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Additive Manufacturing Remote Jobs in Raleigh, NC

Remote Key Responsibilities * Complying with all ABB and end customer EHS policies and procedures. * Installing, maintaining, repairing and commissioning equipment used in power delivery, support ...

Remote Key Responsibilities * Complying with all ABB and end customer EHS policies and procedures. * Installing, maintaining, repairing and commissioning equipment used in power delivery, support ...

Remote #LI-Remote This role is contributing to the Electrification Smart Power business in North Carolina. You will be mainly accountable for: * Applying safety rules and safe practices, as well as ...

At this time Spreedly is unable to provide sponsorship for employment, and we are not set up to support remote employees who reside in California or New York. In order to be considered for employment ...

At this time Spreedly is unable to provide sponsorship for employment, and we are not set up to support remote employees who reside in California or New York. In order to be considered for employment ...

Sales, Marketing & Product Management Job Schedule: Full time Remote: No The opportunity Hitachi Energy is a pioneering technology leader helping to increase access to affordable, reliable ...

Additive Manufacturing Remote information

See Raleigh, NC salary details

$10.5K

$75.1K

$113.1K

How much do additive manufacturing remote jobs pay per year?

As of Jun 18, 2026, the average yearly pay for additive manufacturing remote in Raleigh, NC is $75,086.00, according to ZipRecruiter salary data. Most workers in this role earn between $47,900.00 and $92,500.00 per year, depending on experience, location, and employer.

What are some common challenges faced by professionals working in remote additive manufacturing roles, and how can they be overcome?

Working in a remote additive manufacturing role often involves overcoming challenges such as coordinating with on-site teams, managing complex digital workflows, and maintaining effective communication across different time zones. To address these, professionals typically leverage advanced collaboration tools, cloud-based CAD platforms, and regular video meetings to ensure alignment on project specifications and production timelines. Building a strong rapport with team members and establishing clear communication channels are key to successfully navigating the remote work environment in this field.

What are the key skills and qualifications needed to thrive as an Additive Manufacturing Remote Specialist, and why are they important?

To thrive as an Additive Manufacturing Remote Specialist, you need expertise in 3D printing technologies, materials science, and a background in engineering or related fields. Familiarity with CAD software, slicer programs, remote monitoring systems, and certifications like Additive Manufacturing Technician (AMT) are typically important. Strong problem-solving, attention to detail, and effective remote communication skills help you stand out in this role. These competencies ensure high-quality production, efficient troubleshooting, and seamless collaboration in a remote work environment.

What is additive manufacturing remote work?

Additive manufacturing remote work refers to the practice of performing tasks related to 3D printing and digital fabrication from a location outside of a traditional onsite manufacturing facility. Professionals in this field use digital tools, CAD software, and cloud-based platforms to design, simulate, and sometimes even remotely monitor additive manufacturing processes. While the physical printing often occurs at a dedicated site, many roles such as design, engineering, and process optimization can be effectively performed remotely. This setup allows for greater flexibility and can help companies access a wider talent pool.

What is the difference between Additive Manufacturing Remote vs Additive Manufacturing Technician?

AspectAdditive Manufacturing RemoteAdditive Manufacturing Technician
CredentialsTypically requires a degree in engineering, manufacturing, or related field; certifications like AMF or 3D printing certifications are commonUsually requires technical diploma or associate degree; certifications in 3D printing or CAD are beneficial
Work EnvironmentPrimarily remote, involving design, programming, and oversight of additive manufacturing processesOn-site or in manufacturing facilities, operating and maintaining 3D printers and equipment
Industry UsageUsed across industries for remote project management, design, and process optimizationHands-on manufacturing, equipment setup, and quality control in production settings

In summary, Additive Manufacturing Remote roles focus on remote design, programming, and project coordination, requiring strong technical skills and certifications, while Additive Manufacturing Technicians are hands-on workers operating and maintaining 3D printers on-site. Both roles are essential in the additive manufacturing industry but differ mainly in work environment and daily responsibilities.

What are the most commonly searched types of Additive Manufacturing jobs in Raleigh, NC? The most popular types of Additive Manufacturing jobs in Raleigh, NC are:
What cities near Raleigh, NC are hiring for Additive Manufacturing Remote jobs? Cities near Raleigh, NC with the most Additive Manufacturing Remote job openings:

Microelectronics Applications Engineer (remote)

Chelsea Search Group

Raleigh, NC • On-site, Remote

Full-time

Medical, Dental, Retirement, PTO

Posted 19 days ago


Job description

Senior Applications Engineer
Position Summary
Seeking a Senior Applications Engineer with deep technical expertise in IC design and characterization with strong technical communication skills to support customer engagements and develop comprehensive product documentation. The ideal candidate will serve as a critical technical bridge between our design teams, customers, and business development organizations.
Key Responsibilities
• Product Documentation & Technical Content
- Create detailed technical specifications, characterization data, and application guidelines
- Develop and maintain comprehensive product datasheets for ASIC and standard product offerings
- Document electrical characteristics, timing diagrams, functional descriptions, and package information
- Ensure all technical documentation meets industry standards and customer requirements
- Produce application notes, design guides, and reference designs that enable customer success
• Customer Technical Support
- Conduct design reviews and offer guidance on IC integration and system-level implementation
- Deliver technical presentations and training to customers and field application engineers
- Provide pre-sales and post-sales technical support to customers and internal teams
- Troubleshoot customer design issues and recommend solutions
• Product Characterization & Validation
- Analyze silicon measurement data and validate performance against specifications
- Define and execute IC characterization test plans across process, voltage, and temperature corners
- Support failure analysis and root cause investigation activities
- Work with design and test engineering teams to optimize product performance
• Cross-Functional Collaboration
- Collaborate with product marketing to define product positioning and competitive advantages
- Contribute to new product definition based on customer feedback and market requirements
-  Interface with IC design teams to understand product features, limitations, and optimal use cases
- Support sales teams with technical expertise during customer engagements
Required Qualifications
• 5+ years of experience in IC applications engineering, design engineering, or related technical role
• Bachelor of Science in Electrical Engineering, Computer Engineering, or related field (MS preferred)
• Proven track record of developing technical datasheets and application documentation
Technical Skills
• Ability to translate complex technical concepts into customer-facing content
• Exceptional technical writing skills with ability to create clear, accurate, and comprehensive documentation
• Experience with documentation tools and version control systems
• Experience with lab equipment (oscilloscopes, logic analyzers, signal generators, etc.)
• Experience with semiconductor device physics, CMOS technology, and circuit operation
• Familiarity with industry-standard communication interfaces (PCIe, Ethernet, DDR, SerDes, etc.)
• Knowledge of IC packaging, thermal management, and power delivery considerations
• Proficiency in interpreting and analyzing electrical test data and characterization results
• Strong presentation skills for both technical and business audiences
• Strong understanding of digital and/or analog IC design principles
Preferred Qualifications
• Background in system-level design or board-level integration
• Experience supporting government or military programs
• Experience with high-reliability or radiation-hardened IC technologies
• Familiarity with ITAR regulations and defense/aerospace industry requirements
• Knowledge of EDA tools and design flows (Synopsys, Cadence, or Mentor)
• Understanding of ASIC development processes and foundry technologies (GlobalFoundries, Intel, TSMC)
Work Environment
• Collaboration with cross-functional teams across engineering, marketing, and sales
• May require occasional travel to customer sites or industry conferences (10-20%)
• Office-based position with occasional lab work for IC characterization and testing
• Potential for customer-facing activities requiring professional presentation skills
Security Requirements
• Ability to obtain and maintain security clearance may be required for certain programs
• U.S. citizenship required due to ITAR restrictions on technical data
Full-time + Benefits (Health and Dental Insurance, 401K Plan with Profit Sharing, Paid Time Off (PTO), Stock Option Plan)