0C98054002 Allicdata Electronics
Allicdata Part #:

0C98054002-ND

Manufacturer Part#:

0C98054002

Price: $ 6.34
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: AP COIL BF USFT PSA
More Detail: N/A
DataSheet: 0C98054002 datasheet0C98054002 Datasheet/PDF
Quantity: 1000
250 +: $ 5.76198
Stock 1000Can Ship Immediately
$ 6.34
Specifications
Series: All-Purpose
Part Status: Active
Type: Fingerstock
Shape: --
Width: 0.280" (7.11mm)
Length: 16.000" (406.40mm)
Height: 0.110" (2.79mm)
Material: Beryllium Copper
Plating: Unplated
Plating - Thickness: --
Attachment Method: Adhesive
Operating Temperature: 121°C
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Radio-Frequency Interference (RFI) and Electromagnetic Interference (EMI) conformal contacts, fingerstock, and gaskets are materials used to prevent the transfer of electromagnetic radiation between components or subsystems of an electronic system. In order to reduce the transfer of electromagnetic energy, manufacturers employ shielding, conditioning, and isolation techniques. These techniques are used in order to achieve low levels of EMI in order to protect electronic devices from being damaged by high-power signals.

An example of a contact is the 0C98054002 which is a type of high frequency conformal contact. It is designed to meet the tight spacing requirements of high-frequency shielded components and systems. The 0C98054002 is made of a conductive metal like silver, copper, or aluminum, and is designed to provide a low electrical resitance path between two circuits or components. The material is typically thin-gauge and is designed to be installed in limited spaces with minimal surrounding materials. The 0C98054002 offers low insertion loss and low electrical leakage, and is commonly used in telecommunications, aviation, and military applications.

The 0C98054002 is also designed to provide a controlled transfer of electromagnetic radiation between two metal surfaces. This type of contact is often used to provide an electromagnetic shielding environment which helps reduce the coupling of noise between components and power and ground. The 0C98054002 can also be used to reduce EMI generated by a component with a high-frequency switching device.

Fingerstock and gaskets are also materials used to reduce electromagnetic interference. Fingerstock is an insulated metal contact that can be used in a variety of applications including electrical connectors, circuit boards, circuit protection, and cable assemblies. It is typically fabricated out of a variety of materials such as copper, aluminum, and stainless steel. The 0C98054002 fingerstock is designed to be inserted between two metal surfaces with electrically insulated material. This allows for a reduced amount of electrical leakage and provides electrical isolation between two circuits or components.

Gaskets are also used to reduce the transfer of electromagnetic interference. Gaskets come in a variety of materials such as rubber and copper-foils and are designed to be placed between two metal surfaces. The gasket serves as a conductive shield that reduces the amount of electrical leakage and provides electrical isolation between two circuits or components. Gaskets are commonly used in electrical enclosures and provide a low insertion loss between two connected components.

The 0C98054002 application field and working principle are designed to help reduce the transfer of electromagnetic interference and protect electrical devices from damage caused by high-power signals. This type of contact is used in high-frequency shielded circuits and systems and provides a low electrical resistance path and low electrical leakage. Fingerstock and gaskets are also employed in reducing EMI and providing electrical insulation between circuits or components. This helps reduce the amount of electromagnetic radiation that is emitted from the components and helps protect electronic devices from being damaged by high-power signals.

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

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