Allicdata Part #: | 903-1432-ND |
Manufacturer Part#: |
0097061802 |
Price: | $ 7.19 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies EMI |
Short Description: | FINGERSTOCK BECU 10.67X406.4MM |
More Detail: | N/A |
DataSheet: | 0097061802 Datasheet/PDF |
Quantity: | 1000 |
147 +: | $ 6.53411 |
Series: | -- |
Part Status: | Active |
Type: | Fingerstock |
Shape: | -- |
Width: | 0.420" (10.67mm) |
Length: | 16.000" (406.40mm) |
Height: | 0.140" (3.56mm) |
Material: | Beryllium Copper |
Plating: | -- |
Plating - Thickness: | -- |
Attachment Method: | Clip |
Operating Temperature: | 121°C |
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RFI and EMI materials are used in various applications to suppress electromagnetic energy. Among the various materials used for this purpose, contact-type shielding materials such as contacts, fingerstock, and gaskets stand out with their high shielding effectiveness against both radiation and conduction fields. These materials can be broadly classified into two categories, namely, EMI materials and RFI materials.
The contact-type EMI and RFI shielding materials, such as 0097061802, are primarily used to absorb, shield, and dissipate radiation and conduction fields. The absorbed or shielded energy is then mostly dispersed in the form of heat. Since the energy absorption and radiation mainly depend on the physical properties and parameters of the treated materials, EMI and RFI materials such as 0097061802 are designed and constructed to possess specific features for the purpose of absorbing and dissipating the electromagnetic energy.
The working principle behind contact-type EMI and RFI shielding materials such as 0097061802 is primarily based on the conductive, capacitive, and inductive interactions between the shielding material and the source of electromagnetic energy. Electromagnetic fields radiated from a source can be divided into two categories, namely, plane waves and scattered fields. In the context of contact-type shielding materials, the capacitive and inductive interactions tend to dominate in local field areas, while the conductive interaction tends to dominate in longer distances.
When the contact-type EMI and RFI shielding materials such as 0097061802 are exposed to an electromagnetic field, the field will induce an electrical current on the material. This current will then cause a redistribution of electric charge on the surface of the material, creating a shield that will block or absorb some of the electromagnetic energy. Furthermore, the current flowing through the newly created shield will contribute to the total shielding effectiveness of the material by shielding additional radiation and conduction fields.
In addition, EMI and RFI contact-type shielding materials such as 0097061802 can also provide thermal shielding properties. The heat generated due to the electrical current flowing through the material is usually dissipated by the material itself, thus reducing the amount of thermal energy that is able to pass through the material. This can be particularly beneficial in situations where thermal shielding is required, such as in applications involving sensitive electronic components.
Furthermore, the mechanical and environmental properties of EMI and RFI contact-type shielding materials such as 0097061802 can also affect their overall performance. For instance, the mechanical properties of the materials can affect their flexibility, durability, and ability to conform to complex shapes. The environmental properties of the materials can also affect their ability to withstand extreme temperatures and other harsh environmental conditions.
In summary, contact-type EMI and RFI shielding materials such as 0097061802 are widely used in various applications to suppress electromagnetic energy. Such materials can absorb, shield, and dissipate radiation and conduction fields, and can also provide thermal shielding properties. The working principle behind contact-type shielding materials is based on the conductive, capacitive, and inductive interactions between the shielding material and the source of electromagnetic energy. The mechanical and environmental properties of the materials can also greatly influence their performance.
The specific data is subject to PDF, and the above content is for reference
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