Ferrite Disks and Plates

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33P2098-0M0
FERRITE PLATE 53.3X53.3X2.5MM
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33P
Ferrite Plate
2.098" L x 2.098" W (53.30mm x 53.30mm)
0.098" (2.50mm)
MP0760-1B0
FERRITE PLATE 19.3X19.3X1.27MM
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MP
Ferrite Plate
0.760" L x 0.760" W (19.30mm x 19.30mm)
0.050" (1.27mm)
MP0590-200
FERRITE EMI PLATE 21MMX15MMX2MM
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-
Ferrite Plate
0.827" L x 0.591" W (21.00mm x 15.00mm)
0.079" (2.00mm)
MP0512-200
FERRITE EMI PLATE 13MMX13MMX2MM
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-
Ferrite Plate
0.512" L x 0.512" W (13.00mm x 13.00mm)
0.079" (2.00mm)
MM0590-0B0
FERRITE DISC 97.5MMX50MMX1.1MM
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MM
Ferrite Disk
-
-
MP0551-210
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MP
Ferrite Plate
0.551" L x 0.827" W (14.00mm x 21.00mm)
0.079" (2.00mm)
MM0650-100
FERRITE EMI DISC 16.51MMX1.27MM
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Ferrite Disk
0.650" Dia (16.51mm)
0.050" (1.27mm)
MP0350-000
FERRITE EMI PLT 26.42X8.89X1.27
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Ferrite Plate
1.040" L x 0.350" W (26.42mm x 8.89mm)
0.050" (1.27mm)
MP2126-0M0
FERRITE PLATE 53.80X53.80X1.1MM
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MP
Ferrite Plate
2.118" L x 2.118" W (53.80mm x 53.80mm)
0.043" (1.10mm)
FPL100/100/6-BH1T
FERRITE PLATE FOR WIRELESS POWER
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FPL
Ferrite Plate
3.937" L x 3.937" W (100.00mm x 100.00mm)
0.236" (6.00mm)
SB28B2100
FERRITE PLATE 53.34MM X 53.34MM
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Saddle Beads®
Ferrite Plate
2.100" L x 2.100" W (53.34mm x 53.34mm)
0.250" (6.35mm)
7427419
WE-CPU EMI SUPPRESSION CPU FERRI
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WE-CPU
Ferrite Plate
1.969" L x 0.709" W (50.00mm x 18.00mm)
0.059" (1.50mm)
FPL150/100/20-BH1T
FERRITE PLATE FOR WIRELESS POWER
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FPL
Ferrite Plate
5.906" L x 3.937" W (150.00mm x 100.00mm)
0.787" (20.00mm)
FPL150/100/16-BH1T
FERRITE PLATE FOR WIRELESS POWER
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FPL
Ferrite Plate
5.906" L x 3.937" W (150.00mm x 100.00mm)
0.630" (16.00mm)
MP1496-000
FERRITE EMI PLATE 38MMX38MMX2MM
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Ferrite Plate
1.496" L x 1.496" W (38.00mm x 38.00mm)
0.079" (2.00mm)
2644373941
FERRITE PLATE 21.6MM X 11.65MM
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Ferrite Plate
0.850" L x 0.459" W (21.60mm x 11.65mm)
0.060" (1.52mm)
MP1040-200
FERRITE EMI PLT 26.42X26.42X1.91
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MP
Ferrite Plate
1.040" L x 1.040" W (26.42mm x 26.42mm)
0.075" (1.91mm)
MP0433-0B0
FERRITE PLATE 11MMX11MMX1.96MM
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MP
Ferrite Plate
0.433" L x 0.433" W (11.00mm x 11.00mm)
0.077" (1.95mm)
HM0787-200
FERRITE EMI DISC 20MM X 1.91MM
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Ferrite Disk
0.787" Dia (20.00mm)
0.075" (1.91mm)
SB28B2100-1AB
FERRITE PLATE 53.34MM X 53.34MM
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PCB Symbol, Footprint & 3D Model
Saddle Beads®
Ferrite Plate
2.100" L x 2.100" W (53.34mm x 53.34mm)
0.100" (2.54mm)

Ferrite Disks and Plates

Ferrite disks and plates are versatile components that offer a straightforward and economical solution for mitigating radiated and inductively coupled electromagnetic interference (EMI). These components can be utilized in two primary ways: as inductively coupled components or as EMI shields. When used as inductively coupled components, ferrite disks and plates are placed near the EMI source or along the path of the interfering signal. By doing so, they effectively absorb and dissipate the magnetic energy generated by the EMI source, reducing its impact on nearby circuits or sensitive equipment. This method is particularly useful for minimizing the effects of EMI in proximity to the source. Alternatively, ferrite disks and plates can also function as EMI shields. In this configuration, they are installed directly on the EMI source, creating a physical barrier that blocks the transmission of unwanted electromagnetic radiation. This shielding capability helps prevent the EMI from spreading and affecting nearby circuits or devices, thereby maintaining signal integrity and system performance. Ferrite disks and plates are known for their excellent magnetic properties, such as high permeability and low electrical conductivity. These characteristics enable them to efficiently absorb and dissipate the magnetic energy associated with EMI, effectively suppressing its impact. Furthermore, their compact size and simple installation make them a convenient choice for various applications. In summary, ferrite disks and plates offer a cost-effective solution for addressing radiated and inductively coupled electromagnetic interference. They can be utilized as inductively coupled components or EMI shields, providing options for reducing EMI at the source or preventing its transmission to sensitive circuits or devices. With their excellent magnetic properties, these components contribute to improved signal integrity and overall system performance.