Inductor Kits

Image Part Number Description / PDF Quantity Rfq
EKDMPIFERM-V01-KIT

EKDMPIFERM-V01-KIT

TOKO / Murata

KIT WIREWOUND SHIELDED FERRITE P

1

EKDMPIFERL-V01-KIT

EKDMPIFERL-V01-KIT

TOKO / Murata

KIT WIREWOUND POWDERED IRON FERR

5

EKDMGN011-KIT

EKDMGN011-KIT

TOKO / Murata

METAL ALLOY POWER INDUCTORS FOR

2

EKDMPIAUTH-V01-KIT

EKDMPIAUTH-V01-KIT

TOKO / Murata

KIT AEC-Q200 155C SHIELDED POWDE

6

EKDMGN09-KIT

EKDMGN09-KIT

TOKO / Murata

HIGH-Q CHIP INDUCTORS FOR RF CIR

2

EKDMGN010-KIT

EKDMGN010-KIT

TOKO / Murata

HIGH-Q CHIP INDUCTORS FOR RF CIR

7

EKDMPIAUTL-V01-KIT

EKDMPIAUTL-V01-KIT

TOKO / Murata

KIT AEC-Q200 125C SHIELDED POWDE

2

EKDMPIMTLL-V01-KIT

EKDMPIMTLL-V01-KIT

TOKO / Murata

KIT SHIELDED METAL ALLOY POWER

8

EKDMPIMTLM-V01-KIT

EKDMPIMTLM-V01-KIT

TOKO / Murata

KIT WIREWOUND SHIELDED METAL ALL

6

EKDMAT02-KIT

EKDMAT02-KIT

TOKO / Murata

POWER INDUCTORS FOR AUTOMOTIVE

2

EKDMPINS-V01-KIT

EKDMPINS-V01-KIT

TOKO / Murata

KIT POWER INDUCTOR(0603-1008)

0

EKDMRFIM-V01-KIT

EKDMRFIM-V01-KIT

TOKO / Murata

KIT RF INDUCTOR(0603-1008)

0

EKDMPIMTLS-V01-KIT

EKDMPIMTLS-V01-KIT

TOKO / Murata

KIT SHIELDED METAL ALLOY POWER

0

EKDMPIFERS-V01-KIT

EKDMPIFERS-V01-KIT

TOKO / Murata

KIT WIREWOUND SHIELDED FERRITE P

0

EKDMGN05-KIT

EKDMGN05-KIT

TOKO / Murata

KIT RF INDUCTOR 0201-0402

0

EKDMRFIS-V01-KIT

EKDMRFIS-V01-KIT

TOKO / Murata

KIT RF INDUCTOR(0201-0402)

0

EKDMGN06-KIT

EKDMGN06-KIT

TOKO / Murata

KIT RF INDUCTOR 0603-1008

0

EKDMGN08-KIT

EKDMGN08-KIT

TOKO / Murata

KIT POWER INDUCTOR 1212-2020

0

EKDMGN07-KIT

EKDMGN07-KIT

TOKO / Murata

KIT POWER INDUCTOR 0603-1008

0

EKDMPINM-V01-KIT

EKDMPINM-V01-KIT

TOKO / Murata

KIT POWER INDUCTOR(1212-2020)

0

Inductor Kits

1. Overview

KitsInductor Kits are modular assemblies containing inductors with varying specifications, designed for rapid prototyping, educational purposes, and industrial applications. Inductors are passive electronic components that store energy in magnetic fields and resist current changes. They are critical in power management, signal filtering, and electromagnetic interference (EMI) suppression. Modern electronics rely on inductors for efficient voltage regulation in devices ranging from smartphones to industrial machinery.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Fixed InductorsStable inductance value, low tolerancePower supplies, DC-DC converters
Variable InductorsAdjustable inductance via movable coreTunable RF circuits, radio frequency matching
Power InductorsHigh current handling, low DCRSwitching regulators, motor drives
RF InductorsHigh Q-factor, low parasitic capacitance5G base stations, wireless charging systems
Common Mode ChokesDifferential-mode noise suppressionNetwork interfaces, power line filters

3. Structure & Composition

Typical KitsInductor Kits consist of: - Coil Windings: Copper or aluminum wire wound around a core - Magnetic Core: Ferrite, powdered iron, or toroidal materials - Encapsulation: Molded plastic or epoxy coating - Termination: SMD pads or through-hole leads - Identification Markings: Inductance value codes and ratings

4. Key Technical Specifications

ParameterDescriptionImportance
Inductance (L)Ranges from nH to mHDetermines energy storage capacity
Current Rating (IDC)100mA-20APrevents saturation in power circuits
DC Resistance (DCR)10m -5 Affects efficiency and thermal performance
Self-Resonant Frequency (SRF)1MHz-200MHzDefines operational frequency limits
Q Factor20-300Indicates quality of energy storage at RF

5. Application Fields

  • Consumer Electronics: Mobile phone charging circuits, laptop VRMs
  • Industrial: Variable frequency drives, PLC power modules
  • Automotive: ECU voltage regulators, EV battery management
  • Telecommunications: 5G NR filters, optical transceiver bias circuits

6. Leading Manufacturers & Products

ManufacturerKey ProductFeatures
TDK CorporationCDRH3D281.5 H power inductor, 8.1A rating
Coilcraft0402CS Series100MHz SRF, 0.1 H-10 H range
Vishay DaleIHLP-2525CZCompliant with AEC-Q200 automotive standard

7. Selection Recommendations

Key selection criteria include: - Matching inductance value to switching frequency (e.g., 10 H for 100kHz buck converters) - Current rating exceeding peak circuit requirements by 20% - Operating temperature range (-55 C to +155 C for industrial) - Package size constraints (0402 to 1812 SMD for portables) - Cost optimization for mass production

Example: For a 2A smartphone PMIC, select 2.2 H 0603 inductor with <200m DCR.

8. Industry Trends

Future developments include: - Miniaturization: 0201-inch SMD inductors for wearable devices - High-frequency operation: SRF >10GHz for mmWave applications - Integrated solutions: Inductor-IC co-packaging for VRMs - Advanced materials: Amorphous nanocrystalline cores for EVs - Environmental compliance: Halogen-free encapsulation materials

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