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quality RoHS 2.0 Compliant Miniature Aluminum Electrolytic Capacitors BERYL Electronic Tech RC010M681LO8*12TH-2B1Et for Circuits factory
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quality RoHS 2.0 Compliant Miniature Aluminum Electrolytic Capacitors BERYL Electronic Tech RC010M681LO8*12TH-2B1Et for Circuits factory
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Specifications
Lifetime:
2000hrs@105℃
Capacitance:
680uF
Height - Seated (Max):
12mm
Voltage Rating:
10V
Diameter:
8mm
Tolerance:
±20%
Mfr. Part #:
RC010M681LO8*12TH-2B1Et
Package:
Through Hole,D8xL12mm
Key Attributes
Model Number: RC010M681LO8*12TH-2B1Et
Product Description

Product Overview

The RC Series Miniature Aluminum Electrolytic Capacitors are designed for high-performance applications, particularly in switching power supplies. They feature low impedance and high ripple current capabilities, ensuring reliable operation and extended lifespan. These capacitors are RoHS 2.0 compliant, reflecting a commitment to environmental standards.

Product Attributes

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

Technical Specifications

General Characteristics

Item Characteristics
Category Temperature Range -40 ~ +105
Rated Voltage Range 6.3 ~ 450V.DC
Capacitance Tolerance 20% (M) (at 20, 120Hz)
Leakage Current (After 2 minute application of rated voltage) I0.01CV or 3A, whichever is greater (at 20)
Leakage Current (at 20, for 6.3~100V) I0.02CV+10(A)
Dissipation Factor (tan) (at 20, 120Hz) See table below. For capacitance >1000F, add 0.02 for each 1000F increase.
Low Temperature Characteristics (Impedance Ratio Max.) (at 120Hz) See table below.
Endurance (at 105, with rated ripple current) Capacitance change 20% of initial value; D.F.(tan) 200% of initial specified value; Leakage current initial specified value. Load life: 2000h for 5~8, 3000h for 10 (6.3~100V); 3000h for 6.3, 5000h for 8 (160~450V).
Shelf Life (at 105, without voltage) Capacitance change 20% of initial value; D.F.(tan) 200% of initial specified value; Leakage current 200% of initial specified value. (After 1000 hours storage, restored to 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

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 - - -

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 1.5 1.5 1.5 1.5 2.0 2.0
(L20) 2.0 2.0 2.0 2.0 2.0 2.0 2.0

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 (Partial List)

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 22 511 1.0 100
10 33 511 0.900 150
10 47 511 0.500 160
10 100 511 0.500 165
16 10,000 1840 0.015 3,810
16 15,000 1836 0.015 3,690
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 6.311 3.2 180
50 22 6.311 1.0 220
50 33 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 6.311 4.0 130
63 6.8 6.311 3.8 145
63 10 6.311 3.2 180
63 22 6.311 1.0 220
63 33 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 6.311 3.2 180
100 22 6.311 1.0 220
100 33 6.311 0.800 260
160 10 10X16 320 320
160 22 10X20 500 500
160 33 10X20 650 650
160 47 10X20 750 750
160 68 12.5X20 1180 1180
160 82 12.5X25 1,420 1,420
160 100 16X20 1,420 1,420
160 150 16X25 1,890 1,890
160 220 18X25 2,370 2,370
200 6.8 8X12 204 204
200 10 10X16 320 320
200 22 10X16 453 453
200 22 10X20 500 500
200 33 10X16 589 589
200 33 10X20 650 650
200 47 12.5X20 980 980
200 47 18X20 1,093 1,093
200 47 18X25 1,200 1,200
200 68 16X20 1,300 1,300
200 68 18X25 1,470 1,470
250 4.7 8X12 160 160
250 10 10X16 320 320
250 15 12.5X25 487 487
250 22 12.5X25 760 760
250 33 12.5X25 861 861
250 47 12.5X25 1,027 1,027
250 47 18X20 1,180 1,180
250 68 16X20 1,300 1,300
250 68 16X30 1,488 1,488
250 82 16X20 1,380 1,380
350 5 10X12.5 150 150
350 5.6 10X12.5 180 180
350 6.8 10X16 280 280
350 10 10X20 350 350
350 15 12.5X25 550 550
350 22 12.5X25 760 760
350 33 12.5X25 861 861
350 47 12.5X25 1,027 1,027
350 47 18X20 1,180 1,180
350 68 16X20 1,300 1,300
350 68 16X30 1,488 1,488
350 82 16X20 1,380 1,380
400 1 8X12 60 60
400 1.5 8X12 90 90
400 1.5 10X12.5 100 100
400 1.8 8X12 95 95
400 1.8 10X12.5 120 120
400 2.2 8X12 95 95
400 2.2 10X12.5 140 140
400 3.3 8X12 130 130
400 3.3 10X12.5 150 150
400 4.7 8X12 171 171
400 4.7 10X16 220 220
400 5.6 10X16 250 250
400 6.8 10X16 280 280
400 10 10X16 317 317
400 10 10X20 350 350
400 15 12.5X20 550 550
400 22 10X16 453 453
400 22 10X20 500 500
400 33 10X16 640 640
400 33 12.5X20 800 800
400 47 12.5X20 980 980
400 47 16X20 1,073 1,073
400 47 18X20 1,180 1,180
400 68 16X20 1,300 1,300
400 68 16X25 1,374 1,374
400 82 16X20 1,380 1,380
400 100 16X20 1,420 1,420
400 150 16X25 1,890 1,890
450 2.2 8X12 105 105
450 4.7 8X16 176 176
450 5.6 10X20 250 250
450 6.8 10X12.5 228 228
450 10 10X20 350 350
450 15 12.5X25 600 600
450 22 12.5X25 698 698
450 33 16X20 891 891
450 47 16X25 1,121 1,121
450 47 18X25 1,200 1,200
450 68 16X20 1,300 1,300
450 82 18X25 1,530 1,530
450 100 16X25 1,530 1,530
450 150 18X25 1,940 1,940

Note on Endurance: The lifespan of aluminum electrolytic capacitors is halved for every 5 rise in internal temperature caused by ripple current. To ensure long life, the RMS ripple current should be reduced during operation.


2410121236_BERYL-Electronic-Tech-RC010M681LO8-12TH-2B1Et_C7436422.pdf

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