0077001209 Allicdata Electronics
Allicdata Part #:

0077001209-ND

Manufacturer Part#:

0077001209

Price: $ 6.08
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies EMI
Short Description: NOSG,STR,NID,PSA
More Detail: N/A
DataSheet: 0077001209 datasheet0077001209 Datasheet/PDF
Quantity: 1000
100 +: $ 5.51855
Stock 1000Can Ship Immediately
$ 6.08
Specifications
Series: No Snag
Part Status: Active
Type: Fingerstock
Shape: --
Width: 0.320" (8.13mm)
Length: 24.000" (609.60mm)
Height: 0.110" (2.79mm)
Material: Beryllium Copper
Plating: Nickel
Plating - Thickness: 299.21µin (7.60µm)
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

The term 0077001209 application field and working principle refer to RFI and EMI - Contacts, Fingerstock and Gaskets. Radio frequency interference (RFI) and electromagnetic interference (EMI) are two important forms of interference that can occur in any electronic system. They can cause degradation in signal quality, noise, erratic performance, and even complete system failure. To prevent RFI and EMI, shielding is necessary. Shielding creates a barrier that prevents the passage of RFI and EMI and ensures that the electronic equipment works correctly. The shielding is typically made of layers of conductors which are designed to reflect, ground away, or absorb any incoming interference. Contacts, Fingerstock, and Gaskets are among the best types of shielding for these purposes.

Contacts, Fingerstock, and Gaskets are materials that are specifically designed to create an effective RFI and EMI shield. Contacts, Fingerstock, and Gaskets have different characteristics that are designed to provide the shielding needed. Contacts are conductors or material layers that make direct contact with each other to form a continuous conductive path. This path helps to prevent the passage of RFI and EMI by reflecting, grounding away, or absorbing any incoming interference. Fingerstock is a material that is usually a thin strip or wire that is crimped or soldered onto each side of the contact. This creates a ‘finger’ like contact that helps to block or absorb any interference that may pass through the contact. Gaskets are rubber or foam-like materials that help to seal the contact against the shield. This provides an additional layer of protection against RFI and EMI.

The actual working principle of the Contacts, Fingerstock, and Gaskets is to reflect, ground away, and absorb any incoming RFI and EMI. As the contacts, fingerstock, and gaskets are designed to create a continuous conductive path, any interference that passes through the contact is immediately reflected, grounded away, or absorbed by the material. This prevents interference from entering the protected area and keeps the electronic equipment running properly. In addition, the gasket helps to provide an additional layer of protection by sealing the contact and preventing any interference from entering the protected area as well.

0077001209 application field and working principle of Contacts, Fingerstock, and Gaskets are used in a variety of applications. They can be used in enclosures, cabinets, and panels to protect against RFI and EMI. They can also be used in military and aerospace applications to protect against high-frequency radio waves. It is important to note that these materials do not completely block interference, but rather reduce the level of interference that passes through. In order to decrease the noise level even further, additional shielding is sometimes needed.

In conclusion, 0077001209 application field and working principle of Contacts, Fingerstock, and Gaskets are essential for ensuring that an electronic system operates properly. These materials provide the necessary shielding to prevent RFI and EMI and ensure that the system works as intended. It is important to choose the right materials in order to ensure that they provide maximum shielding and protect the system from interference. With the right materials, a reliable and effective shield can be created that allows the system to operate as intended.

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

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