Technical Document
Specifications
Brand
VishayCapacitance
470µF
Voltage
500V dc
Mounting Type
Snap-In
Technology
Aluminium Electrolytic
Dimensions
35 (Dia.) x 55mm
Length
55mm
Minimum Operating Temperature
-25°C
Diameter
35mm
Maximum Operating Temperature
+105°C
Lifetime
3000 → 5000h
Lead Pitch
10mm
Ripple Current
2.15A
Leakage Current
0.474 mA
Tolerance
±20%
Series
159 PUL-SI
Equivalent Series Resistance
260mΩ
Product details
159 Series
159 PUL-SI Polarized Aluminium Capacitors Power Ultra Long Life Snap-In
These are non-solid electrolyte
Low ESR, high ripple current capability
High reliability
Useful life is 3000h to 5000h at 105°C
Available up to 500V
Applications include: Solar PV inverters; General purpose, industrial and audio/video system; Smoothing and filtering; Standard and Switched Mode Power Supplies; Energy storage in pulse systems
12.001 OMR
12.001 OMR Each (ex VAT)
12.601 OMR
12.601 OMR Each (inc. VAT)
1
12.001 OMR
12.001 OMR Each (ex VAT)
12.601 OMR
12.601 OMR Each (inc. VAT)
1
Stock information temporarily unavailable.
Please check again later.
| Quantity | Unit price |
|---|---|
| 1 - 4 | 12.001 OMR |
| 5 - 9 | 11.286 OMR |
| 10 - 24 | 10.312 OMR |
| 25 - 49 | 9.278 OMR |
| 50+ | 8.206 OMR |
Technical Document
Specifications
Brand
VishayCapacitance
470µF
Voltage
500V dc
Mounting Type
Snap-In
Technology
Aluminium Electrolytic
Dimensions
35 (Dia.) x 55mm
Length
55mm
Minimum Operating Temperature
-25°C
Diameter
35mm
Maximum Operating Temperature
+105°C
Lifetime
3000 → 5000h
Lead Pitch
10mm
Ripple Current
2.15A
Leakage Current
0.474 mA
Tolerance
±20%
Series
159 PUL-SI
Equivalent Series Resistance
260mΩ
Product details
159 Series
159 PUL-SI Polarized Aluminium Capacitors Power Ultra Long Life Snap-In
These are non-solid electrolyte
Low ESR, high ripple current capability
High reliability
Useful life is 3000h to 5000h at 105°C
Available up to 500V
Applications include: Solar PV inverters; General purpose, industrial and audio/video system; Smoothing and filtering; Standard and Switched Mode Power Supplies; Energy storage in pulse systems


