Feed Through Capacitors

Image Part Number Description / PDF Quantity Rfq
NFM31KC153R2A3L

NFM31KC153R2A3L

TOKO / Murata

CAP FEEDTHRU 0.015UF 100V 1206

2286

NFM15HC105D0G3D

NFM15HC105D0G3D

TOKO / Murata

0402(1005M) 4V 1.0UF +/- 20% 3 T

70516

NFM18CC101R1C3D

NFM18CC101R1C3D

TOKO / Murata

CAP FEEDTHRU 100PF 20% 16V 0603

5878

NFM18CC471R1C3D

NFM18CC471R1C3D

TOKO / Murata

CAP FEEDTHRU 470PF 20% 16V 0603

16865

NFM41CC222R2A3L

NFM41CC222R2A3L

TOKO / Murata

CAP FEEDTHRU 2200PF 100V 1806

14068

NFM21CC223R1H3D

NFM21CC223R1H3D

TOKO / Murata

CAP FEEDTHRU 0.022UF 50V 0805

70151

NFM41CC471R2A3L

NFM41CC471R2A3L

TOKO / Murata

CAP FEEDTHRU 470PF 100V 1806

5113

NFM21PC104R1E3D

NFM21PC104R1E3D

TOKO / Murata

CAP FEEDTHRU 0.1UF 20% 25V 0805

186228

NFM31KC153R1H3L

NFM31KC153R1H3L

TOKO / Murata

CAP FEEDTHRU 0.015UF 50V 1206

23228

NFM15CC222D1C3D

NFM15CC222D1C3D

TOKO / Murata

CAP FEEDTHRU 2200PF 20% 16V 0402

0

NFM3DCC222R1H3L

NFM3DCC222R1H3L

TOKO / Murata

CAP FEEDTHRU 2200PF 50V 1205

3944

NFM21HC105R1C3D

NFM21HC105R1C3D

TOKO / Murata

CAP FEEDTHRU 1UF 20% 16V 0805

25509

NFM31KC104R2A3L

NFM31KC104R2A3L

TOKO / Murata

CAP FEEDTHRU 0.1UF 20% 100V 1206

1390

NFM41PC155B1H3L

NFM41PC155B1H3L

TOKO / Murata

CAP FEEDTHRU 1.5UF 20% 50V 1806

24763

NFM15PC473C1C3D

NFM15PC473C1C3D

TOKO / Murata

CAP FEEDTHRU 0.047UF 16V 0402

0

NFM21PC475B1A3D

NFM21PC475B1A3D

TOKO / Murata

CAP FEEDTHRU 4.7UF 20% 10V 0805

72158

NFM18PC104R1C3D

NFM18PC104R1C3D

TOKO / Murata

CAP FEEDTHRU 0.1UF 20% 16V 0603

56000

NFM21PS106B0J3D

NFM21PS106B0J3D

TOKO / Murata

CAP FEEDTHRU 10UF 20% 6.3V 0805

32981

NFM31PC276B0J3L

NFM31PC276B0J3L

TOKO / Murata

CAP FEEDTHRU 27UF 20% 6.3V 1206

32733

NFMJMPC226R0G3D

NFMJMPC226R0G3D

TOKO / Murata

05035 (1209M) 4VDC 22UF +- 20%

88609

Feed Through Capacitors

1. Overview

Feed Through Capacitors are specialized passive components designed to suppress high-frequency noise in electronic circuits while allowing DC or low-frequency signals to pass through. They act as electromagnetic interference (EMI) filters by providing a low-impedance path to ground for unwanted high-frequency signals. These capacitors are critical in ensuring signal integrity and compliance with electromagnetic compatibility (EMC) standards across industries such as aerospace, medical devices, and telecommunications.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Ceramic Feed Through CapacitorsHigh dielectric constant, compact size, wide frequency range (up to GHz)RF amplifiers, mobile devices
Film Feed Through CapacitorsSelf-healing properties, low dielectric lossPower supplies, industrial motors
Three-Terminal CapacitorsReduced equivalent series inductance (ESL), improved high-frequency performanceHigh-speed digital circuits
Multi-Core Feed Through CapacitorsIntegrated multiple capacitors in a single packageMedical imaging equipment

3. Structure and Composition

A typical Feed Through Capacitor features a cylindrical ceramic or polymer dielectric body with three terminals: input, output, and ground. The internal structure includes concentric conductive layers separated by dielectric materials. Advanced designs incorporate multi-layer ceramic (MLCC) technology or wound film structures. Key components include:

  • Dielectric material (e.g., X7R ceramic, polypropylene)
  • Conductive electrodes (silver, copper, or aluminum)
  • Hermetically sealed housing for environmental protection
  • Gold-plated or tin-coated terminals for connectivity

4. Key Technical Specifications

ParameterTypical RangeImportance
Capacitance100 pF - 100 FDetermines noise filtering effectiveness
Voltage Rating50V - 3kVEnsures safe operation under load
Frequency Range1 MHz - 10 GHzDefines applicable signal bandwidth
Insulation Resistance>10,000 M Prevents leakage currents
Operating Temperature-55 C to +150 CAffects reliability in extreme conditions

5. Application Fields

Key industries and equipment:

  • Medical: MRI machines, pacemakers, ultrasound scanners
  • Telecommunications: 5G base stations, satellite transponders
  • Industrial: CNC machine controllers, motor drives
  • Aerospace: Avionics systems, radar equipment

Case Study: In MRI systems, Feed Through Capacitors enable artifact-free imaging by eliminating RF interference in gradient coil drivers.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesTechnical Advantages
MurataNFM21CC SeriesUltra-low ESL (0.1 nH), 100 MHz - 3 GHz operation
TDKB32920 SeriesHigh voltage tolerance (2500V), flame-retardant housing
KemetCPR21FP SeriesSpace-grade reliability, operating temp -65 C to +200 C

7. Selection Guidelines

Key considerations:

  • Determine required capacitance range based on noise frequency spectrum
  • Select voltage rating exceeding maximum system voltage by 20%
  • Evaluate thermal management needs for high-current applications
  • Consider package size constraints (e.g., 0603 vs. 1812)
  • Verify compliance with standards (e.g., IEC 60384-14)

8. Industry Trends

Future developments include:

  • Miniaturization: Sub-0402 packages for wearable devices
  • High-Frequency Optimization: 10+ GHz performance for 6G infrastructure
  • Integration: System-in-Package (SiP) solutions with embedded filters
  • Environmental Durability: Automotive-grade capacitors for 150 C+ operation
  • Material Innovation: Barium titanate nanocomposites for higher capacitance density
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