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EEHZE1J330V

Panasonic
Part Number EEHZE1J330V
Manufacturer Panasonic
Description Conductive Polymer Hybrid Aluminum Electrolytic Capacitors
Published Jul 11, 2019
Detailed Description Conductive Polymer Hybrid Aluminum Electrolytic Capacitors Surface Mount Type Series: ZE Type: V High temperature lead-...
Datasheet PDF File EEHZE1J330V PDF File

EEHZE1J330V
EEHZE1J330V


Overview
Conductive Polymer Hybrid Aluminum Electrolytic Capacitors Surface Mount Type Series: ZE Type: V High temperature lead-free reflow Features ● Endurance: 2000 h at 145 °C (High temperature / Long life) ● Low ESR and high ripple current (85 % over, Lower ESR than current V-TP) ● High-withstand voltage ( to 63 V.
DC), Low LC (0.
01 CV or 3 μA) ● Equivalent to conductive polymer type aluminum electrolytic capacitor (There are little characteristics change by temperature and frequency) ● Vibration-proof product is available upon request.
(φ8 mm and larger) ● AEC-Q200 compliant ● RoHS compliant Specifications Size code F G Category temp.
range –55 ℃ to +145 ℃ Rated voltage range 25 V.
DC to 63 V.
DC Nominal cap.
range 33 μF to 220 μF 56 μF to 330 μF Capacitance tolerance ±20 % (120 Hz / +20 ℃) DC leakage current I ≦ 0.
01 CV or 3 (μA) After 2 minutes (whichever is greater) Dissipation factor (tan δ) Please see the attached characteristics list +145 °C ± 2 °C, 2000 h, apply the rated ripple current without exceeding the rated voltage Capacitance change Within ±30% of the initial value Endurance 1 Dissipation factor (tan δ) ≦ 200 % of the initial limit E.
S.
R.
≦ 200 % of the initial limit DC leakage current Within the initial limit +135 °C ± 2 °C, 4000 h, apply the rated ripple current without exceeding the rated voltage Capacitance change Within ±30% of the initial value Endurance 2 Dissipation factor (tan δ) ≦ 200 % of the initial limit E.
S.
R.
≦ 200 % of the initial limit DC leakage current Within the initial limit After storage for 1000 hours at +145 °C±2 °C with no voltage applied and then being Shelf life stabilized at +20 °C, capacitors shall meet the limits specified in endurance 1.
(With voltage treatment) 85 °C ± 2 °C, 85 % to 90 %, 2000 h, rated voltage applied Damp heat (Load) Capacitance change Within ±30% of the initial value Dissipation factor (tan δ) ≦ 200 % of the initial limit E.
S.
R.
≦ 200 % of the initial limit DC leaka...



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