Segmented grooved coils join mechanically and electrically to build lower-complexity magnetic chambers that confine fields in arbitrary shapes.
Balanced Type-II superconducting coil geometry and pulse shaping cut remanent fields and thermal noise in pulsed MRI.
Silica-filled epoxy with phenylamino silane stabilizes thermal expansion, reduces stress, and suppresses quenching in superconducting coils.
Layered resin and semi-cured fiber sheets release interface strain, limiting heat transfer to the wire and reducing coil quenching.
A pulse tube cooled magnet removes liquid helium dependence, enabling compact NMR installation, lower upkeep, and faster field stabilization.
Asymmetric coil spacing and a bent ferromagnetic yoke enable 70°+ particle beam bending in compact gantries while preserving beam circularity.
Continuous mandrel winding removes solder joints in stacked HTS coils, preserving critical current and mechanical stability in compact high-field magnets.
Structural partitions between superconducting coil turns transfer Lorentz forces to the housing, reducing strain while preserving current capacity.
Co-wound insulated conductors create a near-zero-inductance loop that speeds quench response and limits mechanical damage in superconducting magnets.