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Hp Additive Manufacturing Jobs (NOW HIRING)

As part of a mission-driven team pushing the boundaries of advanced manufacturing, you'll support the installation, maintenance, and troubleshooting of HP 3D printers and related additive ...

Electro-Optical Engineer

Wilmington, MA · On-site

$90K - $110K/yr

... scalable additive manufacturing solution to fundamentally change how products are made. Seurat ... Key Responsibilities High-Power Laser Testing & Characterization (HP Mantis) • Execute standard ...

Hp Additive Manufacturing information

See salary details

$14

$27

$42

How much do hp additive manufacturing jobs pay per hour?

As of Aug 12, 2026, the average hourly pay for hp additive manufacturing in the United States is $27.57, according to ZipRecruiter salary data. Most workers in this role earn between $20.19 and $33.65 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an HP Additive Manufacturing specialist?

To thrive as an HP Additive Manufacturing Specialist, you need a solid understanding of 3D printing technologies, materials science, and engineering principles, often supported by a degree in engineering or a related technical field. Familiarity with HP Multi Jet Fusion (MJF) systems, CAD software, and additive manufacturing workflow tools is crucial. Strong problem-solving skills, attention to detail, and effective communication set top performers apart in this role. These skills ensure efficient production, innovation, and the ability to meet client specifications in a rapidly evolving industry.

What is HP Additive Manufacturing?

HP Additive Manufacturing refers to the suite of 3D printing technologies and solutions developed by HP Inc., primarily focused on their Multi Jet Fusion (MJF) technology. This process allows for the creation of complex, durable parts layer by layer using powdered materials and precise jets of binding agents. HP's additive manufacturing is widely used in industries such as automotive, healthcare, and consumer goods for rapid prototyping and production. It is known for its speed, scalability, and ability to produce high-quality, functional parts. The technology is transforming traditional manufacturing by making production more flexible and cost-effective.

What are some common challenges faced by professionals working in HP Additive Manufacturing, and how can they be addressed?

Professionals in HP Additive Manufacturing often encounter challenges such as keeping up with rapidly evolving technology, ensuring consistent part quality, and optimizing production workflows. Staying current with new materials and printer updates is crucial, as is collaborating closely with design and engineering teams to troubleshoot and refine processes. To address these challenges, professionals often participate in ongoing training, leverage HP's support resources, and implement robust quality assurance protocols within multidisciplinary teams.

What is the difference between Hp Additive Manufacturing vs 3D Printing Technician?

AspectHp Additive Manufacturing3D Printing Technician
CredentialsRelevant certifications in additive manufacturing and CAD softwareCertifications in 3D printing technologies and equipment operation
Work EnvironmentIndustrial settings with advanced 3D printers and manufacturing equipmentWorkshops, labs, or manufacturing floors operating various 3D printers
Industry UsageUsed in aerospace, automotive, and healthcare for prototyping and productionPrimarily in prototyping, small-scale production, and maintenance tasks

Hp Additive Manufacturing specialists focus on designing, operating, and optimizing advanced additive manufacturing systems, often involving complex engineering. 3D Printing Technicians handle the setup, maintenance, and operation of 3D printers, typically working on specific projects. While both roles involve 3D printing, Hp Additive Manufacturing roles tend to require more technical expertise and involvement in system development, whereas 3D Printing Technicians focus on hands-on operation and troubleshooting.

More about Hp Additive Manufacturing jobs
Infographic showing various Hp Additive Manufacturing job openings in the United States as of August 2026, with employment types broken down into 91% Full Time, and 9% Part Time. Highlights an 91% In-person, and 9% Remote job distribution, with an average salary of $57,347 per year, or $27.6 per hour.

Polymer Additive Manufacturing Manager

HADRIAN

Los Angeles, CA

$250K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 29 days ago


Job description

Hadrian - Manufacturing the Future
Hadrian is building autonomous factories to reindustrialize America. By combining AI, advanced software, robotics, and full-stack manufacturing, we help aerospace and defense companies build rockets, satellites, aircraft, ships, and other mission-critical systems up to 10x faster and at significantly lower cost.
Following our $1.37B Series D at a $7.87B valuation, Hadrian is rapidly expanding our manufacturing footprint, launching new capabilities across welding, casting, forging, electronics, additive manufacturing, and more, while scaling our Factory-as-a-Service platform to transform how critical products are built.
Backed by leading investors including JPMorgan Chase, Valor Equity Partners, Andreessen Horowitz, Founders Fund, 137 Ventures, Lux Capital, T. Rowe Price, and Morgan Stanley, we're building the future of American manufacturing-and looking for exceptional people to help make it happen.
If you're ready to take on the most challenging and rewarding work of your career while helping create American manufacturing jobs for generations to come, you're exactly who we're looking for.
The Role:
We're looking for an operations and systems engineering leader who can take polymer additive manufacturing equipment from standalone machines to fully integrated, automated production systems. You will lead polymer AM production operations and own the technical integration of polymer AM machines into our OPUS platform, including machine connectivity, controls interfaces, telemetry, production scheduling, yield, and delivery performance. You will drive automation across the AM cell (powder and material handling, build volume exchange, depowdering and cleaning, downstream workflows, safety interlocks) and partner closely with machine OEMs and automation vendors to unlock deeper capability, serviceability, and reliability. The initial focus will be scaling production capacity for small unmanned aircraft systems (sUAS) and related defense platforms. The ideal candidate brings deep polymer AM operations experience, strong systems integration and automation fundamentals, and a track record of industrializing complex equipment for repeatable, scalable production.
What You'll Do:
  • Production Operations and Performance: Own polymer AM production operations including scheduling, throughput, yield, utilization, and on-time delivery. Establish and maintain operational cadence, production metrics, and continuous improvement disciplines across the AM cell.
  • Systems Integration and OPUS Enablement: Lead the end-to-end integration of polymer AM machines, peripherals, and cell infrastructure into OPUS, including connectivity, machine state models, telemetry, data quality, traceability, and enforceable interlocks.
  • Integration Architecture and Standards: Define system requirements, interface control documents (ICDs), integration kits, and machine acceptance criteria that scale across multiple OEMs, process technologies, configurations, and sites.
  • Automation and Cell Industrialization: Lead automation strategy for AM cells including powder and material handling, build volume exchange, part removal, depowdering and cleaning, material flow, and operator ergonomics. Drive step-change improvements in utilization, throughput, and safety.
  • OEM and Vendor Partnerships: Serve as Hadrian's technical lead with machine OEMs (Stratasys, HP, and others), automation integrators, and key suppliers to unlock deeper integration (APIs, controller access, logging, remote operations, calibration hooks, serviceability). Translate needs into joint development roadmaps and deliverables.
  • Commissioning, FAT/SAT, and Qualification Support: Build and own factory acceptance test (FAT) and site acceptance test (SAT) protocols, commissioning checklists, and validation plans. Partner with Quality and Process teams to ensure integrated systems support qualification and production release.
  • Reliability, Maintainability, and Uptime: Establish reliability engineering discipline for AM equipment (PM strategy, spares, calibration, MTBF and MTTR tracking, failure mode mitigation). Lead structured root cause and corrective action with OEMs and internal teams.
  • Machine Modification and Performance Upgrades: Lead efforts to implement hardware, firmware, and configuration improvements that increase build volume utilization, process stability, and throughput (for example thermal management, recoater and deposition systems, calibration, and print parameter optimization), while maintaining configuration control.
  • Manufacturing Controls and Documentation: Own standard work for machine operation and integration points, including equipment control procedures, safety interlocks, change control, and training. Ensure readiness for regulated environments and customer audits.
  • Team Leadership and Development: Hire, coach, and develop a high-performing team across machine operations, engineering, controls, automation, and integration. Set execution cadence, prioritize the portfolio, and build reusable frameworks and knowledge bases.
  • Cross-Functional Execution: Partner tightly with Applications Engineering, Materials and Process, Manufacturing Engineering, Factory Automation, Software, Quality, Supply Chain, and Operations to industrialize solutions and deliver production commitments.

What We're Looking For:
  • Bachelor's degree in Engineering (Mechanical, Electrical, Controls, Robotics, Manufacturing, or related); Master's degree is a plus.
  • 5+ years of experience in polymer additive manufacturing operations, systems engineering, equipment engineering, automation, or factory-scale integration, with deep familiarity in one or more of the following technologies: Stratasys SAF, HP Multi Jet Fusion (MJF), FDM, SLA, or SLS. Equivalent experience in factory automation, equipment integration, or manufacturing systems engineering with meaningful polymer AM exposure will also be considered.
  • 3+ years of people leadership experience (manager or team lead) with a track record of building and developing high-performing teams.
  • Hands-on knowledge of polymer powder bed fusion or material extrusion machine architecture and key subsystems including powder or material handling, thermal management, print heads or optics, recoater or deposition systems, build volume management, atmospheres and environmental controls, sensing and monitoring, and post-processing workflow.
  • Demonstrated experience working with production-grade polymer materials such as PA11, PA12, or similar engineering thermoplastics, including an understanding of material behavior, refresh ratios, and recyclability in a production environment.
  • Demonstrated experience integrating complex equipment into higher-level software systems (MES, SCADA, equipment management, manufacturing data pipelines, or similar), including requirements definition and interface standards.
  • Experience managing production operations in a manufacturing environment, including capacity planning, scheduling, yield management, and delivery performance.
  • Experience deploying automation in production manufacturing environments, including safety, interlocks, commissioning, and sustaining engineering.
  • Strong problem-solving using structured methods (8D, 5 Whys, fishbone) and proven ability to drive corrective and preventive actions to closure.
  • Willing to travel up to 20%, including international supplier visits; U.S. Citizen or Permanent Resident (required for ITAR compliance).

What Will Set You Apart:
  • Experience standing up or scaling polymer AM production from low-rate to high-volume operations. Has hands-on experience optimizing powder bed fusion or material extrusion systems for throughput and yield in a production setting. Has industry relationships at polymer AM machine OEMs (HP, Stratasys, EOS, or similar). Experience with sUAS or unmanned systems component manufacturing is a strong plus.

Compensation:
For this role, the target salary range is $200,000-$250,000(actual range may vary based on experience).
This is the lowest to highest salary we reasonably and in good faith believe we would pay for this role at the time of this posting. We may ultimately pay more or less than the posted range, and the range may be modified in the future. An employee's pay position within the salary range will be based on several factors, including, but not limited to, relevant education, qualifications, certifications, experience, skills, geographic location, performance, and business or organizational needs.
Benefits for Full-time Employees
  • Medical, dental, vision, and life insurance plans for employees
  • 401k
  • Relocation support may be provided for certain situations, based on business need.
  • Flexible vacation policy
  • Equity

ITAR Requirements
To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR) you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Learn more about the ITAR here .
Use of AI in hiring
Hadrian uses AI-assisted tools in our recruiting and hiring processes to help our team work more efficiently. This may include tools that help organize and analyze recruiting data, as well as an AI-powered notetaker that can record and transcribe interviews and help coordinate feedback. These tools support our team and are not used to make hiring decisions. All candidate evaluations and hiring decisions are performed by humans. If an interview will be recorded, you will be notified in advance and may opt out at any time with no impact on your candidacy. Candidate data processed through these tools is subject to the same protections described in our Privacy Policy .
Hadrian Is An Equal Opportunity Employer
It is the Company's policy to provide equal employment opportunity for all applicants and employees. The Company does not unlawfully discriminate on the basis of race inclusive of traits historically associated with race (including, but not limited to, hair texture and protective hairstyles, such as braids, locks and twists), color, religion, sex (including pregnancy, childbirth, or related medical conditions), gender identity, gender expression, transgender status, national origin (including, in California, possession of a drivers license), ancestry, citizenship, age, physical or mental disability, height or weight, medical condition, family care status, military or veteran status, marital status, domestic partner status, sexual orientation, genetic information, exercise of reproductive rights, any other basis protected by local, state, or federal laws, or any combination of the above characteristics. When necessary, the Company also makes reasonable accommodations for disabled candidates and employees, including for candidates or employees who are disabled by pregnancy, childbirth, or related medical conditions.