Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
PanasonicTehnologie
Polymer
Capacitate
10µF
Dielectric
Tantalum
Tensiune
12.5V dc
Tip montare
Surface Mount
Package/Case
B1
Rezistenta in serie
80mΩ
Toleranta
±20%
Lungime
3.5mm
Adancime
2.8mm
Inaltime
1.1mm
Temperatura maxima de lucru
+105°C
Dimensiuni
3.5 x 2.8 x 1.1mm
Serie
POSCAP TPC
Electrolyte Type
Solid
Temperatura minima de lucru
-55°C
Leakage Current
12.5 μA
Detalii produs
POSCAP TPC series
Panasonic TPC series tantalum capacitors are part of the POSCAP range. Constructed from sintered tantalum as the anode material, the large surface area of the porous materials enables large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte enables low ESR. TPC tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.
Informatii despre stoc temporar indisponibile
P.O.A.
Buc. (Intr-un pachet de 5) (fara TVA)
Standard
5
P.O.A.
Buc. (Intr-un pachet de 5) (fara TVA)
Informatii despre stoc temporar indisponibile
Standard
5
Documente tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
PanasonicTehnologie
Polymer
Capacitate
10µF
Dielectric
Tantalum
Tensiune
12.5V dc
Tip montare
Surface Mount
Package/Case
B1
Rezistenta in serie
80mΩ
Toleranta
±20%
Lungime
3.5mm
Adancime
2.8mm
Inaltime
1.1mm
Temperatura maxima de lucru
+105°C
Dimensiuni
3.5 x 2.8 x 1.1mm
Serie
POSCAP TPC
Electrolyte Type
Solid
Temperatura minima de lucru
-55°C
Leakage Current
12.5 μA
Detalii produs
POSCAP TPC series
Panasonic TPC series tantalum capacitors are part of the POSCAP range. Constructed from sintered tantalum as the anode material, the large surface area of the porous materials enables large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte enables low ESR. TPC tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.


