This cutaway vividly demonstrates the simplicity and reliability of an external gear pump. Students can rotate the shaft to watch the gears mesh and unmesh while observing how oil is carried around the housing. It’s an excellent teaching tool for introducing gear pump operation, volumetric efficiency, and wear patterns.
This two-stage D08 valve cutaway reveals internal flow paths, spool movement, and the pilot-stage architecture in a way that is impossible to see in real equipment. Students gain a clear understanding of how pilot pressure shifts the spool and how the valve can be configured for internal or external pilot operation. Ideal for troubleshooting and advanced valve instruction.
With a clear acrylic cylinder barrel, this model exposes the piston, rod, and sealed chamber areas so students can see how a cylinder creates force and motion. Breathers on the ports allow smooth manual movement, making it easy to demonstrate extension, retraction, and area-based force differences. A perfect introductory cylinder teaching tool.
The EM‑145S‑HN03 engine mounted on a swivel stand is purpose‑built for hands‑on student training in engine inspection, disassembly, measurement, and reassembly. The engine is securely supported by a heavy‑duty rotating stand with an automatic locking mechanism, ensuring safe and effortless 360‑degree rotation. A robust steel mounting plate provides full access to critical components, such as the rear main seal and flywheel. Each engine includes a flywheel suited to the application. The starting station supplies all required systems and connections, enabling reliable live operation for every swivel‑mounted engine.
Imagine your classroom buzzing with excitement as students tackle real-world electric vehicle technology. With the EV-2000, complex heat pump systems become approachable and hands-on, making advanced concepts engaging and accessible. Give your students a competitive edge and position your school as a leader—choose the EV-2000, the essential training solution for tomorrow’s EV professionals.
The EM-123-TY05 Brake Trainer for Hydraulic Diagnosis, based on a Toyota platform, is a comprehensive training tool for teaching and assessing brake service skills. Built with OEM components, multiple pedal sensations (soft, hard, spongy) can be reproduced, and a complete diagnosis be performed. Equipped with an integrated driver seat and hydraulic force gauges on all four wheels, trainer offers a practical, safe, and realistic experience for mastering modern braking systems.
Empower your students with the skills that matter. The EV-100 Motor Kit transforms your classroom into an interactive lab where theory meets hands-on application. Students don’t just learn, they build, test, and explore real 3-phase motor technology used in electric vehicles and renewable energy systems. Safe, engaging, and curriculum-ready, this kit develops critical thinking, problem-solving, and technical confidence. Whether you're teaching STEM, trades, or engineering, the EV-100 gives your students a competitive edge with real-world experience they can see, touch, and understand, preparing them for the careers of tomorrow.
The ConsuLab MP-1918-2S is a CAN Bus Multiplex trainer that communicates in J-1939 protocol. Digital and analog inputs and outputs can be activated. Analog signals can be displayed using the J-1939 display. The trainer utilizes the “Moduponent®” design feature which allows unlimited expansion capabilities. This unit is equipped with an integrated electronic fault box containing 12 faults.
This cutaway gives learners a complete internal view of an over-center axial piston pump, including the swashplate, pistons, pressure relief valve, and charge pump assembly. With multiple strategic cutaways and a manual rotation knob, students can visualize displacement changes and internal oil paths as the pump cycles. Ideal for teaching pump control, pressure compensation, and charge circuit operation.
Turn your classroom into a hands-on electric motor lab with the EV-100 Class Set of 12 . This complete package allows an entire class to assemble, operate, and experiment with real brushless DC motors while exploring the principles behind electric vehicles, mechatronics, and renewable energy technologies. Students wind coils, wire circuits, test motor performance, and see firsthand how electrical energy is converted into mechanical motion, transforming abstract concepts into tangible learning experiences.