WE-MLS Series, Ferrite Beads and Chips

Results:
10
Manufacturer
Series
Impedance @ Frequency
Height (Max)
Size / Dimension
Package / Case
Number of Lines
DC Resistance (DCR) (Max)
Current Rating (Max)
Filter Type
Operating Temperature
Mounting Type
Ratings
Features
Results remaining10
Applied Filters:
WE-MLS
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ImageProduct DetailPriceAvailabilityECAD ModelHeight (Max)FeaturesMounting TypePackage / CaseRatingsOperating TemperatureFilter TypeDC Resistance (DCR) (Max)Number of LinesSeriesImpedance @ FrequencyCurrent Rating (Max)Size / Dimension
74273002
FERRITE BEAD 249 OHM RADIAL 4LN
1+
$1.7315
5+
$1.6354
10+
$1.5392
Quantity
4,068 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
Radial
-
-25°C ~ 125°C
-
-
4
WE-MLS
249 Ohms @ 100 MHz
-
0.441" L x 0.441" W (11.20mm x 11.20mm)
742730023
FERRITE BEAD 334 OHM RADIAL 4LN
1+
$3.2958
5+
$3.1127
10+
$2.9296
Quantity
1,000 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
Radial
-
-25°C ~ 125°C
-
-
4
WE-MLS
334 Ohms @ 100 MHz
-
0.441" L x 0.441" W (11.20mm x 11.20mm)
74273001
FERRITE BEAD 264 OHM RADIAL 3LN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
Radial
-
-25°C ~ 125°C
-
-
3
WE-MLS
264 Ohms @ 100 MHz
-
0.441" L x 0.441" W (11.20mm x 11.20mm)
742730021
FERRITE BEAD 170 OHM RADIAL 4LN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
Radial
-
-25°C ~ 125°C
-
-
4
WE-MLS
170 Ohms @ 100 MHz
-
0.441" L x 0.441" W (11.20mm x 11.20mm)
742730022
FERRITE BEAD 248 OHM RADIAL 4LN
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
Radial
-
-25°C ~ 125°C
-
-
4
WE-MLS
248 Ohms @ 100 MHz
-
0.441" L x 0.441" W (11.20mm x 11.20mm)
742730321
WE-MLS MULTILINE EMI SUPPRESSION
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.209" (5.30mm)
-
Through Hole
8-THD
-
-25°C ~ 125°C
Power Line
2mOhm
1
WE-MLS
150 Ohms @ 100 MHz
4A
0.441" L x 0.441" W (11.20mm x 11.20mm)
74273012
WE-MLS MULTILINE EMI SUPPRESSION
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.453" (11.50mm)
-
Through Hole
8-THD
-
-25°C ~ 125°C
Power Line
2mOhm
4
WE-MLS
249 Ohms @ 100 MHz
4A
0.428" L x 0.216" W (10.88mm x 5.49mm)
742730223
WE-MLS MULTILINE EMI SUPPRESSION
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.484" (12.30mm)
-
Through Hole
8-THD
-
-25°C ~ 125°C
Power Line
2mOhm
4
WE-MLS
334 Ohms @ 100 MHz
4A
0.441" L x 0.441" W (11.20mm x 11.20mm)
742730123
WE-MLS MULTILINE EMI SUPPRESSION
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.514" (13.05mm)
-
Through Hole
8-THD
-
-25°C ~ 125°C
Power Line
2mOhm
4
WE-MLS
334 Ohms @ 100 MHz
4A
0.441" L x 0.441" W (11.20mm x 11.20mm)
74273031
WE-MLS MULTILINE EMI SUPPRESSION
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
0.453" (11.50mm)
-
Through Hole
6-THD
-
-25°C ~ 125°C
Power Line
2mOhm
3
WE-MLS
264 Ohms @ 100 MHz
4A
0.300" L x 0.200" W (7.62mm x 5.08mm)

About  Ferrite Beads and Chips

Ferrite cores are specialized devices specifically engineered to mitigate high-frequency noise and electromagnetic interference (EMI). These cores are designed to be incorporated into electric circuits, offering effective noise suppression and improved signal integrity. When selecting a ferrite core, several key characteristics need to be considered. The first is the filter type, which can be differential, signal, or power, depending on the specific application requirements. The number of lines that the ferrite core will interact with is also an important consideration, as it determines the core's ability to suppress noise across multiple channels. Another crucial characteristic is the maximum current rating, which indicates the highest current that the ferrite core can handle without compromising its functionality. This specification ensures that the core is suitable for the intended circuit and prevents any potential damage due to excessive current flow. The impedance and specified frequency are essential parameters to consider when selecting a ferrite core. Impedance determines the opposition that the core presents to the flow of alternating current at a specific frequency range. Matching the impedance of the ferrite core to the circuit's impedance helps in achieving optimal noise suppression. Lastly, the mounting type should be chosen based on the circuit's design and requirements. Ferrite cores can be free-hanging, surface-mounted, or through-hole mounted, allowing for flexibility in installation and integration within the electric circuit. In summary, ferrite cores serve as effective tools for reducing high-frequency noise and electromagnetic interference in electric circuits. Their characteristics, such as filter type, number of lines, max current rating, impedance, specified frequency, and mounting type, play vital roles in ensuring proper noise suppression and improved signal integrity. By carefully selecting and integrating ferrite cores into circuits, engineers can enhance the overall performance and reliability of electronic systems.