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Comparison Casio Privia PX-S5000 vs Roland RD-88

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Casio Privia PX-S5000
Roland RD-88
Casio Privia PX-S5000Roland RD-88
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Bluetooth
Bodyportableportable
Built-in pedals
Keys
Number of keys88 шт88 шт
Sizefull sizefull size
Mechanicsmalleusactive
Sensitivity adjustment
Rigidityweightedweighted
Specs
Polyphony256 voices128 voices
Built-in timbres350 шт3400 шт
Learning mode
Tempo change20 – 255
Metronome
Sequencer (recording)
Built-in compositions
Effects and control
Timbres layering
Keyboard split
Octave shift
Arpeggiator
Reverberation
Chorus
Brightness
Transposition
Pitch controller
Fine tuning
More featuresscale selectionEqualizer
Connectors
Inputs
Mini-jack (linear)
USB to device (type A)
Mini-jack (linear)
USB to device (type A)
Connectable pedals2 шт3 шт
Outputs
USB to host (type B)
USB to host (type B)
MIDI out
Headphone outputs2 шт1 шт
Linear outputs2 шт2 шт
General
Built-in acoustics32 W12 W
Number of bands22
Displaymonochrome
Power consumption20 W4 W
Autonomous power supplyaA batteries
Operating hours4 h
Dimensions (WxHxD)1340x102x232 mm1284x159x258 mm
Weight11.5 kg13.5 kg
In box
pedal
PSU
rack
pedal
PSU
Color
Added to E-Catalogjune 2024april 2020
Glossary

Built-in pedals

The presence of built-in pedals in the design of a digital piano.

Pedals are an indispensable element of equipping a classical piano; accordingly, they are often provided in digital counterparts. Actually, this function is practically obligatory for models of a stationary layout (see "Hull"). But in portable ones, on the contrary, built-in pedals are not found — there is simply nowhere to install them, external plug-in pedals are available for such models (see below).

The traditional number of built-in pedals is three; there are practically no other options in a power tool. Note that in many models, the specific functions of the pedals can change depending on the set timbre, or even manually, at the request of the musician.

Mechanics

Type of action used in digital piano keys.

Hammer. A mechanic that mimics the feel of playing a real piano as closely as possible. Hammer action keyboards not only provide velocity and force-dependent sound dynamics, they also provide a distinctive response with each press. These mechanics are complex and expensive, but they are considered the most advanced and suitable for digital pianos, and therefore are used in most models.

Active. In the case of digital pianos, the active keyboard can be described as a simplified version of the hammer action described above. The sound produced when pressing such keys also depends on the force and speed of pressing, however, the keys themselves have less rigidity and do not give the full feel of a piano keyboard. On the other hand, such mechanics are cheaper. As a result, it is found mainly in low-cost models, as well as some professional instruments, positioned more like electric organs.

The third type of mechanics — passive — assumes that each time you press a key, the volume will be the same, regardless of the strength and speed of pressing. Such keyboards are not used in digital pianos — they are too primitive and not very functional for this class of instruments; however, models with adjustable sensitivity may provide switching the keyboard to a "passive" format (see below for more details).

Polyphony

The number of voices supported by the digital piano — more precisely, the maximum number of voices that the instrument can play at the same time.

This parameter should not be confused with the number of notes that can be played simultaneously on the keyboard. The fact is that in many timbres, several voices (tone generators) are used for each note at once — this is the only way to achieve a more or less reliable sound. Thus, the required number of voices can be many times higher than the number of notes — for example, the simplest chord of 3 notes may require 9 or even 12 voices. In addition, tone generators are used to play auto accompaniment parts and built-in songs (see below), and here the number of voices can already be measured in tens.

In light of all this, polyphony of less than 90 voices is typical mainly for relatively simple and inexpensive instruments that are not designed for complex tasks. The smallest number found in modern digital pianos is 32 voices. It is desirable for a more or less solid instrument to have at least 96 voices, and in top models this figure can reach 256.

Built-in timbres

The number of built-in sounds provided by the Digital Piano.

Despite the name, digital pianos are extremely rarely designed to imitate the sound of only a piano — the electronic hardware allows them to provide other timbres of sound. In addition, even the piano has its own varieties — for example, among the grand pianos there are 6 main classes, from large concert to miniature. So the built-in sounds can cover different kinds of pianos, as well as other instruments and sound effects.

The abundance and variety of timbres in digital pianos as a whole is not as great as in synthesizers, however, in this category there are very “charged” models, with a hundred timbres or more (in the most multifunctional, this number can exceed 900). However, it is worth specifically looking for a “multi-instrumental” model if you do not intend to be limited to the sound of the piano and would like to have more freedom of choice. It is worth remembering that a specific set of timbres can be different.

If the instrument is bought exclusively as a piano, then here, on the contrary, it is worth paying attention primarily to solutions with a small number of timbres. Such models are not only cheaper than "universals" — they can also sound better (due to the fact that there are few timbres and the manufacturer can carefully approach the sound quality of each built-in "instrument").

Learning mode

The presence of a training mode in the digital piano.

As the name suggests, this mode is designed to teach the game. At the same time, usually, it provides different levels of difficulty — from the most basic, for those who are just starting to master the "keys", to the advanced one, which allows you to train your technique and improve your existing performance skills. However, anyway, the principle of learning is the same: the tool independently tells the student which keys to press at one time or another. Such hints can be in the form of a backlight (see above) or as a graphic on the display. Such a method is doubtful from the point of view of classical academic learning, however, it is undoubtedly more convenient and faster than reading musical notation. Moreover, the instrument can also play the role of an examiner — launch prompts at the original tempo of the melody and check how accurately the student hits the notes.

Also note that the learning mode requires the obligatory presence of a metronome (see below).

Tempo change

The range over which the tempo of the sound played by the instrument can change. It can be either a built-in melody or a part recorded on a sequencer, or an auto accompaniment, a tutorial or a metronome. For more information on all of these features, see the corresponding glossary entries. Here we note that a change in tempo is often required in fact — for example, to speed up an initially "sluggish" accompaniment or slow down a training programme that is difficult to master at the original tempo.

Tempo is traditionally indicated in beats per minute. The classical, "academic" range covers options from 40 bpm ("grave", "very slow") to 208 bpm ("prestissimo", "very fast"), however, in modern digital pianos, the working range of tempos is often significantly wider.

Metronome

The presence of your own metronome in the design of a digital piano.

The metronome function is designed to count and maintain a given tempo. It is implemented as follows: when the metronome is turned on, the instrument starts to produce short sharp signals (clicks) at the tempo specified by the user. This feature is especially important for working with the training mode — without it, it can be extremely difficult, if not impossible, to develop a basic sense of rhythm. However, other options for using the metronome are also possible, up to being used as an independent sound effect when performing and recording music.

Sequencer (recording)

The presence of a sequencer in the design of a digital piano.

This function allows you not only to play music on the instrument, but also to record it with the possibility of later playback. However, this is at least; in addition to recording the parts of the instrument itself, the sequencer can provide recording an audio or MIDI signal from the corresponding input, mixing several parts (including recording the music being played over the music being played “on the go”), working with the parameters of individual tracks (volume, tone, timbre), as well as specific functions such as quantization (smoothing uneven tempo). The specific functionality of the sequencer may be different, it's ok to check it before buying. However, anyway, this function can be a good help for the musician; it is especially useful for those who are not limited to the performance of ready-made music and want to compose their own compositions.

Arpeggiator

The presence of an arpeggiator in the design of a digital piano.

The arpeggiator is able to decompose a chord taken on the keyboard into separate notes and play them sequentially, one after another (in the arpeggio technique — hence the name). Using an arpeggiator can be more convenient than playing notes by hand for a variety of reasons. Firstly, such a system works very clearly: notes are played strictly at a given tempo and sequence, with a given duration and interval. Secondly, only three notes are enough to recognize a chord, and the number of notes issued by the arpeggiator can be much larger. Thirdly, the executed notes can be supplemented with various effects or even a full-fledged accompaniment; many instruments allow you to create simple, but quite full-fledged melodies due to the arpeggiator alone. Although, of course, the specific features of this function may vary, it's ok to clarify them separately.
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