
Automated Warehouses: 30 Companies
Compare system integration, storage technology, robotics and sortation roles

An automated warehouse involves more than purchasing machinery. The building must suit equipment loads and installation space, handling systems must accommodate real products, and software must exchange information across receiving, storage, picking and dispatch. Start by identifying the process that needs improvement and the party responsible for connecting each part of the project.
This guide covers 30 companies with relevant published scopes, from system integrators to international technology and equipment providers. SA Logistics appears first in the selected presentation order. Order is not a quality ranking, and inclusion does not mean every provider has an installation or service team in Thailand. Confirm territory, contracting arrangements and current equipment configurations before requesting a proposal.
Prepare Your Project Brief
Compile SKU records, product dimensions and weights, pallet or container formats, inventory levels, and both normal and peak order data. Add the building plan, clear height, receiving and dispatch points, and existing IT systems. Give bidders the same information so storage capacity, throughput and operating limits can be compared against consistent assumptions.
Separate building works, racks, equipment, software, interfaces and post-handover service in the cost comparison. Review exclusions, change conditions and acceptance tests based on representative data. The right project may automate one bottleneck or expand in stages; the investment case should address the actual process rather than assume the entire warehouse must change at once.

SA Logistics
SA Logistics offers automated warehouse design, integration and installation in Thailand. Its published solutions include AS/RS, AGV and AMR transport, pallet shuttles, and connections between WMS and WCS. This makes it relevant when a project needs coordination across storage racks, handling equipment, internal transport and warehouse software, rather than a single standalone machine.
Provide load dimensions, weights, SKU counts, peak receiving and retrieval volumes, and an accurate building plan before requesting a proposal. Ask for an itemised equipment scope, integration tests with existing systems and clearly defined after-sales responsibilities. Confirm the proposed operating results using your own inventory and order data, rather than treating general product capabilities as project guarantees.

Daifuku
Daifuku offers unit-load AS/RS for pallets and mini-load systems for cases, trays and smaller containers. Its equipment combines automated storage and retrieval with material handling around the storage area. The range is relevant to projects considering high-bay storage or structured retrieval processes, with the load type determining which system family should be investigated.
Assess storage positions separately from peak inbound and outbound throughput. Check actual pallet quality, base construction, load distribution and handling of loads that fail inspection. Request a clear explanation of buffers, maintenance access and the operating strategy when part of the crane installation is unavailable. A layout drawing alone cannot establish whether the whole warehouse will meet the required dispatch schedule.

SSI SCHAEFER
SSI SCHAEFER supplies storage, conveying and warehouse software solutions. Its published Lotus’s project in Thailand illustrates the combination of pallet storage, mezzanine space, carton flow and conveying within an existing facility. This is a useful reference point for operators considering a staged warehouse upgrade alongside changes to storage layout and picking processes.
For a retrofit, ask how inventory will be relocated, which temporary areas are needed and when individual zones must stop operating. Verify structural loading and compatibility between retained racks and new equipment. Define which software owns inventory records and picking instructions after the change. A phased installation should include an explicit transition plan, not just a picture of the finished facility.

Dematic
Dematic offers fulfilment solutions that combine automated storage, shuttle technology, goods-to-person picking and software. It also integrates AutoStore as part of its solution portfolio. It is relevant to operations that need products delivered to picking stations and coordinated with packing, consolidation or sortation, with the complete process designed around order requirements.
Use actual order histories to test lines per order, replenishment during a shift and returns handling. Check the balance between storage, picking stations and packing capacity. Where a proposal includes another manufacturer's platform, identify the party responsible for design, software, warranties and each service package. Dematic and the underlying technology manufacturer occupy different roles in that arrangement.

Swisslog
Swisslog's portfolio covers automated pallet and small-load storage, conveying, picking and the SynQ software platform. It is a relevant candidate when a warehouse needs several equipment families to work together under a coordinated operating concept. The assessment should consider the complete flow of goods and information rather than selecting one storage technology in isolation.
Define the responsibilities of each software layer, from stock records to equipment commands. Request an interface list for the existing ERP or WMS, alarm handling and the process for investigating faults. Compare maintenance, licensing and long-term support alongside installation cost. Confirm the applicable regional delivery and service arrangement for the specific project before assuming local coverage.

KNAPP
KNAPP presents Evo Shuttle as a shuttle-based system for storing and delivering load containers, with sequencing and picking forming part of the operating concept. It is relevant to facilities handling diverse inventories and carefully timed delivery of containers to workstations. Station capacity and replenishment design should be evaluated together with the storage subsystem.
Check container dimensions, load weights and treatment of irregularly packed goods. Request a simulation of peak ordering conditions and the return flow of containers into storage. Discuss access to stock when individual components stop operating. High storage density is useful only when retrieval, sequencing and workstation availability also support the required daily workload.

TGW Logistics
TGW Logistics' FlashPick combines shuttle storage, manual or robotic picking stations, conveyors and warehouse software. It is relevant to distribution operations serving multiple sales channels and coordinating retrieval with order consolidation. The solution should be assessed as a complete fulfilment process, including how different order streams use the available workstations.
Separate wholesale, retail and online order data because quantities and cut-off times differ. Test replenishment, reprioritisation and stock shortages during picking. Include packing interfaces and shipping buffers in the review. An apparently faster retrieval system can simply move the bottleneck downstream if the proposal does not account for the entire dispatch process.

Mecalux
Mecalux offers fully automated pallet shuttle storage combined with stacker cranes or transfer equipment to move pallets into and out of deep storage channels. It is relevant to dense pallet storage projects. Distinguish this configuration from semi-automated shuttle arrangements that still depend on forklifts to move equipment or loads between channels.
Evaluate pallets per SKU, FIFO or LIFO requirements and seasonal changes in stock. Ask the layout study to explain unusable channel space when product families or batches cannot be mixed. Check acceptance of nonconforming pallets, channel control and recovery procedures when a shuttle stops deep inside storage. Nominal pallet capacity should be checked against the actual inventory mix.

AutoStore
AutoStore is a cube-storage platform using bins stacked inside a grid, with robots travelling on top to bring bins to workstations. Its core elements include bins, the grid, robots, ports and control technology. It is relevant to inventories that fit the selected bin format and can be processed through defined workstation interfaces.
Check actual product fit, access patterns for frequently picked stock and replenishment while order processing continues. Identify the project integrator, WMS connection and regional service arrangements. AutoStore is the technology platform; the integrator responsible for delivering a particular installation is a separate project role. Compare those responsibilities explicitly when evaluating proposals.

Movu Robotics
Movu Robotics offers atlas pallet shuttle automation and escala for smaller load containers. Its portfolio includes storage applications in ambient and cold environments. It is relevant to projects studying dense automated storage with robotic or shuttle movement linked to transfer equipment, with the chosen product family depending on the load being stored.
For cold storage, request confirmation of temperature, humidity, icing and battery requirements against actual conditions. Review pallet transfer points and maintenance procedures that avoid disrupting other zones. If future capacity is important, ask how racks, robot numbers and controls would be expanded. Do not assume that every standard configuration is approved for every cold-store environment.

Geek+
Geek+ offers several robotic warehouse approaches, including shelf-to-person, tote-to-person and pallet transport. It is relevant to projects investigating mobile robots for picking or internal movement, with the solution family chosen according to load dimensions and order structure. These approaches change how stock reaches operators and how movement is coordinated across the floor.
Review floor condition, route widths, charging locations and interaction with people or forklifts. Request a peak-workload model that includes replenishment and traffic near picking stations. An expansion plan should address software coordination and workstation capacity as well as robot count. Confirm the installation and support partner responsible for the proposed regional deployment.

Hai Robotics
Hai Robotics' HaiPick solutions use robots to store and retrieve load containers. HaiPick System 3 combines case-handling robots with robots transporting containers to workstations. It is relevant to small-item warehouses studying how to use rack height while delivering a varied inventory to picking stations, with the selected configuration defining the handling process.
Verify supported container height and weight for the exact proposed model; do not combine specifications from different models. Review robot-to-robot transfers, return-to-storage flow and replenishment alongside picking. Ask how the system connects to existing software and continues operating when a zone is isolated for maintenance. The complete container journey matters as much as the retrieval robot.

HIKROBOT
HIKROBOT offers mobile warehouse robotics together with iWMS and RCS software for managing work and coordinating robots. Its published software scope describes connections with business systems such as ERP, MES and OMS. It is relevant when a project must evaluate both physical movement and the exchange of work instructions between systems.
Map which application owns product information, work orders and equipment status. Specify data exchange timing, error handling and behaviour during network interruptions. Identify who configures RCS, builds interfaces and trains operators. The software integration scope should be visible in the proposal, rather than assumed to be included with the purchase of mobile robots.

Vanderlande
Vanderlande's FASTPICK uses ADAPTO for automated storage, container delivery and sequencing to picking stations. It is relevant to retail and e-commerce distribution projects that combine storage with order fulfilment. The review should focus on the order in which goods arrive at workstations and how that sequence supports consolidation and downstream operations.
Compare lines per order, container waiting time and queues during peak periods. Include replenishment, packing and downstream sortation in the design study. Ask how sequencing responds to changed dispatch priorities, and agree on tests using representative order data. The storage subsystem and its connected workstations should be evaluated together before accepting project performance.

Kardex
Kardex offers several automated storage and retrieval approaches, including vertical storage, mini-load solutions and integrated AutoStore systems. It is relevant to spare-parts, components and container-based storage projects that need to use building height and deliver items to defined access points. The load format and picking process should guide the product family selected.
Separate component picking requirements from pallet storage needs. Check retrieval frequency, tray loading, simultaneous access points and procedures when equipment is unavailable. For compact installations, include receiving, replenishment and maintenance space in the footprint calculation. The equipment's cabinet dimensions alone do not show the full operating area required by the warehouse.

viastore
viastore provides automated high-bay and small-parts warehouses, storage and retrieval machines, conveyors and viadat warehouse software. Its published scope also includes modernization. It is relevant to projects assessing hardware and warehouse controls together, or planning to replace and update a mature installation while preserving the operation's essential material flows.
For modernization, inspect equipment condition, control documentation and stock-data quality first. Request a migration and pre-cutover test plan with a defined rollback procedure. Clarify responsibility for retained and replacement equipment, and identify the contracting entity and service team for the relevant region. A software upgrade and a mechanical replacement need coordinated acceptance criteria.

BEUMER Group
BEUMER Group supplies conveying and sortation technology for warehouses and distribution operations. Sortation links item identification, routing to destinations and controls. It is relevant when the main constraint lies in consolidation or dispatch sorting, rather than the number of storage positions. Review the complete flow from induction to destination handling.
Test a representative parcel mix covering dimensions, weights and surface materials. Include unreadable barcodes and items outside the normal handling envelope. Check destination space, bottleneck prevention and recirculation of exceptions. Increasing conveyor speed alone may not solve a constraint at the receiving chute or shipping area, so downstream capacity belongs in the acceptance test.

Murata Machinery
Murata Machinery operates its logistics and automation business under the Muratec brand. Its portfolio includes AS/RS, Uni-SHUTTLE, AGVs, conveying, sortation and E-LOGICS software. It is relevant to projects linking storage with production supply or distribution, with the load format and transport method selected around the actual operating process.
Map movement from receiving through storage and retrieval to the point of use. For production-linked projects, define the timing of raw-material and work-in-progress deliveries. Check container requirements, level changes and signals exchanged with existing machinery. Agree on fallback operations when automation is unavailable, since an interrupted warehouse interface can also interrupt the connected manufacturing process.

Fives
Fives' Smart Automation Solutions portfolio covers sortation, conveying, robotics and warehouse software. Examples include GENI-Belt cross-belt sorters and GENI-Ant robotic sortation. It is relevant to parcel and distribution projects routing goods to multiple destinations, where the choice of sorting technology depends on the item mix and the surrounding process.
Review induction, item spacing, identification and handling of irregular shapes. Compare sorting configurations using representative products and the available site footprint. Define the WMS or WCS scope, exception tests and the service party responsible for the project region. A sorter specification should be accompanied by a clear plan for feeding, clearing and recovering the system.

SAVOYE
SAVOYE offers X-PTS and MAGMATIC automated storage, goods-to-person stations, conveyors and WMS/WCS software. Its portfolio is relevant to projects designing storage, picking and operational controls together, including fulfillment facilities that need to connect order preparation with packaging. The required load format should determine which storage technology enters the comparison.
Separate pallet, carton and individual-item requirements in the brief. Review the journey from retrieval to packing, including replenishment during peak periods. Request explicit software modules, interface responsibilities and the regional delivery and service arrangement. Assess connected workflows rather than assuming every portfolio product is included in one proposed installation.

Exotec
Exotec develops Skypod automated storage and retrieval using robots that move containers between racks and workstations and climb the storage structure. It is relevant to warehouses considering vertical storage with goods delivered to picking stations. Container formats, rack arrangements and connected equipment should be checked against the exact configuration being proposed.
Model SKU access frequency and concurrent order demand, including workstation waiting time and replenishment. Check under-rack space, conveyor interfaces and the plan for adding robots later. Request tests using representative containers and orders. Product specifications describe equipment capabilities; they do not independently establish the throughput of a complete warehouse.

Symbotic
Symbotic offers distribution-center automation that stores goods in their native cases and coordinates movement with pallet building. Its SymMicro offering addresses smaller-unit fulfillment using totes and picking stations. These are different load-handling applications, so a full-case distribution requirement should be assessed separately from each-item picking.
For store replenishment, examine carton dimensions and strength, pallet patterns and the sequence required at destination. Include rejected or unsuitable cases in the operating plan. Verify installation space, delivery responsibilities and service availability for the project's country. Do not assume a deployment model demonstrated elsewhere is automatically available locally.

Locus Robotics
Locus Robotics offers warehouse robots and LocusONE orchestration for picking, putaway and transport. Its portfolio includes collaborative workflows alongside people and fulfillment approaches with greater autonomy. It is relevant to operations comparing ways to improve existing processes while coordinating workloads across workers, robots and operating zones.
Compare actual picking routes, container transfer points and shift patterns. Review interfaces with retained equipment and capacity changes during peaks. If the proposal uses Robots-as-a-Service, examine fees, contract duration, fleet adjustment and the operating plan at contract end. A service-based commercial model needs the same process and integration checks as purchased equipment.

Berkshire Grey
Berkshire Grey combines robotics, vision, software and controls for fulfillment tasks such as picking, sorting and product movement. It is relevant when repeated item handling is a process constraint. Evaluate the specific robotic task and its connected material flow rather than treating one robotic cell as the complete scope of warehouse automation.
Provide a varied sample set, including slippery surfaces, irregular shapes and flexible packaging, to test recognition and gripping. Define the handling of failed picks, replenishment and transfer to downstream stations. Verify the contracting party and regional service scope. A successful demonstration with selected products should be followed by acceptance criteria reflecting the real inventory mix.

Addverb
Addverb offers fixed and flexible warehouse automation for movement, storage, picking and sortation, including solutions for pallets and containers. Its portfolio is relevant to projects combining shuttles, conveying and mobile robots. Different process zones may need different technologies rather than one equipment family applied throughout the facility.
Model transfers between equipment and check whether subsystem capacities are balanced. Ask how multiple robot types are coordinated, charged and maintained while work continues. Request the proposed machinery, software versions and integration team explicitly. The interface between two suitable products can still become the constraint if transfer logic and buffers are not designed together.

GreyOrange
GreyOrange offers Ranger Rack-to-Person automation powered by GreyMatter to coordinate robots, inventory and fulfillment work. Mobile storage units are brought to picking stations, supporting putaway, replenishment and order picking. It is relevant to warehouses evaluating movable racks and coordinated work allocation across storage and workstation areas.
Check rack dimensions and weights together with station layout, waiting space and travel routes. Define inventory ownership and reconciliation when records disagree. If the proposal orchestrates robots from multiple suppliers, confirm the supported models, integration owner and software-update constraints. Platform-level coordination should be demonstrated for the actual equipment combination, not assumed from a general feature description.

Quicktron
Quicktron offers bin-to-person and rack-to-person picking as well as Smart Moving for point-to-point transport. Its QuickBin approach coordinates different robot types between storage and workstations. It is relevant to projects comparing goods delivery and internal movement, with the solution selected around the load format and floor process.
Check transfer time and space between robots, including container queues, replenishment and charging. Review shared routes with people or forklifts and the scope of RCS, WCS and WES. Request a peak-workload test using the real layout, with explicit equipment and software service owners. Robot availability alone does not establish workstation throughput.

ABB
ABB Robotics supplies industrial robots, AMRs and collaborative robots for logistics and supports integrators and end users. It is relevant to specific warehouse tasks such as picking, placement and movement. Separate the robot supplier's role from the integrator responsible for designing and delivering the complete warehouse system.
Test product weight, reach, end-of-arm tooling and cycle time with real goods. Include protective measures based on the application's risk assessment. Identify who supplies vision, conveyors and control programming, and who resolves faults at equipment interfaces. Selecting a robot model should be part of a defined application design and acceptance plan.

Jungheinrich
Jungheinrich's Automation & Systems scope includes mobile robots, automated pallet and miniload warehouses, and conveying. It is relevant to projects comparing automated vehicle transport with fixed storage installations. The building and operating process should be reviewed together before choosing how goods move and where they are stored.
For an existing facility, survey floors, aisle widths, clear height, loading points and intersections with manually driven forklifts. Examine pallet handover and right-of-way rules for different equipment. Request phased installation, acceptance criteria and support for the project's country. Service arrangements in one regional market should not be assumed to apply in another.

OPEX
OPEX offers automated storage and retrieval and warehouse sortation technologies, including Perfect Pick and Sure Sort. It is relevant to small-load storage, delivery to picking positions and routing items to multiple destinations. Select the system around the supported item envelope and required workflow rather than the product name alone.
Review dimensions, weights and packaging across the inventory, together with destination counts and volume per destination. Include induction, unloading and handling of rejected items in the design. Request model-specific operating conditions and software interfaces. Compare proposals on the same end-to-end process so adjacent manual work is visible in the capacity assessment.
Automated Warehouse Questions
What Does Automation Include?
The scope depends on the process being improved. It may include storage, transport, picking, sortation and software. Every technology is not required, but the interfaces and responsible parties must be defined.
How Do AS/RS and AMR Differ?
AS/RS focuses on automated storage and retrieval. AMRs provide mobile transport within a facility. They can work together when load formats, routes and the operating sequence are designed as one process.
Can an Existing Building Be Used?
Survey clear height, columns, floor condition and loading, installation points, safety provisions and maintenance access. The automation designer and building engineer should review these constraints together.
Is a WMS Required First?
Define which system owns stock records and work instructions. Some projects can connect an existing WMS; others require changes. Clarify the scope of WMS, WCS and robot controls before approving a proposal.
How Is Value Assessed?
Use the warehouse's own workload, space, staffing, energy, maintenance and software costs. Include transition risks and downtime costs. There is no universal payback period that applies to every facility.
Can Automation Be Phased?
Yes, when interfaces and expansion have been planned. A project can start with a transport, picking or sorting bottleneck and define how that subsystem works alongside the remaining manual operations.
What Should a Proposal Show?
Request the scope, equipment models, simulations using your data, acceptance criteria, installation programme, contracting party, warranty and regional service. Include fallback procedures for interruptions.
Choose providers by project role, then use one shared brief to assess the equipment, software, building interfaces and support needed for reliable warehouse operations.
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