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Comparison Arturia MicroLab vs Arturia MiniLab MKII

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Arturia MicroLab
Arturia MiniLab MKII
Arturia MicroLabArturia MiniLab MKII
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Free integration with Arturia Analog Lab, Ableton Lite and UVI Grand Piano Model D.
Keys25 шт25 шт
Key sizesmall-sizedsmall-sized
Mechanicsactive (dynamic)active (dynamic)
Rigidityunweightedsemi-weighted
Control
Pitch controller
Modulation controller
Sustain
Octave shift
Pads8
Regulators (encoders)16
Connections
USB to host (type B)
Connectable pedals1 шт
General
Programming function
Dimensions (WxHxD)414x37x130 mm355x50x220 mm
Weight0.77 kg1.5 kg
Color
Added to E-Catalogoctober 2019february 2018

Rigidity

The hardness of the keys on a keyboard is the amount of resistance they provide when pressed.

Unweighted. Very low rigidity: the keys literally "fail" under the fingers. Found mostly in entry-level keyboards; this is due to the fact that unweighted mechanics are inexpensive, but the low pressure resistance makes it difficult to select the optimal pressure and control the dynamics of the sound.

— Semi- weighted. Keyboards with medium resistance — not as high as on weighted keys, but noticeably higher than on unweighted ones. This option is considered optimal for active keyboards (see "Mechanics"): at a low cost, it gives quite good responsiveness and, with a minimum skill, allows you to accurately control the pressing force.

Weighted. Keyboards with high resistance, which is comparable to the resistance of classical piano keys. Note that high effort in this case is an advantage: it allows you to bring the response of the keyboard as close as possible to the response of a classical piano and makes it easier to control the pressure and dynamics of the sound. Actually, by definition, all hammer-action models are made weighted (see "Mechanics"), but among active keyboards this option is rare — due to complexity and high cost.

Sustain

The presence in the keyboard of its own sustain control — the extension of the extracted note. With sustain on, the note continues to sound (slowly decaying) even after the key has been released—similar to depressing the right pedal on a piano. Note that many keyboards allow the connection of pedals, including to control this function (see "Connected Pedals"), however, here it means its own controller, which allows you to turn sustain on and off using the keyboard itself, without additional equipment.

Pads

The number of pads provided in the design of the keyboard.

Pads are auxiliary controls in the form of characteristic pads, usually square. The pads respond to touch, each of them can be tied to a specific sound or even a sequence of sounds. One of the most popular ways to use pads is to play drums or other rhythmic instruments.

Regulators (encoders)

The number of encoder controlsprovided in the design of the keyboard.

Such a knob looks like a rotary knob, with which you can control various functions of the device to which the keyboard is connected — for example, turn the virtual knobs in the programme for recording and sound processing. At the same time, we note that a full-fledged encoder is capable of rotating 360 ° and turning to any angle in any direction, however, keyboards can also contain knobs with a limited rotation sector — they can also be called encoders. None of these options has a clear advantage: in some cases, an unlimited turning sector is more convenient, in others, a limited one.

Connectable pedals

The maximum number of pedals that can be connected to the keyboard at the same time.

Pedals are used as additional controls to change various keyboard settings. The “classic of the genre” in this sense is the sustain pedal (see “Sustain”) — if the device has one connector for pedals, then this will almost certainly be the input for just such a pedal. Keyboards are produced, where there are 2 or more such inputs — in addition to sustain, you can connect pedals to them for other adjustments and effects (in particular, changing the volume).

Programming function

The ability to programme additional keyboard controls — buttons, pads, faders (see above), etc. — assigning them one or another function at your discretion. This feature allows you to optimally adjust the instrument to your needs and preferences. Note that the programming method can be different: most often you need to change the settings through a computer, but in some models this can also be done using built-in tools.
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