Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
Wurth ElektronikInductanta
1 mH
Maximum dc Current
750mA
Timp montare
Radial
Maximum DC Resistance
980mΩ
Toleranta
±5%
Diametru
11mm
Inaltime
17mm
Dimensiuni
11 (Dia.) x 17mm
Material de baza
Ferrite
Frecventa maxima de auto-rezonanta
1MHz
Pitch de plumb
6.5mm
Serie
WE-TIF
Temperatura maxima de lucru
+125°C
Temperatura minima de lucru
-40°C
Tip terminal
Radial Leaded
Lead Diameter
0.8mm
Tara de origine
China
Detalii produs
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)
€ 13,70
€ 1,37 Buc. (Intr-un pachet de 10) (fara TVA)
€ 16,58
€ 1,658 Buc. (Intr-un pachet de 10) (cu TVA)
10
€ 13,70
€ 1,37 Buc. (Intr-un pachet de 10) (fara TVA)
€ 16,58
€ 1,658 Buc. (Intr-un pachet de 10) (cu TVA)
Informatii despre stoc temporar indisponibile
10
Informatii despre stoc temporar indisponibile
Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
Wurth ElektronikInductanta
1 mH
Maximum dc Current
750mA
Timp montare
Radial
Maximum DC Resistance
980mΩ
Toleranta
±5%
Diametru
11mm
Inaltime
17mm
Dimensiuni
11 (Dia.) x 17mm
Material de baza
Ferrite
Frecventa maxima de auto-rezonanta
1MHz
Pitch de plumb
6.5mm
Serie
WE-TIF
Temperatura maxima de lucru
+125°C
Temperatura minima de lucru
-40°C
Tip terminal
Radial Leaded
Lead Diameter
0.8mm
Tara de origine
China
Detalii produs
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


