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F980G336MMA Datasheet(PDF) 1 Page - Nichicon corporation

Part # F980G336MMA
Description  SOLID TANTALUM ELECTROLYTIC CAPACITORS
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Manufacturer  NICHICON [Nichicon corporation]
Direct Link  http://www.nichicon-us.com
Logo NICHICON - Nichicon corporation

F980G336MMA Datasheet(HTML) 1 Page - Nichicon corporation

  F980G336MMA Datasheet HTML 1Page - Nichicon corporation  
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F98
Specifications
Type numbering system (Example : 6.3V 10µF)
Drawing
L
W1
S2
W2
H
S1
M
1.6
± 0.1 0.85 ± 0.1 0.65 ± 0.1 0.8 ± 0.1 0.5 ± 0.1 0.6 ± 0.1
U
1.10
± 0.05 0.60 ± 0.05 0.35 ± 0.05 0.55 ± 0.05 0.3 ± 0.05 0.5 ± 0.05
(mm)
Cace Code
L
H
W1
W2
S1
S2
S1
S
2.0
± 0.1 1.25 ± 0.1 0.9 ± 0.1 0.8 ± 0.1 0.5 ± 0.1 1.0 ± 0.1
Rated voltage
(Voltage code)
J
U Case
M Case
Rated voltage
(Voltage code)
Capacitance code
Js
S Case
Taping code
(Refer to page 321 for details)
F
1
9
2
8
3
0
4
J
5
1
6
0
7
6
8
M
9
M
10
11
Case code
Capacitance tolerance
Rated capacitance
Rated voltage
Series
Marking
Standard Ratings
Category
Temperature Range
Capacitance Tolerance
Leakage Current
Dissipation Factor
Damp Heat
(Steady State)
Temperature Cycles
Resistance to Soldering
Heat
Surge∗
Endurance∗
Shear Test
Performance Characteristics
±20% (at 120Hz)
Refer to the list below
At 40
°C, 90 to 95% R.H., For 500hours (No voltage applied)
Capacitance Change
Refer to the list below (* 1)
Dissipation Factor
150% or less of initial specified value
Leakage Current
200% or less of initial specified value
Refer to next page
Provided that
After 5 minute's application of rated voltage, leakage current at 85
°C,
10 times or less than 20
°C specified value.
After 5 minute's application of rated voltage, leakage current at 125
°C,
12.5 times or less than 20
°C specified value.
At --55
°C / +125°C, For 30 minutes each, 5 cycles
Capacitance Change
Refer to the list below (* 1)
Dissipation Factor
150% or less than the initial specified value
Leakage Current
Initial specified value or less
At 260
°C, For 10 seconds, Reflow,
Capacitance Change
Refer 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
Ω resistor at the
rate of 30 seconds ON, 30 seconds OFF, for 1000 successive
test cycles at 85
°C, capacitors meet the characteristics
requirements listed below.
Capacitance Change
Refer to the list below (* 1)
Dissipation Factor
150% or less than the initial specified value
Leakage Current
200% or less than the initial specified value
After 1000 hours' application of rated voltage in series with a
3
Ω resistor at 85°C, capacitors meet the characteristic
requirements listed below
Capacitance Change
Refer to the list below (* 1)
Dissipation Factor
150% or less than the initial specified value
Leakage Current
200% or less than the initial specified value
After applying the pressure load of 5N
for 10
±1 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.
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
a specified jig at the center of the
substrate so that the substrate
may bend by 1mm as illustrated.
Then, there shall be found no
remarkable abnormality on the
capacitor terminals.
Item
--55 to +125
°C (Rated temperature : 85°C)
ESR
Refer to the list below
Terminal Strength
5N (0.51kg f)
For 10
± 1 seconds
20
R230
45
45
Resin-molded Chip,
High Capacitance Series
∗ As for the surge and derated voltage at 125˚C, refer to page 320 for details.
SOLID TANTALUM ELECTROLYTIC CAPACITORS
( ) The series in parentheses are being developed.
Please contact to your local Nichicon sales office when
these series are being designed in your application.
Compliant to the RoHS directive (2002/95/EC).
M
1
2.2
4.7
10
22
33
47
68
100
105
225
475
106
226
336
476
686
107
U
U
M
M
M
(M) S
(M) S
U M
U M
M
M
M S
(S)
U M
(U) M
M
(M) S
S
M
M
M
S
4
6.3
10
16
20
25
0G
0J
1A
1C
1D
1E
V
Cap.(µF)
Code
M
---
---
---
a
J
n
s
w
A
20
20
7.5
4
8
4
4
20
7.5
30
6
6
8
10
6
15
7.5
6
7.5
4
6
10
10
12
4
10
10
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±3 0
±2 0
±3 0
±3 0
±3 0
±3 0
±2 0
±3 0
±3 0
20
25
15
30
40
30
35
20
20
30
8
20
35
45
25
15
6
6
20
20
30
6
6
12
18
6
8
4.7
10
22
33
47
68
100
4.7
4.7
10
10
22
33
47
47
2.2
2.2
4.7
10
22
33
1
2.2
4.7
10
1
1
0.5
0.8
0.9
1.3
1.9
2.7
4.0
0.6
0.5
3.2
0.6
1.4
4.2
23.7
3.0
0.5
0.5
0.5
1.0
2.2
3.3
0.5
0.5
0.8
1.6
0.5
0.5
4V
6.3V
10V
16V
20V
25V
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U
U
M
M
M
S
S
U
M
U
M
M
M
M
S
U
M
M
M
S
S
M
M
M
S
M
M
∆C/C
(%)
Part Number
Leakage
Current
(µA)
*1 Disspation
Factor
(% @120Hz)
Case
code
ESR
(
@100kHz)
Rated Volt
Rated
Capacitance
(µF)
Capacitance
code
*1 : Leakage Current
After 5 minute's application of rated voltage, leakage current at 20˚C.
CAT.8100Z


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