Techniniai dokumentai
Specifikacijos
Markė
PanasonicCapacitance
1.5F
Voltage
5.5V dc
Tvirtinimo tipas
Through Hole
Minimali darbinė temperatūra
-40°C
Maksimali darbinė temperatūra
+70°C
Diameter
19mm
Aukštis
6.5mm
Matmenys
19 (Dia.) x 6.5mm
Lead Pitch
20mm
Leakage Current
1 mA
Lifetime
1000h
Serija
SG
Tolerancija
-20 → +80%
Product Diameter
19mm
Tolerance Minus
-20%
Capacitor Family
Electric Double Layer
Lead Diameter
1 x 0.2mm
Tolerance Plus
+80%
Dielectric Material Family
Gold
Terminal Type
Radial
Kilmės šalis
Japan
Produkto aprašymas
Panasonic SG Series Electric Double Layer Capacitors
Panasonic SG electric double layer capacitors (known as gold capacitors) can be compared to secondary batteries and provide the highest level of volumetric efficiency. No charging circuit is required and there is no limit to the number of charge and discharge cycles. SG supercapacitors utilise the release and absorption reaction of ions and do not rely on a chemical reaction to create current.
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€ 2,945
Each (In a Tray of 100) (be PVM)
€ 3,563
Each (In a Tray of 100) (su PVM)
100
€ 2,945
Each (In a Tray of 100) (be PVM)
€ 3,563
Each (In a Tray of 100) (su PVM)
100
Techniniai dokumentai
Specifikacijos
Markė
PanasonicCapacitance
1.5F
Voltage
5.5V dc
Tvirtinimo tipas
Through Hole
Minimali darbinė temperatūra
-40°C
Maksimali darbinė temperatūra
+70°C
Diameter
19mm
Aukštis
6.5mm
Matmenys
19 (Dia.) x 6.5mm
Lead Pitch
20mm
Leakage Current
1 mA
Lifetime
1000h
Serija
SG
Tolerancija
-20 → +80%
Product Diameter
19mm
Tolerance Minus
-20%
Capacitor Family
Electric Double Layer
Lead Diameter
1 x 0.2mm
Tolerance Plus
+80%
Dielectric Material Family
Gold
Terminal Type
Radial
Kilmės šalis
Japan
Produkto aprašymas
Panasonic SG Series Electric Double Layer Capacitors
Panasonic SG electric double layer capacitors (known as gold capacitors) can be compared to secondary batteries and provide the highest level of volumetric efficiency. No charging circuit is required and there is no limit to the number of charge and discharge cycles. SG supercapacitors utilise the release and absorption reaction of ions and do not rely on a chemical reaction to create current.