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Comparison Makita DF333DWME vs Makita DF331DWME

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Makita DF333DWME
Makita DF331DWME
Makita DF333DWMEMakita DF331DWME
from £194.33 
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from £41.04 
Outdated Product
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Product typedrill driverdrill driver
Designgungun
Specs
Rotation speed450/1700 rpm450/1700 rpm
Torque
30 Nm
with adjustment
20 steps
30 Nm
with adjustment
18 steps
Reducer2-speed2-speed
Number of speeds22
Reversesliderslider
Weight1.2 kg1.3 kg
Chuck
Chuck typekeylesskeyless
Chuck diameter10 mm10 mm
Wood drilling max. 21 mm21 mm
Metal drilling max. 10 mm10 mm
Features
Features
motor brake
LED light
motor brake
LED light
In box
case (bag)
charger
case (bag)
charger
Power supply
Power sourcebatterybattery
Battery in set22
Battery platformMakita CXTMakita CXT
Battery voltage12 V12 V
Battery capacity4 Ah4 Ah
Compatible batteriesBL1015, BL1020B, BL1040B, BL1016, BL1021B, BL1041BBL1015, BL1020B, BL1040B, BL1016, BL1021B, BL1041B
Charging time130 min130 min
Added to E-Catalogmarch 2019june 2016

Torque

Torque is the maximum force with which this model is capable of turning the working nozzle.

Higher torque gives more options, it allows you to cope with complex tasks such as drilling in hard materials, unscrewing stuck screws and nuts, etc. On the other hand, a lot of force requires corresponding power — and this, in turn, affects the dimensions , weight and cost of the tool itself, and also puts forward increased power requirements (mains power, battery capacity or pressure / compressor performance). And for some tasks, excessive torque is basically unacceptable, so for maximum versatility, it is desirable to have torque control — and this affects the cost even more. And the more steps, the more optimally you can configure the tool to perform a particular type of work. So the general rule is this: when choosing, it is worth considering the specifics of the planned work, and not chasing the greatest working effort.

Detailed recommendations on choosing the optimal torque for different types of tools (see "Device") can be found in special sources. Here we note that it is of key importance primarily for screwdrivers, although it is also given for other types of tools. At the same time, in the “weakest” models, the maximum working force does not exceed 15 Nm, in the most powerful ones it is more than 150 Nm.

Weight

The total weight of the tool is usually the device itself, without attachments. For battery models (see "Power Source"), usually, the weight is indicated with a standard battery installed; for battery-powered models, the weight can be given both with and without batteries, but in this case this point is not particularly important.

Other things being equal, less weight simplifies work, increases accuracy of movement and allows you to use the tool for longer without tiring. However, note that high power and productivity inevitably increase the mass of the tool; and various tricks to reduce weight increase the price and can reduce reliability. In addition, in some cases, a massive design is more preferable. First of all, this applies to work with a large load — for example, drilling holes of large diameter, or making recesses with impact: a heavy tool is more stable, it is less prone to jerks and shifts due to uneven material, vibration of mechanisms, etc.

It is also worth noting that specific weight values are directly related to the type of tool (see "Device"). Screwdrivers are the lightest — in most of them this figure does not exceed 500 g. Screwdrivers and drill drivers are more "heavy": their average weight is 1.1 – 1.5 kg, although there are many lighter ( 0.6 – 1 kg) and heavier ( 1.6 – 2 kg or more ) models. And clas...sic drills and wrenches have the greatest weight: such a tool must be quite powerful, so for them 1.6 – 2 kg is an average, 2.1 – 2.5 kg is above average, and many units weigh more than 2, 5 kg.
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