In the current digital era, the demand for bandwidth is exploding. The global 100G DAC (Direct Attach Copper) cable market has become the backbone of high-speed data center infrastructure. As AI-driven workloads and 5G telecommunications expand, the 100Gbps QSFP28 DAC offers an unparalleled balance of cost, power efficiency, and low-latency performance.
Unlike optical transceivers, 100G DAC cables utilize copper twinaxial cables to transmit data, making them the preferred choice for short-distance (up to 5m-7m) interconnects within server racks. This localized application is critical for hyperscale data centers in North America, Europe, and Asia-Pacific, where minimizing power consumption and heat dissipation is a top priority.
High-frequency trading and AI training clusters require massive throughput. The 100G DAC is essential for ToR (Top-of-Rack) switch-to-server connections where millisecond latencies matter.
Global enterprises are shifting from expensive AOC (Active Optical Cables) to DAC for short-range links to reduce TCO (Total Cost of Ownership) by up to 60%.
Procurement departments are no longer satisfied with generic products. There is a surging demand for OEM 100gb Dac Cable Factory services to provide custom lengths, specialized labeling, and multi-vendor compatibility.
Kocent Optec Limited, established in 2012 in Hong Kong as a hi-tech communication enterprise, is one of China's leading fiber optic termination product manufacturers and solution providers. We are dedicated to developing and manufacturing fiber optic communication products ranging from passive to active categories for telecommunication networks, enterprise networks, and data centers.
With more than 13 years of experience in manufacturing telecommunication fiber optic products, we strictly follow industry standards (Telcordia, IEC, TIA/EIA) using mature scientific methods. We ensure that 100% of products are tested and inspected before shipment, guaranteeing reliability for our global clientele.
Advanced polishing and 3D interference testing for high-density data center connectors.
Precision automated assembly for 100G QSFP28, 200G, and 400G active/passive modules.
In-house production of FDB, FOSC, and Patch Panels for total solution control.
Our OEM/ODM service allows you to leverage your strengths, core competencies, and technology expertise to expand revenue while reducing costs. For the 100G DAC and SFP+ modules, KCO Fiber provides customized solutions for all needs and specifications:
Our DAC cables are engineered to be 100% compatible with brands like Cisco, Huawei, ZTE, H3C, Juniper, HP, Dell, Arista, and more. We provide the EEPROM coding to match any switch environment.
Custom cable lengths (0.5m to 7m), specific cable colors (Black, Blue, Orange), unique labeling, and logo printing for your own brand identity.
Support for optical design, mechanical design, PCB layout, and software/firmware design tailored to specific industrial application scenarios.
Being based in the global manufacturing hub allows us to source premium raw materials (like high-grade copper and precise chips) at competitive rates, ensuring a stable 100gb Dac Cable Pricelist for our partners.
From initial design to sample production, our integrated facility speeds up the R&D cycle, helping you get your products to market faster.
We combine China's massive production capacity with Hong Kong's rigorous international management standards. Every DAC cable undergoes BER (Bit Error Rate) testing and SI (Signal Integrity) verification.
Deploying 100G QSFP28 DACs for switch-to-switch and switch-to-server interconnects within the same or adjacent racks. This significantly reduces cooling costs due to the passive nature of the cable.
In smaller, localized 5G edge nodes, space and power are at a premium. The compact design and zero-power consumption of DAC cables make them ideal for these environments.
Connecting core switches to distribution switches in large corporate campuses where high-speed backbone throughput is required without the complexity of fiber optics for short runs.
Supporting high-speed storage protocols over Ethernet, providing the low-latency link necessary for modern NVMe-over-Fabrics (NVMe-oF) storage solutions.