TYS4012330M-10 Allicdata Electronics

TYS4012330M-10 Inductors, Coils, Chokes

Allicdata Part #:

240-2662-2-ND

Manufacturer Part#:

TYS4012330M-10

Price: $ 0.13
Product Category:

Inductors, Coils, Chokes

Manufacturer: Laird-Signal Integrity Products
Short Description: FIXED IND 33UH 420MA 810 MOHM
More Detail: 33µH Shielded Inductor 420mA 810 mOhm Max Nonstan...
DataSheet: TYS4012330M-10 datasheetTYS4012330M-10 Datasheet/PDF
Quantity: 1000
9000 +: $ 0.11775
Stock 1000Can Ship Immediately
$ 0.13
Specifications
DC Resistance (DCR): 810 mOhm Max
Height - Seated (Max): 0.047" (1.20mm)
Size / Dimension: 0.157" L x 0.157" W (4.00mm x 4.00mm)
Supplier Device Package: --
Package / Case: Nonstandard
Mounting Type: Surface Mount
Inductance Frequency - Test: 100kHz
Operating Temperature: -40°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 17MHz
Q @ Freq: --
Series: TYS4012
Shielding: Shielded
Current - Saturation: 420mA
Current Rating: 420mA
Tolerance: ±20%
Inductance: 33µH
Material - Core: --
Type: --
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Inductors are electrical components that store energy by creating a magnetic field when current passes through a wire that has successive coils in layers. The number of coils used depends on the inductance of the inductor. Fixed inductors, or non-adjustable inductors, are those whose inductance cannot be changed. They typically consist of an air core, a ferrite core, an inductance wire wound around the core, and a high dielectric strength casing and insulation. The TYS4012330M-10 is a fixed inductor that features high inductance with low DC resistance, making it ideal for use in power supply circuits.

The TYS4012330M-10 is a high-power fixed inductor featuring a low profile of only 4.5mm, making it suitable for use in limited-space applications, such as personal and handheld devices. It is composed of a ferrite core, the inductance wire, and a silver-coated shell. The operating temperature range of this fixed inductor is from -40°C to +110°C, ensuring its reliability in applications. Additionally, the TYS4012330M-10’s DC resistance is low, which results in low power loss in the circuit.

The TYS4012330M-10 is commonly used in power supply applications, such as laptop notebooks, handheld gaming devices, desktop computers, power supply circuits, and digital cameras. Its low profile design makes it suitable for use in areas with limited space as well. Additionally, its high inductance and low DC resistance make it perfect for a variety of applications that require minimal power loss. The high dielectric insulation characteristics of the TYS4012330M-10 ensure it is resistant to short circuits and power surges, which are common problems in power supply applications. These characteristics make it an ideal fixed inductor for power supply circuits.

The working principle of the TYS4012330M-10 is based on the principle of electromagnetic induction. When an electric current passes through the inductor, it generates a magnetic field. This magnetic field will induce an electric current in a nearby circuit. This electric current will also induce a magnetic field in the wire, thus forming a circulating loop of energy. As the current passes through the inductor, the wires will get magnetized and the magnetic field generated will increase. The magnetic field will then induce an electric current in the other circuit, thus creating a loop of energy. This loop of energy will eventually dissipate, thus completing the process of electromagnetic induction.

In summary, the TYS4012330M-10 is a high-power fixed inductor featuring a low profile of only 4.5mm, making it suitable for use in limited-space applications. Its high inductance and low DC resistance make it ideal for a variety of power supply circuits. The working principle of the TYS4012330M-10 is based on the principle of electromagnetic induction, wherein the current passing through the inductor generates a magnetic field that induces an electric current in the surrounding circuit. This process forms a loop of energy that dissipates over time, thus completing the process of electromagnetic induction.

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

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