Learn. Build. Understand. Powerfully.
1 x
TWIST board
1 x
Pedagogical Box
1 x
BNC extensions
Plenty
Examples
Twist EDU is a complete educational development kit built around the powerful and modular Twist Power Module. Designed for the classroom, it combines real hardware experimentation with structured courseware to give students hands-on experience.
The included Twist board is embedded in a rugged plug-and-play educational enclosure, specifically built for student use. All high-voltage and low-voltage interfaces are safely exposed through banana plugs, making lab sessions safe, fast to deploy, and easy to troubleshoot.
The Twist EDU kit comes with structured, modular lessons and hands-on experiments developed in collaboration with educators and engineers. Delivered in clear stages
Use the twist board to create an AC voltage sine-wave with 23VRMS in this example.
From any 40VDC source, connect a 30Ω load.
Use the ownverter board to drive a permanent magnet motor using its hall effect sensors.
The hall effect sensors are use to drive a field oriented control algorithm. You can implement more advanced control systems from it.
Use the twist to connect a DC source to any compatible load.
From any off the shelf lab supply, you can deliver power to your target load. In this example you can drive it as a buck (step down) converter.
Use the spin board to generate up to 5 (five) pairs of high resolution (180ps) PWM signals.
Connect the SPIN board to your USB and upload the code. You can set dead time, phase shift, frequency and duty cycle.
Twist EDU builds on the same open-source philosophy as Twist. All hardware, firmware, and learning materials are fully editable and community-supported.
• Suitable for universities, technical schools, and independent learning
• Encourage student contributions via GitHub
• Join the growing community of educators and makers on Discord
With Twist EDU, students move from theoretical equations to real-time experimentation, gaining a deeper, more practical understanding of modern energy systems.
| Weight | N/A |
|---|---|
| Dimensions | N/A |
Avec des exemples comme la modulation de l’énergie pour la mobilité ou la maximisation de la production d’énergies renouvelables, les etudiants s’engagent plus taclement et developpent des competences complexes plus rapidement.
Noémi Lanciotti
PRAG en GEII, IUT d’EvIy