FEATURES. Note 138D 306 X0 006 C 2 E3 MODEL CAPACITANCE CAPACITANCE TOLERANCE DC VOLTAGE RATING AT +85 C
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1 Wet Tantalum Capacitors Silver Case TANTALEX Capacitors Hermetically-Sealed FEURES Terminations: axial, standard tin / lead (SnPb), 100 % tin (RoHS-compliant) available Available Model is the commercial equivalents of Tansitor styles WT, UWT, Mallory-NACC styles Available TLX, TXX and military styles CL66, CL67, CLR65, and CLR69, designed to meet the performance requirements of military Available specification MIL-PRF-39006/9/21. Capacitors in accordance with military specifications should be ordered by their military part numbers Material categorization: for definitions of compliance please see * 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 PERFORMANCE CHARACTERISTICS Operating Temperature: -55 C to (to with voltage derating) Capacitance Tolerance: at,. ± 20 % standard. ± 10 %, ± 5 % available as special. DC Leakage Current (DCL Max.): at, and : leakage current shall not exceed the values listed in the Standard Ratings tables. Life Test: capacitors are capable of withstanding a 2000 h life test at a temperature of or at the applicable rated DC working voltage. Following the life test: 1. DCL shall not exceed 125 % of the original requirement. 2. The ESR shall not exceed 200 % of the initial requirement. 3. Change in capacitance value shall not exceed the percentages below. a) 6 V DC units: +10 % to -25 % of initial measurement. b) 8 V DC and 10 V DC units: +10 % to -20 % of initial measurement. c) 15 V DC units: +10 % to -15 % of initial measurement. d) 20 V DC and above: ± 10 % of initial measurement. ORDERING INFORMION 306 X0 006 C 2 E3 MODEL TOLERANCE DC VOLTAGE RING STYLE NUMBER RoHS-COMPLIANT This is expressed in picofarads. The first two digits are the significant figures. The third is the number of zeros to follow X0 = ± 20 % X9 = ± 10 % X5 = ± 5 % special order This is expressed in volts. To complete the three-digit block, zeros precede the voltage rating. A decimal point is indicated by an R (6R3 = 6.3 V) See Ratings and Case Codes table 0 = no outer sleeve 2 = outer plastic film insulation 6 = high temperature film insulation E3 = 100 % tin termination (RoHS-compliant) Blank = SnPb termination (standard design) Packaging: the use of formed plastic trays for packaging these axial lead components is standard. Tape and reel is not available due to the unit weight Revision: 05-Dec-17 1 Document Number: 40025
2 DIMENSIONS in inches [millimeters] L [6.35] Max. D ± [0.64 ± 0.05] dia. (no. 22 AWG) tinned solderable leads Weld Tantalum C F T K (1) For reference only BARE TUBE WITH OUTER PLASTIC - FILM INSULION D L D (MAX.) L (1) ± [4.78 ± 0.41] ± [7.14 ± 0.41] ± [9.53 ± 0.41] ± [9.53 ± 0.41] / [ / ] / [ / ] / [ / ] / [ / ] [5.56] [7.92] [10.31] [10.31] [15.45] [20.22] [23.40] [30.91] LEAD LENGTH ± [38.10 ± 6.35] ± [57.15 ± 6.35] ± [57.15 ± 6.35] ± [57.15 ± 6.35] MAX. WEIGHT (oz. / g) 0.07 [2.0] 0.18 [5.1] 0.36 [10.2] 0.49 [13.9] STANDARD RINGS PART NUMBER (1) -55 C MAX. CHANGE (%) -55 C 6 V DC ; 4 V DC 30 C 306X0006C C 686X0006C F 147X0006F F 277X0006F T 337X0006T T 567X0006T K 128X0006K V DC ; 5 V DC 25 C 256X0008C C 566X0008C F 227X0008F T 437X0008T K 857X0008K V DC ; 7 V DC 20 C 206X0010C C 476X0010C F 107X0010F F 187X0010F T 257X0010T T 397X0010T K 757X0010K Revision: 05-Dec-17 2 Document Number: 40025
3 STANDARD RINGS PART NUMBER (1) -55 C MAX. CHANGE (%) 15 V DC ; 10 V DC 15 C 156X0015C C 336X0015C F 706X0015F F 127X0015F T 177X0015T T 277X0015T K 547X0015K V DC ; 13 V DC 27 C 276X0020C T 227X0020T V DC ; 15 V DC 10 C 106X0025C C 226X0025C C 276X0025C F 506X0025F F 107X0025F T 187X0025T K 357X0025K V DC ; 20 V DC 8.0 C 805X0030C C 156X0030C F 406X0030F T 107X0030T T 157X0030T K 307X0030K V DC ; 22 V DC 68 F 686X0035F C 276X0035C T 127X0035T K 277X0035K V DC ; 30 V DC 5.0 C 505X0050C C 106X0050C F 256X0050F F 476X0050F T 606X0050T T 826X0050T K 167X0050K C Revision: 05-Dec-17 3 Document Number: 40025
4 STANDARD RINGS PART NUMBER (1) -55 C MAX. CHANGE (%) 60 V DC ; 40 V DC 4.0 C 405X0060C C 825X0060C F 206X0060F F 396X0060F T 506X0060T T 686X0060T K 147X0060K V DC ; 50 V DC 3.5 C 355X0075C C 685X0075C F 156X0075F F 336X0075F T 406X0075T T 566X0075T K 117X0075K V DC ; 65 V DC 2.5 C 255X0100C C 475X0100C F 116X0100F F 226X0100F T 306X0100T T 436X0100T K 866X0100K V DC ; 85 V DC 1.7 C 175X0125C C 365X0125C F 905X0125F F 146X0125F T 186X0125T T 256X0125T K 566X0125K C Revision: 05-Dec-17 4 Document Number: 40025
5 EXTENDED RINGS PART NUMBER (1) -55 C MAX. CHANGE (%) -55 C 6 V DC ; 4 V DC 560 F 567X0006F F 827X0006F T 158X0006T K 228X0006K V DC ; 5 V DC 180 C 187X0008C F 477X0008F F 687X0008F K 188X0008K V DC ; 7 V DC 100 C 107X0010C C 157X0010C F 397X0010F F 567X0010F T 128X0010T K 158X0010K V DC ; 10 V DC 68 C 686X0015C C 107X0015C F 277X0015F F 397X0015F T 547X0015T T 827X0015T K 108X0015K V DC ; 13 V DC 56 C 566X0020C C 826X0020C F 227X0020F F 337X0020F V DC ; 15 V DC 47 C 476X0025C C 686X0025C F 187X0025F F 277X0025F T 357X0025T V DC ; 20 V DC 39 C 396X0030C C 566X0030C F 157X0030F F 227X0030F T 307X0030T T 337X0030T T 477X0030T K 567X0030K Revision: 05-Dec-17 5 Document Number: 40025
6 EXTENDED RINGS PART NUMBER (1) -55 C MAX. CHANGE (%) 35 V DC ; 22 V DC 33 C 336X0035C C 476X0035C T 107X0035T F 127X0035F T 227X0035T T 397X0035T K 477X0035K V DC ; 30 V DC 22 C 226X0050C C 336X0050C F 826X0050F F 127X0050F T 167X0050T T 277X0050T K 337X0050K V DC ; 40 V DC 18 C 186X0060C C 276X0060C F 686X0060F F 107X0060F T 147X0060T T 227X0060T K 277X0060K V DC ; 50 V DC 15 C 156X0075C C 226X0075C F 566X0075F F 826X0075F T 117X0075T T 187X0075T K 227X0075K V DC ; 65 V DC 3.9 C 395X0100C C 825X0100C C 106X0100C F 336X0100F F 396X0100F T 686X0100T K 127X0100K V DC ; 85 V DC 6.8 C 685X0125C F 276X0125F T 396X0125T T 476X0125T K 826X0125K C Revision: 05-Dec-17 6 Document Number: 40025
7 TYPICAL CURVES OF IMPEDANCE AS A FUNCTION OF FREQUENCY VARIOUS TEMPERURES K Case 120 μf, 25 V Capacitors C Case 10 μf. 100 V Capacitors IMPEDANCE IN C C C C + 85 C K 10K 100K 1M 10M IMPEDANCE IN C - 40 C C + 25 C + 85 C +125 C K 10K 100K 1M 10M FREQUENCY IN Hz FREQUENCY IN Hz PERFORMANCE CHARACTERISTICS 1. Operating Temperature: capacitors are designed to operate over the temperature range of -55 C to. UP TO WORKING VOLTAGE (V) WORKING VOLTAGE (V) UP TO WORKING VOLTAGE (V) WORKING VOLTAGE (V) DC Working Voltage: the DC working voltage is the maximum operating voltage for continuous duty at the rated temperature. 3. Surge Voltage: the surge DC rating is the maximum voltage to which the capacitors should be subjected under any conditions. This includes transients and peak ripple at the highest line voltage. The surge voltage of capacitors rated below 150 V is 115 % of the rated DC working voltage. The surge voltage of capacitors rated at 150 V DC is 165 V. 3.1 Surge Voltage Test: capacitors shall withstand the surge voltage test applied through a 1000 ± 10 % resistor in series with the capacitor and voltage source at the rate of one-half min on, four and one-half min. off, for 1000 successive test cycles at or. 4. Capacitance Tolerance: the capacitance of all capacitors shall be within the specified tolerance limits of the nominal rating. 4.1 Capacitance measurements shall be made by the bridge method at or referred to, a frequency of at a temperature of. A polarizing voltage shall be used of such magnitude that there shall be no reversal of polarity due to the AC component. The maximum AC voltage will be 1 V RMS applied during measurement. 5. Capacitance Change With Temperature: the capacitance change with temperature shall not exceed the limits given in the Standard and Extended Ratings table for each capacitor. 6. Equivalent Series Resistance: measurements shall be made by the bridge method at or referred to, a frequency of at a temperature of. A polarizing voltage shall be used of such magnitude that there shall be no reversal of polarity due to the AC component. The maximum AC voltage will be 1 V RMS applied during measurement. 6.1 The equivalent series resistance shall not exceed the maximum value in ohms listed in the Standard and Extended Ratings table for each capacitor. 6.2 The dissipation factor may be calculated from the equivalent series resistance and capacitance values as shown: 2 frc DF = where: DF = dissipation factor in % R = ESR in C = capacitance in μf f = frequency in Hz At, the above equation becomes: DF = R x C For example, percent dissipation factor of a 30 μf, 6 V capacitor, which has a maximum ESR of 3.4 at and, would be calculated as shown: 2 x 120 x 3.4 x x 30 DF = = = 7.7 % Revision: 05-Dec-17 7 Document Number: 40025
8 PERFORMANCE CHARACTERISTICS (CONTINUED) 7. Leakage Current: measurements shall be made at the applicable rated working voltage at ± 5 C through application of a steady source of power, such as a regulated power supply. The total resistance in series with each capacitor shall be between 1000 and The voltage shall be applied to the capacitor for 5 min before making the leakage current measurement. 7.1 The maximum leakage current for any capacitor shall not exceed the value in microamperes listed in the Standard and Extended Ratings Table for each capacitor. Leakage current varies with applied voltage. See graph below for the appropriate adjustment factor. LEAKAGE AS A FUNCTION OF VOLTAGE AND TEMPERURE LEAKAGE FACTOR PERCENT OF RED VOLTAGE 8. Low Temperature Impedance: the impedance of any capacitor at -55 C at, shall not exceed the values given in the Standard and Extended Ratings tables. 9. Life Test: capacitors are capable of withstanding a 2000 h life test at a temperature of or at the applicable rated DC working voltage 10. High Frequency Vibration: capacitors shall with stand vibration from 10 Hz to 2000 Hz at 20 g when tested. 11. Lead Pull Test: capacitors shall withstand a lead tensile stress of 3 pounds (13.2 N) for 30 s, applied axially 12. Marking: capacitors shall be marked with identification; capacitors type (); rated capacitance and tolerance (the tolerance shall be coded, using the list shown in How to Order); rated DC working voltage at ; the standard EIA date code of manufacture. GUIDE TO APPLICION 1. Ripple Current: all capacitors will withstand rms ripple currents as listed for each capacitor. 1.1 The RMS ripple current rating is independent of temperature or frequency within the following limitations: At frequencies of less than, the rated RMS ripple current must be multiplied by the factors shown: FREQUENCY IN Hz The sum of the peak AC voltage plus the DC voltage shall not exceed the DC working voltage of the capacitor The sum of the negative peak AC voltage, plus the applied DC voltage shall not allow a voltage reversal. 2. Cleaning wiring boards with type capacitors: customary cleaning solvents used in the electronics industry at present will not affect Type capacitors. However, the use of ultrasonic cleaning techniques is not recommended under any circumstances. 3. Apparent Capacitance: note that in timing circuit applications, the circuit designer must take into account two important variables which affect any electrolytic capacitor. These are the internal leakage resistance of the capacitor and its dielectric absorption, which will depend on the elapsed time since the capacitor was last energized. In applications where electrolytic capacitors are subjected to DC energy, or in effect, extremely low frequencies, the value of the apparent capacitance will be somewhat higher than that which is measured at. 4. No Reverse Voltage: the application of reverse voltage to these capacitors will cause internal damage. The resulting damage will lead to immediate or delayed failure of the unit. This will take the form of a catastrophic short circuit with possible expulsion of the electrolyte. Revision: 05-Dec-17 8 Document Number: 40025
9 Legal Disclaimer Notice Disclaimer ALL PRODUCT, PRODUCT SPECIFICIONS AND DA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, ), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. 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, 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 s knowledge of typical requirements that are often placed on 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 s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, 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 product could result in personal injury or death. Customers using or selling products not expressly indicated for use in such applications do so at their own risk. Please contact authorized 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. Product names and markings noted herein may be trademarks of their respective owners VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED Revision: 08-Feb-17 1 Document Number: 91000
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