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ESR100M0J1516

10μF 6.3V Aluminum Polymer Capacitors 20% Aluminum


  • Manufacturer: Cornell Dubilier Electronics
  • Nocochips NO: 192-ESR100M0J1516
  • Package: Aluminum
  • Datasheet: -
  • Stock: 326
  • Description: 10μF 6.3V Aluminum Polymer Capacitors 20% Aluminum (Kg)

Details

Tags

Parameters
Number of Terminations 2
Termination SMD/SMT
ECCN Code EAR99
Terminal Finish Tin (Sn)
Max Operating Temperature 105°C
Min Operating Temperature -55°C
Capacitance 10μF
Voltage - Rated DC 6.3V
Packing Method TR
ESR (Equivalent Series Resistance) 6mOhm
Polarity POLARIZED
Size Code 3121
Ripple Current 1A
Dissipation Factor 0.06 %
Current - Leakage 3μA
Height 3.3mm
Length 7.9mm
Width 5.31mm
RoHS Status Non-RoHS Compliant
Package / Case Aluminum
Surface Mount YES
Terminal Shape WRAPAROUND
Mounting Feature SURFACE MOUNT
Tolerance 20%
JESD-609 Code e3
Pbfree Code yes

The capacitance can run at the range of 10μF.


20% are used to determine the tolerance of this capacitor. It is contained in a package of Aluminum. The type of the ESR100M0J1516 capacitor Cornell Dubilier Electronics ESR100M0J1516 is suitable to conduct the ripple current at 1A. ESR100M0J1516 Capacitor The typical values of Voltage - Rated DC are 6.3V. There are 2 terminals embeded in ESR100M0J1516 Capacitor. It has SMD/SMT terminations in total. The part is packaged by TR. 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.

Series


Capacitance: 10μF
Tolerance: 20%
Package / Case: Aluminum

There are great quantities of applications of ESR100M0J1516 Aluminum Polymer Capacitors.


Typically, ESR100M0J1516 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.

  • Flashtube Ignition
  • To reduce power noise & signal noise
  • Motor Start
  • Coupling or blocking
  • Power Line Buffering
  • Computer motherboards
  • Power Factor Correction
  • Audio Crossover
  • Bypassing Noise Filtering
  • Decoupling Noise Filtering

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