Search Results

Keyword:F4E

Fusion for Energy completes full delivery of ITER cryopump distribution system

Fusion for Energy completes full delivery of ITER cryopump distribution system

The International Thermonuclear Experimental Reactor (ITER) will operate in an ultra-high vacuum environment. To prevent contamination inside the device, a set of cryopumps supplied by Europe will extract gas particles and alternate operation before and after plasma discharges, maintaining the vacuum vessel pressure at approximately one millionth of Earth's atmospheric pressure. The core of cryopump operation lies in the extremely low-temperature environment. Its internal panels will be cooled to 4 K, approximately minus 269 degrees Celsius, close to absolute zero, to capture gas particles; they are then warmed to release and expel the particles. To precisely control this process, Europe is also supplying ITER with the Front-End Cryopump Distribution System (FECDS), which delivers helium at specific doses and temperatures to the cryopumps...

2026-08-12

Europe Completes Manufacturing of JT-60SA Pellet Centrifuge Accelerator

Europe Completes Manufacturing of JT-60SA Pellet Centrifuge Accelerator

The European Fusion Energy Organization (F4E) recently announced progress on key components of a new pellet injection system for the upgrade of the JT-60SA device. The centrifuge accelerator, manufactured by Sener, has been completed and delivered to the Max Planck Institute for Plasma Physics (IPP). It will subsequently be integrated with other components of the pellet injection system and undergo testing. The operation of fusion devices relies on the continuous supply of hydrogen isotope fuel. In devices such as JT-60SA and the International Thermonuclear Experimental Reactor (ITER), the pellet injection system is used to fuel the plasma and assist in controlling plasma instabilities. The system typically consists of three parts: preparation...

2026-07-29