Specialized Modules. One Connected Platform.
From digital modeling and operational planning to orchestration, control, physical execution, and continuous improvement, each Cartesian module performs a specific role within one connected operating system.
Start with the module your operation needs today. Add the next capability when the operating case supports it—without rebuilding the warehouse around a single automation system.
Understand what each layer does before learning the module name. That keeps the architecture simple, even as the platform expands.
From model to execution—and back again.
Digital Twin
Shared Operating Context + Planning
Responsive Local Execution
Omni Rack Robotics
Operational Intelligence
One Platform. Five Specialized Module Roles.
The module names map directly to the operating lifecycle. CarteLogic is intentionally nested inside CarteEdge because it is the control capability within the broader orchestration and control layer.
eCarte+
Digital Twin
Recreate the operation using facility, inventory, workflow, and order data. Test capacity, expose bottlenecks, compare alternatives, and validate proposed changes before they reach the live floor.
CarteCloud
Shared Operating Context + Planning
Bring orders, inventory, priorities, operating rules, constraints, and capacity into a common context so enterprise demand can be translated into sequenced work.
CarteEdge
Responsive Local Execution
Coordinate tasks, resources, routes, workflows, robots, lifts, and connected equipment close to the live warehouse operation.
Control capability within CarteEdge that applies equipment-level command, state, protection, and movement logic to connected devices.
Carte+
Omni Rack Robotics
Extend the platform into rack-native physical execution for storage, retrieval, vertical access, and aisle-to-aisle inventory movement in compatible warehouse environments.
CarteIntel
Operational Intelligence
Organize live events and telemetry into visibility across throughput, utilization, asset health, exceptions, bottlenecks, and modeled-versus-live performance.
A Connected Operating Loop. Not a Rigid Product Sequence.
Each module can create value independently, but the platform becomes more powerful when modeling, planning, orchestration, control, execution, and operational intelligence share the same live operating context.
CarteEdge
Coordinates local warehouse execution across priorities, workflows, resources, robots, and connected automation.
Applies the equipment-level command, state, protection, and movement logic required to turn coordinated work into protected physical execution.
Live operating state feeds back into the platform so the next plan, orchestration decision, model, or control action can respond to what is actually happening in the warehouse.
Intelligence and Control Across the Operating Loop.
CarteCloud, CarteEdge, and CarteIntel form the software backbone between enterprise intent and physical execution. CarteLogic sits within CarteEdge as the control capability closest to the equipment.
CarteCloud
Shared Operating Context + Planning
Align enterprise demand with available system capacity. Translate orders, inventory, priorities, commitments, and operating rules into sequenced work for execution.
CarteEdge
Responsive Local Execution
Dispatch tasks, assign resources, adapt routes, and synchronize robots, lifts, transfer paths, and connected automation close to the live operation.
Equipment-level command, state, protection, and movement logic.
CarteIntel
Operational Intelligence
Organize live events and telemetry into operational visibility across throughput, utilization, system health, exceptions, bottlenecks, and modeled-versus-live performance.
Model the Operation. Validate Change Before Deployment.
eCarte+ recreates warehouse conditions digitally so teams can test throughput, capacity, bottlenecks, workflow changes, and automation alternatives before making physical changes.
Model the Real Operation
Facility, inventory, workflows, labor patterns, systems, constraints, and demand.
Configure the Proposed System
Automation, work points, routing, storage, workflow logic, and integration assumptions.
Run Real Demand Scenarios
Test throughput, queues, congestion, peaks, resource utilization, and operating alternatives.
Compare Model and Reality
Use live operating data and CarteIntel insight to investigate gaps and validate future changes.
Extend the Platform Into Physical Execution.
Carte+ brings rack-native storage, retrieval, vertical access, and aisle-to-aisle movement into compatible warehouse environments, extending Cartesian intelligence into physical execution without making a warehouse rebuild the starting point.
Work With Existing Storage
Use compatible rack environments as the basis for automation instead of replacing the entire storage system.
Move Inventory to the Work
Automate retrieval and return workflows that otherwise depend on repeated manual travel.
Unlock More of the Rack
Use vertical access and aisle-to-aisle movement to expand usable storage and robotic reach.
Stay Connected to the Platform
Carte+ executes physical work as part of the same operating loop used for planning, orchestration, and improvement.
Start With the Constraint. Add the Module That Solves It.
Cartesian can begin with your current operation, identify the strongest opportunity, and determine which platform module should be introduced first—from digital modeling and planning to orchestration, control, and physical execution.
Specialized Modules. One Connected Platform.
From digital modeling and operational planning to orchestration, control, physical execution, and continuous improvement, each Cartesian module performs a specific role within one connected operating system.
Start with the module your operation needs today. Add the next capability when the operating case supports it—without rebuilding the warehouse around a single automation system.
Understand what each layer does before learning the module name. That keeps the architecture simple, even as the platform expands.
From model to execution—and back again.
Digital Twin
Shared Operating Context + Planning
Responsive Local Execution
Omni Rack Robotics
Operational Intelligence
One Platform. Five Specialized Module Roles.
The module names map directly to the operating lifecycle. CarteLogic is intentionally nested inside CarteEdge because it is the control capability within the broader orchestration and control layer.
eCarte+
Digital Twin
Recreate the operation using facility, inventory, workflow, and order data. Test capacity, expose bottlenecks, compare alternatives, and validate proposed changes before they reach the live floor.
CarteCloud
Shared Operating Context + Planning
Bring orders, inventory, priorities, operating rules, constraints, and capacity into a common context so enterprise demand can be translated into sequenced work.
CarteEdge
Responsive Local Execution
Coordinate tasks, resources, routes, workflows, robots, lifts, and connected equipment close to the live warehouse operation.
Control capability within CarteEdge that applies equipment-level command, state, protection, and movement logic to connected devices.
Carte+
Omni Rack Robotics
Extend the platform into rack-native physical execution for storage, retrieval, vertical access, and aisle-to-aisle inventory movement in compatible warehouse environments.
CarteIntel
Operational Intelligence
Organize live events and telemetry into visibility across throughput, utilization, asset health, exceptions, bottlenecks, and modeled-versus-live performance.
Intelligence and Control Across the Operating Loop.
CarteCloud, CarteEdge, and CarteIntel form the software backbone between enterprise intent and physical execution. CarteLogic sits within CarteEdge as the control capability closest to the equipment.
CarteCloud
Shared Operating Context + Planning
Align enterprise demand with available system capacity. Translate orders, inventory, priorities, commitments, and operating rules into sequenced work for execution.
CarteEdge
Responsive Local Execution
Dispatch tasks, assign resources, adapt routes, and synchronize robots, lifts, transfer paths, and connected automation close to the live operation.
Equipment-level command, state, protection, and movement logic.
CarteIntel
Operational Intelligence
Organize live events and telemetry into operational visibility across throughput, utilization, system health, exceptions, bottlenecks, and modeled-versus-live performance.
Model the Operation. Validate Change Before Deployment.
eCarte+ recreates warehouse conditions digitally so teams can test throughput, capacity, bottlenecks, workflow changes, and automation alternatives before making physical changes.
Model the Real Operation
Facility, inventory, workflows, labor patterns, systems, constraints, and demand.
Configure the Proposed System
Automation, work points, routing, storage, workflow logic, and integration assumptions.
Run Real Demand Scenarios
Test throughput, queues, congestion, peaks, resource utilization, and operating alternatives.
Compare Model and Reality
Use live operating data and CarteIntel insight to investigate gaps and validate future changes.
Extend the Platform Into Physical Execution.
Carte+ brings rack-native storage, retrieval, vertical access, and aisle-to-aisle movement into compatible warehouse environments, extending Cartesian intelligence into physical execution without making a warehouse rebuild the starting point.
Work With Existing Storage
Use compatible rack environments as the basis for automation instead of replacing the entire storage system.
Move Inventory to the Work
Automate retrieval and return workflows that otherwise depend on repeated manual travel.
Unlock More of the Rack
Use vertical access and aisle-to-aisle movement to expand usable storage and robotic reach.
Stay Connected to the Platform
Carte+ executes physical work as part of the same operating loop used for planning, orchestration, and improvement.
Start With the Constraint. Add the Module That Solves It.
Cartesian can begin with your current operation, identify the strongest opportunity, and determine which platform module should be introduced first—from digital modeling and planning to orchestration, control, and physical execution.