Fixed Inductors

Image Part Number Description / PDF Quantity Rfq
SH150S-0.84-26

SH150S-0.84-26

Amgis

FIXED IND 26UH 840MA 200 MOHM

0

SH150S-0.20-374

SH150S-0.20-374

Amgis

FIXED IND 374UH 200MA 2.7 OHM

0

SH50C-3.0-100

SH50C-3.0-100

Amgis

FIXED IND 100UH 3A 40 MOHM TH

696

SWB-0.62-1500

SWB-0.62-1500

Amgis

FIXED IND 1.5MH 620MA 1 OHM TH

0

SH50T-2.0-150

SH50T-2.0-150

Amgis

FIXED IND 150UH 2A 100 MOHM TH

0

SH50S-0.9-330

SH50S-0.9-330

Amgis

FIXED IND 330UH 900MA 740 MOHM

0

SWV-0.9-330

SWV-0.9-330

Amgis

FIXED IND 330UH 900MA 740 MOHM

0

SH50V-0.85-680

SH50V-0.85-680

Amgis

FIXED IND 680UH 850MA 1.25 OHM

0

SWS-0.83-248

SWS-0.83-248

Amgis

FIXED IND 248UH 830MA 600 MOHM

0

SWF-1.4-220

SWF-1.4-220

Amgis

FIXED IND 220UH 1.4A 380 MOHM TH

0

SWT-0.82-78

SWT-0.82-78

Amgis

FIXED IND 78UH 820MA 300 MOHM TH

0

SWS-3.00-17

SWS-3.00-17

Amgis

FIXED IND 17UH 3A 50 MOHM SMD

0

SWT-1.4-220

SWT-1.4-220

Amgis

FIXED IND 220UH 1.4A 380 MOHM TH

0

SWT-0.68-377

SWT-0.68-377

Amgis

FIXED IND 377UH 680MA 1 OHM TH

0

SWT-0.36-375

SWT-0.36-375

Amgis

FIXED IND 375UH 360MA 1.3 OHM TH

0

SWC-1.50-250

SWC-1.50-250

Amgis

FIXED IND 250UH 1.5A 230 MOHM TH

0

SWS-3.00-38

SWS-3.00-38

Amgis

FIXED IND 38UH 3A 50 MOHM SMD

0

SWC-1.81-168

SWC-1.81-168

Amgis

FIXED IND 168UH 1.81A 180 MOHM

0

SWS-1.20-38

SWS-1.20-38

Amgis

FIXED IND 38UH 1.2A 100 MOHM SMD

0

SH150S-1.81-18

SH150S-1.81-18

Amgis

FIXED IND 18UH 1.81A 60 MOHM SMD

0

Fixed Inductors

1. Overview

Fixed inductors are passive electronic components designed to store energy in magnetic fields when electrical current flows through them. Unlike variable inductors, their inductance values remain constant during operation. These components play critical roles in filtering, signal processing, energy storage, and electromagnetic interference (EMI) suppression across modern electronics, including power supplies, communication systems, and automotive electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Wirewound InductorsHigh precision, high current handling, low resistancePower supplies, DC-DC converters
Chip InductorsCompact SMD package, stable performance at high frequenciesMobile devices, RF circuits
Ferrite Bead InductorsEffective high-frequency noise suppressionEMI filtering in digital circuits
Thin-Film InductorsUltra-compact, high Q-factor, tight tolerance5G communication modules, IoT devices

3. Structure and Composition

Typical fixed inductors consist of:

  • Magnetic Core: Made from ferrite, powdered iron, or composite materials to concentrate magnetic flux
  • Coil Structure: Copper wire wound around the core (enamelled or silver-plated)
  • Encapsulation: Molded resin or ceramic coating for mechanical protection and insulation
  • Terminations: Solder-coated ends for PCB mounting (for SMD types) or leaded connections

4. Key Technical Specifications

ParameterDescriptionImportance
Inductance (L)Measured in henrys (H), determines energy storage capacityDefines filtering/energy storage performance
Rated Current (Irated)Maximum DC current before saturationPrevents core saturation and failure
DC Resistance (DCR)Resistance of coil windingsAffects efficiency and thermal performance
Self-Resonant Frequency (SRF)Frequency where inductor behaves as capacitorLimits effective operating frequency range
Q FactorQuality factor indicating efficiencyHigher Q = lower energy losses

5. Application Fields

  • Consumer Electronics: Smartphones, laptops, LED drivers
  • Industrial Equipment: Motor drives, power inverters
  • Automotive Systems: ECU modules, EV battery management
  • Telecom Infrastructure: Base station filters, optical transceivers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
MurataLQH3NPN100M10 H, 1.2A, 1.8 1.4mm chip inductor
TDKMLZ2012A100T100MHz SRF, 1.0 1.25mm for RF circuits
VishayIHLP2525CZER1R0M1 H, 12A, composite construction
Coilcraft0402DC-103J10 H, 5% tolerance, ultra-low profile

7. Selection Guidelines

Key considerations during selection:

  • Calculate required inductance based on switching frequency and ripple current
  • Verify rated current exceeds maximum operating current by 20-30%
  • Select SRF higher than circuit operating frequency
  • Consider package size vs. thermal dissipation requirements
  • For EMI suppression: Choose ferrite beads with impedance curves matching target frequencies

8. Industry Trends

Current development trends include:

  • Miniaturization: Sub-0.5mm size inductors for wearable devices
  • High-Frequency Operation: Components supporting >10GHz 5G applications
  • Integrated Solutions: Combined inductor-filter modules
  • Material Innovation: Nanocrystalline cores for higher saturation flux
  • Automotive Focus: AEC-Q qualified parts for EV/HEV systems
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