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KYOCERA AVX TPSD226K035A0125 — Specialty Capacitors

TPSD226K035A0125 KYOCERA AVX Molded Tantalum 22 µF 35 V 125

MPNTPSD226K035A0125
Active

KYOCERA AVX TPS series, Molded tantalum capacitor, 22 µF ±10%, 35 V, 125 mOhm ESR, D-case 2917 (7343 Metric), -55°C to +125°C, Active

$3.7166Ref. price · indicative, final on quote
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

TPSD226K035A0125 specifications
ParameterValue
TypeMolded
SeriesTPS
MountingSurface Mount
ESR125mOhm
Voltage - rated35 V
Operating temperature-55°C~125°C
Size (Dimension)0.287\" L x 0.169\" W (7.30mm x 4.30mm)
Height - seated0.122\" (3.10mm)
PackageTape & Reel (TR)
FeaturesGeneral Purpose
Tolerance±10%
Capacitance22 µF
Case2917 (7343 Metric)
Manufacturer size codeD

Product details

22 µF, 35 V, 125 mOhm ESR — D-case molded tantalum

The TPSD226K035A0125 is a surface-mount molded tantalum capacitor from the KYOCERA AVX TPS series, rated 22 µF at 35 V with ±10% tolerance and a 125 mOhm ESR. A lower ESR means less voltage ripple on the output rail and less internal temperature rise, which directly affects long-term reliability in a DC-DC converter output or bulk decoupling application.

Housed in the D-case (2917 / 7343 Metric), measuring 7.30 mm x 4.30 mm with a seated height of 3.10 mm. The molded construction provides mechanical stability and moisture resistance for conformal-coated assemblies.

Frequently asked questions

Is TPSD226K035A0125 a direct replacement for TPSD226K035A0100?

The TPSD226K035A0125 and TPSD226K035A0100 share the same capacitance (22 µF), voltage rating (35 V), tolerance (±10%), and D-case package. The difference is the ESR: the A0125 suffix indicates 125 mOhm, while the A0100 suffix indicates 100 mOhm. In a power supply filter where ripple current is the limiting factor, the 125 mOhm part will run slightly hotter at the same ripple current — check the ripple current derating for your load. For general decoupling or bulk storage where ripple current is low, the two are functionally interchangeable on the same footprint.