Tantalum - Polymer Capacitors

Image Part Number Description / PDF Quantity Rfq
T55B157M6R3C0040

T55B157M6R3C0040

Vishay / Sprague

CAP TANT POLY 150UF 6.3V 1411

0

T55T476M004C0080

T55T476M004C0080

Vishay / Sprague

CAP TANT POLY 47UF 4V 1411

0

T55V227M010C0018

T55V227M010C0018

Vishay / Sprague

CAP TANT POLY 220UF 10V 2917

107

T55Z337M004C0025

T55Z337M004C0025

Vishay / Sprague

CAP TANT POLY 330UF 4V 2917

800

T55D227M004C0025

T55D227M004C0025

Vishay / Sprague

CAP TANT POLY 220UF 4V 2917

0

T55B227M2R5C0070

T55B227M2R5C0070

Vishay / Sprague

CAP TANT POLY 220UF 2.5V 1411

1969

T55A476M004C0500

T55A476M004C0500

Vishay / Sprague

CAP TANT POLY 47UF 4V 1206

1895

T55V157M010C0015

T55V157M010C0015

Vishay / Sprague

CAP TANT POLY 150UF 10V 2917

695

T55T686M6R3C0070

T55T686M6R3C0070

Vishay / Sprague

CAP TANT POLY 68UF 6.3V 1411

490

T55B227M004C0035

T55B227M004C0035

Vishay / Sprague

CAP TANT POLY 220UF 4V 1411

2033

T52M1337M010C0055

T52M1337M010C0055

Vishay / Sprague

CAP TANT POLY 330UF 10V 2924

936

T55D687M004C0015

T55D687M004C0015

Vishay / Sprague

CAP TANT POLY 680UF 4V 2917

273

T55A475M6R3C0500

T55A475M6R3C0500

Vishay / Sprague

CAP TANT POLY 4.7UF 6.3V 1206

0

T52E5476M035C0070

T52E5476M035C0070

Vishay / Sprague

CAP TANT POLY 47UF 35V 2917

2287

T52M1337M016C0055

T52M1337M016C0055

Vishay / Sprague

CAP TANT POLY 330UF 16V 2924

4000

T55P106M004C0200

T55P106M004C0200

Vishay / Sprague

CAP TANT POLY 10UF 4V 0805

2037

T55B337M2R5C0035

T55B337M2R5C0035

Vishay / Sprague

CAP TANT POLY 330UF 2.5V 1411

1193

T55D337M010C0009

T55D337M010C0009

Vishay / Sprague

CAP TANT POLY 330UF 10V 2917

1397

T55V157M010C0025

T55V157M010C0025

Vishay / Sprague

CAP TANT POLY 150UF 10V 2917

0

T55B226M6R3C0150

T55B226M6R3C0150

Vishay / Sprague

CAP TANT POLY 22UF 6.3V 1411

5405

Tantalum - Polymer Capacitors

1. Overview

Tantalum polymer capacitors are a type of electrolytic capacitor utilizing conductive polymer as the electrolyte and tantalum metal as the anode. Compared to traditional liquid-electrolyte tantalum capacitors, they offer lower equivalent series resistance (ESR), higher thermal stability, and longer operational lifespan. Their ability to deliver stable capacitance in compact packages makes them critical components in modern electronics for power management, noise filtering, and energy storage.

2. Main Types and Functional Classification

Type Functional Features Application Examples
Solid Polymer Electrolyte Ultra-low ESR (<10m ), high ripple current tolerance High-frequency DC-DC converters
Hybrid Polymer-Electrolyte Combines polymer and liquid electrolyte for cost-performance balance Consumer electronics power supplies
High-Voltage Polymer Rated voltage >25V with enhanced dielectric strength Industrial motor drives

3. Structure and Composition

Typical construction includes:

  • Anode: Sintered tantalum pellet with porous structure
  • Dielectric: Thin Ta2O5 layer formed via anodization
  • Electrolyte: Conductive polymer (e.g., PEDOT:PSS) coating
  • Cathode: Graphite/silver layered termination

The porous anode structure maximizes surface area while the polymer electrolyte provides solid-state reliability.

4. Key Technical Specifications

Parameter Significance
Capacitance Range: 10 F - 1000 F Determines energy storage capacity
Rated Voltage: 2.5V - 50V Defines maximum operational voltage
ESR: <20m typical Impacts power efficiency and thermal performance
Leakage Current: <0.01C*V Affects battery-powered device standby consumption
Operating Temperature: -55 C to +125 C Ensures reliability in harsh environments

5. Application Fields

  • Consumer Electronics: Smartphone power management modules
  • Automotive: Engine control units (ECUs) and ADAS systems
  • Industrial: Programmable logic controllers (PLCs)
  • Medical: Portable diagnostic equipment power filtering
  • Telecom: 5G base station RF amplifiers

6. Leading Manufacturers and Products

Manufacturer Product Series Key Features
Vishay T55 Series 2000 hours life at 105 C
AVX TACMIC Military-grade vibration resistance
KEMET A700 Series Automotive AEC-Q200 qualified

7. Selection Guidelines

Key considerations:

  • Capacitance-voltage (CV) product must exceed circuit requirements by 20%
  • ESR requirements for high-frequency noise suppression
  • Package size constraints (e.g., 3216 vs 7343)
  • Temperature derating: Reduce rated voltage by 30% at 125 C
  • Failure mode analysis for safety-critical applications

8. Industry Trends

Emerging developments include:

  • Nano-structured polymer electrolytes enabling 30% higher capacitance density
  • Low-flammability materials for EV battery management systems
  • Embedded capacitor technology for 5G RF modules
  • AI-driven accelerated life testing methods

Market demand is projected to grow at 6.2% CAGR through 2030, driven by automotive electrification and IoT device proliferation.

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