HP6-252S-1.27DS(05) Allicdata Electronics
Allicdata Part #:

HP6-252S-1.27DS(05)-ND

Manufacturer Part#:

HP6-252S-1.27DS(05)

Price: $ 0.00
Product Category:

Connectors, Interconnects

Manufacturer: Hirose Electric Co Ltd
Short Description: CONNECTOR
More Detail: Position Connector
DataSheet: HP6-252S-1.27DS(05) datasheetHP6-252S-1.27DS(05) Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: --
Lead Free Status / RoHS Status: --
Part Status: Last Time Buy
Connector Type: --
Connector Style: --
Number of Positions: --
Number of Positions Loaded: --
Pitch: --
Number of Rows: --
Mounting Type: --
Termination: --
Connector Usage: --
Contact Finish: --
Contact Finish Thickness: --
Voltage Rating: --
Operating Temperature: --
Features: --
Description

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Introduction

Backplane connectors are responsible for transmitting signals and power in highly demanding and technically complex systems, such as computer servers, telecommunications systems, and consumer electronics. Connectors must adhere to stringent standards and requirements that can be as demanding as high-frequency switching and power integrity. The HP6-252S-1.27DS(05) is a backplane connector, which belongs to the “hard metric” connector category. This connector is designed for a number of applications, including computer servers, telecommunications, storage, and consumer electronics. It is also a “standard” connector, which means it can be used in applications that require high-speed data and power integrity.

Design

The HP6-252S-1.27DS(05) connector is designed for high-speed and power integrity applications, and it features a number of design benefits. First, it has an optimized backplane connector design that ensures reduced signal-crosstalk and increases channel attenuation performance. Second, it has a number of connection options, including a removable-terminal board, which allows for easier routing of signals in complex designs. Third, it has an improved plastic injection molding design that ensures improved terminations and reduced fraying of wires. Fourth, the connector has a number of base metals that provide improved reliability and durability. Finally, the connector has a lock-and-key design that increases the integrity and security of the connection.

Application

The HP6-252S-1.27DS(05) connector is designed for applications that require high-speed and power integrity. It is well-suited for a number of applications, including computer servers, storage, and telecommunications systems. It can be used in applications that require high-speed, low-noise, and high-integrity connections. Additionally, this connector is often used in consumer electronics, including personal computers, notebooks, and smart devices.

Working Principle

The working principle of the HP6-252S-1.27DS(05) is based on the concept of signal/power integrity. The connector has an optimized backplane design that allows for reduced signal-crosstalk and increased channel attenuation. Additionally, the connector has a number of connection options, including a removable-terminal board, which allows for easier routing of signals in complex designs. Furthermore, the connector has a number of base metals that provide improved reliability and durability. Finally, the connector has a lock-and-key design that increases the security and integrity of the connection.

Conclusion

The HP6-252S-1.27DS(05) is a backplane connector that is designed for applications that require high-speed and power integrity. It is a “standard” connector, and it belongs to the “hard metric” category. It has an optimized backplane design that ensures reduced signal-crosstalk and increases channel attenuation performance. It has a number of connection options, and it has a number of base metals that provide improved reliability and durability. Finally, it has a lock-and-key design that increases the security and integrity of the connection.

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

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