E3.series - Electrical, Wiring, and Fluid Design
Electrical and fluid control system design requires precise definition and coordination of connectivity, behavior, and physical realization across schematics, harnesses, and control panels. Effective engineering in this domain depends on maintaining design intent, managing change consistently, and ensuring alignment between logical definitions and physical implementation. An integrated, automation-supported engineering environment is essential to reduce errors, limit rework, and enable reliable collaboration from design through production.
CR-8000 - Advanced PCB Design Software
PCB design increasingly requires engineers to balance high-speed performance, multi-board interactions, mechanical constraints, and manufacturing requirements within a single, coherent design intent. Effective PCB engineering depends on early validation, tight control of design consistency, and close collaboration across electrical, mechanical, and manufacturing disciplines. An integrated, analysis-driven and 3D-aware design environment is essential to manage this complexity from concept through production.
GENESYS - Model-Based Systems Engineering
System design increasingly involves coordinating requirements, architecture, behavior, and validation across multiple engineering disciplines and organizational boundaries. Managing this complexity requires more than document-based processes; it depends on a shared, consistent system model that connects intent, design decisions, and verification. A model-based approach to systems engineering enables teams to reason about change earlier, maintain traceability, and align stakeholders around a common understanding of the system throughout its lifecycle.
DS-2 - Design Data and Workflow Management
As engineering complexity increases, the traditional separation of mechanical, electrical, and electronic design work—followed by late-stage consolidation—has become a significant source of risk and inefficiency. Effective engineering now depends on consistent management of design data across domains, tools, and lifecycle stages. Cross-disciplinary data continuity is essential to maintain traceability, manage change, and ensure that design intent is preserved as information flows between engineering, manufacturing, and enterprise systems.
eCADSTAR - PCB Design for Small and Mid-sized Teams
PCB design for small and mid-sized teams increasingly demands professional-grade capabilities without the overhead of complex infrastructure. Engineers must manage 2D and 3D design, design review, and manufacturing handoff while collaborating across locations and organizational boundaries. An internet-connected design environment that combines core PCB engineering capabilities with integrated online services enables efficient collaboration, faster review cycles, and smoother transition from design to manufacturing.
CADSTAR - Legacy Desktop PCB Design Software
CADSTAR is an established desktop PCB design solution, with many thousands of satisfied users globally. Professional, powerful, accessible and affordable, CADSTAR will meet your design requirements and budget, and is supported by experienced local resellers who provide training, support, integration and consultancy to help you maximize your return on investment. Optimized for the typical small and mid-sized design team, Zuken’s CADSTAR PCB Design software equally appeals to individual all-rounders and corporations operating across multiple sites.
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Data management for PCB (DS-CR) and electrical/fluid engineering (DS-E3). DS-2 is a mature, cross-disciplinary engineering data management platform developed in partnership with more than 3,000 leading companies worldwide.
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Concurrent enterprise-wide access to E3.series projects
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E3.FunctionalDesign supports the development of the first sketches to drive the detailed wiring and fluid plans.
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E3.3DRouting Bridge - Streamline ECAD-MCAD collaboration by synchronizing connectivity data between E3.series and leading MCAD platforms in real-time.
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E3.eCheck is an extension to E3.series that enables users to functionally analyze their electrical schematic circuits and check designs for fuse and wire sizing errors.
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E3.cable extends the functionality of E3.schematic enabling individual conductors to be combined together in the design to form cables and harnesses.
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E3.panel allows engineers to layout components inside panel enclosures in both 3D and 2D. Intelligent automatic snapping points allow parts to be easily placed in their correct location.
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E3.series is a true concurrent electrical engineering environment supporting advanced requirements for electrical documentation, cabinet and wire harness design and manufacturing outputs.
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