AIsirRobot Commercial Cleaning Robot
An autonomous floor cleaning robot with self-cleaning roller technology, a 4-in-1 base station, and LiDAR navigation — built for facilities that need consistent daily cleaning quality with less labor.
Product Overview
Commercial floor cleaning is labor-intensive, quality-inconsistent, and hard to scale. Staff turnover, shift variation, and rising labor costs make it difficult to maintain the same cleaning standard every day. Large floor areas amplify this challenge. The AIsirRobot commercial cleaning robot addresses this with an autonomous robotic floor scrubber that scrubs, disinfects, and self-maintains — reducing the labor hours required for daily commercial floor cleaning while delivering consistent results cycle after cycle.
The robot combines autonomous scrubbing, UV floor disinfection, and a self-maintaining base station into one integrated system. A 13L water tank and high-polymer sponge roller reduce manual intervention across extended cleaning cycles. The robot navigates with 360-degree LiDAR, detects obstacles up to 8 meters away, and supports app-based scheduling for zone-specific cleaning.
Applications
This industrial floor cleaning robot is an autonomous cleaning solution designed for indoor hard-floor environments where consistent daily cleaning quality and reduced labor dependency are priorities.
Different facility types face different cleaning challenges. Here is how this robot addresses specific pain points:
- Shopping malls and retail floors — High foot traffic creates continuous soil accumulation. Scheduled autonomous cleaning during low-traffic hours maintains floor appearance without allocating staff to manual mopping shifts.
- Office buildings and lobbies — Multiple small zones with varying traffic levels. App-based zone scheduling allows different cleaning frequencies for entrances, corridors, and open-plan areas.
- Hospitals and clinics — Hygiene standards are regulated. UV floor disinfection adds a supplementary hygiene layer for environments where surface sanitation is monitored and documented.
- Schools and educational facilities — Cleaning must happen within narrow time windows. Quiet operation at 71-73 dB enables after-hours cleaning without disrupting evening activities or dormitory areas.
- Hotels and hospitality corridors — Furniture, signage, and guest belongings create obstacle-rich environments. LiDAR-based obstacle avoidance handles these without manual pre-cleaning of the path.
- Factories and warehouse floors — Large open floor plans with edge and stair hazards. LiDAR navigation covers expansive areas, and anti-fall sensors prevent stair-edge accidents.
- Airports and transit hubs — Multiple zones with different access levels. Virtual wall settings restrict cleaning to designated areas without blocking passenger flow.
Actual suitability for a specific site depends on floor material, layout complexity, traffic patterns, and cleaning frequency requirements. A site assessment is recommended before final configuration.
Key Features
Self-Cleaning Roller Technology
The robot uses a high-polymer sponge roller with built-in self-cleaning capability. The roller continuously cleans itself during operation, which prevents dirty water from being redeposited onto the floor. This means no secondary contamination during a single cleaning cycle.
For facilities where hygiene standards matter — hospitals, food retail, schools — this reduces the risk of spreading contaminants across floor areas compared to traditional mops that reuse soiled water. For a large retail floor, this means the robot can complete a full cleaning cycle without stopping to wash or replace the roller, reducing unattended cleaning interruptions that would otherwise require staff intervention.
4-in-1 Base Station
The docking station integrates four automated functions into one unit:
| Function | What It Does | What This Means for Your Team |
| Auto water exchange | Supplies clean water, collects waste water | Eliminates manual water refill and disposal between cycles |
| Auto dust collection | Collects solid debris from the robot | Reduces filter and bin maintenance frequency |
| Auto charging | Charges the robot battery automatically | Enables continuous operation without staff intervention |
| Auto disinfection | UV-based station disinfection | Maintains station hygiene between uses |
The station can be connected directly to a water tap and floor drain, eliminating the need for manual water changes. The 13L water tank capacity supports approximately 8.7 robot refills before requiring a water source refill. The robot operates for approximately 1 hour per full water charge. With the base station supporting 8.7 refills, total autonomous cleaning time can theoretically extend to approximately 8.7 hours before a water source refill is needed.
LiDAR Navigation and Obstacle Avoidance
A 360-degree LiDAR sensor maps the environment in real time. The robot detects obstacles up to 8 meters away and actively routes around items such as sofas, books, and shoes. Front, left, and right anti-fall sensors trigger automatic retreat near stairs or ledges.
Virtual wall settings allow facility managers to restrict cleaning to designated zones — useful for partial-area cleaning in open-plan spaces.
UV Floor Disinfection
An ultraviolet lamp mounted on the underside of the robot provides floor surface disinfection during the cleaning pass. This serves as a supplementary hygiene measure for environments with elevated sanitation requirements.
UV disinfection is a supplementary process. It does not replace established facility hygiene protocols or chemical disinfection procedures where regulated standards apply.
App-Based Cleaning Control
The robot supports app-based remote control with the following functions:
- One-tap global mapping and cleaning plan generation
- Spot cleaning for targeted areas
- Zone cleaning for defined floor sections
- Selected area cleaning for specific rooms or zones
The app interface displays real-time task status, area coverage, and remaining battery percentage.
Pressurized Scrubbing and Strong Suction
The robot applies pressurized scrubbing for deep cleaning, removing stubborn stains without damaging floor surfaces. Strong suction simultaneously collects dust, debris, and hair in a single pass. This combines scrubbing and debris collection in one pass, reducing the number of cleaning cycles needed per shift compared to separate mopping and vacuuming workflows.
Floor surface compatibility should be verified before deployment. The high-polymer sponge roller is designed for hard floors; suitability for delicate or specialty flooring materials should be confirmed.
Robot vs. Manual Cleaning: What Changes for Your Facility
A robotic floor cleaning machine does not replace your entire cleaning team. It replaces the repetitive, time-consuming floor mopping portion of their work — and does it more consistently.
| Factor | Manual Mopping | AIsirRobot Cleaning Robot |
| Cleaning consistency | Varies by operator, shift, and fatigue level | Consistent pressure, speed, and coverage every cycle |
| Water hygiene | Mop water gets dirtier during use, risking cross-contamination | Self-cleaning roller prevents dirty water redeposition |
| Labor hours | Requires dedicated staff for mopping, water changes, and disposal | One operator can monitor multiple units; base station automates water exchange |
| Floor coverage tracking | No data on which areas were cleaned | App records area coverage, task status, and completion |
| Disinfection | Separate chemical process required | UV disinfection runs simultaneously during scrubbing pass |
| Obstacle handling | Operator manually navigates around objects | LiDAR detects obstacles up to 8 m and routes automatically |
| Noise disruption | Minimal | 71-73 dB during operation; no noise when stationary |
This comparison helps you identify which portions of your current cleaning workflow can be automated and which still require human staff.
Suitable Floor Types
The robot is designed for indoor hard-floor surfaces. The high-polymer sponge roller provides scrubbing action that cleans without scratching standard hard flooring materials.
Based on the high-polymer sponge roller design, the following hard-floor types are expected to be compatible. Actual compatibility should be confirmed through a site assessment.
Compatible floor types include:
- Tile (ceramic, porcelain)
- Concrete (sealed)
- Vinyl and linoleum
- Stone (sealed marble, granite)
- Epoxy-coated floors
Requires confirmation before deployment:
- Unsealed stone or porous surfaces
- Anti-static or conductive flooring (common in electronics manufacturing)
- Heavily textured or uneven surfaces
- Floors with expansion joints or drainage channels
Floor surface compatibility should be verified with a site assessment before final configuration.
Technical Specifications
FAQS
What floor types does this commercial cleaning robot support?
The robot is designed for hard-floor surfaces including tile, sealed concrete, vinyl, sealed stone, and epoxy-coated floors. The high-polymer sponge roller provides scrubbing without scratching standard hard flooring. For specialty or delicate flooring materials, surface compatibility should be confirmed before deployment.
How does the base station water supply work?
The base station can be connected directly to a water tap and floor drain. This enables automatic clean water supply and waste water drainage without manual refill. The 13L internal tank supports approximately 8.7 robot refills before the station requires a water source refill.
Can the robot clean multiple floors?
The robot uses LiDAR mapping for a single floor level. Multi-floor commercial floor cleaning requires physical relocation and re-mapping on each level. Stair detection prevents the robot from falling, but the robot cannot climb stairs autonomously.
What is the robot’s runtime per water charge?
The robot operates for approximately 1 hour per full water charge. Runtime varies depending on floor material, cleaning mode, and obstacle density in the environment. With the base station supporting 8.7 refills, total autonomous cleaning time can theoretically extend to approximately 8.7 hours.
How loud is this industrial floor cleaning robot during operation?
The robot operates at 71-73 dB during cleaning, comparable to normal conversation volume. The base station operates at 85-89 dB during water exchange and waste collection. Noise levels vary slightly depending on floor material. Both units produce no noise when stationary.
What warranty and support are included?
A 12-month warranty covers both the robot and base station. Lead time is approximately 35 days. MOQ is 1 unit. After-sales coordination is available through AIsirRobot support channels for troubleshooting and replacement parts.
Can this robotic floor scrubber be integrated with our building management system?
The robot operates as a standalone unit with app-based control. Integration with existing building management systems depends on site-specific requirements and model configuration. Compatibility details for specific systems can be provided on request.
How does the self-cleaning roller compare to traditional mopping?
For buyers comparing this robot to traditional mopping workflows, the key difference is operational: the self-cleaning roller eliminates the need to stop and rinse or replace mop heads during a cleaning cycle. This reduces both labor hours and water consumption per cycle, while maintaining consistent cleaning quality from start to finish.
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.