Comparison Makita BO3711 vs Makita BO3710
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|---|---|---|
| Makita BO3711 | Makita BO3710 | |
from $83.00 up to $105.28 | Compare prices 1 | |
| User reviews | ||
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Model BO3710 has no RPM preset, model BO3711 has RPM preset | Quiet work. Perforation template. Model BO3710 has no RPM preset, model BO3711 has RPM preset | |
| Type | vibrating | vibrating |
| Power source | mains (230 V) | mains (230 V) |
Specs | ||
| Power consumption | 190 W | 190 W |
| Rotation speed | 4000 – 11000 rpm | 11000 rpm |
| Oscillation speed | 8000 – 22000 opm | 22000 opm |
| Oscillation amplitude | 2 mm | 2 mm |
| Tape/sheet length | 228 mm | 228 mm |
| Belt / sheet width | 93 mm | 93 mm |
| Pad size | 93x185 mm | 93x185 mm |
| Sheet fixing | clips | clips |
Additional features | ||
| Features | speed controller dust collector connection | dust collector connection |
| In box | dust collector | dust collector |
General | ||
| Noise level | 72 dB | 72 dB |
| Power cord length | 2 m | 2 m |
| Weight | 1.6 kg | 1.6 kg |
| Added to E-Catalog | january 2011 | january 2011 |
Compare Makita BO3711 and BO3710
Models Makita BO3711 and Makita BO3710 have similar characteristics, such as power consumption of 190 W, weight of 1.6 kg, and cable length of 2 m. However, the key difference is the presence of a speed regulator in the BO3711 model, which allows the user to adjust the speed from 4000 to 11000 RPM, whereas the BO3710 has a fixed speed of 11000 RPM. Both devices support dust collector connection, but the BO3711 offers more customization options for operation.
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Glossary
Rotation speed
The speed of rotation of the working attachment, which is capable of providing a grinder of the appropriate design (for example, angle — see "Type"). If the device has speed control, this paragraph shows the range of such adjustment, from minimum to maximum.
It makes sense to compare by this parameter units belonging to the same type and having the same maximum diameter of the disk (or other working nozzle). The latter is due to the fact that the larger the disk, the faster its edge moves (at the same speed); i.e. a larger diameter requires less RPM for the same performance/efficiency. In general, when comparing different models, the following should be taken into account. The higher rotation speed is well suited for large volumes of work (because it improves productivity) as well as for fine polishing with “delicate” nozzles. A lower setting, in turn, improves accuracy (reduces the chance of removing excess material), as well as provides more torque and allows you to more effectively deal with hard, stubborn materials. More detailed recommendations for different types of work and different nozzle diameters can be found in special sources; here we note that an increase in the rotation speed, usually, affects the cost of the machine compared to analogues (since this requires a more powerful engine). In addition, discs and other attachments may have maximum RPM limits.
It makes sense to compare by this parameter units belonging to the same type and having the same maximum diameter of the disk (or other working nozzle). The latter is due to the fact that the larger the disk, the faster its edge moves (at the same speed); i.e. a larger diameter requires less RPM for the same performance/efficiency. In general, when comparing different models, the following should be taken into account. The higher rotation speed is well suited for large volumes of work (because it improves productivity) as well as for fine polishing with “delicate” nozzles. A lower setting, in turn, improves accuracy (reduces the chance of removing excess material), as well as provides more torque and allows you to more effectively deal with hard, stubborn materials. More detailed recommendations for different types of work and different nozzle diameters can be found in special sources; here we note that an increase in the rotation speed, usually, affects the cost of the machine compared to analogues (since this requires a more powerful engine). In addition, discs and other attachments may have maximum RPM limits.
Oscillation speed
The frequency of vibration of the working attachment, which is capable of providing a grinder of the appropriate design (a classic example is vibration, see "Type"). If the device has an oscillation frequency adjustment, this paragraph gives the range of such adjustment, from minimum to maximum.
A higher frequency (with the same amplitude — see below) improves overall performance, especially when working with hard, stubborn materials, and also contributes to efficiency in delicate finishing (such as polishing). In turn, a lower frequency reduces the likelihood of making a mistake by removing an excessive amount of material. There are also more specific points related to this parameter; them, as well as recommendations for choosing the frequency for different jobs, materials and types of sanding sheets, can be found in special sources. Here, we note that individual sanding sheets may have their own limitations or recommendations regarding the operating frequency.
A higher frequency (with the same amplitude — see below) improves overall performance, especially when working with hard, stubborn materials, and also contributes to efficiency in delicate finishing (such as polishing). In turn, a lower frequency reduces the likelihood of making a mistake by removing an excessive amount of material. There are also more specific points related to this parameter; them, as well as recommendations for choosing the frequency for different jobs, materials and types of sanding sheets, can be found in special sources. Here, we note that individual sanding sheets may have their own limitations or recommendations regarding the operating frequency.
Features
— Speed Controller. The ability to limit the engine's maximum speed. Essentially, this function is a smooth speed adjustment; it's convenient when full speed isn't required — for example, in delicate tasks where precision is more important than performance. Note that this feature is found in all types of sanders — including those with a vibrational or belt operation (see "Type"): even in these machines, the vibration frequency or belt speed is determined by the engine's rotations.
— Speed Maintenance. The ability to maintain a set number of rotations regardless of the load on the working attachment. This function is implemented through automation, which adjusts the engine's power accordingly — increasing it under more load and decreasing it under lighter load. Constant rotation speed positively affects both the quality of processing and the lifespan of the working attachments and the tool itself.
— Brushless Motor. The presence of a brushless motor in an electric sander (see "Power Source"). These motors are considered more advanced than traditional brushed motors: they are more energy-efficient, quieter, and do not spark, which can be crucial in fire-hazardous environments. The main downside of brushless motors is their high cost.
— Lighting. This feature is undoubtedly desirable when working in lo...w-light conditions. However, it can also be useful in bright external light: the work area often ends up in shadow (e.g., from the tool itself), making it difficult to work without special lighting.
— Display. A built-in display that can show various information about the device's operation and status. Such a screen provides additional convenience and clarity, but overall, it is quite a specific feature that is rarely found in modern power tools.
— Smartphone Synchronization. The ability to connect the tool to a smartphone or other gadget (like a tablet) via Wi-Fi or Bluetooth. Such a connection is usually used for adjusting work parameters; it's often more convenient to do this through a mobile app than through the controls on the tool itself.
— Rotating Main Handle. The ability to rotate the main handle of the sander around the longitudinal axis. This feature is mainly found in angle models (see "Type") — it provides extra convenience, allowing you to adjust the handle's position according to the situation. This is important for working in unusual positions and hard-to-reach areas.
— Keyless Disc Replacement. The ability to change discs in a sander (usually angle, see "Type") without using keys and other additional tools. The convenience of this feature is clear: you don't need to constantly have a key on hand, keep track of it not getting lost, etc. However, keyless mounting is considered somewhat less reliable than keyed mounting, so it's rarely found in heavy-duty professional models.
— X-LOCK Mounting System. An advanced mounting system for the working attachment, used in some angle machines (see "Type") — predominantly made by Bosch and Makita. This system is somewhat more expensive than traditional 22-millimeter mounting using a nut or washer, but it has several advantages. Firstly, X-LOCK provides the simplest and quickest installation: no need to fuss with additional parts or tools, just place the disc on the spindle and press until it clicks; for removing the attachment, just press a button that disables the lock. Secondly, you can only install the attachment in one correct way relative to the tool — the design of the mounting disallows any other way. The main disadvantage of machines with this system is their incompatibility with cheaper and more common 22 mm standard discs; fittings under X-LOCK are not yet available in every hardware store.
— Collet Chuck. A specially designed chuck used in straight grinders (see "Type"). The grip of such a chuck consists of several elastic petals (usually 2-3) that compress when tightened, securing the working attachment. The main advantages of collets are the speed and convenience in changing attachments, simplicity of design, and low cost.
— Coolant Supply (Coolant). The ability to supply coolant to the work area. This function is mainly found in machines for stone and concrete (see "Type"), as water cooling is most relevant for these materials: it not only prevents overheating but also reduces dust formation. The machine provides a nozzle directed at the working attachment and a fitting for connecting to a water hose.
— Dust Collector Connection. The ability to connect a dust collection container to the tool for collecting dust and other debris generated during operation. Such a container may come with the machine, but this is not guaranteed, and this point should be clarified separately. In any case, a dust collector, while not providing 100% protection against debris, significantly reduces it and simplifies cleanup afterward. Dust collectors can be either reusable or disposable.
— Speed Maintenance. The ability to maintain a set number of rotations regardless of the load on the working attachment. This function is implemented through automation, which adjusts the engine's power accordingly — increasing it under more load and decreasing it under lighter load. Constant rotation speed positively affects both the quality of processing and the lifespan of the working attachments and the tool itself.
— Brushless Motor. The presence of a brushless motor in an electric sander (see "Power Source"). These motors are considered more advanced than traditional brushed motors: they are more energy-efficient, quieter, and do not spark, which can be crucial in fire-hazardous environments. The main downside of brushless motors is their high cost.
— Lighting. This feature is undoubtedly desirable when working in lo...w-light conditions. However, it can also be useful in bright external light: the work area often ends up in shadow (e.g., from the tool itself), making it difficult to work without special lighting.
— Display. A built-in display that can show various information about the device's operation and status. Such a screen provides additional convenience and clarity, but overall, it is quite a specific feature that is rarely found in modern power tools.
— Smartphone Synchronization. The ability to connect the tool to a smartphone or other gadget (like a tablet) via Wi-Fi or Bluetooth. Such a connection is usually used for adjusting work parameters; it's often more convenient to do this through a mobile app than through the controls on the tool itself.
— Rotating Main Handle. The ability to rotate the main handle of the sander around the longitudinal axis. This feature is mainly found in angle models (see "Type") — it provides extra convenience, allowing you to adjust the handle's position according to the situation. This is important for working in unusual positions and hard-to-reach areas.
— Keyless Disc Replacement. The ability to change discs in a sander (usually angle, see "Type") without using keys and other additional tools. The convenience of this feature is clear: you don't need to constantly have a key on hand, keep track of it not getting lost, etc. However, keyless mounting is considered somewhat less reliable than keyed mounting, so it's rarely found in heavy-duty professional models.
— X-LOCK Mounting System. An advanced mounting system for the working attachment, used in some angle machines (see "Type") — predominantly made by Bosch and Makita. This system is somewhat more expensive than traditional 22-millimeter mounting using a nut or washer, but it has several advantages. Firstly, X-LOCK provides the simplest and quickest installation: no need to fuss with additional parts or tools, just place the disc on the spindle and press until it clicks; for removing the attachment, just press a button that disables the lock. Secondly, you can only install the attachment in one correct way relative to the tool — the design of the mounting disallows any other way. The main disadvantage of machines with this system is their incompatibility with cheaper and more common 22 mm standard discs; fittings under X-LOCK are not yet available in every hardware store.
— Collet Chuck. A specially designed chuck used in straight grinders (see "Type"). The grip of such a chuck consists of several elastic petals (usually 2-3) that compress when tightened, securing the working attachment. The main advantages of collets are the speed and convenience in changing attachments, simplicity of design, and low cost.
— Coolant Supply (Coolant). The ability to supply coolant to the work area. This function is mainly found in machines for stone and concrete (see "Type"), as water cooling is most relevant for these materials: it not only prevents overheating but also reduces dust formation. The machine provides a nozzle directed at the working attachment and a fitting for connecting to a water hose.
— Dust Collector Connection. The ability to connect a dust collection container to the tool for collecting dust and other debris generated during operation. Such a container may come with the machine, but this is not guaranteed, and this point should be clarified separately. In any case, a dust collector, while not providing 100% protection against debris, significantly reduces it and simplifies cleanup afterward. Dust collectors can be either reusable or disposable.









