position Summary The Manufacturing Process Engineer is responsible for developing, implementing, and continuously improving manufacturing processes for complex, close ...

New

Manufacturing Process Engineer

San Jose, CA · On-site

$86K - $114K/yr

A Manufacturing Process Engineer is responsible for developing and implementing manufacturing processes and instructions, to ensure manufactures products the meet the customer specifications and ...

The process engineering team collaborates with Design, MFG Project Engineering, Program Management, Estimating, Purchasing, Planning and other cross-functional team members. Nature of Duties ...

Manufacturing Process Engineer- Display

Cupertino, CA · On-site

$90K - $120K/yr

Description The Manufacturing Process Engineering (MPE) group at Apple is part of the technical operations team responsible for cutting edge manufacturing technology for displays in Apple's products.

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Showing results 1-20

Manufacturing Process Engineer information

See Fremont, CA salary details

$55.3K

$96.5K

$139K

How much do manufacturing process engineer jobs pay per year?

As of Aug 24, 2026, the average yearly pay for manufacturing process engineer in Fremont, CA is $96,543.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,500.00 and $107,300.00 per year, depending on experience, location, and employer.

What does a manufacturing process engineer do?

A Manufacturing Process Engineer is responsible for designing, implementing, and optimizing manufacturing processes within a production facility. Their main goal is to improve efficiency, reduce costs, and ensure product quality by analyzing workflows, selecting appropriate equipment, and troubleshooting production issues. They often collaborate with other engineers, quality assurance teams, and production staff to develop and refine processes. This role may also involve implementing automation, maintaining safety standards, and supporting continuous improvement initiatives.

What are the key skills and qualifications needed to thrive as a manufacturing process engineer?

To thrive as a Manufacturing Process Engineer, you need a solid background in engineering principles, process optimization, and quality control, usually supported by a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD software, statistical process control (SPC) tools, Lean/Six Sigma methodologies, and enterprise resource planning (ERP) systems is typically required. Strong problem-solving abilities, analytical thinking, and effective communication skills help distinguish top performers in this role. These skills and qualifications are crucial for improving efficiency, ensuring product quality, and driving continuous improvement in manufacturing operations.

What are some common challenges faced by manufacturing process engineers in optimizing production lines?

Manufacturing Process Engineers often encounter challenges such as balancing efficiency with product quality, integrating new technologies without disrupting ongoing operations, and troubleshooting bottlenecks in the production line. They must work closely with cross-functional teams—including quality assurance, maintenance, and operations—to identify root causes of inefficiencies and implement sustainable solutions. Adapting to evolving industry standards and continuous improvement initiatives is also a key part of the role, requiring flexibility and strong problem-solving skills.

What is the difference between Manufacturing Process Engineer vs Manufacturing Engineer?

AspectManufacturing Process EngineerManufacturing Engineer
Primary FocusDesigning, analyzing, and improving manufacturing processesOverseeing overall manufacturing operations and production workflows
Typical ResponsibilitiesProcess optimization, troubleshooting, implementing new technologiesProduction planning, equipment management, quality control
CredentialsBachelor's in engineering, certifications like Six Sigma often preferredBachelor's in engineering or manufacturing, similar certifications
Work EnvironmentFactories, labs, process development settingsFactories, production lines, plant management

While both roles require engineering backgrounds and similar certifications, Manufacturing Process Engineers focus on refining manufacturing processes, whereas Manufacturing Engineers oversee the entire production process. Understanding these distinctions helps in choosing the right career path or job search focus.

Do manufacturing process engineers make a lot of money?

Manufacturing process engineers typically earn competitive salaries that vary by industry, experience, and location. According to industry data, the median annual salary for this role is often above the national average for engineering positions, with higher earnings possible for those with specialized skills or certifications. They also benefit from opportunities for advancement and overtime in manufacturing environments.

What are the most commonly searched types of Manufacturing Process Engineer jobs in Fremont, CA?

The most popular types of Manufacturing Process Engineer jobs in Fremont, CA are:

What cities near Fremont, CA are hiring for Manufacturing Process Engineer jobs?

Cities near Fremont, CA with the most Manufacturing Process Engineer job openings:

Infographic showing various Manufacturing Process Engineer job openings in Fremont, CA as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $104,513 per year, or $50.2 per hour.

Manufacturing Process Engineer

A1J Technologies LLC

San Jose, CA • On-site

$87K - $116K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 2 days ago

New


Job description

Description

Position Summary


The Manufacturing Process Engineer is responsible for developing, implementing, and continuously improving manufacturing processes for complex, close-tolerance components from contract review through first article and production.
The role develops complete manufacturing routings that define the sequence of operations, work centers, tooling, fixturing, materials, setup and run standards, inspection considerations, outside processing, and traceability requirements. The Process Engineer works cross-functionally with CNC Programming, Production, Quality, Supply Chain, and Estimating to ensure manufacturing processes are safe, capable, repeatable, cost-effective, and properly documented.
The position supports a high-mix precision manufacturing environment that includes CNC turning and milling, grinding, lapping, welding, cleaning, and outside special processes.


Primary Responsibilities


Manufacturing Process Planning

  • Develop and maintain manufacturing routings for new and existing products, including operation sequence, work centers, setup/run standards, tooling, fixturing, materials, and outside processing.
  • Determine the appropriate manufacturing sequence for close-tolerance features while considering datum integrity, distortion, material condition, accessibility, and downstream operations.
  • Establish material requirements, blank sizes, material yield, and traceability controls.
  • Define appropriate handling, identification, protection, and material-flow requirements throughout manufacturing.
  • Maintain accurate ERP routing information to support scheduling, capacity planning, costing, and actual-versus-standard performance analysis.
  • Maintain process documentation and revision control consistent with drawing revisions, engineering changes, and approved process improvements.

CNC Programming & Production Support

  • Partner with CNC Programming to translate manufacturing-process requirements into executable machining strategies.
  • Support tooling, fixture, work holding, probing, and setup-method development.
  • Participate in process kickoff reviews and first article/prove-out activities for new or high-risk jobs.
  • Capture actual setup and cycle times and update manufacturing standards as appropriate.
  • Support standardization of tooling, setup practices, work instructions, and manufacturing methods across similar part families.
  • Provide technical support to Production in resolving machining and process-related issues.

Quality & First Article Support

  • Partner with Quality to ensure inspection planning aligns with the actual manufacturing sequence.
  • Identify process-critical inspection points, irreversible operations, inaccessible features, and high-risk characteristics requiring in-process verification.
  • Support interpretation of drawings, specifications, GD&T, tolerance stacks, and key/critical characteristics from a manufacturing perspective.
  • Provide manufacturing-process information required for First Article Inspection and AS9102 documentation.
  • Support development and analysis of process capability (Cp, Cpk, Ppk) for critical characteristics.
  • Provide process expertise during nonconformance investigations, root-cause analysis, and corrective actions.
  • Ensure approved process changes are communicated to Quality for evaluation of inspection-plan impact.

Continuous Improvement & Cost

  • Analyze actual versus standard setup/run hours, scrap, rework, yield, and process performance.
  • Lead projects to reduce setup time, cycle time, scrap, rework, and manufacturing cost.
  • Identify and implement process improvements that increase throughput, capability, and repeatability.
  • Support make-versus-buy decisions based on capability, capacity, cost, and risk.
  • Provide manufacturing input to quoting and contract review, including process feasibility, estimated hours, tooling/fixture requirements, NRE, capacity, and technical risk.
  • Support capital-equipment justification through capacity analysis, manufacturing requirements, and return-on-investment evaluation.
  • Capture lessons learned and incorporate improvements into standardized manufacturing processes.

Key Performance Indicators

  • First Article / First-Pass Yield - Process works correctly before repeat production
  • Actual vs. Standard Hours - Routing standards accurately reflect manufacturing performance
  • Scrap & Rework - Reduce process-related quality losses
  • Setup & Cycle Time - Improve manufacturing efficiency and capacity
  • On-Time Routing Release - Engineering does not delay production release
  • Routing Accuracy - ERP data supports planning, costing, and scheduling
  • Process Improvement Savings - Quantifiable cost/capacity improvement
  • Quote Estimate Accuracy - Improve feedback between actual manufacturing and estimating

Work Environment

  • Ability to stand and walk throughout CNC and production areas for extended periods and lift tools, fixtures, parts, and materials weighing up to 40 pounds.
  • Manual dexterity and visual acuity sufficient to operate equipment, use measuring instruments, read prints, inspect parts, and identify tool wear or process defects.
  • Regular exposure to CNC equipment, cutting tools, coolant, chips, noise, moving machinery, and normal manufacturing conditions.
  • Required use of appropriate PPE and compliance with all site safety requirements.
  • Frequent interaction with production personnel, engineering, quality, customers, and executive leadership.
  • May require extended hours to support customer deadlines, production demands, and operational initiatives.

Benefits

  • Medical Insurance
  • Dental Insurance
  • Vision Insurance
  • Life Insurance
  • Paid Time Off
  • 401(k) Retirement Plan
  • 401(k) Employer Match

Requirements

 Required Qualifications

  • Bachelor's degree in Mechanical, Manufacturing, Industrial Engineering, or related technical discipline; equivalent hands-on manufacturing experience may be considered.
  • 5+ years of manufacturing/process engineering experience in precision machining or a comparable high-mix manufacturing environment.
  • Demonstrated experience developing manufacturing routings, process plans, and controlled manufacturing documentation.
  • Strong understanding of CNC machining, tooling, fixturing, setup practices, and manufacturing process development.
  • Ability to interpret engineering drawings, GD&T, CAD models, and technical specifications.
  • Working knowledge of CAM software and CNC manufacturing methods.
  • Experience supporting first article, inspection planning, root-cause analysis, and corrective action.
  • Strong problem-solving, technical communication, and cross-functional leadership skills.
  • Ability to spend significant time on the manufacturing floor supporting process development and production.

Preferred Qualifications

  • Experience in AS9100 / ISO 9001 aerospace, defense, semiconductor, medical, or other regulated precision-manufacturing environments.
  • Experience with multi-axis turning and 3-, 4-, and 5-axis milling.
  • Experience with grinding, lapping, welding, cleaning, heat treatment, plating/coating, or other special processes.
  • Familiarity with AS9102 First Article Inspection.
  • Experience with Lean Manufacturing, Six Sigma, DOE, 8D, A3, or structured problem-solving methods.
  • Fixture and tooling design experience using 3D CAD.
  • Familiarity with CMM/metrology and process capability analysis.
  • Experience supporting customer, regulatory, or third-party audits.