Mechanical Product System Architecture

Von Komponenten zu globalen industriellen Systemen

Diese Systemansicht bildet ab, wie industrielle Engineering-Unternehmen von Komponenten zu kompletten Antriebssystemen und globalen Produktökosystemen skalieren. Sie visualisiert die Layer, die für den Betrieb einer exportfertigen mechanischen Produktplattform erforderlich sind: Integrationslogik, Dokumentations-Governance, Enterprise-Interfaces, Informationsarchitektur und ein strukturiertes Datenmodell.

Visualisiert

  • Industrie-Segmentierung → Anwendungskonfigurationen → integrierte Systeme
  • Komponenten-Ökosystem aufgeteilt nach Power/Control/Mechanical-Layern
  • Versionskontrollierte Specs, CAD-Repository, Compliance-Mapping
  • Enterprise-Integrationen (ERP/PLM/MES/CRM, Dealer-Portale)
  • SEO + Informationsarchitektur-Layer für Auffindbarkeit
  • Datenmodell (Product, Component, Parameter, Certification, Industry Mapping)

Verwendet für

  • Design von Produktplattformen, die über Märkte skalieren
  • Eliminierung von Dokumentations-Drift und Integrations-Chaos
  • Aufbau eines kontrollierbaren Produkt- + Content-Systems, nicht "Seiten"

Mechanical Product System Architecture

From Components to Global Industrial Systems – Multi-Layer Engineering Architecture

System Flows:

Layer 1: Industry Domain Layer

End-market segmentation & vertical industries

L1
Heavy Industry
Marine Engineering
Energy Infrastructure
Process Manufacturing
Application Mapping

Layer 2: Application System Layer

Application-specific system configurations

L2
Mining Systems
Conveyor drives, pump stations
Steel Production Lines
Rolling mills, material handling
Marine Propulsion Units
Auxiliary systems, winches
Energy Generation
Cooling pumps, auxiliary drives
System Configuration

Layer 3: System Integration Layer

Complete mechanical drive systems

L3
Drive Systems
Motor + VFD integration
Motion Control Systems
Servo + encoder + controller
Power Transmission Systems
Motor + gearbox + coupling
Power
Control
Mechanical

Layer 4: Component Ecosystem Layer

Physical components organized by subsystem type

L4
Power Layer
Electric Motors
IE3/IE4 efficiency
Variable Frequency Drives
Speed control units
Power Supply Units
24V/48V DC systems
Mechanical Layer
Planetary Gearboxes
High torque density
Helical Gearboxes
Parallel shaft design
Couplings & Brakes
Torque transmission
Control Layer
PLCs & Controllers
Industrial automation
Encoders & Sensors
Position feedback
HMI & SCADA
Operator interfaces
Data & Documentation

Layer 5: Data & Documentation Layer

Version-controlled technical information foundation

L5
Version-Controlled Specs
Git-based revision control
CAD Repository
STEP/DWG file management
Compliance Mapping
ATEX/IEC per product line
Multi-Language Lifecycle
DE/EN/CN documentation
System Integration

Layer 6: Enterprise Integration Layer

External system connectivity & data exchange

L6
REST API
ERP Integration
PLM Integration
CRM Connector
MES Sync
Dealer Portal
Information Architecture

Layer 7: SEO & Information Architecture Layer

Content structure for organic discovery

L7
Machine Class Clusters
Category landing pages
Parameter Landing Pages
Spec-driven SEO pages
Application-Based Pages
Use case content
Knowledge Base
Technical articles
Schema.org Entities
Structured data markup
Data Model Foundation

Layer 8: Data Model Layer

Entity relationship model & domain objects

L8
Product Entity
• ID, SKU
• Name, Description
• Category
Component Entity
• Component Type
• Compatibility Matrix
• Relations
Parameter Entity
• Value, Unit
• Tolerance
• Validation Rules
Certification Entity
• Standard (IEC/ATEX)
• Validity Period
• Certificate Files
Industry Mapping
• Sector
• Application
• Suitability Score
Entity Relationships
Product
hasMany
Components
hasMany
Parameters
System Architecture Legend
Power Flow
Electrical energy transmission
Control Loop
Feedback & regulation signals
Data Flow
Information & documentation
Mechanical Coupling
Physical torque transmission