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T495X687004AE060 Datasheet(PDF) 1 Page - Kemet Corporation |
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T495X687004AE060 Datasheet(HTML) 1 Page - Kemet Corporation |
1 / 28 page © KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com T2009_T495 • 10/7/2013 1 One world. One KEMET Benefits • Meets or exceeds EIA Standard 535BAAC • Taped and reeled per EIA 481–1 • High surge current capability • Optional gold-plated terminations • High ripple current capability • 100% surge current test on C, D, E, U, V, X sizes • 100% steady-state accelerated aging • Capacitancevaluesof0.1μFto1,000μF • Tolerances of ±10% and ±20% • Voltage rating of 2.5 – 50 VDC • Extended range values • Available tested to DSCC 95158 • RoHS Compliant and lead-free terminations • Operatingtemperaturerangeof-55˚Cto+125˚C Applications Typicalapplicationsincludedecouplingandfilteringinindustrial and automotive end applications, such as DC/DC converters, portable electronics, telecommunications, and control units requiring high ripple current capability. Overview The low ESR, surge-robust T495 Series is designed for demanding applications that require high surge current and high ripple current capability. This series builds upon the proven capabilities of our industrial grade tantalum chip capacitors to offer several advantages such as low ESR, high ripple current capability, excellent capacitance stability, and improved resistancetohighin-rushcurrents.Thesebenefitsareachieved though a combination of proprietary design, materials, and process parameters as well as high-stress, low impedance electrical conditioning performed prior to screening. Low ESR MnO 2 Tantalum & Aluminum Surface Mount Capacitors T495 Surge Robust Low ESR MnO 2 Series Environmental Compliance RoHS Compliant (6/6) according to Directive 2002/95/EC when ordered with 100% Sn Solder SPICE Foradetailedanalysisofspecificpartnumbers,pleasevisitwww.kemet.comforafreedownloadofKEMET'sSPICEsoftware. The KEMET SPICE program is freeware intended to aid design engineers in analyzing the performance of these capacitors over frequency, temperature, ripple, and DC bias conditions. |
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