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Additive Manufacturing Engineer Remote Jobs in Prosper, TX

DFT Engineer

Plano, TX ยท Remote

Remote, (Onsite) Duration: Contract Year of Exp: 8+ yrs to 15 yrs. We are seeking a highly ... Familiarity with yield learning, diagnosis, and manufacturing test optimization.

RTL Design/AMS Verification Engineer

Richardson, TX ยท On-site +1

$122K - $149K/yr

Remote Key Responsibilities * Develop, integrate, and verify Verilog RTL for digital and mixed ... Familiarity with a broad range of semiconductor process technologies and manufacturing environments ...

Remote, (Onsite) Duration: Contract Year of Exp: 8+ yrs to 15 yrs. We are seeking a highly ... Familiarity with yield learning, diagnosis, and manufacturing test optimization.

Senior Electrical Engineer

Dallas, TX ยท On-site +1

$104K - $136K/yr

... remote, and home offices, as well as project site locations. The Engineer must be a flexible and ... manufacturing, procurement, commissioning, and warranty. This approach allows us to move faster ...

... functional additives, cleaners, disinfectants, and state-of-the-art monitoring, control and ... Headquartered in Wilmington, Delaware, the company has 78 manufacturing facilities strategically ...

Headquartered in Wilmington, Delaware, the company has 78 manufacturing facilities strategically ... and remote leadership WHO WE'RE LOOKING FOR: A highly effective leader capable of elevating ...

Mechanical Engineer PE

Coppell, TX ยท Remote

$100K - $150K/yr

Hybrid - onsite and remote Overview Applies standard engineering techniques to design, analyze, test, maintain, repair, or improve products, components, or assemblies Responsibilities * Apply ...

Showing results 41-60

Additive Manufacturing Engineer Remote information

See Prosper, TX salary details

$37.5K

$85.5K

$142.9K

How much do additive manufacturing engineer remote jobs pay per year?

As of Aug 7, 2026, the average yearly pay for additive manufacturing engineer remote in Prosper, TX is $85,451.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,900.00 and $103,000.00 per year, depending on experience, location, and employer.

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

To thrive as an Additive Manufacturing Engineer (Remote), you need a strong background in engineering principles, 3D printing technologies, and materials science, usually supported by a relevant engineering degree. Proficiency with CAD software, simulation tools, and experience with additive manufacturing systems such as FDM, SLS, or SLA, as well as familiarity with industry standards or certifications like ASTM or ISO, is essential. Strong problem-solving skills, attention to detail, and effective virtual communication are crucial soft skills for remote collaboration and project management. These competencies ensure the engineer can design, optimize, and deliver high-quality parts while collaborating efficiently with distributed teams.

What does an additive manufacturing engineer do when working remotely?

An Additive Manufacturing Engineer working remotely is responsible for designing, developing, and optimizing 3D printing processes and products from a remote location. They collaborate with teams using digital tools to create prototypes, analyze data, and troubleshoot issues related to additive manufacturing. Remote engineers may also oversee workflow, ensure quality standards are met, and support the integration of new technologies, all while communicating with clients and colleagues virtually.

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

AspectAdditive Manufacturing Engineer RemoteAdditive Manufacturing Technician
CredentialsBachelor's or higher in engineering, certifications like AM-specific trainingTechnical diploma or associate degree, hands-on training
Work EnvironmentRemote office, design and development focusOn-site manufacturing floor, equipment operation
Industry UsageDesign, process optimization, project managementMachine setup, maintenance, part fabrication

The main difference is that Additive Manufacturing Engineers Remote focus on designing and optimizing additive processes remotely, while Additive Manufacturing Technicians work hands-on with equipment on-site. Engineers typically require higher education and perform planning tasks, whereas Technicians handle daily machine operations and maintenance.

What are some common challenges faced by remote additive manufacturing engineers, and how can they be addressed?

Remote Additive Manufacturing Engineers often encounter challenges related to limited hands-on access to equipment and real-time collaboration with on-site teams. To overcome these obstacles, it's important to establish clear communication channels, utilize remote monitoring tools, and coordinate closely with local operators for prototyping and testing. Regular virtual meetings and detailed documentation help ensure project timelines stay on track and technical issues are resolved efficiently. Embracing digital collaboration platforms and maintaining flexibility can significantly enhance productivity and team integration.
What are popular job titles related to Additive Manufacturing Engineer Remote jobs in Prosper, TX? For Additive Manufacturing Engineer Remote jobs in Prosper, TX, the most frequently searched job titles are:
What job categories do people searching Additive Manufacturing Engineer Remote jobs in Prosper, TX look for? The top searched job categories for Additive Manufacturing Engineer Remote jobs in Prosper, TX are:
What cities near Prosper, TX are hiring for Additive Manufacturing Engineer Remote jobs? Cities near Prosper, TX with the most Additive Manufacturing Engineer Remote job openings:

DFT Engineer

Purple Hires Inc

Plano, TX โ€ข Remote

Contractor

Re-posted 8 days ago


Job description

Role: Lead ASIC DFT Engineer
Location: Remote, (Onsite)
Duration: Contract
 
Year of Exp: 8+ yrs to 15 yrs.
 
Job Description:
We are seeking a highly experienced Lead ASIC DFT Engineer to architect, implement, verify, and debug advanced DFT solutions for complex ASIC and SoC designs. This role requires deep technical ownership across DFT architecture, scan insertion, ATPG, MBIST/LBIST, JTAG, boundary scan, and post-silicon validation, along with the ability to lead cross-functional debug efforts and drive resolution of critical silicon issues. The ideal candidate will have strong hands-on expertise in DFT fundamentals, fault models, test coverage, diagnosis, and debug, as well as the ability to evaluate and adopt emerging DFT methodologies and architecture schemes to improve robustness, quality, and yield.
Key Responsibilities:
  • Lead DFT architecture, implementation, verification, and sign-off for complex ASIC and SoC designs.
  • Drive scan architecture, scan insertion, scan chain stitching, and scan compression workflows to achieve high coverage and robust testability.
  • Own MBIST/LBIST integration, implementation, verification, and debug across design and silicon bring-up phases.
  • Perform DFT debug, failure analysis, root-cause investigation, and fault coverage closure for complex silicon issues.
  • Develop and validate DFT constraints, including DFT SDC, timing checks, and DFT-specific timing analysis.
  • Collaborate with RTL design, verification, physical design, STA, and silicon validation teams to resolve integration and implementation issues.
  • Support ATPG pattern generation, ATPG simulations, DRC analysis, test coverage analysis, and diagnosis/debug.
  • Work on JTAG, boundary scan, iJTAG, SSN, and IP-level DFT integration.
  • Review RTL, synthesis, LEC, and physical design impacts on DFT implementation and test quality.
  • Act as a technical escalation point for advanced DFT and post-silicon debug issues.
  • Mentor junior and mid-level DFT engineers and promote best practices in DFT methodology and automation.
  • Develop scripts and automation using TCL, PERL, or Python to improve flow efficiency and debug productivity.
Required Skills & Qualifications:
  • Strong hands-on experience in ASIC DFT with end-to-end ownership.
  • Solid understanding of DFT fundamentals, fault models, test techniques, and test coverage concepts.
  • Deep expertise in scan architecture, ATPG, MBIST, LBIST, JTAG, boundary scan, and silicon debug.
  • Hands-on experience with Synopsys, Cadence, and Siemens/Mentor EDA tools.
  • Proven experience in scan insertion, ATPG setup, simulation, debug, and DRC analysis.
  • Experience with MBIST implementation and verification; SMS experience preferred.
  • Experience with scan architecture and scan chain stitching; Tessent/SSN experience preferred.
  • Strong understanding of PLLs, RTL design, synthesis flows, logical equivalence checking (LEC), and physical design implementation.
  • Proven post-silicon debug and silicon bring-up experience.
  • Exposure to large SoC designs, hierarchical DFT flows, and multi-domain integration challenges.
  • Strong communication skills and the ability to work independently with minimal ramp-up.
Preferred Experience:
  • MBIST post-silicon validation.
  • ATPG simulations and fault coverage debug.
  • DFT RTL, DFD, DFT verification, and IP-level DFT integration.
  • DFT SDC creation and DFT timing closure support.
  • Boundary scan, iJTAG, SSN, and design-for-debug methodologies.
  • TCL/PERL scripting for DFT automation, reporting, and debug.
  • Experience working across multiple ASIC technology nodes and complex product development cycles.
  • Familiarity with yield learning, diagnosis, and manufacturing test optimization.