DATA SHEET. 048 RML Aluminum electrolytic capacitors Radial Miniature Long-Life. BCcomponents

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1 DATA SHEET Supersedes data of January 998 File under, BC0 000 Jan 8

2 FEATURES Polarized aluminum electrolytic capacitors, non-solid electrolyte Radial leads, cylindrical aluminum case with pressure relief, insulated with a blue vinyl sleeve Charge and discharge proof Miniaturized, high CV-product per unit volume MAM079 Very long useful life: 3000 to 4000 hours at 05 C, high reliability. Fig. Component outlines. APPLICATIONS EDP, telecommunication, industrial, automotive and audio-video Smoothing, filtering, buffering in SMPS, timing Portable and mobile equipment (small size, low mass). 5 RLH high voltage 5 RMH lower longer life 6 RLL CV-values 36 RVI lower Z miniaturized miniaturized 50 RMI CCB005 miniaturized 48 RUS QUICK REFERENCE DATA DESCRIPTION VALUE Case sizes ( D nom L nom in mm) 0 to 8 35 Rated capacitance range, C R 00to0000µF Tolerance on C R ±0% Rated voltage range, U R 6.3to63V Category temperature range 40 to +05 C Endurance test at 05 C 000 hours Useful life at 05 C: case D = 0 and.5 mm 3000 hours case D = 6 and 8 mm 4000 hours Useful life at 40 C,.6 I R applied: case D = 0 and.5 mm hours case D = 6 and 8 mm hours Shelf life at 0 V, 05 C 000 hours Based on sectional specification IEC /EN30300 Climatic category IEC /05/ Jan 8

3 Selection chart for C R, U R and relevant nominal case sizes ( D L in mm) Preferred types in bold. C R U R (V) (µf) () Note. For lower CV-values see data sheet 6 RLL. 000 Jan 8 3

4 MECHANICAL DATA, AVAILABLE FORMS AND PACKAGING QUANTITIES O D O D L L F 5 min 4 0 O d Od 5 min F MBC47 MRA0 Dimensions in mm. For dimensions see Table. Fig. Form CA: Long leads. Dimensions in mm. For dimensions see Table. Fig.3 Form CB: Cut leads. Table Physical dimensions, mass and packaging quantities; see Figs and 3 NOMINAL CASE SIZE D L (mm) CASEC ODE d (mm) D max (mm) L max (mm) F (mm) MASS (g) FORM CA PACKAGING QUANTITIES PER BOX FORM CB FORM TFA ± ± ± ± ± ± ± ± ± Jan 8 4

5 Taped products MAM066 Form TFA Case D L 6 3 mm. Tape dimensions are specified in this handbook, section Packaging. Fig.4 Taped in box (ammopack). MARKING The capacitors are marked with the following information: Rated capacitance value (in µf) Tolerance on rated capacitance, code letter in accordance with IEC 6006 (M for ±0%) Rated voltage (in V) Upper category temperature (05 C) Group number (048) Code indicating factory of origin Name of manufacturer Date code, in accordance with IEC 6006 Negative terminal identification. 000 Jan 8 5

6 000 Jan 8 6 ELECTRICAL DATA AND ORDERING INFORMATION Unless otherwise specified, all electrical values in Table apply at T amb =0 C, P = 86 to 06 kpa, RH = 45 to 75%. SYMBOL DESCRIPTION C R rated capacitance at 00 Hz, tolerance ±0% I R rated RMS ripple current at 00 Hz, 05 C I L max. leakage current after minute at U R I L5 max. leakage current after 5 minutes at U R Tan δ max. dissipation factor at 00 Hz ESR equivalent series resistance at 00 Hz (calculated from tan δ max and C R ) Z max. impedance at 0 khz or 00 khz Table Electrical data and ordering information; preferred types in bold Ordering example Electrolytic capacitor 048 series 00 µf/6 V; ±0% Nominal case size:.5 5 mm; Form TFA Catalogue number: NOMINAL I C R CATALOGUE NUMBER U R I R CASE SIZE CASE 00 Hz L I L5 ESR Z Z Tan δ 00 Hz min 5min 00 Hz 0 khz 00 khz BULK PACKAGING TAPED (V) D L CODE 05 C 00 Hz (µf) (µa) (µa) (mω) (mω) (mω) (mm) (ma) FORM CA FORM CB FORM TFA

7 000 Jan 8 7 U R (V) C R 00 Hz (µf) NOMINAL CASE SIZE D L (mm) CASE CODE I R 00 Hz 05 C (ma) I L min (µa) I L5 5min (µa) Tan δ 00 Hz ESR 00 Hz (mω) Z 0 khz (mω) Z 00 khz (mω) CATALOGUE NUMBER BULK PACKAGING TAPED FORM CA FORM CB FORM TFA

8 Additional electrical data Voltage PARAMETER CONDITIONS VALUE Surge voltage Reverse voltage U s.5 U R U rev V Current Leakage current after minute at U R I L 0.0C R U R +3µA after 5 minutes at U R I L5 0.00C R U R +3µA Inductance Equivalent series inductance (ESL) case D = 0 mm typ. 6 nh case D.5 mm typ. 8 nh 000 Jan 8 8

9 Capacitance (C). MGC694 C C Curve : 6.3 V. Curve : 63 V. C 0 = capacitance at 0 C, 00 Hz o Tamb ( C) 0 Fig.5 Typical multiplier of capacitance as a function of ambient temperature.. C C 0.0 MGC Curve : 0 V. Curve : 6 V. Curve 3: 5 V. Curve 4: 50 V. Curve 5: 63 V. C 0 = capacitance at 0 C, 00 Hz f (Hz) 0 5 Fig.6 Typical multiplier of capacitance as a function of frequency. 000 Jan 8 9

10 Equivalent series resistance (ESR) ESR ESR MGC695 3 Curve : 0 V; case D = 0mm. Curve : 6.3 V; case D = 6mm. Curve 3: 63 V. ESR 0 = typical at 0 C, 00 Hz Tamb ( o C) Fig.7 Multiplier of ESR as a function of ambient temperature..0 MGC697 ESR ESR 0.6. Curve : 6.3 V. Curve : 6 V. Curve 3: 35 V. Curve 4: 50 V. Curve 5: 63 V. ESR 0 = typical at 0 C, 00 Hz f (Hz) 0 5 Fig.8 Multiplier of ESR as a function of frequency. 000 Jan 8 0

11 Impedance (Z) 0 MGC69 Z Z 0 0 Curve : case D = 0mm. Curve : case D = 6mm. Z 0 = typical impedance at 0 C, 0 khz o Tamb ( C) 0 Fig.9 Typical impedance as a function of ambient temperature. 0 MGC698 Z (Ω) 0 U R =6.3to6V. Curve : 470 µf, 6 V; 0 mm. Curve : 000 µf, 0 V; 0 6 mm. Curve 3: 000 µf, 6 V; 0 0 mm. Curve 4: 00 µf, 6 V;.5 5 mm. Curve 5: 3300 µf, 6 V; 6 5 mm. Curve 6: 6800 µf, 6.3 V; 6 5 mm. T amb =0 C f (Hz) 0 5 Fig.0 Typical impedance as a function of frequency. 000 Jan 8

12 0 MGC699 Z (Ω) 0 U R =5to35V. Curve : 0 µf, 35 V; 0 mm. Curve : 330 µf, 35 V; 0 6 mm. Curve 3: 470 µf, 5 V; 0 6 mm. Curve 4: 470 µf, 35 V; 0 0 mm. Curve 5: 000 µf, 5 V;.5 0 mm. Curve 6: 000 µf, 35 V;.5 5 mm. Curve 7: 3300 µf, 5 V; 6 3 mm. T amb =0 C f (Hz) Fig. Typical impedance as a function of frequency. 0 MGC700 Z (Ω) 0 U R =40to63V. Curve : 00 µf, 63 V; 0 mm. Curve : 0 µf, 50 V; 0 6 mm. Curve 3: 0 µf, 63 V; 0 0 mm. Curve 4: 330 µf, 63 V;.5 0 mm. Curve 5: 470 µf, 50 V;.5 0 mm. Curve 6: 470 µf, 63 V;.5 5 mm. Curve 7: 000 µf, 63 V; 6 3 mm. Curve 8: 00 µf, 40 V; 6 35 mm. T amb =0 C f (Hz) 0 5 Fig. Typical impedance as a function of frequency. 000 Jan 8

13 RIPPLE CURRENT AND USEFUL LIFE Table 3 Multiplier of ripple current (I R ) as a function of frequency FREQUENCY I R MULTIPLIER (Hz) U R =6.3to5V U R = 35 and 40 V U R = 50 and 63 V CCC06 I A I R lifetime multiplier I A = actual ripple current at 00 Hz. I R = rated ripple current at 00 Hz, 05 C. () Useful life at 05 C and I R applied: case D = 0 and.5 mm: 3000 hours case D =6and8mm:4000 hours () T amb ( C) Fig.3 Multiplier of useful life as a function of ambient temperature and ripple current load. 000 Jan 8 3

14 SPECIFIC TESTS AND REQUIREMENTS General tests and requirements are specified in this handbook, section Tests and Requirements. Table 4 Test procedures and requirements TEST NAME OF TEST REFERENCE Endurance IEC / EN30300 subclause 4.3 Useful life CECC 3030 subclause.8. Shelf life (storage at high temperature) IEC / EN30300 subclause 4.7 PROCEDURE (quick reference) T amb = 05 C; U R applied; 000 hours T amb = 05 C; U R and I R applied; case D = 0 and.5 mm: 3000 hours; case D = 6 and 8 mm: 4000 hours T amb = 05 C; no voltage applied; 000 hours after test: U R to be applied for 30 minutes, 4 to 48 hours before measurement REQUIREMENTS U R =6.3V; C/C: +5/ 30% U R > 6.3 V; C/C: ±5% tan δ.3 spec. limit Z spec. limit I L5 spec. limit U R =6.3V; C/C: +45/ 50% U R > 6.3 V; C/C: ±45% tan δ 3 spec. limit Z 3 spec. limit I L5 spec. limit no short or open circuit total failure percentage: % U R =6.3V; C/C: +5/ 30% U R > 6.3 V; C/C: ±5% tan δ.3 spec. limit Z spec. limit I L5 spec. limit 000 Jan 8 4

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