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T495X106K035ATE200 - KEMET Corporation-T495B226K016ATE600 Capacitor Tantalum Solid Cap Tant Solid 22uF 16V B CASE 10% (3.5 X 2.8 X 1.9mm) Inward L SMD 3528-21 0.6 Ohm 125°C T/R

T495X106K035ATE200

Active
KEMET

CAP TANT SOLID 10UF 35V X CASE 10% (7.3 X 4.3 X 4MM) INWARD L SMD 7343-43 0.2 OHM 125°C T/R

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T495X106K035ATE200 - KEMET Corporation-T495B226K016ATE600 Capacitor Tantalum Solid Cap Tant Solid 22uF 16V B CASE 10% (3.5 X 2.8 X 1.9mm) Inward L SMD 3528-21 0.6 Ohm 125°C T/R

T495X106K035ATE200

Active
KEMET

CAP TANT SOLID 10UF 35V X CASE 10% (7.3 X 4.3 X 4MM) INWARD L SMD 7343-43 0.2 OHM 125°C T/R

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Technical Specifications

Parameters and characteristics for this part

SpecificationT495X106K035ATE200
Capacitance10 µF
ESR (Equivalent Series Resistance)200 mOhm
FeaturesGeneral Purpose
Height - Seated (Max) [Max]0.169 "
Height - Seated (Max) [Max]4.3 mm
Lifetime @ Temp.2000 Hrs
Manufacturer Size CodeX
Mounting TypeSurface Mount
Operating Temperature [Max]125 °C
Operating Temperature [Min]-55 °C
Package / Case7343 Metric
Package / Case2917
Size / Dimension [x]0.287 "
Size / Dimension [x]7.3 mm
Size / Dimension [y]4.3 mm
Size / Dimension [y]0.169 "
Tolerance10 %
TypeMolded
Voltage - Rated35 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 2.84
10$ 1.97
50$ 1.62
100$ 1.51
Digi-Reel® 1$ 2.84
10$ 1.97
50$ 1.62
100$ 1.51
Tape & Reel (TR) 500$ 1.33
1000$ 1.28
1500$ 1.25
2500$ 1.22
3500$ 1.20
5000$ 1.18
NewarkEach (Supplied on Cut Tape) 250$ 2.17

Description

General part information

T495X Series

The T495 series capacitors are low ESR, surge robust MnO2 polarized tantalum chip capacitors. These capacitors are designed for demanding applications that require high surge current and high ripple current capability. T495 capacitors builds upon proven capabilities of industrial grade tantalum chip capacitors to offer several advantages such as low ESR, high ripple current capability, excellent capacitance stability and improved resistance to high inrush currents. These benefits are achieved through a combination of proprietary design, materials and process parameters as well as high stress, low impedance electrical conditioning performed prior to screening.