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AVS Datasheet, PDF (1/6 Pages) Cornell Dubilier Electronics – General Purpose Filtering, Bypassing, Power Supply Decoupling
Type AVS
SMT Aluminum Electrolytic Capacitors - General Purpose, 85°C
General Purpose Filtering, Bypassing, Power Supply Decoupling
Type AVS Capacitors are the best value for filter and bypass applications
not requiring wide temperature performance or high ripple current.
Their vertical cylindrical cases facilitate automatic mounting and reflow
soldering and Type AVS offers a significant cost savings over tantalum
capacitors.
Highlights
• +85°C, 2000 Hour Load Life
• Capacitance Range: 0.1 µF to 1500 µF
• Voltage Range: 4.0 Vdc to 100 Vdc
Specifications
Operating Temperature:
Rated voltage:
Capacitance:
-40°C to +85°C
4.0, 6.3, 10, 16, 25, 35, 63, & 100 Vdc
0.1 µF to 1500 µF
D.F. (@ 20°C):
Capacitance Tolerance:
Leakage Current:
Ripple Current Multipliers:
See Ratings Table
±20% @ 120 Hz and +20°C
0.01 CV or 3 µA @ +20°C, after two minutes (whichever is greater)
Frequency
50/60 Hz 120 Hz 1 kHz 10 kHz & up
0.7
1.0
1.3
1.7
Load Life: 2000 h @ 85°C
∆ Capacitance: ±20%
DF: <200% of limit
DCL: <100% of limit
Shelf Life: 1000 h @ 85°C
∆ Capacitance: ±20%
DF: <200% of limit
DCL: <100% of limit
Maximum Impedance Ratio @ 120 Hz
W.V. (Vdc)
4.0
6.3
10.0
16.0
25.0
35.0
50.0
63.0
100.0
-25°C / +20°C 7.0
4.0
3.0
2.0
2.0
2.0
2.0
3.0
3.0
-40°C / +20°C 15.0
8.0
6.0
4.0
4.0
3.0
3.0
4.0
4.0
AVS Series Marking
Capacitance
(µF)
Voltage
6 = 6.3 Vdc
16 = 16 Vdc
25 = 25 Vdc,
Case Dimensions
220
vs
Lot No.
Series
Outline Drawing
0.3 mm
K
D
H
P
L
A
I
I
W
Case
Code
A
B
C
D
X
E
F
G
D ± 0.5
3
4
5
6.3
6.3
8
8
10
L
5.4 +.1,-.2
5.4 +.1,-.2
5.4 +.1,-.2
5.4 +.1,-.2
7.9 ±.3
6.2 ±.3
10.2 ±.3
10.2 ±.3
A ± 0.2
3.3
4.3
5.3
6.6
6.6
8.3
8.3
10.3
H (max)
4.5
5.5
6.5
7.8
7.8
9.5
10.0
12.0
I (ref)
1.5
1.8
2.2
2.6
2.6
3.4
3.4
3.5
W
0.55 ± 0.1
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 (ref)
0.6
1.0
1.5
1.8
1.8
2.2
3.1
4.6
K
0.35 + 0.15/-0.20
0.35 + 0.15/-0.20
0.35 + 0.15/-0.20
0.35 + 0.15/-0.20
0.35 + 0.15/-0.20
0.35 + 0.15/-0.20
0.70 ± 0.20
0.70 ± 0.20
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