Panasonic 68μF Aluminium Electrolytic Capacitor 450V dc, Radial, Through Hole - EEUEE2W680

Technical Document
Specifications
Brand
PanasonicCapacitance
68µF
Voltage
450V dc
Mounting Type
Radial, Through Hole
Technology
Aluminium Electrolytic
Dimensions
18 (Dia.) x 40mm
Height
40mm
Minimum Operating Temperature
-25°C
Diameter
18mm
Maximum Operating Temperature
+105°C
Lifetime
10000h
Lead Pitch
7.5mm
Ripple Current
1.8A
Tolerance
±20%
Series
EE RADIAL
Polarised
Polar
Product details
EE Series
Panasonic EE Series Type A electrolytic capacitors feature endurance between 8000 and 10000 hours(dependent on case size). These radial capacitors offer 40% higher ripple current at high frequency than the Panasonic ED series.
High ripple current
Excellent endurance
Low impedance
Applications
Panasonic EE Series Type A electrolytic capacitors are suitable for use in industrial instruments due to their high reliability.
3.014 OMR
3.014 OMR Each (ex VAT)
3.165 OMR
3.165 OMR Each (inc. VAT)
Standard
1
3.014 OMR
3.014 OMR Each (ex VAT)
3.165 OMR
3.165 OMR Each (inc. VAT)
Standard
1
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Please check again later.
| Quantity | Unit price |
|---|---|
| 1 - 9 | 3.014 OMR |
| 10 - 49 | 2.480 OMR |
| 50 - 99 | 2.392 OMR |
| 100+ | 2.035 OMR |
Technical Document
Specifications
Brand
PanasonicCapacitance
68µF
Voltage
450V dc
Mounting Type
Radial, Through Hole
Technology
Aluminium Electrolytic
Dimensions
18 (Dia.) x 40mm
Height
40mm
Minimum Operating Temperature
-25°C
Diameter
18mm
Maximum Operating Temperature
+105°C
Lifetime
10000h
Lead Pitch
7.5mm
Ripple Current
1.8A
Tolerance
±20%
Series
EE RADIAL
Polarised
Polar
Product details
EE Series
Panasonic EE Series Type A electrolytic capacitors feature endurance between 8000 and 10000 hours(dependent on case size). These radial capacitors offer 40% higher ripple current at high frequency than the Panasonic ED series.
High ripple current
Excellent endurance
Low impedance
Applications
Panasonic EE Series Type A electrolytic capacitors are suitable for use in industrial instruments due to their high reliability.

