Comparison Procraft PKA42Li vs Makita DUC252Z
Add to comparison | ![]() | |
|---|---|---|
| Procraft PKA42Li | Makita DUC252Z | |
| Outdated Product | from $265.00 | |
| User reviews | ||
| TOP sellers | ||
DUC252Z comes without battery and charger, DUC252PT2 comes with two batteries (5Ah) and charger | ||
| Product type | chainsaw | chainsaw |
| Type | portable | portable |
| Power source | battery | battery |
Motor | ||
| Brushless motor | ||
| Engine location | longitudinally | transversely |
| No load speed | 4900 rpm | |
Cutting equipment | ||
| Bar/blade size | 300 mm | 250 mm |
| Chain pitch | 3/8 " | 3/8 " |
| Chain speed | 9 m/s | 8 m/s |
Protective functions | ||
| Soft start | ||
| Chain brake | ||
| Motor brake | ||
Features | ||
| Features | keyless chain tension keyless blade replacement | keyless chain tension keyless blade replacement |
| In box | chain without charger | chain without charger |
Battery | ||
| Battery in set | no | no |
| Battery platform | Proсraft 20V | Makita 18V LXT |
| Battery voltage | 20 В | 18 В |
| Compatible batteries | Procraft Battery20 | BL1815N, BL1820, BL1830, BL1840, BL1850, BL1860 |
| Powered by two batteries | ||
General | ||
| Top handle | ||
| Noise level | 94 dB | 95 dB |
| Oil tank volume | 0.08 L | |
| Size | 527x234x198 mm | |
| Weight | 4.1 kg | |
| Added to E-Catalog | december 2024 | august 2016 |
Compare Procraft PKA42Li and Makita DUC252Z
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Glossary
Brushless motor
A modern brushless motor type, which makes the tool more powerful, efficient, and convenient for prolonged use. This design reduces friction inside the motor, so the saw typically heats up less, operates more quietly, and lasts longer under regular load.
Compared to brushed models, the brushless motor better utilizes battery charge and maintains stable RPM under load, which is especially noticeable when cutting dense wood, beams, or sheet materials. Another significant advantage is fewer consumables and less maintenance, as brushes do not need to be replaced over time.
In practice, this is particularly useful for frequent construction, installation, roofing work, and other tasks where high power, autonomy, and reliability are expected from the saw.
Compared to brushed models, the brushless motor better utilizes battery charge and maintains stable RPM under load, which is especially noticeable when cutting dense wood, beams, or sheet materials. Another significant advantage is fewer consumables and less maintenance, as brushes do not need to be replaced over time.
In practice, this is particularly useful for frequent construction, installation, roofing work, and other tasks where high power, autonomy, and reliability are expected from the saw.
Engine location
The location of the motor in the electric portable saw (see "Type").
- Longitudinally. The longitudinal arrangement allows you to achieve a good balance, allowing you to work comfortably in different positions; this is especially true for cutting branches from trees and other similar work, where the cutting plane can be located at different angles. In addition, such a tool has a smaller width and a longer length, which can make it easier to work in hard-to-reach places. On the other hand, such saws are more expensive than cross-cut saws.
- Transversely. The transverse arrangement of the engine slightly worsens the balance compared to the longitudinal one and makes it difficult to saw along an inclined plane, at an angle to the vertical. In addition, the length of such saws is noticeably shorter. However, for the simplest work with sawing from top to bottom, they are no worse than longitudinal ones, but they are much cheaper. Yes, and a small length in some cases can also be a virtue.
- Longitudinally. The longitudinal arrangement allows you to achieve a good balance, allowing you to work comfortably in different positions; this is especially true for cutting branches from trees and other similar work, where the cutting plane can be located at different angles. In addition, such a tool has a smaller width and a longer length, which can make it easier to work in hard-to-reach places. On the other hand, such saws are more expensive than cross-cut saws.
- Transversely. The transverse arrangement of the engine slightly worsens the balance compared to the longitudinal one and makes it difficult to saw along an inclined plane, at an angle to the vertical. In addition, the length of such saws is noticeably shorter. However, for the simplest work with sawing from top to bottom, they are no worse than longitudinal ones, but they are much cheaper. Yes, and a small length in some cases can also be a virtue.
No load speed
The highest speed that the saw engine is capable of delivering in normal operation.
We emphasize that this parameter should not be confused with the maximum disk speed (see below) — here we are talking exclusively about the speed of rotation of the motor shaft. It can be specified for all types of saws, not only for models using discs. However, in general, engine speed is more of a reference than really significant information. In fact, it is needed mainly for some specific tool maintenance tasks; when choosing, it is better to focus on indicators that are more “close to life” — engine power, cutting depth, chain / tape speed or disk speed, etc.
We emphasize that this parameter should not be confused with the maximum disk speed (see below) — here we are talking exclusively about the speed of rotation of the motor shaft. It can be specified for all types of saws, not only for models using discs. However, in general, engine speed is more of a reference than really significant information. In fact, it is needed mainly for some specific tool maintenance tasks; when choosing, it is better to focus on indicators that are more “close to life” — engine power, cutting depth, chain / tape speed or disk speed, etc.
Bar/blade size
The largest tyre size (in chain saws) or disc (in circular saws and some others, see "Device") that is allowed for this tool. Tyres are sized by working length, rims by diameter.
A larger bar/wheel allows for deeper cuts but requires more powerful motors. Therefore, this parameter cannot be exceeded — this can lead to an overload of the engine with all the corresponding troubles. However, in many models with a disc it is physically impossible to install a nozzle with a diameter larger than the maximum allowable.
Also note that saws with similar bar/blade sizes may differ in maximum depth of cut (mostly due to differences in design or power). As for the specific dimensions, they depend on the type of saw (see "Device"). For example, large discs of 450 – 500 mm are found exclusively in stationary chain saws, the maximum figure for cutting models is 400 – 450 mm, for trimming — 300 – 350 mm, and sizes of 500 – 550 mm or more clearly indicate that speech It's about a chainsaw chainsaw bar. Detailed recommendations regarding the choice of a tool for a given size can be found in special sources.
A larger bar/wheel allows for deeper cuts but requires more powerful motors. Therefore, this parameter cannot be exceeded — this can lead to an overload of the engine with all the corresponding troubles. However, in many models with a disc it is physically impossible to install a nozzle with a diameter larger than the maximum allowable.
Also note that saws with similar bar/blade sizes may differ in maximum depth of cut (mostly due to differences in design or power). As for the specific dimensions, they depend on the type of saw (see "Device"). For example, large discs of 450 – 500 mm are found exclusively in stationary chain saws, the maximum figure for cutting models is 400 – 450 mm, for trimming — 300 – 350 mm, and sizes of 500 – 550 mm or more clearly indicate that speech It's about a chainsaw chainsaw bar. Detailed recommendations regarding the choice of a tool for a given size can be found in special sources.
Chain speed
The maximum speed of the chain relative to the material that a saw of the appropriate design can provide (see "Device"). Higher speed allows to achieve faster and cleaner cuts, but requires more engine power; low speed, in turn, reduces productivity, but allows you to achieve good traction with a relatively low engine power. More detailed recommendations regarding this parameter can be found in special sources.
Chain brake
The protective mechanism of the chainsaw, which almost instantly stops the chain in a dangerous situation. Most often, it is activated during kickback or when pressing the front hand guard. The main purpose of this function is to reduce chain rotation time and minimize the risk of serious injury. The chain brake is especially important when trimming branches, cutting firewood, and any work where the saw may suddenly jerk upward or sideways.
Motor brake
A feature that quickly stops the saw's attachment after releasing the button or trigger. Depending on the type of tool, this could be the blade, blade, or chain, which stops rotating noticeably faster than with a regular stop by inertia. Motor brake enhances safety because after finishing the cut, the working part doesn't spin for extra seconds. Compared to saws without a motor brake, the tool becomes more convenient for frequent short operations and hand position changes. In practice, this is especially useful for precise cuts, working on a workbench, and in situations where it's important to quickly put away the saw after cutting.
Battery platform
The name of the battery platform supported by the device. A single battery platform is used to combine various power tools of the same brand into one line (screwdriver, grinder, circular saw, etc.). Devices on the same platform use interchangeable batteries and chargers. Thanks to this, for example, there is no need to select a battery for each individual model of a power tool, because one purchased as a spare battery can be used in various power tools, depending on the situation or as needed. Batteries of the same platform basically differ from each other except perhaps in capacity.
Battery voltage
The operating voltage of the battery in the saw with the appropriate type of power supply (see "Power supply"). The more powerful the tool, the higher the battery voltage, usually. At the same time, this parameter is usually selected in such a way as to optimally match the characteristics of a particular model; therefore, in fact, voltage data may be required only when looking for a spare or additional battery.
Note that most often in modern saws one of two standard voltages is used — 18 V or 36 V. Batteries less than 18 V are typical mainly for compact low-power models, and 40 V or more — for heavy units, mostly professional ones.
Note that most often in modern saws one of two standard voltages is used — 18 V or 36 V. Batteries less than 18 V are typical mainly for compact low-power models, and 40 V or more — for heavy units, mostly professional ones.










