IMC0402ER68NJ01 Allicdata Electronics
Allicdata Part #:

IMC0402ER68NJ01-ND

Manufacturer Part#:

IMC0402ER68NJ01

Price: $ 0.11
Product Category:

Inductors, Coils, Chokes

Manufacturer: Vishay Dale
Short Description: FIXED IND 68NH 100MA 1.12 OHM
More Detail: 68nH Unshielded Wirewound Inductor 100mA 1.12 Ohm ...
DataSheet: IMC0402ER68NJ01 datasheetIMC0402ER68NJ01 Datasheet/PDF
Quantity: 1000
10000 +: $ 0.09374
30000 +: $ 0.09072
50000 +: $ 0.08770
Stock 1000Can Ship Immediately
$ 0.11
Specifications
DC Resistance (DCR): 1.12 Ohm Max
Height - Seated (Max): 0.024" (0.60mm)
Size / Dimension: 0.039" L x 0.022" W (1.00mm x 0.55mm)
Supplier Device Package: 0402 (1005 Metric)
Package / Case: 0402 (1005 Metric)
Mounting Type: Surface Mount
Inductance Frequency - Test: 200MHz
Operating Temperature: -40°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 1.62GHz
Q @ Freq: 22 @ 200MHz
Series: IMC-0402-01
Shielding: Unshielded
Current - Saturation: --
Current Rating: 100mA
Tolerance: ±5%
Inductance: 68nH
Material - Core: --
Type: Wirewound
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Fixed inductors are electrical components which are used for storing energy in the form of a magnetic field. The IMC0402ER68NJ01 is one type of fixed inductor, and it has several applications and working principles.

The IMC0402ER68NJ01 is a low-profile, high-current Inductors, with a DC current rating up to 2.50A. It is versatile and can be used in a wide variety of applications ranging from voltage step-up circuits in portable electronic devices to power management circuits in communications systems. It is especially suited for high current applications due to its highly efficient magnetic construction, and it can provide good transient performance with minimal ringing. It also has a low DC resistance, which helps to reduce power losses in the circuit.

One of the most common applications for the IMC0402ER68NJ01 is in voltage step-up circuits. Such circuits convert lower direct current (DC) voltage into higher alternating current (AC) voltage. This is achieved by using an inductor to store energy in the form of a magnetic field, which is then released in the form of an electrical current. This current can then be used to generate the higher voltage AC waveform.

The IMC0402ER68NJ01 operates by relying on Faraday\'s Law of Induction, which states that when a changing magnetic field is present in an inductor, it will generate an emf (electromotive force). The exact level of the emf generated depends on the rate of change of the magnetic field. The IMC0402ER68NJ01 is constructed with a core material which is designed to maintain a high rate of change in the magnetic field, thus generating a higher emf.

In addition to being used in voltage step-up circuits, the IMC0402ER68NJ01 can also be used in filtering applications. In this case, the inductor is used to filter out AC signals with frequency components which are too high or too low. This is achieved by using the inductor to reject these frequencies and allow only those signals within the required frequency range to pass through. This allows the signals to be more accurately represented.

The IMC0402ER68NJ01 is also well suited for use in Common-Mode (CM) Filtering, where the inductor is used to reduce the amount of CM noise experienced in an AC circuit. CM noise can interfere with the signal being transmitted and can cause errors in the data being transmitted, so reducing this noise is an important step. The IMC0402ER68NJ01 helps to do this by absorbing the energy from the noise signals, thereby eliminating them from the circuit.

Overall, the IMC0402ER68NJ01 is a versatile fixed inductor which has a wide range of applications. It is designed to provide excellent performance with minimal power losses, and it makes use of Faraday\'s Law of Induction to generate an emf for use in voltage step-up or filtering applications. It also helps to reduce the amount of CM noise interference in AC circuits, making it a valuable component in a variety of electrical systems.

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

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