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9406-06 9406-06 28763 API Delevan Inc. FIXED IND 330NH 1.9A 60 MOHM TH Radial, Horizontal, 4 Leads
9406R-40 9406R-40 28530 API Delevan Inc. FIXED IND 220UH 149MA 9.7 OHM TH Radial, Horizontal, 4 Leads
9406R-52 9406R-52 39341 API Delevan Inc. FIXED IND 2.2MH 75.5MA 38 OHM TH Radial, Horizontal, 4 Leads
9405-12 9405-12 6586 API Delevan Inc. FIXED IND 1UH 600MA 600 MOHM TH Radial, Vertical Cylinder
9405-04 9405-04 8698 API Delevan Inc. FIXED IND 220NH 1.97A 56 MOHM TH Radial, Vertical Cylinder
9406-30 9406-30 9169 API Delevan Inc. FIXED IND 33UH 269MA 3 OHM TH Radial, Horizontal, 4 Leads
9406R-34 9406R-34 38418 API Delevan Inc. FIXED IND 68UH 223MA 4.35 OHM TH Radial, Horizontal, 4 Leads
9406R-10 9406R-10 8897 API Delevan Inc. FIXED IND 680NH 1.72A 73 MOHM TH Radial, Horizontal, 4 Leads
9406-36 9406-36 9498 API Delevan Inc. FIXED IND 100UH 198MA 5.5 OHM TH Radial, Horizontal, 4 Leads
9406R-50 9406R-50 35110 API Delevan Inc. FIXED IND 1.5MH 85MA 30 OHM TH Radial, Horizontal, 4 Leads
9405-02 9405-02 31289 API Delevan Inc. FIXED IND 150NH 2.49A 35 MOHM TH Radial, Vertical Cylinder
9406R-16 9406R-16 26121 API Delevan Inc. FIXED IND 2.2UH 550MA 720MOHM TH Radial, Horizontal, 4 Leads
9405-16 9405-16 28333 API Delevan Inc. FIXED IND 2.2UH 550MA 720MOHM TH Radial, Vertical Cylinder
9406-16 9406-16 13625 API Delevan Inc. FIXED IND 2.2UH 550MA 720MOHM TH Radial, Horizontal, 4 Leads
9406R-54 9406R-54 36316 API Delevan Inc. FIXED IND 3.3MH 69.5MA 45 OHM TH Radial, Horizontal, 4 Leads
9406R-44 9406R-44 9286 API Delevan Inc. FIXED IND 470UH 120MA 15 OHM TH Radial, Horizontal, 4 Leads
9406R-46 9406R-46 26470 API Delevan Inc. FIXED IND 680UH 104MA 20 OHM TH Radial, Horizontal, 4 Leads
9406R-60 9406R-60 35007 API Delevan Inc. FIXED IND 10MH 43.5MA 115 OHM TH Radial, Horizontal, 4 Leads
9406R0-2 9406R0-2 25108 API Delevan Inc. FIXED IND 150NH 2.49A 35 MOHM TH Radial, Horizontal, 4 Leads
9406R-38 9406R-38 22208 API Delevan Inc. FIXED IND 150UH 153MA 9.2 OHM TH Radial, Horizontal, 4 Leads

Adjustable Inductors

An adjustable inductor is a passive component that can adjust the inductance value mechanically or electrically. Its core structure usually includes magnetic materials (such as ferrite cores) and movable adjustment devices. By changing the position of the core or the spacing between the coils, the inductance value can be dynamically adjusted. It is widely used in high-frequency circuits, power systems, and electronic equipment.

 

1. How do Adjustable Inductors Work?‌

1) Mechanically Adjustable Type

A ferrite core with a threaded structure is usually used. The magnetic resistance of the magnetic circuit is changed by rotating the core position inside the transformer, thereby achieving continuous adjustment of the inductance value. For example, the oscillation coil of a semiconductor radio adjusts the coupling distance between the coil and the core by rotating the magnetic cap.

 

2) ‌Magnetic Saturation Adjustment Type‌

The inductance is adjusted by changing the magnetic saturation state of the core material. For example, a linear coil uses the relative position of the permanent magnet and the coil to adjust the magnetic saturation characteristics to achieve nonlinear inductance compensation.

 

3) ‌Filling Medium Adjustment Type‌

Some designs use synthetic resin and other materials as core carriers, combined with surface roughening treatment to enhance mechanical fixing performance and ensure adjustment stability.

 

2. What are Adjustable Inductors Used for?

High-Frequency Circuit‌: used in the local oscillator circuit of radio equipment, frequency tuning is achieved by adjusting the inductance value and capacitance in real-time.

 

‌Power System‌: used as an inductor reactor to dynamically adjust the reactive power of the power grid and suppress harmonic interference.

‌Display Device‌: in the line scanning circuit of traditional TV sets, the linear distortion of the image is compensated by adjusting the magnetic core.

‌Resonant Circuit‌: combined with capacitors to form an LC filter circuit, filter specific frequency signals, and suppress noise.

 

3. What are the Technical Characteristics of Adjustable Inductors?

‌Adjustment Range‌: depends on the magnetic core material (such as ferrite and amorphous alloy) and mechanical structure design, some models can achieve several times the inductance change.

‌Frequency Response‌: in high-frequency applications, the influence of core loss and distributed capacitance on Q value needs to be considered, and low-loss magnetic core materials are usually selected.

‌Reliability Design‌: the precision adjustment mechanism needs to have dustproof and vibration-resistant characteristics, and industrial-grade products often use fully sealed packaging.

 

4. Selection Points for Adjustable Inductors

‌Current Capacity‌: the saturation current index needs to be evaluated to avoid a sudden drop in inductance due to core saturation.

‌Temperature Stability‌: The temperature coefficient of ferrite material directly affects the long-term stability of the inductance value.

‌Packaging Form‌: It is divided into plug-in type, SMD type and modular packaging to meet the needs of different installation scenarios.

 

5. Adjustable Inductors FAQs

1) ‌What is the difference between adjustable inductors and fixed inductors? ‌

‌Flexibility‌: Adjustable inductors support real-time adjustment to meet dynamic circuit requirements, while fixed inductance values are statically set;

‌Structural Complexity‌: Adjustable devices contain additional adjustment components and are usually more expensive.

 

2) ‌What issues should be paid attention to when using adjustable inductors? ‌

‌Mechanical Stability‌: Frequent adjustment may cause core wear or poor contact;

‌Temperature Influence‌: High temperature may change the magnetic permeability of the core material, and wide temperature specifications need to be selected;

‌Installation Method‌: Avoid external force vibration to cause inductance value drift.