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085CS_08

085CS_08

  • 厂商:

    VISHAY

  • 封装:

  • 描述:

    085CS_08 - Aluminum Capacitors SMD (Chip) Standard - Vishay Siliconix

  • 数据手册
  • 价格&库存
085CS_08 数据手册
085 CS Vishay BCcomponents Aluminum Capacitors SMD (Chip) Standard FEATURES • Polarized aluminum electrolytic non-solid electrolyte, self healing capacitors, • Miniaturized, high CV per unit volume, low height • Charge and discharge proof Fig.1 Component outlines APPLICATIONS • SMD technology, boards with restricted mounting height 085 CS longer life 139 CLL • General applications, consumer electronics, low profile and lightweight equipment • Decoupling, smoothing, filtering and buffering MARKING QUICK REFERENCE DATA DESCRIPTION Nominal case sizes (L x W x H in mm) Rated capacitance range, CR Tolerance on CR Rated voltage range, UR Category temperature range Endurance test at 85 °C Useful life at 85 °C Useful life at 40 °C; 1.4 x lR applied VALUE 8.8 x 3.7 x 3.9 and 11.9 x 3.7 x 3.9 0.47 to 22 µF 6.3 to 63 V - 10 to + 50 % or ± 20 % The capacitors are marked (where possible) with the following information: E N - 40 to + 85 °C 1000 hours R 1500 hours W • Rated capacitance (in µF) • Rated voltage code (see Table 1), the UR code letter indicates the position of the decimal point in the capacitance value • Name of manufacturer • ‘-’ sign indicating the cathode. The anode is identified by bevelled edges Examples for CR; UR marking: H22 represents 0.22 µF; 63 V 2G2 represents 2.2 µF; 40 V 22C represents 22 µF; 6.3 V Table 1 Shelf life at 0 V, 85 °C FO 40 000 hours 500 hours Resistance to soldering heat test Based on sectional specification immersion in solder: 10 s at 260 °Cor 20 s at 215 °C IEC 60384-18/CECC 32300 40/085/56 D UR (V) Code letter RATED VOLTAGE MARKING CODE 6.3 C 10 D 16 E 25 F 40 G 63 H Climatic category IEC 60068 N SELECTION CHART FOR CR, UR AND RELEVANT NOMINAL CASE SIZES (L x W x H in mm) CR (µF) UR (V) 6.3 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 10 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 16 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 25 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 40 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 63 8.8 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 11.9 x 3.7 x 3.9 - O 0.47 1.0 2.2 3.3 4.7 6.8 10 15 22 T E S IG • Supplied in blister tape on reel N • Flexible terminals, reflow and wave solderable Document Number: 28300 Revision: 28-May-08 For technical questions, contact: aluminumcaps1@vishay.com S • SMD-version, rectangular case, insulated www.vishay.com 1 085 CS Vishay BCcomponents DIMENSIONS in millimeters Aluminum Capacitors SMD (Chip) Standard 2 max. 3.9 2 max. max. 2 max. 3.9 2 max. max. 2.7 max. 2.7 max. 2.7 max. 2.7 max. N E G 4.4 4.4 A 13.5 16.8 b. Case size 11.9 x 3.7 x 3.9 mm a. Case size 8.8 x 3.7 x 3.9 mm Fig.2 Dimensional outlines PACKAGING Tape on reel packaging: 2000 per reel Detailed tape dimensions see section ‘PACKAGING’ MOUNTING The capacitors are designed for automatic placement on printed-circuit boards or hybrid circuits. Optimum dimensions of soldering pads depend upon soldering method, mounting accuracy, print lay-out and/or adjacent components. For recommended pad dimensions, refer to Fig. 3 and Table 2. Table 2 R RECOMMENDED SOLDERING PAD DIMENSIONS in millimeters (placement accuracy ± 0.25 mm) NOMINAL CASE SIZE LxWxH 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 FOR REFLOW SOLDERING C 2.9 2.9 D 2.5 2.5 E 3.0 6.0 F 10.1 13.3 B 4.1 7.4 E N E W D FO A B S B A F 7.5 9 max. a. 10.8 12.2 max. b. IG FOR WAVE SOLDERING C 4.7 4.7 D 3.7 3.7 E 2.9 6.1 F 4.1 max. 3.9 max. 4.1 max. S 3.9 max. G 8.4 8.4 9.7 3.5 6.5 14.0 17.3 12.9 E T DG D G N O C B A F reflow soldering solder land/ solder paste pattern solder resist pattern occupied area C wave soldering tracks or dummy tracks Fig.3 Recommended pad dimensions for reflow and wave soldering www.vishay.com 2 For technical questions, contact: aluminumcaps1@vishay.com Document Number: 28300 Revision: 28-May-08 085 CS Aluminum Capacitors SMD (Chip) Standard a Vishay BCcomponents c flow-direction of solder d b For dimensions a, b, c and d, refer to Table 3 Flow direction of solder preferably onto side-walls or plus-side of the capacitors Fig.4 Minimum ditances between 085 CS capacitors on a printed-circuit board for wave soldering For maximum conditions of different soldering methods see Figs 5, 6 and 7. Table 3 AS A GENERAL PRINCIPLE, TEMPERATURE AND DURATION SHALL BE THE MINIMUM NECESSARY REQUIRED TO ENSURE GOOD SOLDERING CONNECTIONS. MINIMUM DISTANCES BETWEEN CAPACITORS in millimeters NOMINAL CASE SIZE LxWxH 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 Table4 CASE CODE 1a 1 W E amin. 12 15 D E bmin. 12 15 50 Soldering conditions are defined by the curve, temperature versus time. The temperature is that measured on the soldering pad during processing. Any temperature/time curve which does not exceed the specified maximum curves may be applied. S SOLDERING IG cmin. 6.8 6.8 100 N dmin. 6.8 6.8 CURING CONDITIONS FOR SMD-GLUE MAX. Tamb (°C) 125 140 150 160 N FO MAX. EXPOSURE TIME (minutes) 10 3 1 0.5 R T 280 TPad (°C) 260 240 220 200 180 160 140 120 100 80 0 280 TPad 260 (°C) 240 220 200 180 160 140 120 100 80 N O 50 100 150 200 f(s) 250 0 150 S 200 f(s) 250 Fig.5 Maximum temperature load during infrared reflow soldering Fig.6 Maximum temperature load during vapor phase reflow soldering Document Number: 28300 Revision: 28-May-08 For technical questions, contact: aluminumcaps1@vishay.com www.vishay.com 3 085 CS Vishay BCcomponents Aluminum Capacitors SMD (Chip) Standard 280 TPad (°C) 260 240 220 200 180 160 140 120 100 80 0 50 100 150 200 f(s) Fig.7 Maximum temperature load during (double-) wave soldering ELECTRICAL DATA SYMBOL CR IR IL5 Tan δ Z Note DESCRIPTION rated capacitance at 100 Hz (tolerance - 10 to + 50 % or ± 20 %) rated RMS ripple current at 100 Hz, 85 °C max. leakage current after 5 minutes at UR max. dissipation factor at 100 Hz max. impedance at 10 kHz ORDERING EXAMPLE Electrolytic capacitor 085 series 10 µF/16 V; - 10/+ 50 % Unless otherwise specified, all electrical values in Table 6 apply at Tamb = 20 °C, P = 86 to 106 kPa, RH = 45 to 75 %. Table 6 FO ELECTRICAL DATA AND ORDERING INFORMATION UR (V) CR 100 Hz (µF) 10.0 NOMINAL CASE SIZE LxWxH (mm) IR 100 Hz 85 °C (mA) 11 20 10 18 9 16 8 14 7 13 4 6 11 13 IL5 5 min (µA) 3.1 3.3 3.1 3.3 3.2 3.3 3.2 3.3 3.2 3.4 3.1 3.1 3.3 3.4 ORDERING CODE MAL2085....... Tan δ 100 Hz 0.30 0.30 0.25 0.25 0.20 0.20 0.18 0.18 0.16 0.16 0.10 0.12 0.14 0.14 Z 10 kHz (Ω) 20 9 24 11 26 12 27 13 32 15 120 55 25 17 - 10/+ 50 % BLISTER TAPE ON REEL FORM BR 23109E3 23229E3 24688E3 24159E3 25478E3 25109E3 26338E3 26688E3 27228E3 27478E3 28477E3 28108E3 28228E3 28338E3 ± 20 % BLISTER TAPE ON REEL FORM BR 63109E3 63229E3 64688E3 64159E3 65478E3 65109E3 66338E3 66688E3 67228E3 67478E3 68477E3 68108E3 68228E3 68338E3 T 6.3 10 16 25 40 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 8.8 x 3.7 x 3.9 8.8 x 3.7 x 3.9 11.9 x 3.7 x 3.9 11.9 x 3.7 x 3.9 22 15 10 N 63 O 6.8 4.7 3.3 6.8 2.2 4.7 0.47 1.0 2.2 3.3 R N E W Nominal case size: 11.9 x 3.7 x 3.9 mm; Form BR Ordering Code: MAL208525109E3 Former 12NC: 2222 085 25109 D E S Document Number: 28300 Revision: 28-May-08 www.vishay.com 4 For technical questions, contact: aluminumcaps1@vishay.com IG 250 N S 085 CS Aluminum Capacitors SMD (Chip) Standard Table 7 Vishay BCcomponents ADDITIONAL ELECTRICAL DATA PARAMETER Voltage Surge voltage for short periods Reverse voltage Current Leakage current Inductance Equivalent series inductance (ESL) Resistance Equivalent series resistance (ESR) nominal case size 8.8 x 3.7 x 3.9 mm nominal case size 11.9 x 3.7 x 3.9 mm after 1 minute at UR after 5 minutes at UR Us ≤ 1.15 x UR Urev ≤ 1 V CONDITIONS VALUE IL1 ≤ 0.02 CR x UR + 3 µA typ. 11 nH CAPACITANCE 1.2 C C0 1.1 3 1.0 2 W 1 2 3 N E 1.1 C C0 1.0 0.9 D 1 2 3 E calculated from tan δmax and CR (see Table S 102 typ. 13 nH ESR = tan δ/2 πf CR IG IL5 ≤ 0.002 CR x UR + 3 µA N 103 S 3 2 1 0.8 0.9 1 R FO 0.7 Curve 1: 6.3 V Curve 2: 25 V Cur ve 3: 63 V 80 100 Cur ve 1: 6.3 V Cur ve 2: 25 V Cur ve 3: 63 V 0.6 10 0.8 - 40 - 20 0 20 40 60 104 Tamb (20 °C) C0 = capacitance at 20 °C, 100 Hz Tamb (20 °C) C0 = capacitance at 20 °C, 100 Hz N O T Fig.7 Typical multiplier of capacitance as a function of ambient temperature Fig.9 Typical multiplier of capacitance as a function of frequency Document Number: 28300 Revision: 28-May-08 For technical questions, contact: aluminumcaps1@vishay.com www.vishay.com 5 085 CS Vishay BCcomponents RIPPLE CURRENT AND USEFUL LIFE 3.3 IA IR CCC205 Aluminum Capacitors SMD (Chip) Standard 3.2 3.1 3.0 2.8 2.6 2.4 2.2 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.5 0.0 D 6 .0 10 15 20 30 50 E 0 3. 0 4. S 0 1. 5 1. 0 2. IG 40 70 lifetime multiplier IA = actual ripple current at 100 Hz. IR = rated ripple current at 100 Hz, 85 °C (1) Useful life at 85 °C and IR applied: 1500 hours W 50 60 70 N (1) 80 Fig.10 Multiplier of useful life as a function of ambient temperature and ripple current load Table 8 MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY R N E FO FREQUENCY (Hz) 50 100 300 1000 3000 IR MULTIPLIER UR = 25 to 40 V 0.75 1.00 1.30 1.55 1.70 1.80 UR = 63 V 0.70 1.00 1.55 1.90 2.30 2.50 UR = 6.3 to 16 V 0.80 1.00 1.20 1.35 1.45 1.50 N O ≥ 10 000 T www.vishay.com 6 For technical questions, contact: aluminumcaps1@vishay.com Document Number: 28300 Revision: 28-May-08 S 90 100 Tamb (°C) 085 CS Aluminum Capacitors SMD (Chip) Standard Vishay BCcomponents TEST PROCEDURES AND REQUIREMENTS TEST NAME OF TEST Mounting REFERENCE IEC 60384-18, subclause 4.3 PROCEDURE (quick reference) shall be performed prior to tests mentioned below; method: reflow or (double-) wave soldering; for maximum temperature load refer to chapter “Mounting” Tamb = 85 °C; UR applied; 1000 hours Tamb = 85 °C; UR and IR applied; 1500 hours REQUIREMENTS ΔC/C: ± 10 % tan δ ≤ spec. limit IL5 ≤ 2 x spec. limit Endurance Useful life CECC 30301, subclause 1.8.1 S Shelf life (storage at high temperature) IEC 60384-18/ CECC 32300, subclause 4.17 Tamb = 85 °C; no voltage applied; 500 hours D E after test: UR to be applied for 30 minutes, 24 to 48 hours before measurement N O T FO R N E W IG IEC 60384-18/ CECC 32300, subclause 4.15 ΔC/C: ± 20 % tan δ ≤ 2 x spec. limit Z ≤ 3 x spec. limit IL5 ≤ spec. limit ΔC/C: ± 50 % tan δ ≤ 3 x spec. limit Z ≤ 3 x spec. limit IL5 ≤ spec. limit no short or open circuit total failure percentage: ≤ 3 % ΔC/C, tan δ, Z: for requirements see ‘Endurance test’ above IL5 ≤ 2 x spec. limit N Document Number: 28300 Revision: 28-May-08 For technical questions, contact: aluminumcaps1@vishay.com S www.vishay.com 7 Legal Disclaimer Notice Vishay Disclaimer All product specifications and data are subject to change without notice. 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 herein or in any other disclosure relating to any product. Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permitted by law. The product specifications do not expand or otherwise modify Vishay’s terms and conditions of purchase, including but not limited to the warranty expressed therein, which apply to these products. 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. The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. Product names and markings noted herein may be trademarks of their respective owners. Document Number: 91000 Revision: 18-Jul-08 www.vishay.com 1
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