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Comparison Yamaha A-S3200 vs Yamaha PA-2030

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Yamaha A-S3200
Yamaha PA-2030
Yamaha A-S3200Yamaha PA-2030
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Device typeintegrated amplifierintegrated amplifier
Featuresconcert / information
Element basetransistortransistor
Toroidal transformer
Amplifier parameters
Number of channels22
Frequency range20 – 20000 Hz20 – 20000 Hz
Power per channel (8Ω)100 W
Power per channel (4Ω)150 W30 W
Power per channel (100/70 V)60 W
Signal to noise ratio114 dB
Signal to noise ratio (Phono MM/MC)96 / 90 dB
Damping factor250
Harmonic distortion0.035 %0.2 %
Channel sensitivity / impedance
Balanced XLR input
200 mV
100 kOhm
 
Main input
1 В
47 kOhm
 
Phono MM/MC
3.5 / 0.15 mV
47 / 0.05 kOhm
 
Preout
1000 mV
1.5 kOhm
 
Connectors
Inputs
Phono
control input (IR)
 
To amplifier (Main)RCAEuroblock/RCA
RCA4 pairs
XLR (balanced)4 шт
Trigger1 шт
Outputs
Pre-Amp
control output (IR)
 
For acoustics4 шт2 шт
On headphones6.35 mm (Jack)
Front panel
dial indicators
headphone output
 
Features
Adjustments
bass control
treble adjustment
balance adjustment
level adjustment
bass control
treble adjustment
input sensitivity adjustment
level adjustment
More features
By-pass/Direct
auto power off
ММ phono stage
MC phono stage
additional speaker connect
Bi-Wiring
external devices control
By-pass/Direct
General
Remote control
PSUinternalinternal
Power consumption350 W30 W
Standby consumption0.2 W
Dimensions (WxDxH)435x464x180 mm215х288х54 mm
Weight24.7 kg1.8 kg
Color
Added to E-Catalogdecember 2022march 2017
Glossary

Features

Concert. Professional amplifiers designed to work at concerts and other similar events. Their main external difference from home models is rack mounting; for almost all concert models, the mounting size is indicated in the characteristics (see below). In terms of performance, the main difference is the high power, in some models exceeding 1000 watts per channel even at 8 ohm load. You can also note a rather restrained design — where such a technique is used, the appearance is far from being of paramount importance.

Informational. Amplifiers designed for use in public address systems — at stations, airports, shopping centers, etc. One of the features of this application is that passive loudspeakers can be located at a great distance from the amplifier — tens or even hundreds of metres. The standard way to ensure signal transmission over such a distance is to use transformers at the output of the amplifier and at the inputs of the loudspeakers. Such a "transformer" connection can be carried out according to the standards 100/70 V and 50/25 V; in fact, the presence of at least one type of output is mandatory for power amplifiers and integrated amplifiers (see "Type") for this purpose. However, preamplifiers can also be produced for information. Also note that some data models support only one audio channel; and multi-channel often provide the ability to quickly turn...on and off individual channels — this allows you to organize broadcasting in separate zones.

Concert / informational. Devices that combine the capabilities of the two types of amplifiers mentioned in the name (for more details on each, see above). Almost all are rack-mounted (among purely informational models this is less common). They can also be single-channel, and there are quite a few such solutions.

Toroidal transformer

Most modern amplifiers have toroidal transformers - with a toroid-shaped core, in other words, a donut. This type is considered optimal for amplifiers of any level up to Hi-End: it creates a minimum of "extra" electromagnetic radiation and, accordingly, interference. Some time ago, E-core transformers were also widely used, but they are considered obsolete and are becoming less common today.

Power per channel (8Ω)

The nominal sound power output by the amplifier per channel when operating with a load having a dynamic resistance (impedance) of 8 ohms. In our catalog, this parameter is indicated for the mode when all channels of the amplifier work under load (see "Number of channels"); in the presence of unused channels, the rated power may be slightly higher, but this mode cannot be called standard.

Rated power can be simply described as the highest output signal power at which the amplifier is able to work stably for a long time (at least an hour) without negative consequences. These are average figures, because in fact, the audio signal is by definition unstable, and individual level jumps can significantly exceed the rated power. However, it is she who is the main basis for assessing the overall loudness of the sound.

This indicator also determines which speakers can be connected to the amplifier: their rated power should not be lower than that of the amplifier.

According to the laws of electrodynamics, with different dynamic load resistance, the output power of the amplifier will also be different. In modern speakers, the standard values \u200b\u200bare 8, 6, 4 and 2 Ohms, and power levels are indicated for them.

Power per channel (4Ω)

The nominal sound power output by the amplifier per channel when a load with a dynamic resistance (impedance) of 4 ohms is connected to it. See Power per Channel (8Ω) for more information on power rating and its relationship to impedance.

Power per channel (100/70 V)

Rated amplifier power output per channel when connecting acoustics according to the 70/100 V standard.

This standard is used to communicate with high-impedance loudspeakers located at a great distance from the power amplifier — in particular, in public address systems and emergency announcements. Actually, most models with 70/100 V outputs refer to information or concert-information amplifiers (see "Intended use").

See "Power per channel (8Ω)" for details on power rating.

Signal to noise ratio

In itself, the signal-to-noise ratio is the ratio of the level of pure sound produced by the amplifier to the level of extraneous noise that occurs during its operation. This parameter is the main indicator of the overall sound quality — and very clear, because. its measurement takes into account almost all the noise that affects the sound in normal operating conditions. A level of 70 – 80 dB in modern amplifiers can be considered acceptable, 80 – 90 dB is not bad, and for advanced audiophile-class devices, a signal-to-noise ratio of at least 100 dB is considered mandatory.

If the specifications do not specify for which output the signal-to-noise ratio is indicated, it usually means its value for the linear input (see "RCA (par)"). This is quite enough to evaluate the quality of the device for this parameter. However, some manufacturers indicate it for other inputs — Main, Phono; see below for more on this.

Signal to noise ratio (Phono MM/MC)

signal-to-noise ratio when the amplifier is driven through the Phono input. This interface is for connecting turntables; its features are described in the “Inputs” section below, and for the meaning of any signal-to-noise ratio, see the corresponding section above.

Damping factor

The damping factor describes the quality of interaction between the amplifier and the speaker system connected to it.

Due to the design features, any speaker is prone to the occurrence of so-called parasitic oscillations — oscillations that continue after the main impulse from the amplifier has ceased (similar to how a string continues to vibrate after a pluck). This phenomenon has a negative effect on sound quality, and manufacturers use various means to reduce it to an absolute minimum; suppression of parasitic oscillations is called damping.

The most effective type of damping is electrical, by reducing the output impedance of the amplifier. The lower this resistance, the better the amplifier keeps the speakers from unnecessary vibrations. To evaluate this effect, they introduced the concept of “damping factor” (damping factor) — the ratio of the load resistance (impedance) to the output resistance of the amplifier. The minimum value of such a coefficient for Hi-Fi class equipment is 20; indicators at the level of 100 – 120 can be called good, and among the Hi-End segment there are numbers of the order of several thousand.

At the same time, it is worth noting that when increasing to three-digit numbers, the original meaning of this parameter is, in fact, lost, and other points appear. The most important of them from a practical point of view is that models with a high damping factor are very demanding on the quality of the connection to t...he speakers — the high resistance of cables and connectors can negate the damping properties of the amplifier itself. There are other nuances associated with this indicator (in particular, recommendations for choosing an amplifier and speakers for each other); they are described in detail in specialized sources.

Harmonic distortion

This indicator describes the amount of non-linear distortion introduced by the amplifier into the processed signal. Such distortions are not necessarily perceived as extraneous noise, but they degrade the quality of the sound anyway — for example, they can make it more deaf. It is almost impossible to avoid them, but it can be reduced to levels inaudible to the human ear.

As a result, the harmonic distortion factor (harmonics) is one of the main parameters describing the overall sound quality in Hi-Fi and Hi-End amplifiers. The lower it is, the clearer the sound. Hundredths of a percent are considered a good indicator for modern amplifiers, thousandths and below are excellent. The exceptions are tube and hybrid models, for which rather high harmonic coefficients are allowed; see "Element base" for more details.
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