High-Performance ECUs (HPCs)
Central compute nodes for mixed-critical workloads. We integrate middleware, build application-layer components and orchestrate timing-safe interfaces with ECUs and backend services.
Vehicle architectures are evolving from single-function ECUs to compute-centric platforms. We design and implement software that fits these architectures and scales across vehicle lines.
Central compute nodes for mixed-critical workloads. We integrate middleware, build application-layer components and orchestrate timing-safe interfaces with ECUs and backend services.
Consolidate functions and connect edge devices to the backbone. We architect safe partitioning, gateway logic, diagnostics and OTA-ready components.
Single-function controllers for body, chassis or powertrain domains. We configure BSW, tune communication stacks, develop and integrate safety-focused applications.
Our work spans from early concept and software architecture definitions to implementation, integration and support for series production projects.
Requirements capture, refinement and traceability for safety-critical features. Testable acceptance criteria aligned with ISO 26262/ASPICE practices.
Software Architecture for AUTOSAR Classic and Adaptive Platform based Projects. Interfaces, component split, timing and safety budgets defined across all domains.
Software integration, build and configuration management, debugging and test support.
We support OEMs and suppliers in the development of production-grade automotive software: from classic ECUs to domain and zonal controllers, up to high-performance computing (HPC) units.
We embed alongside OEM and supplier teams, keep interfaces and architectures lean, and run reproducible engineering processes that stay traceable from prototype to series. Engagements range from targeted work packages to sustained platform support.