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Live In Ge Additive Manufacturing Jobs in North Carolina

... powder inventory in support of a growing metal additive manufacturing fleet. This role ensures every lot of powder is tracked, qualified, and issued in compliance with AMS7031 and related ...

R&D Controls Engineer

Durham, NC ยท On-site

$75K - $90K/yr

Background in thermal process control (welding, heat treatment, laser processing, or additive manufacturing) * Knowledge of advanced control methods: feedforward compensation, Smith predictors for ...

Demonstrate expertise in Automation/Robotics manufacturing applications plus one or more of the following (applied to a manufacturing setting): Industrial Analytics, Cybersecurity, Additive ...

Minimum of 5 years of experience in program or project management within Additive manufacturing, precision machining, aerospace, or defense manufacturing. * PMP or equivalent certification preferred.

Showing results 21-40

Live In Ge Additive Manufacturing information

What is a live in GE Additive Manufacturing professional?

A Live In GE Additive Manufacturing professional typically refers to an engineer or technician who works on-site at a GE facility specializing in additive manufacturing, also known as 3D printing. These professionals are responsible for operating, maintaining, and improving advanced manufacturing equipment to produce complex parts, often for the aerospace, automotive, or energy industries. Their work includes setting up machines, monitoring production processes, conducting quality checks, and troubleshooting technical issues. Being 'live in' may also imply close involvement with on-site operations and collaboration with various teams to ensure efficient and high-quality production.

What are the key skills and qualifications needed to thrive as a live in GE Additive Manufacturing professional?

To thrive as a Live-In GE Additive Manufacturing Specialist, you need a background in engineering or materials science, experience in additive manufacturing processes, and relevant industry certifications. Familiarity with GE's additive manufacturing machines, 3D modeling software (such as CAD), and quality control systems is typically required. Strong problem-solving abilities, adaptability, and effective communication are essential soft skills for this role. These competencies are crucial for ensuring efficient production, maintaining high-quality standards, and collaborating effectively in innovative manufacturing environments.

What are some common challenges faced by live in GE Additive Manufacturing professionals, and how can applicants prepare for them?

Professionals in Live In GE Additive Manufacturing often encounter challenges such as adapting to rapidly evolving technology, ensuring high-quality output under tight deadlines, and collaborating effectively with multidisciplinary teams. To prepare, applicants should stay updated on the latest additive manufacturing advancements, demonstrate strong problem-solving skills, and be comfortable working in a fast-paced, innovation-driven environment. Building experience with 3D design software and understanding quality assurance processes can also be beneficial.

What is the difference between Live In Ge Additive Manufacturing vs Live In CNC Machinist?

AspectLive In Ge Additive ManufacturingLive In CNC Machinist
CredentialsRelevant certifications in additive manufacturing, CAD/CAM softwareMachining certifications, CNC programming experience
Work Environment3D printing labs, advanced manufacturing facilitiesMachine shops, manufacturing floors
Industry UsageUsed in aerospace, automotive, healthcare sectorsCommon in manufacturing, metalworking industries
Search & Comparison IntentPeople comparing additive manufacturing roles with traditional machiningIndividuals exploring CNC machining careers or roles

Live In Ge Additive Manufacturing focuses on 3D printing and additive processes, often requiring CAD skills and knowledge of printing technologies. In contrast, Live In CNC Machinist roles involve operating CNC machines for subtractive manufacturing. Both roles are vital in manufacturing but differ in techniques, tools, and industry applications.

What are the most commonly searched types of Ge Additive Manufacturing jobs in North Carolina?

The most popular types of Ge Additive Manufacturing jobs in North Carolina are:

What are popular job titles related to Live In Ge Additive Manufacturing jobs in North Carolina?

For Live In Ge Additive Manufacturing jobs in North Carolina, the most frequently searched job titles are:

What job categories do people searching Live In Ge Additive Manufacturing jobs in North Carolina look for?

The top searched job categories for Live In Ge Additive Manufacturing jobs in North Carolina are:

What cities in North Carolina are hiring for Live In Ge Additive Manufacturing jobs?

Cities in North Carolina with the most Live In Ge Additive Manufacturing job openings:

Infographic showing various Live In Ge Additive Manufacturing job openings in North Carolina as of August 2026, with employment types broken down into 1% As Needed, 68% Full Time, 27% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 84% Physical, 3% Hybrid, and 13% Remote job distribution.

Senior Photolithography Process Engineer with Security Clearance

Cubic Corporation

Durham, NC โ€ข On-site

$110K - $119K/yr

Other

Posted 23 days ago


Job description

Business Unit: Cubic Defense Company Details: We are seeking a highly-motivated, full-time Senior Photolithography Process Engineer onsite at our Durham, NC facility to lead the development, optimization, and scale-up of advanced photolithography-based additive manufacturing processes. This role will be responsible for driving process innovation, improving product quality and throughput, and supporting the transition of new technologies from research and development into production environments. The ideal candidate will possess deep expertise in photopolymerization, UV curing, lithographic exposure systems, process characterization, and statistical process control within a high-technology manufacturing environment. Occasional travel may be required to visit suppliers. Job Details: Essential Functions: * Develop, optimize, and sustain photolithography-based additive manufacturing processes to achieve quality, throughput, and cost objectives.
* Lead process development activities for new products, materials, and equipment platforms.
* Design and execute experiments to characterize and improve process capability, dimensional accuracy, and yield.
* Analyze complex process data using statistical methods and drive continuous improvement initiatives.
* Investigate and resolve process excursions, equipment issues, and manufacturing defects through structured root cause analysis.
* Define process windows, control plans, and manufacturing specifications.
* Collaborate with design, materials, equipment, production, and quality teams to ensure successful product launches and manufacturing scale-up.
* Evaluate and qualify new photopolymers, resins, exposure systems, and process technologies.
* Establish and maintain process monitoring metrics, statistical process control (SPC), and documentation.
* Provide technical leadership, mentorship, and training to engineers and manufacturing personnel.
Minimum Qualifications * Bachelor's degree in Materials Science, Chemical Engineering, Mechanical Engineering, Physics, Electrical Engineering, or a related technical discipline.
* 6+ years of experience in photolithography, additive manufacturing, semiconductor processing, microfabrication, or related advanced manufacturing technologies.
* Strong knowledge of photolithography, UV exposure systems, dry film manufacturing, film lamination and wet spinning, photoresists, and layer-by-layer manufacturing processes.
* Experience with Design of Experiments (DOE), Statistical Process Control (SPC), and process capability analysis.
* Experience using data analysis tools such as JMP, Minitab, MATLAB, Python, or equivalent.
Preferred Qualifications * Master's or Ph.D. degree in a relevant engineering or scientific field.
* Familiarity with cleanroom operations and semiconductor manufacturing methodologies.
* Demonstrated success in process development, troubleshooting, and manufacturing scale-up.
* Experience leading cross-functional technical teams and mentoring junior engineers.
* Understanding of quality systems and manufacturing standards in regulated industries. (AS9100 preferred) Cubic Pay Range: $110,000.00 - $119,000.00 + benefits. The Cubic pay range for this job level is a general guideline only and not a guarantee of compensation or salary. Additional factors considered in extending an offer include (but are not limited to) responsibilities of the job, education, experience, knowledge, skills, and abilities, as well as internal equity, alignment with market data, applicable bargaining agreement (if any), or other law. Worker Type: Employee We are committed to creating an inclusive workplace and welcome applications from people of all backgrounds. We do not discriminate based on any protected characteristic under applicable law.