Ferrite Cores

Image Part Number Description / PDF Quantity Rfq
B66372B1000T001

B66372B1000T001

TDK EPCOS

CF-E70/33/32-1S

30

B65843A0200B057

B65843A0200B057

TDK EPCOS

FERRITE CORE EP 200NH T57 2PCS

0

E65/32/27-3C92

E65/32/27-3C92

FERROXCUBE

FERRITE CORE

114

B65839A0250E087

B65839A0250E087

TDK EPCOS

FERRITE CORE EP 250NH N87 2PCS

0

B67385G0000X187

B67385G0000X187

TDK EPCOS

FERRITE CORE U N87 1PC

40

B66325G0500X127

B66325G0500X127

TDK EPCOS

FERRITE CORE E N27 1PC

0

PQ26/25-3C95

PQ26/25-3C95

FERROXCUBE

FERRITE CORE 2PC SET

2715

B66317G0000X187

B66317G0000X187

TDK EPCOS

FERRITE CORE E N87 1PC

18163

TX55/32/18-3E6

TX55/32/18-3E6

FERROXCUBE

FERRITE CORES ROUND

14

B64290L0044X027

B64290L0044X027

TDK EPCOS

FERRITE CORE TOROID 1.02UH N27

2955

TX22/14/6.4-4C65

TX22/14/6.4-4C65

FERROXCUBE

FERRITE CORES ROUND

1024

PLT14/5/1.5/S-3C95

PLT14/5/1.5/S-3C95

FERROXCUBE

FERRITE CORE

1035

B66397G0000X197

B66397G0000X197

TDK EPCOS

FERRITE CORE ETD N97 1PC

269

B66482K0000X197

B66482K0000X197

TDK EPCOS

FERRITE CORE I N97 1PC

1040

ETD59/31/22-3C94

ETD59/31/22-3C94

FERROXCUBE

FERRITE CORE

181

4077375411

4077375411

Fair-Rite Products Corp.

77 SOLID ROD

175

3067990831

3067990831

Fair-Rite Products Corp.

67 ROD

16351

B66287G0000X197

B66287G0000X197

TDK EPCOS

FERRITE CORE ELP N97 1PC

995

B65813J0160A087

B65813J0160A087

TDK EPCOS

FERRITE CORE RM N87 2PCS

189

B64290L0044X065

B64290L0044X065

TDK EPCOS

FERRITE CORE TOROID 2.4UH T65

0

Ferrite Cores

1. Overview

Ferrite cores are ceramic compounds made from iron oxide and other metal oxides, sintered to form high-permeability magnetic materials. They exhibit low eddy current losses at high frequencies, making them ideal for electromagnetic interference (EMI) suppression, energy storage, and signal transmission in modern electronics. Their unique combination of high resistivity and magnetic properties enables efficient operation in power conversion systems, telecommunications, and automotive electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
EE/EI CoresHigh inductance, easy assemblySwitch-mode power supplies (SMPS)
RM CoresCompact design, low leakage inductanceDC-DC converters
PQ CoresHigh power handling, uniform magnetic pathAutomotive battery chargers
EP Cores360 winding space, mechanical stabilityLED drivers
Toroidal CoresLow electromagnetic radiation, high efficiencyRF filters, current sensors

3. Structure and Composition

Typical ferrite cores consist of:

  • Base material: Mn-Zn or Ni-Zn ferrite compounds
  • Geometric shapes: E/I, pot, toroid, planar, or custom geometries
  • Surface treatment: Coatings (epoxy, parylene) or tape wrapping for insulation
  • Dimensional tolerances: 1% to 3% depending on manufacturing process

4. Key Technical Specifications

ParameterDescriptionImportance
Initial Permeability ( i)Relative magnetic permeability at 10kHzDetermines inductance capability
Saturation Flux Density (Bs)Maximum magnetic flux before saturationLimits power handling capacity
Resistivity ( )Volume resistivity ( cm)Controls eddy current losses
Curie Temperature (Tc)Temperature threshold for magnetic lossDefines operational temperature limits
Dimensional ToleranceGeometric precision ( 0.05-0.2mm)Affects winding compatibility

5. Application Fields

  • Power Electronics: SMPS, inverters, EV chargers
  • Telecommunications: Broadband transformers, signal isolators
  • Automotive: On-board chargers, DC-DC converters
  • Consumer Electronics: LED ballasts, adapter transformers
  • Industrial: Motor drives, energy storage inductors

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TDK CorporationPC40 MaterialHigh Bs (510mT), low core loss
Ferroxcube3C90 Material i=2300, Tc=215 C
Magnetics Inc.R MaterialHigh stability (-20~125 C)
Changzhou FulltimeEE85/38/20Planar transformer core

7. Selection Guidelines

  1. Determine operational frequency (Mn-Zn for <5MHz, Ni-Zn for >5MHz)
  2. Calculate required AL value for inductance
  3. Verify Bs against peak current requirements
  4. Select dimensional compatibility with PCB/winding equipment
  5. Assess temperature stability requirements

8. Industry Trends

Key development directions include:

  • Miniaturization for high-frequency (>1MHz) operation
  • New materials with permeability >3000 and Bs >550mT
  • Integrated magnetics combining multiple functions
  • Environmental compliance (RoHS, halogen-free coatings)
  • AI-driven core optimization for EV powertrains

Market forecasts predict 6.8% CAGR through 2027, driven by 5G infrastructure and renewable energy systems.

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