
( Brand: Hpc Optics ), ( Part Type: Cable ), ( Color: Black ), ( UPC: 643217958407 )
The HPC Optics 643217958407 Allied TTVJ-AT-SP10-TW1 SFP Twinax Cable is a high-performance, 10Gbps copper data transmission solution designed for short-reach applications. This passive cable features a tubing design, which provides excellent strain relief and protection for the connected SFP transceivers.
The cable is made up of two twisted pair copper conductors, specifically designed for use with the SFP form factor transceivers. The Twinax design ensures reliable and fast data transfer by providing a balanced, shielded signal path between the transmitter and receiver, minimizing signal degradation and electromagnetic interference.
Measuring one meter in length, this cable is suitable for use in data center environments where short cabling runs are required. With a maximum bandwidth of 10Gbps, this cable can support high-speed data transfer and is an ideal solution for applications such as server-to-switch connectivity or storage area networks (SAN).
The cable is compliant with the SFP Twinax standard and is backed by HPC Optics' commitment to quality and reliability. The easy-to-install design makes it a popular choice for network administrators and IT professionals seeking a reliable, high-speed cabling solution for their data center infrastructure.
With a robust and durable construction, the HPC Optics 643217958407 Allied TTVJ-AT-SP10-TW1 SFP Twinax Cable offers excellent value for money, combining high performance with affordability. It is a must-have component for any data center environment where high-speed, short-reach data transmission is required.
This analysis will discuss the advantages and disadvantages of purchasing a Allied Telesis AT-SP10TW1 SFP Twinax Cable (10G, 1m, Passive) with the product identifier 643217958407. This cable is a crucial component for high-performance computing (HPC) applications, ensuring fast data transfer rates for server interconnects.
II. Pros (Advantages):1. Faster Data Transfer Rates: This Twinax cable supports a data transfer rate of 10 Gigabits per second (10G), providing high-speed connectivity for large-scale HPC applications.
2. Durable Design: The cable is made from a durable twinax design, which minimizes signal loss and ensures reliable data transfer. This durability is critical for HPC environments, where cables are often subjected to heavy usage.
3. Cost-Effective: Compared to other high-performance, longer cables, the 1m passive cable offers a cost-effective solution for many HPC applications.
III. Cons (Disadvantages):1. Short Length: This particular cable is only 1 meter long, which may not be sufficient for some applications. Longer cable lengths will require additional cost for multiple connections or more expensive extended length cables.
2. Limited Compatibility: Although compatible with Allied Telesis SFP modules, it may not be compatible with all third-party SFP modules. It's essential to check the compatibility before purchasing the cable.
IV. ConclusionThe Allied Telesis AT-SP10TW1 SFP Twinax Cable (10G, 1m, Passive) offers several advantages, such as faster data transfer rates and durability, making it an ideal choice for HPC applications. However, the cons, including its short length and limited compatibility, should be taken into consideration.
V. RecommendationIf you need a cost-effective, high-speed cable for HPC applications and your connection distances are less than 1 meter, the Allied Telesis AT-SP10TW1 SFP Twinax Cable is a wise investment. To ensure full compatibility, check that it is compatible with your specific HPC hardware and SFP modules before purchasing. If your connection length is greater than 1 meter, consider investing in longer active or passive twinax cables from trusted vendors to accommodate your requirements.
Allied AT-SP10TW1 100% Compatible 10G SFP to 1-Meter 10GBASE-CU Twinax Passive 1m DAC Cable, Fully Compatible with Televise AT-SP10TW1, Direct-Attach Cable DAC, 10Gbps Data Rate, Twinax, Passive, 1 Meter, Connectors, LIFETIME WARRANTY Connectors.