BF1835-9 Allicdata Electronics
Allicdata Part #:

DN4712-ND

Manufacturer Part#:

BF1835-9

Price: $ 2.44
Product Category:

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Manufacturer: API Delevan Inc.
Short Description: FERRITE CORE 174 OHM HINGED 9MM
More Detail: Hinged (Snap On) Free Hanging Ferrite Core 174 Ohm...
DataSheet: BF1835-9 datasheetBF1835-9 Datasheet/PDF
Quantity: 897
1 +: $ 2.21760
10 +: $ 1.90197
25 +: $ 1.42657
50 +: $ 1.38701
100 +: $ 1.22844
250 +: $ 1.14920
500 +: $ 1.06993
1000 +: $ 1.05408
Stock 897Can Ship Immediately
$ 2.44
Specifications
Series: BF
Part Status: Active
Type: Round
Design: Hinged (Snap On)
Impedance @ Frequency: 174 Ohm @ 100MHz
Material: API-1
Inner Dimension: 0.354" Dia (9.00mm)
Outer Dimension: 0.732" Dia (18.60mm)
Ratings: --
Mounting Type: Free Hanging
Length: 1.380" (35.20mm)
Description

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Ferrite cores are used in many electronic circuits, such as in the communication and data transmission fields. The BF1835-9 is one of the most commonly used ferrite cores and is designed to reduce the amount of signal interference experienced in circuits. It can reduce the noise levels in various circuits including power transmission lines, automotive systems and communication systems. The BF1835-9 consists of ferrite material that is formed into a rod-shaped core and wound with a wire coil. The ferrite core is held in place by two pieces of non-metallic material and the wire coil is held in place by another set of either copper or aluminium wire. Because of its construction, the BF1835-9 is lightweight and easy to install.

A BF1835-9 ferrite core is designed to interact with the electromagnetic and electric fields in the environment. It works by creating an inductive loop that reduces the interfering signals and noise within the system. This inductive loop is made up of the ferrite core, a coil of wire and a non-metallic material. The core absorbs the electromagnetic signals from the environment and redirects them back into the coil. This reduces the noise in the system. The non-metallic material works to protect the coil from the effects of the electromagnetic field. The core also has the ability to reduce noise in other types of systems, such as radio and television transmitters, mobile phones and computer networks.

The working principle of BF1835-9 is similar to that of a transformer. The core functions as the primary winding and the coil works as the secondary winding. The primary winding consists of ferrite material that absorbs the electromagnetic signals and directs them back to the secondary winding. The secondary winding is made up of a coil that is wound around the core. The coil works to trap and dissipate the noise signals, thus isolating the system from interference. The core also works to reduce the amount of power needed to operate the system.

The BF1835-9 is often used in the wiring of cables to help reduce interference and crosstalk. It is also commonly used in the manufacture of antennae, which require a ferrite core to absorb and dissipate the electromagnetic radiation. In addition, the core is used in the construction of ground loops to prevent crosstalk. It is also used in the design of circuit boards and integrated circuits to reduce power dissipation and reduce the risk of voltage and current spikes.

The main advantage of using BF1835-9 in electronic circuits is its ability to reduce the amount of interference and crosstalk present in a system. This is accomplished by trapping and dissipating the noise signals that may be present. The core also has the ability to reduce the amount of power needed to operate a system, resulting in reduced energy costs. In addition, the core can be used in the construction of ground loops to prevent crosstalk and improve the signal integrity of a system.

In conclusion, the BF1835-9 is a very versatile ferrite core that can be used in a variety of applications, from reducing noise to improving signal integrity. It is lightweight and easy to install, making it ideal for a wide range of applications. The core is designed to interact with the electromagnetic and electric fields found in the environment, and can be used to reduce noise levels in systems such as power transmission lines, automotive systems and communication systems. It is also often used in the manufacture of antennae and in the construction of ground loops, and is also used in the design of circuit boards and integrated circuits.

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

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