Revolutionizing Data Center Connectivity: The Rise of 12G Mini-SAS HD AOC Active Optical Cable
Published:
2025-02-18
Enter the 12G Mini-SAS HD AOC Active Optical Cable—a game-changer in the world of data transfer.

In the ever-evolving landscape of data center technology, the need for high-speed, reliable, and efficient connectivity solutions is paramount. Enter the 12G Mini-SAS HD AOC Active Optical Cable—a game-changer in the world of data transfer. This advanced cable technology not only meets but exceeds the demands of modern data centers, offering unparalleled performance and scalability.
Key Features of 12G Mini-SAS HD AOC Active Optical Cable
The 12G Mini-SAS HD AOC Active Optical Cable is designed to meet the rigorous standards of today's data centers. It boasts a full-duplex, 4-channel, 850nm parallel active optical design, capable of transmitting data at rates of up to 12Gbps per channel. Compliant with SAS 2.1 and SAS 3.0 industry standards, as well as the SFF-8644 interface standard, this cable ensures seamless integration with existing infrastructure. Additional features include EEPROM support for serial ID functionality, differential AC-coupled high-speed data interfaces, and low power consumption of less than 1W per end.
Performance Benefits Over Traditional Cables
Compared to traditional copper cables, 12G Mini-SAS HD AOC Active Optical Cables offer several significant performance benefits. Firstly, their optical design enables longer transmission distances, with links of up to 100 meters over OM3 MMF. This is a game-changer for data centers, as it allows for more flexible and efficient cabling layouts. Additionally, the use of high-quality 850nm VCSELs and PIN PDs ensures superior signal integrity and bit-error-rate performance, leading to more reliable operations. The cables' operating case temperature range of 0°C to +70°C and 3.3V power supply voltage further enhance their versatility and reliability.
Applications in Modern Data Centers
The versatility of 12G Mini-SAS HD AOC Active Optical Cables makes them ideal for a wide range of applications in modern data centers. They are commonly used in high-speed I/O networks, servers, storage systems, workstations, and RAID configurations. Their ability to support high data transfer rates and long transmission distances makes them essential for high-performance computing environments. Furthermore, their hot-pluggable electrical interface and RoHS compliance ensure ease of use and environmental friendliness, respectively.

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