AIMC-0603-68NJ-T Allicdata Electronics
Allicdata Part #:

535-11545-2-ND

Manufacturer Part#:

AIMC-0603-68NJ-T

Price: $ 0.02
Product Category:

Inductors, Coils, Chokes

Manufacturer: Abracon LLC
Short Description: FIXED IND 68NH 300MA 850 MOHM
More Detail: 68nH Unshielded Multilayer Inductor 300mA 850 mOhm...
DataSheet: AIMC-0603-68NJ-T datasheetAIMC-0603-68NJ-T Datasheet/PDF
Quantity: 8000
4000 +: $ 0.01928
8000 +: $ 0.01821
12000 +: $ 0.01714
28000 +: $ 0.01660
100000 +: $ 0.01553
Stock 8000Can Ship Immediately
$ 0.02
Specifications
DC Resistance (DCR): 850 mOhm Max
Height - Seated (Max): 0.037" (0.95mm)
Size / Dimension: 0.063" L x 0.031" W (1.60mm x 0.80mm)
Supplier Device Package: 0603 (1608 Metric)
Package / Case: 0603 (1608 Metric)
Mounting Type: Surface Mount
Inductance Frequency - Test: 100MHz
Operating Temperature: -55°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 700MHz
Q @ Freq: 12 @ 100MHz
Series: AIMC-0603
Shielding: Unshielded
Current - Saturation: --
Current Rating: 300mA
Tolerance: ±5%
Inductance: 68nH
Material - Core: Ceramic
Type: Multilayer
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Introduction

Fixed inductors—also known as inductors, coils, or chokes—are passive electronic components used to store energy in an electromagnetic field and, in doing so, create a steady magnetic flux or flux flow in their windings. The AIMC-0603-68NJ-T is a type of fixed inductor that is characterized by its high-quality performance, small physical size, and competitive cost. This article aims to discuss the application field and working principle of the AIMC-0603-68NJ-T.

Applications

The AIMC-0603-68NJ-T is ideally suited for use in a variety of electronics projects, particularly those that require greater power carrying capabilities than can typically be achieved with general-purpose inductors. They are typically used in differential signal lines, power supplies, filtering circuits, motor control circuits, and decoupling applications. In addition, they are often used in resonant applications such as switching power converters and oscillator circuits.

Working Principle

A fixed inductor, such as the AIMC-0603-68NJ-T, contains a coil of wire wound around a core material, usually iron, ferrite, or air. When electric current passes through a fixed inductor, it induces a magnetic field around the coil and this magnetic field, which is proportional to the amount of current passing through the coil, stores energy. When the current passing through the inductor stops, however, the magnetic field collapses and re-induces a voltage in the wire, resulting in a magnetic field in the opposite direction. This phenomenon is known as electromagnetic induction, and it is the basis of the working principle of the fixed inductor.The primary purpose of the fixed inductor is to filter out changes in frequency in the circuit, either by adding impedance to low-frequency signals or by limiting the flow of high-frequency signals. A fixed inductor has many advantages over other types of inductors, such as increased power carrying capacity, improved thermal stability, and better overall frequency response.

Design Considerations

When designing circuits with the AIMC-0603-68NJ-T they should be considered for their primary purpose; to provide inductive reactance in an AC circuit. Designers should consider the basic design parameters of the inductor: inductance, Q-factor, current rating, temperature rating, and high frequency saturation.It is important to note that the AIMC-0603-68NJ-T variable inductors have a voltage rating and a temperature rating, which must be observed in order for the device to perform within its specifications. In addition, the tight tolerances on the number of turns on the inductor coil must be maintained in order to get the desired range of inductance (during manufacturing). Finally, care should be taken to avoid high di/dt and high frequency signals which may cause excessive core losses leading to inductor failure.

Conclusion

The AIMC-0603-68NJ-T is a fixed inductor and it can be used in a variety of electronics applications, particularly those that require higher power ratings than can be achieved with general-purpose inductors. It works by inducing a magnetic field around the coil when a current passes through it and it stores energy in the form of a magnetic field. When the current stops, the magnetic field collapses and re-induces a voltage in the wire, resulting in a magnetic field in the opposite direction. Care must be taken to ensure that the tight tolerances of the inductor coil are maintained and that high di/dt and high frequency signals are avoided.

The specific data is subject to PDF, and the above content is for reference

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