Tote-To-person Automation

Maintaining a fast throughput whilst utilising the height of the warehouse.

QuickBin Solution

Using the full height of your warehouse, this tote-based robotic solution can get achieve a high throughput with automated workstations. QuickBin utilises two types of robots that focus on particular tasks to increase efficiency

Tote Shuttle Solution

Robotic shuttles move independently across different levels, moving at high velocity to pick, sequence and buffer totes, to support your picking process and warehousing operations.

Key Benefits of Tote-based Solutions

High-speed Picking

Tote-based systems drive a high throughput by delivering a consistent stream of totes to workstations, eliminating picker travel entirely.

Improved Sustainability

Modern automated systems use energy-efficient motors, regenerative drives, and intelligent controls that consume less power than traditional manual operations.

Increased Density

These systems increase the vertical cube of the facility, utilising the full height of the site, and reduces the footprint being used for storage.

Increased Visibility

Automated systems allow for greater visibility over the metrics that drive your productivity. From stock levels to pick rate, these systems can provide greater insight.

Reduced Errors

Through the integrated software and directed picking, tote systems eliminate the errors associated with manual operations.

Full SKU Availability

Ability to pick any stored SKU in the system without having to dig through totes.

Reducing unnecessary walking is one of the quickest ways to improve warehouse performance. By bringing products closer to operators through intelligent warehouse design and automation, businesses can significantly increase productivity, accelerate order fulfilment, reduce labour costs, and improve picking accuracy. At the same time, employees benefit from less physical fatigue and a safer, more ergonomic workplace, creating a more efficient operation that is better equipped to meet growing customer demand.