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Aluminum Electrolytic Capacitors Radial, High Temperature, Low Impedance, High Vibration Capability 40 RTM lower Z longer life 50 RMI 25 C 46 RTI high vibration QUICK REFERENCE DATA DESCRIPTION VALUE Nominal case sizes (Ø D x L in mm) 6 x 20 to 8 x 35 Rated capacitance range, C R 390 μf to 6800 μf Tolerance on C R ± 20 % Rated voltage range, U R 6 V to 63 V Category temperature range -55 C to +25 C Endurance test at 25 C 3000 h to 5000 h Useful life at 25 C 4000 h to 6000 h Useful life at 40 C,.8 x I R applied 400 000 h Shelf life at 0 V, 25 C 000 h Based on sectional specification IEC 60384-4 / EN30300 Climatic category IEC 60068 55 / 25 / 56 FEATURES Very long useful life: 4000 h to 6000 h at 25 C High stability, high reliability Very low ESR AEC-Q200 qualified Excellent ripple current capability High vibration resistance up to 50 g Polarized aluminum electrolytic capacitors, non-solid electrolyte Radial leads, cylindrical aluminum case, insulated with a blue PET sleeve Charge and discharge proof Material categorization: for definitions of compliance please see www.vishay.com/doc?9992 APPLICATIONS Power supplies (SMPS, DC/DC converters) for industrial, automotive, telecommunications and military Smoothing, filtering and buffering MARKING The capacitors are marked (where possible) with the following information: Rated capacitance (in μf) Tolerance on rated capacitance, code letter in accordance with IEC 60062 (M for ± 20 %) Rated voltage (in V) Date code, in accordance with IEC 60062 Code indicating factory of origin Logo of manufacturer Upper category temperature (25 C) Negative terminal identification Series number (246) SELECTION CHART FOR C R, U R, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm) C R U R (V) (μf) 6 25 35 50 63 390 - - - - 6 x 20 470 - - - - 8 x 20 560 - - - - 6 x 25 - - - - 8 x 25 680 - - - - 6 x 3 820 - - - 6 x 20 6 x 35 000 - - - 8 x 20 8 x 3 - - - 6 x 25 - Revision: 4-Mar-7 Document Number: 28422

SELECTION CHART FOR C R, U R, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm) C R (μf) 200 - - 6 x 20 8 x 25 8 x 35 - - - 6 x 3-500 - - 8 x 20 6 x 35-800 - 6 x 20 6 x 25 8 x 3-2200 U R (V) 6 25 35 50 63 - - 8 x 25 8 x 35 - - - 6 x 3 - - 2700 6 x 20 8 x 20 6 x 35 - - - 6 x 25 8 x 3 - - 3300 8 x 20 6 x 3 8 x 35 - - 3900 6 x 25 8 x 25 - - - 4700 8 x 25 6 x 35 - - - 6 x 3 8 x 3 - - - 5600 6 x 35 8 x 35 - - - 6800 8 x 3 - - - - DIMENSIONS in millimeters AND AVAILABLE FORMS - 5 min. 5 min. Ø d Ø D F Ø d Ø D F L + L 4 + 0 Fig. 2 - Form CA: Long leads Fig. 3 - Form CB: Cut leads Fig. 4 - Form TFA: Taped in box (ammopack) Table DIMENSIONS in millimeters, MASS, AND PACKAGING QUANTITIES NOMINAL CASE SIZE Ø D x L CASE CODE Ø d Ø D max. L max. F MASS (g) PACKAGING QUANTITIES FORM CA FORM CB 6 x 20 9a 0.8 6.5 22.0 7.5 ± 0.5 6.0 250 250 250 6 x 25 9 0.8 6.5 27.0 7.5 ± 0.5 8.0 250 250 250 6 x 3 20 0.8 6.5 33.5 7.5 ± 0.5 9.0 00 00 250 6 x 35 2 0.8 6.5 37.5 7.5 ± 0.5.0 00 00-8 x 20 820 0.8 8.5 22.0 7.5 ± 0.5 8.0 00 00 250 8 x 25 825 0.8 8.5 27.0 7.5 ± 0.5 0.0 00 00 250 8 x 3 83 0.8 8.5 33.5 7.5 ± 0.5 2.5 00 00 250 8 x 35 22 0.8 8.5 37.5 7.5 ± 0.5 4.5 00 00 - FORM TFA Revision: 4-Mar-7 2 Document Number: 28422

ELECTRICAL DATA SYMBOL DESCRIPTION C R Rated capacitance at 00 Hz, tolerance ± 20 % I R Rated RMS ripple current at 00 khz, 25 C I L2 Max. leakage current after 2 min at U R tan Max. dissipation factor at 00 Hz Z Max. impedance at 00 khz Note Unless otherwise specified, all electrical values in Table 2 apply at T amb = 20 C, P = 86 kpa to 06 kpa, RH = 45 % to 75 % ORDERING EXAMPLE Electrolytic capacitor 246 series, high vibration resistance 4700 μf / 25 V; ± 20 % Nominal case size: Ø 8 mm x 3 mm; Form TFA Ordering code: MAL224696473E3 Table 2 ELECTRICAL DATA AND ORDERING INFORMATION U R (V) 6 25 35 50 63 C R 00 Hz (μf) NOMINAL CASE SIZE Ø D x L (mm) I R 00 khz 25 C (ma) I L2 2 min (μa) tan 00 Hz Z 00 khz +20 C () Z 00 khz -40 C () ORDERING CODE MAL2246... BULK PACKAGING TAPED FORM CA FORM CB FORM TFA 2700 6 x 20 900 435 0.8 0.034 0.204 55272E3 65272E3 35272E3 3300 8 x 20 2000 53 0.20 0.033 0.98 55332E3 65332E3 35332E3 3900 6 x 25 2500 627 0.20 0.024 0.44 55392E3 65392E3 35392E3 4700 8 x 25 2800 755 0.22 0.025 0.50 55472E3 65472E3 35472E3 4700 6 x 3 3000 755 0.22 0.02 0.26 95475E3 95476E3 95473E3 5600 6 x 35 3200 899 0.24 0.08 0.08 55562E3 65562E3-6800 8 x 3 300 09 0.24 0.022 0.32 55682E3 65682E3 35682E3 800 6 x 20 900 453 0.4 0.034 0.204 5682E3 6682E3 3682E3 2700 8 x 20 2000 678 0.6 0.033 0.98 56272E3 66272E3 36272E3 2700 6 x 25 2500 678 0.6 0.024 0.44 96275E3 96276E3 96273E3 3300 6 x 3 3000 828 0.8 0.02 0.26 56332E3 66332E3 36332E3 3900 8 x 25 2800 978 0.8 0.025 0.50 56392E3 66392E3 36392E3 4700 6 x 35 3200 78 0.20 0.08 0.08 56472E3 66472E3-4700 8 x 3 300 78 0.20 0.022 0.32 96475E3 96476E3 96473E3 5600 8 x 35 300 403 0.22 0.09 0.4 56562E3 66562E3-200 6 x 20 900 423 0.2 0.034 0.204 5022E3 6022E3 3022E3 500 8 x 20 2000 528 0.2 0.033 0.98 5052E3 6052E3 3052E3 800 6 x 25 2500 633 0.2 0.024 0.44 5082E3 6082E3 3082E3 2200 8 x 25 2800 773 0.4 0.025 0.50 50222E3 60222E3 30222E3 2200 6 x 3 3000 773 0.4 0.02 0.26 90225E3 90226E3 90223E3 2700 6 x 35 3200 948 0.4 0.08 0.08 50272E3 60272E3-2700 8 x 3 300 948 0.4 0.022 0.32 90275E3 90276E3 90273E3 3300 8 x 35 300 58 0.6 0.09 0.4 50332E3 60332E3-820 6 x 20 650 43 0.0 0.047 0.282 582E3 682E3 382E3 000 8 x 20 800 503 0.0 0.039 0.234 502E3 602E3 302E3 000 6 x 25 200 503 0.0 0.03 0.86 905E3 906E3 903E3 200 8 x 25 2400 603 0.0 0.030 0.80 522E3 622E3 322E3 200 6 x 3 2550 603 0.0 0.027 0.62 925E3 926E3 923E3 500 6 x 35 2800 753 0.0 0.022 0.32 552E3 652E3-800 8 x 3 2700 903 0.0 0.026 0.56 582E3 682E3 382E3 2200 8 x 35 3000 03 0.2 0.022 0.32 5222E3 6222E3-390 6 x 20 250 249 0.0 0.075 0.450 5839E3 6839E3 3839E3 470 8 x 20 500 299 0.0 0.055 0.330 5847E3 6847E3 3847E3 560 6 x 25 800 356 0.0 0.048 0.288 5856E3 6856E3 3856E3 680 8 x 25 200 43 0.0 0.04 0.246 5868E3 6868E3 3868E3 680 6 x 3 2200 43 0.0 0.036 0.26 98685E3 98686E3 98683E3 820 6 x 35 2500 520 0.0 0.029 0.74 5882E3 6882E3-000 8 x 3 2400 633 0.0 0.032 0.92 5802E3 6802E3 3802E3 200 8 x 35 2600 759 0.0 0.029 0.74 5822E3 6822E3 - Revision: 4-Mar-7 3 Document Number: 28422

Table 3 EXTENDED VIBRATION SPECIFICATIONS PARAMETER PROCEDURE REQUIREMENTS Vibration specifications From 0 g to 50 g No visible damage; Vibration frequency range Vibration profile 0 Hz to 2 khz Constant sinus sweep 3 directions 8 h per direction no leakage of electrolyte; marking legible C/C: ± 5 % with respect to initial measurements 60 Acceleration (g) 50 High vibration specification 40 30 20 0 Standard vibration specification AEC-Q200 0 0 0.5.5 2.0 f (khz) Fig. 5 - Vibration profile Table 4 ADDITIONAL ELECTRICAL DATA PARAMETER CONDITIONS VALUE Voltage Surge voltage U s.5 x U R Reverse voltage U rev 0.5 V Current Leakage current After 2 min at U R I L2 0.0 C R x U R + 3 μa Inductance Equivalent series inductance (ESL) Case Ø D 6 mm Typ. 8 nh Resistance Equivalent series resistance (ESR) Calculated from tan max. and C R (see Table 2) ESR = tan /2 f C R CAPACITANCE (C) C C 0.2. C C 0.2.0 0.8.0 0.6 0.9 0.4 0.2 0.8-60 -40-20 0 20 40 60 80 00 20 40 T ( C) Fig. 6 - Typical multiplier of capacitance at 00 Hz as a function of temperature (C 0 = C at 20 C) 0.0 0 00 000 0 000 00 000 f (Hz) Fig. 7 - Typical multiplier of capacitance as a function of frequency at 20 C (C 0 = C at 00 Hz) Revision: 4-Mar-7 4 Document Number: 28422

EQUIVALENT SERIES RESISTANCE (ESR) ESR ESR 0 00 0 ESR ESR 0 5 4 3 2 0. -60-40 -20 0 20 40 60 80 00 20 40 T ( C) Fig. 8 - Typical multiplier of ESR at 00 Hz as a function of temperature (ESR 0 = ESR at 20 C) 0 0 00 000 0 000 00 000 f (Hz) Fig. 9 - Typical multiplier of ESR at 20 C as a function of frequency (ESR 0 = ESR at 00 Hz) IMPEDANCE (Z) 00 00 Z Z 0 0 Z (Ω) 0 800 µf, 35 V, 6 x 25 0. 3300 µf, 35 V, 8 x 35 0. -60-40 -20 0 20 40 60 80 00 20 40 T ( C) Fig. 0 - Typical multiplier of impedance at 00 khz as a function of temperature (Z 0 = Z at 20 C) 0.0 0 00 000 0 000 00 000 f (Hz) Fig. - Typical impedance Z at 20 C as a function of frequency 000 Z (Ω) 00 Curve : 560 µf, 63 V, 6 x 25 Curve 2: 680 µf, 63 V, 6 x 3 Curve 3: 000 µf, 63 V, 8 x 3 0 2 3 0. 0.0 0 00 000 0 000 00 000 f (Hz) Fig. 2 - Typical impedance Z at 20 C as a function of frequency Revision: 4-Mar-7 5 Document Number: 28422

.0 www.vishay.com RIPPLE CURRENT AND USEFUL LIFE Table 5 ENDURANCE TEST DURATION AND USEFUL LIFE AS A FUNCTION OF CASE SIZE NOMINAL CASE SIZE Ø D x L (mm) Note Multiplier of useful life code: MBC242 CASE CODE ENDURANCE AT 25 C (h) USEFUL LIFE AT 25 C (h) 6 x 20 9a 3000 4000 6 x 25 9 3000 5000 6 x 3 20 4000 6000 6 x 35 2 5000 6000 8 x 20 820 3000 4000 8 x 25 825 3000 5000 8 x 3 83 4000 6000 8 x 35 22 5000 6000 I A I R 4.3 4.2 MBC242 4. 4.0 3.9 3.8 3.7 3.6 3.5 3.4 3.3 3.2 3. 3.0 2.8 Lifetime multiplier 2.6.5 2.0 2.4 2.2 6.0 3.0 4.0 I A = Actual ripple current at 00 khz I R = Rated ripple current at 00 khz, 25 C () Useful life at 25 C and I R applied; see Table 6 2.0.8.6.4.2.0 0.8 0.5 0.0 40 50 60 70 80 90 00 0 400 200 60 00 30 20 2 8.0 () 20 30 T amb ( C) Fig. 3 - Multiplier of useful life as a function of ambient temperature and ripple current load Revision: 4-Mar-7 6 Document Number: 28422

Table 6 MULTIPLIER OF RIPPLE CURRENT (I R ) AS A FUNCTION OF FREQUENCY Table 7 FREQUENCY (Hz) U R (V) 50 00 300 000 3000 0 000 00 000 I R MULTIPLIER 6 0.60 0.70 0.85 0.90 0.95.00.00 25 0.60 0.70 0.85 0.90 0.95.00.00 35 0.50 0.65 0.80 0.85 0.90 0.95.00 50 0.35 0.50 0.65 0.80 0.90 0.90.00 63 0.35 0.50 0.65 0.80 0.90 0.90.00 TEST PROCEDURES AND REQUIREMENTS TEST NAME OF TEST Endurance Useful life Shelf life REFERENCE IEC 60384-4 / EN30300 subclause 4.3 CECC 3030 subclause.8. IEC 60384-4 / EN30300 subclause 4.7 PROCEDURE (quick reference) T amb = 25 C; U R applied; for test duration see Table 3 T amb = 25 C; U R and I R applied; for test duration see Table 3 T amb = 25 C; no voltage applied; 000 h after test: U R to be applied for 30 min, 24 h o 48 h before measurement REQUIREMENTS C/C: ± 5 % tan.3 x spec. limit Z 2 x spec. limit I L2 spec. limit C/C: ± 30 % tan 3 x spec. limit Z 3 x spec. limit I L2 spec. limit no short or open circuit total failure percentage: % C/C: ± 5 % tan.3 x spec. limit Z 3 x spec. limit I L2 spec. limit Statements about product lifetime are based on calculations and internal testing. They should only be interpreted as estimations. Also due to external factors, the lifetime in the field application may deviate from the calculated lifetime. In general, nothing stated herein shall be construed as a guarantee of durability. Revision: 4-Mar-7 7 Document Number: 28422

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