Uploaded September 2018 | Updated September 2026, 3 hours ago
The ITER burning plasma is expected to reach 150 million °C. How are we going to confine it?
18 powerful superconducting magnets, known as Toroidal Field coils, will be powered with 68 000 A to generate a magnetic field of 11.8 Tesla (approximately 1 million times stronger the magnetic fields of the Earth!). In this “cage” we will entrap the energy of a small sun.
Europe will manufacture ten of the TF coils and Japan will produce eight plus one spare. They will be the biggest Niobium-tin (Nb3Sn) magnets ever produced. More than 600 people from 26 companies have collaborated with F4E, managing the European contribution to ITER, to produce the ten TF coils.
The ITER burning plasma is expected to reach 150 million °C. How are we going to confine it?
18 powerful superconducting magnets, known as Toroidal Field coils, will be powered with 68 000 A to generate a magnetic field of 11.8 Tesla (approximately 1 million times stronger the magnetic fields of the Earth!). In this “cage” we will entrap the energy of a small sun.
Europe will manufacture ten of the TF coils and Japan will produce eight plus one spare. They will be the biggest Niobium-tin (Nb3Sn) magnets ever produced. More than 600 people from 26 companies have collaborated with F4E, managing the European contribution to ITER, to produce the ten TF coils.










