YAGEO CORPORATION ALUMINUM ELECTROLYTIC CAPACITORS
Miniature Aluminum
Electrolytic Capacitors
S J
Features:105°C 1000~5000hours,Low impedance and high ripple
Recommended Applications:AV(TV,Video,Audio),Monitor/Computer,OA/HA/
Commuciation,Converter/Inverter,Adapter,SMPS
DESCRIPTION
Features:105°C 1000~5000hours,Low impedance
and high ripple
Recommended Applications:AV(TV,Vid
eo,Audio),Monitor/Computer,OA/HA/
Commuciation,Converter/Inverter,Adapter,SMPS
[ Low Impedance and High Ripple Series ]
DIAGRAM OF DIMENSIONS
Dø F dø
4.0 1.5 0.45
5.0 2.0 0.5
6.3 2.5
8.0 3.5
10.0 5.0 0.6
12.0
13.0
16.0 7.5 0.8
18.0
Dimensions : mm
Rubber End Seal
Vinyl Sleeve
(P.V.C)
L 15Min. D0.5
F0.5
5Min.
L 15Min.
0.4Max.
D0.5
F0.5
Rubber End Seal
Vinyl Sleeve
(P.V.C)
5Min.
Rubber Stand-off
Frequency(Hz)
50 120 1K 10K 100K
5.6~390µF 0.60 0.70 0.85 0.95 1.00
470~1000µF 0.65 0.75 0.90 0.98 1.00
1200~6800µF 0.75 0.80 0.95 1.00 1.00
Frequency coefcient
Multiplier for Ripple Current
ELECTRICAL CHARACTERISTICS
Operating Temperature : -40° ~ +105°C
Working Voltage : 6.3 ~ 100V
Rate Capacitance Range : 5.6 ~ 6800µF
Capacitance Tolerance : -20 ~ +20%
DC Leakage Current (µA) : I = 0.01 CV(µA) or 3µA Whichever is greater.
Dissipation Factor : at 100KHz, 105°C
WV (V) : 6.3 10 16 25 35 50 63 100
D.F (%) : 22 19 16 14 12 10 9 8
For capacitor whose capacitance exceeds 1000µF. The value of D.F(%) is increased by 2% for every
addition of 1000µF.
WV (V) : 6.3 10 16 25 35 50 63 100
Impedance : Z - 25°C / Z + 20°C 2 2 2 2 2 2 2 2
Z - 40°C / Z + 20°C 3 3 3 3 3 3 3 3
After applying rated voltage with max ripple current for 1000~5000 hours at 105°C,the capacitor
shall meet the following requirement.
(a)Capacitance Change:Within±25% of the initial value
(b)Dissipation Factor:Not more than 200% of the specied value
(c)Leakage Current:Not more than the specied value
After placed at 105°C without voltage applied for 1000 hours(500 hours for L=7),the capacitor
shall meet the same requirement as Endurance.
Dø <20 : Dø+0.5
Dø ≥20 : Dø+1
L ≤16 : L+1.5max
L >16 : L+2max
Dø =8&10 : L+2.5