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Comparison Bosch GSR 120-LI Professional 06019G8020 vs Bosch GSR 120-LI Professional 06019F7001

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Bosch GSR 120-LI Professional 06019G8020
Bosch GSR 120-LI Professional 06019F7001
Bosch GSR 120-LI Professional 06019G8020Bosch GSR 120-LI Professional 06019F7001
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from $99.40 up to $105.96
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Product typedrill driverdrill driver
Designgungun
Specs
Rotation speed400/1500 rpm380/1300 rpm
Torque
30 Nm
with adjustment
20 steps
30 Nm
with adjustment
20 steps
Reducer2-speed2-speed
Number of speeds22
Reversesliderslider
Weight0.97 kg0.99 kg
Chuck
Chuck typekeylesskeyless
Chuck diameter10 mm10 mm
Wood drilling max. 20 mm20 mm
Metal drilling max. 10 mm8 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 platformBosch Professional 12 VBosch Professional 12 V
Battery voltage12 V12 V
Battery typeLi-IonLi-Ion
Battery capacity2 Ah1.5 Ah
Compatible batteriesGBA 10.8, GBA 12GBA 10.8, GBA 12
Charging time110 min65 min
Battery mountpod-typepod-type
Added to E-Catalogoctober 2019april 2017

Rotation speed

The speed of rotation of the working nozzle provided by the tool.

If a single number is indicated in this paragraph (for example, 1800), it can be either a standard, constant, or maximum rotation speed. This refers to the maximum speed if the tool has more than one speed (see "Number of speeds") and/or a speed controller (see "Functions"). In turn, two or three numbers through an oblique line (for example, 1100/2300/3400) are indicated only for models that have the corresponding number of individual speeds. Each of these numbers indicates the standard (and in the presence of a speed controller — the maximum) number of revolutions at one of the speeds.

Anyway, when choosing a tool by the number of revolutions, it is worth considering both its general type (see "Device") and the specifics of the intended work. Detailed recommendations on this matter are quite extensive, it makes no sense to give them in full here — it is better to turn to special sources. We note only a few general points. So, high -speed drills nowadays are considered to be drills capable of delivering more than 3000 rpm. In general, high speed contributes to productivity, but there is also a downside: increasing the speed (for the same power) reduces torque — accordingly, the efficiency of working with stubborn materials and large diameter nozzles decreases. Therefore, it makes sense to specifically look for a "high-speed" tool only if speed is of key impor...tance; it doesn’t hurt to make sure that the model you choose can provide the required efficiency and torque.

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.

Metal drilling max. ⌀

The largest diameter of holes that the tool is capable of making when drilling with a conventional drill in metal.

The larger the hole diameter, the higher the resistance of the material, the more power the tool must provide and the higher the load on it. Therefore, the maximum allowable drilling diameter must not be exceeded, even if the chuck allows you to install a thicker drill bit — this can lead to tool breakage and even injury to others.

Also note that the drilling diameter for metal is usually indicated based on medium hard steel and other similar materials. For metals and alloys that have a significantly higher hardness and density, the allowable drill thickness will be less; however, such situations occur infrequently, and if you wish, you can find out about the features of working with various alloys x in special sources.

Battery capacity

The capacity of the battery supplied with the respective tool (see "Power Source"). The most modest capacity values in modern power tools do not even reach 1 Ah, such batteries are found mainly among electric screwdrivers(see "Device"). And in powerful professional models there are batteries for 3 – 4 Ah and even more.

Theoretically, the higher the capacity, the longer the tool will be able to work on a single battery charge. However, in fact, things are far from being so clear cut. First, the ampere-hour is a fairly specific unit; its features are such that only batteries with the same voltage can be directly compared by the number of ampere-hours. With a difference in voltage, you need to convert the capacitance to watt-hours and use them for comparison. Secondly, the actual battery life of the tool depends not only on the properties of the battery, but also on the power consumption and other performance characteristics. Thus, it is possible to compare different models in terms of battery capacity only with the same supply voltage and similar capabilities.

Charging time

The time to fully charge the battery that the tool is equipped with from a standard charger (when using other batteries or a “non-native” charger, this time may vary both in one direction and in the other).

For cordless tools in general, see "Power Source". And charging time data gives you an idea of how you'll need to organize your workflow and how long breaks you'll need to charge your batteries. The specific duration of the process will depend both on the capacity of the battery (ceteris paribus, a more capacious model takes longer to charge), and on the technologies used by the manufacturer that increase charging efficiency. However, in general, it is customary to refer to tools with a good charging speed as models where this procedure takes no more than 45 minutes.

We also note that the specific meaning of this parameter also depends on the number of batteries in the kit. Recall that there are often several of them at once (see "Complete battery"), and while one battery is working, the rest can be charged. This allows you to reduce interruptions to a minimum, and even completely do without them. But if there is only one battery, charging breaks will inevitably be required in full. This is especially true for tools with a built-in power source (in models with replaceable batteries, the situation can be corrected by purchasing additional batteries).
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