EL000AN210BB0W VISHAY | Alldatasheet

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www.vishay.com Vishay Roederstein Revision: 13-Apr-12 1 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Aluminum Capacitors Axial Capacitors Style

FEATURES

  • Polarized aluminum electrolytic capacitors
  • Standard dimensions
  • Charge/discharge proof
  • High ripple current capability
  • Material categorization: For definitions of compliance please see www.vishay.com/doc?99912

APPLICATIONS

  • General purpose, industrial electronics and audio/video systems
  • Coupling, smoothing, filtering, buffering and timing
  • Portable and mobile units
  • Vibration and shock resistant QUICK REFERENCE DATA DESCRIPTION UNIT LOW VOLTAGE HIGH VOLTAGE Nominal case size (Ø D x L) mm 3.3 x 8 to 3.3 x 11 4.5 x 11 6 x 10 to 10 x 25 6.5 x 18 to 10 x 25 Rated capacitance range C R μF 0.47 to 10 0.47 to 47 4.7 to 1000 1 to 22 Capacitance tolerance % - 10 to + 50 Rated voltage range V 6.3 to 63 10 to 100 6.3 to 100 160 to 385 Category temperature range ° C - 40 to + 85 - 40 to + 85 Endurance test at upper category temp. h 1000 2000 Useful life at 105 °C and I R applied h - (750) (1000) - Useful life at 85 °C and IR applied h 1500 3000 5000 Useful life at 40 °C and IR applied h 40 000 85 000 130 000 Failure rate (0.8 UR, 40 °C) 10 -9/h  550  105  70 Based on sectional specifications IEC 384-4, CECC 30300 Based on detailed specifications Similar to CECC 30301-044 Climatic category IEC 60068 40/085/56 40/085/56 DIN 40040 GPF GPF SELECTION CHART FOR CR, UR AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm) CR (μF) UR (V)  100 V U R (V) > 100 V 6.3 10 16 25 40 50 63 100 160 250 350 385 3.3 x 11 4.5 x 11 - - - - 1.0  EL  3.3 x 11  3.3 x 8 4.5 x 11 4.5 x 11  6.5 x 18 2.2   3.3 x 8 3.3 x 11  3.3 x 11 4.5 x 11 4.5 x 11  6.5 x 18  8 x 18 4.7  3.3 x 8 3.3 x 11  3.3 x 11  4.5 x 11  6.5 x 18 8 x 18 10 x 18 10 x 25 10 3.3 x 8 3.3 x 11  3.3 x 11 4.5 x 11 4.5 x 11  8 x 18 10 x 25 - - 22  4.5 x 11  4.5 x 11   EB  10 x 25 - - - 100  6 x 10  6.5 x 18 8 x 18 10 x 18 10 x 25 - - - - - 220 EB 6.5 x 18 8 x 18 10 x 18 10 x 18 - - - - - - - 470 8 x 18 10 x 18 10 x 18 10 x 25 - - - - - - - - 1000 10 x 25 10 x 25 10 x 25 - - - - - - - - -

www.vishay.com Vishay Roederstein Revision: 13-Apr-12 2 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Note

  • Axial style capacitors are insulated. Note
  • Unless otherwise specified, all electrical values apply at T A = 20 °C, P = 86 kPa to 106 kPa, RH = 45 % to 75 %. ORDERING EXAMPLE The following table gives the ordering number. The 16th place of ordering code refers to packaging for axial lead capacitors: MALAEB000GD410C... EB 1000 μF 10 V 10 x 25 MALAEB000GD410CA0W A = taped on reel MALAEB000GD410CB0W B = taped ammo DIMENSIONS in millimeters AND AVAILABLE FORMS AXIAL STYLE: DIMENSIONS in millimeters, MASS, PACKAGING QUANTITIES AND ORDERING CODE NOMINAL CASE SIZE Ø D x L Ø d Ø D max. Lmax. Amin. B MASS APPROX. g PACKAGING, ENDING OF ORDERING CODE, QUANTITIES TAPED ON REEL TAPED AMMO CODE PCS. CODE PCS. B L Ø D Ø d L A Ø d Ø D ELECTRICAL DATA SYMBOL DESCRIPTION CR Rated capacitance at 100 Hz UR Rated voltage tan  Max. dissipation factor at 100 Hz RESR Equivalent series resistance at 100 Hz (calculated from tan  max. and CR) Z Max. impedance at 10 kHz IR Rated alternating current (RMS) at 100 Hz and upper category temperature T A Ambient temperature TUC Upper category temperature RH Relative humidity PA m b i e n t p r e s s u r e

www.vishay.com Vishay Roederstein Revision: 13-Apr-12 3 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 ELECTRICAL DATA AND ORDERING INFORMATION UR (V) CR 100 Hz (μF) NOMINAL CASE SIZE Ø D x L (mm) tan  100 Hz MAX. RESR 100 Hz () Z 10 kHz MAX. () IR 100 Hz TUC (A) CATALOG NUMBER MALA... 6.3 470 8 x 18 0.25 0.847 0.430 0.33 EB000FL347BB0W 1000 10 x 25 0.25 0.398 0.200 0.56 EB000GD410BB0W 100 6 x 10 0.20 3.19 1.60 0.11 EB000CK310CB0W 470 10 x 18 0.20 0.680 0.340 0.41 EB000GL347CB0W 1000 10 x 25 0.20 0.320 0.160 0.56 EB000GD410CB0W 220 8 x 18 0.16 1.16 0.550 0.27 EB000FL322DB0W 470 10 x 18 0.16 0.540 0.280 0.41 EB000GL347DB0W 1000 10 x 25 0.16 0.260 0.130 0.55 EB000GD410DB0W 220 10 x 18 0.14 1.000 0.410 0.35 EB000GL322EB0W 470 10 x 25 0.14 0.470 0.190 0.50 EB000GD347EB0W 100 8 x 18 0.11 1.750 0.700 0.22 EB000FL310GB0W 220 10 x 18 0.12 0.870 0.340 0.36 EB000GL322GB0W 50 100 10 x 18 0.10 1.60 0.650 0.25 EB000GL310HB0W 0.47 3.3 x 8 0.10 340 120 0.004 EL000AN047JB0W 0.47 3.3 x 11 0.10 339 117 0.008 EL000AA047JB0W 100 10 x 25 0.08 1.270 0.550 0.30 EB000GD310JB0W 100

www.vishay.com Vishay Roederstein Revision: 13-Apr-12 4 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 LOW TEMPERATURE BEHAVIOUR Table for the calculation of the maximum 10 kHz impedance at low temperatures: Note

  • In practical operation the lower limit of the series resistance and impedance is given by the ohmic part of the contact points and the foil resistance values. Therefore it will not always be possible to achieve calculated values below 0.05 . 160 10 8 x 18 0.15 24.0 12.0 0.070 EB000FL210MB0W 22 10 x 25 0.15 11.0 5.50 0.19 EB000GD222MB0W 250 10 10 x 25 0.10 16.0 11.0 0.090 EB000GD210NB0W 385 1.0 6.5 x 18 0.10 160 100 0.020 EB000DL110RB0W ADDITIONAL ELECTRICAL DATA PARAMETER CONDITIONS VALUE Voltage Surge voltage U R  100 V U s =1 . 1 5 x UR UR  160 V U s =1 . 1 0xUR Reverse voltage - U rev  1 V Current Leakage current U R  100 V UR  160 V UR, 300 s UR, 300 s IL/μA  0.0015 x CR/μF x UR/V + 3 IL/μA 0.0150 x CR/μF x UR/V + 10 TA (°C) RATED VOLTAGE (V) 6.3 10 16 25 40 50 63 100 160 250 350 385 - 25 1300 1000 860 440 330 270 200 160 1000 940 860 1800 - 40 4800 3500 2400 1200 990 800 550 500 5000 4600 4200 6000 ELECTRICAL DATA AND ORDERING INFORMATION UR (V) CR 100 Hz (μF) NOMINAL CASE SIZE Ø D x L (mm) tan  100 Hz MAX. RESR 100 Hz () Z 10 kHz MAX. () IR 100 Hz TUC (A) CATALOG NUMBER MALA... Z1 0 k H z   Tabular value

www.vishay.com Vishay Roederstein Revision: 13-Apr-12 5 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 LIFETIME TABLE UR  100 V Note I R Rated ripple current (100 Hz, RMS) [A] at upper category temperature TUC taken from datasheet I User ripple current [A] T A Ambient temperature of capacitor [°C] L Lifetime multiplier Regard L as a function of ambient temperature (x-axis) and of current (y-axis); use the current-axis according to the frequency LIFETIME TABLE UR > 100 V Note I R Rated ripple current (100 Hz, RMS) [A] at upper category temperature TUC taken from datasheet I User ripple current [A] T A Ambient temperature of capacitor [°C] L Lifetime multiplier Regard L as a function of ambient temperature (x-axis) and of current (y-axis); use the current-axis according to the frequency INTERRELATION BETWEEN ALTERNATING CURRENT, AMBIENT TEMPERATURE AND LIFETIME I/IR (frequency dependent) LIFETIME MULTIPLIER L (depending on I/IR and TA) FREQUENCY [Hz] AMBIENT TEMPERATURE T A [°C] 50 100 250 500 1000 2500 10K 40 45 50 55 60 65 70 75 80 85 90 95 100 105 INTERRELATION BETWEEN ALTERNATING CURRENT, AMBIENT TEMPERATURE AND LIFETIME I/IR (frequency dependent) LIFETIME MULTIPLIER L (depending on I/IR and TA) FREQUENCY [Hz] AMBIENT TEMPERATURE T A [°C] 50 100 250 500 1000 2500 10K 40 45 50 55 60 65 70 75 80 85 0 0 0 0 0 0 0 66 42 27 17 11 8 5.1 3.5 2.42 1.69

www.vishay.com Vishay Roederstein Revision: 13-Apr-12 6 Document Number: 25113 For technical questions, contact: aluminumcaps1@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 TEST PROCEDURES AND REQUIREMENTS TEST PROCEDURE (quick reference) REQUIREMENTSNAME OF TEST REFERENCE Endurance IEC 60384-4/ EN 1300300, subclause 4.13 T A = Upper cat. temp.; UR applied

6.3 V  UR  100 V: 1000 h

TA = 85 °C; UR applied

160 V  UR  500 V: 2000 h

tan  1.5 x spec. limit Z  3 x spec. limit IL (300 s)  spec. limit Useful life CECC 30301, subclause 1.8.1 TA = 105 °C; UR and IR applied

6.3 V  UR  100 V

Case 4.5 x 11: 750 h Cases 6 x 10 to 10 x 25: 1000 h Cases 6 x 10 to 10 x 25: 1000 h U tan   3 x spec. limit Z  3 x spec. limit IL (300 s)  spec. limit No short or open circuit Total failure percentage:  1 %T A = 85 °C; UR and IR applied

160 V  UR  400 V: 5000 h

(storage at high temperature) IEC 60348-4/ EN 1300300, subclause 4.17 T A = upper cat. temp.; no voltage applied Cases 3.3 x 8 to 10 x 25: 500 h After test: U R to be applied for 30 min 24 h to 48 h before measurement tan   1.5 x spec. limit Z  3 x spec. limit IL (300 s)  2 x spec. limit

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