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Medical Device Manufacturing Engineer Jobs in Connecticut

Manufacturing Engineer I

Trumbull, CT · On-site

$71K - $92K/yr

The Manufacturing Engineer I will primarily contribute to sustaining activities, as well as ... Introductory knowledge of medical device manufacturing processes. * Strong computer skills with the ...

Manufacturing Engineer I

Trumbull, CT · On-site

$71K - $92K/yr

The Manufacturing Engineer I will primarily contribute to sustaining activities, as well as ... Design and development of efficient manufacturing processes for medical device products, with a ...

Senior Manufacturing Engineer

Bethel, CT

$93K - $128K/yr

Overview Resonetics is a global leader in advanced engineering, prototyping, product development ... Join Resonetics and be part of a team that's redefining medical device manufacturing. If you're ...

Senior Manufacturing Engineer

Bethel, CT · On-site

$93K - $128K/yr

Overview Resonetics is a global leader in advanced engineering, prototyping, product development ... Join Resonetics and be part of a team that's redefining medical device manufacturing. If you're ...

Senior Manufacturing Engineer

Bethel, CT · On-site

$93K - $128K/yr

Resonetics is a global leader in advanced engineering, prototyping, product development, and micro manufacturing, driving innovation in the medical device industry. With rapid expansion across all ...

Engineer I, Manufacturing

Southington, CT · On-site

$74K - $95K/yr

Position Summary The Manufacturing Engineer will support the ICU Manufacturing Engineering ... Knowledge of the Medical Device Industry and familiarity with FDA QSR Regulations * Solid works ...

... medical device manufacturing environment. This role serves as the technical owner of injection ... The Process Engineer partners closely with Quality, Production, Tooling, Maintenance, Engineering ...

Engineer I, Manufacturing

Southington, CT · On-site

$74K - $95K/yr

Position Summary The Manufacturing Engineer will support the ICU Manufacturing Engineering ... Knowledge of the Medical Device Industry and familiarity with FDA QSR Regulations * Solid works ...

Quality Process Engineer

Torrington, CT · On-site

$80K - $115K/yr

... medical device manufacturing environment. This role serves as the technical owner of injection ... The Process Engineer partners closely with Quality, Production, Tooling, Maintenance, Engineering ...

Quality Process Engineer

Torrington, CT · On-site

$80K - $115K/yr

... medical device manufacturing environment. This role serves as the technical owner of injection ... The Process Engineer partners closely with Quality, Production, Tooling, Maintenance, Engineering ...

Manufacturing Engineer

Berlin, CT · On-site

$100K - $130K/yr

Ability to work in a fast-paced Medical Device Manufacturing environment with high output efficiency and impeccable quality standards. Education: * Minimum of a bachelor's degree in an engineering ...

... medical device manufacturing environment. This role serves as the technical owner of injection ... The Process Engineer partners closely with Quality, Production, Tooling, Maintenance, Engineering ...

Quality Engineer

North Haven, CT · On-site

$50 - $60/hr

Medical Device Manufacturing Industry Duration: 2 Years (Possible Extension) Location: North Haven, CT 06473 Shift: 1st shift | Hybrid (4 days onsite, 1 day remote) Key Responsibilities * Perform ...

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Showing results 1-20

Medical Device Manufacturing Engineer information

See Connecticut salary details

$45.2K

$81.4K

$114.2K

How much do medical device manufacturing engineer jobs pay per year?

As of Aug 19, 2026, the average yearly pay for medical device manufacturing engineer in Connecticut is $81,443.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,400.00 and $89,400.00 per year, depending on experience, location, and employer.

What does a medical device manufacturing engineer do?

A Medical Device Manufacturing Engineer is responsible for designing, developing, and optimizing manufacturing processes for medical devices. They ensure that products are produced efficiently, safely, and in compliance with regulatory standards such as FDA or ISO guidelines. Their work involves collaborating with design teams, troubleshooting production issues, implementing quality control procedures, and continuously improving manufacturing methods to enhance product quality. Ultimately, they play a key role in bringing safe and effective medical devices to market.

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

To excel as a Medical Device Manufacturing Engineer, you need a solid background in engineering principles, manufacturing processes, and regulatory compliance, typically supported by a degree in biomedical, mechanical, or industrial engineering. Familiarity with CAD software, Six Sigma/Lean methodologies, and knowledge of FDA or ISO 13485 standards is essential. Strong problem-solving, teamwork, and communication skills help manage cross-functional projects and ensure product quality. These competencies are crucial for developing safe, effective devices in a highly regulated industry where precision and compliance are paramount.

What are some common challenges faced by medical device manufacturing engineers during product development?

Medical Device Manufacturing Engineers often encounter challenges in balancing strict regulatory compliance with efficient production processes. Adapting to frequent design changes, ensuring high product quality, and validating manufacturing processes are crucial tasks. Additionally, they collaborate closely with cross-functional teams—including quality assurance, R&D, and supply chain—to troubleshoot production issues and implement improvements. Addressing these challenges requires strong problem-solving skills and a keen attention to detail.

What is the difference between Medical Device Manufacturing Engineer vs Quality Assurance Engineer?

AspectMedical Device Manufacturing EngineerQuality Assurance Engineer
CredentialsBachelor's in engineering or related field; certifications like ASQ CQE beneficialBachelor's in engineering, quality assurance, or related; certifications like ASQ CQE or CQA common
Work EnvironmentManufacturing plants, production lines, R&D labsQuality labs, manufacturing sites, regulatory agencies
Industry UsageDesign, develop, and optimize manufacturing processesEnsure product quality, compliance, and process improvements

While both roles work within the medical device industry and require similar credentials, the Medical Device Manufacturing Engineer focuses on manufacturing processes and product development, whereas the Quality Assurance Engineer emphasizes maintaining quality standards and regulatory compliance.

What are popular job titles related to Medical Device Manufacturing Engineer jobs in Connecticut?

For Medical Device Manufacturing Engineer jobs in Connecticut, the most frequently searched job titles are:

What job categories do people searching Medical Device Manufacturing Engineer jobs in Connecticut look for?

The top searched job categories for Medical Device Manufacturing Engineer jobs in Connecticut are:

Infographic showing various Medical Device Manufacturing Engineer job openings in Connecticut as of August 2026, with employment types broken down into 81% Full Time, 2% Temporary, and 17% Contract. Highlights an 100% In-person job distribution, with an average salary of $81,443 per year, or $39.2 per hour.

Manufacturing Engineer I

Cooper Companies

Trumbull, CT • On-site

$71K - $92K/yr

Full-time

Posted 15 days ago


Job description

Scope: 

The Manufacturing Engineer I is responsible for optimizing manufacturing processes and ensuring the production of high-quality medical devices. The Manufacturing Engineer I will primarily contribute to sustaining activities, as well as continuous improvement initiatives that reduce costs and increase the quality of CooperSurgical's manufacturing processes. The Manufacturing Engineer I is expected to have strong partnerships with the production, quality, product engineering, and regulatory departments. 

Job Summary:

The Manufacturing Engineer I at CooperSurgical is responsible for driving manufacturing excellence and optimizing production processes for our medical device and fertility products. The Manufacturing Engineer I plays a critical role in implementing lean principles, improving process efficiency, and fostering a culture of continuous improvement.

Qualifications, Knowledge, Skills and Abilities:

  • Bachelor's degree in mechanical engineering, Industrial Engineering, or a related field. 
  • 0-5 years of experience in manufacturing engineering within the medical device or pharmaceutical industry.
  • Introductory knowledge of medical device manufacturing processes. 
  • Strong computer skills with the ability to use Excel, Word, PowerPoint, and Visio. Advanced skills preferred. 
  • Awareness of Lean Six Sigma concepts, statistical analysis tools (e.g., Minitab), and root cause analysis. 
  • Excellent problem-solving skills and the ability to work effectively in a cross-functional team environment.
  • Introductory knowledge of quality and regulatory requirements, such as ISO 13485, FDA QSR, EU MDR and GMP.
  • Proficient project management skills, with the ability to prioritize tasks and manage multiple projects simultaneously.
  • Excellent communication skills, both verbal and written, with the ability to convey complex technical information to diverse audiences.

Work Environment:

  • Occasional lifting of up to 35 kilograms may be required.
  • Prolonged sitting in front of a computer is common.
  • Ability to work in uncomfortable positions, when required. For example, when repairing various manufacturing equipment. 

Experience:

  • 0-5 years of experience in manufacturing engineering within the medical device or pharmaceutical industry. 
  • Associates or Bachelor's degree in mechanical engineering, Industrial Engineering, or a related field.  

Education:

Job Summary:

The Manufacturing Engineer I at CooperSurgical is responsible for driving manufacturing excellence and optimizing production processes for our medical device and fertility products. The Manufacturing Engineer I plays a critical role in implementing lean principles, improving process efficiency, and fostering a culture of continuous improvement.

Essential Functions & Accountabilities:

  1. Sustaining manufacturing activities such as executing change orders for existing products and processes, investigating non-conformances in the product and process, and supporting maintenance and calibration technicians. 
  2. Design and development of efficient manufacturing processes for medical device products, with a focus on quality, cost-effectiveness, and scalability.
  3. Optimize existing manufacturing processes to improve efficiency, yield, and productivity while maintaining compliance with regulatory and quality standards, often using lean manufacturing techniques.
  4. Conduct process validations, process capability studies, and root cause analyses to identify and resolve manufacturing issues, implementing corrective actions as needed.
  5. Assist in the development of project plans and proposals that include elements such as Gantt charts, cost-benefit analysis, risk assessments, and regulatory strategies.
  6. Collaborate with R&D teams to ensure new products are designed for manufacturability, considering assembly methods, equipment selection, and process validation requirements.
  7. Contribute to the fostering of a culture of knowledge sharing and professional development.
  8. Develop and maintain manufacturing documentation, including work instructions, standard operating procedures, and process control plans, ensuring compliance with regulatory requirements.
  9. Support the manufacturing floor via partnering with maintenance engineers and technicians to resolve day-to-day downtime.

Cooper's management team is committed to the development of and implementation of the quality management system and maintaining its effectiveness by communicating to the organization the importance of meeting customer as well as statutory and regulatory requirements.

Travel: 

  • Travel may be required to attend meetings or visit manufacturing sites. Approx. 10-20% travel is expected.

Essential Functions & Accountabilities:

  1. Sustaining manufacturing activities such as executing change orders for existing products and processes, investigating non-conformances in the product and process, and supporting maintenance and calibration technicians. 
  2. Design and development of efficient manufacturing processes for medical device products, with a focus on quality, cost-effectiveness, and scalability.
  3. Optimize existing manufacturing processes to improve efficiency, yield, and productivity while maintaining compliance with regulatory and quality standards, often using lean manufacturing techniques.
  4. Conduct process validations, process capability studies, and root cause analyses to identify and resolve manufacturing issues, implementing corrective actions as needed.
  5. Assist in the development of project plans and proposals that include elements such as Gantt charts, cost-benefit analysis, risk assessments, and regulatory strategies.
  6. Collaborate with R&D teams to ensure new products are designed for manufacturability, considering assembly methods, equipment selection, and process validation requirements.
  7. Contribute to the fostering of a culture of knowledge sharing and professional development.
  8. Develop and maintain manufacturing documentation, including work instructions, standard operating procedures, and process control plans, ensuring compliance with regulatory requirements.
  9. Support the manufacturing floor via partnering with maintenance engineers and technicians to resolve day-to-day downtime.

Cooper's management team is committed to the development of and implementation of the quality management system and maintaining its effectiveness by communicating to the organization the importance of meeting customer as well as statutory and regulatory requirements.

Travel: 

Travel may be required to attend meetings or visit manufacturing sites. Approx. 10-20% travel is expected