Allicdata Part #: | P11379-ND |
Manufacturer Part#: |
KR16TT201112 |
Price: | $ 0.00 |
Product Category: | Filters |
Manufacturer: | Panasonic - DTG |
Short Description: | FERRITE CORE 95 OHM SOLID 10.6MM |
More Detail: | Solid Free Hanging Ferrite Core 95 Ohm @ 100MHz ID... |
DataSheet: | KR16TT201112 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Series: | TT |
Part Status: | Obsolete |
Type: | Round |
Design: | Solid |
Impedance @ Frequency: | 95 Ohm @ 100MHz |
Material: | -- |
Inner Dimension: | 0.417" Dia (10.60mm) |
Outer Dimension: | 0.807" Dia (20.50mm) |
Ratings: | -- |
Mounting Type: | Free Hanging |
Length: | 0.472" (12.00mm) |
Description
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KR16TT201112 Ferrite Cores - Cables and Wiring
KR16TT201112 ferrite cores are essential components for many of today\'s electronics systems. They provide reliable and effective control of electrical noise, along with radiation protection for sensitive components. To understand how they work, it\'s important to have a basic understanding of what a ferrite core is, its application field and working principle.A ferrite core is a magnetic material composed mostly of iron, oxygen, and other elements. It is used in a variety of scenarios that require control of electromagnetic signals, such as in the filtering of radio frequency interference (RFI) and electromagnetic interference (EMI). Generally, the core is divided into two parts: an inner core and an outer core. The inner core is made up of a ferromagnetic (magnetisized) material, while the outer core is commonly comprised of a non-magnetic conductive material. The core’s design and construction play an important role in its ability to control the flow of electrical energy and protect against electromagnetic interference. KR16TT201112 ferrite cores are specifically designed for use in many of today\'s consumer electronics, such as computers, TVs, cell phones, and other electronic devices. They offer superior performance in controlling and filtering electrical noise from external sources as well as suppressing radiation from internal circuitry. The cores can also be used for filtering and suppressing electromagnetic interference (EMI) between two or more devices.The working principle of ferrite cores is based on their ability to absorb energy from an electromagnetic source and store it in their magnetic field. This field forms a barrier between the external source and the device or circuitry connected to the ferrite core. Upon absorption, the energy is converted to heat and dissipated into the environment. In order for a ferrite core to work, the correct type of material must be selected. Different ferrite materials are designed to absorb different frequencies and more specialized materials can be used to suppress specific types of electromagnetic interference (EMI).For example, a high permeability material works best for low-frequency EMI filtering, while a low permeability material works best for high-frequency EMI filtering. Additionally, precision machined ferrite cores are designed to react more efficiently than other types of cores in many application fields.The KR16TT201112 models in particular offer excellent shielding efficiency and behave as high-frequency noise absorbers. They feature a high resistance to noise, strong mechanical robustness, and excellent EMI shielding qualities. It is important to note, however, that no single core is suitable for all application fields. The performance of ferrite cores depends on their design, construction, core material, and intended operating frequency. One of the most common applications for KR16TT201112 ferrite cores is RFI shielding. RFI can be described as any undesired radio frequency signal that can interfere with electrical or electronic devices. By using a ferrite core, the unwanted signal is either completely eliminated or reduced to an acceptable level. Additionally, ferrite cores can also be used to reduce audio and video noise and other types of private or proprietary signals.Additionally, KR16TT201112 models are also widely used for cabling and wiring. These cores are designed to provide robust protection for the cabling and wiring in a variety of commercial and industrial environments. In addition to providing EMI shielding, the cores can help to reduce crosstalk, minimize signal reflections, and prevent electrical overloads. Additionally, they can also be used to encrypt and protect sensitive data from external sources. In summary, KR16TT201112 ferrite cores have become popular components in a variety of modern consumer electronics, cabling, and wiring, due to their ability to efficiently control and filter out electrical noise. The correct selection and application of KR16TT201112 ferrite cores is key to their performance and ensuring the desired results. In order to select the correct core for a specific application, it is important to consider factors such as the operating frequency, electrical parameters, and application environment.The specific data is subject to PDF, and the above content is for reference
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