10g sfp+ direct attach cable

Table of Contents

Product Description

10G SFP+ Direct Attach Cable (10G SFP+ DAC) is a cable solution for high-speed data communications designed to connect devices that support 10Gbps data transfer rates.

10G SFP+ Direct Attach Cable uses copper wires as the signal transmission medium, usually using a twisted pair structure. It has a fixed length and is equipped with SFP+ plugs on both ends for direct connection to devices that support the 10G SFP+ interface.

10G SFP+ Direct Attach Cable provides high-bandwidth and low-latency data transmission capabilities, suitable for short-distance high-speed connection requirements. It has some advantages such as low cost, low power consumption and simplified configuration process. Compared with traditional optical modules and optical fibers, 10G SFP+ DAC can provide a more economical and simpler solution and reduce the number and complexity of components in the system.

10G SFP+ Direct Attach Cable is used in scenarios such as data centers, enterprise networks, and small offices. It is suitable for applications such as interconnection between servers, connections between network devices, and connections between storage devices and switches.

Product Application

1. Data center network:

Data center is one of the main application areas of 10G SFP+ Direct Attach Cable. In data centers, high-speed, high-bandwidth connections are needed to meet the rapid data transfer needs between servers, storage devices and network devices.
It can be used to connect servers, switches, routers, storage devices and other equipment in the data center to achieve high-bandwidth data transmission and communication. It provides simple, reliable connectivity, reduces cabling complexity, and delivers low latency and high throughput performance.

2. Enterprise network:

10G SFP+ Direct Attach Cable is also widely used in enterprise networks. Enterprise networks need to support fast and reliable data transmission to meet the needs of daily office and business applications.
This product can be used to connect servers, network equipment and storage devices within the enterprise to support high-bandwidth data transmission requirements. It provides stable connections, supports high-load data transmission and network applications, and meets the communication needs of enterprises.

3. Teleworking and remote access:

In remote office and remote access scenarios, fast and reliable network connections are needed to enable remote team collaboration and remote access to corporate resources.
10G SFP+ Direct Attach Cable can be used to connect servers, network devices and storage devices in remote office environments, providing high-speed, low-latency connections to support remote team collaboration and remote access to corporate resources.

4. High performance computing:

In the field of high-performance computing, such as scientific research, engineering simulation and data analysis, high-speed, high-bandwidth connections are needed to support large-scale computing tasks.
10G SFP+ Direct Attach Cable can be used to connect high-performance computing nodes and storage nodes to achieve large-scale data transmission and collaborative computing. It provides low latency, high throughput and high reliability performance to meet the high requirements for computing resources and data processing speed.

Product Features

10g sfp+ direct attach cable adopts sfp+ interface, which is compatible with traditional sfp and can be directly inserted into sfp+ modules or switches without additional converters or adapters.

It uses direct-attached copper cables, which are more durable than fiber optics and easier to install and maintain, requiring no cleaning or calibration.

10g sfp+ direct attach cable has lower latency and higher bandwidth, which can improve network performance and efficiency and meet the needs of big data and high-performance computing.

It has lower cost and lower power consumption, which can save operating costs and energy consumption, reduce carbon emissions and environmental impact.

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