4046AA51K01800 Allicdata Electronics

4046AA51K01800 RF/IF and RFID

Allicdata Part #:

4046AA51K01800-ND

Manufacturer Part#:

4046AA51K01800

Price: $ 1.95
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: GASKET FABRIC/FOAM 3X457.2MM SQ
More Detail: N/A
DataSheet: 4046AA51K01800 datasheet4046AA51K01800 Datasheet/PDF
Quantity: 1000
128 +: $ 1.76739
Stock 1000Can Ship Immediately
$ 1.95
Specifications
Series: --
Part Status: Active
Type: Fabric Over Foam
Shape: Rectangle
Width: 0.118" (3.00mm)
Length: 18.000" (457.20mm)
Height: 0.118" (3.00mm)
Material: Polyurethane Foam, Nickel-Copper Polyester (NI/CU)
Plating: --
Plating - Thickness: --
Attachment Method: --
Operating Temperature: --
Description

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RFI and EMI - Contacts, Fingerstock and Gaskets
4046AA51K01800 application field and working principle
4046AA51K01800 is an RFI and EMI contact that is used to reduce signal interference in electrical circuits. This contact is usually used in high-tech applications where data needs to be transmitted or received without disruption. This contact is composed of several levels of protection materials such as an electrically conductive finger stock, a thin metal contact gasket and a functional object. The contact gasket, made of material such as mica or thin metal, is designed to fit between the contact surface and the fingerstock, thus providing additional contact protection. The functional object, made of material such as metal or plastic, is designed to reduce the impact of electrical noise and provide protection from electromagnetic waves.
The fingerstock is the main component of the 4046AA51K01800 contact. It is made of a conductive material such as copper or aluminum, which is then finished with an electroplated finish such as tin, silver or gold. This material is designed to enable efficient electrical contact between the contact surface and the fingerstock. The thickness of the fingerstock also varies depending on the needs of the application, which can range from 0.002” to 0.015”. The fingerstock is also fitted with a mechanical contact spring, which is designed to maintain proper contact pressure and aid in the reduction of EMI emissions.
The 4046AA51K01800 can be used in a variety of applications, including computers, communication systems, industrial equipment, and consumer electronics. This contact is used to reduce signal interference that can interfere with data transmission or reception, or cause electrical equipment to malfunction. The 4046AA51K01800 contact has the ability to reduce the intensity of both EMI emissions and RFI emissions and is ideal for sensitive, high-tech applications that require an efficient contact system.
The working principle of 4046AA51K01800 is quite simple. First, the fingerstock is inserted into the contact, and then the contact gasket is placed between the contact surface and the fingerstock. The contact spring is then activated to provide an even contact pressure across the contact surface. This contact pressure allows for an efficient electrical contact between the two components, which in turn reduces the possibility of signal disruption. Additionally, the contact gasket helps to reduce the impact of EMF emissions and RFI. Finally, the functional object is placed in the center of the contact and helps to provide additional protection against EMI interference.
Overall, the 4046AA51K01800 is a highly effective contact solution that can effectively reduce the intensity of both EMI and RFI. This contact is suitable for a wide range of applications, including sensitive electronic and communication systems, industrial equipment, and consumer electronics. The contact is also easy to install and maintain, and requires minimum intervention from a qualified technician. The contact is also economical, requiring no additional wiring or tools to install. As a result, this contact is ideal for anyone looking to reduce the intensity of signal disruption in their system or applications.

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

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