Removing cerium oxide via washing prevents colloidal silica clumping during precision polishing, extending abrasive reuse cycles.
A magnetic recording medium uses a seed layer and under layer to achieve high signal-noise ratio.
A magnetic recording medium uses a specialized seed layer to form a granular structure with separated magnetic crystal grains.
Fatty acid lubricants concentrate at the magnetic layer interface to maintain running stability during long-term storage of low-frequency archive data.
A magnetic tape cartridge maintains controlled water absorption to ensure stable friction characteristics across varying environmental conditions.
A MgO-Ti(ON) interlayer enables epitaxial growth of magnetic recording layers via composite sputtering.
A magnetic tape cartridge design controls width differences and servo band intervals to maintain tracking accuracy.
NaCl barrier layer prevents grain boundary material diffusion into the underlayer, preserving L10 crystal ordering and improving thermal stability.
A single reel magnetic tape cartridge design manages width differences between outer and inner ends to maintain dimensional stability.
Piezoelectric MEMS actuator deforms a membrane region to move the read/write head, overcoming thermal actuator limits and increasing storage density.
A magnetic layer with controlled surface spacing and C-H concentration prevents head adhesion during high-speed operation.