AS33B2032 Allicdata Electronics
Allicdata Part #:

AS33B2032-ND

Manufacturer Part#:

AS33B2032

Price: $ 14.41
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Manufacturer: Leader Tech Inc.
Short Description: FERRITE 27OHM HINGED 10.80MM
More Detail: Hinged (Snap On) Free Hanging Ferrite Core 27 Ohm ...
DataSheet: AS33B2032 datasheetAS33B2032 Datasheet/PDF
Quantity: 1000
40 +: $ 13.10620
Stock 1000Can Ship Immediately
$ 14.41
Specifications
Series: --
Part Status: Active
Type: Flat
Design: Hinged (Snap On)
Impedance @ Frequency: 27 Ohm @ 30MHz
Material: 33
Inner Dimension: 0.425" Dia (10.80mm)
Outer Dimension: 1.449" W x 1.154" H (36.80mm x 29.30mm)
Ratings: --
Mounting Type: Free Hanging
Length: 1.449" (36.80mm)
Description

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Ferrite Cores - Cables and Wiring has an important application in today\'s electronics, especially in the field of AS33B2032. AS33B2032 is an ultra-small ferrite core which provides efficient signal transmission across a wide range of applications, ranging from automotive equipment and telecommunication systems to high-end computer systems and gaming consoles. It is capable of handling very large currents and also has a dielectric strength of up to 100 volts per mm. Its small size makes it ideal for use in limited space and it can be used in tight spaces, as it can be flexible yet still durable enough to withstand vibrations and harsh temperatures.

The working principle of AS33B2032 is similar to the other types of ferrite core. Generally, it consists of two concentric cylinders made of ferrite material. One of the cylinders is the winding core and the other is the yoke core. The yoke core is made from a special material called yoke material, which is designed to maximize the inductance and impedance of the system. The winding core are wound on the yoke core and this winding creates a magnetic field. This magnetic field is then sent through the yoke material to the winding core, enabling the signal transmission.

For normal signal transmission across the AS33B2032, there are three methods used. They are resistance, capacitance, or inductance. In resistance mode, the core material is connected in series with a resistor. This helps to reduce the signal loss and increases the accuracy of the signal. In capacitance mode, the cores are connected in parallel with a capacitor, which enhances the signal transmission and reduces signal noise. Finally, in inductance mode, the cores are connected to form a loop inductance, which is capable of suppressing high frequency signals and increasing low frequency signal transmission.

In addition to normal signal transmission, AS33B2032 can also be used for RF energy harvesting, which involves using the ferrite cores to extract tiny amounts of power from the received RF energy. This can be used for powering low-power electronic components and devices, such as sensors and wearables. The ferrite cores can also be used for high frequency filtering and modulation. By adjusting the parameters of the system, the cores can be used to improve the signal transmission in applications such as television receivers and cellular phones.

Ferrite cores such as AS33B2032 can also be used for EMI shielding. By adding a ferrite core to the path of an electromagnetic wave, the interfering waves can be minimized and the desired signal can be transmitted with maximum efficiency. This makes it possible to reduce interference in areas such as airplanes, hospitals, and factories.

In summary, the AS33B2032 is an ideal choice for efficient signal transmission and energy harvesting in a wide range of applications. It is capable of handling very large currents with a dielectric strength of up to 100 volts per mm. Its small size makes it ideal for use in limited space and it can be used for RF filtering and modulation. Moreover, it can also provide EMI shielding, making it possible to reduce interference in critical areas.

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

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