IoT Market

Enabling Intelligent Systems

at the Edge

From industrial automation and robotics to smart gateways and connected consumer devices, IoT systems increasingly rely on heterogeneous compute architectures to process data closer to where it is generated. These platforms must balance performance, power efficiency, and cost while supporting a growing mix of processors, accelerators, sensors, and connectivity technologies.

Baya helps architects build efficient, scalable IoT platforms with fabric IP and software-driven design tools that optimize communication across compute, memory, and I/O resources while meeting stringent power and area requirements.

Benefits of choosing us

Power-Efficient
Design

Optimize communication architectures to reduce power consumption in constrained and battery-operated environments.

Heterogeneous Processing

Enable efficient communication across CPUs, DSPs, AI accelerators, microcontrollers, and specialized processing engines.

Compact System Integration

Support highly integrated SoCs that balance performance, power, and silicon area.

Scalable Connectivity

Connect diverse interfaces, peripherals, memory, and processing resources through a unified fabric architecture.

Faster Architecture Exploration

Evaluate and optimize system architectures early using workload-driven simulation and design automation.

Faster Architecture Exploration

Evaluate and optimize system architectures early using workload-driven simulation and design automation.

Technical Benefits

Scale-Down Efficiency

Built-in QoS, congestion isolation, and physically-aware tiling deliver predictable tail latency — even under mixed workload pressure.

Real-Time Latency Guarantees

Built-in QoS, congestion isolation, and physically-aware tiling deliver predictable tail latency — even under mixed workload pressure.

Lower Power per Inference

Built-in QoS, congestion isolation, and physically-aware tiling deliver predictable tail latency — even under mixed workload pressure.

Target Applications

Product Spotlight

WeaverPro™ FabricStudio

IoT architects must balance performance, power, area, and cost across increasingly complex systems. FabricStudio helps teams explore, optimize, and deploy power-efficient fabric architectures tailored to their specific workloads and design constraints. Through workload-driven analysis, static validation, and automated optimization, FabricStudio enables architects to build efficient connectivity solutions for edge and embedded applications. FabricStudio provides architecture exploration, static analysis, simulation, and deployment capabilities to optimize fabric designs for specific system requirements.

Markets

Other
Markets

The IoT market is scaling toward 30 billion connected devices, and AI inference is rapidly shifting from the cloud to the edge.

Data Center

AI-driven data centers are scaling at an unprecedented pace, demanding efficient communication between processors, accelerators, memory, and networking components. Baya delivers scalable, high-bandwidth fabrics that eliminate data movement bottlenecks and enable the next generation of AI and cloud infrastructure.

Infrastructure

Modern infrastructure systems require flexible, reliable connectivity across diverse processing elements, memory, and I/O subsystems. Baya’s configurable fabrics provide the scalability, performance, and reliability needed for networking, communications, and high-performance infrastructure applications.

AI Acceleration

As AI models grow in size and complexity, efficient data movement becomes as critical as compute performance. Baya enables scalable AI accelerator architectures with optimized connectivity, chiplet-aware fabrics, and high-performance interconnect solutions designed for training and inference workloads.

Automotive

The shift toward software-defined vehicles and centralized compute architectures demands faster, more reliable communication between processors, sensors, memory, and accelerators. Baya provides scalable, efficient fabrics that enable high-performance automotive systems with the reliability and flexibility required for next-generation vehicles.

Dot Wave Push — Final