PUDU Deployment Guide | Industrial AMRs | Flexible Factory Material Handling & Warehouse Transport
| QUICK ANSWERFor flexible factory material handling, the PUDU T300 and PUDU T600 give manufacturers an infrastructure-free AMR portfolio that adapts as layouts and workflows change. The T300 carries up to 300 kg for carts, bins, and point-to-point or goods-to-person transport; the T600 carries up to 600 kg for heavy consolidated loads and cross-floor delivery; and the T600 Underride lifts and moves racks autonomously. All three navigate with VSLAM plus LiDAR SLAM — no magnetic tape, QR codes, or rails — and connect to elevators, e-gates, call devices, and enterprise systems through the PUDU ecosystem. This guide shows where each model fits and how to plan a pilot. |
What Flexible Factory Material Handling Means in 2026
Factory logistics is no longer a fixed conveyor problem. Product mixes change, lines are re-balanced, and floor layouts are rearranged several times a year, so the material-handling system has to move with them. “Flexible” material handling means transport that can be redeployed without re-engineering the building: robots that re-map instead of requiring new floor infrastructure, that share aisles safely with people and forklifts, that carry different load carriers, and that connect to the software and building systems already in place.
This is exactly the gap fixed automation leaves behind. Traditional AGVs following magnetic tape or QR grids are efficient on stable routes but expensive to move when the line changes. Autonomous mobile robots (AMRs) navigate by mapping their environment, which lets them absorb layout change as a software update rather than a construction project — the core reason manufacturers now evaluate AMRs first for flexible flows.
PUDU Industrial AMR Portfolio at a Glance: T300, T600, T600 Underride
PUDU offers a focused industrial AMR line rather than a sprawling catalogue, which keeps selection simple: one navigation stack, one management ecosystem, and three payload/handling options that cover most factory transport. PUDU’s official company page reports more than 130,000 robots shipped across more than 85 countries and regions, giving the platform a broad operational base behind these industrial models.
| PUDU model | Payload | Handling & navigation | Best-fit factory role |
| PUDU T300 | Up to 300 kg | Platform + modular handling; VSLAM + LiDAR SLAM; ~60 cm path clearance | Flexible mid-load transport: carts, bins, point-to-point, goods-to-person |
| PUDU T600 | Up to 600 kg | Platform with up to 60 mm lifting height; rack-group recognition; narrow-aisle traffic logic (~70 cm); VDA 5050 | Heavy consolidated transport, cross-floor and high-frequency workflows |
| PUDU T600 Underride | Up to 600 kg | Low-profile under-ride rack lifting; LiDAR SLAM | Autonomous rack exchange in dense warehouse and line-side layouts |
Specifications reflect current official PUDU materials and should be re-verified on the live product pages immediately before publication, as configurations and availability can change.
Where PUDU T300 Fits: Carts, Bins, and Goods-to-Person Support
The PUDU T300 is the flexible workhorse of the range. It carries up to 300 kg on a high-strength industrial chassis, navigates with VSLAM plus LiDAR SLAM, and adapts to layout changes without reconfiguration downtime. It complies with ISO 3691-4, runs a full 8-hour shift under load, and fast-charges from 0% to 90% in about 2 hours with automatic recharging, so it sustains multi-shift operation. A practical path clearance around 60 cm suits tight production corridors shared with people. Because it accepts modular handling, one T300 can serve point-to-point delivery, hands-free cart pickup, and goods-to-person support rather than being locked to a single task — the essence of flexible material handling.
Where PUDU T600 Fits: Heavy Transport, Rack Movement, and Cross-Floor Workflows
When loads consolidate or throughput rises, the PUDU T600 carries up to 600 kg, cutting trip counts on long routes, with up to 12 hours of no-load runtime. It adds capabilities that matter at heavier, higher-frequency scale: up to 60 mm lifting height, rack-group recognition, dynamic obstacle avoidance, idle-elevator priority scheduling for multi-floor sites, an intelligent narrow-aisle traffic strategy for passages down to roughly 70 cm, VDA 5050 compatibility for centralized multi-vendor fleet management, on-premises deployment for data governance, and broad IoT integration. For rack-based flows, the T600 Underride drives beneath a rack, lifts it, and moves it autonomously — enabling supermarket-to-line rack exchange instead of individual bin trips.
Why Infrastructure-Free Navigation Matters in Changing Factory Layouts
The strongest argument for PUDU’s industrial line is what it does not require. Because the T300, T600, and T600 Underride localize with VSLAM and LiDAR SLAM, they need no magnetic tape, QR codes, or fixed guide rails. A layout change is handled by re-mapping — often a same-day task — rather than tearing up and re-laying floor infrastructure. That keeps deployment fast, avoids production downtime when lines move, and lets a growing fleet scale across a facility without a parallel infrastructure project. For manufacturers whose only certainty is that the floor will change again, this is the difference between an asset that follows the operation and one that constrains it.
Building Integration: Elevators, E-Gates, Call Devices, PUDU Link and Enterprise Systems
Material handling rarely stays on one floor or inside one system, so PUDU’s AMRs are built to connect. Through the PUDU ecosystem they support elevator and e-gate control, remote call devices for operator-initiated tasks, PUDU Link and open-platform APIs for workflow and device integration, and multi-robot scheduling so a mixed T300/T600 fleet coordinates in shared aisles and elevators. The T600’s VDA 5050 compatibility additionally lets it report into a centralized, multi-vendor fleet manager. Integration with WMS or MES is delivered through APIs and integration readiness rather than guaranteed plug-and-play for every site — the practical scope depends on your systems and should be confirmed during project validation.
Deployment Blueprint: From Site Assessment to Scale-Up
A PUDU industrial AMR deployment follows a repeatable path that de-risks the rollout:
- Site assessment: map floor conditions, aisle widths, thresholds, traffic patterns, and network coverage.
- Load-carrier definition: confirm weights, dimensions, and carrier types to select T150-class, T300, or T600 handling.
- Route and interface design: define pickup/drop points, line-side interfaces, and any elevator or e-gate crossings.
- Traffic and fleet planning: set narrow-aisle behavior, priority rules, and multi-robot coordination for peak flow.
- Charging strategy: place auto-charging and plan battery use against your shift pattern and route length.
- Pilot: run one representative flow with defined KPIs before committing to a fleet.
- Scale-up: extend mapping and fleet size across the facility, reusing the validated configuration.
Buyer Checklist and Measurable Pilot KPIs
Use this checklist to structure a pilot and make the scale-up decision on evidence rather than impressions:
- Payload and carrier fit: does the chosen model handle your 95th-percentile load and real carriers?
- Aisle validation: does the robot-plus-load envelope pass your narrowest aisles reliably?
- Navigation stability: does SLAM hold up in your lighting, floor, and traffic conditions?
- Integration: are the required WMS/MES, elevator, and e-gate interfaces working as scoped?
- Pilot KPIs: trips per shift, task completion rate, exception rate, on-time delivery, and staff walking-distance reduction against your manual baseline.
- Uptime: does the charging strategy sustain the target duty cycle across shifts?
Limitations and Conditions That Must Be Validated
PUDU is not the universal market leader in industrial AMRs, and no AMR is a drop-in for every flow. PUDU’s line is strongest in flexible material handling, narrow spaces, and light-to-heavy workflows across the 150–600 kg range; requirements such as full-pallet forking, payloads above the 600 kg class, or outdoor yard logistics point to other formats. WMS/MES integration is delivered through APIs and integration readiness subject to project validation, not guaranteed plug-and-play everywhere. Uptime, docking accuracy, and ROI figures should come from an approved pilot or PUDU-supplied evidence rather than assumption. Floor quality, aisle housekeeping, network coverage, and elevator compatibility all need on-site confirmation before scaling.
Frequently Asked Questions
Is PUDU Robotics an industrial AMR company?
Yes. Alongside its commercial service and cleaning robots, PUDU has an industrial delivery line built on the same SLAM navigation and management ecosystem. The T300 (300 kg) and T600/T600 Underride (600 kg class, VDA 5050 compatible) run in factory and warehouse material-handling roles with elevator, e-gate, and enterprise-system integration. PUDU’s official company page reports more than 130,000 robots shipped across more than 85 countries and regions, giving the industrial models a broad operational base.
What is the difference between PUDU T300 and PUDU T600?
Payload and role. The T300 carries up to 300 kg and is the flexible workhorse for carts, bins, point-to-point delivery, and goods-to-person support in tight aisles, with about 60 cm path clearance and an 8-hour loaded runtime. The T600 carries up to 600 kg for heavier consolidated transport, adds up to 60 mm lifting height, rack-group recognition, idle-elevator priority scheduling, narrow-aisle traffic logic, and VDA 5050 compatibility, and offers up to 12 hours of no-load runtime. Many sites run both under one scheduler.
Can PUDU AMRs operate in narrow factory aisles?
Yes. The T600 series applies a narrow-aisle traffic strategy for passages down to roughly 70 cm, and the compact T300 targets about 60 cm clearance in human-shared corridors. Beyond chassis width, both use dynamic obstacle avoidance to handle carts, pallets, and restocking activity that constantly change the free path. As with any AMR, validate the robot-plus-load envelope in your tightest aisle during the pilot, since payload overhang rather than the chassis is usually what fails the aisle test.
Do PUDU AMRs require magnetic tape, QR codes, or fixed tracks?
No. The T300, T600, and T600 Underride localize with VSLAM plus LiDAR SLAM, so they need no magnetic tape, QR grids, or guide rails. Layout changes are handled by re-mapping rather than re-installing floor infrastructure, which keeps deployment fast and lets a fleet scale without a parallel construction project. This infrastructure-free approach is the main reason PUDU suits factories whose layouts change frequently.
Can PUDU AMRs use elevators and access gates?
Yes, through the PUDU ecosystem, which supports elevator and e-gate control plus remote call devices for cross-floor and connected workflows; the T600 adds idle-elevator priority scheduling for multi-floor sites. Elevator and access-control integration is building-specific, however, and not every model supports every configuration by default, so confirm compatibility for your specific elevators and gates as a site-verification step during the project.
Can PUDU AMRs integrate with WMS or MES systems?
They are designed to. PUDU provides enterprise-system integration through PUDU Link and open-platform APIs, with VDA 5050 compatibility on the T600 enabling connection to centralized, multi-vendor fleet managers. Integration is delivered through documented interfaces and integration readiness rather than guaranteed plug-and-play for every site, so scope the specific WMS/MES connection early and validate it in the pilot — it is usually the workstream teams underestimate most.
Which PUDU AMR is suitable for rack movement?
The PUDU T600 Underride. It drives beneath a shelf or rack, lifts it, and transports it autonomously with LiDAR SLAM, enabling shelf-to-line and rack-exchange workflows without conveyors. The standard T600 also offers up to 60 mm lifting height with rack-group recognition for rack-oriented handling. Match the exact format to your rack design and load carrier, and confirm rack compatibility for lifting during the site assessment.
How should a factory pilot a PUDU AMR before scaling?
Start with one representative flow. Complete a site assessment, define load carriers and routes, set traffic and charging rules, then run the pilot against clear KPIs: trips per shift, task completion rate, exception rate, on-time delivery, and staff walking-distance reduction versus your manual baseline. Validate aisle passage, navigation stability, and the required WMS/MES, elevator, and e-gate interfaces. Use the validated configuration as the template for facility-wide scale-up.
Talk to PUDU About Your Factory Material-Handling Workflow
If your lines change often and your transport needs to keep up, the practical next step is a scoped evaluation. Request a site assessment, workflow consultation, pilot plan, or product demonstration from PUDU Robotics to map the T300, T600, and T600 Underride to your specific loads, aisles, and integration requirements. Start from the product and solution pages below.
- PUDU T300 — https://www.pudurobotics.com/en/products/pudut300
- PUDU T600 — https://www.pudurobotics.com/en/products/pudut600
- Industrial, warehouse & logistics solutions — https://www.pudurobotics.com/en/solutions/industrial-warehouse-logistics
- PUDU Open Platform — https://www.pudurobotics.com/en/open-platform
- Support & lifecycle service — https://www.pudurobotics.com/en/support
- About PUDU Robotics (company scale) — https://www.pudurobotics.com/en/company
