According to The Insight Partners' research, the South & Central America High Speed Cable Market was valued at US$ 793.3 Million in 2024 and is expected to reach US$ 1,433.0 Million by 2031, registering a CAGR of 9.1% from 2025 to 2031.
Emergence of smart cities and growing deployment of data centers are among the critical factors attributed to drive the South & Central America high speed cable market growth.
With an increase in the importance of technology, many governments and private organizations are taking initiatives for the development of smart cities. Intelligent traffic management, intelligent utility management, intelligent dwellings and workplaces, connected public services, and others characterize these cities. They use information and communication technologies (ICT) to provide better public wellbeing, service levels, economic development, and sustainability. Furthermore, enhanced safety levels, efficient public utilities, improved public transport services, efficient energy utilization, economic development opportunities, and data-driven decision-making are a few of the other benefits of smart cities. Smart cities utilize wired and wireless internet infrastructure along with various connected devices such as cameras, sensors, recorders, and other smart devices. Connected devices deployed in smart cities would also require data centers for supporting various digital operations. For setting up the internet infrastructure and establishing data centers, high-speed cables are used at a large scale. Thus, the growing need for the optimum utilization of resources is paving the way for smart cities.
On the contrary, the high cost of advanced optical and active cables hampers the growth of the South & Central America high speed cable market.
South & Central America High Speed Cable Market Segmentation Analysis:
- By Type, the South & Central America High Speed Cable Market is segmented into Direct Attach Copper (DAC) Cable, Active Optical Cables (AOC), Active Copper Cables, PCIe Cable, Active Electric Cable (AEC), and SAS Cable. The Active Optical Cables (AOC) segment is projected to expand at 10.4% CAGR during 2025 - 2031.
- By Application, the South & Central America High Speed Cable Market is segmented into Switch to Switch Interconnect, Switch to Server, and Server to Storage Interconnect. The Switch to Switch Interconnect segment is projected to expand at 8.7% CAGR during 2025 - 2031.
By country, the South & Central America High Speed Cable Market is categorized into Brazil, Argentina, and the Rest of South & Central America. Brazil is projected to expand at 9.1% CAGR during 2025 - 2031.
Key players operating in the High Speed Cable Market are Molex LLC, TE Connectivity Ltd, NVIDIA Corp, Samtec Inc, Axon Cable SAS, Amphenol Corporation, JPC Connectivity, Shenzhen Sopto Technology Co., Ltd., Volex Plc, and EDGE Optical Solutions, among others.
- In April 2025, Amphenol Communications Services (ACS), a global leader in high-performance interconnect solutions, and Semtech Corporation (Nasdaq: SMTC), a leading provider of high-performance semiconductor, Internet of Things (IoT) systems and cloud connectivity service solutions, introduced a leading-edge 1.6T OSFP Active Copper Cable (ACC) product featuring Semtech's CopperEdge 224G/lane linear equalizer/redriver ICs, targeted for use in next-generation AI/ML and data center infrastructure.
- In October 2022, Molex, a leading global electronics leader and connectivity innovator, announced the release of its NearStack PCIe Connector System and Cable Assemblies for next-gen servers. Developed in collaboration with members of the Open Compute Project (OCP), NearStack PCIe replaces traditional paddle-card cable solutions to optimize signal integrity and improve system performance. A standout feature of NearStack PCIe is its direct-to-contact twinax termination, which eliminates the need for paddle cards within the cable assembly. Unlike competing cable jumpers, which are terminated by hand-soldering cables onto a PCB paddle card, NearStack uses a fully automated wire termination process. This high-precision process improves manufacturing efficiencies, repeatability, and signal integrity.
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