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Laser Engineer Jobs in Connecticut (NOW HIRING)

Engineering prototyping with advanced composite materials, including design input, equipment ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser and other

Engineering prototyping with advanced composite materials, including design input, equipment ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser and other

Engineering prototyping with advanced composite materials, including design input, equipment ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser and other

Engineering prototyping with advanced composite materials, including design input, equipment ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser and other

Engineering prototyping with advanced composite materials, including design input, equipment ... Broad experience with machining methods, including milling, turning, diamond grinding, EDM, laser ...

Engineering prototyping with advanced composite materials, including design input, equipment ... Broad experience with machining methods, including milling, turning, diamond grinding, EDM, laser ...

Engineering prototyping with advanced composite materials, including design input, equipment ... Broad experience with machining methods, including milling, turning, diamond grinding, EDM, laser ...

Engineering prototyping with advanced composite materials, including design input, equipment ... Broad experience with machining methods, including milling, turning, diamond grinding, EDM, laser ...

Sr. Project Engineer

Monroe, CT · On-site

$98K - $128K/yr

Leads engineering projects by coordinating cross-functional and cross-organizational teams to ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser, lapping ...

Sr. Project Engineer

Monroe, CT · On-site

$98K - $128K/yr

Leads engineering projects by coordinating cross-functional and cross-organizational teams to ... Knowledge of machining methods, including milling, turning, diamond grinding, EDM, laser, lapping ...

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Showing results 1-20

Laser Engineer information

See Connecticut salary details

$38.5K

$106.6K

$178.8K

How much do laser engineer jobs pay per year?

As of Aug 16, 2026, the average yearly pay for laser engineer in Connecticut is $106,635.00, according to ZipRecruiter salary data. Most workers in this role earn between $61,400.00 and $153,600.00 per year, depending on experience, location, and employer.

What is a laser engineer?

A laser engineer is a type of electrical engineer who specializes in equipment that makes lasers and lasers themselves, sometimes in specialty areas such as advanced optics. As a laser engineer, your job duties include monitoring the laser systems, optimizing the output of the lasers, and researching issues with the performance of the lasers. You may also be required to develop documentation on how to operate and maintain the equipment and train other technicians. To begin a career in this role, you need the same qualifications and skills required of an electrical engineer, as well as experience in the use, operation, and maintenance of laser equipment.

What are some common challenges faced by laser engineers when working on new laser system designs?

Laser Engineers often encounter challenges such as maintaining beam quality while increasing power output, managing thermal effects in laser components, and ensuring precise alignment of optical elements. Additionally, integrating lasers with other complex systems and meeting stringent safety standards can be demanding. Collaborating closely with multidisciplinary teams—including mechanical, electrical, and software engineers—is essential to overcome these hurdles and deliver reliable, high-performance laser solutions.

What is the difference between Laser Engineer vs Optical Engineer?

AspectLaser EngineerOptical Engineer
Required CredentialsBachelor's or higher in engineering, physics, or related field; certifications in laser safety or opticsBachelor's or higher in optical engineering, physics, or related field; similar certifications in optics and laser safety
Work EnvironmentLaboratories, manufacturing facilities, research centersResearch labs, manufacturing, product development, optical system design
Industry UsageLaser manufacturing, medical devices, defense, researchOptical systems, imaging, telecommunications, consumer electronics

Laser Engineers and Optical Engineers often share similar educational backgrounds and work environments. However, Laser Engineers focus specifically on laser systems, their design, and application, while Optical Engineers work broadly with optical components and systems, including lenses, fibers, and imaging devices. Both roles are vital in industries like manufacturing, research, and technology development, but Laser Engineers specialize in laser-specific technologies.

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

To thrive as a Laser Engineer, you need a solid background in physics, optics, and engineering principles, usually supported by a degree in electrical engineering, physics, or a related field. Familiarity with laser simulation software, CAD systems, and relevant safety certifications are typically required. Strong problem-solving abilities, attention to detail, and effective teamwork set outstanding professionals apart in this field. These skills ensure the safe and efficient design, development, and maintenance of advanced laser systems for various applications.

What do laser engineers do?

Laser engineers design, develop, and optimize laser systems used in manufacturing, medical devices, and scientific research. They work with optical components, electrical systems, and software, often requiring knowledge of physics and engineering principles, as well as proficiency with tools like CAD software and safety protocols. Their work involves testing, troubleshooting, and ensuring the precision and safety of laser equipment.

What degree do you need to be a laser engineer?

Laser engineers typically need at least a bachelor's degree in engineering, physics, or a related field. Advanced roles may require a master's degree or higher, along with knowledge of optics, laser systems, and relevant software tools.

What are popular job titles related to Laser Engineer jobs in Connecticut?

For Laser Engineer jobs in Connecticut, the most frequently searched job titles are:

What job categories do people searching Laser Engineer jobs in Connecticut look for?

The top searched job categories for Laser Engineer jobs in Connecticut are:

What are popular job titles related to Laser Engineer jobs in CT?

For Laser Engineer jobs in CT, the most frequently searched job titles are:

Infographic showing various Laser Engineer job openings in Connecticut as of August 2026, with employment types broken down into 88% Full Time, 4% Part Time, 3% Temporary, and 5% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $106,635 per year, or $51.3 per hour.

Principal Manufacturing Engineer - Laser Processing/Advanced Mfg

Cadence Inc

Suffield, CT • On-site

Full-time

Re-posted 4 days ago


Job description

Help Bring Innovative Medical Devices from Concept to Production

Principal Manufacturing Engineer – Laser Processing & Advanced Manufacturing

Location: Suffield, CT

At Cadence, we help bring innovative medical technologies to life. We partner with some of the world's most innovative MedTech and Pharma companies to solve complex manufacturing challenges and deliver products that improve patient outcomes.

We're looking for a Principal Manufacturing Engineer who is passionate about laser processing technology and enjoys tackling difficult technical problems, developing new manufacturing capabilities, and helping customers turn ideas into reality.

You'll serve as the organization's go-to expert for laser processing, helping shape our technical strategy, support new business opportunities, and solve challenging manufacturing problems across our operations.

What You'll Be Doing

As our laser processing expert, you'll work at the intersection of engineering, innovation, and business growth.

You'll partner with customers and internal teams to develop manufacturing solutions for new opportunities, helping determine how products can be successfully manufactured and scaled. You'll evaluate technical requirements, recommend manufacturing approaches, identify equipment needs, and provide key input that helps us win new business.

Once projects are awarded, you'll remain involved as a technical leader—supporting process development, troubleshooting, validation activities, equipment implementation, and customer discussions as needed.

You'll also play a key role in advancing our laser processing capabilities across the organization by evaluating new technologies, establishing best practices, mentoring engineers, and helping our manufacturing sites solve complex technical challenges.

What Makes This Role Unique

  • You'll have a direct impact on business growth by helping secure and launch new customer programs.
  • You'll influence the future direction of laser processing technology across the company.
  • You'll work on a wide variety of products, technologies, and manufacturing challenges.
  • You'll collaborate with engineering and operations teams across multiple facilities.
  • You'll have the opportunity to introduce new technologies and capabilities that create competitive advantage.

What We're Looking For

We're looking for someone who is recognized as a technical expert in laser processing and enjoys applying that expertise to real-world manufacturing challenges. Ideal candidates will have experience with technologies such as:

  • Laser welding
  • Laser cutting
  • Laser marking
  • Laser micromachining
  • Precision laser processing
  • Advanced manufacturing and automation technologies

In addition, you should have:

  • A Bachelor's degree in Engineering or a related technical field.
  • 10+ years of experience in laser processing or related advanced manufacturing technologies.
  • Experience developing manufacturing processes from concept through production.
  • Experience supporting customer-facing projects, technical quotations, and capital equipment evaluations.
  • Strong problem-solving skills and the ability to work effectively across engineering, operations, quality, and commercial teams.
  • Experience in medical device manufacturing or other highly regulated industries is preferred.

Why Cadence?

At Cadence, you'll have the opportunity to work on meaningful products, solve complex technical challenges, and help shape the future of advanced manufacturing. You'll join a collaborative team that values innovation, continuous improvement, and technical excellence—all while helping bring life-changing medical technologies to patients around the world.

If you're excited by difficult manufacturing challenges and want the opportunity to make a lasting impact, we'd love to talk with you.