• Part: AZC
  • Description: ALUMINIUM ELECTROLYTIC CAPACITORS
  • Manufacturer: Itelcond
  • Size: 133.50 KB
Download AZC Datasheet PDF
Itelcond
AZC
AZC is ALUMINIUM ELECTROLYTIC CAPACITORS manufactured by Itelcond.
- AZS series - AZS Series Capacitance range Voltage range Temperature Case range Φx H SERIES ALUMINIUM ELECTROLYTIC CAPACITORS FOR PRINTED WIRING BOARD Applications AZC AZS - 4700 200 -450 -25°C , +105°C 30 x 40 45 x 100 Snap-in type, 2-4 pins configuration Extended temperature range Solder pin mounting Industrial applications MECHANICAL OUTLINES: CASE: cylindrical, aluminium made TERMINALS: to be soldered, for printed wiring board (type SNAP-IN) SEALING: hermetic by beading on a rubber-Bakelite cover PRESSURE RELEASE VENT: directly on to the aluminium case SLEEVE: self-extinguishing thermo shrinkable sleeve MOUNTING: vertical, by soldering to printed circuit board. SIZE: see enclosed drawings CLIMATIC CATEGORY (IEC 68): 25/98/56 SPECIFICATIONS CECC 30300 IEC 384-4 ("long life grade") MIL C62D DIN 41240 / DIN 45910 TEMPERATURE RANGE Operating: -25 °C +105 °C Climatic Category (IEC 68): 25/105/56 CAPACITANCE Tolerance shall be within the following limits: -20% + 20% (standard tolerance) or -10% +30% (available on request) LEAKAGE CURRENT: After the rated voltage has been applied to the capacitor for 5 minutes the leakage current must be: Maximum limit Operating limit where If = leakage current (µA) C= capacitance (µF) V= rated voltage (V) at 25 °C at 25 °C: If ≤ 0,004 - C - V If ≤0,001 - C - V .. IMPORTANT When using high-capacitance and high-voltage electrolytic capacitors it is important to remember that the inner part (the rolled section) is not insulated from can: between the negative pole and the aluminium can there is a variable and not defined resistance essentially due to the electrolyte used in capacitor manufacture. SURGE VOLTAGE Working Voltage Surge Voltage 200 230 250 290 315 347 400 440 420 460 450 495 500 525 ITELCOND Aluminium Electrolytic Capacitors Pag. 103 - AZS series RIPPLE CURRENT: The allowable values of ripple current in amperes, are related to the temperature and frequency by the formula: Ir = Kt - Kf -...