KR16TT281807 Allicdata Electronics
Allicdata Part #:

P11385-ND

Manufacturer Part#:

KR16TT281807

Price: $ 0.00
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Manufacturer: Panasonic - DTG
Short Description: FERRITE CORE 60 OHM SOLID 18MM
More Detail: Solid Free Hanging Ferrite Core 60 Ohm @ 100MHz ID...
DataSheet: KR16TT281807 datasheetKR16TT281807 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: TT
Part Status: Obsolete
Type: Round
Design: Solid
Impedance @ Frequency: 60 Ohm @ 100MHz
Material: --
Inner Dimension: 0.708" Dia (18.00mm)
Outer Dimension: 1.122" Dia (28.50mm)
Ratings: --
Mounting Type: Free Hanging
Length: 0.295" (7.50mm)
Description

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Ferrite Cores are one of the most versatile materials used in the electrical and electronics industry. The latest development in Ferrite Core Technology is called KR16TT281807 and this new material has many applications that are rapidly being adopted across many industries. This article will describe the application field and the working principle of KR16TT281807.

KR16TT281807 contains a unique combination of materials which provide outstanding performance characteristics for use in ferrite cores, cables and wiring applications. This material is made from a wide variety of ferrite powders combined with heat and pressure. It has a wide range of magnetic properties that make it ideal for use in various applications.

The principal application field of KR16TT281807 is in ferrite cores, particularly in those cores that need to have both low magnetic permeability and high electrical resistivity. Its ability to provide both electrical and magnetic shielding makes it an excellent choice for use in shielded cables and wiring systems. This material also has a range of other properties that make it suitable for use in various other applications, such as antennas and the fabrication of heat exchangers.

In order to understand the working principle of KR16TT281807, it is important to first look at its magnetic characteristics. This material has a high permeability, which means that it can effectively act as a filter for magnetic fields. This helps to reduce the effects of external fields on any circuits or devices which are connected to the ferrite core. This also helps to reduce the amount of interference which can be caused by any external sources of energy.

The second important factor is KR16TT281807\'s electrical resistivity. This material has a low electrical resistivity, which helps to ensure that the current that passes through the core will stay within its application-specific range. In addition, this material also has good thermal conductivity, which helps to reduce the amount of heat that is produced when the core is in use. This reduces the amount of energy that is lost due to heat buildup, which helps to ensure that the core remains functional over time.

Finally, KR16TT281807\'s ability to provide a wide range of magnetic properties makes it an excellent choice for use in a variety of applications. This material\'s combination of high permeability and low electrical resistivity makes it ideal for use in shielded cables and wiring systems. As well as this, its good thermal conductivity helps to ensure that the core remains operational over time. This combination makes it the perfect material for a variety of different applications which require uncompromising performance in terms of both electrical and magnetic characteristics.

Overall, KR16TT281807 is an exceptional material which provides excellent performance characteristics when used in ferrite cores, cables and wiring applications. Its combination of high magnetic permeability, low electrical resistivity and good thermal conductivity make it the ideal material for a variety of applications. This material is quickly becoming a popular choice for the design and manufacture of ferrite cores, cables and wiring systems, and its wide range of applications make it one of the most versatile materials used in the electrical and electronics industry today.

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

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