Magnetic Wire

Image Part Number Description / PDF Quantity Rfq
28SNS10

28SNS10

Remington Industries

MAGNET WIRE, ENAMELED COPPER WIR

50

1424200MWKIT.5

1424200MWKIT.5

Remington Industries

1424200MWKIT.5 MAGNET WIRE KIT,

48

28HNSP

28HNSP

Remington Industries

MAGNET WIRE, HEAVY BUILD ENAMELE

46

34S200P.5

34S200P.5

Remington Industries

34S200P.5 MAGNET WIRE, ENAMELED

43

24H20010

24H20010

Remington Industries

MAGNET WIRE, 200C, 24 AWG, 10LBS

45

39SNSP

39SNSP

Remington Industries

39SNSP 39 AWG MAGNET WIRE, ENAME

50

14SNS10

14SNS10

Remington Industries

MAGNET WIRE, ENAMELED COPPER WIR

46

20SNSP.125

20SNSP.125

Remington Industries

20SNSP.125 MAGNET WIRE, ENAMELED

27

32SNS

32SNS

Remington Industries

32SNS 32 AWG MAGNET WIRE, ENAMEL

49

2232MWKIT1

2232MWKIT1

Remington Industries

2232MWKIT1 MAGNET WIRE KIT, ENAM

50

20HNS5

20HNS5

Remington Industries

MAGNET WIRE, HEAVY BUILD ENAMELE

48

32HNS5

32HNS5

Remington Industries

MAGNET WIRE, HEAVY BUILD ENAMELE

49

17SNSP.125

17SNSP.125

Remington Industries

17SNSP.125 MAGNET WIRE, ENAMELED

45

24HNSP.125

24HNSP.125

Remington Industries

MAGNET WIRE, HEAVY BUILD ENAMELE

38

43SNS

43SNS

Remington Industries

MAGNET WIRE, ENAMELED COPPER WIR

50

42SNSPR.125

42SNSPR.125

Remington Industries

MAGNET WIRE, ENAMELED COPPER WIR

33

34S2002.5

34S2002.5

Remington Industries

MAGNET WIRE, 200C, 34 AWG, 2.5 L

47

41SNS5

41SNS5

Remington Industries

MAGNET WIRE, ENAMELED COPPER WIR

50

35SNSP.125

35SNSP.125

Remington Industries

35SNSP.125 MAGNET WIRE, ENAMELED

35

42.5SNSP.125

42.5SNSP.125

Remington Industries

42.5SNSP.125 MAGNET WIRE, ENAMEL

50

Magnetic Wire

1. Overview

Magnetic wire, also known as winding wire, is a critical component in electromagnetic devices such as transformers and inductors. It consists of a conductive core (typically copper or aluminum) insulated by a thin polymer coating. Its primary function is to convert electrical energy into magnetic energy and vice versa, enabling voltage transformation, current regulation, and energy storage. With the rapid development of power electronics, renewable energy systems, and electric vehicles, magnetic wire has become indispensable in modern electrical and electronic systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Enameled WireThin enamel insulation, high thermal conductivity, excellent dielectric strengthHigh-frequency transformers, motors, inductors
Film-insulated WirePolyester or polyimide film wrapping, enhanced mechanical protectionHigh-reliability aerospace systems, medical devices
Silk-wrapped WireNatural silk fiber insulation, flexible for manual windingVintage audio equipment, specialized audio transformers
Self-bonding WireAdhesive coating enables coil self-support without bobbinsCompact inductors, wireless charging coils

3. Structure and Composition

A typical magnetic wire comprises three key layers:

  1. Conductive Core: Oxygen-free copper (OFC) or aluminum for optimal conductivity
  2. Primary Insulation: Thermosetting polymer enamel (e.g., polyurethane, polyester-imide)
  3. Surface Coating: Optional adhesive or lubricant layer for winding process optimization

The cross-sectional diameter ranges from 0.02mm (magnet wire in micro-inductors) to 5.0mm (heavy-duty transformer windings).

4. Key Technical Specifications

ParameterDescriptionImportance
Wire Gauge (AWG/mm )Defines current-carrying capacity and resistanceDetermines thermal performance and voltage drop
Temperature ClassThermal endurance rating (130 C to 220 C)Dictates operational lifespan in high-temperature environments
Dielectric StrengthVoltage withstand capability (kV/mm)Ensures electrical safety and insulation reliability
Thermal IndexResistance to thermal agingImpacts long-term stability in power electronics

5. Application Fields

  • Power Industry: Grid transformers, HVDC converters
  • Electronics: Switch-mode power supplies (SMPS), EMI filters
  • Automotive: EV motor windings, onboard chargers
  • Renewables: Solar inverters, wind turbine generators

Case Study: In electric vehicles, 400V-class magnetic wires with Class 180 thermal rating enable compact traction motor designs achieving >95% efficiency.

6. Leading Manufacturers and Products

ManufacturerHeadquartersRepresentative Product
Essex FurukawaUSAECW-180 (High-temperature enameled wire)
Leoni AGGermanyAIWIRE (Automotive isolation wire)
Sumitomo ElectricJapanPEEK-insulated wire for hybrid vehicles

7. Selection Guidelines

  1. Calculate current density (typically 3-5A/mm for standard applications)
  2. Select temperature class based on ambient conditions (+25 C derating per 10 C above rating)
  3. Evaluate dielectric requirements per IEC 60317 standards
  4. Consider cost/performance trade-offs: Copper (higher conductivity) vs. Aluminum (lightweight, lower cost)

8. Industry Trends

  • Miniaturization: Development of 0.01mm-diameter wires for 5G RF inductors
  • High-Temperature Materials: Polyamide-imide (PAI) enamel enabling 220 C operation
  • Sustainability: Bio-based insulation coatings reducing VOC emissions
  • Integrated Solutions: Embedded magnetic wires in PCB substrates for EV chargers

Market forecasts predict 6.2% CAGR through 2030 driven by renewable energy integration and electrified transportation demands.

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