Battery Simulation and Optimization Platform
From requirements and duty cycles to a validated battery design
Define your application, constraints, and priorities. The platform evaluates configurations, simulates real duty cycles, and predicts performance and lifetime — delivering optimized, ready-to-build battery systems.
< 2s
Optimization
Generate and evaluate battery configurations in seconds under your defined constraints and priorities.
330+
Validated Cell Sources
Access a curated database of cell specifications from leading suppliers, ready to use.
3D
Complete Pack Layout
Automatically get battery architecture and 3D topology from cell to pack level, all included.
< 1min
Simulation
Simulate duty cycles and validate performance, limits, and lifetime in real operating conditions.
Define your requirements.
The system adapts.
Start from your application constraints and expected performance.
Define requirements at system level, and let the platform explore configurations across technologies to identify the best trade-offs.
Requirements
Define voltage, energy, current, and other targets as minimum, maximum, or ranges.
Priorities
Set the importance of cost, performance, and lifetime to guide the optimization.
Technology Impact
Evaluate how cell chemistry and thermal strategies affect performance, size, and mass.
Constraints
Restrict the solution space to relevant technology, formats, or design boundaries.
Accelerate battery design exploration
Battery systems involve multiple interacting parameters that are difficult to evaluate upfront.
Explore design options, test configurations, and converge toward optimal solutions with fast, iterative analysis.
Fast and deterministic
Generate consistent battery designs in minutes using physics-based models, without relying on approximations or heuristics.
Assisted design
Leverage built-in AI guidance to explore configurations and extract meaningful results without manual trial-and-error.
Battery Geometry and Architecture
Explore the physical structure of the battery system, from cell arrangement to full pack layout.
Visualize geometry, interfaces, and integration features to ensure compatibility with your application constraints.
3D Topology
Visualize cell, module, and pack arrangement, including spatial constraints and internal architecture.
External Interface
Define and export battery envelope, connectors, and key integration features for system-level design.
Mechanical Definition
All components are dimensioned and positioned, enabling realistic packaging and structural evaluation.
Cell-to-Pack Architecture
Generate complete battery architecture from cell selection to pack-level configuration.
Battery Simulation and Virtual Validation
Validate battery designs through time-resolved simulation.
Apply real duty cycles and boundary conditions to evaluate performance, thermal behavior, and lifetime before prototyping.
Duty Cycles
Use predefined profiles or define custom time-dependent load scenarios to simulate real application behavior.
Boundary Conditions
Evaluate battery performance under varying system constraints, ambient conditions, and operating limits.
Thermal Modeling
Simulate heating and cooling effects to assess temperature evolution and its impact on performance and lifetime.
Performance Maps
Generate performance maps and key metrics to support system design, integration, and decision-making.
From Design to Production
Move from validated design to a fully defined product.
Access complete system documentation, configure production parameters, and prepare battery solutions for quotation and manufacturing.
Bill of Materials
Access a complete and structured bill of materials covering main components from cells to pack-level elements.
System Features
Review integrated functionalities such as monitoring, control, and auxiliary systems supporting operation and maintenance.
Quotation Readiness
Define prototyping and production volumes to generate configurations aligned with commercial and industrial requirements.
Compliance and Finalization
Review specifications, constraints, and key documentation required to finalize the battery design before ordering.
Designed for real-world applications
Each application comes with specific constraints and performance targets. Define your requirements and transform battery sizing into a structured, repeatable engineering process.
Heavy-duty
Define operating limits, select preferred chemistries, and evaluate battery designs based on performance and expected lifetime.
Automotive
Evaluate battery designs beyond nominal specifications, simulating performance under dynamic charging and discharging scenarios.
Marine
Compare cooling strategies and assess their impact on performance, mass, and integration within marine applications.
Start designing your battery system
Define your requirements, simulate performance, and generate optimized battery designs in a single workflow.