This company designs custom Application-Specific Integrated Circuits (ASICs) for high-performance computing (HPC) in AI and automotive Advanced Driver-Assistance Systems (ADAS). They specialize in chiplet architectures to optimize performance and efficiency for specific applications.
Funding
Funding not disclosed
Founders
Product
Problem
Manufacturing large, monolithic chips for high-performance computing applications like AI and server systems is increasingly complex and expensive as semiconductor technology advances to smaller nodes. This complexity increases development costs and time-to-market for new products.
Solution
AdoreSys provides custom Application-Specific Integrated Circuit (ASIC) design and turnkey solutions, specializing in chiplet architectures to mitigate the challenges of monolithic designs. By partitioning systems into smaller, modular chiplets, AdoreSys enables the reuse of existing designs, lowers development costs, and accelerates time-to-market. They offer a range of services including architecture planning, design integration, software and firmware development, verification, physical design, fabrication, packaging, and testing. AdoreSys also provides custom bridge designs to optimize data transfer speeds and power efficiency between chiplets.
Target Audience
AdoreSys serves Car OEMs, Datacenter OEMs, Tier1 & Tier2 chip providers requiring custom ASIC solutions for AI high-performance computing (HPC) and automotive Advanced Driver-Assistance Systems (ADAS).
Features
- Custom SoC and turnkey services from architecture to mass production
- Subsystem solutions with modular subsystems customized to optimize PPA (Performance, Power, Area)
- Hardening services for PPA-critical functional blocks, enhancing signal integrity and manufacturability
- Chiplet technology expertise, including chiplet partitioning and Die-to-Die (D2D) interface implementation (UCIe)
- Functional safety compliance (FuSa) expertise for automotive ADAS applications (ISO 26262)
- ARM-based CPU, GPU & NoC computing subsystem development
- Low power design implementation and verification