Empowering Education Through 3D Printing
UltiMaker is a global leader in professional desktop 3D printing, renowned for delivering accessible, reliable, and high-performance additive manufacturing solutions. In the world of education and technical training, UltiMaker's printers are empowering instructors and students alike by turning ideas into tangible models—bridging the gap between theory and practice. From middle school makerspaces to advanced engineering labs, UltiMaker’s user-friendly ecosystem provides educators with the tools they need to build 21st-century skills through hands-on, project-based learning.
Built for the classroom, UltiMaker’s printers—such as the S3 and S5—offer seamless workflows, intuitive software integration, and a broad material compatibility, making them ideal for cross-curricular applications in STEM, CTE, and design programs. Educators can unlock student creativity while teaching real-world problem-solving, prototyping, and design thinking—critical skills that prepare learners for success in today’s rapidly evolving industries.
With an extensive library of lesson plans, curriculum support, and a global community of educators, UltiMaker is more than a technology provider—it's a partner in shaping the future of education. Whether you’re launching a makerspace, enhancing a Fab Lab, or incorporating additive manufacturing into your existing curriculum, UltiMaker provides scalable solutions to fit your goals.
Improve Safety and Performance for Waste Management Drivers—Before They Take the Wheel
Driver Training Solutions’ Sanitation Simulator provides immersive, scenario-based training designed specifically for waste collection and sanitation fleet operators. Trainees can safely develop critical skills such as route navigation, vehicle handling, stop-and-go operations, backing, tight turns, and hazard awareness—all within a controlled virtual environment.
By removing the risks, costs, and wear associated with on-road training, organizations can deliver consistent, repeatable instruction while protecting both equipment and personnel. The simulator allows drivers to build confidence and competence before ever operating a real vehicle.
Ideal for municipalities, private waste contractors, and fleet training academies, this solution supports safer operations, reduces accident rates, and improves overall efficiency across a wide range of waste management applications.
Download the Matrix Automatics PLC Adaptor Guidelines to learn how to connect PLC systems to pneumatic training platforms for advanced automation instruction.
Available through Tech-Labs, these adaptor modules allow educators to bridge pneumatic fundamentals with real-world PLC control, helping students build practical automation skills.
What’s Covered in This Guide
- PLC input, output, relay, and power interface modules
- Wiring diagrams and connection examples
- Module compatibility with different PLC types
- DIN rail mounting options and configurations
- Suggested setups for Siemens and other PLC systems
The guide outlines multiple module options for connecting PLC inputs, motor outputs, relay outputs, and power connections to the Automatics training platform.
Why PLC Integration Matters
Integrating PLCs into pneumatic training allows students to move beyond basic circuits into industrial automation concepts such as digital inputs/outputs, relay logic, sequencing, and control system design.
- Bridges foundational skills with advanced automation
- Supports real-world industrial control workflows
- Enhances troubleshooting and system design skills
This guide is ideal for programs looking to expand into Industry 4.0-aligned automation training.
EBlocks3 from Matrix TSL is a modern, modular embedded systems platform designed to simplify the teaching and learning of microcontrollers, electronics, programming, and rapid prototyping. Whether students are just beginning their journey in embedded systems or advancing toward complex IoT and automation projects, EBlocks3 provides a flexible and scalable learning environment.
The platform combines powerful upstream processor boards with a growing ecosystem of downstream modules, allowing learners to build complete embedded systems quickly and easily. With support for PIC®, Arduino®, ESP32, and FPGA technologies, EBlocks3 enables institutions to teach multiple hardware and software platforms using a common modular architecture.
- Modular design for rapid system development and experimentation
- Compatible with PIC, Arduino, ESP32, and FPGA platforms
- Integrated color touchscreen display with Wi-Fi and Bluetooth capabilities
- Automatic hardware detection through Matrix Auto-ID technology
- Support for Flowcode, MPLAB X, Arduino IDE, and other development environments
- Extensive range of sensor, communications, actuator, and interface boards
- Designed specifically for educational environments
- Fully compatible with existing EBlocks 2 downstream hardware
EBlocks3 helps bridge the gap between theory and practical application by allowing students to build real-world embedded systems using industry-relevant hardware. Learners can explore digital electronics, sensor integration, communications protocols, control systems, wireless technologies, and Internet of Things (IoT) applications through hands-on projects and experimentation.
The modular architecture allows instructors to create learning experiences that grow alongside student skill levels—from introductory electronics concepts through advanced embedded systems development and engineering design projects.
- Overview of the EBlocks3 platform architecture
- PIC, Arduino, ESP32, and FPGA programming solutions
- Communication and networking modules
- Sensor and actuator expansion boards
- Prototype and project development boards
- Wireless, RFID, Ethernet, CAN Bus, and IoT technologies
- Software integration and Flowcode support
- Technical specifications and system configurations
Build Confident Instructors. Strengthen Your Program.
Build confident instructors, strengthen your technical education program, and maximize your training equipment's value with Tech-Labs. Our instructor training services combine hands-on equipment instruction, curriculum integration, new instructor development, customized professional development, and preparation for SACA Silver and Gold certifications.
With nearly 50 years of experience supporting educators and industry, Tech-Labs helps instructors develop the technical expertise and classroom confidence needed to deliver engaging, industry-aligned training. The result is stronger instruction, greater certification attainment, improved student outcomes, and a more sustainable workforce-development program.
This brochure provides an overview of the FANUC CRX Series of collaborative robots, including available payloads, reaches, programming options, safety features, mounting configurations and technical specifications. The CRX lineup offers models for applications ranging from light-duty handling and assembly to palletizing, welding and painting.
Explore CRX applications such as machine tending, inspection, pick-and-place, packaging, grinding, dispensing and welding. The brochure also covers drag-and-drop programming, hand-guided teaching, FANUC vision and force-sensing options, food-grade models and the explosion-resistant CRX-10iA/L Paint cobot.
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Item Number:773-213DAC Worldwide's Hydraulic Sequence Valve Cutaway (773-213) is a sectioned hydraulic sequence valve example with a two-stage balanced piston design, which incorporates a commonly-encountered valve type manufactured by an industry leader.
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Item Number:273-840DAC Worldwide’s I/P Transducer Cutaway (273-840) is a detailed I/P converter cutaway that depicts a common current-to-pressure transducer used within industrial process control systems. This common piece of pneumatic control hardware is found in manufacturing facilities, petrochemical plants, refineries, and other similar industrial, commercial, and oil and gas applications.
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Amatrol's IGNITE: Mastering Manufacturing program teaches Industrial Internet of things (IIoT) & Industry 4.0 skills required for today's manufacturing careers.
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Item Number:ILS12.150DThe ILS12.150D is a free-standing platform with a materials processing envelope of 48" x 24" x 12" or 13,824 in³. The dual laser platform supports a power range of 10 to 150 watts (up to 75 watts with one 10.6µm CO2 laser; up to 150 watts with a second 10.6µm CO2 laser). The ILS12.150D also supports a single 9.3µm laser at 30, 50 or 75 watts (If a 9.3µm CO2 laser is installed, the maximum 10.6µm laser is 75 watts).
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Item Number:ILS12.75The ILS12.75 is a free-standing platform with a materials processing envelope of 48" x 24" x 12" or 13,824 in³. The single laser platform supports either one 10.6µm CO2 laser (10 to 75 watts) or one 9.3µm CO2 laser (30, 50 or 75 watts).
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Item Number:ILS9.150DThe ILS9.150D is a free-standing platform with a materials processing envelope of 36” x 24” x 12” or 10,368 in³. The dual laser platform supports a power range of 10 to 150 watts (up to 75 watts with one 10.6µm CO2 laser; up to 150 watts with a second 10.6µm CO2 laser).
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Item Number:ILS9.75The ILS9.75 is a free-standing platform with a materials processing envelope of 36” x 24” x 12” or 10,368 in³. The single laser platform supports either one 10.6µm CO2 laser (10 to 75 watts) or one 9.3µm CO2 laser (30, 50, or 75 watts).
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Item Number:iLSEach base can hold up to 12 modules to accommodate multiple applications and/or multiple students while still fitting through a standard doorway.
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Item Number:200-2202DAC Worldwide’s In-Line Friction-Type Pneumatic Clutch Cutaway (200-2202) depicts a sectioned industrial pneumatically-activated, spring-return, in-line, friction-type clutch for use in a classroom and laboratory training related to mechanical drives.
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Item Number:205-230In-line helical gear reducers have a unique set of benefits. They’re useful in higher horsepower applications where long-term efficiency is more important than initial costs, which can be higher for this type of gear reducer (although in-line reducers are less expensive than parallel shaft reducers).

















