Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
VishayTehnologie
MnO2
Capacitate
10µF
Tensiune
50V dc
Montare
Through Hole
Package/Case
R
Toleranta
±10%
Lungime
20.88mm
Dimensiuni
7.34 (Dia.) x 20.88mm
Serie
150D
Temperatura maxima de lucru
+125°C
Electrolyte Type
Solid
Lead Diameter
0.64mm
Frecventa minima de auto-rezonanta
-55°C
Tip terminal
Through Hole
Diametru
7.34mm
Toleranta
-10%
Leakage Current
3 μA
Toleranta
+10%
Tara de origine
Israel
Detalii produs
150D Series
Vishay 150D series tantalum case electrolytic capacitors are high performance, hermetically-sealed TANTALEX® capacitors. These capacitors offer low dissipation factor and exceptional operating stability in a plastic film insulated casing with solid tinned nickel wire leads.
The 150D series offers stable electrical parameters, high reliability and long service life; they are the suitable for use where volumetric efficiency is required.
P.O.A.
1
P.O.A.
Informatii despre stoc temporar indisponibile
1
Informatii despre stoc temporar indisponibile
Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
VishayTehnologie
MnO2
Capacitate
10µF
Tensiune
50V dc
Montare
Through Hole
Package/Case
R
Toleranta
±10%
Lungime
20.88mm
Dimensiuni
7.34 (Dia.) x 20.88mm
Serie
150D
Temperatura maxima de lucru
+125°C
Electrolyte Type
Solid
Lead Diameter
0.64mm
Frecventa minima de auto-rezonanta
-55°C
Tip terminal
Through Hole
Diametru
7.34mm
Toleranta
-10%
Leakage Current
3 μA
Toleranta
+10%
Tara de origine
Israel
Detalii produs
150D Series
Vishay 150D series tantalum case electrolytic capacitors are high performance, hermetically-sealed TANTALEX® capacitors. These capacitors offer low dissipation factor and exceptional operating stability in a plastic film insulated casing with solid tinned nickel wire leads.
The 150D series offers stable electrical parameters, high reliability and long service life; they are the suitable for use where volumetric efficiency is required.


