303076048 Allicdata Electronics

303076048 RF/IF and RFID

Allicdata Part #:

732-10277-ND

Manufacturer Part#:

303076048

Price: $ 6.02
Product Category:

RF/IF and RFID

Manufacturer: Wurth Electronics Inc.
Short Description: WE-LT CONDUCTIVE SHIELDING GASKE
More Detail: N/A
DataSheet: 303076048 datasheet303076048 Datasheet/PDF
Quantity: 100
1 +: $ 5.47470
10 +: $ 5.22585
25 +: $ 4.72828
50 +: $ 4.47930
100 +: $ 3.98160
Stock 100Can Ship Immediately
$ 6.02
Specifications
Series: WE-LT
Part Status: Active
Type: Fabric Over Foam
Shape: D-Shape
Width: 0.299" (7.60mm)
Length: 39.370" (1.00m)
Height: 0.189" (4.80mm)
Material: Polyurethane Foam, Rayon Paper
Plating: --
Plating - Thickness: --
Attachment Method: Non-Conductive Adhesive
Operating Temperature: -40°C ~ 85°C
Description

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RF and EMI shielding is an important part of modern electronic and communications systems. It is used to reduce noise interference from external sources and provide a protective barrier against water, dust, and other particles. The most common type of RF and EMI shield is a contact shield. Contacts, fingerstock, and gaskets are necessary components for most RF and EMI shield applications.

A contact shield is a type of metallic barrier used in RF and EMI shielding systems. It generally consists of a conductive surface, such as copper or aluminum, which is connected to a ground source. Contacts or other non-conductive material may be used to create the desired electrical connection between the surface and ground. The contact shield is used to isolate the signal from external noise sources, such as radio frequency interference (RFI) or electro-magnetic interference (EMI).

Fingerstock is used to create a mechanical connection between two parts of an RF and EMI shielding system. It is typically made from stainless steel or aluminum and is designed to provide a firm and uniform contact between the two components. The frequency and type of shielding application will dictate the type of fingerstock used. Common materials used for fingerstock include brass, copper, and nickel alloys.

Gaskets are used in RF and EMI shielding applications to provide a physical barrier between two components. They are typically made from a conductive material, such as elastomeric or metal, and are used to form a tight seal between mating parts. This provides a protective barrier against water, dust, and other particles that may interfere with the performance of the shielding system.

303076048 is an EMI and RFI contact shield application. The contact shield contains copper contact material which is connected to the ground reference to provide electromagnetic isolation. The contact shield is designed to prevent interference from external sources, such as radio frequency interference (RFI) or electro-magnetic interference (EMI). The contact shield also prevents liquid and other particles from entering the system and disrupting the signal. Fingerstock and gaskets may be used in conjunction with the contact shield to provide a secure, uniform contact between two components and to protect the system from dust and other particles.

The working principle of 303076048 application is simple. The contact shield consists of two separate layers. The first layer acts as a ground reference to isolate the signal from external interference, while the second layer provides a mechanical connection between two components. The gaskets and fingerstock are then used to create a seal and establish electrical continuity between the two layers. This design provides an effective barrier against external interference and provides reliable performance in wireless communications systems.

RF and EMI shielding is essential for modern electronic and communications systems. Contacts, fingerstock and gaskets are essential components of RF and EMI shielding systems and are necessary for reliable performance. 303376048 application field and working principle is an example of a typical EMI and RFI contact shield application that utilizes contacts, fingerstock, and gaskets to create a secure, uniform connection between two components and protect the system from external interference.

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

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