Comparison Dreame X50 Master vs Dreame X40 Master
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|---|---|---|
| Dreame X50 Master | Dreame X40 Master | |
| Outdated Product | from $899.99 | |
| TOP sellers | ||
Charging station with self-cleaning and drying system. Lifting mops when driving onto carpets. Lifting mechanism for overcoming high thresholds. Possibility of connection to a water supply system. | Charging station with self-cleaning system. Brush and mop lifting system. Needs connection to water supply and sewerage. | |
| Type | robot vacuum cleaner | robot vacuum cleaner |
| Cleaning | dry and wet retractable brush turbo brush retractable mop | dry and wet side brush turbo brush floor polisher (for wiping) |
| Water supply adjustment | ||
Robot vacuum cleaner | ||
| Suction power | 20000 Pa | 12000 Pa |
| Dust container capacity | 400 ml | 300 ml |
| Water tank capacity | 60 ml | 80 ml |
| Power auto-adjustment | ||
| Fine filter | HEPA | |
| Building a room map | rangefinder + camera | rangefinder + camera |
| Cleaning area limitation | via the app | via the app |
Features | ||
| Control via smartphone | ||
| Voice assistant | Google Assistant, Amazon Alexa, Apple Siri | Google Assistant, Amazon Alexa, Apple Siri |
| Scheduled cleaning | ||
| Object recognition | ||
| Memory of several maps (floors) | ||
| Surveillance camera | ||
Self-cleaning station | ||
| Dust collector station | disposable bag | disposable bag |
| Dust container volume | 3.2 L | 4.2 L |
| Self-cleaning nozzle | ||
| Ability to connect to the water supply | ||
Battery | ||
| Battery capacity | 6.4 Ah | 6.4 Ah |
| Operating time | 220 min | 198 min |
General | ||
| Cleaning area | 205 m² | 308 m² |
| Threshold clearance | 60 mm | 22 mm |
| Noise level | 63 dB | |
| Dimensions (HxWxD) | 8.9x35x35 cm | 10.4x35x35 cm |
| Weight | 4.07 kg | |
| Color | ||
| Added to E-Catalog | may 2025 | september 2024 |
Compare Dreame X50 Master and X40 Master
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Glossary
Cleaning
The cleaning method determines whether the robot can only collect dry debris or also wipe the floor covering with water, and which methods are available for this.
— Dry. The robot cleans the floor with brushes and an airflow, directing dust, crumbs, hair and pet fur into the dust container. This option is suitable for carpets and hard floors, but does not remove stains and marks from the floor.
— Dry and wet. The device combines debris suction with floor wiping using a damp attachment. Depending on the design, this may be a simple cloth or an active washing module that can better handle fresh stains and shoe marks.
— Side brushes. Small rotating elements that sweep debris along walls, near furniture and out of corners towards the main suction opening. One side brush on the edge of the body sweeps debris along walls, near furniture and out of corners towards the central suction channel. This design is usually sufficient, as the robot most often moves along obstacles with one particular side. Two brushes operate on both sides of the body and cover a wider strip of floor in one pass. This setup is especially convenient when moving along walls and between furniture, although on smooth floors fast brushes can sometimes scatter light debris.
— Extendable brush. A mov...able side brush automatically extends beyond the body when cleaning corners and areas near walls. Compared to a conventional fixed design, it reduces uncleaned areas where the robot body cannot get close enough.
— Turbo brush. A motorized module at the bottom of the robot that picks up debris and directs it into the suction channel. The working part may consist of a roller with bristles, rubber blades, or a combined surface. This system collects pet fur, hair and dirt from carpets more effectively than a simple suction opening, but bristled elements need regular cleaning to remove tangled hair.
— Floor scrubber. An active washing module with rotating mops or a roller that does not simply glide over the floor but mechanically scrubs away dirt. This system removes stains and marks better than a regular cloth.
— Extendable floor scrubber. One of the rotating mops shifts to the side and extends beyond the robot body. This allows the floor to be wiped closer to skirting boards, furniture legs and corners, where a standard fixed floor scrubber leaves a narrow dry strip.
— Vibration wiping. The washing platform rapidly moves the cloth back and forth, increasing friction against the surface. In terms of effectiveness, this option is between a passive cloth and rotating mops, effectively removing light stains and marks.
— Cloth wiping. A damp fabric attachment is fixed under the body and pulled across the floor as the robot moves. This simple solution is suitable for regular removal of fine dust and fresh marks, but barely scrubs off dried dirt.
— Dry. The robot cleans the floor with brushes and an airflow, directing dust, crumbs, hair and pet fur into the dust container. This option is suitable for carpets and hard floors, but does not remove stains and marks from the floor.
— Dry and wet. The device combines debris suction with floor wiping using a damp attachment. Depending on the design, this may be a simple cloth or an active washing module that can better handle fresh stains and shoe marks.
— Side brushes. Small rotating elements that sweep debris along walls, near furniture and out of corners towards the main suction opening. One side brush on the edge of the body sweeps debris along walls, near furniture and out of corners towards the central suction channel. This design is usually sufficient, as the robot most often moves along obstacles with one particular side. Two brushes operate on both sides of the body and cover a wider strip of floor in one pass. This setup is especially convenient when moving along walls and between furniture, although on smooth floors fast brushes can sometimes scatter light debris.
— Extendable brush. A mov...able side brush automatically extends beyond the body when cleaning corners and areas near walls. Compared to a conventional fixed design, it reduces uncleaned areas where the robot body cannot get close enough.
— Turbo brush. A motorized module at the bottom of the robot that picks up debris and directs it into the suction channel. The working part may consist of a roller with bristles, rubber blades, or a combined surface. This system collects pet fur, hair and dirt from carpets more effectively than a simple suction opening, but bristled elements need regular cleaning to remove tangled hair.
— Floor scrubber. An active washing module with rotating mops or a roller that does not simply glide over the floor but mechanically scrubs away dirt. This system removes stains and marks better than a regular cloth.
— Extendable floor scrubber. One of the rotating mops shifts to the side and extends beyond the robot body. This allows the floor to be wiped closer to skirting boards, furniture legs and corners, where a standard fixed floor scrubber leaves a narrow dry strip.
— Vibration wiping. The washing platform rapidly moves the cloth back and forth, increasing friction against the surface. In terms of effectiveness, this option is between a passive cloth and rotating mops, effectively removing light stains and marks.
— Cloth wiping. A damp fabric attachment is fixed under the body and pulled across the floor as the robot moves. This simple solution is suitable for regular removal of fine dust and fresh marks, but barely scrubs off dried dirt.
Water supply adjustment
A function that allows you to adjust the amount of liquid supplied to the robot vacuum cleaner’s pad, mops, or cleaning roller. A low level is suitable for laminate and parquet flooring, while a more intensive level is ideal for tiles and areas with noticeable dirt. Water flow adjustment helps prevent excessive floor wetting while improving wet cleaning efficiency.
Suction power
Measured in Pa, this indicator describes the robot vacuum cleaner's suction pressure: the higher it is, the easier it is for the device to pick up heavy debris and clean carpet pile. Values around 2,000–4,000 Pa are usually sufficient for regular cleaning of smooth floors, while 6,000–10,000 Pa and above are better suited for collecting hair, sand, and dirt from carpets or floor joints.
Dust container capacity
The dustbin capacity indicates how much dry debris fits in the robot vacuum’s built-in container before it needs to be emptied. Models with a 200–300 ml capacity are suitable for a small apartment and frequent cleaning cycles, while a 400–600 ml capacity is more convenient for larger areas, pets, or lots of hair. For robots with a self-emptying station, the size of the internal container is less important, as debris is automatically transferred to the docking station’s collection bin.
Water tank capacity
The tank capacity determines the water supply for moistening the pad, rotating mops, or cleaning roller. Compact tanks of around 200 ml are suitable for regular wiping of small areas, while 300–500 ml tanks allow fewer interruptions for refilling during cleaning.
Fine filter
Fine filter captures fine dust, pollen, and other particles that have passed through the main dust container, preventing them from returning to the room air. The higher the class, the more effective the filtration.
— EPA 10. Retains at least 85% of particles of the most penetrating size and provides basic fine filtration of the outgoing air.
— EPA 11. Captures at least 95% of fine particles, making it better suited for regular cleaning of dusty rooms.
— EPA 12. Provides efficiency from 99.5% and noticeably reduces the amount of fine dust returned to the room.
— HEPA 13. Captures at least 99.95% of the most difficult-to-retain particles and is especially useful in homes with allergy sufferers, children, or pets.
— HEPA 14. Retains from 99.995% of such particles and provides the highest level of filtration among the listed classes.
— EPA 10. Retains at least 85% of particles of the most penetrating size and provides basic fine filtration of the outgoing air.
— EPA 11. Captures at least 95% of fine particles, making it better suited for regular cleaning of dusty rooms.
— EPA 12. Provides efficiency from 99.5% and noticeably reduces the amount of fine dust returned to the room.
— HEPA 13. Captures at least 99.95% of the most difficult-to-retain particles and is especially useful in homes with allergy sufferers, children, or pets.
— HEPA 14. Retains from 99.995% of such particles and provides the highest level of filtration among the listed classes.
Memory of several maps (floors)
Multiple map memory allows the robot vacuum to save separate layouts for different floors or rooms. When the device is moved, it recognizes the required map and uses the already defined rooms, no-go zones, and cleaning settings. This feature is especially useful for multi-story homes, as it eliminates the need to rescan the space every time the robot is moved.
Dust container volume
The dock station dustbin capacity indicates how much debris the bag or reusable container can hold before it needs to be emptied. A 2–3 L capacity is usually enough for several weeks of regular cleaning, while models from 4 L are more convenient for large apartments and homes with pets. The actual maintenance interval depends on the area, cleaning frequency, number of carpets, pet hair, and other debris.
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.

