Documente tehnice
Specificatii
Marca
KEMETTehnologie
Polymer
Capacitate
150µF
Dielectric
Tantalum
Tensiune
6.3V dc
Timp montare
Surface Mount
Package/Case
3528-21
Rezistenta in serie
45mΩ
Toleranta
±20%
Lungime
3.5mm
Adancime
2.8mm
Inaltime
1.9mm
Temperatura maxima de lucru
+105°C
Dimensiuni
3.5 x 2.8 x 1.9mm
Serie
T520
Electrolyte Type
Solid
Dissipation Factor
8%
Temperatura minima de lucru
-55°C
Leakage Current
95 μA
Detalii produs
T520 Series
KEMET T520 Series (KO-CAP) polymer tantalum capacitors offer the best features of multilayer ceramic (low ESR, high frequency capacitance retention), aluminium electrolytic (higher capacitance, benign failure mode), and proven solid tantalum technology (volumetric efficiency, surface mount capability, extremely long life).
The KEMET T520 Organic Capacitor (KO-CAP) is a tantalum capacitor with a Ta anode and Ta2 O5 dielectric. A conductive organic polymer replaces the traditionally used cathode plate of the capacitor. This results in very low ESR and improved capacitance retention at high frequency.
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Documente tehnice
Specificatii
Marca
KEMETTehnologie
Polymer
Capacitate
150µF
Dielectric
Tantalum
Tensiune
6.3V dc
Timp montare
Surface Mount
Package/Case
3528-21
Rezistenta in serie
45mΩ
Toleranta
±20%
Lungime
3.5mm
Adancime
2.8mm
Inaltime
1.9mm
Temperatura maxima de lucru
+105°C
Dimensiuni
3.5 x 2.8 x 1.9mm
Serie
T520
Electrolyte Type
Solid
Dissipation Factor
8%
Temperatura minima de lucru
-55°C
Leakage Current
95 μA
Detalii produs
T520 Series
KEMET T520 Series (KO-CAP) polymer tantalum capacitors offer the best features of multilayer ceramic (low ESR, high frequency capacitance retention), aluminium electrolytic (higher capacitance, benign failure mode), and proven solid tantalum technology (volumetric efficiency, surface mount capability, extremely long life).
The KEMET T520 Organic Capacitor (KO-CAP) is a tantalum capacitor with a Ta anode and Ta2 O5 dielectric. A conductive organic polymer replaces the traditionally used cathode plate of the capacitor. This results in very low ESR and improved capacitance retention at high frequency.