4094AB51S00400 Allicdata Electronics

4094AB51S00400 RF/IF and RFID

Allicdata Part #:

4094AB51S00400-ND

Manufacturer Part#:

4094AB51S00400

Price: $ 0.78
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: GK SNCU NRS PU V0 REC
More Detail: N/A
DataSheet: 4094AB51S00400 datasheet4094AB51S00400 Datasheet/PDF
Quantity: 1000
296 +: $ 0.70407
Stock 1000Can Ship Immediately
$ 0.78
Specifications
Series: --
Part Status: Active
Type: Fabric Over Foam
Shape: Rectangle
Width: 0.161" (4.10mm)
Length: 4.000" (101.60mm)
Height: 0.079" (2.00mm)
Material: --
Plating: --
Plating - Thickness: --
Attachment Method: --
Operating Temperature: --
Description

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The term 4094AB51S00400 RFI and EMI – Contacts, Fingerstock and Gaskets are used to describe components made from conductive materials such as metal, polyester film, or rubber that are designed to limit the amount of radio frequency interference (RFI) or electromagnetic interference (EMI) that can pass through a system. RFI is the interference caused by electric or electronic components that generate radio signals and disrupt other equipment. EMI is the interference caused by electric or electron magnetic fields outside the designed equipment, e.g. cell phones, microwaves, fluorescent lights, etc. Contacts, Fingerstock and Gaskets are electromagnetic shielding components used to limit both RFI and EMI.The 4094AB51S00400 application field focuses on both reduction of surface area contact and the prevention or minimization of interference. This makes them highly effective components for the prevention and stabilization of electrical systems in homes, offices, factories, laboratories, airplanes, ships, and a range of other areas where protection from radio frequency and electromagnetic interference is necessary.Fingerstock, otherwise known as a contact finger, is made from conductive material such as a spring metal, stainless steel, and carbon steel, and is designed to make physical contact between two objects, allowing for an electrical current to flow. Fingerstock can be used to maintain and secure a physical contact between any number of products ranging from fabrics, composites, painted surfaces, circuit boards, and other electrical parts. It is placed between the surface endings of two products to create a low resistance through-hole contact. This contact increases inductance, thereby increasing the current that can flow through the gap.Fingerstock also serves as an EMI shielding component. This is because conductive material can absorb the high frequency energy created by EMI, reducing the amount of energy that passes through the gap in between two components. The more contact area with the shielding material, the better the protection against EMI.Gaskets are similar to fingerstocks but rather than providing contact between two objects, they create a barrier to prevent air from entering an electrical assembly. They are usually made from conductive rubber or plastic-like materials and can provide similar protection to fingerstocks. Gaskets can be placed around objects to prevent air from entering and create less interference, allowing electrical components to perform better. They can also be used to ensure that the electrical components will not be exposed to extreme temperatures or vibrations.The working principle of 4094AB51S00400 is based on the same basic principles as fingerstock and gaskets. They are designed to provide physical contact between two components, thereby reducing the amount of interference between them and providing a stable environment for them to operate in. They are also designed to absorb the energy created by high frequency radio signals and electromagnetic fields, thereby reducing the amount of energy that passes through the gap between two components. This reduces the risk of RFI and EMI, allowing the electrical components to perform better.In conclusion, the 4094AB51S00400 RFI and EMI - Contacts, Fingerstock and Gaskets are a set of components used to reduce interference between electrical components and prevent them from being affected by high frequency radio signals and electromagnetic fields. They are designed to create physical contact between two components to reduce the amount of energy that passes through the gap, creating a stable environment for electrical components to operate in. They are highly effective components for the prevention and stabilization of electrical systems in homes, offices, factories, laboratories, airplanes, and ships.

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

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