Tehniskie dokumenti
Specifikācija
Brand
Wurth ElektronikInductance
450 μH
Maximum dc Current
6.5A
Mounting Type
Through Hole
Maximum DC Resistance
8.1mΩ
Tolerance
±30%
Length
18.5mm
Depth
14.5mm
Height
22mm
Dimensions
18.5 x 14.5 x 22mm
Lead Pitch
5mm
Series
WE-CMB HC
Lead Diameter
1mm
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
Terminal Type
Through Hole
Produkta apraksts
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)
€ 6,90
€ 6,90 Katrs (bez PVN)
€ 8,35
€ 8,35 Katrs (Ieskaitot PVN)
Standarts
1
€ 6,90
€ 6,90 Katrs (bez PVN)
€ 8,35
€ 8,35 Katrs (Ieskaitot PVN)
Standarts
1
Noliktavas stāvoklis patreiz nav pieejams
Lūdzu pārbaudiet vēlreiz vēlāk
Daudzums | Vienības cena |
---|---|
1 - 9 | € 6,90 |
10 - 99 | € 6,70 |
100 - 249 | € 5,00 |
250 - 499 | € 4,90 |
500+ | € 4,70 |
Tehniskie dokumenti
Specifikācija
Brand
Wurth ElektronikInductance
450 μH
Maximum dc Current
6.5A
Mounting Type
Through Hole
Maximum DC Resistance
8.1mΩ
Tolerance
±30%
Length
18.5mm
Depth
14.5mm
Height
22mm
Dimensions
18.5 x 14.5 x 22mm
Lead Pitch
5mm
Series
WE-CMB HC
Lead Diameter
1mm
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
Terminal Type
Through Hole
Produkta apraksts
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.