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Laser Engineering Jobs in Fort Mill, SC (NOW HIRING)

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Senior Field Service Engineer

Charlotte, NC ยท On-site

$80K - $100K/yr

We are highly recognized as a quality developer and supplier of state-of-the-art laser-based systems for precision optics alignment, assembly, and inspection. The successful candidate will work with ...

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Welder MIG

Monroe, NC ยท On-site

$18 - $19/hr

Familiarity with engineering blueprints and schematics * Ability to handle physical workload * Must ... Today, the fourth generation of Brown Equipment boasts a state of the art laser parts fabrication ...

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Associate Production Engineer

Charlotte, NC ยท On-site

$50K - $75K/yr

Opto-Alignment is highly recognized as a quality developer and supplier of state-of-the-art laser-based systems for precision optics alignment, assembly, and inspection. The successful candidate will ...

Quality Engineer

Gastonia, NC ยท On-site

$65K - $85K/yr

... laser cutting, e-coat/powder coating, CNC machining, and assembly . * Partner with Production and Engineering teams to integrate quality standards into product design and manufacturing workflows.

Showing results 41-60

Laser Engineering information

See Fort Mill, SC salary details

$35.6K

$98.5K

$165.2K

How much do laser engineering jobs pay per year?

As of Sep 4, 2026, the average yearly pay for laser engineering in Fort Mill, SC is $98,504.00, according to ZipRecruiter salary data. Most workers in this role earn between $56,700.00 and $141,900.00 per year, depending on experience, location, and employer.

What is laser engineering?

Laser engineering is a specialized field of engineering that focuses on the design, development, and application of lasers and laser-based systems. Laser engineers work with various types of lasers to solve problems in industries such as manufacturing, medicine, telecommunications, and research. They are involved in tasks ranging from creating new laser devices to integrating lasers into larger systems and ensuring their safe operation. This field requires a solid understanding of optics, electronics, and materials science.

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, typically supported by a degree in electrical engineering, physics, or a related field. Familiarity with CAD software, optical simulation tools, and hands-on experience with laser systems and safety certifications are often required. Strong problem-solving skills, attention to detail, and effective teamwork and communication set top performers apart. These competencies are critical for designing, optimizing, and maintaining advanced laser technologies used in research, manufacturing, and medical applications.

What are some typical challenges laser engineers face when working on new product development?

Laser engineers often encounter challenges such as selecting appropriate laser sources and optical components to meet strict performance requirements, managing heat dissipation, and ensuring system reliability under various operating conditions. Collaborating closely with mechanical, electrical, and software teams is crucial to integrate laser systems successfully into larger products. Additionally, keeping up with rapid technological advancements and adhering to safety standards are important aspects of the role. These challenges provide opportunities for continuous learning and innovation within multidisciplinary teams.

What is the difference between Laser Engineering vs Optical Engineering?

AspectLaser EngineeringOptical Engineering
Required CredentialsBachelor's or higher in engineering, specialized laser certificationsBachelor's or higher in optical, electrical, or physics engineering
Work EnvironmentLaboratories, manufacturing facilities, research centersResearch labs, product development, optical system design
Industry UsageLaser systems, medical devices, industrial cuttingImaging, telecommunications, optical sensors
Common Search/ComparisonLaser EngineeringOptical Engineering

Laser Engineering focuses on the design, development, and application of laser systems, often requiring specialized laser certifications. Optical Engineering covers a broader range of optical systems, including lenses, imaging, and fiber optics. While both roles share foundational knowledge in optics, Laser Engineering emphasizes laser-specific technologies and applications, making it distinct in industry usage and work environment.

How much do laser engineers make in the US?

Laser engineers in the US typically earn a median annual salary of around $70,000 to $100,000, depending on experience, education, and industry. Advanced skills in optics, laser systems, and certifications can lead to higher compensation, especially in specialized or high-tech environments.

What does a laser engineer do?

A laser engineer designs, develops, and tests laser systems and components for various applications such as manufacturing, medical devices, or research. They work with optical, electrical, and mechanical systems, often using CAD software and requiring knowledge of laser physics and safety protocols.

What job categories do people searching Laser Engineering jobs in Fort Mill, SC look for?

The top searched job categories for Laser Engineering jobs in Fort Mill, SC are:

What cities near Fort Mill, SC are hiring for Laser Engineering jobs?

Cities near Fort Mill, SC with the most Laser Engineering job openings:

Robotic Welding Engineer

Hendrick Automotive Group

Charlotte, NC โ€ข On-site

$80 - $100/hr

Other

Posted 16 days ago


Key responsibilities

  • Develop, program, and optimize robotic welding applications using systems such as FANUC, Yaskawa, ABB, or KUKA robots.

  • Develop and optimize welding processes including MIG (GMAW), TIG (GTAW), pulsed MIG, Laser welding, and Laser hybrid welding applications.

  • Lead continuous improvement initiatives focused on weld quality, productivity, cycle time reduction, and equipment utilization.


Job description

## Robotic Welding EngineerApplylocations: Hendrick Technical Solutionstime type: Full timeposted on: Posted Yesterdayjob requisition id: R-81360Hendrick Technical SolutionsLocation: 4400 Papa Joe Hendrick Blvd, Charlotte, North Carolina 28262**Hendrick Technical Solutions** provides a one-of-a-kind working experience where a diverse group of talented team members are committed to embracing innovation with the intensity to perform at the highest level, primarily focused on our work in the Defense sector. **Hendrick Technical Solutions** continuously seeks skilled and talented individuals who are motivated and enthusiastic about helping us meet our goals. To learn more about the exciting projects we are working on, click the links below. www.hendrickusa.com Inside Hendrick Motorsports manufacturing plant in Concord NC | Charlotte Observer**Position Summary:**The Robotic Welding Engineer is responsible for the development, implementation, optimization, and continuous improvement of automated robotic welding systems. This role combines expertise in welding processes, robotics, automation, and manufacturing engineering to ensure high-quality weld production, maximize equipment uptime, and drive operational efficiency. The engineer will work closely with production, maintenance, quality, and manufacturing teams to support both new product launches and ongoing production operations.**Key Responsibilities:****Robotic Welding System Development & Programming*** Develop, program, and optimize robotic welding applications using systems such as FANUC, Yaskawa, ABB, or KUKA robots.* Create and modify robot programs, weld schedules, and motion paths to achieve optimal weld quality, cycle time, and process consistency.* Lead commissioning and startup activities for new robotic welding cells and automation equipment.* Evaluate and implement advanced robotic welding technologies, sensors, seam tracking, vision systems, and adaptive welding controls.**Welding Process Engineering*** Develop and optimize welding processes including MIG (GMAW), TIG (GTAW), pulsed MIG, Laser welding, and Laser hybrid welding applications.* Establish welding parameters, process standards, and best practices to ensure compliance with customer and industry requirements.* Analyze weld defects and process variation using root cause analysis techniques and implement corrective actions.* Support weld qualification activities, procedure development, and validation testing.**Continuous Improvement & Manufacturing Support*** Lead continuous improvement initiatives focused on weld quality, productivity, cycle time reduction, and equipment utilization.* Monitor key performance indicators (KPIs) and identify opportunities for process optimization.* Support production teams with technical troubleshooting and resolution of robotic, welding, fixture, and automation-related issues.* Drive standardization of robotic programming methods, maintenance practices, and operating procedures.**Equipment & Automation Integration*** Collaborate with manufacturing, controls, and mechanical engineers on the design and integration of robotic welding cells.* Specify, evaluate, and implement tooling, fixtures, positioners, weld equipment, and automation systems.* Support PLC-controlled systems, HMI interfaces, safety systems, and industrial networking associated with robotic welding cells.* Coordinate equipment upgrades, retrofits, and capital projects.**Quality & Compliance*** Ensure compliance with applicable welding standards, customer specifications, and internal quality requirements.* Develop inspection methods and quality control plans with QC department for robotic welding processes.* Support customer audits, quality investigations, and corrective action activities.**Required Qualifications*** Bachelor's degree in mechanical engineering, manufacturing engineering, welding engineering, mechatronics engineering, or related technical discipline.* 3+ years of experience in robotic welding, welding automation* Strong knowledge of robotic programming platforms such as FANUC, Yaskawa , ABB, or KUKA.* Experience with MIG (GMAW), TIG (GTAW), Pulsed MIG, and automated welding processes.* Knowledge of PLC systems, industrial controls, sensors, and automation integration.* Ability to interpret engineering drawings, GD&T, welding symbols, and technical specifications.* Experience performing root cause analysis and implementing corrective actions.* Strong project management, communication, and problem-solving skills.**Preferred Qualifications*** Welding Engineer certification or equivalent welding qualifications.* Experience with offline robotic simulation software (RoboGuide, MotoSim, RobotStudio, Process Simulate, etc.).* Knowledge of machine vision, seam tracking, laser scanning, and adaptive welding technologies.* Experience with automotive, heavy equipment, aerospace, or high-volume manufacturing environments.* Familiarity with Lean Manufacturing, Six Sigma, and continuous improvement methodologies.**Key Success Measures*** Weld quality and first-pass yield.* Robotic cell uptime and overall equipment effectiveness (OEE).* Reduction in scrap, rework, and downtime.* Successful implementation of process improvements and automation projects.* Compliance with safety, quality, and production targets.This position is ideal for an engineer who combines hands-on robotic welding expertise with a passion for automation, process optimization, and advanced manufacturing technologies.This role subject to International Traffic in Arms Regulations (ITAR) requirements and as such, U.S. Citizen, Permanent Resident or U.S. Person Status Required.Hendrick is an Equal Opportunity employer. Minorities, women, veterans, and individuals with disabilities are encouraged to apply. For more information regarding the EEOC, please visit https://www.eeoc.gov/sites/default/files/2023-06/22-088\_EEOC\_KnowYourRights6.12ScreenRdr.pdf. #J-18808-Ljbffr