• Patent Title: Ferroelectric storage apparatus and manufacturing method of conductive probe
  • Application No.: US18636662
    Application Date: 2024-04-16
  • Publication No.: US12322427B2
    Publication Date: 2025-06-03
  • Inventor: Masaaki Yanagisawa
  • Applicant: Resonac Corporation
  • Applicant Address: JP Tokyo
  • Assignee: Resonac Corporation
  • Current Assignee: Resonac Corporation
  • Current Assignee Address: JP Tokyo
  • Agency: IPUSA, PLLC
  • Priority: JP2020-219654 20201228,JP2020-219655 20201228,JP2020-219656 20201228,JP2020-219657 20201228,JP2020-219658 20201228,JP2020-219659 20201228,JP2020-219660 20201228,JP2020-219661 20201228,JP2020-219662 20201228,JP2020-219663 20201228,JP2020-219664 20201228,JP2020-219665 20201228,JP2021-050640 20210324,JP2021-050641 20210324,JP2021-068376 20210414,JP2021-098592 20210614,JP2021-101046 20210617,JP2021-117508 20210716,JP2021-160168 20210929
  • Main IPC: G11B9/02
  • IPC: G11B9/02 G11C11/22 G11C11/56 G11B5/00
Ferroelectric storage apparatus and manufacturing method of conductive probe
Abstract:
A ferroelectric storage apparatus includes: a ferroelectric recording medium; a conductive probe configured to write information to and read information from the ferroelectric recording medium; a probe slider configured to cause the conductive probe to travel by floating above a surface of the ferroelectric recording medium; a ferroelectric recording medium driver configured to rotate the ferroelectric recording medium; and a recording-and-reproduction signal processor configured to process a write signal and a read signal of information transmitted to and received from the conductive probe. The conductive probe includes: a base body constituted by a conductive material; an insulating layer formed on the base body and includes a through hole: and a needle-shaped electrode formed in a cone shape on the base body in the through hole. A portion of the needle-shaped electrode protrudes from a surface of the insulating layer.
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