
Allicdata Part #: | 7800-9034-77-ND |
Manufacturer Part#: |
7800-9034-77 |
Price: | $ 9.21 |
Product Category: | RF/IF and RFID |
Manufacturer: | Leader Tech Inc. |
Short Description: | .125X.125/.125X.093 COMBO(ADH)-- |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
50 +: | $ 8.37067 |
Series: | -- |
Part Status: | Active |
Type: | Gasket |
Shape: | Rectangular |
Width: | -- |
Length: | -- |
Height: | -- |
Material: | -- |
Plating: | -- |
Plating - Thickness: | -- |
Attachment Method: | -- |
Operating Temperature: | -75°C ~ 260°C |
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 78-9034-77 application field and its working principle is an important topic of RF/EMI- Contacts, Fingerstoke and Gaskets. RF/EMI, or Radio Frequency Interference and Electro-Magnetic Interference, is the generation of RF/EMI energy during the operation of electronic systems. This energy is produced from electrical currents, temperatures, radial frequencies, and other measuring instruments. The 78-9034-77 application field and its working principle will help explain how a system will be protected from this interference.
The 78-9034-77 application field includes the methods of preventing and controlling RF/EMI. The mechanisms range from the shielding of conductors and transistors, to the design of antennas and transceivers. The methods utilized vary depending on the type and size of the system, its frequencies, and other factors related to the environment. Additionally, certain materials have been developed to filter the energies and reduce their effects in transmissions and other phenomena.
The 78-9034-77 working principle is based on the laws of physics and electromagnetic theory. It involves the usage of materials that have a low impedance, such as an insulator or a Faraday shield, and an antenna structure that filters out unwanted RF/EMI signals. This principle is used in the construction of noise-shielded enclosures, transceivers, and other systems. The low impedance of the materials is required to ensure that the signal propagates without interference and attenuation.
In addition to the low-impedance materials, the 78-9034-77 application field and its working principle includes the use of contacts, fingerstock, and gaskets. Rather than filtering the energy, these components prevent the transmission of RF/EMI energy. They are often used in combination with other low-impedance materials to create a full RF/EMI- shielding system. Their purpose is to ensure that the energies are confined to the area within the enclosure, thereby preventing it from radiating out to the environment.
The 78-9034-77 contact type is typically used within the enclosure where the RF/EMI-shielding technique is employed. The contact type consists of an electrical contact that has a high conductivity, which is used to prevent the passage of RF/EMI energy. This is accomplished by either the use of capacitive or inductive materials, or by the use of a high-conductive, low-impedance material. These types of contact are used in combination with the low-impedance materials to form a total-energy-blocking shield.
Fingerstock and gaskets are part of the 78-9034-77 application field and its working principle. These components are used to provide the insulation for the RF/EMI energy. They are usually made of non-conductive materials, such as Mylar or plastic. These materials have a low permittivity, so they are able to effectively prevent the transmission of energy across the surface of the enclosure. When combined with the contact-type contact, a total RF/EMI-shielding system is formed.
The 78-9034-77 application field and its working principle are both important in the design and construction of an RF/EMI-shielding system. By utilizing the contact-type contacts, fingerstock, and gaskets, the noise generated by RF/EMI energy is reduced, allowing systems to operate at higher efficiencies. Additionally, the equipment used within the enclosures are protected from the harmful effects of these energies, ensuring that the operation of electronic systems is not disturbed.
The specific data is subject to PDF, and the above content is for reference
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