HKQ0603U2N7C-T Allicdata Electronics
Allicdata Part #:

HKQ0603U2N7C-T-ND

Manufacturer Part#:

HKQ0603U2N7C-T

Price: $ 0.01
Product Category:

Inductors, Coils, Chokes

Manufacturer: Taiyo Yuden
Short Description: FIXED IND 2.7NH 400MA 320 MOHM
More Detail: 2.7nH Unshielded Multilayer Inductor 400mA 320 mOh...
DataSheet: HKQ0603U2N7C-T datasheetHKQ0603U2N7C-T Datasheet/PDF
Quantity: 1000
15000 +: $ 0.00964
Stock 1000Can Ship Immediately
$ 0.01
Specifications
DC Resistance (DCR): 320 mOhm Max
Height - Seated (Max): 0.013" (0.33mm)
Size / Dimension: 0.024" L x 0.012" W (0.60mm x 0.30mm)
Supplier Device Package: 0201 (0603 Metric)
Package / Case: 0201 (0603 Metric)
Mounting Type: Surface Mount
Inductance Frequency - Test: 500MHz
Operating Temperature: -55°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 10GHz
Q @ Freq: 14 @ 500MHz
Series: HK, Q Type
Shielding: Unshielded
Current - Saturation: --
Current Rating: 400mA
Tolerance: ±0.2nH
Inductance: 2.7nH
Material - Core: Ceramic
Type: Multilayer
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Fixed Inductors are electronic components that are designed to store energy in the form of a magnetic field when an electric current is applied. The HKQ0603U2N7C-T is a fixed inductor that is often used in automotive, medical, and industrial applications. It is designed to operate with a current dissipation value of 3.3 VDC and a peak voltage of 6.5 VDC.

The purpose of a fixed inductor is to allow alternating current to pass through a coil without creating a short circuit, which would result in an overload and potentially damaging the circuit. The HKQ0603U2N7C-T operates via a construction that is composed of a ferrite core with two winding layers that allows for a greater current throughput than single-winding cores. In addition, the core material is designed to offer superior stability over heat and time while also ensuring the lowest resistance in the coil to maximize its efficiency.

The HKQ0603U2N7C-T is often used for power switching, general purpose, filtering, and energy storage applications. Power switching applications involve controlling the flow of electricity to a load in order to achieve a desired outcome such as controlling the speed of a motor or controlling the operation of a computer. This inductor provides a higher current rating, greater efficiency, and better reliability compared to other inductors. For general purpose applications, the HKQ0603U2N7C-T provides a low insertion loss for better attenuation of noise with high-frequency circuits. The greater stability of the core material allows for greater precision in tuning for filtering applications as well. For energy storage applications, the inductor provides a large amount of energy storage due to its high inductance and core material.

The working principle of the HKQ0603U2N7C-T is based on Faraday’s Law of Induction. When an electric current is applied to the coil, it creates a magnetic field around the wire. This magnetic field is what stores energy and is responsible for creating an induced current on the other side of the coil. The size of the induced current depends on the strength of the magnetic field, and the size of the induced current determines how much energy is stored. By adjusting the number of turns and the core material, the HKQ0603U2N7C-T is able to achieve a higher inductance value and allow for a larger induced current to flow.

In conclusion, the HKQ0603U2N7C-T is a fixed inductor that is designed to provide superior stability and efficiency for automotive, medical, and industrial applications. Its construction is designed to allow for a greater current throughput with a low resistance core material and two winding layers. The inductor is often used for power switching, general purpose, filtering, and energy storage applications as it provides a higher current rating, greater efficiency, and better reliability compared to other inductors. The working principle is based on Faraday’s Law of Induction and the size of the induced current is determined by the strength of the magnetic field created by the coil when an electric current is applied.

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

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