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Comparison Makita M1902 vs Bosch GHO 6500 Professional 0601596000

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Makita M1902
Bosch GHO 6500 Professional 0601596000
Makita M1902Bosch GHO 6500 Professional 0601596000
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Main
Quiet work. Calibration plate included.
The handle is rubberized. Metal gearbox housing.
Specs
Power consumption500 W650 W
Rotation speed16000 rpm16500 rpm
Planing width82 mm82 mm
Planing depth1 mm2.6 mm
Grooving depth9 mm9 mm
V-grooves13
Knivesdouble sidedsingle sided
Dust removalunidirectionalunidirectional
Features
edge guide
parking rest
edge guide
parking rest
General
Power sourcemains (230 V)mains (230 V)
Noise level95 dB86 dB
Power cord length2 m
Dimensions285x157x160 mm280x158x140 mm
Weight2.7 kg2.8 kg
Added to E-Catalogmay 2017september 2016

Power consumption

The total power consumed by the electric planer during operation. The more powerful the tool, the generally higher its productivity and the better it is suitable for large volumes of work and/or hardwoods. Here, however, it must be taken into account that the effective power (the power supplied by the unit directly to the working tool) is anyway lower than the consumed one, but it is far from always indicated. Therefore, it is quite possible to compare different models with each other precisely in terms of power consumption.

Note that more power means higher electricity consumption, and also, most often, more weight and cost of the tool. Therefore, it does not always make sense to chase the most powerful units. So, for occasional use and small volumes of work, a power of 500-600 W is considered quite sufficient; for regular work on relatively soft wood, 700-800 W is enough, and professional models have a power of more than 1000 W.

Rotation speed

The maximum speed of rotation of the working tool of the electric planer — a drum with knives attached to it. In modern models, this figure is practically never lower than 10,000 rpm (otherwise it is impossible to ensure normal quality of work), and in most cases it is in the range of 11,000 – 17,000 rpm. It is believed that the higher the number of revolutions, the more evenly the workpiece is processed and the smoother the surface is obtained; and the overall speed of work will be higher. On the other hand, a high speed also requires high engine power, especially when working with hardwoods; for such materials, it makes sense to use a low-speed tool — it will provide more efficient power distribution.

Planing depth

The greatest thickness of the layer of material that the planer can remove in one pass (most often the design provides for depth adjustment). The larger this parameter, the more performant the tool will be and the better it will be suitable for large-scale work. On the other hand, in fact it is rarely necessary to remove a large amount of material at a time, and tools capable of this require powerful (and therefore expensive) motors. Therefore, in most consumer-level models, the planing depth does not exceed 2 mm; more "deeper" units, usually, belong to the professional class.

V-grooves

The number of V-grooves provided in the design of the tool.

V-shaped grooves are located on the sole of the tool in the longitudinal direction. They are used to chamfer the corners of the workpiece, serving as a kind of guide: the tool is “put on” by the groove on the corner being machined and moves along the workpiece so that the corner constantly maintains contact with the groove. It is much easier to keep the planer level with this way of working than with a solid flat sole; this is especially true in cases where the workpiece cannot be turned "angle up" and the planer has to be kept in an inclined position.

Also note that this function is intended only for the first pass along the corner, then you have to work in the classical way, with a flat sole — however, with a sufficient depth of the V-shaped groove, the chamfer can be removed immediately, in the first pass. Actually, this is the point of having several grooves in the design — in such cases they have different depths and can be useful for different chamfer sizes. The maximum number of grooves found in modern electric planers is three ; using more in a hand tool just doesn't make sense.

Knives

The design of knives intended for use with a planer and, usually, supplied as standard. The type of knives does not affect the performance of the tool, but in the case of dullness or nicks, the methods for correcting the situation differ significantly.

— Unilateral. As the name suggests, these knives are sharpened on one side only. If defects appear on the blade, it can be removed and sharpened or the edge straightened. Technically, such an operation can be carried out many times, but it requires not only time, but also appropriate skills and equipment.

Bilateral. Knives sharpened on both sides are very convenient due to the fact that when the edge becomes dull or serrated, it is enough to remove the knife and install it on the other side, with a “fresh” blade. On the other hand, such blades do not allow sharpening — when the second side of the knife becomes unusable, the only option is to replace it.

Noise level

The maximum noise level produced by the planer during operation. The lower this indicator, the more comfortable the use of the tool, the less inconvenience it creates for both the user and others. Note that the noise level is measured in decibels, and this is not a linear unit — in other words, sounds with a difference of several dB in volume can differ significantly. A few examples for comparison: 75 dB noise is approximately equivalent to a scream, 80 dB is a motorcycle engine, 85 dB is a loud scream, 90 dB is the sound of a freight car moving at a distance of 5-6 m, 95 dB is the noise inside a subway car.

Power cord length

The length of the network cable can tell you how far from the outlet you can operate the device. Therefore, for domestic use, it is more relevant to choose models with a short cord, for construction work or use in production, in the garage a longer cable is better.
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