Tehnilised dokumendid
Spetsifikatsioonid:
Brand
Wurth ElektronikInductance
10 mH
Series
WE-CMB HC
Test Frequency
10 kHz
DC Resistance
125mΩ
Maximum Current
2 A
Dimensions
23 x 13 x 28mm
Operating Temperature Range
-40°C → +125°C
Mounting Type
Radial
Voltage Rating
230V
Termination Style
Solder Pad
Maximum Operating Temperature
+125°C
Length
23mm
Depth
13mm
Minimum Operating Temperature
-40°C
Height
28mm
Päritoluriik
China
Toote üksikasjad
Wurth WE-CMB XS, M and XL Series Common Mode Chokes
From Wurth Elektronik, the WE-CMB series of common modes chokes are a compact solution delivering high suppression of asymmetrical interferences, even at low frequency ranges. WE-CMB series common mode chokes offer the highest possible current for their ultra compact size. WE-CMB common mode chokes feature broadband screening due to the anti-capacitance coiling technique that has been incorporated into the design.
Wurth Leaded Inductors (Chokes)
€ 274,50
€ 3,05 tk (pakis 90) (ilma käibemaksuta)
€ 340,38
€ 3,782 tk (pakis 90) (koos käibemaksuga)
90
€ 274,50
€ 3,05 tk (pakis 90) (ilma käibemaksuta)
€ 340,38
€ 3,782 tk (pakis 90) (koos käibemaksuga)
Lao andmed ajutiselt ei ole saadaval.
90
Lao andmed ajutiselt ei ole saadaval.
Tehnilised dokumendid
Spetsifikatsioonid:
Brand
Wurth ElektronikInductance
10 mH
Series
WE-CMB HC
Test Frequency
10 kHz
DC Resistance
125mΩ
Maximum Current
2 A
Dimensions
23 x 13 x 28mm
Operating Temperature Range
-40°C → +125°C
Mounting Type
Radial
Voltage Rating
230V
Termination Style
Solder Pad
Maximum Operating Temperature
+125°C
Length
23mm
Depth
13mm
Minimum Operating Temperature
-40°C
Height
28mm
Päritoluriik
China
Toote üksikasjad
Wurth WE-CMB XS, M and XL Series Common Mode Chokes
From Wurth Elektronik, the WE-CMB series of common modes chokes are a compact solution delivering high suppression of asymmetrical interferences, even at low frequency ranges. WE-CMB series common mode chokes offer the highest possible current for their ultra compact size. WE-CMB common mode chokes feature broadband screening due to the anti-capacitance coiling technique that has been incorporated into the design.