asian male technician in sterile coverall holds wafer that reflects many different colors with gloves and check it at semiconductor manufacturing plant
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Modernize manufacturing

Semiconductor manufacturers are setting the stage for a AI-enabled digital world, delivering chips that power the devices that keep business and life moving. But these companies are also under rising pressure to innovate faster, be more cost-effective and work around market cyclicality with a constrained workforce. Belden empowers semiconductor fabs and foundries to use data and smart diagnostics to improve manufacturing, operations and maintenance so they can produce quality, cutting-edge technologies, such as GPUs, faster.
25 of semiconductor plants name digital transformation as a top priority
15 global semiconductor CAGR growth between 2023 and 2032
30 wafers produced per month globally
  • Our Capabilities
  • Network Resilience
  • Edge Computing
  • Network Convergence
  • Network Slicing
close-up of silicon die are being extracted from semiconductor wafer and attached to substrate by pick and place machine. computer chip manufacturing at fab. semiconductor packaging process.

Our Capabilities

Disruption isn’t an option when your factory provides such a mission-critical service. As new semiconductor ecosystems emerge, chip makers must keep pace with new technology—and their networks must keep up with demands placed on the plant’s people, systems and processes. Belden prepares your factory’s network for continuity, reliability, redundancy and the right connections so you can support intelligent operation and automation.
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industry 4.0 modern factory: project engineer talks to female operator who controls facility production line, uses computer with screens showing ai, machine learning enhanced assembly process

Network Resilience

With such high demand for semiconductors, continuous production isn’t a choice—it’s a requirement.

 

A resilient network has mechanisms and infrastructure in place to detect and take over in case of failure to ensure “zero interruption” production. Modern electronics depend on a stable supply of semiconductors, and resilient networks make sure there’s no delay.

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engineers at lathe controls in factory

Edge Computing

Precision is critical in the semiconductor manufacturing industry.

 

Instead of sending sensitive data out to centralized systems for processing, edge computing keeps it onsite to maintain ultra-low latency. This ensures seamless data flow for analysis and decision-making, while also guarding against possible breaches and interception.

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Network Convergence

From design and inspection to production, semiconductor manufacturing is made up of critical phases that impact each other.

 

Network convergence drives innovation in semiconductor manufacturing by enabling data to flow through every phase of operation. This empowers employees to make immediate production adjustments and leverage new technologies that need real-time data from a variety of systems.

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Network Slicing

Semiconductor manufacturing depends on precise coordination between machines, systems and sensors to carry out processes like photolithography and wafer inspection.

 

Network slicing dedicates specific resources to these processes, tailoring latency, bandwidth and security to ensure reliability and latency. This eliminates interference and delays that can disrupt manufacturing.

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