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Advanced Manufacturing Engineering Jobs in Connecticut

Manufacturing Engineer II

Watertown, CT · On-site

$70K - $91K/yr

As a Manufacturing Engineer Level II, you will play a key role in enhancing the efficiency, quality ... detailed records of engineering activities, including complex process changes and advanced ...

Manufacturing Engineer II

Watertown, CT

$70K - $91K/yr

As a Manufacturing Engineer Level II, you will play a key role in enhancing the efficiency, quality ... detailed records of engineering activities, including complex process changes and advanced ...

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

You will report directly to our Sr Advanced Manufacturing Engineering Manager, and you'll work out of our Northford, CT location on 100% on-site work schedule. Honeywell Technologies is a global ...

You will report directly to our Sr Advanced Manufacturing Engineering Manager, and you'll work out of our Northford, CT location on 100% on-site work schedule. Honeywell Technologies is a global ...

You will report directly to our Sr Advanced Manufacturing Engineering Manager, and you'll work out of our Northford, CT location on 100% on-site work schedule. Responsibilities Key Responsibilities:

Manufacturing Engineer

Middletown, CT · On-site

$78.06 - $89.66/hr

The Manufacturing Engineer develops and optimizes machining processes, ensures producibility of ... advanced machining technologies, aerospace components, and collaboration across engineering and ...

Sr. Automation Engineer

Oxford, CT · On-site

$90K - $115K/yr

... manufacturing engineering, or related field, or equivalent combination of education and experience. * Proven experience leading automation projects and implementing advanced manufacturing solutions.

Manufacturing Engineer I

Trumbull, CT · On-site

$71K - $92K/yr

... engineering, and regulatory departments. Job Summary: The Manufacturing Engineer I at ... Advanced skills preferred. * Awareness of Lean Six Sigma concepts, statistical analysis tools (e.g ...

Manufacturing Engineer I

Trumbull, CT

$71K - $92K/yr

Bachelor's degree in mechanical engineering, Industrial Engineering, or a related field. * 0-5 ... Advanced skills preferred. * Awareness of Lean Six Sigma concepts, statistical analysis tools (e.g ...

Manufacturing Engineer

Middletown, CT · On-site

$78.06 - $89.66/hr

This position offers significant exposure to advanced aerospace manufacturing, with strong ... Review engineering models for producibility and confirm that all required technical and ...

Showing results 41-60

Advanced Manufacturing Engineering information

See Connecticut salary details

$40K

$91.3K

$141.7K

How much do advanced manufacturing engineering jobs pay per year?

As of Sep 3, 2026, the average yearly pay for advanced manufacturing engineering in Connecticut is $91,323.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,200.00 and $111,800.00 per year, depending on experience, location, and employer.

What is advanced manufacturing engineering?

Advanced Manufacturing Engineering is a field focused on the development and implementation of innovative technologies and processes to improve manufacturing efficiency, quality, and sustainability. This discipline integrates advanced tools such as automation, robotics, additive manufacturing (3D printing), and data analytics to optimize production systems. Professionals in this area work on designing, testing, and refining manufacturing processes to ensure products are made faster, more cost-effectively, and with higher precision. Advanced Manufacturing Engineering is vital for industries aiming to remain competitive in an increasingly technology-driven marketplace.

What are the key skills and qualifications needed to thrive as an advanced manufacturing engineer?

To thrive as an Advanced Manufacturing Engineer, you need strong knowledge in manufacturing processes, engineering principles, and typically a degree in mechanical, industrial, or manufacturing engineering. Familiarity with CAD/CAM software, automation systems, lean manufacturing methodologies, and relevant certifications such as Six Sigma or PMP is often required. Exceptional problem-solving, project management, and communication skills help drive innovation and collaboration across teams. These skills and qualities are vital for optimizing production efficiency, ensuring product quality, and maintaining a competitive edge in advanced manufacturing environments.

What types of cross-functional collaboration are common for advanced manufacturing engineers, and how do these interactions shape daily work?

Advanced Manufacturing Engineers frequently collaborate with design engineers, quality assurance teams, and production staff to optimize manufacturing processes. These collaborations often involve troubleshooting production issues, implementing new technologies, and ensuring products meet quality and cost targets. Effective communication is essential, as Advanced Manufacturing Engineers must translate technical requirements between departments and facilitate smooth project execution. This cross-functional teamwork not only enhances problem-solving but also provides opportunities to broaden technical expertise and leadership skills.

What is the difference between Advanced Manufacturing Engineering vs Manufacturing Engineering?

AspectAdvanced Manufacturing EngineeringManufacturing Engineering
CredentialsBachelor's or Master's in Engineering, certifications like Six SigmaBachelor's or Master's in Engineering, certifications like Six Sigma
Work EnvironmentDesigning and optimizing advanced manufacturing processes, often in high-tech settingsOverseeing production processes, plant operations, and process improvements
Industry UsageHigh-tech, aerospace, automotive, and electronics industriesManufacturing plants across various industries including consumer goods and industrial products

Advanced Manufacturing Engineering focuses on developing and implementing cutting-edge manufacturing processes, often involving automation and new technologies. Manufacturing Engineering is more centered on managing and improving existing production systems. Both roles require similar credentials and are used across manufacturing sectors, but Advanced Manufacturing Engineering emphasizes innovation and process design.

What are some careers in advanced manufacturing engineering?

Careers in advanced manufacturing engineering include roles such as manufacturing engineer, process engineer, automation engineer, and quality engineer. These positions involve designing and improving manufacturing processes, working with automation tools, and ensuring product quality, often requiring knowledge of CAD software, robotics, and industry standards.

What do advanced manufacturing engineers do?

Advanced manufacturing engineers design, develop, and improve manufacturing processes and systems to increase efficiency, quality, and safety. They often work with automation, robotics, and computer-aided design (CAD) tools, and may require knowledge of materials, production methods, and industry standards. Their role involves problem-solving, process optimization, and collaboration with cross-functional teams to implement innovative manufacturing solutions.

What are popular job titles related to Advanced Manufacturing Engineering jobs in Connecticut?

For Advanced Manufacturing Engineering jobs in Connecticut, the most frequently searched job titles are:

What job categories do people searching Advanced Manufacturing Engineering jobs in Connecticut look for?

The top searched job categories for Advanced Manufacturing Engineering jobs in Connecticut are:

Infographic showing various Advanced Manufacturing Engineering job openings in Connecticut as of August 2026, with employment types broken down into 1% As Needed, 78% Full Time, 15% Part Time, 2% Temporary, and 4% Contract. Highlights an 84% Physical, 3% Hybrid, and 13% Remote job distribution, with an average salary of $91,323 per year, or $43.9 per hour.

Manufacturing Process Engineer - SMT

Honeywell

Northford, CT

$82K - $103K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 24 days ago


Honeywell rating

8.3

Company rating: 8.3 out of 10

Based on 186 frontline employees who took The Breakroom Quiz

66th of 545 rated manufacturers


Job description

The Manufacturing Process Engineer - SMT / PCBA is responsible for developing, validating, sustaining, and continuously improving surface mount technology processes used to assemble printed circuit boards. The role provides hands-on engineering ownership from new product introduction through mature production, with emphasis on safe execution, process capability, first-pass yield, equipment reliability, cost, and on-time delivery. The engineer works across Operations, Quality, R&D, Supply Chain, Maintenance, and external equipment or manufacturing partners to deploy repeatable, data-driven solutions that can be understood and applied globally.

You will report directly to our Sr Advanced Manufacturing Engineering Manager, and you'll work out of our Northford, CT location on 100% on-site work schedule.

Honeywell Technologies is a global, pure-play automation company with a legacy of innovating to help solve the world's most mission-critical challenges, enhancing the quality of life for people and communities around the world. We serve the building, industrial and process sectors with a broad portfolio of services, solutions and products, underpinned by our Honeywell Technologies Accelerator operating system and Honeywell Technologies Forge intelligence layer. By combining the deep domain expertise of our more than 50,000 employees with decades of data from our global installed base, we are uniquely positioned to lead the industrial sector's transition from automation to autonomy.

You Must Have:

  • 5+ years of relevant manufacturing engineering experience, including direct responsibility for SMT / PCBA processes in a production environment.
  • Hands-on knowledge of solder paste printing, pick-and-place, reflow profiling, SPI, AOI, and PCBA defect analysis.
  • Working knowledge of statistical process control, process capability, designed experiments, measurement systems, and structured problem solving.
  • Experience developing manufacturing documentation and supporting NPI, process validation, equipment qualification, and engineering change control.
  • Ability to work effectively with global and cross-functional teams and communicate technical information clearly in English.
  • Ability to safely work in a manufacturing environment and travel up to 25%, including international travel when required.

We Value:

  • Bachelor's degree in electrical, electronics, manufacturing, mechanical or a closely related engineering field.
  • Advanced knowledge of IPC-A-610 and IPC J-STD-001; IPC certification is preferred.
  • Knowledge of IPC-7711/7721 rework and repair practices, J-STD-020/033 moisture-sensitivity controls, and ANSI/ESD S20.20 or IEC 61340-5-1 ESD controls.
  • Experience with Panasonic, ASM, Juki, or comparable placement platforms; Koh Young or comparable SPI/AOI systems; and multi-zone convection reflow ovens.
  • Experience with fine-pitch, BGA, QFN, bottom-terminated components, lead-free and, where applicable, tin-lead soldering processes.
  • Proficiency with PFMEA, control plans, 8D, DMAIC, DOE, Cp/Cpk, GR&R, and data analysis software.
  • Lean or Six Sigma Green Belt / Black Belt certification and demonstrated continuous-improvement results.
  • Experience with MES, equipment connectivity, traceability, SAP or another ERP/MRP system, and automated manufacturing data collection.
  • Experience specifying, installing, qualifying, or transferring SMT equipment, tooling, fixtures, and automation.
  • Project management capability including scope, schedule, risk, capital justification, supplier management, and benefit validation.
  • Experience in high-reliability, regulated, industrial, life-safety, or other complex electronics manufacturing environments.
  • Analytical, curious, and disciplined in converting production data into practical actions.
  • Hands-on and comfortable working at the manufacturing line while maintaining strong documentation and change control.
  • Collaborative, inclusive, and able to influence without direct authority across sites and functions.
  • Proactive, accountable, and able to balance urgent production support with long-term process improvement.

US Person:

Due to compliance with U.S export control laws and regulations, candidate must be a US person which is defined as a US Citizen, a US permanent resident, or have protected status in the US under asylum or refugee status

The salary range for this position is $82,400 - 103,000. Please note that this salary information serves as a general guideline. Honeywell considers various factors when extending an offer, including but not limited to the scope and responsibilities of the position, the candidate's work experience, education and training, key skills, as well as market and business considerations.

About Honeywell Technologies:

Honeywell Technologies is a global, pure-play automation company with a legacy of innovating to help solve the world's most mission-critical challenges, enhancing the quality of life for people and communities around the world. We serve the building, industrial, and process sectors with a broad portfolio of services, solutions, and products, underpinned by our Honeywell Technologies Accelerator operating system and Honeywell Technologies Forge intelligence layer. By combining the deep domain expertise of our more than 50,000 employees with decades of data from our global installed base, we are uniquely positioned to lead the industrial sector's transition from automation to autonomy.

The Business Unit

Honeywell Technologies Building Automation helps create smarter, safer, and more efficient buildings. Our solutions span fire and life safety, security, energy management, building controls, and connected services that help customers improve operational performance and enhance occupant experiences. From hospitals and airports to schools, data centers, and commercial buildings, we help organizations operate with greater confidence and efficiency.

Honeywell is an equal opportunity employer. Qualified applicants will be considered without regard to age, race, creed, color, national origin, ancestry, marital status, affectional or sexual orientation, gender identity or expression, disability, nationality, sex, religion, or veteran status. Learn more (https://www.honeywell.com/us/en/company/inclusion-and-engagement)

Benefits of Working for Honeywell:

In addition to a performance-driven salary, cutting-edge work, and developing solutions side-by-side with dedicated experts in their fields, Honeywell employees are eligible for a comprehensive benefits package. This package includes employer-subsidized Medical, Dental, Vision, and Life Insurance; Short-Term and Long-Term Disability; 401(k) match, Flexible Spending Accounts, Health Savings Accounts, EAP, and Educational Assistance; Parental Leave, Paid Time Off (for vacation, personal business, sick time, and parental leave), and 12 Paid Holidays. For more information: https://benefits.honeywell.com/

The application period for the job is estimated to be 40 days from the job posting date; however, this may be shortened or extended depending on business needs and the availability of qualified candidates. Job Posting Date: August 9, 2026

Key Responsibilities:

  • Own and improve end-to-end SMT processes including solder paste printing, SPI, component placement, reflow, AOI, AXI, depaneling, rework, and associated material handling.
  • Develop and maintain process specifications, equipment recipes, setup sheets, control plans, PFMEAs, work instructions, and training materials.
  • Support NPI builds and product transfers; lead DfM/DfA/DfT reviews, tooling readiness, process validation, capability studies, and production release activities.
  • Use SPC, DOE, capability analysis, defect Pareto analysis, and structured root-cause methods to improve FPY, OEE, throughput, changeover time, rework, scrap, and labor productivity.
  • Troubleshoot process, material, design, programming, feeder, nozzle, printing, placement, soldering, and inspection issues; implement verified corrective and preventive actions.
  • Create and optimize placement programs, component libraries, feeder and nozzle strategies, stencil designs, reflow profiles, and AOI/SPI/AXI inspection programs.
  • Establish preventive and predictive maintenance requirements with Maintenance; monitor calibration, equipment health, spare parts, obsolescence, and recovery plans.
  • Ensure process controls support applicable product, quality, ESD, moisture-sensitive device, safety, environmental, and customer requirements.
  • Partner with design engineering and suppliers to resolve PCBA manufacturability and component or material issues before and after release.
  • Lead Lean / Six Sigma improvement events and capital projects; define requirements, evaluate suppliers, validate equipment, and manage technical risk, schedule, and benefits.
  • Use MES and equipment data to strengthen traceability, process monitoring, standard work, and real-time performance visibility.
  • Train and mentor engineers, technicians, and operators; build practical troubleshooting capability and sustain a documented skills matrix.
  • Communicate results through concise technical reports, project reviews, risk escalations, and standard engineering change-control processes.
  • Provide responsive production support and occasional off-shift support based on manufacturing needs.

What Honeywell employees say

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About Honeywell

Sourced by ZipRecruiter

Honeywell is charging into the Industrial IoT revolution with the establishment of Honeywell Connected Enterprise (HCE), building on our heritage of invention and deep, on-the-ground industry expertise. HCE is the leading industrial disruptor, building and connecting software solutions to streamline and centralize the assets, people and processes that help our customers make smarter, more accurate business decisions. Moving at the speed of software, we are creating, innovating and delivering solutions fast, challenging the way things have always been done, piloting new ways for all of us to work, and expecting our successes to set new standards for our customers and for Honeywell. The Chief Architect for Honeywell Connected Enterprise will lead a team of architects and system engineers responsible for the design of applications and infrastructure that deliver high value outcomes for customers in industrial, buildings, distribution centers, and aerospace vertical markets. The Chief Architect will work directly with leadership, development teams, and offering management to design well integrated solutions that utilize software platforming to encourage reuse and speed to market.

Industry

Furniture manufacturing

Company size

10,000+ Employees

Headquarters location

Charlotte, NC, US

Year founded

1906