1663767-2 Allicdata Electronics
Allicdata Part #:

1663767-2-ND

Manufacturer Part#:

1663767-2

Price: $ 1.67
Product Category:

Connectors, Interconnects

Manufacturer: TE Connectivity Aerospace, Defense and Marine
Short Description: FILLER PLG CAVITY SZ20 FR ARIN
More Detail: N/A
DataSheet: 1663767-2 datasheet1663767-2 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1000 +: $ 1.52554
Stock 1000Can Ship Immediately
$ 1.67
Specifications
Series: --
Packaging: --
Lead Free Status / RoHS Status: --
Part Status: Active
Accessory Type: --
For Use With/Related Products: --
Specifications: --
Description

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Backplane Connectors - Accessories

1663767-2 application field and working principle is a field of study that deals with the application, working and configuration of backplane connectors in the form of accessories. Backplane connectors are used to connect two or more circuits together, often in an environment where circuit interconnects are not immediately obvious. In some cases, backplane connectors are used in power transfer applications, allowing device and system power connections to be more conveniently distributed over large distances. Backplane connectors can also be used to adjust the current and voltage capabilities of a device, enabling different voltage levels to be achieved with different circuits.

Backplane connectors used in applications and devices are typically configured as ‘high-density’ systems, which minimise the amount of space required to support interconnectivity. This reduced space means that fewer components can be used in a given application field, which helps to significantly reduce costs and makes the backplane connectors used more efficient. In industrial applications, backplane connectors are used to provide reliable electrical connections and signal transfer for the devices.

Electrical Working Principles of 1663767-2 Backplane Connectors

Electrical working principles of 1663767-2 backplane connectors are termed as electrical interface construction which performs much different way than what is seen in normal connectors. The difference comes in the way that the electrical connection between both parts of the connector is established. This is done by the creation of a coating layer on the surface of the connectors. This coating is later filled with an electrical contact material such as gold, tin or copper.

One of the most common electrical interface constructions is the ELII connection, or Enhanced Low Inductance/Impedance Interface. In this type of connector, the electrical interface layer is made up of several layers which provide increased conductivity properties. Specifically, the layers of material are arranged in such a way that they form a ‘meta-layer’ construction, which means that there is a precise arrangement of the materials and conductors which allows for greatly improved electrical performance. This type of interface is often used in high-speed communication applications.

Beyond this, there are also electric forming processes for backplane connectors, allowing it to be customised to suit specific applications. This approach uses a special type of metal forming to physically connect the contacts together, eliminating the need for traditional soldering. While this technique is more expensive than traditional soldering, it is often necessary for applications where speed and precision are critical.

Mechanical Working Principles of 1663767-2 Backplane Connectors

The 1663767-2 connectors feature a mechanical interface, which is designed to securely hold and lock the contacts together. This mechanical interface is often made up of a series of ‘microlocks’ which essentially work to keep the contacts fixed in place. These locks provide an additional level of security to the overall assembly, and make sure that the contacts remain properly positioned in order to ensure a reliable connection.

The other key mechanical working principle of 1663767-2 backplane connectors relates to the contact ‘keying’ process. This process allows the contacts to be aligned in the correct position on an array, and is integral for repeatable and reliable operation. This keying process is used to ensure that the contacts are correctly lined up in order to provide the desired electrical characteristics, and this process is often automated by the use of pins which create a ‘keyway’ in the connector.

In summary, 1663767-2 application field and working principle are essential for understanding the configuration and operation of backplane connectors in the form of accessories. Backplane connectors provide a reliable and accurate way of connecting two or more electrical circuits together, while the use of different electrical and mechanical principles provide improved performance and precision. Electrical interfaces such as ELII and electric forming processes improve electrical performance, while mechanical locking and keying ensure that the contacts remain correctly aligned for reliable operation.

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

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