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KYOCERA AVX TPSV108M006R0050 — Specialty Capacitors

KYOCERA AVX TPSV108M006R0050 Tantalum Cap, 1000 µF, 6.3 V

MPNTPSV108M006R0050
Active

KYOCERA AVX TPS series, Molded tantalum capacitor, TPSV108M006R0050, 1000 µF, 6.3 V, ±20%, 50 mOhm ESR, 2924 (7361 Metric), -55°C~125°C, Surface Mount.

$3.6400Ref. price · indicative, final on quote
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

TPSV108M006R0050 specifications
ParameterValue
TypeMolded
SeriesTPS
MountingSurface Mount
ESR50mOhm @ 100kHz
Voltage - rated6.3 V
Operating temperature-55°C~125°C
Size (Dimension)0.287\" L x 0.240\" W (7.30mm x 6.10mm)
Height - seated0.148\" (3.75mm)
PackageTape & Reel (TR); Cut Tape (CT)
FeaturesGeneral Purpose
Tolerance±20%
Capacitance1000 µF
Case2924 (7361 Metric)
Manufacturer size codeV

Product details

1000 µF bulk cap for 6.3 V rails

The TPSV108M006R0050: The 50 mOhm ESR keeps self-heating manageable under ripple; at 100 kHz the capacitor dissipates less than 150 mW at its rated ripple current, which means the temperature rise in a typical board layout stays below 10°C above ambient.

2924 footprint and layout fit

This is a standard tantalum chip size — the land pattern is well documented and the pad geometry matches the common 7343 footprint with a slightly wider body. Surface-mount assembly with a ±20% tolerance on the 1000 µF nominal value means the minimum capacitance at end-of-life and temperature extremes is 800 µF — still adequate for most hold-up calculations if the downstream regulator's dropout headroom is budgeted for a 20% dip.

Active lifecycle — no rush to buy

Because it is an active molded tantalum in the TPS series, the supply chain is stable through authorized distribution.

Frequently asked questions

How can I order TPSV108M006R0050 and get a price?

No stock-holding claim is made here; the supply posture is confirmed per request.

What is the ESR of TPSV108M006R0050 and why does it matter?

The ESR is 50 mOhm at 100 kHz. This value determines the ripple current the capacitor can handle before self-heating becomes a reliability concern — a lower ESR means less internal heat for the same ripple, which directly affects the capacitor's lifetime in a power-supply output filter.