
Automating production lines improve productivity and product quality. However, production bottlenecks often shift toward end-of-line processes – specifically packaging and intralogistics.
We assist companies in planning and implementing automation for packaging and palletizing processes.
As a mobile robot integrator, we select technologies tailored to the client’s needs. For a long time, the market lacked solutions capable of handling the heaviest pallets.
The MiR1350 robot enables the full automation of heavy load and pallet transport without the need for traditional forklifts, thereby enhancing safety and ensuring operational continuity.
Autonomous navigation of a mobile robot
Why can the MiR1350 pick up pallets and deliver them to the right location on its own?
- Autonomous navigation with obstacle avoidance makes this possible. The robot moves dynamically, even in crowded spaces.
- Laser and 3D systems: laser scanners and 3D cameras ensure full environmental awareness and safety. High performance—speeds of up to 1.2 m/s and long battery life.
- Certified safety systems: 13 TÜV-certified safety functions and compliance with the ISO 3691-4 standard.
- Environmental resilience: an IP52 rating allows for operation in dusty and humid production environments.
- As a result, the robot not only transports heavy loads but does so with the utmost precision and full autonomy.

For enterprises, the MiR1350 offers real operational benefits:
- elimination of costs and risks associated with forklifts,
- ability to operate 24/7 with limited human resources,
- reduction of human error in material transport,
- improved ergonomics and working conditions for the team.
These advantages translate into significant cost savings and enhanced company competitiveness.
Quick return on investment
If your company still relies on workers to manually transport heavy loads or uses forklifts, the MiR1350 offers a natural path to automation:
Rapid return on investment through the elimination of downtime and reduced operating costs.
Safety compliant with the highest industry standards.
Scalability—more robots can be added to the fleet as needs grow.
MIR 1350 – for which industries and products?
The MiR 1350 is used where the automation of heavy transport in:
- heavy industry and metalworking,
- logistics and warehousing,
- the automotive sector,
- large-component manufacturing,
- distribution centers and supply chains;
the solution is ideal for any setting where the transport of large pallets and heavy equipment is a daily occurrence.

Integration with the existing production line
The MiR1350 can be easily integrated into existing production and logistics systems thanks to:
- standard APIs,
- the ability to communicate with ERP systems,
- management within a single robot fleet (MiR Fleet).
This means that automation does not require major infrastructure changes.
Safety, service, and reliability
The robot is designed in accordance with ISO safety standards and features 13 TÜV-certified safety functions, ensuring the protection of operators and the work environment. Additionally, MiR robots are easy to service, which minimizes downtime and ensures high system availability.
When would we recommend the MiR1350?
The MiR1350 is more than just a robot—it is a comprehensive solution for automating heavy internal transport that:
- increases productivity,
- improves safety,
- reduces costs and operational time,
- supports business scalability.
The MiR1350 meets rigorous safety standards for operation alongside people.
Equipped with multi-level obstacle detection systems, it automatically slows down or stops in hazardous situations.
It is a technology ready for deployment in modern manufacturing and logistics facilities.
Want to see the MiR1350 in action? Schedule a presentation or demo at your facility today and discover how heavy transport automation can boost your company’s efficiency!
We also offer rapid response capabilities, thanks to:
- access to the global MiR service network,
- remote diagnostics capabilities,
- high parts availability—with delivery as fast as 24 hours from the order.
Contact – Tomasz Dolata
📩 t.dolata@lintegra.pl
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MIR 1350 Technical Specifications
Speed and performance
Maximum speed
1.2 m/s (4.3 km/h)
Operating aisle width
Default configuration: 1,800 mm
Minimized footprint and muted safety fields: 1,200 mm
Operating aisle width for two passing robots
Default configuration: 3,500 mm
Minimized footprint and muted safety fields: 2,700 mm
Positioning accuracy (under controlled conditions)
Docking to L-marker: ± 3 mm X-axis, ± 3 mm Y-axis, ± 0.25° orientation
Docking to VL-marker: ± 2 mm X-axis, ± 3 mm Y-axis, ± 0.25° orientation
Lateral gap tolerance
Clearance: max. 29 mm at max. 0.5 m/s at any angle
Operational door width
Default configuration: 1,650 mm
Minimized footprint and muted safety fields: 1,200 mm
Active runtime at maximum load: 6 h 45 min
Active runtime without payload: 9 h 50 min
Standby time (robot on and idle): Up to 12 h 30 min
Power supply
Battery type: Lithium-ion
Factor Charging ratio: Up to 1:12 (10 minutes of charging provides 2 hours of operation at maximum load)
Charging current: Up to 35 A
Number of full charging cycles: Minimum 3,000 cycles
Environment
Indoor use only
Ambient temperature range (storage): 0–50°C
Humidity: 20–95% (non-condensing)
IP rating: IP 52
Floor conditions: Clean and dry
EN61000-6-4
Designed to meet safety standards for industrial vehicles
ISO 13849-1, ISO 3691-4 (excluding clauses 4.4, 4.9.4, 5.1, 5.2, 6 and Annex A), ISO 12100, ISO 13850, ITSDF B56-5, RIA R15.08-1
TüV safety rating: ISO 13849-1
Safety functions
13 safety functions compliant with ISO 13849-1, certified by TüV Rheinland. The robot stops if a safety function is triggered. Communication
Wi-Fi (robot computer)
Internal computer: 2.4 GHz and 5 GHz, 2 external antennas
Safety I/O connections
6 digital inputs, 6 digital outputs
Sensors
SICK safety laser scanners
2 units, microScan3 (front and rear), providing 360° visual protection around the robot
3D cameras
For pallet and obstacle detection (2 units)
Field of View (FoV) height: 1,800 mm
FoV distance in front of robot: 1,200 mm
Horizontal FoV angle: 114°
Minimum FoV distance in front of robot for ground view: 250 mm
Proximity sensors (8 units)
Lights and sound
Sound: Speaker
Signal and status lights
Signal lights on four sides, eight signal lights (two at each corner)


