Aluminum Electrolytic Capacitors - Panasonic
Description
Aluminum Electrolytic Capacitors/ HA Surface Mount Type
Series: Hight-temperature assuranceize
HA
Type:
V
HA
↑
● Endurance: 105 °C 1000 h ● Vibration-proof product is available upon request.
(08 mm and larger) ● AEC-Q200 qualified ✽ ● RoHS directive compliant
■ Features
S
■ Specifications
Category Temp.
Range Rated W.
V.
Range Nominal Cap.
Range Capacitance Tolerance DC Leakage Current tan d W.
V.
(V) Characteristics at Low Temperature Z(–25 °C)/Z(+20 °C) Z(–40 °C)/Z(+20 °C) 6.
3 4 8 10 3 6 –40 °C to +105 °C 6.
3 V.
DC to 100 V.
DC 1 μF to 1500 μF ±20 % (120 Hz/+20 °C) I < 0.
01 CV or 3 (μA) After 2 minutes (Whichever is greater) Please see the attached standard products list 16 2 4 25 2 4 35 2 3 50 2 3 63 3 4 100 3 4 (Impedance ratio at 120 Hz)
After applying rated working voltage for 1000 hours at +105 °C±2 °C and then being stabilized at +20 °C, capacitors shall meet the following limits.
Endurance Capacitance change tan d DC leakage current Shelf Life ±20 % of initial measured value (6.
3 W.
V.
of miniature : ±30 %) < 200 % of initial specified value < initial specified value
After storage for 1000 hours at +105 °C±2 °C with no voltage applied and then being stabilized at +20 °C, capacitors shall meet the limits specified in Endurance.
(With voltage treatment) After reflow soldering and then being stabilized at +20 °C, capacitor shall meet the following limits.
Capacitance change tan d DC leakage current ±10 % of initial measured value < initial specified value < initial specified value
Resistance to Soldering Heat
■ Frequency correction factor for ripple current
Frequency (Hz) Correction factor 50, 60 0.
70 120 1.
00 1k 1.
30 10 k to 1.
70 (Unit : mm)
(I) (I) ( ) Reference size W 0.
65±0.
1 0.
65±0.
1 0.
65±0.
1 0.
65±0.
1 0.
65±0.
1 0.
90±0.
2 0.
90±0.
2 P 1.
0 1.
5 1.
8 1.
8 2.
2 3.
1 4.
6 (P) W I 1.
8 2.
2 2.
6 2.
6 3.
4 3.
4 3.
5 K A±0.
2
■ Marking
Example:6.
3 V 22 μF (Polarized) Marking color : BLACK
■ Dimensions in mm (not to scale)
0.
3 max.
0D±0.
5
–
B±0.
2 H
Negative polarity marking (–)...
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