Vendor: SkyeChip Category: Network-On-Chip

Coherent Network-on-Chip (NOC)

Scalable and area efficient interconnect solution optimized for memory coherent systems

Overview

Scalable and area efficient interconnect solution optimized for memory coherent systems

Key features

  • Node Protocols: ACE4, ACE5 and CHI
  • Architected to significantly reduce routing congestion for many-core systems
  • Integrated with SkyeChip’s Home Agent and swappable with any other proprietary coherency handlers
  • Supports operating frequencies up to 2GHz with assists in high frequency timing closures
  • Supports source synchronous and synchronous clocking topologies
  • Integrates seamlessly with SkyeChip’s Non-Coherent NOC for partitioned interconnect systems

Specifications

Identity

Part Number
Coherent Network-on-Chip (NOC)
Vendor
SkyeChip
Type
Silicon IP

Provider

HQ: Malaysia

Learn more about Network-On-Chip IP core

Secure Multi-Path Routing with All-or-Nothing Transform for Network-on-Chip Architectures

Ensuring Network-on-Chip (NoC) security is crucial to design trustworthy NoC-based System-on-Chip (SoC) architectures. While there are various threats that exploit on-chip communication vulnerabilities, eavesdropping attacks via malicious nodes are among the most common and stealthy. Although encryption can secure packets for confidentiality, it may introduce unacceptable overhead for resource-constrained SoCs.

Why verification matters in network-on-chip (NoC) design

In this article, we will dive deeper into a comprehensive methodology for formally verifying an NoC, showcasing the approaches and techniques that ensure our NoC designs are robust, efficient, and ready to meet the challenges of modern computing environments.

SoC design: When a network-on-chip meets cache coherency

Many people have heard the term cache coherency without fully understanding the considerations in the context of system-on-chip (SoC) devices, especially those using a network-on-chip (NoC). To understand the issues at hand, it’s first necessary to understand the role of cache in the memory hierarchy.

Accelerating RISC-V development with network-on-chip IP

In the world of system-on-chip (SoC) devices, architects encounter many options when configuring the processor subsystem. Choices range from single processor cores to clusters to multiple core clusters that are predominantly heterogeneous but occasionally homogeneous.

Network-on-chip (NoC) interconnect topologies explained

Today’s complex system-on-chip (SoC) designs can contain between tens to hundreds of IP blocks. Each IP block may have its own data width and clock frequency and employ one of the standard SoC interface protocols: OCP, APB, AHB, AXI, STBus, and DTL. Connecting all these IPs is a significant challenge.

Frequently asked questions about NoC IP cores

What is Coherent Network-on-Chip (NOC)?

Coherent Network-on-Chip (NOC) is a Network-On-Chip IP core from SkyeChip listed on Semi IP Hub.

How should engineers evaluate this Network-On-Chip?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Network-On-Chip IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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