LQP03TG5N6H02D Allicdata Electronics
Allicdata Part #:

LQP03TG5N6H02D-ND

Manufacturer Part#:

LQP03TG5N6H02D

Price: $ 0.01
Product Category:

Inductors, Coils, Chokes

Manufacturer: Murata Electronics North America
Short Description: FIXED IND 5.6NH 250MA 880 MOHM
More Detail: 5.6nH Unshielded Thin Film Inductor 250mA 880 mOhm...
DataSheet: LQP03TG5N6H02D datasheetLQP03TG5N6H02D Datasheet/PDF
Quantity: 1000
15000 +: $ 0.00621
Stock 1000Can Ship Immediately
$ 0.01
Specifications
Mounting Type: Surface Mount
Package / Case: 0201 (0603 Metric)
Supplier Device Package: 0201 (0603 Metric)
Size / Dimension: 0.024" L x 0.012" W (0.60mm x 0.30mm)
Height - Seated (Max): 0.013" (0.33mm)
Series: LQP03
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: Thin Film
Material - Core: Non-Magnetic
Inductance: 5.6nH
Tolerance: ±3%
Current Rating: 250mA
Current - Saturation: --
Shielding: Unshielded
DC Resistance (DCR): 880 mOhm Max
Q @ Freq: 12 @ 500MHz
Frequency - Self Resonant: 6GHz
Ratings: --
Operating Temperature: -55°C ~ 125°C
Inductance Frequency - Test: 500MHz
Description

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Fixed inductors are passive electrical components used in various electronic circuits for a variety of purposes. The LQP03TG5N6H02D is a common type of fixed inductor manufactured by Murata and commonly used in consumer electronics, medical devices, and other industrial applications. This article will discuss the application fields and working principle of the LQP03TG5N6H02D.

The LQP03TG5N6H02D is designed for three main applications: high frequency/RF, low frequency/DC, and general purpose. In the high frequency/RF application, the LQP03TG5N6H02D is typically used in the impedance matching networks of radios, televisions, and other high frequency communication devices, where it functions to reduce reflected power and enable more efficient transfer of power to the load. In the low frequency/DC application, the inductor is mainly used to smooth the direct current (DC) voltage, as well as for filtering, choke, and high-impedance functions. In general purpose, the inductor is commonly used in power supplies, audio amplifiers, and other circuits to reduce current and voltage ripple, increase power factor, and improve circuit stability.

The LQP03TG5N6H02D is a common blocked-style inductor, which means it is composed of an inductor core and a winding that forms a loop, which is then blocked into a compact form. The core is usually made of ferrite and other conductive materials like copper or nickel, and it is what gives the inductor its desirable magnetic properties. The winding is composed of insulated copper wire, and it is what gives the inductor its inductance.

The current through the wire loop of the LQP03TG5N6H02D creates a magnetic field, which induces an electromotive force (EMF) in the loop, which is then opposed by the current in the loop, resulting in an inductance (resistance to changes in current). This inductance limits the current flowing through the inductor, and can be used to limit or regulate the voltage and current in a circuit, resulting in increased efficiency and improved circuit performance.

The LQP03TG5N6H02D has superior performance over other inductors in its class due to its low DC resistance, low profile, and high Q factor. Its low DC resistance is beneficial as it allows more current to pass through the inductor without significant energy losses. Its low profile makes it ideal for high density design, as it occupies minimal space in the circuit board. The high Q factor makes it more efficient and helps reduce the amount of power that is dissipated in the form of heat in the inductor.

In conclusion, the LQP03TG5N6H02D is a common fixed inductor with a variety of applications in consumer electronics, medical devices, and other industrial applications. It has a low DC resistance, low profile, and high Q factor, which improve its efficiency and performance when compared to other inductors in its class. Its magnetic properties, winding type, and the current through the loop give it an inductance that can be used to limit or regulate voltage and current in the circuit, providing increased efficiency and improved circuit performance.

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

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