Automation System Design

TAS US provides outsourced automation system design services that help manufacturers transform automation concepts into production-ready engineering solutions. From robotic workcells to material handling systems, our engineers develop efficient layouts, mechanical designs, and implementation-ready documentation that improve productivity, reduce manual operations, and support scalable manufacturing.

Robotic Cell Design

Engineers designing a robotic workcell layout for automated manufacturing

Design complete robotic workcells engineered for efficient, safe, and scalable manufacturing.

Our engineering team develops complete robotic cell layouts tailored to your production requirements, including robot positioning, equipment arrangement, material flow, operator access, and safety considerations. Every project is delivered with detailed engineering documentation and production-ready drawings that enable your internal team or system integrator to move directly into implementation.

Typical Deliverables

  • Robotic cell layout
  • Equipment arrangement
  • Robot reach and workspace analysis
  • Safety zone planning
  • Material flow optimization
  • Mechanical assembly drawings
  • Manufacturing documentation
  • Implementation-ready CAD package

Pick & Place Systems

3D CAD design of an automated pick and place system for industrial production

Develop efficient pick-and-place solutions that automate repetitive material handling while improving productivity and consistency.

We design complete pick-and-place concepts based on your production process, helping manufacturers reduce manual handling and improve product flow between workstations. Our engineering team creates optimized layouts, transfer mechanisms, gripping concepts, and supporting documentation that simplify implementation and future expansion.

Typical Deliverables

  • Pick-and-place system concept
  • Product transfer layout
  • Multi-station handling design
  • Feeding concept development
  • EOAT integration concept
  • Mechanical drawings
  • 3D CAD models
  • Complete engineering package

Palletizing Systems

Engineering design of an automated palletizing system with robotic material handling

Engineer end-of-line palletizing solutions that improve throughput, optimize material handling, and maximize floor space utilization.

Our engineers design palletizing systems based on your production volume, packaging requirements, and available factory space. We develop practical layouts, pallet configurations, and equipment arrangements that support stable operations while allowing future production scalability.

Typical Deliverables

  • Palletizing cell layout
  • Pallet configuration study
  • Material handling concept
  • Conveyor integration layout
  • Equipment arrangement
  • Production drawings
  • Assembly documentation

Machine Tending Solutions

Robot machine tending system designed for automated CNC loading and unloading

Design automated machine tending systems that improve machine utilization and reduce operator workload.

TAS US develops engineering solutions for CNC loading and unloading, robotic machine tending, and production flow optimization. We focus on equipment accessibility, robot positioning, safety clearances, and workflow efficiency to help manufacturers maximize machine uptime and streamline production.

Typical Deliverables

  • CNC machine tending layout
  • Robot positioning study
  • Loading and unloading sequence
  • Production flow analysis
  • Safety layout
  • Mechanical design package
  • Engineering documentation

End-of-Arm Tooling (EOAT) Design

Custom end of arm tooling design for robotic automation applications

Develop custom end-of-arm tooling engineered for reliable, accurate, and flexible product handling.

Our engineers design application-specific grippers and tooling solutions that meet your product geometry, payload, and production requirements. Every EOAT is optimized for durability, precision, ease of maintenance, and compatibility with your automation system.

Typical Deliverables

  • Custom gripper design
  • Vacuum tooling design
  • Mechanical gripper concepts
  • EOAT assembly drawings
  • Manufacturing drawings
  • Bill of Materials (BOM)
  • 3D CAD models

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