030-2273-000 Allicdata Electronics
Allicdata Part #:

030-2273-000-ND

Manufacturer Part#:

030-2273-000

Price: $ 6.02
Product Category:

Connectors, Interconnects

Manufacturer: ITT Cannon, LLC
Short Description: RP CON 20 HD LIF PIN CRIMP
More Detail: Contact Gold Signal Pin 20-22 AWG Crimp
DataSheet: 030-2273-000 datasheet030-2273-000 Datasheet/PDF
Quantity: 788
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
1 +: $ 5.47470
5 +: $ 4.74138
10 +: $ 4.67019
25 +: $ 4.40950
50 +: $ 4.38581
Stock 788Can Ship Immediately
$ 6.02
Specifications
Series: 600 BKA
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Type: Signal
Pin or Socket: Pin
Contact Termination: Crimp
Wire Gauge: 20-22 AWG
Contact Finish: Gold
Contact Finish Thickness: --
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 030-2273-000 backplane connectors, also known as contacts, are unique components in electrical and electronic systems. These connectors are used to propagate signals between layers of printed circuit boards. Contacts also provide a mechanical hold that prevents the circuit boards from becoming dislodged, increasing the sturdiness of the device. Apart from electric and electronic devices, 030-2273-000 backplane connectors can be used in different applications.

The main advantages of 030-2273-000 backplane connectors are their high-speed performance, robustness, and strong separation ability. They are designed to connect two panels together with pins that create two separate interfaces when installed in place of a traditional wire connector. This reduces installation time and allows for a more reliable connection. As for their electrical performance, 030-2273-000 backplane connectors offer high bandwidth transmission capabilities, and possess excellent signal integrity features that are especially important in applications that require high-speed data throughput.

In terms of construction, 030-2273-000 backplane connectors are constructed from a combination of metal and plastic components. This combination of materials ensures that the connectors have high strength and durability, as well as excellent insulation properties. The metal components are usually made out of metallic alloys, such as nickel-plated brass or aluminum-plated steel. Each contact consists of a central pin, outer casing, and optional contact templates. The pins are typically made of spring steel, and the outer casing is typically made of thermoplastic materials.

When it comes to installation, 030-2273-000 backplane connectors require that the contacts are soldered onto the board before being pressed into place. This is an important process, as it ensures a reliable connection between the contact and the board. The contacts also require that the board has the right dimensions and that the contacts are properly aligned in order to ensure optimal performance. Once the contact is secured, the board can be tested for signal integrity.

When it comes to the working principle of 030-2273-000 backplane connectors, it is based on the principle of electromagnetic induction. The contact consists of two or more pins, each of which is surrounded by a coil. When a current is applied to the coil, an alternating magnetic field is created that induces a flux in the pins. This flux creates an alternating electrical force between the pins, which causes a connection to be created through the pins. The pins then transfer the electrical signals between the two panels, allowing for high-speed data transmission.

In conclusion, 030-2273-000 backplane connectors are components specifically designed to provide reliable connections between layers of printed circuit boards, with high-speed performance and excellent signal integrity. They are constructed from a combination of metal and plastic components, and require that the contacts be soldered onto the board before being pressed into place. They operate on the principle of electromagnetic induction, whereby an alternating magnetic field induces a flux in the pins, creating a connection between them.

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

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