Compact Autonomous Sweeping Robot for Industrial and Semi-Outdoor Floors
Large-floor cleaning is a recurring labor cost that scales with facility size and shift frequency. The AIsirRobot autonomous sweeping robot is a compact, self-navigating floor cleaning platform for industrial and semi-outdoor hard floors. It combines side-brush sweeping, roller-brush collection and filtered suction in a single platform designed for warehouse floors, logistics centers, factory floors and selected semi-outdoor paved areas. AIsirRobot reviews aisle width, turning space, debris profile, surface type, operating conditions and deployment requirements before confirming whether this model is suitable for a specific project.
Product Overview
The AIsirRobot Autonomous Sweeping Robot is a compact, self-navigating cleaning solution designed for warehouses, logistics centers, factory floors, and selected semi-outdoor paved areas. It integrates dual side brushes, a roller brush, and a 1,500 m³/h filtered suction system to collect both larger dry debris and fine dust in a single cleaning cycle.
Equipped with 3D LiDAR navigation using TOF ranging, the robot provides 360° environmental detection and autonomous obstacle avoidance without requiring guide tracks or physical navigation infrastructure. Its compact 960 × 650 × 680 mm body supports operation in passages as narrow as 750 mm, while the 45-liter debris container reduces the frequency of waste emptying.
With a runtime of approximately 3–4 hours per charge and a supplier-stated maximum cleaning efficiency of 2,700 m²/h, the robot is suited to recurring large-area floor cleaning where businesses want to reduce repetitive manual cleaning work and improve operational consistency. Quick-release side brushes, roller brush, and debris container also simplify routine maintenance and servicing.
Is This Robot a Fit?
Likely Fit (after site review)
- Large paved or concrete floor areas with repeatable cleaning routes
- Sites meeting the verified 750 mm passage width and 1,200 mm turning clearance
- Dry debris within tested size and weight ranges (see Debris Compatibility Matrix)
- Defined charging, emptying and supervision procedures
Requires Project Review
- Rain, standing water or frequent wash-down environments (ingress protection rating to be confirmed)
- Slopes, curbs, thresholds and uneven surfaces (gradeability to be confirmed)
- Wet leaves, plastic film, cables or metal fragments (require sample or pilot testing)
- Heavy pedestrian or vehicle interaction zones
- Long-pile carpet or textile surfaces (compatibility not confirmed)
AIsirRobot conducts a site-fit review before recommending a configuration. Contact us to initiate this assessment.
Cleaning System and Verified Capabilities
3D LiDAR Navigation and Obstacle Avoidance
The robot uses a 3D LiDAR sensor with TOF (time-of-flight) ranging technology, providing 360-degree detection with a maximum sensing range of 70 meters. This enables the robot to build environmental maps, localize its position and identify obstacles in real time. The laser safety classification is Class 1 per available supplier documentation, subject to verification with the specific model’s test report.
The multi-sensor fusion system is designed to detect people, objects and drop-off zones. Specific detection capabilities for thin cables, transparent obstacles and edge profiles require site-specific validation. This robot does not require pre-installed guide tracks or physical barriers for navigation.
Side-Brush Sweeping and Roller-Brush Collection
The cleaning mechanism consists of two side brushes, a roller brush and a 1,500 m³/h suction airflow system paired with a HEPA filter. In a single pass, the robot is designed to capture both large debris and fine dust simultaneously. The HEPA filter captures fine particles during operation. The specific filter class and filtration efficiency require documentation confirmation.
This configuration is relevant for warehouses and logistics centers where floor dust accumulation affects product surface cleanliness and inventory contamination. The robot addresses dust at the floor level while capturing airborne particles during operation. Claims about overall indoor air quality improvement require site-specific measurement and should not be assumed from filtration specifications alone.
Compact Footprint for Constrained Spaces
With overall dimensions of 960 × 650 × 680 mm and a weight of 102 kg, the robot is designed for environments where aisle width is limited. The 750 mm passage width and 1,200 mm turning space make it suitable for standard warehouse aisle layouts. Sites with narrower aisles, tighter corners or obstacles in the turning path require a layout review before deployment.
Battery and Runtime
The robot is available with a standard 40 AH battery and an optional 60 AH battery. The runtime is 3–4 hours per charge. Battery voltage, watt-hours, charging time and the specific runtime difference between the two configurations require confirmation. Actual runtime depends on floor conditions, debris load, cleaning speed settings and battery condition.
The rated maximum cleaning efficiency of 2,700 m²/h is a supplier-stated figure. Actual effective output depends on route geometry, turning frequency, obstacle density, debris load, travel speed, battery condition, emptying frequency and charging strategy. Project planning should use site data or pilot results rather than the rated maximum alone.
Tool-Free Maintenance
The debris container, side brushes and roller brush use quick-release mechanisms. Operators can remove and replace these components without specialized tools. Maintenance intervals for consumables and spare parts depend on site conditions and usage frequency.
Smart Connectivity
The robot supports smart connectivity for remote monitoring and operational data tracking. Connectivity features, including network requirements, compatible platforms, API access, data scope, user permissions and any associated costs, vary by configuration. Contact AIsirRobot for detailed connectivity specifications for your intended deployment.
Primary Applications
✅ Warehouses and Logistics Centers
The primary application is warehouse and logistics floor cleaning. In these environments, floor dust settles onto stored goods and packaging, which can potentially affect product surface cleanliness and customer inspection outcomes. The robot’s side-brush sweeping, roller-brush collection and filtered suction address dust at the source.
Surface: Concrete or similar hard flooring. Debris: Dry dust, packaging fragments, wood shavings, paper and similar warehouse waste. Conditions: Aisle width ≥ 750 mm, turning space ≥ 1,200 mm, defined charging and emptying stations.
✅ Factory Floors
The robot can be deployed on factory floor surfaces for routine cleaning of production-adjacent areas. Industrial debris such as metal shavings, screws and dry production waste may be collectible, but specific debris types require sample or pilot testing to confirm compatibility and prevent damage to the cleaning mechanism.
Surface: Hard industrial flooring. Debris: Dry industrial waste, dust, production fragments. Conditions: Debris size and weight within tested ranges, no wet or oily surfaces.
✅ Selected Semi-Outdoor Paved Areas
The robot can operate in semi-outdoor paved areas including commercial building plazas and campus walkways. The 3D LiDAR navigation system enables operation in open areas with pedestrian traffic. Outdoor debris such as fallen leaves and cigarette butts can be collected. Full outdoor deployment with rain exposure requires confirmation of the ingress protection rating for the selected configuration.
Surface: Paved concrete, tile or similar hard outdoor surfaces. Debris: Dry leaves, cigarette butts, paper and bottles. Conditions: No standing water, no heavy rain without verified IP rating, surface gradient within confirmed limits.
FAQS
What types of floors can this robot clean?
The robot is designed for concrete and hard industrial flooring in warehouses, factories and logistics centers. It can also operate on selected semi-outdoor paved surfaces. Compatibility with carpet, textile surfaces or uneven flooring is not confirmed. AIsirRobot reviews surface type during the site-fit assessment.
How long does the battery last per charge?
The runtime is 3–4 hours per charge. Battery voltage, charging time and the runtime difference between the 40 AH and 60 AH configurations require confirmation. Actual runtime depends on floor conditions, debris load and cleaning speed settings.
How much area can the robot clean per hour?
The rated maximum cleaning efficiency is 2,700 m²/h (supplier-stated). Actual effective coverage depends on route layout, obstacle density, turning frequency and debris volume. Project planning should use site data or pilot results.
What is the minimum aisle width the robot can navigate?
The robot requires a minimum passage width of 750 mm and a turning space of 1,200 mm. Sites with narrower aisles should request a layout review before deployment.
Is the LiDAR sensor safe for use around people?
The laser classification is Class 1 per available supplier documentation, subject to verification with the specific model’s test report. Class 1 indicates low-risk laser output per supplier documentation. AIsirRobot can provide available documentation upon request.
Can the robot operate in rain or on wet surfaces?
Rain operation should not be assumed unless the selected configuration has a verified ingress-protection rating and the operating manual permits the intended conditions. Please provide rainfall exposure, drainage, standing-water risk and surface details so AIsirRobot can confirm the applicable limits or recommend an alternative configuration.
Can the robot handle slopes, ramps or curbs?
Gradeability and threshold limits require site and model verification. Please provide slope gradient, curb height and transition surface details for AIsirRobot to assess compatibility.
What is the charging method and how long does charging take?
Charging method and time are to be confirmed for the selected configuration. Contact AIsirRobot for charging specifications, including power requirements and recommended charging station placement.
How is routine maintenance performed?
The debris container, side brushes and roller brush use quick-release mechanisms and can be replaced without specialized tools. The HEPA filter is accessible for inspection and replacement. Maintenance intervals for consumables depend on site conditions and usage frequency.
What consumables and spare parts are available?
Consumable and wear components include side brushes, the roller brush and the HEPA filter. AIsirRobot coordinates consumable supply and maintenance scheduling. Specific replacement cycles depend on site conditions. Contact us for a consumables list and estimated replacement intervals.
What certifications and safety documentation are available?
Available documentation includes supplier-stated Class 1 laser safety classification and HEPA filtration. Specific certification reports, test standards and document numbers require model-specific confirmation. AIsirRobot can provide available documentation upon request.
What are the warranty, lead time and MOQ?
Warranty is 12 months, subject to configuration, quantity, destination and contract terms. Lead time is 35 days, subject to order confirmation and production schedule. MOQ is 1 unit.
Request a Quote or Technical Evaluation
Tell us what you need the robot to do. Even if some technical details are not yet confirmed, our team can help evaluate suitable options.
- Application: Briefly describe the task, workflow, or problem you want the robot to handle.
- Key requirements: Share any known payload, reach, capacity, runtime, accuracy, speed, or other performance needs.
- Site & integration: Tell us about the operating environment, layout, existing equipment, or software interfaces if relevant.
- Quantity & timeline: Let us know the expected quantity, destination country, and target delivery or deployment time.