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Comparison Dreame W10 Pro vs Dreame W10

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Dreame W10 Pro
Dreame W10
Dreame W10 ProDreame W10
from £821.81 
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Two rotating wipes for wet cleaning. Charging station with system for cleaning and wetting wipes.
The self-cleaning station does not empty the dust bin.
Two rotating wipes for wet cleaning. Charging station with system for cleaning and wetting wipes.
The self-cleaning station does not empty the dust bin.
Typerobot vacuum cleanerrobot vacuum cleaner
Cleaning
dry and wet
side brush
turbo brush
floor polisher (for wiping)
dry and wet
side brush
turbo brush
floor polisher (for wiping)
Robot vacuum cleaner
Suction power4000 Pa4000 Pa
Dust container capacity450 ml450 ml
Power auto-adjustment
Fine filterHEPAHEPA
Building a room maprangefinder + camerarangefinder (laser)
Cleaning area limitationvia the appvia the app
Features
Control via smartphone
Voice assistantGoogle Assistant, Amazon AlexaGoogle Assistant, Amazon Alexa
Scheduled cleaning
Object recognition
Memory of several maps (floors)
Self-cleaning station
Docking station clean water capacity4.5 L4 L
Dirty water dock station capacity4 L4 L
Self-cleaning nozzle
Battery
Battery capacity6.4 Ah6.4 Ah
Operating time160 min120 min
General
Cleaning area200 m²300 m²
Threshold clearance20 mm20 mm
Dimensions (HxWxD)10.6x33.4x31.4 cm10.6x33.4x31.4 cm
Color
Added to E-Catalogdecember 2022may 2022
Compare Dreame W10 Pro and W10
Both robot vacuums, the Dreame Bot W10 Pro and the Dreame Bot W10, offer similar features such as dry and wet cleaning, a suction power of 4000 Pa, and a HEPA filter. However, the W10 Pro stands out with a longer runtime of 160 minutes compared to the W10's 120 minutes, making it more suitable for larger areas. The W10 Pro also supports mapping the space using a rangefinder and a camera, while the W10 utilizes only a laser. Both devices can connect to a smartphone and voice assistants, but the W10 Pro might be more convenient for users who prioritize higher autonomy and navigation accuracy.
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Dreame W10 Pro often compared
Glossary

Building a room map

Map building allows the robot vacuum to memorize the room layout, track covered areas, and plan a systematic cleaning route. The mapping method affects its accuracy, orientation speed, and the device's ability to detect obstacles.

— With sensors. The robot creates an approximate map using data from the gyroscope, motion sensors, wheels, and obstacle collisions. This system is more affordable, but less accurate at determining the exact location of walls and furniture, while accumulated errors may lead to repeated passes or missed areas.

— With a rangefinder. A laser rangefinder, or lidar, measures the distance to surrounding objects and creates an accurate map of the room even before completing a full sweep. It works reliably in low light, confidently detects walls and furniture, and also supports room division and no-go zones.

— With a camera. The camera analyzes the surroundings and navigates using visual objects, helping refine the robot's position and the room layout. Its advantage is the ability to distinguish individual objects, although performance depends more heavily on lighting.

— With a rangefinder and camera. The combined system uses lidar for accurate distance measurement and map building, and a camera to recognize small objects on the floor. Such a robot not only navigates rooms confidently in any lighting but also avoids cables, shoes, toys, and pet...bowls more effectively.

Object recognition

A function in which the robot vacuum cleaner uses a camera and analysis algorithms to determine exactly what is on the floor. The device can distinguish wires, shoes, toys, pet bowls, and other small obstacles, then selects a safe route around them. Compared to conventional sensors, object recognition does not simply detect an obstacle but identifies its type, reducing the risk of getting stuck, collisions, and cables wrapping around the brush.

Docking station clean water capacity

Tank capacity determines how much water the docking station can use to refill the robot and wash the cleaning pads without refilling. A 3–5 L tank is usually enough for several cleaning cycles, but consumption depends on the room area and how often the mops are cleaned.

Operating time

Battery life determines how much area the robot vacuum can clean before returning to the docking station. Actual performance depends on the selected mode, suction power, floor type, operation of the mops or roller, and layout complexity. Therefore, the stated maximum time is usually achieved in a gentle mode and will be noticeably shorter during intensive cleaning.

Cleaning area

The cleaning area refers to the approximate room size the robot can cover on a single battery charge. In Eco mode, the device will cover more space than at maximum suction power or during intensive floor mopping. The value stated by the manufacturer is usually calculated for a relatively uncluttered room and may be lower in real conditions.