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TG471M1HBK-1322

Description
Aluminum Electrolytic Capacitor, Polarized, Aluminum, 50V, 20% +Tol, 20% -Tol, 470uF
CategoryPassive components    capacitor   
File Size172KB,2 Pages
ManufacturerLelon
Websitehttp://www.lelon.com.tw/en/product.php
Download Datasheet Parametric View All

TG471M1HBK-1322 Overview

Aluminum Electrolytic Capacitor, Polarized, Aluminum, 50V, 20% +Tol, 20% -Tol, 470uF

TG471M1HBK-1322 Parametric

Parameter NameAttribute value
MakerLelon
package instruction,
Reach Compliance Codecompliant
ECCN codeEAR99
capacitance470 µF
Capacitor typeALUMINUM ELECTROLYTIC CAPACITOR
diameter13 mm
dielectric materialsALUMINUM
length22 mm
Manufacturer's serial numberTG(1H)
negative tolerance20%
Number of terminals2
Maximum operating temperature105 °C
Minimum operating temperature-40 °C
Package formAxial
method of packingBulk
polarityPOLARIZED
positive tolerance20%
Rated (DC) voltage (URdc)50 V
seriesTG(1H)

TG471M1HBK-1322 Preview

Aluminum Electrolytic Capacitors
CE02 Type
Features
105
, 1000 hours assured
Excellent temperature performance
TG
SPECIFICATIONS
Items
Operating Temperature Range
Capacitance Tolerance
Rated Voltage
≦100V
after 2 minutes
I = 0.02CV or 3 (μA)
whichever is greater
6.3 ~ 250V
-40℃ ~ +105℃
±20%
>100V
after 5 minutes
CV≦1000
CV>1000
I = 0.03CV+15(μA)
I = 0.02CV+25(μA)
Performance
350 ~ 450V
-25℃ ~ +105℃
(at 120Hz, 20℃)
Leakage Current (at 20℃)
Time
Leakage Current
Where, C= rated capacitance in
μF.
V = rated DC working voltage in V.
Dissipation Factor
(Tanδ at 120 Hz, 20℃)
Rated Voltage
Tanδ(max)
6.3
10
16
25
35
50
63
100
160
200
250
350
400
450
0.23 0.20 0.17 0.15 0.12 0.10 0.09 0.08 0.12 0.14 0.17 0.20 0.25 0.25
When the capacitance exceeds 1000μF, 0.02 shall be added every 1000μF increase.
Impedance ratio shall not exceed the values given in the table below.
Rated Voltage
6.3
φD<16
φD<16
4
6
8
12
10
3
4
6
10
16
3
4
6
8
25
2
3
4
8
35
2
3
4
8
50
2
3
3
8
63 100 160 200 250 350 400 450
2
3
3
6
2
3
3
6
3
4
6
8
8
10
12
-
14
-
16
-
Low Temperature
Characteristics (at 120Hz)
Z(-25℃)
Ratio
Z(-40℃)
Impedance /Z(+20℃)
φD≧16
/Z(+20℃)
φD≧16
Test Time
1000 hrs
Within
±20%of
initial value
Less than 200% of specified value
Within specified value
Capacitance Change
Load Life Test
Dissipation Factor
Leakage Current
applied for 1000 hrs at 105℃.
Test Time
Capacitance Change
Dissipation Factor
* The above specifications shall be satisfied when the capacitors are restored to 20℃after the rated voltage
1000 hrs
Within
±20%of
initial value
Less than 200% of specified value
Within specified value
Less than 200% of specified value
Shelf Life Test
Leakage
Current
6.3 ~ 100V
160 ~ 450V
* The above specifications shall be satisfied when the capacitors are restored to 20℃after exposing them for
1000 hrs at 105℃ without voltage applied.
Freq.(Hz)
Ripple Current &
Frequency Multipliers
Cap.(μF)
Under 100
100 to 1000
1000 up above
60
0.70
0.75
0.80
120
1.00
1.00
1.00
JIS C 5101-4
500
1.30
1.20
1.10
1K
1.40
1.30
1.12
10K
up
1.50
1.35
1.15
Other Standards
E.CAP.No1.2002/2003
55
TG
Aluminum Electrolytic Capacitors
CE02 Type
DIAGRAM OF DIMENSIONS
Unit: mm
LEAD DIAMETER
φD
φd
α
β
5
6.3
0.6
1.5
0.5
8
10
13
16
0.8
2.0
1.0
18
22
1.0
25
DIMENSION & PERMISSIBLE RIPPLE CURRENT
V.DC
μF
0.1
0.22
0.33
0.47
1
2.2
3.3
4.7
10
22
33
47
100
220
330
470
1000
2200
3300
4700
Contents
Dimension:
φD
× L(mm)
Ripple Current: mA/rms at 120 Hz, 105°C
25V
(1E)
35V
(1V)
mA
φD×L
mA
6.3V
(0J)
φD×L
mA
10V
(1A)
φD×L
mA
16V
(1C)
φD×L
mA
50V
(1H)
φD×L
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
63V
(1J)
mA
2
3.5
5
6
10
20
34
34
50
80
105
140
225
349
450
561
875
1408
1724
100V
(2A)
mA
3
4.5
7.5
9
15
30
32
36
56
90
123
162
248
420
495
632
984
φD×L
φD×L
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
6.3 × 13
6.3 × 13
8 × 13
8 × 16
10 × 17
13 × 22
13 × 27
13 × 27
18 × 37
φD×L
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
5 × 12
6.3 × 13
6.3 × 13
8 × 16
10 × 17
10 × 21
13 × 22
13 × 27
13 × 36
16 × 32
18 × 40
mA
3
5
8
9
15
30
32
38
64
106
150
180
287
458
582
713
1096
0R1
R22
R33
R47
010
2R2
3R3
4R7
100
220
330
470
101
221
331
471
102
222
332
472
V.DC
6.3 × 13
6.3 × 13
8 × 16
8 × 16
10 × 17
13 × 22
13 × 22
13 × 27
113
172
236
281
453
740
906
1168
5 × 12
6.3 × 13
6.3 × 13
8 × 16
8 × 16
10 × 17
13 × 22
13 × 27
16 × 27
77
121
185
253
302
486
793
1015
1252
5 × 12
5 × 12
6.3 × 13
6.3 × 13
8 × 13
8 × 16
10 × 17
10 × 21
13 × 27
16 × 27
16 × 37
73
93
145
231
323
359
569
926
1173
1443
6.3 × 13
6.3 × 13
8 × 13
8 × 16
10 × 17
10 × 21
13 × 22
16 × 27
16 × 33
18 × 42
63
78
99
166
246
345
432
662
1024
1300
1638
6.3 × 13
6.3 × 13
6.3 × 16
8 × 16
10 × 17
10 × 21
13 × 22
13 × 27
16 × 37
16 × 40
22 × 43
73
96
114
180
305
391
490
721
1177
1449
1878
6.3 × 13
6.3 × 13
8 × 16
10 × 17
10 × 21
13 × 22
13 × 22
16 × 33
18 × 40
22 × 43
160V
(2C)
φD×L
6.3 × 13
6.3 × 13
8 × 16
8 × 16
10 × 17
13 × 22
13 × 22
13 × 27
16 × 33
18 × 42
22 × 43
200V
(2D)
mA
7
15
21
31
60
121
154
198
345
586
632
250V
(2E)
mA
9
16
26
33
66
121
167
214
368
609
350V
(2V)
mA
12
17
31
38
72
126
178
241
391
632
400V
(2G)
mA
13
19
33
44
77
132
186
253
402
450V
(2W)
mA
15
23
36
46
82
143
201
402
448
μF
1
2.2
3.3
4.7
10
22
33
47
100
220
330
Contents
φD×L
6.3 × 16
8 × 16
8 × 16
8 × 16
10 × 21
13 × 22
13 × 27
16 × 32
16 × 37
22 × 43
φD×L
6.3 × 16
8 × 16
8 × 20
10 × 17
10 × 21
13 × 27
16 × 27
16 × 33
18 × 43
22 × 43
φD×L
8 × 16
8 × 20
8 × 20
10 × 21
13 × 22
13 × 27
16 × 33
16 × 42
22 × 43
φD×L
8 × 16
10 × 21
10 × 21
13 × 22
13 × 27
16 × 37
16 × 42
22 × 43
25 × 52
φD×L
8 × 16
10 × 21
10 × 21
13 × 22
13 × 27
16 × 37
16 × 42
22 × 43
25 × 52
mA
15
23
36
46
82
143
201
402
448
010
2R2
3R3
4R7
100
220
330
470
101
221
331
56
E.CAP.No1.2002/2003
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