Niobium Oxide Capacitors

Image Part Number Description / PDF Quantity Rfq
NOJT156M002RWJ

NOJT156M002RWJ

Elco (AVX)

CAP NIOB OXID 15UF 20% 2.5V 1210

0

NOSC476M006R0300

NOSC476M006R0300

Elco (AVX)

CAP NIOB OXID 47UF 20% 6.3V 2312

0

NOJT106M004RWJ

NOJT106M004RWJ

Elco (AVX)

CAP NIOB OXIDE 10UF 20% 4V 1210

0

NOJB686M006RWJ

NOJB686M006RWJ

Elco (AVX)

CAP NIOB OXID 68UF 20% 6.3V 1210

0

NOJA156M004RWJ

NOJA156M004RWJ

Elco (AVX)

CAP NIOB OXIDE 15UF 20% 4V 1206

0

NOSW686M002R0150

NOSW686M002R0150

Elco (AVX)

CAP NIOB OXID 68UF 20% 2.5V 2312

0

NOJB226M010RWJ

NOJB226M010RWJ

Elco (AVX)

CAP NIOB OXIDE 22UF 20% 10V 1210

0

NOJC336M010RWJ

NOJC336M010RWJ

Elco (AVX)

CAP NIOB OXIDE 33UF 20% 10V 2312

90

NOJP156M002RWJ

NOJP156M002RWJ

Elco (AVX)

CAP NIOB OXID 15UF 20% 2.5V 0805

0

NOJA336M004RWJ

NOJA336M004RWJ

Elco (AVX)

CAP NIOB OXIDE 33UF 20% 4V 1206

0

NOJW476M004RWJ

NOJW476M004RWJ

Elco (AVX)

CAP NIOB OXIDE 47UF 20% 4V 2312

0

NLJP226M004R4000

NLJP226M004R4000

Elco (AVX)

CAP NIOB OXIDE 22UF 20% 4V 0805

0

NOSY337M004R0150

NOSY337M004R0150

Elco (AVX)

CAP NIOB OXIDE 330UF 20% 4V 2917

0

NOSE477M002R0100

NOSE477M002R0100

Elco (AVX)

CAP NIOB OXI 470UF 20% 2.5V 2917

0

NOJA475M010RWJ

NOJA475M010RWJ

Elco (AVX)

CAP NIOB OXID 4.7UF 20% 10V 1206

29659

NOJA226M002RWJ

NOJA226M002RWJ

Elco (AVX)

CAP NIOB OXID 22UF 20% 2.5V 1206

0

NOJC107M002SWJ

NOJC107M002SWJ

Elco (AVX)

CAP NIOB OXI 100UF 20% 2.5V 2312

0

NOJV477M006SWJ

NOJV477M006SWJ

Elco (AVX)

CAP NIOB OXI 470UF 20% 6.3V 2924

0

NOJT226M006RWJ

NOJT226M006RWJ

Elco (AVX)

CAP NIOB OXID 22UF 20% 6.3V 1210

0

NOSC227M002R0080

NOSC227M002R0080

Elco (AVX)

CAP NIOB OXI 220UF 20% 2.5V 2312

0

Niobium Oxide Capacitors

1. Overview

Niobium oxide capacitors are solid-state electrolytic capacitors utilizing niobium pentoxide (Nb O ) as the dielectric material. They offer high capacitance density, excellent stability, and low leakage current compared to traditional aluminum or tantalum capacitors. Their importance in modern electronics stems from their reliability in critical applications such as automotive systems, industrial automation, and portable devices.

2. Main Types and Functional Classification

Type Functional Features Application Examples
Solid Electrolyte Niobium Oxide Capacitors High volumetric efficiency, low ESR (Equivalent Series Resistance) Mobile devices, power supply units
Polymer Electrolyte Niobium Oxide Capacitors Ultra-low ESR, improved thermal stability High-frequency circuits, LED drivers
Hybrid Niobium-Oxide Capacitors Combines solid and liquid electrolytes for balanced performance Automotive ECUs, aerospace systems

3. Structure and Composition

A typical niobium oxide capacitor consists of:

  • Anode: Sintered niobium metal with high surface area
  • Dielectric Layer: Thermally oxidized Nb O film
  • Electrolyte: Conductive polymer or manganese dioxide (MnO )
  • Cathode: Graphite/silver epoxy coating

 

4. Key Technical Specifications

Parameter Typical Range Importance
Capacitance Range 1 1000 F Determines energy storage capability
Rated Voltage 2.5 50 V Defines safe operating limits
ESR 5 100 m Impacts high-frequency performance
Leakage Current 0.01 0.1 A/ F Affects power efficiency
Operating Temperature -55 C to +125 C Ensures reliability in harsh environments

5. Application Fields

Primary industries and devices include:

  • Consumer Electronics: Smartphones, notebooks, gaming consoles
  • Industrial: PLCs, motor drives, energy meters
  • Automotive: ADAS systems, battery management modules
  • Aerospace: Avionics, satellite power systems

 

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
AVX Corporation NXJ Series 1000 F/16 V, 105 C rating
Vishay Intertechnology Niobium Oxide VJ1005 0.1 F 4.7 F, 0805 package
TDK Corporation C3225X5R16Y106M X5R dielectric, 10 F/16 V

7. Selection Guidelines

Key considerations for optimal selection:

  • Capacitance-voltage (CV) product matching circuit requirements
  • ESR tolerance for switching frequency applications
  • Temperature derating curves
  • Physical size constraints (0603, 0805, etc.)
  • Cost vs. reliability trade-offs

 

8. Industry Trends

Emerging trends include:

  • Development of sub-1V ultra-low-voltage capacitors for IoT devices
  • Adoption of nanoscale oxide layers for 3 capacitance density improvement
  • Transition to lead-free packaging materials
  • Integration with MEMS systems for smart capacitors

 

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