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Systellar Space

The design platform for complex engineering systems

2026-04-28

Product Introduction

  1. Definition: synapse™ by Systellar Space is a unified engineering workspace and Model-Based Systems Engineering (MBSE) platform designed specifically for the design and management of complex physical systems. It integrates system modeling, requirements management, documentation, and workflow automation into a single digital environment, categorized as an Integrated Engineering Environment (IEE) or Product Lifecycle Management (PLM) evolution for high-integrity industries.

  2. Core Value Proposition: Systellar Space exists to eliminate "coordination overhead" in complex hardware programs. By providing a unified digital backbone, synapse™ enables aerospace, defense, and industrial teams to achieve "engineering at the speed of software." It ensures full traceability from initial requirements to manufacturing data, utilizing git-like version control and automated verification pipelines to reduce iteration time and prevent costly design regressions.

Main Features

  1. Model-Based Systems Engineering (MBSE) with SysML v2: synapse™ implements powerful SysML v2 modeling capabilities without the traditional overhead of heavyweight legacy MBSE tools. Users can define hierarchical product breakdowns, system architectures, parts, attributes, and interfaces within a connected model. The platform features auto-generation of architecture diagrams directly from model data, ensuring that visual representations are always synchronized with the underlying technical parameters and system logic.

  2. Structured Requirements Management: Requirements are treated as structured, versioned data rather than static text. The platform allows for hierarchical breakdown structures where each requirement is linked to specific system parts, attributes, and interfaces. It supports custom fields, status tracking, and the definition of automated verification rules. This bidirectional traceability ensures that any change in a requirement is immediately reflected across the system model and associated documentation.

  3. Automated Documentation & Report Generation: synapse™ manages project documentation as a live component of the engineering context. By connecting to documentation providers and using custom .docx templates, the platform can automatically generate technical reports, deliverables, and compliance evidence. Because the documentation is linked to the "single source of truth" (the system model), reports are always current, eliminating the manual effort of updating tables and values across disparate files.

  4. Workflow Automation & CI/CD for Hardware: The platform allows engineers to build automation workflows that harness model data for repeatable tasks, such as mass budget calculations, power analysis, and verification checks. It supports the connection of external simulations, scripts, and repositories, centralizing execution within the synapse™ environment. This creates a CI/CD-style pipeline (Continuous Integration/Continuous Deployment) for physical systems, where every design change can be automatically validated against requirements.

  5. Git-like Version Control & Concurrent Design: synapse™ brings software development rigor to hardware engineering through robust version control. Teams can track granular changes across models, requirements, and documents. The platform supports detailed "diff" reviews before merging changes, version history exploration, and project cloning. This enables concurrent design, where multiple engineering disciplines can iterate simultaneously without the risk of overwriting critical data or introducing inconsistencies.

Problems Solved

  1. Pain Point: Fragmented Toolchains and Data Silos: In traditional engineering, data is scattered across spreadsheets, CAD models, legacy MBSE tools, and email threads. synapse™ solves this by providing a unified digital backbone where all system information resides in a shared, structured workspace, preventing the "disconnected tools" problem that leads to stale data.

  2. Target Audience: The platform is built for Systems Engineers, Aerospace Designers, Defense Program Managers, Safety-Critical Software Engineers, and Multi-disciplinary Engineering Leads in high-complexity sectors such as NewSpace, Automotive (EV/AV), Railway, and Medical Device manufacturing.

  3. Use Cases:

  • Satellite Constellation Development: Managing thousands of requirements across multiple subsystems and suppliers while maintaining a live mass and power budget.
  • Defense System Integration: Ensuring full traceability and audit trails for regulatory compliance and safety-critical certification (e.g., DO-178C or ISO 26262).
  • Rapid Prototyping in Automotive: Using automated workflows to run regression tests on system architecture when a physical component attribute changes.

Unique Advantages

  1. Differentiation: Unlike legacy MBSE tools that are often criticized for high learning curves and isolation from the actual engineering workflow, synapse™ is designed for usability and integration. It combines the rigor of SysML v2 with the collaborative flexibility of modern software development platforms (like GitHub or GitLab), making it accessible to the entire engineering team, not just specialized systems engineers.

  2. Key Innovation: The core innovation lies in the "Single Connected Engineering Workspace" that treats every engineering artifact—from a requirement statement to a workflow script—as a node in a versioned, relational graph. This allows for real-time impact analysis; for example, changing a battery's capacity attribute can automatically trigger a workflow to re-verify the range requirements of a vehicle and update the corresponding technical specification document.

Frequently Asked Questions (FAQ)

  1. What is synapse™ by Systellar Space? synapse™ is a unified engineering workspace designed for complex physical systems in industries like aerospace and defense. It combines MBSE, requirements management, and version control into one platform to streamline the design-to-manufacturing process and ensure full data traceability.

  2. How does Systellar Space improve engineering iteration time? Systellar Space reduces iteration time by up to 80% through automated workflows and CI/CD-style verification pipelines. By linking requirements directly to the system model, it eliminates manual updates and ensures that inconsistencies are discovered early in the design phase rather than during manufacturing or testing.

  3. Does synapse™ support SysML v2? Yes, synapse™ provides powerful SysML v2 modeling capabilities. It allows engineers to model hierarchical system breakdowns and define interfaces and attributes without the complexity of traditional, heavyweight MBSE software, while maintaining full integration with requirements and documentation.

  4. Who are the partners and backers of Systellar Space? Systellar Space is a highly credible engineering platform backed by prestigious organizations including Techstars, the European Space Agency Business Incubation Centre (ESA BIC), Microsoft for Startups, and the NVIDIA Inception program.

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