Common Mode Chokes

Image Part Number Description / PDF Quantity Rfq
CME375-5-B

CME375-5-B

Triad Magnetics

CMC 17.8MH 2.7A 2LN TH

252

UT2024-009

UT2024-009

Triad Magnetics

COMMON MODE CHOKE 900MA 2LN TH

0

CMT-8116-B

CMT-8116-B

Triad Magnetics

CMC 50MH 2.3A 2LN TH

0

ET3542-052

ET3542-052

Triad Magnetics

CMC 22MH 1.8A 2LN TH

0

ET2825-027

ET2825-027

Triad Magnetics

CMC 66MH 700MA 2LN TH

67

CMT908-V3-B

CMT908-V3-B

Triad Magnetics

CMC 8MH 3.2A 2LN TH

0

CME375-6

CME375-6

Triad Magnetics

CMC 43.6MH 1.75A 2LN TH

36

CMT-8117

CMT-8117

Triad Magnetics

CMC 36MH 2.9A 2LN TH

327

CMF16-104450-B

CMF16-104450-B

Triad Magnetics

CMC 100MH 450MA 2LN TH

0

ET2835-036

ET2835-036

Triad Magnetics

CMC 66MH 700MA 2LN TH

0

CMT-8111-B

CMT-8111-B

Triad Magnetics

COMMON MODE CHOKE 12MH 4A 2LN TH

0

CME2425-8-B

CME2425-8-B

Triad Magnetics

CMC 40.5MH 500MA 2LN TH

210

ET2835-034

ET2835-034

Triad Magnetics

CMC 120MH 500MA 2LN TH

54

ET2825-029

ET2825-029

Triad Magnetics

COMMON MODE CHOKE 25MH 1A 2LN TH

55

UT2020-005

UT2020-005

Triad Magnetics

COMMON MODE CHOKE 1A 2LN TH

0

ET2835-038

ET2835-038

Triad Magnetics

COMMON MODE CHOKE 25MH 1A 2LN TH

73

CMT-8117-B

CMT-8117-B

Triad Magnetics

CMC 36MH 2.9A 2LN TH

0

CME2425-5

CME2425-5

Triad Magnetics

CMC 9.8MH 1A 2LN TH

0

UT2024-008

UT2024-008

Triad Magnetics

COMMON MODE CHOKE 700MA 2LN TH

5

CME2425-2

CME2425-2

Triad Magnetics

CMC 2.37MH 2A 2LN TH

95

Common Mode Chokes

1. Overview

Common Mode Chokes (CMCs) are passive electronic components designed to suppress electromagnetic interference (EMI) by blocking high-frequency noise currents while allowing DC or low-frequency signals to pass. They play a critical role in ensuring electromagnetic compatibility (EMC) in modern electronic systems, particularly in power supplies, communication interfaces, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
High-Frequency CMCsOptimized for >1 MHz noise suppressionSwitching power supplies, USB interfaces
Low-Frequency CMCsEffective in 10 kHz 1 MHz rangeMotor drives, industrial sensors
Multi-Winding CMCsMultiple coils for differential/balanced circuitsTelecom transformers, Ethernet interfaces
SMD CMCsSurface-mount design for compact PCB integrationSmartphones, IoT devices
High-Current CMCsRated for >10A continuous operationEV charging stations, solar inverters

3. Structure and Composition

A typical CMC consists of: - Ferrite Core: Made of manganese-zinc (MnZn) or nickel-zinc (NiZn) materials for high permeability - Dual Windings: Symmetrically wound coils with equal turns to maintain signal integrity - Encapsulation: Flame-retardant epoxy resin for mechanical protection - Termination: Tin-plated copper leads or SMD pads

4. Key Technical Specifications

ParameterDescriptionImportance
Inductance (H)100 @ 100 MHz typicalDetermines noise suppression effectiveness
Rated Current (A)0.1 50 A DCPrevents core saturation under load
Impedance Range100 MHz 1 GHzDefines operational frequency bandwidth
DC Resistance ( )0.01 5 Affects power efficiency
Operating Temp ( C)-55 to +150 CEnsures reliability in harsh environments

5. Application Fields

Major industries include: - Consumer Electronics: Laptop chargers, smart TVs - Industrial Automation: PLC controllers, CNC machines - Medical Equipment: MRI scanners, patient monitors - Renewable Energy: Wind turbine inverters, battery storage systems - Telecommunications: 5G base stations, fiber optic transceivers

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TDK CorporationACT1210 Series1200 @ 100 MHz, 1.5 A rating
SumidaCDRH3D28 SeriesHigh saturation resistance for EV chargers
Coilcraft114000C SeriesAEC-Q200 qualified for automotive applications
W rth Elektronik744210 SeriesCompact SMD design for 10GbE interfaces

7. Selection Guidelines

Key considerations: 1. Match impedance curve with target noise frequency 2. Derate current capacity by 20% for safety margins 3. Choose SMD variants for automated PCB assembly 4. Verify temperature ratings for industrial applications 5. Prioritize AEC-Q qualified parts for automotive use

8. Industry Development Trends

Current trends include: - Miniaturization through advanced nanocrystalline cores - Integration with TVS diodes for combined EMI/surge protection - Development of 1000+ Amp CMCs for data center power systems - Adoption of RoHS-compliant materials - Implementation of embedded thermal sensors for smart monitoring

Application Case: A server power supply uses TDK ACT1210-600M CMC to suppress 150 MHz switching noise, achieving 40 dB reduction in conducted emissions.

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