Wurth, WE-CNSW, 1812 (4532M) SMD Common Mode Line Filter with a Ferrite Core, 1 μH ±25% Dual 1.2A Idc
Technical Document
Specifications
Brand
Wurth ElektronikInductance
1 μH
Maximum dc Current
1.2A
Package/Case
1812 (4532M)
Length
4.5mm
Depth
3.2mm
Height
2.8mm
Dimensions
4.5 x 3.2 x 2.8mm
Tolerance
±25%
Maximum DC Resistance
120mΩ
Series
WE-CNSW
Core Material
Ferrite
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
+125°C
Inductor Construction
Dual
Country of Origin
Taiwan, Province Of China
Product details
Wurth WE-CNSW SMD Series Common Mode Chokes
Wurth WE-CNSW common mode filters offer high common mode suppression at high frequency and the winding symmetry provides small influence on high speed signals. Offered with a range of rated currents and impedance values, suitable applications for these common mode filters include USB 2.0, Firewire, LVDS, LAN, high speed data lines and common mode noise sources.
Reflow soldering recommended
Common mode EMI noise suppressed at high frequencies
Wurth SMD Common Mode Chokes
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EGP 150.41
Each (In a Bag of 5) (ex VAT)
Standard
5
EGP 150.41
Each (In a Bag of 5) (ex VAT)
Standard
5
Technical Document
Specifications
Brand
Wurth ElektronikInductance
1 μH
Maximum dc Current
1.2A
Package/Case
1812 (4532M)
Length
4.5mm
Depth
3.2mm
Height
2.8mm
Dimensions
4.5 x 3.2 x 2.8mm
Tolerance
±25%
Maximum DC Resistance
120mΩ
Series
WE-CNSW
Core Material
Ferrite
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
+125°C
Inductor Construction
Dual
Country of Origin
Taiwan, Province Of China
Product details
Wurth WE-CNSW SMD Series Common Mode Chokes
Wurth WE-CNSW common mode filters offer high common mode suppression at high frequency and the winding symmetry provides small influence on high speed signals. Offered with a range of rated currents and impedance values, suitable applications for these common mode filters include USB 2.0, Firewire, LVDS, LAN, high speed data lines and common mode noise sources.
Reflow soldering recommended
Common mode EMI noise suppressed at high frequencies