The future of aviation is here. The FAA collaborates with industry and communities to advance drone operations and integrate them into the national airspace.
Supported Certifications
- FAA Part 107 Remote Drone Pilot
Training Solutions
National Certifications for Robotics and Advanced Automation Manufacturing
With FANUC's challenging and thorough national certification assessments, students and workers can document their knowledge and fill high-demand, high-paying, and exciting career opportunities in Robotics and Advanced Manufacturing. An extensive network of high schools, colleges, and training centers offers these national certifications.
Supported Certifications
FANUC Robot Operator 1
Indicates an operator level of skills and knowledge. Students with this level have a basic understanding of robot operations and programming, material handling and its components, and an introduction to Roboguide simulation software. These certification programs are focused on the core Robot Operator skills needed by entry-level or incumbent workers.
Written assessment for entry-level position as robotics associate in manufacturing. The assessment exams allow the candidate to demonstrate their knowledge in: Robot operations, frame setup, writing, modifying and executing basic programs, program offset, backup, restorations, creating and modifying simulations.
Training Solutions
Supported Certifications
EPA Section 608 Certification
For working on stationary HVACR equipment
Section 608 of the Federal Clean Air Act requires that all individuals who maintain, service, repair, or dispose of appliances that contain ozone-depleting refrigerants be certified in proper refrigerant handling techniques.
Training Solutions
What is PolyJet Technology?
PolyJet is a powerful 3D printing technology that produces smooth, accurate parts, prototypes and tooling. With microscopic layer resolution and accuracy down to 0.014 mm, it can produce thin walls and complex geometries using the widest range of materials available with any technology.
Benefits of PolyJet:
- Create smooth, detailed prototypes that convey final-product aesthetics.
- Produce accurate molds, jigs, fixtures and other manufacturing tools.
- Achieve complex shapes, intricate details and delicate features.
- Incorporate the widest variety of colors and materials into a single model for unbeatable efficiency.
Make it more realistic and accurate with PolyJet
Stratasys offers PolyJet technology 3D prints in the widest variety of materials, so you can create ergonomic tooling, bio-compatible surgical guides or realistic prototypes that closely resemble finished products.
Models are precisely printed in layers as fine as 16 microns for smooth surfaces and complex geometries. Material properties range from rubber-like to rigid, transparent to opaque, neutral to vibrantly colored, and standard to bio-compatible plastics.
Stratasys FDM (Fused Deposition Modeling) materials are engineered to deliver unmatched performance, durability, and precision for additive manufacturing applications across industries. From prototyping to production, Stratasys offers a wide range of thermoplastics—each designed to meet specific mechanical, thermal, and chemical requirements. Whether you're creating functional prototypes, end-use parts, or manufacturing tools, Stratasys FDM materials provide the reliability and repeatability that engineers, educators, and manufacturers demand.
Get ready for a new era of 3D printing.
Programmable PhotoPolymerization P3™ technology, an evolution of digital light processing (DLP) is ushering in a new era in 3D printing: the mass production of functional end-use parts.
P3 software precisely orchestrates light, temperature, pull forces and pneumatics to optimize prints for the best possible results. With P3, manufacturers can achieve injection molding part quality and surface finish with incredible accuracy, in a diverse and continuously growing range of high-performance materials.
What makes P3 unique?
P3 is a combination of several tightly controlled, programmable steps in the printing process. P3 extends DLP printing’s capabilities and supports the next generation of production applications made with photopolymers. This powerful combination of production-grade technology and performance materials unlocks functional end-use applications in 3D printing with competitive throughput and part cost.
How it works:
Four critical parts of the P3 process enable the unique combination of high throughput, production-grade part quality and materials.
- Light: Programmable light sets off an exothermic reaction that forms layers with outstanding resolution, accuracy and dosage control.
- Environmental stability: Temperature-controlled printing mitigates warping and shrinkage, while unlocking materials with advanced properties, like flame retardancy.
- Pneumatic separation: A perfectly timed separation procedure reduces pull forces, leading to a molded-like surface finish, high-throughput and ultra-fine features, such as textures or large surface areas like molds.
- Motion: Precise control over printer movements ensures a repeatable, fast and accurate workflow in a wide range of geometries and high-performance materials.
- Green Strength: The P3 process produces a high polymerization conversion, unlocking faster print times, extreme geometries, and build nesting.
Stereolithography is an additive manufacturing process that uses a vat of liquid UV-curable photopolymer resin and a UV laser to build parts one layer at a time.
Benefits of stereolithography include:
- Parts with smooth sidewall quality and detail
- Low-volume part production of complex geometries
- Tight tolerances, layer thickness of between 50 to 200 microns
- Versatile range of materials for specific applications
Stereolithography is commonly used as a prototyping technology within industries that need to print parts or models to validate fit form and function or for concept visualization. Stereolithography is also used in manufacturing applications for short-run part production, such as vacuum castings, injection mold tooling, investment casting master patterns, and functional end-use part production for certain environments.
Due to its competitive build times and the superior quality of the finish straight off the machine, very little post-processing is required, providing cost savings and reduced lead times.
SAF™ Selective Absorption Fusion™
Boost your manufacturing capability with powder bed fusion 3D printing.
SAF technology is the power behind the H Series™ Production Platform, designed for production-level throughput of end-use parts.
The SAF-powered H350™ 3D printer provides you with control over your production and costs. Grow your business through volume production with consistent end-use functional parts.
What is SAF?
SAF is the industrial-grade technology that powers the powder-based additive manufacturing process, leading to higher end-use parts production levels. SAF is the latest 3D printing technology behind the H Series Production Platform that enables control over the printing process to achieve accurate, consistent production at competitive part costs.
How SAF technology works:
SAF is the technology behind the H350’s powder bed fusion 3D printing process. SAF uses HAF™ infrared absorption fluid to fuse polymer powder particles in layers to build parts. It also utilizes Big Wave™ powder management, a proprietary technology that provides reliable powder distribution across the build, where industrial-grade piezo-electric print heads jet the HAF fluid in prescribed areas to create each part cross-section. This is followed by exposure to infrared energy, which causes the areas with HAF to melt and fuse. The sequence is repeated until the parts are completed.
Typical Applications
Industrial-grade technology
Industrial Piezo-electric print heads and innovative powder management designed for durability and high uptime.
Production throughput
One-pass print-and fuse, few consumable replacements for minimal downtime, and high nesting densities to meet production demands.
End-use production parts
Real-time powder heating, unique thermal management, and broad powder range for a wide spectrum of part properties.
Advancing Additive Manufacturing
FDM 3D printed parts are tough enough to be used as advanced conceptual models, functional prototypes, manufacturing tools, and production parts. Using strong, reliable, and durable materials, FDM 3D printers streamline production processes from design through manufacturing, reducing costs and eliminating traditional barriers.
Download our FDM 3D printer systems and materials overview brochure. A much-needed asset for your entry into FDM 3D printing.
Agilus30™ materials have properties that simulate Shore A 30 rubber. With this family of rubber-like materials, you can print flexible full-color 3D prints.
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Offering unmatched depth and breadth of training, Amatrol’s Oil and Gas Program builds industry-relevant competencies using world-class simulators featuring industry-standard components and highly interactive curriculum. The Oil and Gas Program covers vital areas such as electrical, electronics, instrumentation and process control, and mechanical training.
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Amatrol’s Workplace Safety training courses explain the basic principles necessary to keep work environments as accident-free as possible. Learners will study the common causes of workplace accidents and the role of OSHA and other agencies regulating safety before moving to personal safety actions and awareness, such as Personal Protective Equipment, Hazardous Communication, Lockout / Tagout, and Accident Response.
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Tech-Labs offers equipment and curriculum from Amatrol’s Advanced Manufacturing program. Amatrol’s industry-leading equipment and curriculum are developed in partnership with industry to deliver job-ready, industry-relevant skills. Working closely with companies like Caterpillar, Tropicana, and many others Amatrol has designed equipment for workplace success.
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Amatrol has developed the most comprehensive, in-depth selection of online electrical training solutions available today, beginning with the basics of AC/DC electrical and moving on to more advanced topics like electrical machines, relay control, and fabrication; electrical motor control; and electrical wiring and power distribution.
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Amatrol’s electronics learning systems combine hands-on skills and multimedia curriculum to form a training experience with unmatched breadth and depth. This product focusses on electronic drives and programmable logic controllers to give current and future workforce members the knowledge that they’ll need to excel in the their career paths.
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Amatrol’s mechanical training systems are the best in the industry. The learning programs were developed in partnership with industry and education to insure that the skills are on target to support modern industry needs.
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Important workplace training for the Oil and Gas industry includes Communication Skills, Conflict Resolution, Mathematics, Principles of Advanced Manufacturing, Trigonometry and Working in Groups. Amatrol’s Interactive Multimedia Gives Learners the Tool They Need to Excel.
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Item Number:295-712DAC Worldwide’s Angled Disc Butterfly Valve Cutaway (295-712) is an industrial valve sample and teaching aid that allows for convenient classroom or laboratory instruction in the design, construction, and maintenance of an angle disc-type butterfly valve.
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Item Number:281DAC Worldwide’s Annular Tube Heat Exchanger Model (281) is a highly-detailed scale model of a common annular tube (tube-in-tube) heat exchanger. The model provides realistic training in the operation and maintenance of industrial heat exchangers.
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Item Number:275-100The ANSI Centrifugal Pump Dissectible (Goulds) consists of an actual industrial-quality pump to provide learners with a realistic training experience that will build skills that translate easily to the workplace.























