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quality Miniature Aluminum Electrolytic Capacitors RoHS 2.0 Compliant BERYL Electronic Tech RC080M471LO13*25TH-2A1E Series factory
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quality Miniature Aluminum Electrolytic Capacitors RoHS 2.0 Compliant BERYL Electronic Tech RC080M471LO13*25TH-2A1E Series factory
>
Specifications
Operating Temperature:
-40℃~+105℃
Lifetime:
-
Capacitance:
470uF
Height - Seated (Max):
25mm
Pin Spacing:
5mm
Voltage Rating:
80V
Diameter:
13mm
Equivalent Series Resistance(ESR):
-
Tolerance:
±20%
Ripple Current:
-
Mfr. Part #:
RC080M471LO13*25TH-2A1E
Package:
Through Hole,D13xL25mm
Key Attributes
Model Number: RC080M471LO13*25TH-2A1E
Product Description

Product Overview

The RC Series Miniature Aluminum Electrolytic Capacitors are designed for high-performance applications, particularly within switching power supplies. They feature low impedance and high ripple current capabilities, ensuring reliability and efficiency. These capacitors are RoHS 2.0 compliant, meeting stringent environmental standards.

Product Attributes

  • Series: RC Series
  • Type: Miniature Aluminum Electrolytic Capacitors
  • Compliance: RoHS 2.0 Compliant

Technical Specifications

General Characteristics

Item Characteristic
Category Temperature Range -40 ~ +105
Rated Voltage Range 6.3 ~ 450V.DC
Capacitance Tolerance 20%(M) (at 20, 120Hz)
Leakage Current (Max.) I0.01CV or 3A, whichever is greater (After 2 minute application of rated voltage at 20)
Leakage Current (Max.) I0.02CV+10(A) (After 2 minute application of rated voltage at 20)

Dissipation Factor (tan Max.) at 20, 120Hz

Rated Voltage (V) 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450
tan (Max.) 0.22 0.19 0.16 0.14 0.12 0.10 0.09 0.08 0.15 0.15 0.15 0.2 0.2 0.2

Note: When nominal capacitance exceeds 1000 F, add 0.02 to the value above for each 1000 F increase.

Low Temperature Characteristics (Impedance Ratio Max. at 120Hz)

Rated Voltage (V) 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450
Z(-25)/Z(+20) 4 3 3 3 3 2 2 2 3 5 6 - - -
Z(-40)/Z(+20) 8 6 4 4 4 4 4 4 4 7 8 - - -

Endurance (at 105)

Voltage Range Load Life Capacitance Change D.F. (tan) Leakage Current
6.3~100V 5~8: 2000h; 10: 3000h 20% of initial value 200% of initial specified value The initial specified value
160~450V 6.3: 3000h; 8: 5000h 20% of initial value 200% of initial specified value The initial specified value

Shelf Life (at 105, no voltage applied)

Duration Capacitance Change D.F. (tan) Leakage Current
1000 hours 20% of initial value 200% of initial specified value 200% of initial specified value

Dimensions (Unit: mm)

D 5 6.3 8 10 13 16 18
F 2.0 2.5 3.5 5.0 5.0 7.5 7.5
d 0.5 0.5 0.5/0.6 0.6 0.6 0.8 0.8
(L<20) 1.5
(L20) 2.0

Rated Ripple Current Coefficient (Frequency Coefficient)

Capacitance (F) Frequency (Hz)
120 1K 10K 100K
6.3~450V 4.7F 0.42 0.70 0.90 1.00
5.6 ~ 33F 0.50 0.73 0.92 1.00
34 ~ 330F 0.55 0.77 0.94 1.00
331 ~ 1,000F 0.60 0.80 0.96 1.00
1,000F 0.70 0.85 0.98 1.00

Standard Ratings

WV (Vdc) Cap. (F) Case Size DL (mm) Impedance () Max. 20 /100kHz Rated ripple current (mArms) 105/100KHz
6.3 33 511 1.0 100
6.3 47 511 1.0 125
6.3 68 6.311 0.420 180
6.3 100 6.311 0.250 220
10 10 511 1.5 125
10 22 511 0.900 140
10 33 511 0.900 150
10 47 511 0.500 160
16 10 511 1.0 100
16 22 511 1.0 125
16 33 511 1.0 150
16 47 511 1.0 150
16 100 511 0.500 165
25 4.7 511 2.8 80
25 6.8 511 2.5 95
25 10 511 1.5 125
25 22 511 0.900 140
25 33 511 0.900 150
25 47 511 0.500 160
35 4.7 511 4.2 110
35 6.8 511 2.8 120
35 10 511 1.2 135
35 22 511 0.800 150
35 33 511 0.500 180
35 47 6.311 0.400 220
35 68 6.311 0.300 250
35 100 6.311 0.230 286
50 0.47 511 8.0 68
50 1.0 511 6.0 80
50 2.2 511 5.5 90
50 3.3 511 4.5 95
50 4.7 6.311 4.0 130
50 6.8 6.311 3.8 145
50 10 511 2.0 145
50 22 511 1.5 170
50 33 6.311 1.0 220
50 47 6.311 0.800 260
63 0.47 511 6.0 68
63 1.0 511 5.5 80
63 2.2 511 4.5 90
63 3.3 511 4.0 95
63 4.7 511 2.7 110
63 6.8 511 2.5 120
63 10 511 2.0 145
63 22 511 1.5 170
63 33 6.311 1.0 220
63 47 6.311 0.800 260
100 0.47 511 8.0 68
100 1.0 511 6.0 80
100 2.2 511 5.5 90
100 3.3 511 4.5 95
100 4.7 6.311 4.0 130
100 6.8 6.311 3.8 145
100 10 511 2.0 145
100 22 511 1.5 170
100 33 6.311 1.0 220
100 47 6.311 0.800 260
160 10 1016 2.0 320
160 22 1020 1.0 500
160 33 1020 0.650 650
160 47 1020 0.500 750
160 68 12.520 0.420 1180
160 82 12.525 0.300 1420
160 100 1620 0.250 1420
160 150 1625 0.220 1890
160 220 1825 0.130 2370
200 6.8 812 3.8 145
200 10 1016 3.2 180
200 22 1020 2.5 285
200 33 1016 2.0 385
200 47 1016 1.5 510
200 68 1020 1.0 600
250 4.7 812 4.0 160
250 6.8 812 3.8 171
250 10 1016 3.2 250
250 15 12.520 2.5 487
250 22 12.525 1.5 698
250 33 12.525 1.0 861
250 47 12.520 0.980 980
250 47 1820 1.180 1180
250 68 1620 0.800 1300
250 82 1620 0.700 1380
250 100 1620 0.650 1420
250 150 1825 0.450 1940
350 5 1012.5 5.6 180
350 5.6 1012.5 5.0 180
350 6.8 1016 3.8 280
350 10 1020 3.2 350
350 22 1016 1.0 453
350 22 1020 0.650 500
350 33 1016 0.589 589
350 33 12.520 0.453 800
350 47 12.520 0.400 980
350 47 1625 0.317 1180
350 68 1620 0.250 1300
350 82 1620 0.220 1380
350 100 1625 0.180 1530
400 1 812 6.0 60
400 1.5 812 5.5 90
400 1.5 1012.5 5.0 100
400 1.8 812 5.5 95
400 1.8 1012.5 5.0 120
400 2.2 812 5.5 95
400 2.2 1012.5 5.0 140
400 3.3 812 4.5 130
400 3.3 1012.5 4.0 150
400 4.7 812 3.0 171
400 4.7 1016 2.7 220
400 5.6 1016 2.5 250
400 6.8 1016 2.15 280
400 10 1016 2.0 317
400 10 12.520 1.5 550
400 15 12.525 1.0 487
400 22 1020 0.800 500
400 22 1620 0.730 730
400 33 12.525 0.500 891
400 33 1620 0.500 900
400 47 1625 0.400 1121
400 47 1820 0.400 1093
400 47 1825 0.400 1200
400 68 1620 0.300 1300
400 82 1620 0.250 1380
400 100 1625 0.220 1420
400 150 1825 0.130 1940
450 2.2 812 4.0 176
450 4.7 816 3.0 220
450 5.6 1020 2.5 250
450 6.8 1012.5 2.28 280
450 10 1020 2.0 350
450 15 12.525 1.5 600
450 22 12.525 1.0 698
450 33 1620 0.891 900
450 47 1625 0.750 1121
450 47 1825 0.750 1200
450 68 1620 0.500 1300
450 82 1825 0.410 1530
450 100 1625 0.300 1420
450 150 1825 0.200 1890

Note: The endurance of capacitors is reduced with internal heating produced by ripple current at the rate of halving the lifetime with every 5 rise. When long life performance is required in actual use, the RMS ripple current has to be reduced.


2410121236_BERYL-Electronic-Tech-RC080M471LO13-25TH-2A1E_C2837923.pdf

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