Panasonic 4.7μF Aluminium Electrolytic Capacitor 100V dc, Radial, Through Hole - ECA2AM4R7

Technical Document
Specifications
Brand
PanasonicCapacitance
4.7µF
Voltage
100V dc
Mounting Type
Radial, Through Hole
Technology
Aluminium Electrolytic
Dimensions
5 (Dia.) x 11mm
Height
11mm
Minimum Operating Temperature
-40°C
Diameter
5mm
Maximum Operating Temperature
+85°C
Lead Pitch
2mm
Lifetime
2000h
Series
M-A
Tolerance
±20%
Polarised
Polar
Ripple Current
50mA
Leakage Current
3 μA
Product details
M Series
Panasonic M Series Type A electrolytic capacitors feature excellent endurance of 2000 hours at +85°C.
Smaller than SU series
High reliability
High ripple current
Low impedance
Long life
Fully sleeved
Applications
Panasonic M Series Type A electrolytic capacitors are suitable for use in general purpose applications and in industrial instruments due to their high reliability.
€ 1.85
€ 0.37 Each (In a Pack of 5) (ex VAT)
€ 2.20
€ 0.44 Each (In a Pack of 5) (inc. VAT)
5
€ 1.85
€ 0.37 Each (In a Pack of 5) (ex VAT)
€ 2.20
€ 0.44 Each (In a Pack of 5) (inc. VAT)
Stock information temporarily unavailable.
5
Stock information temporarily unavailable.
| quantity | Unit price | Per Pack |
|---|---|---|
| 5 - 35 | € 0.37 | € 1.85 |
| 40 - 95 | € 0.26 | € 1.30 |
| 100+ | € 0.13 | € 0.65 |
Technical Document
Specifications
Brand
PanasonicCapacitance
4.7µF
Voltage
100V dc
Mounting Type
Radial, Through Hole
Technology
Aluminium Electrolytic
Dimensions
5 (Dia.) x 11mm
Height
11mm
Minimum Operating Temperature
-40°C
Diameter
5mm
Maximum Operating Temperature
+85°C
Lead Pitch
2mm
Lifetime
2000h
Series
M-A
Tolerance
±20%
Polarised
Polar
Ripple Current
50mA
Leakage Current
3 μA
Product details
M Series
Panasonic M Series Type A electrolytic capacitors feature excellent endurance of 2000 hours at +85°C.
Smaller than SU series
High reliability
High ripple current
Low impedance
Long life
Fully sleeved
Applications
Panasonic M Series Type A electrolytic capacitors are suitable for use in general purpose applications and in industrial instruments due to their high reliability.


