Adjustable Inductors

Image Part Number Description / PDF Quantity Rfq
VTC07E130TVPC

VTC07E130TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC05E088TVPC

VTC05E088TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC06E110TVPC

VTC06E110TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC09E160TRSM

VTC09E160TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC02E030TVSM

VTC02E030TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC02E030TVPC

VTC02E030TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC04E065TRSM

VTC04E065TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC05E088TVSM

VTC05E088TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC19E375TRSM

VTC19E375TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC04E065TVSM

VTC04E065TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC07E130TRSM

VTC07E130TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC05E088TRSM

VTC05E088TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC07E130TVSM

VTC07E130TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC06E110TRSM

VTC06E110TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC13E250TRSM

VTC13E250TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC03E048TVPC

VTC03E048TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC03E048TVSM

VTC03E048TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC04E065TVPC

VTC04E065TVPC

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC06E110TVSM

VTC06E110TVSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

VTC02E030TRSM

VTC02E030TRSM

Voltronics (Knowles)

ADJUSTABLE INDUCTOR

0

Adjustable Inductors

1. Overview

Adjustable inductors are electromagnetic components with variable inductance values, enabling precise control of current and voltage in electronic circuits. Unlike fixed inductors, these components incorporate mechanical or electronic adjustment mechanisms to modify their magnetic properties. They play critical roles in RF tuning circuits, power supply regulation, and signal processing systems, offering flexibility in modern electronics such as communication devices, automotive electronics, and industrial control systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Variable InductorsMechanically adjustable magnetic coresRadio frequency tuning circuits
Digitally Controlled InductorsProgrammable inductance via IC interfacesSmart power supplies
Magnetically Adjustable InductorsExternal magnetic field controlIndustrial motor drives
Step-Tunable InductorsDiscrete inductance level selectionTelecom infrastructure equipment

3. Structure and Components

Typical adjustable inductors consist of: - Bobbin-wound copper coils with enamel insulation - Adjustable magnetic cores (ferrite, powdered iron, or amorphous alloys) - Mechanical adjustment mechanisms (screw actuators or rotary knobs) - Shielded enclosures for EMI reduction - Termination options (SMD pads or through-hole leads) The core movement mechanism enables inductance variation by altering magnetic flux paths, with precision tolerances down to 1%.

4. Key Technical Parameters

ParameterDescriptionImportance
Inductance RangeAdjustable value span (e.g., 1-100 H)Determines application flexibility
Q FactorQuality factor (50-300 typical range)Affects frequency selectivity
Rated CurrentMax DC/AC current capacityPrevents saturation failure
Temperature Stability 0.05%/ C typical driftEnsures performance consistency

5. Application Fields

Primary applications include: - Telecommunications: 5G base stations, software-defined radios - Automotive: EV charging systems, ADAS sensors - Industrial: Smart grid controllers, motor drives - Consumer Electronics: Wireless chargers, audio filters - Medical: MRI scanner gradient coils, implantable devices

6. Leading Manufacturers

ManufacturerProduct SeriesKey Features
CoilcraftX2XX Adjustable Inductors100 nH-10 H range, 18 GHz bandwidth
TDKEFM SeriesAutomotive-grade, AEC-Q200 compliant
Bourns434 SeriesPCB-mount, 1-100 MHz operation
API Delevan7000 SeriesHigh-precision ( 0.5%) military-grade

7. Selection Guidelines

Key considerations: - Required inductance range and adjustment resolution - Operating frequency vs. Q factor requirements - Current rating with safety derating margin - Environmental conditions (temperature, vibration) - Mounting compatibility (SMD vs. through-hole) Application Case: In RF filter design, select high-Q ( 150) inductors with sub-nH precision to meet 2.4 GHz ISM band requirements.

8. Industry Trends

Current development trends include: - Miniaturization through advanced magnetic materials - Integration with sensor networks for smart systems - Digital control interfaces (I2C/PWM compatibility) - Increased power density for EV applications - Enhanced temperature stability (-55 C to +155 C operation)

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