MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
KZV
For computer motherboard
@Super
low ESR/impedance capacitors due to very low resistivity electrolyte
@Rated
voltage range : 6.3 to 16V, Nominal capacitance range : 470 to 3,300MF
@Endurance
with ripple current : 2,000 hours at 105C
@The
KZJ series capacitors are designed for computer motherboards
@Non
solvent resistant type
@RoHS
Compliant
Lower Z
KZJ
Lower Z
KZG
?SPECIFICATIONS
Items
Category
Temperature Range
Rated Voltage Range
Capacitance Tolerance
Leakage Current
Dissipation Factor
(tane)
Low Temperature
Characteristics
(Max. Impedance Ratio)
Endurance
-40 to +105C
6.3 to 16V
dc
(at 20C, 120Hz)
P20%
(M)
I=0.01CV or 3MA, whichever is greater.
(at 20C after 2 minutes)
Where, I : Max. leakage current (MA), C : Nominal capacitance (MF), V : Rated voltage (V
dc
)
Rated voltage (V
dc
)
16V
10V
6.3V
tanE (Max.)
0.16
0.19
0.22
(at 20C, 120Hz)
When nominal capacitance exceeds 1,000MF, add 0.02 to the value above for each 1,000MF increase.
Rated voltage (V
dc
)
16V
10V
6.3V
Z (-25C) / Z (+20C)
2
2
2
(at 120Hz)
Z (-40C) / Z (+20C)
3
3
3
The following specifications shall be satisfied when the capacitors are restored to 20C after subjected to DC voltage with the rated
ripple current for 2,000 hours at 105C.
Capacitance change
[P25%
of the initial measured value
D.F. (tanE)
[200%
of the initial specified value
Leakage current
[The
initial specified value
The following specifications shall be satisfied when the capacitors are restored to 20C after exposing them for 500 hours at 105C
without voltage applied.
Capacitance change
[P25%
of the initial measured value
D.F. (tanE)
[200%
of the initial specified value
Leakage current
[The
initial specified value
Characteristics
Shelf Life
?DIMENSIONS
[mm]
@Terminal
Code : E
FP0.5
FP0.5
Fd
Sleeve(PET : Black)
fD
fd
F
fD'
L'
8
0.6
3.5
10
0.6
5.0
FD+0.5max.
L+1.5max.
12.5
0.6
5.0
FD'
Vent
L'
15min
4min
(F8 to
F10)
(F12.5)
Gas escaped end seal
?PART
NUMBERING SYSTEM
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
E KZ J
AAA
E
AA AAA
M
AAA N
Supplement code
Size code
Capacitance tolerance code
Capacitance code (ex. 470MF:471, 1,000MF:102)
Lead forming·taping code
Terminal code
Voltage code (ex. 6.3V:6R3, 16V:160)
Series code
Category
Please refer to "Product code guide (radial lead type)"
(1/2)
CAT. No. E1001G
MINIATURE ALUMINUM ELECTROLYTIC CAPACITORS
For computer motherboard
?STANDARD
RATINGS
WV(V
dc
)
Cap(mF)
1,000
1,200
1,500
1,500
1,800
1,800
2,200
2,200
2,200
2,200
2,700
3,300
680
1,000
1,000
1,500
1,500
1,500
1,800
2,200
470
680
680
1,000
1,000
1,000
1,500
1,800
2,200
2,700
Case size
fDbL(mm)
8B11.5
8B15
8B20
10B12.5
8B20
10B16
8B20
8B25
10B16
10B20
10B20
10B25
8B11.5
8B15
10B12.5
8B20
8B25
10B16
10B20
10B25
8B11.5
8B15
10B12.5
8B20
8B25
10B16
10B20
10B25
12.5B20
12.5B25
Impedance
(omax/20c, 100kHz)
0.021
0.018
0.012
0.018
0.012
0.0125
0.012
0.011
0.0125
0.011
0.011
0.009
0.021
0.018
0.018
0.012
0.011
0.0125
0.011
0.009
0.021
0.018
0.018
0.012
0.011
0.0125
0.011
0.009
0.009
0.008
Rated ripple current
(mArms/105c, 100kHz)
1,310
1,850
2,350
1,960
2,350
2,460
2,350
2,710
2,460
2,920
2,920
3,230
1,310
1,850
1,960
2,350
2,710
2,460
2,920
3,230
1,310
1,850
1,960
2,350
2,710
2,460
2,920
3,230
3,220
3,370
Part No.
EKZJ6R3ESS102MHB5D
EKZJ6R3ESS122MH15D
EKZJ6R3ESS152MH20D
EKZJ6R3ESS152MJC5S
EKZJ6R3ESS182MH20D
EKZJ6R3ESS182MJ16S
EKZJ6R3ESS222MH20D
EKZJ6R3ESS222MH25D
EKZJ6R3ESS222MJ16S
EKZJ6R3ESS222MJ20S
EKZJ6R3ESS272MJ20S
EKZJ6R3ESS332MJ25S
EKZJ100ESS681MHB5D
EKZJ100ESS102MH15D
EKZJ100ESS102MJC5S
EKZJ100ESS152MH20D
EKZJ100ESS152MH25D
EKZJ100ESS152MJ16S
EKZJ100ESS182MJ20S
EKZJ100ESS222MJ25S
EKZJ160ESS471MHB5D
EKZJ160ESS681MH15D
EKZJ160ESS681MJC5S
EKZJ160ESS102MH20D
EKZJ160ESS102MH25D
EKZJ160ESS102MJ16S
EKZJ160ESS152MJ20S
EKZJ160ESS182MJ25S
EKZJ160ESS222MK20S
EKZJ160ESS272MK25S
6.3
10
16
SS
: Enter the appropriate lead forming or taping code.
?RATED
RIPPLE CURRENT MULTIPLIERS
@Frequency
Multipliers
Capacitance(mF)
Frequency (Hz)
470
680 to 1,800
2,200 to 3,300
120
0.50
0.60
0.75
1k
0.85
0.87
0.90
10k
0.94
0.95
0.95
100k
1.00
1.00
1.00
The endurance of capacitors is reduced with internal heating produced by ripple current at the rate of halving the lifetime with every 5C rise.
When long life performance is required in actual use, the rms ripple current has to be reduced.
(2/2)
CAT. No. E1001G