Performance Characteristics 3-9 Outline Drawing & Dimensions 10 Ordering Information Marking & Packaging T190/T290 CLR90 MIL-PRF-39006/30 Series Part Number Ratings T191/T291 CLR91 MIL-PRF-39006/31 Series Part Number Ratings 16-17 T192/T292 CLR79 MIL-PRF-39006/22 Series Part Number Ratings T195/T295 CLR81 MIL-PRF-39006/25 Series Part Number Ratings 22-23 T197 Series - High Temperature Wet Tantalum Series Part Number Ratings 24-25 T198 Series - High Temperature Wet Tantalum Series Part Number Ratings
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INDEX Performance Characteristics 3-9 Outline Drawing & Dimensions 10 Ordering Information Marking & Packaging T190/T290 CLR90 MIL-PRF-39006/30 Series Part Number Ratings T191/T291 CLR91 MIL-PRF-39006/31 Series Part Number Ratings 16-17 T192/T292 CLR79 MIL-PRF-39006/22 Series Part Number Ratings T195/T295 CLR81 MIL-PRF-39006/25 Series Part Number Ratings 22-23 T197 Series - High Temperature Wet Tantalum Series Part Number Ratings 24-25 T198 Series - High Temperature Wet Tantalum Series Part Number Ratings IMPORTANT NOTICE KEMET Electronics Corporation disclaims all warranties, whether express, implied, or statutory as to any manner whosoever, including the condition of the equipment, its compatibility with specific requirements, its merchantability, or fitness for any particular purpose which extend beyond the description on the face thereof. Furthermore, under no circumstances shall KEMET Electronics Corporation be liable for consequential, special, incidental or indirect damages resulting from the use or handling of this product. Finally, KEMET Electronics Corporation does not assume any responsibility for the correctness of the information contained in this catalog. All design characteristics, specifications, tolerances, and the like are subject to change without notice. KEMET Electronics Corporation, P.O. Box 5928, Greenville, SC 29606 864 963-6300 Performance Characteristics Introduction KEMET wet tantalum capacitors are identified by the initial “T”, followed by a “Series” number. T19X designates commercial product T29X is military grade in accordance with Military Specification, MIL-PRF39006. For detailed performance characteristics of the T29X series, please refer to the latest issue of the Military Specification. MIL-PRF-39006 establishes 1000 hour failure rate levels of 1%, and T29X series components are available in M, P, and R failure rates and respectively . Specific requirements are set forth in the respective Product Series in this catalog. All Military products are 100% electrically screened for the parameters shown in the respective product section. For non-military product, all series are 100% screened for leakage, capacitance and dissipation factor. All Series are inspected to electrical limits using a minimum AQL sampling plans, according to the Military Standard MILSTD-105, even after 100% testing. This sampling plan, to the best of KEMET Electronics’ knowledge, meets or exceeds the generally accepted industry standard for similar products. KEMET capacitors may also be supplied, with prior agreement, to meet specifications with requirements differing from those of KEMET catalogs. These Notes apply generally to all KEMET wet tantalum capacitors and illustrate typical performance under normal application conditions, except where noted. The intent of these Notes is to provide generalized information concerning performance characteristics. General Application Class Wet tantalum capacitors are usually applied in circuits where the AC component is small compared to the DC component. Typical uses known to KEMET Electronics include blocking, by-passing, decoupling, and filtering. They are also used in timing circuits. If two of these polar capacitors are connected “back-to-back” i.e., negative-to-negative or positive-to-positive , the pair may be used in AC applications as a non-polar device . Storage Conditions Capacitors may be stored without applied voltage over the operating temperature range specified in the catalogs for each Series. The range is from -55 to +125°C for all Series. Storage at high temperature may cause a small, temporary increase in leakage current measured under standard conditions , but the original value is usually restored within a few minutes after application of rated voltage. DC leakage current may rise upon exposure to a combination of high temperature and high humidity, but is normally restored by voltage conditioning under standard conditions. The increase will be greater than that experienced under temperature influence alone because of conduction through absorbed water. This Series may be affected by absorption of water on external insulating surfaces. The water film may also attract a layer of dust from the air increasing the effect. The most sensitive parameter is leakage current. Polarity Operating Environment Most of the discussion under “Storage Conditions” will apply also when capacitors are operated within the applicable electrical ratings described below. The temporary increase in leakage current at standard conditions following elevated-temperature exposure is not observed, however, if the capacitors are operated with adequate DC voltage applied. Capacitance DC bias causes a small reduction in capacitance, up to about 2% when full rated voltage is applied as bias. DF is also reduced by the presence of DC. Capacitance changes very little below 1 kHz but decreases more noticably at higher frequencies. Larger capacitance values decline more rapidly than small ratings. Capacitance typically changes with temperature according to the curve of Figure Figure Typical Effect of Temperature upon Capacitance KEMET Electronics Corporation, P.O. Box 5928, Greenville, SC 29606 864 963-6300 Dissipation Factor DF DF is measured at 120 Hz and 25°C with up to 1 volt rms applied. Note that, in either operation, peak AC plus DC bias must not exceed either rated voltage Measurement circuits are of high impedance, however, and under these conditions 1 volt rms may be applied DC bias. DC bias is thus normally not used, except when rated voltage is below 6 volts and the AC signal level exceeds vrms. However, MIL-PRF-39006 pro- vides for up to volts DC. DC bias is not commonly used at room temperature, but is more commonly used at elevated temperatures. Dissipation Factor DF is a useful low-frequency measure of the resistive component in capacitors. It is the ration of the unavoidable resistance to the capaci- tive reactance, usually expressed in percent. DF increases with temperature above +25°C and may also Ordering Information T 192 A 256 M 008 A S C TANTALUM SERIES T190/T290 MIL-PRF-39006/30 CLR90 T191/T291 MIL-PRF-39006/31 CLR91 T192/T292 MIL-PRF-39006/22 CLR79 T195/T295 MIL-PRF-39006/25 CLR81 T197 & T198 High Temperature CASE SIZE A,B,C,D CAPACITANCE PICOFARAD CODE First two digits represent significant figures. Third digit specifies number of zeros. CAPACITANCE TOLERANCE M = ±20%, K = ±10% SPECIFICATION when necessary C-0100 Uninsulated Components C-0200 High Shock, High Vibration LEAD MATERIAL S - Standard Solder Coated Nickel Sn/Pb content FAILURE RATE A = Not Applicable VOLTAGE As Shown *Refer to for lead material transition to Pb free. T19X Commercial Component Marking K T192 + 6R8 uF 10% 75V+ 0602AA * 1st & 2nd digit = Year 3rd & 4th digit = Week Manufacturer’s Identification, Series, Polarity Nominal Capacitance in Microfarads uF “R” Indicates a Decimal Capacitance Tolerance, Voltage Polarity Date*/Lot Code Packaging Case Size KEMET EIA Pieces per Tray Mil-PRF-39006 Component Marking M39006/ + 22-0061 JAN K + 31433 0605AA + 15uF 15V Military Specification, Polarity Specification Sheet Number JAN Marking, Trademark, Polarity CAGE Code Date*/Lot Code, Polarity Capacitance, Voltage * 1st & 2nd digit = Year 3rd & 4th digit = Week Component Weight Case Size KEMET EIA Average Weight grams Construction KEMET Electronics Corporation, P.O. Box 5928, Greenville, SC 29606 864 963-6300 Wet Tantalum T190/T290 Series T190/T290 CLR90 Ratings & Part Number Reference Cap Case Cap uF Size Tol. KEMET Part Number T190A306M006AS T190A306K006AS T190A306J006AS T190A686M006AS T190A686K006AS T190A686J006AS T190B147M006AS T190B147K006AS T190B147J006AS T190B277M006AS T190B277K006AS T190B277J006AS T190C337M006AS T190C337K006AS T190C337J006AS T190C567M006AS T190C567K006AS T190C567J006AS T190D128M006AS T190D128K006AS T190A256M008AS T190A256K008AS T190A256J008AS T190A566M008AS T190A566K008AS T190A566J008AS T190B127M008AS T190B127K008AS T190B127J008AS T190B227M008AS T190B227K008AS T190B227J008AS T190C297M008AS T190C297K008AS T190C297J008AS T190C437M008AS T190C437K008AS T190C437J008AS T190D857M008AS T190D857K008AS T190A206M010AS T190A206K010AS T190A206J010AS T190A476M010AS T190A476K010AS T190A476J010AS T190B107M010AS T190B107K010AS T190B107J010AS T190B187M010AS T190B187K010AS T190B187J010AS T190C257M010AS T190C257K010AS T190C257J010AS T190C397M010AS T190C397K010AS T190C397J010AS T190D757M010AS T190D757K010AS Max. ESR Max. Ripple MIL-PRF-39006/30A CLR90 Max. D.C. Max. D.F. Ohms at |
More datasheets: T198B107K060AS | T198A107K015AS | T198A106K100AS | T197A255K100AS | T197B156K075AS7340 | T197A685K075AS | T197A566K008AS | T197A476K010AS | T197A306K006AS | T197A106K025AS |
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