Power Line Filter Modules

Image Part Number Description / PDF Quantity Rfq
B84266A21E13

B84266A21E13

TDK EPCOS

LINE FILTER 4A 250/440V

0

B84299C2320E603

B84299C2320E603

TDK EPCOS

FILTER

0

B86305A0103R309

B86305A0103R309

TDK EPCOS

REACTOR

0

B84299D1160B1

B84299D1160B1

TDK EPCOS

LINE FILTER 250VAC 16A CHASS MNT

0

B84299C1151E603

B84299C1151E603

TDK EPCOS

FILTER

0

B86732E0011L711

B86732E0011L711

TDK EPCOS

REACTOR

0

B84299D1151E3

B84299D1151E3

TDK EPCOS

LINE FILTER 150A CHASSIS MOUNT

0

B84142J0180S701

B84142J0180S701

TDK EPCOS

EMC LINE FILTER

0

B84299K00370000

B84299K00370000

TDK EPCOS

LINE FILTER 440/250VAC 50A CHASS

0

B84299D1101B3

B84299D1101B3

TDK EPCOS

LINE FILTER 250VAC 100A CHASS

0

B84312F90B4

B84312F90B4

TDK EPCOS

LINE FILTER 100VDC/VAC PNL MT

0

B84299K64C

B84299K64C

TDK EPCOS

LINE FILTER 250VAC 10A CHASS MNT

0

B84143B0250S700

B84143B0250S700

TDK EPCOS

EMC LINE FILTER

0

B84143G50R112

B84143G50R112

TDK EPCOS

LINE FILTER 520/300VAC 50A CHASS

0

B84299C1160E3

B84299C1160E3

TDK EPCOS

LINE FILTER 16A CHASSIS MOUNT

0

B84742J1600S169

B84742J1600S169

TDK EPCOS

EMC LINE FILTER

0

B84312C50B101

B84312C50B101

TDK EPCOS

LINE FILTER 100VDC/VAC PNL MT

0

B84143A0006R206

B84143A0006R206

TDK EPCOS

FILTER

0

B84263C22E13

B84263C22E13

TDK EPCOS

LINE FILTER 16A CHASSIS MOUNT

0

B86907P0036S806

B86907P0036S806

TDK EPCOS

REACTOR

0

Power Line Filter Modules

1. Overview

Power Line Filter Modules (PLFMs) are electromagnetic interference (EMI) suppression devices designed to mitigate conducted noise in electrical systems. They ensure compliance with electromagnetic compatibility (EMC) standards by attenuating high-frequency noise while allowing desired power frequencies to pass. Their importance grows with increasing electrification and connectivity in modern applications like renewable energy systems, industrial automation, and medical electronics.

2. Main Types and Functional Classification

TypeFunction FeaturesApplication Examples
Differential Mode FilterSuppresses asymmetric noise between live/neutral conductorsMotor drives, variable frequency drives
Common Mode FilterAttenuates symmetric noise between conductors and groundMedical imaging equipment, data centers
Combined FilterIntegrates differential and common mode suppressionIndustrial control cabinets, test equipment
High-Frequency FilterTargets noise above 1MHz with specialized componentsWireless base stations, satellite communication

3. Structure and Components

Typical PLFM construction includes: - Die-cast aluminum housing for EMI shielding - X/Y capacitors (ceramic or film type) for differential/common mode filtering - Toroidal or multi-hole inductors for noise suppression - Integrated thermal fuses and discharge resistors - IEC standard connectors (e.g., C13/C14) or terminal blocks - Epoxy sealing for environmental protection

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeTypically 150kHz-100MHzDetermines noise bandwidth attenuation
Voltage Rating100-600VAC/DCDefines operational safety margin
Insertion Loss10-100dB at target frequenciesQuantifies noise reduction capability
Current Capacity0.5-100AAffects power delivery capability
Temperature Range-40 C to +125 CEnsures environmental reliability

5. Application Areas

Key industries and equipment: - Industrial Automation: PLC control cabinets, CNC machines - Medical: MRI scanners, patient monitoring systems - Communication: 5G base stations, network servers - Renewable Energy: Solar inverters, wind turbine controllers - Aerospace: Avionics power systems, satellite payloads - Consumer Electronics: EV charging stations, smart home systems

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
SchaffnerFN 208080A rating, 3-phase filter for industrial drives
TDK-LambdaDFM1K1kW power line filter with medical safety certification
MTE CorporationPro-NetModular filter for industrial Ethernet applications
API TechnologiesPLF-300Military-grade filter for aerospace systems

7. Selection Guidelines

Key considerations: - Match voltage/current ratings with system requirements - Verify insertion loss curves at specific noise frequencies - Consider physical dimensions and cooling requirements - Ensure compliance with relevant standards (e.g., IEC 60939) - Evaluate environmental conditions (temperature, humidity, vibration) - Assess certification needs (CE, UL, MIL-STD)

8. Industry Trends

Market developments include: - Increasing demand for high-frequency filters (>10MHz) due to 5G/6G adoption - Miniaturization for EV and portable medical device applications - Integration with smart monitoring capabilities (IoT-enabled filters) - Growth in wide bandgap semiconductor compatible filters (SiC/GaN) - Stricter EMC regulations driving customized filter solutions - Market CAGR projected at 6.8% (2023-2030) according to industry reports

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