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 SOLID TANTALUM ELECTROLYTIC CAPACITORS
F98
Resin-molded Chip, High Capacitance Series
Adapted to the RoHS directive (2002/95/EC).
Specifications
Item
Category Temperature Range Capacitance Tolerance
Performance Characteristics
-55 ~ +125C (Rated temperature : 85C) 20% (at 120Hz) Refer to the list below (* 1) After 5 minute's application of rated voltage, leakage current at 20C is not more than 0.1CV or 0.5A, whichever is greater. At 40C, 90 ~ 95% R.H., For 500hours (No voltage applied) Capacitance Change Refor to the list below (* 1) Dissipation Factor 150% or less of initial specified value Leakage Current 200% or less of initial specified value At -55C / +125C, For 30 minutes each, 5 cycles Capacitance Change Refor to the list below (* 1) Dissipation Factor 150% or less of initial specified value Leakage Current Initial specified value or less At 260C, For 10 seconds, Reflow, Capacitance Change Refor to the list below (* 1) Leakage Current Initial specified value or less Leakage Current Initial specified value or less After application of surge in series with a 1k resistor at the rate of 30 seconds ON, 30 seconds OFF, for 1000 successive test cycles at 85C, capacitors meet the characteristics requirements listed below. Refor to the list below (* 1) Capacitance Change Dissipation Factor 150% or less of initial specified value Leakage Current 200% or less of initial specified value After 1000 hours' application of rated voltage in series with a 3 resistor at 85C, capacitors meet the characteristic requirements listed below Refor to the list below (* 1) Capacitance Change Dissipation Factor 150% or less of initial specified value Leakage Current 200% or less of initial specified value After applying the pressure load of 5N for 101 seconds horizontally to the center of capacitor side body which has no electrode and has been soldered beforehand on an aluminum substrate, there shall be found neither exfoliation nor its sign at the terminal electrode.
Dissipation Factor(120Hz) Refer to the list below (* 1) ESR(100kHz) Leakage Current
Damp Heat
Temperature Cycles
Type numbering system (Example : 6.3V 10 F)
1 2 3 4 5 6 7 8 9 10 1 1
Taping code (Refer to page 267 for details) Case code Capacitance tolerance Rated Capacitance Rated voltage Series
F98
0J
106MM
Resistance to Soldering Heat
Surge
Drawing
L W1 H
Endurance
W2
Shear Test
S1 S2 S1
5N (0.51kg * f) For 10 1seconds
(mm) Cace Code M S L W1 W2 H S1 S2 0.6 0.1 1.0 0.1
Terminal Strength
1.6 0.1 0.85 0.1 0.65 0.1 0.8 0.1 0.5 0.1 2.0 0.1 1.25 0.1 0.9 0.1 0.8 0.1 0.5 0.1
J
Rated voltage (Voltage code)
As for the surge and derated voltage at 125C, refer to page 266 for details.
Standard ratings
V
Cap.(F)
Rated Volt (V)
Rated Capacitance (F)
Case code
Part Number
Leakage Current (A)
Disspation Factor (% @120Hz)
ESR *1C/C (@100kHz) (%)
Code
2.5 0E
4 0G
6.3 0J
10 1A M
16 1C M M M S
20 1D M
2.5 4
47 22 33 68 4.7 10 22 47 2.2 4.7
M M M S M M M S M M M S S M M M S M
F980E476MMA F980G226MMA F980G336MMA F980G686MSA F980J475MMA F980J106MMA F980J226MMA F980J476MSA F981A225MMA F981A475MMA F981A106MMA F981A226MSA F981A336MSA F981C105MMA F981C225MMA F981C475MMA F981C106MSA F981D105MMA
1.2 0.9 1.3 2.7 0.5 0.6 1.4 3.0 0.5 0.5 1.0 2.2 3.3 0.5 0.5 0.8 1.6 0.5
30 15 30 30 20 8 20 25 6 6 20 20 30 6 6 12 18 6
4 7.5 4 4 7.5 6 6 6 7.5 6 7.5 4 6 10 10 12 4 10
30 30 30 30 30 30 30 30 30 30 30 20 30 30 30 30 20 30
1 2.2 4.7 10 22 33 47 68 100
105 225 475 106 226 336 476 686 107 (S) M M M (M) S (S) M M M (M) S
M M S S
6.3
10
10 22 33 1 2.2 4.7 10 1
( ) The series in parentheses are being developed. Please contact to your local Nichicon sales office when these series are being designed in your application.
16
20
CAT.8100V
1mm
Marking
Keeping a capacitor surface-mounted on a substrate upside down and supporting the substrate at both of the opposite bottom points 45mm apart from the center of the capacitor, the pressure strength is applied with 20 a specified jig at the center of the R230 substrate so that the substrate may bend by 1mm as illustrated. Then, there shall be found no 45 45 remarkable abnormality on the capacitor terminals.


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