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TCTOM1A475M8R

Teil Nr. TCTOM1A475M8R
Hersteller AVX Corp/Kyocera Corp
Katalog Tantalum - Polymer Capacitors
Beschreibung CAP TANT POLY 4.7UF 10V 0603 / 4.7 µF Molded Tantalum Polymer Capacitor 10 V 0603 (1608 Metric) 500mOhm @ 100kHz
Muster
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ECAD-module
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Spezifikationen der Produkte Problem melden?

Kategorie Capacitors - Tantalum - Polymer Capacitors
Mfr KYOCERA AVX
Serie TCTO
Paket Tape & Reel
Produktstatus Active
Kapazität 4.7 µF
Toleranz ±20%
Spannung - Nennwert 10 V
Typ Molded
ESR (Äquivalenter Serienwiderstand) 500mOhm @ 100kHz
Temperaturbereich - Betrieb -55°C ~ 105°C
Lebensdauer @ Temp. -
Montage Typ Surface Mount
Verpackung / Koffer 0603 (1608 Metric)
Größe/Abmessung 0.063" L x 0.033" W (1.60mm x 0.85mm)
Höhe - sitzend (Max) 0.035" (0.90mm)
Abstand der Leitungen -
Hersteller Größe Code M
Bewertungen -
Eigenschaften General Purpose
MSL-Stufe 3 (168 Hours)
REACH-Status REACH Unaffected
ECCN EAR99
HTSUS 8532.21.0050
Win Source Teilenummer 1359615-TCTOM1A475M8R
Gefälschte Bedrohung auf dem freien Markt 60 pct.
Ultra Librarian 3D-Modell Ultra Librarian TCTOM1A475M8R CAD-Modell

Beschreibung

Overview

The TCTOM1A475M8R from AVX Corp/Kyocera Corp is a surface-mount solid tantalum polymer capacitor. Devices in this category combine a tantalum anode with a conductive polymer cathode to deliver low equivalent series resistance (ESR), stable capacitance over frequency, and good ripple current handling. These characteristics make the TCTOM1A475M8R well suited for use as a high-performance bypass, decoupling, and bulk energy storage capacitor in modern digital and mixed-signal electronics. Typical circuits include DC/DC converter outputs, point-of-load regulators, and power rails in communication, industrial, and consumer equipment where low noise and stable voltage are required.

Applications

  • Output filtering and bulk decoupling for DC/DC converters and point-of-load regulators
  • Power rail stabilization in FPGAs, microcontrollers, and high-speed digital logic boards
  • Low-ESR input/output filtering in telecom and networking equipment
  • Compact power supplies for industrial control, PLCs, and automation systems
  • Consumer and portable electronics requiring stable, low-noise power (set-top boxes, routers, STBs)
  • Embedded and IoT devices where high capacitance density and reliable SMT assembly are needed

Alternatives & Replacement

Depending on stock levels, lifecycle status, or specific design constraints, it may be necessary to consider alternative tantalum polymer capacitors with comparable electrical and mechanical characteristics. Any replacement should be evaluated for capacitance, voltage rating, ESR, ripple current capability, package size, and reliability requirements.

Recommended alternatives:

  • Vishay T55V107M016C0050 – polymer tantalum capacitor, suitable where redesign is acceptable (Redesign Required)
  • Panasonic ETPE330M9GB – polymer capacitor series for power applications (Redesign Required)
  • Kemet T598D477M2R5ATE006 – low-ESR polymer tantalum for power rail filtering (Redesign Required)
  • Kemet T523T157M006APE030 – polymer tantalum, may require PCB and spec review (Redesign Required)
  • Kemet T521D157M016ATE050 – alternative polymer tantalum for power management (Redesign Required)
  • Kemet T529P476M006AAE150 – high-performance polymer tantalum, board-level changes likely (Redesign Required)
  • Panasonic 2R5TAE220M9 – conductive polymer capacitor for compact power designs (Redesign Required)
  • Kemet T545V227M010ATE045 – automotive/robust polymer tantalum option (Redesign Required)
  • Vishay T55B157M6R3C0025 – alternative from the T55 series (Redesign Required)
  • Panasonic 10TPE220ML – TPE polymer series for general purpose power filtering (Redesign Required)

Engineering note: before committing to any replacement, carefully compare the datasheets for capacitance value and tolerance, rated voltage and derating strategy, ESR and ripple current at the operating frequency, package dimensions and pad layout, as well as temperature range and reliability ratings. Even with the same nominal parameters, differences in surge current behavior and derating guidelines can affect long-term reliability, so PCB footprint, voltage margins, and thermal conditions should all be verified in your specific design.

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