Ferrite Disks and Plates

Image Part Number Description / PDF Quantity Rfq
FPL100/100/5-BH1T

FPL100/100/5-BH1T

KEMET

FERRITE PLATE FOR WIRELESS POWER

0

FPL240/60/10-BH1T

FPL240/60/10-BH1T

KEMET

FERRITE PLATE FOR WIRELESS POWER

0

2644236301

2644236301

Fair-Rite Products Corp.

FERRITE PLATE 22.6MMX7.6MMX3.4MM

63

MP0591-200

MP0591-200

Laird - Performance Materials

FERRITE PLATE 24MO SHLFLIFE

7835

2644373841

2644373841

Fair-Rite Products Corp.

FERRITE PLATE 20.3MMX10MMX3.2MM

2778

MP0760-100

MP0760-100

Laird - Performance Materials

FERRITE EMI PLATE 19.3X19.3X1.27

4070

FPL240/60/12-BH1T

FPL240/60/12-BH1T

KEMET

FERRITE PLATE FOR WIRELESS POWER

0

FPL100/100/8-BH1T

FPL100/100/8-BH1T

KEMET

FERRITE PLATE FOR WIRELESS POWER

0

HM0787-200

HM0787-200

Laird - Performance Materials

FERRITE EMI DISC 20MM X 1.91MM

0

MP1040-200

MP1040-200

Laird - Performance Materials

FERRITE EMI PLT 26.42X26.42X1.91

34736

2644236501

2644236501

Fair-Rite Products Corp.

FERRITE PLATE 22.6MMX7.6MMX6.9MM

1431

7427414

7427414

Würth Elektronik Midcom

WE-CPU EMI SUPPRESSION CPU FERRI

0

2644236601

2644236601

Fair-Rite Products Corp.

FERRITE PLATE 36.3MMX7.6MMX6.9MM

442

MM0787-200

MM0787-200

Laird - Performance Materials

FERRITE EMI DISC 20MM X 1.91MM

0

MP1496-000

MP1496-000

Laird - Performance Materials

FERRITE EMI PLATE 38MMX38MMX2MM

115

MP2106-0M0

MP2106-0M0

Laird - Performance Materials

FERRITE PLATE 53MMX53MMX2.5MM

0

33P3839-0M0

33P3839-0M0

Laird - Performance Materials

FERRITE PLATE 97.5MMX50MMX1.1MM

559

MM1400-300

MM1400-300

Laird - Performance Materials

FERRITE EMI DISC 35.56MMX2.54MM

0

HP1040-200

HP1040-200

Laird - Performance Materials

FERRITE EMI PLT 26.42X26.42X1.91

408

MM0650-100

MM0650-100

Laird - Performance Materials

FERRITE EMI DISC 16.51MMX1.27MM

1800

Ferrite Disks and Plates

1. Overview

Ferrite disks and plates are passive electronic components made from sintered iron oxide composites with nickel, zinc, or manganese additives. They exhibit high magnetic permeability and electrical resistivity, making them ideal for suppressing electromagnetic interference (EMI) in electronic circuits. These components play a critical role in modern electronics by mitigating high-frequency noise in power lines, signal cables, and RF systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Manganese-Zinc (MnZn) FerriteHigh permeability ( i: 2000-15,000), low-frequency operation (10kHz-5MHz)Power supply filters, transformer cores
Nickel-Zinc (NiZn) FerriteModerate permeability ( i: 100-2000), high-frequency stability (1MHz-3GHz)RFID antennas, wireless charging systems
Flexible Ferrite SheetsLow-profile, adhesive-backed constructionPortable electronics, cable management

3. Structure and Composition

Typical construction features:

  • Disk/plate geometry with diameters ranging from 5mm to 50mm
  • Material composition: Fe O (60-70%) + Mn-Zn/Ni-Zn additives
  • Surface treatment: Epoxy coating (standard) or PTFE for high-temperature environments
  • Porosity control: 10-15% to optimize magnetic hysteresis

4. Key Technical Parameters

ParameterDescriptionImportance
Initial Permeability ( i)Measures magnetic responsivenessDetermines noise suppression efficiency
Cutoff Frequency (MHz)Effective operating frequency rangeMatches component to target EMI spectrum
Impedance (Z) @ 100MHzComplex resistance value ( )Quantifies noise attenuation capability
Curie Temperature ( C)Thermal threshold for magnetic propertiesDefines operational temperature limits
Dimensional ToleranceManufacturing precision ( 0.05mm)Ensures mechanical compatibility

5. Application Areas

Key industries include:

  • Consumer Electronics: Mobile phone chargers, HDMI cables
  • Telecommunications: 5G base stations, fiber optic transceivers
  • Automotive: EV battery management systems, ADAS sensors
  • Industrial: CNC machine controllers, power inverters

6. Leading Manufacturers

ManufacturerKey ProductsSpecialization
TDK CorporationPC400 series MnZn coresHigh-power applications
MAGNETICS by Arnold0K41 material NiZn disksAerospace-grade components
Ferrite InternationalFlexFerrite adhesive sheetsCustom-shaped solutions

7. Selection Guidelines

Key considerations:

  • Frequency matching: Select cutoff frequency >1.5 target noise frequency
  • Thermal management: Choose Curie temperature >1.2 expected operating temperature
  • Mechanical constraints: Account for 3D mounting space and weight limits
  • Cost optimization: Balance permeability requirements with material costs

Case study: Electric vehicle charging stations typically use MnZn disks with i=5000 to suppress 150kHz switching noise.

8. Industry Trends

Emerging developments:

  • Nanostructured ferrites for THz-range operation
  • Embedded ferrite plates in PCB substrates
  • Lead-free formulations complying with RoHS 3.0
  • AI-driven permeability optimization algorithms
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