Aluminum Electrolytic Capacitors SMD (Chip), High Temperature, Low Impedance High Vibration Capability
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1 Aluminum Electrolytic Capacitors SMD (Chip), High Temperature, Low Impedance High Vibration Capability FEATURES Useful life: up to 2000 h at 50 C High reliability Low ESR Polarized aluminum electrolytic capacitors, non-solid electrolyte, self healing 60 CLA 50 C higher temperature high vibration SMD-version with base plate, lead (Pb)-free reflow solderable Charge and discharge proof, no peak current limitation High temperature reflow soldering according to JEDEC J-STD CRH 25 C lower Z higher I R 46 CTI 25 C High temperature proof Vibration proof, 6-pin version up to 30 g lower Z AEC-Q200 qualified 50 CRZ 05 C Material categorization: for definitions of compliance please see Fig. QUICK REFERENCE DATA DESCRIPTION VALUE Nominal case sizes (L x W x H in mm) 6 x 6 x 6 to 8 x 8 x 2 Rated capacitance range, C R 50 μf to 3300 μf Tolerance on C R ± 20 % Rated voltage range, U R 6 V to 80 V Category temperature range -55 C to +50 C Endurance test at 50 C 000 h to 500 h Useful life at 50 C 500 h to 2000 h Useful life at 40 C.8 x l R applied h to h Shelf life at 0 V, 50 C 000 h Based on sectional specification IEC / CECC Climatic category IEC / 50 / 56 APPLICATIONS SMD technology, for high temperature reflow soldering High temperature environment, high peak load Automotive, industrial Smoothing, filtering, buffering MARKING Rated capacitance (in μf) Rated voltage (in V) Date code, in accordance with IEC Black mark or - sign indicating the cathode (the anode is identified by beveled edges) Code indicating group number (A) PACKAGING Supplied in blister tape on reel Revision: 2-Apr-7 Document Number: 28426
2 SELECTION CHART FOR C R, U R, AND RELEVANT NOMINAL CASE SIZES (L x W x H in mm) C R (μf) U R (V) x 6 x x 6 x 6 8 x 8 x x 6 x 6 8 x 8 x 6 8 x 8 x x 6 x 6 8 x 8 x 6 6 x 6 x x 6 x 6 8 x 8 x 6 6 x 6 x 2 8 x 8 x x 6 x 6 8 x 8 x 6 6 x 6 x 2 8 x 8 x x 8 x 6 6 x 6 x 2 8 x 8 x x 6 x 2 8 x 8 x x 8 x x 8 x pin: Ø 6 mm 35V 000u H4E A min. 0.4 / max..0 (2 x) H MAX. max. 0.3 D W MAX. B L MAX. S L MAX. Fig. - Dimensional outline Table DIMENSIONS in millimeters AND MASS NOMINAL CASE SIZE L x W x H CASE CODE L MAX. W MAX. H MAX. Ø D B MAX. S L MAX. MASS (g) 6 x 6 x x 6 x x 8 x x 8 x Revision: 2-Apr-7 2 Document Number: 28426
3 Table 2 TAPE AND REEL DIMENSIONS in millimeters, PACKAGING QUANTITIES NOMINAL CASE SIZE L x W x H CASE CODE PITCH P TAPE WIDTH W TAPE THICKNESS T 2 REEL DIAMETER PACKAGING QUANTITY PER REEL 6 x 6 x x 6 x x 8 x x 8 x Note Detailed tape dimensions see section PACKAGING MOUNTING The capacitors are designed for automatic placement on to printed-circuit boards. Optimum dimensions of soldering pads depend amongst others on soldering method, mounting accuracy, print layout and / or adjacent components. For recommended soldering pad dimensions, refer to Fig. 3 and Table 3. SOLDERING Soldering conditions are defined by the curve, temperature versus time, where the temperature is that measured on the component during processing. For maximum conditions refer to Fig. 4. Any temperature versus time curve which does not exceed the specified maximum curves may be applied. As a general principle, temperature and duration shall be the minimum necessary required to ensure good soldering connections. However, the specified maximum curves should never be exceeded. a c a b Case size Ø D 6 mm Fig. 2 - Recommended soldering pad dimensions Table 3 RECOMMENDED SOLDERING PAD DIMENSIONS in millimeters CASE CODE a b c Revision: 2-Apr-7 3 Document Number: 28426
4 ADVANCED SOLDERING PROFILE FOR LEAD (Pb)-FREE REFLOW PROCESS ACCORDING TO JEDEC J-STD-020 T ( C) T Peak t 4 t 3 50 t 2 t 25 time (s) Fig. 3 - Maximum temperature load during reflow soldering Table 4 REFLOW SOLDERING CONDITIONS for MAL226099xxxE3 PROFILE FEATURES Maximum time from 25 C to T Peak Maximum ramp-up rate to 50 C Maximum time from 50 C to 200 C (t ) Maximum time from 90 C to 200 C (t 2 ) Ramp up rate from 200 C to T Peak Maximum time above T Liquidus (27 C) (t 3 ) Maximum time above 230 C (t 4 ) CASE CODE 66 TO s 3 K/s 50 s 0 s 0.5 K/s to 3 K/s 90 s 60 s Peak temperature T Peak 245 C Maximum time above T Peak minus 5 C Ramp-down rate from T Liquidus 30 s 3 K/s to 6 K/s Notes Temperature measuring point on top of the case and on terminals. Maximum 2 runs with pause of minimum 30 min in between. Revision: 2-Apr-7 4 Document Number: 28426
5 ELECTRICAL DATA SYMBOL DESCRIPTION C R Rated capacitance at 00 Hz, tolerance ± 20 % I R Rated RMS ripple current at 00 khz, 50 C I L2 Maximum leakage current after 2 min at U R tan δ Maximum dissipation factor at 00 Hz Z Maximum impedance at 00 khz Note Unless otherwise specified, all electrical values in Table 5 apply at T amb = 20 C, P = 86 kpa to 06 kpa, RH = 45 % to 75 % ORDERING EXAMPLE Electrolytic capacitor series 330 μf / 50 V; ± 20 % Nominal case size: 6 mm x 6 mm x 6 mm; taped on reel Ordering code: MAL E3 Table 5 ELECTRICAL DATA AND ORDERING INFORMATION U R (V) C R (μf) NOMINAL CASE SIZE L x W x H (mm) I R 50 C 00 khz (ma) I L2 2 min (μa) tan δ 00 Hz Z 00 khz 20 C (Ω) Note () Determines the applicable row in the table Endurance Test Duration and Useful Life Z 00 khz -40 C (Ω) LIFE CODE () ORDERING CODE MAL x 6 x L 99503E x 8 x L 99504E x 6 x L E x 8 x L E x 8 x L E x 6 x L 99603E x 8 x L 99604E x 6 x L E x 8 x L E x 6 x L 99003E x 8 x L 99004E x 6 x L E x 8 x L E x 6 x L 9904E x 8 x L 9905E x 6 x L3 9906E x 8 x L3 9907E x 6 x L 99805E x 8 x L 99806E x 6 x L E x 8 x L E x 6 x L 99703E x 8 x L 99704E x 8 x L E3 Revision: 2-Apr-7 5 Document Number: 28426
6 Table 6 EXTENDED VIBRATION SPECIFICATIONS PARAMETER PROCEDURE REQUIREMENTS Vibration improvement Vibration frequency range Vibration profile From 0 g to 30 g 0 Hz to 2 khz Constant sinus sweep 3 directions 8 h per direction No visible damage; no leakage of electrolyte; marking legible ΔC/C: ± 5 % with respect to initial measurements 60 Acceleration (g) Improved SMD 20 0 Vishay extended AEC-Q f (khz) Fig. 4 - Vibration profile Table 7 ADDITIONAL ELECTRICAL DATA PARAMETER CONDITIONS VALUE Voltage Surge voltage for short periods IEC , subclause 4.4 U s.5 x U R Reverse voltage for short periods IEC , subclause 4.6; T A 50 C U rev V Current Leakage current After 2 min at U R I L2 0.0 x C R x U R Inductance Equivalent series inductance (ESL) Ø D 6 mm Typ. nh Resistance Equivalent series resistance (ESR) at 00 Hz Calculated from tan δ max. and C R (see Table 5) ESR = tan δ/2πfc R Revision: 2-Apr-7 6 Document Number: 28426
7 CAPACITANCE (C).20.0 C/C 0 C/C μf μf C 0 = Capacitance at 20 C, 00 Hz T amb ( C) C 0 = Typical capacitance C at 20 C, 00 Hz f (Hz) Fig. 5 - Typical multiplier of capacitance as a function of ambient temperature Fig. 6 - Typical multiplier of capacitance as a function of frequency DISSIPATION FACTOR (tan δ) tan/tan 0 tan/tan tan δ = Typical tan δ at 20 C, 00 Hz T amb ( C) tan δ = Typical tan δ at 20 C, 00 Hz f (Hz) Fig. 7 - Typical multiplier of dissipation factor (tan δ) as a function of ambient temperature Fig. 8 - Typical multiplier of dissipation factor (tan δ) as a function of frequency EQUIVALENT SERIES RESISTANCE (ESR) 0 ESR/ESR f (Hz) 0 5 ESR 0 = Typical ESR at 20 C, 00 Hz T amb = 20 C Fig. 9 - Typical multiplier of ESR as a function of frequency Revision: 2-Apr-7 7 Document Number: 28426
8 IMPEDANCE (Z) 0 2 Z/Z Z 0 = Typical impedance Z at 20 C, 00 khz Fig. 0 - Typical multiplier of impedance as a function of temperature T ( C) 0 2 Z (Ω) Curve : Curve 2: Curve 3: Curve 4: Z (Ω) Curve : Curve 2: Curve 3: Curve 4: T amb = 20 C f (Hz) Fig. - Typical impedance as a function of frequency T amb = 20 C f (Hz) Fig. 2 - Typical impedance as a function of frequency RIPPLE CURRENT AND USEFUL LIFE Table 8 ENDURANCE TEST DURATION AND USEFUL LIFE LIFE CODE Note Multiplier of useful life code: MBC245 ENDURANCE AT 50 C (h) USEFUL LIFE AT 50 C (h) USEFUL LIFE AT 40 C.8 x I R APPLIED (h) L L L Revision: 2-Apr-7 8 Document Number: 28426
9 I A I R 4.8 MBC Lifetime multiplier I A = Actual ripple current at 00 khz I R = Rated ripple current at 00 khz, 50 C () Useful life at 50 C and I R applied; see Table () T amb ( C) Fig. 3 - Multiplier of useful life as a function of ambient temperature and ripple current load Table 9 MULTIPLIER OF RIPPLE CURRENT (I R ) AS A FUNCTION OF FREQUENCY FREQUENCY (Hz) I R MULTIPLIER Revision: 2-Apr-7 9 Document Number: 28426
10 Table 0 TEST PROCEDURES AND REQUIREMENTS TEST NAME OF TEST REFERENCE PROCEDURE (quick reference) REQUIREMENTS Mounting IEC , subclause 4.3 Shall be performed prior to tests mentioned below; reflow soldering; for maximum temperature load refer to chapter Mounting ΔC/C: ± 5 % tan δ spec. limit I L2 spec. limit Endurance IEC / CECC 32300, subclause 4.5 T amb = 50 C; U R applied; for test duration see Table 7 ΔC/C: ± 20 % tan δ 2 x spec. limit I L2 spec. limit Useful life CECC 3030, subclause.8. T amb = 50 C; U R and I R applied; for test duration see Table 7 ΔC/C: ± 30 % tan δ 3 x spec. limit I L2 spec. limit no short or open circuit total failure percentage: % Shelf life (storage at high temperature) IEC / CECC 32300, subclause 4.7 T amb = 50 C; no voltage applied; 000 h After test: U R to be applied for 30 min, 24 h to 48 h before measurement For requirements see Endurance test above Reverse voltage IEC / CECC 32300, subclause 4.6 T amb = 50 C: 25 h at U = -0.5 V, followed by 25 h at U R ΔC/C: ± 5 % tan δ.5 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: 2-Apr-7 0 Document Number: 28426
11 Legal Disclaimer Notice Vishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, Vishay ), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose, non-infringement and merchantability. Statements regarding the suitability of products for certain types of applications are based on Vishay s knowledge of typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over time. All operating parameters, including typical parameters, must be validated for each customer application by the customer s technical experts. Product specifications do not expand or otherwise modify Vishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining applications or for any other application in which the failure of the Vishay product could result in personal injury or death. Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners. 207 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED Revision: 08-Feb-7 Document Number: 9000
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