Robotic Palletizing Cells

Layer, mixed-SKU, and case-pack palletizing engineered to your case spec, takt, and pattern library.

Robot types FANUC M-410iC, ABB IRB 460, KUKA KR PA, Yaskawa PL
Throughput 10–60+ cases/min
Payload 110–800 kg at the wrist
Reach 2,400–3,200 mm typical
Configurations Single-case, multi-case, full-layer, mixed-SKU, depalletizing
Vision Cognex and Keyence 2D / 3D
Data Per-case serialized; OPC UA / MQTT / SQL to MES/WMS
Standards ANSI/RIA R15.06, ISO 10218, ISO 13849

If you are evaluating robotic palletizing cells for your end of line, you are usually solving one of three problems: manual palletizers cannot keep pace with the packaging line, ergonomic injuries from repetitive lifting are driving workers' comp claims, or unstable hand-built pallets are causing transit damage and retailer chargebacks. We build the cell around whichever one is biting hardest.

AMD Machines has designed custom palletizing systems for more than thirty years, with over 2,500 machines delivered. A robotic palletizing cell from AMD is engineered around your case footprint, weights, layer patterns, takt time, and pallet specification — and integrated with the controls and traceability your warehouse and customers expect.

What is a robotic palletizing cell?

A robotic palletizing cell is an end-of-line automation system that uses an articulated robot, a custom end-of-arm gripper, and an integrated infeed to stack cases, trays, bags, or drums onto pallets in a programmed pattern. It runs unattended across full shifts, places each case within roughly ±2 mm of programmed position, and includes automatic empty-pallet dispense, slip- or tier-sheet insertion, and full-pallet discharge.

Compared to manual palletizing, a robotic cell:

  • Sustains a fixed rate across every shift — no fatigue, no breaks, no shift-change gaps
  • Removes 20–50 lb repetitive lifting from the highest-injury position in many plants
  • Stores hundreds of pallet patterns and switches between them on a barcode scan
  • Captures per-case scan data and per-pallet build records for WMS handoff

How a robotic palletizing cell works

  1. Infeed and scan — cases convey from the packaging line; a barcode reader (typically Keyence or Cognex) identifies the SKU and selects the stored pallet pattern.
  2. Orientation — a servo-driven turner positions each case so labels and barcodes face the required side.
  3. Layer forming (optional) — for high-speed lines, cases collate on a forming table with servo pushers into a complete layer.
  4. Pick — the robot picks a single case, a multi-case group, or a full layer with vacuum, clamp, or fork tooling sized to your case.
  5. Place — the case or layer lands within ±2 mm of the programmed position; the controller updates the pallet model in real time.
  6. Tier or slip sheet insertion — between layers when load stability or hygiene requires it.
  7. Discharge and pallet change — completed pallets convey to stretch wrap; an empty-pallet dispenser feeds the next blank without stopping the robot.

Palletizing methods and configurations compared

Configuration Best for Typical throughput Notes
Single-case picking Mixed case sizes, low–mid throughput, retrofits 10–15 cases/min Lowest tooling cost; most SKU-flexible
Multi-case (2–4) picking Uniform mid-size cases on dedicated lines 20–30 cases/min Custom multi-vacuum or servo-clamp EOAT
Full-layer (fork) picking High-speed beverage, food, CPG 40–60+ cases/min Requires upstream layer-forming table
Mixed-SKU / rainbow Retail DC orders, store-specific pallets 6–20 pallets/hr Vision-guided pattern optimization
Robotic depalletizing Incoming materials, returns, line feeding 10–25 cases/min 3D vision for shifted or damaged loads
Multi-line consolidation 2–6 packaging lines into one cell Sum of line rates One robot, merge conveyors, traffic logic

Many operations run a hybrid: full-layer picks on the high-volume SKUs and single-case picks on slower movers through the same robot. We size the configuration to your case mix and line speed, not the other way around.

Key components and technologies

  • Palletizing robot — FANUC M-410iC/185 or /315, ABB IRB 460, KUKA KR 700 PA, or Yaskawa PL800, sized to payload, reach, and cycle target
  • End-of-arm tooling (EOAT) — vacuum (Schmalz, Piab), servo clamp, or fork, custom-engineered for your case footprint and weights
  • Layer-forming table — servo pushers and turners for full-layer picks at 40+ cases/min
  • Infeed conveyor and barcode scanner — Keyence SR-2000 or Cognex DataMan for SKU identification and pattern recall
  • Empty-pallet dispenser and tier-sheet inserter — 10–15 pallet stacks with automatic feed
  • Pallet discharge — to integrated stretch wrap and packaging, strapping, or AGV/AMR pickup
  • Controls and HMI — Allen-Bradley CompactLogix/ControlLogix or Siemens S7-1500 with FactoryTalk View or WinCC
  • Safety system — perimeter guarding, light curtains at load/unload, and area scanners, designed per ANSI/RIA R15.06 and ISO 13849

Integration, controls, and traceability

A modern palletizing cell does more than stack cases — it speaks to the rest of the plant.

Every case scanned, every pallet built, every position logged — so the cell hands a verified load to your WMS, not a stack of cardboard.
  • Per-case scan and per-pallet build records — SKU, position, timestamp, exported to your WMS
  • Pattern library — hundreds of patterns programmed offline (FANUC PalletPRO, ABB PickMaster) and recalled on barcode scan
  • MES/WMS connectivity — OPC UA, EtherNet/IP, MQTT, or REST to Rockwell FactoryTalk, AVEVA, Ignition, or SAP
  • Upstream and downstream sync — coordination with packaging, marking and traceability, and stretch-wrap takt
  • Recipe management — clamp force, gripper map, pattern, and discharge route load on the case scan

Industries we serve

End-of-line palletizing fits almost any case- or container-based operation. We most often build cells for:

Why AMD Machines

We are an automation builder, not a robot reseller. We engineer the entire cell in-house — gripper, infeed, layer former, robot path, safety, and controls — against the case mix on your floor and the takt your packaging line actually runs:

  • 30+ years of custom automation and 2,500+ machines delivered
  • In-house mechanical, electrical, controls, robotics, vision, and runoff engineering
  • Custom EOAT designed for your case footprint, not adapted from a catalog
  • One supplier across palletizing, material handling, and automated pick-and-place systems

Have a packaging line, a case spec, and a takt time? That's enough to start. Request a quote and we'll scope the cell around it.

Frequently asked questions

What is a robotic palletizing cell?

A robotic palletizing cell is an end-of-line system that uses an articulated robot, a custom end-of-arm gripper, and an integrated infeed to stack finished cases, trays, bags, or drums onto pallets in a programmed pattern. It runs unattended across full shifts, builds pallets within a couple of millimeters of programmed position, and handles empty-pallet dispense, slip- or tier-sheet insertion, and full-pallet discharge to stretch wrap.

How fast can a robotic palletizer run?

Single-case picking with a 4-axis palletizing robot typically runs 10 to 15 cases per minute. Multi-case grippers reach 20 to 30 cases per minute. Full-layer picking with a fork gripper and an upstream layer-forming table achieves 40 to 60+ cases per minute because each robot cycle places an entire layer of 8 to 20 cases. The right approach depends on case mix, weights, and upstream line speed.

What payload capacity do I need?

Size the robot for the heaviest pick plus the gripper weight. Single-case picking on most cases needs 110 to 185 kg at the wrist because the gripper itself is heavy. Full-layer picks of typical food and beverage cases land in the 300 to 500 kg range, requiring robots like the FANUC M-410iC/315 or Yaskawa PL800. Glass, steel, and heavy industrial loads can push past 700 kg and call for a KUKA KR 700 PA-class robot.

Can one robot serve multiple packaging lines?

Yes — a single palletizing robot routinely serves 2 to 6 upstream packaging lines. Merge conveyors with PLC-driven traffic management sequence cases into the correct picking order, and the robot builds lane-specific or mixed pallets accordingly. This is one of the most cost-effective configurations when individual line rates are below 15 cases per minute.

How long does changeover between SKUs take?

For barcode-identified products, changeover is automatic — the scanner identifies each case and the controller recalls the correct stored pattern from the library in under a second, with no operator intervention. Mechanical changeovers (different vacuum-cup arrays or clamp jaws for very different case sizes) are designed as quick-change tooling that an operator can swap in under a minute.

Can the same cell handle depalletizing as well as palletizing?

Yes. Depalletizing uses the same robot and similar tooling, plus a 3D vision system — typically Cognex or Keyence — to locate cases on incoming pallets that have shifted in transit. We have built cells that depalletize incoming components and palletize outgoing product through a shared robot with dual workstations.

What safeguarding does a robotic palletizing cell require?

Standard high-speed cells use perimeter guarding with safety-rated access doors, light curtains at pallet load and unload, and area scanners for personnel detection. We perform a risk assessment per ANSI/RIA R15.06 and ISO 10218 on every cell and specify safety-rated controls per ISO 13849. Lower-speed collaborative configurations are possible but cap throughput well below traditional cells.

What pallet patterns and load stability can you achieve?

We program patterns offline in simulation software (FANUC PalletPRO, ABB PickMaster, or equivalent) and store hundreds in the controller. Patterns are optimized for cube utilization, load stability, and downstream handling — interlocked column stacks, brick patterns, pinwheels, and mixed-SKU rainbow patterns are all standard. Tier-sheet insertion between layers is integrated when stability or hygiene requirements call for it.

Let's Engineer Your Solution

Tell us about your part, cycle time, and quality targets. We've built 2,500+ machines over 30 years — chances are we've solved something similar.

Request a Quote