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Sustaining Manufacturing Engineer Jobs (NOW HIRING)

Sr Manufacturing Engineer

San Diego, CA

$93.50K - $127.90K/yr

The Senior Manufacturing Engineer is a hands-on technical leader responsible for developing, improving, and sustaining manufacturing processes for regulated instruments and devices, including FDA ...

Manufacturing Engineer II

Garden City, NY

$75.10K - $96.80K/yr

Analyze and quantify the financial impact of process improvements, capital investments, and sustainable manufacturing initiatives. Manufacturing Process & Equipment Engineering * Design, specify ...

Manufacturing Engineer

Charlotte, NC · On-site

$71.30K - $91.80K/yr

The Manufacturing Engineer will play a key role in creating, improving, and sustaining production facilities, while actively supporting operations at the Sudbury core site. This role blends ...

Manufacturing Engineer II

Garden City, NY · On-site

$75.10K - $96.80K/yr

Analyze and quantify the financial impact of process improvements, capital investments, and sustainable manufacturing initiatives. Manufacturing Process & Equipment Engineering * Design, specify ...

Manufacturing Engineer

Fort Valley, GA

$64.10K - $82.50K/yr

... sustainment. The role supports technical direction, and mentors early-career engineers to elevate ... Serve as the Manufacturing Engineering line technical support for an assigned production area or ...

Manufacturing Engineer

Fort Valley, GA

$64.10K - $82.50K/yr

... sustainment. The role supports technical direction, and mentors early-career engineers to elevate ... Serve as the Manufacturing Engineering line technical support for an assigned production area or ...

Manufacturing Engineer

Fort Valley, GA · On-site

$64.10K - $82.50K/yr

... sustainment. The role supports technical direction, and mentors early-career engineers to elevate ... Serve as the Manufacturing Engineering line technical support for an assigned production area or ...

Manufacturing Engineer

Fort Valley, GA

$64.10K - $82.50K/yr

... sustainment. The role supports technical direction, and mentors early-career engineers to elevate ... Serve as the Manufacturing Engineering line technical support for an assigned production area or ...

Manufacturing Engineer

Somerset, NJ

$77.10K - $99.30K/yr

This role is part of our Manufacturing Operations team and focuses on sustaining engineering, handson troubleshooting, and driving improvements that directly impact quality, consistency, and delivery.

Manufacturing Engineer

Erie, PA

$70.70K - $91.10K/yr

... to sustaining and growing MakerSpace operations through externally funded work. This position ... The Manufacturing Engineer must be capable of operating advanced manufacturing and prototyping ...

Manufacturing Engineer

Saint Louis, MO · On-site

$68.30K - $88K/yr

Manufacturing Engineer (CTD, Brazing, Scrap & Lean Focus) DEMA Engineering Co. is seeking a hands ... Conduct root cause analysis and implement sustainable corrective and preventive actions * Create ...

$63.70K - $82K/yr

Manufacturing Engineer (CTD, Brazing, Scrap & Lean Focus) DEMA Engineering Co. is seeking a hands ... Conduct root cause analysis and implement sustainable corrective and preventive actions * Create ...

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Sustaining Manufacturing Engineer information

See salary details

$57.5K

$103.7K

$154.5K

How much do sustaining manufacturing engineer jobs pay per year?

As of May 31, 2026, the average yearly pay for sustaining manufacturing engineer in the United States is $103,684.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,500.00 and $112,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Sustaining Manufacturing Engineer, and why are they important?

To thrive as a Sustaining Manufacturing Engineer, you need a strong background in engineering principles, problem-solving, and process optimization, often supported by a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD software, Six Sigma methodologies, and enterprise resource planning (ERP) systems is typically required, along with relevant certifications like Lean Manufacturing or Six Sigma Green Belt. Strong communication, analytical thinking, and teamwork skills help in collaborating across departments and driving continuous improvement. These competencies ensure product quality, efficient operations, and quick resolution of manufacturing issues, which are crucial for maintaining productivity and customer satisfaction.

What are some common challenges faced by Sustaining Manufacturing Engineers, and how can they be addressed?

Sustaining Manufacturing Engineers often encounter challenges such as troubleshooting recurring production issues, managing process improvements without disrupting ongoing manufacturing, and balancing multiple priorities from quality, cost, and efficiency standpoints. Addressing these challenges typically involves close collaboration with cross-functional teams like quality assurance, production, and design engineering, as well as utilizing root cause analysis and lean manufacturing techniques. Effective communication and strong problem-solving skills are essential to implement solutions that keep production running smoothly while supporting continuous improvement.

What does a Sustaining Manufacturing Engineer do?

A Sustaining Manufacturing Engineer is responsible for maintaining and improving existing manufacturing processes, products, and equipment. Their main goal is to ensure that production runs smoothly, efficiently, and cost-effectively while meeting quality standards. They analyze issues that arise during manufacturing, implement solutions to improve productivity, and support product changes or upgrades. Additionally, they collaborate with other departments like quality assurance and design engineering to resolve problems and optimize processes.

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

AspectSustaining Manufacturing EngineerManufacturing Process Engineer
Primary FocusMaintaining and improving existing manufacturing processesDesigning and developing new manufacturing processes
Work EnvironmentProduction floors, quality assurance, process troubleshootingDesign labs, process development, pilot runs
Required CredentialsBachelor's in engineering, experience in manufacturingBachelor's or higher in engineering, process optimization skills

While both roles involve manufacturing, the Sustaining Manufacturing Engineer focuses on supporting and improving existing processes, whereas the Manufacturing Process Engineer is more involved in creating and implementing new processes. Both roles require engineering backgrounds and are essential in manufacturing industries, but their day-to-day tasks and objectives differ.

More about Sustaining Manufacturing Engineer jobs
What cities are hiring for Sustaining Manufacturing Engineer jobs? Cities with the most Sustaining Manufacturing Engineer job openings:
What job categories do people searching Sustaining Manufacturing Engineer jobs look for? The top searched job categories for Sustaining Manufacturing Engineer jobs are:
Infographic showing various Sustaining Manufacturing Engineer job openings in the United States as of May 2026, with employment types broken down into 93% Full Time, 3% Part Time, 2% Contract, and 2% Nights. Highlights an 94% Physical, 2% Hybrid, and 4% Remote job distribution, with an average salary of $103,684 per year, or $49.8 per hour.
Sr Manufacturing Engineer

$93.50K - $127.90K/yr

Full-time

Posted 6 days ago


Job description

Ascential Medical and Life Sciences is a leader in delivering precision engineering and automation solutions for medical devices, diagnostics, and life sciences. We are looking for a Sr Manufacturing Engineer to join our multidisciplinary team, contributing to cutting-edge projects that drive innovation in healthcare and diagnostics.

POSITION SUMMARY:

The Senior Manufacturing Engineer is a hands-on technical leader responsible for developing, improving, and sustaining manufacturing processes for regulated instruments and devices, including FDA Class II products. This role plays a critical part in driving operational excellence through built-in quality, lean manufacturing, structured new product introduction (NPI), and alignment with plant-level SQDC goals (Safety, Quality, Delivery, Cost). The ideal candidate thrives in a low- to mid-volume, high-mix environment and excels at cross-functional collaboration, process rigor, and systems thinking.

 

ESSENTIAL FUNCTIONS:

Process Development & Built-In Quality:

  • Lead the design, development, validation, and implementation of robust assembly and test processes, including IQ/OQ/PQ and equipment qualification.
  • Apply Built-in Quality principles to manufacturing line design, including:
    • Single-piece flow where applicable
    • Right-sized and ergonomically optimized workstations
    • Task segmentation to reduce complexity and rework
    • 5S workplace organization and visual controls
    • Integration of poka-yoke (error-proofing) mechanisms
  • Design and release work instructions, process documentation, and in-process controls to ensure repeatable and scalable manufacturing.

Continuous Improvement & Lean Manufacturing:

  • Drive continuous improvement initiatives using Lean tools (e.g., value stream mapping, standard work, visual management).
  • Conduct time and motion studies, line balancing, and workstation optimization to improve efficiency and reduce waste.
  • Support tier-based escalation and visual factory systems to monitor and resolve Safety, Quality, Delivery, and Cost (SQDC) issues on the floor.
  • Implement data-driven process controls to reduce variability and increase yield.
  • Lead root cause investigations and corrective actions (CAPA) to address systemic production issues.

New Product Introduction (NPI) & Client Integration:

  • Act as the manufacturing lead for NPI, owning process development and validation deliverables throughout the product lifecycle.
  • Collaborate with R&D, client engineering, and internal stakeholders to ensure design-for-manufacturability (DFM), smooth design transfer, and process readiness.
  • Define and execute NPI activities such as PFMEA, pilot build support, validation plans, and readiness reviews.
  • Serve as the technical point of contact for client engagements, audits, and feedback loops related to manufacturability and scalability.

Documentation, Change Control & Compliance:

  • Maintain controlled documentation including work instructions, BOMs, test protocols, and validation records in accordance with ISO 13485 and FDA 21 CFR 820.
  • Initiate and process Engineering Change Orders (ECOs) and Document Change Orders (DCOs) to ensure technical documentation is up to date and reflects approved changes.
  • Ensure robust configuration control across drawings, specifications, and revision history.
  • Own or support Nonconformance Reports (NCRs) by conducting root cause analysis, implementing containment and corrective actions, and collaborating with Quality and Production.
  • Participate in or lead Material Review Boards (MRBs) to disposition nonconforming material and drive resolution.

Cross-Functional Collaboration:

  • Work closely with Quality, Supply Chain, Planning, and Production teams to resolve issues, implement improvements, and meet customer and regulatory requirements.
  • Translate client product requirements into manufacturable solutions and operational procedures.
  • Represent manufacturing in client meetings, audits, and design reviews.

Leadership & Mentorship:

  • Provide technical mentorship to junior engineers and manufacturing support staff.
  • Lead Kaizen events, RCCA investigations, and continuous improvement initiatives across departments.
  • Contribute to the development and tracking of engineering and production metrics in alignment with SQDC performance indicators.
  • Support tier-based daily management systems to ensure timely escalation, resolution, and communication of key operational issues.

EDUCATION, EXPERIENCE, SKILLS AND ABILITIES REQUIRED:

Education & Experience: 

Typically requires 5+ years of experience, and a mechanical, electrical or industrial engineering Bachelor’s degree from four-year College or university, or the equivalent combination of education, experience and training that provides the required knowledge, skills and abilities.

Job Complexity:

Works on problems of diverse scope and high complexity, often with incomplete or ambiguous information. Requires in-depth analysis and a strong understanding of manufacturing systems, regulatory constraints, and client expectations. Exercises sound judgment in selecting methods, techniques, and evaluation criteria to develop scalable and compliant solutions. Independently drives initiatives while building strong internal and external relationships across engineering, quality, production, and client teams.

Knowledge, Skills & Abilities:  

  • Strong knowledge of manufacturing principles including Lean, Built-in Quality, 5S, single-piece flow, poka-yoke, throughput, utilization, and process capability.
  • Skilled in PFMEA, control plans, process validation (IQ/OQ/PQ), and test method development.
  • Experienced with root cause analysis (8D, 5 Whys, fishbone), CAPA, SPC, Gage R&R, and risk-based quality tools.
  • Proficient in interpreting mechanical drawings, GD&T, electrical schematics, and BOMs.
  • Familiar with mechanical and electromechanical components (motors, gears, sensors, adhesives, fasteners, fluidic systems, optics systems, and PCBAs).
  • Understanding of fabrication and assembly methods including machining, molding, welding, and surface treatments.
  • Knowledge of FDA 21 CFR 820, ISO 13485, and regulatory compliance practices (CE, UL).
  • Experience with ECOs, DCOs, NCRs, MRB, and configuration control processes.
  • Ability to support NPI from prototype through production and engage directly with clients on design transfer and manufacturability.
  • Effective in cross-functional collaboration and tiered issue escalation aligned with SQDC (Safety, Quality, Delivery, Cost) performance metrics.
  • Proficient in CAD (SolidWorks preferred), ERP/document control systems, and MS Office; experience with test automation or simulation tools is a plus.
  • Strong communication, problem-solving, presentation, and mentorship skills.

EFFORT REQUIRED:

Physical Activities: This position primarily requires the ability to sit at a desk and work on a computer for extended periods of time, including frequent use of a keyboard and other standard office equipment for written and electronic communication. The role occasionally involves walking through production areas, standing during inspections or meetings, and lifting objects up to 25 pounds. Telephone communication may also be required intermittently. The work environment includes both office and manufacturing floor settings, with a typical noise level that is moderate. Reasonable accommodation may be made to enable individuals with disabilities to perform the essential functions of the job.

TRAVEL:

This position may require some travel for up to 10% of the time.

This is an on-site position in San Diego with an annual salary range of $100,000 - $137, 000, based on experience and qualifications

Compensation is based on several factors including experience, skills, education, and job-related knowledge. In addition to base salary, Ascential offers a comprehensive benefits package.