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Comparison Marantz PM6006 vs Marantz PM6003

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Marantz PM6006
Marantz PM6003
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Device typeintegrated amplifierintegrated amplifier
Element basetransistortransistor
Toroidal transformer
Amplifier parameters
Number of channels22
Frequency range
10 – 50000 Hz /at a resistance of 8 ohms/
10 – 50000 Hz /at a resistance of 8 ohms/
Power per channel (8Ω)40 W45 W
Power per channel (4Ω)55 W60 W
Signal to noise ratio102 dB87 dB
Signal to noise ratio (Phono MM/MC)83 dB84 dB
Damping factor100100
Harmonic distortion0.08 %0.08 %
Channel sensitivity / impedance
Line input
200 mV
20 kOhm
200 mV
20 kOhm
Phono MM/MC
2.2 mV
47 kOhm
2.2 mV
47 kOhm
Connectors
Inputs
Phono
coaxial S/P-DIF
optical /2/
control input (IR)
Phono
 
 
control input (IR)
RCA4 pairs5 pairs
Outputs
control output (IR)
control output (IR)
For acoustics4 шт4 шт
REC (to recorder)1 pairs2 pairs
On headphones6.35 mm (Jack)6.35 mm (Jack)
Front panel
indicators
headphone output
indicators
headphone output
Features
Adjustments
bass control
treble adjustment
balance adjustment
level adjustment
loudness
bass control
treble adjustment
balance adjustment
level adjustment
loudness
More features
By-pass/Direct
auto power off
ММ phono stage
additional speaker connect
Bi-Wiring
external devices control
By-pass/Direct
 
ММ phono stage
additional speaker connect
Bi-Wiring
external devices control
General
Remote control
PSUinternalinternal
Power consumption155 W
150 W /at maximum load/
Standby consumption0.3 W0.4 W
Dimensions (WxDxH)440х370х105 mm440х366х105 mm
Weight7.6 kg7.5 kg
Added to E-Catalogseptember 2016february 2014

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.

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.

Inputs

— Euroblock. Analogue audio input (usually line level) using a Euroblock connector. This connector, used mainly in professional audio equipment, is remarkable in that it is attached to the wire using terminals. This is extremely convenient when working with stripped wires (which is often required in professional applications): screwing such a wire to the plug once and connecting / disconnecting the plug to the Euroblock connector is much easier than constantly unscrewing / screwing the terminals. In addition, such a connection is often made balanced (see "XLR (balanced)" below). Inputs of this type are found mainly in information and information-concert amplifiers (see above).

— Phono. Dedicated input for connecting to the amplifier turntables; often has a suffix indicating the type of cartridge that is compatible, such as "Phono MM" or "Phono MM/MC" (see "Advanced — Phono Stage" for details). Despite the proliferation of digital formats, these players are still highly regarded by audiophiles for their high quality and fidelity, and are often used in premium audio systems. However, connecting a "turntable" has its own characteristics — in particular, it requires a phono stage (for more details, see ibid.) — and standard inputs are unsuitable for this purpose. Therefore, a Phono jack is a must if you want to connect your turntable directly, without an external phono stage.

USB B. The USB interface is widely used in...computer technology for various peripherals. The presence of a type B input means that the amplifier can be connected to a computer as an external controlled device (slave). Most often, with this connection, it is used as an external sound card or audio interface — this provides higher sound quality and more extensive options for its settings than most built-in sound cards, even expensive ones. However, the matter is not limited to this: in some models, via USB type B, you can update the firmware or change the special parameters of the amplifier.

Coaxial S / P-DIF. Digital audio input, a variation of the S/P-DIF interface based on a conventional electrical signal (the second variation, optical, is described below). Usually uses a common RCA connector, known as a "tulip", but has rather strict cable requirements. The bandwidth of any version of S / P-DIF is quite sufficient even for high-quality multi-channel sound, and the coaxial version itself is simpler, cheaper and more reliable than the optical one, but more susceptible to interference.

Optical. Input for transmitting digital sound using light signals, via TOSLINK fiber optic cable; one of the versions of the S/P-DIF standard. The main advantage of optical fiber over traditional electrical cables is complete insensitivity to electrical interference; at the same time, it is more expensive and requires rather careful handling (in particular, it does not tolerate sharp bends).

— Balanced digital ( AES/EBU). The AES/EBU interface is used in the professional field to transmit audio in digital format. It can use several connection types; in this case, it means transmission over the so-called balanced line using an XLR connector. Both the principle of balanced connection and the connector itself are described in detail in the “XLR (balanced)” section below — however, in the case of AES / EBU, we are talking about a digital signal, not an analogue signal.

— COM port ( RS-232). A connector used to control the amplifier from a computer. Through it, you can change the settings, incl. and quite thin, and in some models even update the firmware. Usually, for such purposes, special software is required, which can be supplied with the amplifier.

Control input (IR). Connector for connecting an external infrared remote control receiver. When properly placed, such a receiver will allow you to use the remote control even in places where the signal from the remote control cannot reach the main (built-in) sensor — for example, in another room. For such purposes, not only sensors can be used as a separate device, but also system components that are compatible with the remote control — for example, players or tuners.

RCA

The number of line inputs in the amplifier design using the RCA interface. Unlike the Main input (see above), which can work with the same connectors, when connected to a linear RCA, the signal goes through all the stages of processing provided for in the amplifier — for example, adjusting the balance or frequencies (see "Adjustments"), etc. .P.

See “Amplifier Input (Main)” for details on the connector itself. Here we note that when using RCA as a linear interface, a pair of such connectors is considered one input. This is due to the fact that only one channel can be transmitted over one coaxial cable, so a pair is needed to work with stereo sound.

The number of signal inputs (of any type) determines how many signal sources can be simultaneously connected to the amplifier. Accordingly, it is worth choosing a model according to the number of inputs, taking into account the expected number of such sources: after all, it is easier to connect them all and select them through the amplifier’s remote control or control panel than to fiddle with reconnecting every time.

REC (to recorder)

The number of REC outputs in the design of the amplifier. This output is a kind of line interface designed to output sound to a recording device; one of its features is a constant signal level. Since RCA connectors are usually used for connection (see “Amplifier Input (Main)”), a pair of connectors is counted as one REC output — this is the only way to ensure stereo sound transmission.

More features

— Direct connection ( By-pass/Direct). The ability to turn on the amplifier in By-pass / Direct mode. Its name is due to the fact that the signal is sent directly to the amplification stages, bypassing all additional controls (timbre, balance, etc.). Power amplifiers (see "Type"), by definition, use just such a scheme of operation. In integrated models, direct connection not only minimizes distortion in the processed signal, but also provides the sound closest to the original, which allows demanding listeners to appreciate the skill of sound engineers.

— Automatic power off. This function ensures that the amplifier automatically turns off if no signal is received from its input for a certain period of time. In this way, downtime is avoided — for example, if the owner left on business, forgetting to turn off the audio system. And considering that many modern amplifiers require a lot of energy even “at idle”, the savings can be quite significant. It is worth clarifying that in this case we are usually not talking about a complete shutdown, but about switching to standby mode; but the power consumption (see below) in this mode is usually so small that in fact the difference is practically not noticeable.

MM phono stage. The presence of a phono stage in the amplifier for working with turntables equipped with MM type pickups (with a moving magnet). The phono stage itself is a mandator...y attribute of models with a Phono input (see "Inputs"); its necessity is due to the fact that the signal from the pickups for vinyl has specific characteristics and needs additional processing. At the same time, two types of pickups can be used in modern record players — the already mentioned MM plus MC (with a moving coil), each with its own signal characteristics. Therefore, for the normal operation of the turntable, you will anyway need a phono stage of the appropriate type. Such equipment is also available as separate devices, but it is usually easier and cheaper to buy an amplifier with a built-in phono stage.

MS phono stage. The presence of a phono stage in the amplifier to work with turntables equipped with MC type pickups (moving coil). For more information about this function, see the subsection “MM Phono Stage” above.

Limiter. The presence of a limiter in the amplifier — a device that limits the dynamic range of the processed signal. This device is also called an "audio signal compressor" (due to the fact that it "compresses" the dynamic range). In simpler terms, a limiter essentially reduces the difference between the quietest and loudest sound output from an amplifier. This feature can be useful in any situation where you have to deal with uneven sound volume. For example, a limiter can make it more comfortable to listen to a symphony that has large volume differences — so that the listener can access the slightest nuances of sound and at the same time, loud fragments, as they say, do not beat on the ears. And for professional concert activity, the presence of a compressor is almost mandatory — in particular, to compensate for changes in volume that occur when the distance from the microphone to the acoustic instrument or the vocalist's mouth changes. Of course, the limiter can also be made as a separate device; however, its presence in the amplifier itself is sometimes more convenient. At the same time, this function is complex and expensive, and therefore is found mainly in professional equipment and top-class consumer models.

Connecting an additional speaker. The ability to connect an additional set of speakers (one or more) to the amplifier. Note that we are not talking about individual speakers, but about sets designed to work with full-length sound. In other words, if such an amplifier produces sound in stereo format at the main outputs (see "Number of channels"), then an additional set of acoustics will be able to work in this format. Models with this function are designed primarily for situations where you need to output sound to several rooms, and the signal can go either to all sets at once, or only to one at the user's choice. Also, an additional set of connectors can be used for Bi-Wiring (see below).

— Biwiring. Amplifiers with this feature use two separate channels of amplification for bass and treble, and are able to output each frequency band through a separate set of connectors. Due to this, it is possible to apply low-frequency and high-frequency signals via separate wires, and directly to the corresponding specialized speakers of the speaker system — instead of outputting a common signal to it and dividing it into frequencies using the built-in speaker crossover. In fact, this means that the Bi-Wiring connection reduces the likelihood of interference and improves the sound quality. However, keep in mind that this will require not only an amplifier, but also speakers that support this function. Note that Bi-Wiring is usually combined with the ability to connect an additional speaker described above.

— Management of external devices. The ability to use the amplifier as a control device for other components of the audio system — for example, preamplifier, turntable, etc. Control is usually carried out from the universal remote control supplied with the amplifier, and the control signal is transmitted through special connectors — this is much more convenient than adjusting each component separately. On the other hand, the construction of such systems is possible only from devices of the same manufacturer — different companies use different control standards, in most cases they are not compatible with each other.

— Bluetooth. A wireless communication technology with a range of about 10 m (more "long-range" versions are not used in amplifiers), originally created for direct connection between various devices. The functionality of such a connection may be different, but in this case, most often it is possible to broadcast to the sound amplifier from an external device — for example, a smartphone or laptop. However, other functions may be provided, for example, remote control from a mobile gadget through a special application.

— Emergency notification. The ability of the amplifier to work in an emergency warning system, more precisely, the availability of special functions and tools for working in such systems. Such tools may include, for example, connecting to fire detectors and automatically triggering warnings or evacuation messages to areas where the detectors have been triggered; selection of message type depending on the triggered sensor; connecting the notification microphone to the “priority input” and muting all other channels when sound is received from the microphone, etc. A specific set of features should be specified separately. Specialized security units may also be responsible for these functions, but sometimes it is more convenient to use an amplifier with built-in support for emergency notification.

Power consumption

The power consumed by the amplifier during normal operation. Some manufacturers may indicate average power values, some — indicators at maximum load. However, anyway, this parameter allows you to quite adequately assess the power consumption of the device and the requirements for connected power.

In addition, it can be useful if you have doubts about the accuracy of the claimed data on the output power (see "Power per channel (8Ω)"). The basic rule is that the total power rating of all channels cannot exceed the total power consumption of the amplifier. In addition, there are special formulas that allow you to derive the maximum possible rated power depending on the power supply and type of amplifier; they can be found in special sources.
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