BLC QSFP+ to 4x10G SFP+ Fiber Optic Cable (AOC) 15m
This reliable BLC QSFP+ to 4x10G SFP+ Active Optical Cable (AOC) is a powerful solution for interfacing devices over medium distances. The AOC features passive transmission technology, ensuring clear signal quality up to 15 meters. Its compact design makes it perfect for dense server racks. With its comprehensive compatibility, this AOC is a reliable choice for data centers deployments.
High-Performance 4x10G SFP+ AOC from QSFP+ Breakout
Gaining ground in data centers worldwide is the need for ultra-fast connectivity solutions. Addressing this demand, innovative companies are presenting cutting-edge technologies like 4x10G SFP+ Active Optical Cables (AOCs) based on QSFP+ breakout architectures. These AOCs provide a cost-effective and reliable means to extend network bandwidth.
- Importantly, the deployment of QSFP+ breakout technology allows for a effortless transition from legacy infrastructure to advanced networking requirements.
- Additionally, these AOCs offer several benefits such as reduced propagation time and improved signal integrity.
In conclusion, the use of Robust 4x10G SFP+ AOC Leveraging QSFP+ Breakout is a strategic approach to meet the evolving needs of high-speed data transmission.
QSFP Plus to 4x10G SFP Plus AOC
Ensure seamless connectivity with our read more high-performance QSFP+ to 4 x 10G SFP+ AOC . This network cable boasts a robust range of 15 meters, perfect for single-mode fiber installations. Designed with industry-leading optics, it delivers guaranteed data transmission at 10 Gigabit Ethernet (10GbE).
- Utilizing advanced design, this system guarantees minimal delay.
- Perfect for demanding applications requiring rapid communication, such as enterprise networks.
This Innovative 15M BLC QSFP+ to 4x10G SFP+ AOC
This innovative solution supports seamless connectivity between high-speed networks. Leveraging the advantages of Small Form Factor Pluggable (SI) optics, it offers exceptional performance and capacity.
- In addition, this solution is ideal for applications requiring high-density connectivity, such as data centers
- With its small form factor, it effectively utilizes available space within server racks.
Additionally, the use of Active Optical Cables (AOCs) provides low propagation time and lower signal loss over extended range.
10GbE Transceiver : QSFP+ to 4xSFP+ AOC, Active Optical Cable
A QSFP+ transceiver is a device that allows for high-speed data transmission over optical fiber. Notably, it converts electrical signals from a network interface card (NIC) into optical signals and vice versa. Active Optical Cables (AOCs) provide a cost-effective alternative to traditional copper cables, especially for long distances. This type of transceiver is commonly used in data centers, high-performance computing environments, and cloud infrastructure.
- Linking multiple network devices at ultra-high speeds
- Enabling seamless interoperability between different types of network equipment
- Boosting overall network performance and efficiency
Opting for the right QSFP+ transceiver is crucial for ensuring optimal network functionality. Factors such as data rate, distance, and connector type must be carefully considered.
QSFP+ Breakout Cable: 4x10G SFP+ AOC for High-Density Data Center Applications
In the ever-evolving landscape of data centers, bandwidth demands are constantly rising. To meet these demands, high-density infrastructure solutions are vital. A QSFP+ Breakout Cable, capable of transmitting 4x10G SFP+ data via an AOC (Active Optical Cable), presents a effective solution for maximizing data center utilization. These cables offer several advantages over traditional copper cabling, including reduced signal degradation and improved energy performance.
- Furthermore, QSFP+ Breakout Cables contribute to a cleaner, more organized data center environment by reducing the need for bulky copper cabling.
- As a result, these cables are ideal for applications requiring high-speed data transmission, such as data storage.
By leveraging QSFP+ Breakout Cables, data center operators can optimize their infrastructure's potential and effectively meet the ever-growing demands of modern applications.