The Roborock Qrevo S is positioned as a high-end home vacuum cleaner designed for residential and small office environments. It distinguishes itself with a robust build, relatively heavy weight, and a variety of precise sensors including LiDAR and structured light, supporting AI-driven automation through proprietary software. Its integration with voice assistants and app control enhances user convenience.
The 3i P10 Ultra by 3i competes in the same home vacuum cleaner segment but emphasizes advanced perception with dual 3D structured light sensors and an AI camera for detailed environmental mapping. It provides autonomous operation with AI-enhanced navigation and safety features like a child lock, positioning itself as a smart, lightweight, and sensor-rich vacuum option.
Specifications Comparison
| Specification | Qrevo S | 3i P10 Ultra |
|---|---|---|
| Runtime | 180 minutes | 180 minutes (3 hours) |
| Battery Pack | 5200mAh Lithium-Ion | 5200 mAh |
| Charging Time | Approximately 4 hours | 4-5 hours |
| Navigation System | LiDAR | Spinning LiDAR with SLAM, 3D mapping, AI-powered visual recognition |
| Control Method | Remote control via app, voice control through Alexa and Google Home, AI automation | Smartphone app, voice control (Alexa, Google Assistant), autonomous operation |
| Connectivity | Wi-Fi, Bluetooth, Roborock App | Dual-band Wi-Fi (2.4 GHz and 5 GHz), Bluetooth |
| Operating Env | Indoor use; operates best in typical household environments | Indoor, hardwood, carpet, mixed floors |
| Payload Type | Not applicable | - |
| Safety Features | Obstacle detection, collision avoidance | Child lock, cliff detection, anti-collision sensors |
| Software System | Proprietary OS with app integration | Proprietary firmware with AI-enhanced navigation and cleaning algorithms |
Showing 10 of 44 specifications
Detailed Analysis

Design & Build Quality
The Qrevo S is significantly larger and heavier at 35.0 x 35.3 x 9.6 cm and 11.56 kg, indicating a robust build suited for durability in small offices or larger residential areas. In contrast, the 3i P10 Ultra is more compact and lightweight with a 34 cm diameter and 10 cm height, weighing only 4.5 kg, favoring ease of handling and potentially quieter operation.

Mobility & Navigation
Both robots utilize LiDAR for navigation, but the 3i P10 Ultra advances this with spinning LiDAR and simultaneous localization and mapping (SLAM) combined with AI-powered visual recognition, enabling complex 3D environmental mapping. The Qrevo S relies primarily on LiDAR plus structured light sensors for navigation, supporting AI automation but with less emphasis on 3D mapping.

Sensors & Perception
Qrevo S includes a comprehensive sensor array: LiDAR, structured light, cliff, bump, wheel encoders, and a dust sensor, focusing on obstacle detection and air quality monitoring. The 3i P10 Ultra incorporates dual 3D structured light sensors, an AI camera, ultrasonic, cliff, and bump sensors, enhancing obstacle identification and environmental awareness with AI visual recognition capabilities.

AI Capabilities
Roborock Qrevo S employs AI-driven automation integrated with proprietary software and app/voice control, focusing on obstacle detection and collision avoidance. The 3i P10 Ultra enhances AI use with AI-powered visual recognition for navigation, allowing it to recognize and adapt to its environment more dynamically, supported by autonomous operational modes.

Battery & Power Efficiency
Qrevo S offers a battery lifespan estimated between 3 to 5 years depending on use, with a maximum cleaning speed of 0.3 m/s. The 3i P10 Ultra's battery life is shorter at 2 to 3 years, though its exact cleaning speed is unspecified. The heavier Qrevo S might have higher power demands, while the lighter 3i could benefit from better energy efficiency in mobility.

Use-Case Suitability
The Qrevo S is suited for residential homes and small office spaces where durability, strong navigation, and extensive sensor coverage are valued. The 3i P10 Ultra appears designed for users needing advanced AI navigation and detailed environment recognition in typical home settings, though its specific use cases are not explicitly stated.

Safety Features
Both models incorporate safety functionality such as cliff detection and anti-collision sensors. Notably, the 3i P10 Ultra includes a child lock feature, adding an extra layer of operational safety in homes with children. The Qrevo S focuses on obstacle detection and collision avoidance systems without child lock.

Software Ecosystem
Qrevo S runs on a proprietary operating system with app integration, enabling remote control and voice commands via Alexa and Google Home. Similarly, the 3i P10 Ultra operates on proprietary firmware emphasizing AI-enhanced navigation and cleaning algorithms accessible through a smartphone app and voice control, supporting autonomous operation.

Pricing & Value
The Qrevo S is priced between $700 and $900, targeting the upper-mid market segment with robust features. The 3i P10 Ultra has a wider price range from $700 to $1100, possibly reflecting variations in feature sets or package options, with an emphasis on advanced AI and sensor technology that could justify the higher end of its price.
Analysis Score Summary
Total Score
7
Qrevo S
VS
Based on Detailed Analysis
Total Score
11
3i P10 Ultra
📊 Win: 2 points | Trade-off: 1 point each
Related Comparisons
Discover similar robot matchups to expand your knowledge and find the perfect solution


3i P10 Ultra vs Ecovacs T80 Omni
3i P10 Ultra or Ecovacs T80 Omni? Compare specs, navigation, sensors, and AI capabilities for home vacuum cleaning.


Qrevo S vs Ecovacs T80 Omni
Which robot wins? Qrevo S vs Ecovacs T80 Omni compared across navigation, battery, sensors, mobility, AI, and value.


3i P10 Ultra vs Ecovacs T80 Omni
3i P10 Ultra or Ecovacs T80 Omni? Compare specs, navigation, sensors, and AI capabilities for home vacuum cleaning.


Qrevo S vs Ecovacs T80 Omni
Which robot wins? Qrevo S vs Ecovacs T80 Omni compared across navigation, battery, sensors, mobility, AI, and value.
Disclaimer
All content, comparisons, and verdicts on this website are based on our research, testing, and opinion. While we strive for accuracy, we do not guarantee the completeness, reliability, or suitability of any information. Performance, specifications, and results may vary depending on usage and conditions. This website and its authors are not responsible for any decisions, actions, or outcomes based on the information provided. Always verify product details with the manufacturer before making purchase or operational decisions.