Documentos Técnicos
Especificações
Brand
Wurth ElektronikInductance
330 μH
Maximum dc Current
1.2A
Mounting Type
Radial
Maximum DC Resistance
370mΩ
Tolerance
±10%
Diameter
11mm
Height
15mm
Dimensions
11 (Dia.) x 15mm
Core Material
Ferrite
Maximum Self Resonant Frequency
2MHz
Lead Pitch
4 x 5mm
Series
WE-TIF
Terminal Type
Radial Leaded
Lead Diameter
0.8mm
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
País de Origem
China
Detalhes do produto
Wurth WE-TIF Series Radial Leaded Wirewound Inductors
WE-TIF wire wound inductors from Wurth Elektronik are constructed from a high saturation core material and feature a maximum current up to 3.1 A. WE-TIF wire wound inductors have four pins. The use of two extra pins ensures higher mechanical stability than standard two-pin designs
Wurth Leaded Inductors (Chokes)
R$ 190,20
R$ 38,04 Each (In a Bag of 5) (Sem VAT)
5
R$ 190,20
R$ 38,04 Each (In a Bag of 5) (Sem VAT)
Informações de estoque temporariamente indisponíveis.
5
Informações de estoque temporariamente indisponíveis.
| Quantidade | Preço unitário | Per Saco |
|---|---|---|
| 5 - 45 | R$ 38,04 | R$ 190,20 |
| 50 - 120 | R$ 32,59 | R$ 162,95 |
| 125 - 245 | R$ 29,39 | R$ 146,95 |
| 250 - 1275 | R$ 27,55 | R$ 137,75 |
| 1280+ | R$ 24,06 | R$ 120,30 |
Documentos Técnicos
Especificações
Brand
Wurth ElektronikInductance
330 μH
Maximum dc Current
1.2A
Mounting Type
Radial
Maximum DC Resistance
370mΩ
Tolerance
±10%
Diameter
11mm
Height
15mm
Dimensions
11 (Dia.) x 15mm
Core Material
Ferrite
Maximum Self Resonant Frequency
2MHz
Lead Pitch
4 x 5mm
Series
WE-TIF
Terminal Type
Radial Leaded
Lead Diameter
0.8mm
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-40°C
País de Origem
China
Detalhes do produto
Wurth WE-TIF Series Radial Leaded Wirewound Inductors
WE-TIF wire wound inductors from Wurth Elektronik are constructed from a high saturation core material and feature a maximum current up to 3.1 A. WE-TIF wire wound inductors have four pins. The use of two extra pins ensures higher mechanical stability than standard two-pin designs


