DPU Design Services

End-to-end DPU design expertise. From specification to silicon

Kalray Design Services accelerate the development of custom DPU chips by combining deep design expertise with production-ready technologies. From architecture up to tape-out and board production, we help customers de-risk projects and significantly shorten time-to-market.

END TO END

Architecture to silicon to system, one team

The same engineering team that designs Kalray's own DPUs is available to support your custom silicon program with proven methodologies, leading-edge process node experience, and the full Kalray IP portfolio at the ready.

1. Define The Acceleration Needs Of Your Use Case

Outcome: Clear workload definition and performance targets.

2. Translate insights into a modular architecture plan

Outcome: Validated architecture blueprint optimized for your workload.

3. Create And Validate Your Customized DPU

Outcome: Functional prototype ready for integration.

4. Deploy You DPU At Speed And Scale

Outcome: Full deployment with lifecycle support and optimization.
Our Services

From spec to silicon

Kalray Design Services accelerate the development of custom DPU chips by combining deep design expertise with production-ready technologies. From architecture up to tape-out and board production, we help customers de-risk projects and significantly shorten time-to-market.

  • 01 Specification & Architecture
  • 02 Front-End Design & Verification
  • 03 Design for Test (DFT)
  • 04 Physical Design
  • 05 Emulation, Prototyping, Validation
  • 06 Software Development
[01]

  1. Build customized dPUs for any workload

Silicon-proven specification and architecture expertise to define optimal system foundations. Requirements analysis, architecture definition, hardware and software partitioning, aligned with target workloads.

Outcome: system architecture ready for efficient downstream design
[02]

  1. Front-End Design & Verification

Robust front-end design and verification expertise transforming architecture into high-quality, silicon-ready RTL. Subsystem specification, RTL development, IP integration, top-level assembly.

Outcome: synthesizable RTL enabling first-time-right silicon
[03]

  1. Design for Test (DFT)

Comprehensive DFT expertise ensuring testability, quality, and yield of complex SoCs. Scalable test strategies including scan, BIST, and advanced compression techniques.

Outcome: fully testable design with high yield
[04]

  1. Physical Design

Advanced physical design expertise transforming RTL into high-performance, manufacturable silicon ready for tape-out. Synthesis, floorplanning, place-and-route, CTS, sign-off, optimized for advanced process nodes.

Outcome: sign-off-ready design, ready for tape-out
[05]

  1. Emulation, Prototyping, Validation

Emulation, prototyping, and system validation to secure early software bring-up and de-risk SoC development. Hardware emulation and FPGA prototyping enable full-system execution before silicon.

Outcome: validated system with early software enablement
[06]

  1. Software Development

Comprehensive software development for seamless HW/SW co-design and full system bring-up, from low-level firmware and boot code through drivers, OS integration, middleware, and SDKs.

Outcome: complete software and SDK ecosystem for rapid deployment
Our Services

From spec to silicon

Kalray Design Services accelerate the development of custom DPU chips by combining deep design expertise with production-ready technologies. From architecture up to tape-out and board production, we help customers de-risk projects and significantly shorten time-to-market.

  • 01 Specification & Architecture
  • 02 Front-End Design & Verification
  • 03 Design for Test (DFT)
  • 04 Physical Design
  • 05 Emulation, Prototyping, Validation
  • 06 Software Development
[01]

  1. Build customized dPUs for any workload

Silicon-proven specification and architecture expertise to define optimal system foundations. Requirements analysis, architecture definition, hardware and software partitioning, aligned with target workloads.

Outcome: system architecture ready for efficient downstream design
[02]

  1. Front-End Design & Verification

Robust front-end design and verification expertise transforming architecture into high-quality, silicon-ready RTL. Subsystem specification, RTL development, IP integration, top-level assembly.

Outcome: synthesizable RTL enabling first-time-right silicon
[03]

  1. Design for Test (DFT)

Comprehensive DFT expertise ensuring testability, quality, and yield of complex SoCs. Scalable test strategies including scan, BIST, and advanced compression techniques.

Outcome: fully testable design with high yield
[04]

  1. Physical Design

Advanced physical design expertise transforming RTL into high-performance, manufacturable silicon ready for tape-out. Synthesis, floorplanning, place-and-route, CTS, sign-off, optimized for advanced process nodes.

Outcome: sign-off-ready design, ready for tape-out
[05]

  1. Emulation, Prototyping, Validation

Emulation, prototyping, and system validation to secure early software bring-up and de-risk SoC development. Hardware emulation and FPGA prototyping enable full-system execution before silicon.

Outcome: validated system with early software enablement
[06]

  1. Software Development

Comprehensive software development for seamless HW/SW co-design and full system bring-up, from low-level firmware and boot code through drivers, OS integration, middleware, and SDKs.

Outcome: complete software and SDK ecosystem for rapid deployment

1. Define The Acceleration Needs Of Your Use Case

Outcome: Clear workload definition and performance targets.

2. Translate insights into a modular architecture plan

Outcome: Validated architecture blueprint optimized for your workload.

3. Create And Validate Your Customized DPU

Outcome: Functional prototype ready for integration.

4. Deploy You DPU At Speed And Scale

Outcome: Full deployment with lifecycle support and optimization.

1. Define The Acceleration Needs Of Your Use Case

Outcome: Clear workload definition and performance targets.

2. Translate insights into a modular architecture plan

Outcome: Validated architecture blueprint optimized for your workload.

3. Create And Validate Your Customized DPU

Outcome: Functional prototype ready for integration.

4. Deploy You DPU At Speed And Scale

Outcome: Full deployment with lifecycle support and optimization.

Benefits of building DPUs with MPPA

A Ready-Made Architecture For Building DPU Accelerators

No need to start from scratch

A shorter path to deployment

Reusable IP, pre-integrated subsystems, and standard toolchains

A flexible foundation that adapts to rapidly evolving workloads

Without sacrificing efficiency or control.

Kalray brings unmatched expertise in designing and delivering specialized DPU accelerators

Whether you need a fully customized DPU, a semi-custom acceleration card, or chiplets to integrate into your own SoC, Kalray’s co-design teams are ready to collaborate. Our proven track record includes successful deployments across AI, networking, storage, and secure computing—helping customers unlock domain-specific performance without the delays or costs of a full ASIC program.
  • 500+ engineering-years invested in MPPA development, covering silicon, boards, and software
  • Modular design approach, enabling rapid adaptation to new workloads and form factors
  • Shorter time-to-market than FPGAs or ASICs, with lower development risk
  • Flexible delivery options: standalone chips, chiplets, or fully integrated PCIe acceleration cards
  • Proven architecture deployed in AI, networking, security, and storage environments
  • End-to-end co-design support, from architectural definition to hardware, firmware, and SDKs
  • Developer-friendly programmability, with no RTL expertise required
  • Trusted by leading innovators across cloud, telecom, defense, and embedded systems

From Architecture to Real-World Impact

Discover how Kalray’s MPPA®-based DPUs power domain-specific acceleration for today’s most demanding workloads

AI & Compute

Accelerate AI inference, training, and compute-heavy workloads with tailored, energy-efficient DPUs.

Storage Acceleration

Optimize data throughput and reduce latency for next-generation storage systems.

5G Radio Access Networks (RAN)

Enable low-latency, high-bandwidth processing for software-defined 5G infrastructure.

Security Acceleration

Deliver scalable, high-performance encryption and secure data processing at the edge.
Analyst Recognition

GigaOm DPU Sonar Report

Recognized as a Leader and Fast Mover for innovative architecture and strong performance across AI and data workloads.

Quality Certifications

ISO 9001 certified

Interoperability validations across the storage, AI, and networking ecosystem.

CUSTOMER PROOF

Deployed at 50+ customers

Customers across industries have deployed Kalray technology for a variety of workloads and use cases.