Nichicon 1000μF Aluminium Electrolytic Capacitor 200V dc, Snap-In - LLS2D102MELB

RS Stock No.: 846-7151PBrand: NichiconManufacturers Part No.: LLS2D102MELB
brand-logo
View all in Aluminium Capacitors

Technical documents

Specifications

Capacitance

1000µF

Voltage

200V dc

Mounting Type

Snap-In

Technology

Aluminium Electrolytic

Dimensions

30 (Dia.) x 35mm

Height

35mm

Minimum Operating Temperature

-40°C

Diameter

30mm

Maximum Operating Temperature

+85°C

Lifetime

3000h

Lead Pitch

10mm

Ripple Current

3.15A

Leakage Current

1.34 mA

Tolerance

±20%

Series

LS

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.

You may be interested in

P.O.A.

Nichicon 1000μF Aluminium Electrolytic Capacitor 200V dc, Snap-In - LLS2D102MELB
Select packaging type

P.O.A.

Nichicon 1000μF Aluminium Electrolytic Capacitor 200V dc, Snap-In - LLS2D102MELB

Stock information temporarily unavailable.

Select packaging type

Stock information temporarily unavailable.

You may be interested in

Technical documents

Specifications

Capacitance

1000µF

Voltage

200V dc

Mounting Type

Snap-In

Technology

Aluminium Electrolytic

Dimensions

30 (Dia.) x 35mm

Height

35mm

Minimum Operating Temperature

-40°C

Diameter

30mm

Maximum Operating Temperature

+85°C

Lifetime

3000h

Lead Pitch

10mm

Ripple Current

3.15A

Leakage Current

1.34 mA

Tolerance

±20%

Series

LS

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.

You may be interested in