Designed with education in mind, these 3D printing solutions support quick adoption in classrooms and labs through intuitive setup, guided workflows, and minimal technical barriers. Students can move from concept to physical part with confidence, allowing more time to focus on design thinking, iteration, and problem-solving.
A fully connected ecosystem of hardware, materials, and cloud-based software enables instructors to manage multiple devices and student projects efficiently. This streamlined approach is especially valuable in environments where scalability, ease of management, and consistent results are critical.
Reliable performance and repeatable output help ensure successful prints across a wide range of applications, from introductory STEM activities to more advanced engineering and prototyping projects. Built-in safeguards and user-friendly interfaces support safe operation while maintaining a strong emphasis on hands-on learning.
This approach aligns well with K-12, early college, and workforce training programs seeking to introduce additive manufacturing in a way that is accessible, structured, and easy to integrate into existing curriculum pathways.
See how a dedicated STEM center is expanding access to hands-on learning through 3D printing, mentorship, and shared resources. Students from multiple schools are gaining real experience designing, prototyping, and testing their ideas—using industry-relevant equipment in an environment built for exploration and growth.
This video highlights how quickly learners can get started, build confidence through iteration, and develop skills aligned with today’s technical education and workforce pathways. With accessible tools, certification opportunities, and mentor support, programs like this help improve engagement and create meaningful, career-connected learning experiences.
Watch to see how this scalable model supports goals around equity, access, and workforce readiness—and how similar approaches can be implemented to strengthen STEM programs and expand opportunities for your students.
Matrix TSL engineering education systems are designed to bridge the gap between theory and real-world application by giving students hands-on experience with core engineering principles. Developed by Matrix TSL, these compact, lab-ready solutions support universities, community colleges, and advanced STEM programs with equipment and curriculum that align directly with industry expectations. From mechanical and structural analysis to fluid dynamics and advanced manufacturing, each system is built to reinforce critical concepts through experimentation, measurement, and applied learning.
Unlike traditional lecture-based instruction, Matrix systems emphasize active engagement—allowing learners to visualize, test, and analyze engineering concepts in a controlled environment. Integrated data acquisition, structured experiments, and instructor resources make it easy to deliver consistent, outcomes-focused training while supporting a wide range of teaching styles. Whether introducing foundational concepts or advancing into specialized applications, these systems help students develop the problem-solving skills and technical confidence required for today’s engineering careers.
By combining scalable hardware with guided curriculum, Matrix TSL solutions enable institutions to modernize their labs without overcomplicating setup or delivery. The result is a flexible, future-ready learning environment where students gain practical experience that directly translates to the workplace—preparing them for careers in engineering, manufacturing, and technology-driven industries.
Matrix TSL aerospace teaching resources provide students with a hands-on introduction to the systems and technologies that power modern aviation. Covering topics such as aerodynamics, avionics, and aircraft electrical systems, these solutions allow learners to explore complex concepts through practical experimentation rather than theory alone.
Designed for schools, colleges, and advanced technical programs, these systems support structured learning while building the foundational knowledge required for careers in aviation maintenance, aerospace engineering, and related industries. By simplifying advanced aerospace principles into safe, lab-based activities, students gain confidence before transitioning to real-world applications.
Matrix TSL automotive teaching resources are designed to help students understand the underlying technologies behind today’s vehicles before working on live systems. With a strong focus on electrical systems, diagnostics, and vehicle networks, these solutions break down complex automotive concepts into manageable, hands-on learning experiences.
From introductory automotive electricity to advanced topics like CAN bus systems and high-voltage battery circuits, these training systems support learners at multiple levels. The result is a scalable pathway that prepares students for careers in automotive service, EV technology, and advanced vehicle diagnostics.
Matrix TSL electrical engineering teaching resources provide a comprehensive platform for learning electrical and electronic principles through practical application. Students move beyond theory by building circuits, testing systems, and analyzing real data—developing a deeper understanding of how electrical systems function in real-world environments.
These systems support a wide range of topics, from foundational electrical concepts to advanced control systems and embedded technologies. With integrated curriculum and structured experiments, educators can deliver consistent, outcomes-focused training that prepares students for careers in electrical engineering, electronics, and industrial automation.
Matrix TSL skilled trade teaching resources are designed to build foundational technical skills that apply across multiple industries. From electrical installation and maintenance to basic engineering and troubleshooting, these systems provide hands-on training that emphasizes practical, job-ready competencies.
Ideal for career and technical education programs, these solutions help students develop confidence working with tools, systems, and processes they will encounter in the field. By combining structured curriculum with real-world applications, they support pathways into apprenticeships, certifications, and skilled trade careers.
Matrix TSL renewable energy teaching resources help students understand the technologies driving the global transition to sustainable energy. Covering areas such as solar, wind, and energy management systems, these solutions provide practical, hands-on experience with the principles behind renewable power generation and distribution.
With a focus on real-world applications, students can explore how energy is generated, stored, and integrated into modern grids. These systems support programs preparing learners for careers in renewable energy, electrical systems, and sustainable infrastructure.
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Item Number:295-202DAC Worldwide's Floating Head Bulk Storage Tank Model (295-202) is a highly-detailed scale model of a common floating head storage tank.
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Item Number:RAP/4000This self-contained system facilitates the study of pressure drop due to flow restrictions through valves, strainers, fittings, and pipe of varying diameters, different surface roughnesses, and lengths. The system also facilitates the study of flow rate measurement methods such as orifice assembly, venturi meter, variable-area flow meter, and by calibrated tank vs. time.
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Item Number:200-2082DAC Worldwide’s Fluid Coupling Cutaway (200-2082) is an actual industrial fluid coupling that has been cut away to unveil its primary internal components and to show how it operates.
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Item Number:208-110The replica duplicates all primary structural details on an actual, full-size coupling. Importantly, learners can completely disassemble and reassemble the replica, allowing them to develop skills they will use in the workplace.
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Item Number:102-PDTM2 | 102-PDTM2C | 102-VT | 102-WWTBayport's Fluids Demonstration Models are a very popular tool to teach students the sight and sound concepts of fluid flows which cannot be experienced with drawings or computer simulations.
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Item Number:FLTSimlog's Forklift Personal Simulator puts trainees at the controls of a typical factory forklift with rear-wheel steering. Challenging training scenarios reproduce the productivity demands of modern factory, warehouse, and distribution center environments. Our intelligent Instructional Design will guide your trainees through a series of 7 skill-building Simulation Modules that emphasize safety in every exercise.
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Elevate forklift safety training with CM Labs’ Forklift Safety+ Add-On Module. Designed for experienced operators, recertification, and refreshers, it features advanced yard and warehouse scenarios for real-world readiness.
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This virtual reality course from Hard Hat VR aims to deliver thorough training on the secure and productive operation of forklifts. The primary objective of this course is to educate workers on the best practices and safety procedures associated with forklift operation.
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Item Number:FWDSimply set up the simulator controls , install the simulation software (in English or French) on your desktop or laptop PC, and begin! The simulation software puts you at the controls of a typical forwarder equipped with an articulated boom, telescoping extension, and free-swinging grapple attachment. You can even change the viewpoint during the simulation at the touch of a button.
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Future-proof your robotic welding training with the Fronius TPS/i MIG/MAG system. Modular, intelligent, and optimized for APT/FANUC robotic welding carts. Book a demo today.













