Invention Grant
- Patent Title: Mn-Zn-co ferrite
- Patent Title (中): Mn-Zn-Co铁氧体
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Application No.: US13146808Application Date: 2010-01-29
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Publication No.: US08668839B2Publication Date: 2014-03-11
- Inventor: Hirofumi Yoshida , Yukiko Nakamura , Satoshi Goto
- Applicant: Hirofumi Yoshida , Yukiko Nakamura , Satoshi Goto
- Applicant Address: JP Tokyo
- Assignee: JFE Chemical Corporation
- Current Assignee: JFE Chemical Corporation
- Current Assignee Address: JP Tokyo
- Agency: Young & Thompson
- Priority: JP2009-038464 20090220
- International Application: PCT/JP2010/051650 WO 20100129
- International Announcement: WO2010/095522 WO 20100826
- Main IPC: C04B35/38
- IPC: C04B35/38 ; H01F1/34 ; C01G49/00

Abstract:
Disclosed is a MnZnCo-based ferrite consisting of base constituents, accessory constituents, and inevitable impurities, which MnZnCo-based ferrite is characterized by adding silicon oxide (SiO2 conversion): 50-400 mass ppm and calcium oxide (CaO conversion): 1000-4000 mass ppm as secondary constituents to base constituents consisting of iron oxide (Fe2O3 conversion): 51.0-53.0 mol %, zinc oxide (ZnO conversion): greater than 12.0 mol % and less than 18.0 mol %, cobalt oxide (CoO conversion): 0.04-0.60 mol %, and manganese oxide (MnO conversion): remainder, and keeping phosphorus, boron, sulfur, and chlorine of the inevitable impurities to phosphorous: less than 3 mass ppm, boron: less than 3 mass ppm, sulfur: less than 5 mass ppm, and chlorine: less than 10 mass ppm. This MnZnCo-based ferrite has the superior characteristics of always having incremental permeability [mu]? of 2000 or greater across a wide temperature range of −40 DEG C. to 85 DEG C. when a 33 A/m direct current magnetic field is applied, even in cases when formed into a small core with outside diameter of approximately 2-6 mm.
Public/Granted literature
- US20110278491A1 MN-ZN-CO FERRITE Public/Granted day:2011-11-17
Information query
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