SSI Exyz

The energy-efficient storage-retrieval machine is the ideal solution for fully automated pallet storage.

SSI Exyz

Maximum Energy and Cost Effciency

The SSI Exyz storage and retrieval machine (SRM) enables you to highly efficiently store pallets and other large load carriers in an automated high bay warehouse. The modular design of the storage-retrieval machine ensures maximum flexibility together with short delivery and installation times. Benefit from a customized solution as well as enhanced cost and space efficiency.

The SRM can be used in tropical conditions and also in deep-freeze warehouses down to a temperature of -30°C. It is also suitable for use in standard warehouses, with channel storage systems, dynamic flow warehouses, and picking warehouses. The system brings efficiency to high bay warehouses with heights up to 45 meters.

SSI Exyz impresses with the highest flexibility. SSI SCHAEFER’s storage and retrieval machine can be utilized as a single-boom or twin-boom machine with one or two load handling devices. It is suitable for single-deep, double-deep, and multi-deep storage as well as retrieval, and also includes the load handling device SSI Orbiter LHD. The SRM is configured using an efficient modular concept: the SSI Exyz components are manufactured in series, pre-assembled at the plant, and can be put into operation in only a short period of time.

Significant reduction in operating costs

The SSI Exyz storage and retrieval machine guarantees maximum energy and cost efficiency in pallet warehouses

SSI Exyz storage and retrieval machine

Ideal solution for fully automated pallet storage.

Seamless integration and sustainability

The designation “Exyz” describes exactly what distinguishes the storage and retrieval machine. The “E” stands for efficiency in energy consumption and performance for all three axes “x”, “y”, and “z” on which storage and retrieval machines work.

Due to the consistent use of state-of-the-art control technologies, the SRM requires only a minimum of spatial reserves. The interlocking design of the floor supports, pallet truck, and boom further enhance this benefit. This innovative boom concept from SSI SCHAEFER is unique in the market. Moving counterweights integrated into the boom can be fitted and compensate for up to two thirds of the pallet truck’s own weight. This improves performance while also decreasing the amount of energy needed. As a result, you achieve energy savings of up to 25% in comparison to conventional machines with the lifting alone. This is part of the Green Crane Technology from SSI SCHAEFER. These technologies also include:

  • Energy-optimized overlapping paths for multiple SRMs

  • Direct current coupling to the drive controller to transform the braking energy of one drive into drive energy for another motor

  • Return of the brake energy to the electricity supply network

  • Targeted speed adaptation and acceleration of the storage and retrieval machine

As with all storage and retrieval machines from SSI SCHAEFER, SSI Exyz is part of a fully automated storage system consisting of a high bay warehouse, a suitable SRM, perfectly matching conveying systems and the right software.

  • Ideal solution for fully automatic storage and retrieval of pallets and other large load carriers

  • Modular design ensures maximum reliability thanks to proven components and series and manufacturing

  • The highest flexibility, configured to your individual needs 

  • Short delivery and installation times

  • Easy maintenance: the devices can be serviced from the ground.

  • Efficient energy usage: Green Logistics

  • Efficient geometries provide more usable storage capacity through the most compact design


The next generation of storage and retrieval machines for pallets.

HARIBO Claim Keyvisual en

Case Study HARIBO

Schaeffler: State-of-the-Art Distribution Center in the sector industry

Case Study Schaeffler

Key Visual Reference JYSK, Denmark: Highly Dynamic Distribution Center to

Case Study JYSK

Pallets are being loaded into the infeed conveyor

Case Study ORCA

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