Technical Document
Specifications
Brand
NichiconCapacitance
470μF
Product Type
Capacitor
Voltage
200V dc
Construction
Radial Can
Mount Type
Snap-in
Packaging
Bulk
Height
25mm
Polarity
Polar
Length
25mm
Minimum Operating Temperature
-40°C
Diameter
25mm
Pin Count
2
Capacitor Ripple Current
2A
Maximum Operating Temperature
85°C
Lead Pitch
10mm
Lifetime
3000 h
Standards/Approvals
2011/65/EU
Leakage Current
910μA
Tolerance
±20 %
Series
LS
Automotive Standard
No
Dissipation Factor
0.15%
Product details
Nichicon LS Series, General Purpose, Snap-In Aluminium Electrolytic Capacitors
Nichicon LS series are standard 85⁰C snap-in aluminium electrolytic capacitors. They can withstand 3000 h of rated ripple current with voltage ranging from 16 V to 450 V. These high performance and high capacitance parts are ideal for filtering and storing input current.
Stock information temporarily unavailable.
56.60 MOP
28.287 MOP Each (In a Pack of 2) (ex VAT)
Standard
2
56.60 MOP
28.287 MOP Each (In a Pack of 2) (ex VAT)
Stock information temporarily unavailable.
Standard
2
| quantity | Unit price | Per Pack |
|---|---|---|
| 2 - 62 | 28.287 MOP | 56.57 MOP |
| 64 - 124 | 27.824 MOP | 55.65 MOP |
| 126+ | 27.205 MOP | 54.41 MOP |
Technical Document
Specifications
Brand
NichiconCapacitance
470μF
Product Type
Capacitor
Voltage
200V dc
Construction
Radial Can
Mount Type
Snap-in
Packaging
Bulk
Height
25mm
Polarity
Polar
Length
25mm
Minimum Operating Temperature
-40°C
Diameter
25mm
Pin Count
2
Capacitor Ripple Current
2A
Maximum Operating Temperature
85°C
Lead Pitch
10mm
Lifetime
3000 h
Standards/Approvals
2011/65/EU
Leakage Current
910μA
Tolerance
±20 %
Series
LS
Automotive Standard
No
Dissipation Factor
0.15%
Product details
Nichicon LS Series, General Purpose, Snap-In Aluminium Electrolytic Capacitors
Nichicon LS series are standard 85⁰C snap-in aluminium electrolytic capacitors. They can withstand 3000 h of rated ripple current with voltage ranging from 16 V to 450 V. These high performance and high capacitance parts are ideal for filtering and storing input current.


