The Panasonic EEH-ZA1V680XP is a conductive polymer hybrid aluminum electrolytic capacitor designed for demanding applications requiring high temperature stability and efficient performance. It offers low ESR and high ripple current handling, surpassing the capabilities of standard aluminum electrolytic capacitors. The capacitor is AEC-Q200 compliant, ensuring suitability for automotive and other critical applications. Its compact size and robust design make it ideal for use in power supplies, DC-DC converters, and other electronic circuits where reliability and performance are paramount. RoHS compliance further enhances its appeal for environmentally conscious designs.
Low ESR: Low ESR and high ripple current (70 % over, Lower ESR than current V-FP)
High Voltage: to 80 V
Equivalent to: Equivalent to conductive polymer type aluminum electrolytic capacitor
Temperature and Frequency: Little characteristics change by temperature and frequency
Vibration-proof: Vibration-proof product is available upon request
AEC-Q200 compliant: AEC-Q200 compliant
RoHS Compliant: RoHS compliant
Category temp. range: –55 ℃ to +105 ℃
Rated voltage range: 25 V to 50 V, 25 V to 63 V, 25 V to 80 V
Nominal cap. range: 10 μF to 33 μF, 10 μF to 56 μF, 22 μF to 100 μF, 22 μF to 220 μF, 33 μF to 330 μF
Capacitance tolerance: ±20 % (120 Hz / +20 ℃)
DC leakage current: I ≦ 0.01 CV or 3 μA (whichever is greater)
Dissipation factor (tan δ): Please see the attached characteristics list
Capacitance change: Within ±30% of the initial value
Dissipation factor (tan δ) after endurance: ≦ 200 % of the initial limit
ESR after endurance: ≦ 200 % of the initial limit
DC leakage current after endurance: Within the initial limit
ESR (Ω / 100 kHz)(-40 ℃): 2.0, 1.4, 0.8, 0.4, 0.3
Shelf life: After storage for 1000 hours at +105 ℃ ± 2 ℃ with no voltage applied and then being stabilized at +20 ℃, capacitors shall meet the limits specified in endurance.
Capacitance change (with voltage treatment): Within ±30% of the initial value
Dissipation factor (tan δ) (with voltage treatment): ≦ 200 % of the initial limit
ESR (with voltage treatment): ≦ 200 % of the initial limit
DC leakage current (with voltage treatment): Within the initial limit
Resistance to soldering heat: Capacitance change: Within ±10% of the initial value, Dissipation factor (tan δ): Within the initial limit, DC leakage current: Within the initial limit
Ripple current (100 kHz / +105 ℃): 900 mA rms
ESR (100 kHz / +20 ℃): 80 mΩ
tan δ (120 Hz / +20 ℃): 0.14
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