EMI/RFI Filters (LC, RC Networks)

Image Part Number Description / PDF Quantity Rfq
EZA-CT10AAAJ

EZA-CT10AAAJ

Panasonic

FILTER RC 22 OHM/10PF SMD

1552

EZA-ST11AAAJ

EZA-ST11AAAJ

Panasonic

FILTER RC(PI) 22 OHM/22PF SMD

10191

EZA-NT14AAAJ

EZA-NT14AAAJ

Panasonic

FILTER RC(PI) 22 OHM/220PF SMD

1995

EZA-CT00AAAJ

EZA-CT00AAAJ

Panasonic

FILTER RC 10 OHM/10PF SMD

9549

EZA-ST51AAAJ

EZA-ST51AAAJ

Panasonic

FILTER RC(PI) 470 OHM/22PF SMD

2692

EZA-CT30AAAJ

EZA-CT30AAAJ

Panasonic

FILTER RC 100 OHM/10PF SMD

100457

EZA-ST42AAAJ

EZA-ST42AAAJ

Panasonic

FILTER RC(PI) 220 OHM/47PF SMD

7876

EZA-ST62AAAJ

EZA-ST62AAAJ

Panasonic

FILTER RC(PI) 1 KOHM/47PF SMD

720

EZA-ST13AAAJ

EZA-ST13AAAJ

Panasonic

FILTER RC(PI) 22 OHM/100PF SMD

0

EZA-DLU02AAJ

EZA-DLU02AAJ

Panasonic

FILTER RC(PI) SMD

14873

EZA-ST43AAAJ

EZA-ST43AAAJ

Panasonic

FILTER RC(PI) 220 OHM/100PF SMD

7337

EZA-ST61AAAJ

EZA-ST61AAAJ

Panasonic

FILTER RC(PI) 1 KOHM/22PF SMD

0

EZA-DLU01AAJ

EZA-DLU01AAJ

Panasonic

FILTER RC(PI) SMD

18

EZA-ST52AAAJ

EZA-ST52AAAJ

Panasonic

FILTER RC(PI) 470 OHM/47PF SMD

11033

EZA-ST31AAAJ

EZA-ST31AAAJ

Panasonic

FILTER RC(PI) 100 OHM/22PF SMD

969

ELK-EV112FC

ELK-EV112FC

Panasonic

FILTER LC(T) 1050PF ESD SMD

2

EZA-ST41AAAJ

EZA-ST41AAAJ

Panasonic

FILTER RC(PI) 220 OHM/22PF SMD

491

EZA-CT20AAAJ

EZA-CT20AAAJ

Panasonic

FILTER RC 47 OHM/10PF SMD

8250

EZA-NT65AAAJ

EZA-NT65AAAJ

Panasonic

FILTER RC(PI) 1 KOHM/470PF SMD

755

ELK-E101FA

ELK-E101FA

Panasonic

FILTER LC(T) 100PF 50MHZ SMD

0

EMI/RFI Filters (LC, RC Networks)

1. Overview

EMI/RFI (Electromagnetic Interference/Radio-Frequency Interference) filters are passive components designed to suppress unwanted high-frequency noise in electronic circuits. These filters utilize LC (inductor-capacitor) or RC (resistor-capacitor) networks to attenuate noise while allowing desired signals to pass. In modern electronics, they are critical for ensuring electromagnetic compatibility (EMC), preventing interference between devices, and meeting regulatory standards in industries such as automotive, aerospace, and telecommunications.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
LC FiltersUse inductors and capacitors to create low-pass or band-pass filtering; high attenuation at target frequenciesPower supplies, motor drives, RF transceivers
RC FiltersResistor-capacitor networks for broadband noise suppression; lower cost, simpler designSignal lines, analog circuits, medical devices
LCR FiltersCombines inductors, capacitors, and resistors for enhanced damping and stabilityHigh-precision instrumentation, industrial automation
Multi-stage FiltersCascaded LC/RC stages for improved attenuation over wide frequency rangesSwitching power supplies, EV charging systems

3. Structure and Components

A typical EMI/RFI filter consists of: - Inductors (L): Wound coils or ferrite beads that block high-frequency currents. - Capacitors (C): Ceramic or film capacitors that shunt noise to ground. - Resistors (R): Used for damping oscillations in LCR filters. - Enclosure: Shielded metal or plastic housing to prevent radiation. - Terminals: Screw, PCB, or panel-mount interfaces for integration. The components are arranged in (Pi), T, or ladder configurations based on filtering requirements.

4. Key Technical Specifications

ParameterDescriptionImportance
Cutoff FrequencyFrequency at which attenuation reaches -3dBDetermines noise suppression range
Insertion LossSignal loss at target frequencies (dB)Measures filtering effectiveness
Rated Voltage/CurrentMax continuous operating voltage/currentEnsures safe operation
ImpedanceMatching with source/load impedance ( )Optimizes performance
Temperature RangeOperating temperature limits ( C)Affects reliability
ESR (Equivalent Series Resistance)Internal resistance of capacitorsInfluences damping and efficiency

5. Application Areas

EMI/RFI filters are used in: - Consumer Electronics: Smartphones, TVs, switching power supplies. - Industrial Automation: PLCs, motor drives, sensors. - Automotive: On-board chargers (OBC), CAN bus systems. - Medical Devices: MRI machines, ECG monitors. - Telecommunications: 5G base stations, fiber optic transceivers. - Aerospace: Avionics, satellite communication systems.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TDK CorporationFK18 seriesMiniature LC filters for DC power lines, 100kHz 1GHz range
Murata ManufacturingNXU seriesMulti-layer ceramic EMI filters for automotive applications
Schaffner GroupFN9266High-current 3-phase filter for industrial motor drives
Coilcraft1500R seriesRC networks for signal line filtering in IoT devices
Bourns Inc.2008-RCSurface-mount LC filters for telecom infrastructure

7. Selection Guidelines

Key considerations for selecting EMI/RFI filters: 1. Frequency Range: Match cutoff frequency to target noise spectrum. 2. Circuit Impedance: Ensure impedance compatibility (e.g., 50 systems). 3. Physical Constraints: Size, mounting type (through-hole/SMD), and weight. 4. Environmental Factors: Temperature, humidity, and vibration resistance. 5. Cost vs. Performance: Balance attenuation requirements with budget. 6. Compliance: Certifications (CE, FCC, CISPR) for target markets. Example: For a 12V DC motor driver, select an LC filter with a 1MHz cutoff frequency, 5A current rating, and IP67 enclosure.

8. Industry Trends

Future developments include: - Miniaturization: Increased integration of LC/RC components in chip-scale packages. - High-Frequency Support: Filters for 5G (up to 40GHz) and mmWave applications. - Wide Bandgap Compatibility: Optimized for GaN/SiC devices in EVs and fast chargers. - Smart Filters: Embedded sensors for real-time EMI monitoring. - Environmental Compliance: Lead-free materials and RoHS/WEEE adherence. The global EMI filter market is projected to grow at 8.2% CAGR through 2030, driven by IoT and electrified transportation.

RFQ BOM Call Skype Email
Top