Surface Mount Multilayer Ceramic Capacitors for Pulse Current Applications

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Surface Mount Multilayer Ceramic Capacitors for Pulse Current Applications ELECTRICAL SPECIFICATIONS Note Electrical characteristics at +25 C unless otherwise specified FEATURES Low electrostrictive ceramic formulation for Available repeated charge and discharge cycles High pulse discharge currents Available Excellent reliability and high voltage performance Available with tin / lead barrier termination (code L ) Wet built process Reliable Noble Metal Electrode (NME) system Made with a combination of design, materials and tight process control to achieve very high field reliability Material categorization: for definitions of compliance please see www.vishay.com/doc?99912 Note * This datasheet provides information about parts that are RoHS-compliant and / or parts that are non-rohs-compliant. For example, parts with lead (Pb) terminations are not RoHS-compliant. Please see the information / tables in this datasheet for details. APPLICATIONS Power supplies Converters Voltage multipliers Operating Temperature: -55 C to +125 C Capacitance Range: 4.7 nf to 56 nf Voltage Range: 1 V DC, 15 V DC Temperature Coefficient of Capacitance (TCC): X7R: ± 15 % from -55 C to +125 C, with V DC applied Dissipation Factor (DF): 2.5 % max. at 1. V RMS and 1 khz Aging Rate: 1 % maximum per decade Insulation Resistance (IR): at +25 C and rated voltage: 1 M minimum or 1 F, whichever is less at +125 C and rated voltage: 1 M minimum or 1 F, whichever is less Dielectric Strength Test: performed per method 13 of EIA 198-2-E. Applied test voltages: 1 V DC / 15 V DC -rated: min. 12 % of rated voltage Revision: 13-May-16 1 Document Number: 4521

DIMENSIONS in inches [millimeters] L W T MAX. P CASE CODE PART ORDERING NUMBER 1812 VJ1812 1825 VJ1825 2225 VJ2225 34 VJ34 364 VJ364 444 VJ444 LENGTH (L).177 ±.12 [4.5 ±.3].177 ±.12 [4.5 ±.3].22 ± [5.59 ±.25].3 ±.15 [7.62 ±.38].36 ±.15 [9.14 ±.38].4 ±.15 [1.16 ±.38] WIDTH (W).126 ±.8 [3.2 ±.2].252 ± [6.4 ±.25].25 ± [6.35 ±.25].4 ±.15 [1.2 ±.38].4 ±.15 [1.2 ±.38].44 ±.15 [11.17 ±.38] MAXIMUM THICKNESS (T).12 [3.5].86 [2.18].86 [2.18].86 [2.18].1 [2.54].12 [3.5].13 (1) [3.3] TERMINATION (P) MINIMUM MAXIMUM.2 [.5].4 [1.] Note (1) Thickness used for 364-15 V - 22 nf and 27 nf QUICK REFERENCE DATA DIELECTRIC X7R (X5P) Note Detail ratings see Selection Chart CASE MAXIMUM VOLTAGE (V) CAPACITANCE MINIMUM MAXIMUM 1812 15 4.7 nf 27 nf 1825 15 1 nf 56 nf 2225 15 18 nf 1 nf 34 15 33 nf 22 nf 364 15 47 nf 33 nf 444 15 1 nf 56 nf ORDERING INFORMATION VJ364 Y 184 K X R A T SE CASE CODE DIELECTRIC CAPACITANCE NOMINAL CODE CAPACITANCE TOLERANCE TERMINATION DC VOLTAGE MARKING PACKAGING (3) PROCESS RATING (1) CODE (2) 1812 1825 2225 34 364 444 Y = X7R Expressed in picofarads (pf). The first two digits are significant, the third is a multiplier. Examples: 184 = 18 pf J = ± 5 % K = ± 1 % M = ± 2 % X = Ni barrier 1 % tin matte plated L = Ni barrier with tin lead plated finish min. 4 % lead G = 1 V R = 15 V A = unmarked T = 7" reel / plastic tape J = 7" reel / plastic tape (low quantity) Notes (1) DC voltage rating should not be exceeded in application. (2) Process code with 2 digits has to be added. (3) All types of packaging may not be available for all case sizes, see table end of this datasheet. Revision: 13-May-16 2 Document Number: 4521

SELECTION CHART DIELECTRIC X7R STYLE VJ1812 (1) VJ1825 (1) VJ2225 (1) VJ34 (1) VJ364 (1) VJ444 (1) CASE CODE 1812 1825 2225 34 364 444 VOLTAGE (V DC ) 1 15 1 15 1 15 1 15 1 15 1 15 VOLTAGE CODE G R G R G R G R G R G R CAP. CODE CAP. 332 3.3 nf 392 3.9 nf 472 4.7 nf 562 5.6 nf 682 6.8 nf 822 8.2 nf 13 1 nf 123 12 nf 153 15 nf 183 18 nf 223 22 nf 273 27 nf 333 33 nf 393 39 nf 473 47 nf 563 56 nf 683 68 nf 823 82 nf 14 1 nf 124 12 nf 154 15 nf 184 18 nf 224 22 nf 274 27 nf 334 33 nf 394 39 nf 474 47 nf 564 56 nf 684 68 nf 824 82 nf 15 1 nf Notes RoHS-compliant except when supplied with lead (Pb)-containing termination, code L Plastic tape (1) See soldering recommendations within this data book, or visit www.vishay.com/doc?4534 Revision: 13-May-16 3 Document Number: 4521

TYPICAL PARAMETERS VOLTAGE COEFFICIENT OF CAPACITANCE TEMPERATURE COEFFICIENT OF CAPACITANCE Δ CAPACITANCE (%) 1-1 -2-3 -4-5 -6-7 444, 33 nf, 15 V 364, 18 nf, 15 V Δ CAPACITANCE (%) 2 15 1 5-5 -1-15 X7R: ± 15 % from -55 C to 125 C TCC also meets X5P ± 1 % from -55 C to +85 C 364, 18 nf, 15 V 444, 33 nf, 15 V -8 25 5 75 1 125 15 APPLIED VOLTAGE (V DC ) -2-75 -55-35 -15 5 25 45 65 85 15 125 TEMPERATURE ( C) DISCHARGE PULSE OF 33 nf, 444 SEC DISCHARGE CURRENT VS. CHARGE VOLTAGE PEAK DISCHARGE CURRENT (A) 25 2 15 1 5 444, 33 nf, 15 V 34, 12 nf, 15 V 2225, 1 nf, 1 V 1825, 56 nf, 1 V 1812, 27 nf, 1 V 6 8 1 12 14 CHARGE VOLTAGE (V DC ) DISSIPATION FACTOR VS. TEMPERATURE TEMPERATURE VS. RIPPLE CURRENT.4 6 DISSIPATION FACTOR.35.25.2.15.5 444 364 TEMPERATURE ( C) 5 4 3 2 1 1825, 27 nf, 1 V tested at 24 khz 1825, 56 nf, 1 V tested at 12 khz 2225, 1 nf, 1 V tested at 6 khz. -55-35 -15 5 25 45 65 85 TEMPERATURE ( C).1.2.3.4.5.6.7 CURRENT (A) Revision: 13-May-16 4 Document Number: 4521

STANDARD PACKAGING QUANTITIES CASE CODE TAPE SIZE PLASTIC TAPE PACKAGING CODE T Notes Reference: EIA standard RS 481 - Taping of Surface Mount Components for Automatic Placement n/a = not available 7" REEL QUANTITIES LOW QUANTITY PACKAGING CODE J 1812 12 mm 1 5 1825 12 mm 1 5 2225 12 mm 5 25 34 16 mm 5 n/a 364 16 mm 35 n/a 444 24 mm 3 n/a STORAGE AND HANDLING CONDITIONS (1) Store the components at 5 C to 4 C ambient temperature and 7 % relative humidity conditions. (2) The product is recommended to be used within a time-frame of 2 years after shipment. Check solderability in case extended shelf life beyond the expiry date is needed. Precautions: a. Do not store products in an environment containing corrosive elements, especially where chloride gas, sulfide gas, acid, alkali, salt or the like are present. This may cause corrosion or oxidization of the terminations, which can easily lead to poor soldering. b. Store products on the shelf and avoid exposure to moisture or dust. c. Do not expose products to excessive shock, vibration, direct sunlight and so on. Revision: 13-May-16 5 Document Number: 4521

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