FW Series, Ferrite Cores

Results:
7
Manufacturer
Series
Inductance Factor (Al)
Effective Area (Ae) mm²
Height
Effective Length (le) mm
Diameter
Tolerance
Material
Core Type
Supplier Device Package
Effective Permeability (µe)
Effective Magnetic Volume (Ve) mm³
Length
Gap
Initial Permeability (µi)
Finish
Width
Minimum Core Cross Section (Amin) mm²
Core Factor (ΣI/A) mm⁻¹
Results remaining7
Applied Filters:
FW
Select
ImageProduct DetailPriceAvailabilityECAD ModelSupplier Device PackageLengthToleranceSeriesWidthCore TypeDiameterGapEffective Area (Ae) mm²FinishHeightEffective Permeability (µe)Core Factor (ΣI/A) mm⁻¹Minimum Core Cross Section (Amin) mm²Effective Magnetic Volume (Ve) mm³Initial Permeability (µi)MaterialInductance Factor (Al)Effective Length (le) mm
LRF251510MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.114" (28.30mm)
Ungapped
41
Uncoated
0.484" (12.30mm)
-
-
-
-
-
Nanocrystalline
25.9 µH
63.8
LRF322015MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.386" (35.20mm)
Ungapped
69
Uncoated
0.681" (17.30mm)
-
-
-
-
-
Nanocrystalline
33.1 µH
80.9
LRF372315MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.594" (40.50mm)
Ungapped
83
Uncoated
0.709" (18.00mm)
-
-
-
-
-
Nanocrystalline
35.6 µH
93.3
LRF462715MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.945" (49.40mm)
Ungapped
114
Uncoated
0.709" (18.00mm)
-
-
-
-
-
Nanocrystalline
38.7 µH
114.7
LRF462725MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.945" (49.40mm)
Ungapped
190
Uncoated
1.102" (28.00mm)
-
-
-
-
-
Nanocrystalline
64.6 µH
114.7
LRF624520MKDX
COMMON MODE COILS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
2.598" (66.00mm)
Ungapped
136
Uncoated
0.945" (24.00mm)
-
-
-
-
-
Nanocrystalline
32.3 µH
168.1
LRF251515MKDX
COMMON MODE COILS
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
-
FW
-
Toroid
1.114" (28.30mm)
Ungapped
63
Uncoated
0.689" (17.50mm)
-
-
-
-
-
Nanocrystalline
39.2 µH
63.8

About  Ferrite Cores

Ferrite cores are an essential component used in the winding of transformers and other wound components. These cores are designed with a specific chemical composition that helps to minimize the occurrence of eddy currents, which can negatively impact the performance of magnetic devices. Ferrite cores are available in various form factors to accommodate different application requirements. Some common form factors include E-shaped cores, toroidal cores, ER cores, multi-hole cores, and more. Each form factor has its own unique characteristics and benefits, making them suitable for specific applications. Furthermore, ferrite cores come in a wide range of sizes to cater to different design needs. The size of the core is an important parameter to consider as it directly affects the overall dimensions and performance of the magnetic device. When selecting a ferrite core, key parameters to consider are the size, form factor or core type, and inductance factor. The size of the core should be chosen based on the space constraints and power handling requirements of the application. The form factor or core type should align with the design goals and electrical specifications of the device. Lastly, the inductance factor, which is determined by the core material and geometry, plays a crucial role in achieving the desired electrical characteristics of the magnetic component. By carefully considering these parameters and selecting the appropriate ferrite core, engineers can optimize the performance, efficiency, and reliability of their magnetic devices. Ferrite cores play a vital role in the construction of transformers and other wound components, enabling efficient power transfer and electromagnetic compatibility in a wide range of electronic and electrical applications.