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EEAFC0J270 Datasheet(PDF) 2 Page - Panasonic Semiconductor

Part No. EEAFC0J270
Description  Aluminum Electrolytic Capacitors/ FC
Download  10 Pages
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Maker  PANASONIC [Panasonic Semiconductor]
Homepage  http://www.panasonic.com/industrial/
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EEAFC0J270 Datasheet(HTML) 2 Page - Panasonic Semiconductor

 
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Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Aluminum Electrolytic Capacitors/ FC
– EEE-64 –
Case size/ Impedance/ Ripple Current
W.V(V.DC)
6.3 V to 35 V
50 V
63 V
100 V
Case size
(
φD L)
Impedance
( )/(100 kHz)
Ripple
Current
(mA r.m.s)
/(100 kHz)
Impedance
( )/(100 kHz)
Ripple
Current
(mA r.m.s)
/(100 kHz)
Impedance
( )/(100 kHz)
Ripple
Current
(mA r.m.s)
/(100 kHz)
Impedance
( )/(100 kHz)
Ripple
Current
(mA r.m.s)
/(100 kHz)
20 °C –10 °C
20 °C –10 °C
20 °C –10 °C
20 °C –10 °C
4
72.00
5.00
65
5
70.950
2.40
120
6.3
70.450
1.20
200
4
11
1.30
2.60
120
2.50
5.00
90
3.50
7.00
80
5
11
0.800
1.60
175
2.40
✽14.80 ✽1
✽3
2.00
4.00
145
4.10
8.20
80
✽2, ✽3 ✽2, ✽3
✽3
5
15
0.500
1.00
235
0.900
1.80
215
1.30
2.60
200
2.80
5.60
90
6.3
11.2
0.350
0.700
290
0.600
1.20
260
1.00
2.00
240
1.80
3.60
114
6.3
15
0.250
0.500
400
0.400
0.800
360
0.700
1.40
330
1.10
2.20
155
8
11.5
0.117
0.234
555
0.234
0.468
485
0.342
0.684
405
0.680
1.36
260
8
15
0.085
0.170
730
0.155
0.310
635
0.230
0.460
535
0.450
0.900
340
8
20
0.065
0.130
995
0.120
0.240
860
0.178
0.356
690
0.330
0.660
455
10
12.5
0.090
0.180
755
0.162
0.324
615
0.256
0.512
535
0.530
1.06
306
10
16
0.068
0.136
1050
0.119
0.238
850
0.194
0.388
600
0.360
0.720
400
10
20
0.052
0.104
1220
0.090
0.180
1030
0.147
0.294
885
0.240
0.480
463
10
25
0.045
0.090
1440
0.082
0.164
1200
0.130
0.260
1050
0.210
0.420
599
10
30
0.035
0.070
1815
0.060
0.120
1610
0.090
0.180
1300
0.150
0.300
698
12.5
15
0.065
0.130
1205
0.110
0.220
1150
0.150
0.300
1020
0.230
0.460
511
12.5
20
0.038
0.076
1655
0.063
0.126
1480
0.085
0.170
1285
0.180
0.360
671
12.5
25
0.030
0.060
1945
0.050
0.100
1832
0.070
0.140
1720
0.110
0.220
807
12.5
30
0.025
0.050
2310
0.040
0.080
2215
0.055
0.110
2090
0.098
0.196
937
12.5
35
0.022
0.044
2510
0.034
0.068
2285
0.047
0.094
2265
0.087
0.174
1040
12.5
40
0.018
0.036
2655
0.030
0.060
2590
0.042
0.084
2560
0.072
0.144
1130
16
15
0.043
0.086
1690
0.080
0.160
1610
0.090
0.180
1410
0.140
0.280
793
16
20
0.029
0.058
2205
0.048
0.096
1835
0.059
0.118
1765
0.110
0.220
995
16
25
0.022
0.044
2555
0.034
0.068
2235
0.050
0.100
2160
0.089
0.178
1170
16
31.5
0.018
0.036
3010
0.028
0.056
2700
0.043
0.086
2670
0.062
0.124
1520
16
35.5
0.016
0.032
3150
0.025
0.050
2790
0.036
0.072
2770
0.053
0.106
1730
16
40
0.015
0.030
3360
0.023
0.046
2845
0.030
0.060
2825
0.047
0.094
1920
18
15
0.038
0.076
2000
0.068
0.136
1900
0.086
0.172
1690
0.120
0.240
917
18
20
0.028
0.056
2490
0.042
0.084
2420
0.055
0.110
2290
0.080
0.160
1230
18
25
0.020
0.040
2740
0.029
0.058
2610
0.043
0.086
2585
0.070
0.140
1420
18
31.5
0.016
0.032
3635
0.025
0.050
3000
0.032
0.064
2950
0.062
0.124
1600
18
35.5
0.015
0.030
3680
0.023
0.046
3100
0.030
0.060
3095
0.041
0.082
1770
18
40
0.014
0.028
3735
0.025
0.050
3205
0.036
0.072
2300
✽1 : Apply to 1 µF
✽2 : Apply to 2.2, 3.3, 4.7, 10L, 12, 18 and 22 µF
✽3
Case size
(
φD L)
Capacitance
(µF)
Impedance ( )/(100 kHz)
Ripple Current
(mA r.m.s)(100 kHz)
20 °C
–10 °C
5
11
1.0
2.40
4.80
20
2.2
1.80
3.60
45
3.3
1.30
2.60
65
4.7
1.30
2.60
95
10L
1.30
2.60
125
12
1.30
2.60
135
15
1.30
2.60
145
18
1.30
2.60
155
22
1.30
2.60
155
00 Nov. 2012


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