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687ULR6R3MGU

680μF Aluminum Polymer Capacitors 20% Radial Bulk


  • Manufacturer: Illinois Capacitor
  • Nocochips NO: 373-687ULR6R3MGU
  • Package: Radial
  • Datasheet: -
  • Stock: 286
  • Description: 680μF Aluminum Polymer Capacitors 20% Radial Bulk (Kg)

Details

Tags

Parameters
Mount Through Hole
Package / Case Radial
Dielectric Material ALUMINUM (WET)
Packaging Bulk
Tolerance 20%
Number of Terminations 2
Max Operating Temperature 105°C
Min Operating Temperature -55°C
Voltage - Rated 6.3V
Capacitance 680μF
Lead Pitch 5.0038mm
Capacitor Type ALUMINUM ELECTROLYTIC CAPACITOR
ESR (Equivalent Series Resistance) 240mOhm
Polarity Polar
Ripple Current 6.64A
Life (Hours) 2000 hours
Height Seated (Max) 13.9954mm
RoHS Status RoHS Compliant

The capacitance can run at the range of 680μF.


20% are used to determine the tolerance of this capacitor. It is contained in a package of Radial. This capacitor is accessible in the Bulk packaging. The type of the 687ULR6R3MGU capacitor Illinois Capacitor 687ULR6R3MGU is suitable to conduct the ripple current at 6.64A. 687ULR6R3MGU Capacitor is mounted by Through Hole. There are 2 terminals embeded in 687ULR6R3MGU Capacitor. Voltage - Rated often has values of 6.3V. The dielectric materials are defined as ALUMINUM (WET). This device's minimum working temperature must not be less than -55°C. It's recommended that you utilize it when the temperature is below 105°C. The capacitor type can be sorted using ALUMINUM ELECTROLYTIC CAPACITOR.

Series


Capacitance: 680μF
Tolerance: 20%
Package / Case: Radial
Packaging: Bulk

There are great quantities of applications of 687ULR6R3MGU Aluminum Polymer Capacitors.


Typically, 687ULR6R3MGU is used to smooth and buffer rectified DC voltages for DC-DC converters and Power supplies, to reduce power noise & signal noise and to enhance power efficiency. And the following shows some of them.

  • Signal decoupling & power bypass
  • Motor Control
  • Spot Welding
  • Lighting Ballast
  • Smoothing Noise Filtering
  • Power Factor Correction
  • To enhance power efficiency
  • Decoupling Noise Filtering
  • To reduce power noise & signal noise
  • Audio Crossover

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