6 x Aluminum Electrolytic Capacitor 3300uF 10V 20% 12.5x25mm FM Radial Panasonic – EEU-FM1A332

6 x Aluminum Electrolytic Capacitor 3300uF 10V 20% 12.5x25mm FM Radial Panasonic – EEU-FM1A332

Category: Capacitors
$11.29
In Stock
SKU: PANA-FM-1A332-3300-10-006

Pack of six Panasonic EEU-FM1A332 Aluminum Electrolytic Capacitors, 3300 µF, 10 V, 16 × 25 mm radial, ±20% tolerance.

Low-impedance FM series with 3,350 mA ripple current and 7000 h endurance at 105°C.

Ideal for motherboard VRMs, switching power supplies, and audio amplifiers.

Operating range: -40°C to +105°C.

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The Panasonic EEU-FM1A332 Aluminum Electrolytic Capacitor, provided in a pack of six, is a low-impedance, high-ripple-current radial capacitor from the FM series.
It delivers 3300 µF capacitance at 10 V with ±20% tolerance, a maximum ripple current rating of 3,350 mA at 105°C and 100 kHz, and a rated endurance of 7000 hours at 105°C.
The capacitor is housed in a radial can measuring 16 mm diameter × 25 mm height with 7.5 mm lead spacing for through-hole mounting.
Its very low ESR design and high capacitance-to-volume ratio make it effective for heavy filtering and energy storage in low-voltage circuits.
The operating temperature range is -40°C to +105°C, and the unit includes a pressure-relief vent on the sealed top end.

Key Features

  • Capacitance: 3300 µF
  • Voltage Rating: 10 VDC
  • Ripple Current: 3,350 mA (105°C, 100 kHz)
  • Endurance: 7000 hours at 105°C
  • ESR: Very low impedance (FM series)
  • Package: Radial, 16 mm × 25 mm, 7.5 mm lead spacing
  • Tolerance: ±20%
  • Temperature Range: -40°C to +105°C

Common Applications

  • Output filtering in low-voltage switching power supplies
  • Motherboard VRM and GPU power sections
  • DC-DC converters and LED drivers
  • High-current audio amplifiers
  • Industrial motor drives and inverters requiring large reservoir capacitance

Specifications

Quality Assurance

Pacific Custom Engineering supplies authentic Panasonic EEU-FM1A332 capacitors, ensuring consistent performance in high-ripple, low-voltage power applications.