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Comparison Pro-Ject Primary E vs Pro-Ject Debut III Phono USB

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Pro-Ject Primary E
Pro-Ject Debut III Phono USB
Pro-Ject Primary EPro-Ject Debut III Phono USB
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Pickup
ModelOrtofon OM5SOrtofon OM5E
TypeMMMM
Needle shapeconicalelliptical
Output level4.5 mV4 mV
Downforce1.5 – 2 g1.5 – 2 g
Pickup weight5 g5 g
Tonearm
ModelPro-Ject 8.6EPro-Ject 8.6 D
Typeradialradial
Shapestraightstraight
Material
aluminium /aluminium/
aluminium /aluminium/
Tonearm effective length219 mm219 mm
Tonearm weight8 g6 g
Design
Drive unitbeltbelt
Speed controlmechanical (manual)mechanical (manual)
Cover
Phono stageis absent+
Features
Features
adjustable counterweight
anti-skating
adjustable counterweight
anti-skating
Connection
 
USB B
Specs
ADC sampling rate48 kHz
ADC bit depth16 bit
Frequency range20 – 22000 Hz
20 – 20000 Hz /± 2 дБ/
Signal to noise ratio65 dB65 dB
Knock ratio
0.29 % /— 33 rpm; 0.27% — 45 rpm/
0.12 %
Speed deviation
0.8 % /— 33 rpm; 0.7% — 45 rpm/
0.8 %
General
Power consumption5 W3 W
Base materialMDF/FibreboardMDF/Fibreboard
Platter materialMDF
aluminium /steel/
Platter size300 mm300 mm
Platter weight1.3 kg
Dimensions (WxDxH)420x330x112 mm415x320x118 mm
Turntable weight4 kg5.5 kg
Color
Added to E-Catalogjuly 2019december 2016

Model

Model of the pickup (cartridge) supplied with the player. The pickup is one of the most important parts of any vinyl player, the quality of the received sound largely depends on its quality. Knowing the name of the model, you can find detailed data on it and determine how satisfied you are with this particular cartridge.

Needle shape

The shape of the needle in the pickup (cartridge) that the player is equipped with.

Conical. It may also be called spherical. The simplest type of needles for vinyl players. Such needles are inexpensive, but the sound quality when using them is relatively low — due to the fact that the shape of the needle rather weakly matches the shape of the groove on the record.

Elliptical. Elliptical needles have a narrower shape than conical (spherical) needles, which improves contact and allows, in particular, more accurate reproduction of high frequencies, and also reduces record wear. Due to the good value for money, this option is very popular.

Linear. The most advanced variety: sharply sharpened needles of complex shape, following the contours of the grooves on the plate as accurately as possible and having the largest contact area among all types. The downside of this is the complexity in production and, accordingly, the high cost.

Output level

The signal level at the output of the pickup supplied with the player is, in fact, the power of the signal coming from the pickup to the phono stage. This parameter is necessary, first of all, in cases where the player is planned to be connected to an external phono stage: such equipment must be designed for the corresponding power of the signal coming from the pickup.

Model

Model of the tonearm — the movable lever on which the pickup is attached — supplied with the turntable. The tone arm is responsible for the correct position of the needle and the accuracy of its movement along the grooves, which is critical for sound quality. Therefore, many music lovers try to clarify not only the general data on the tonearm, but also its specific features in each particular “turntable”; in order to be able to find this information, the name of the tonearm is given in the characteristics.

Tonearm weight

Operating weight of the complete tonearm. It is believed that this indicator should be as low as possible — in order not to create excessive pressure and to minimize the wear of the needle and records. On the other hand, a rigid pickup on a light arm can bounce on uneven records, and in general, such a discrepancy does not improve the sound quality. However, complete tonearms are usually optimally compatible with complete pickups; therefore, you should only be interested in compatibility when buying a cartridge of a different model.

Phono stage

A phono corrector is a specially designed preamplifier used when working with vinyl record pickups. Initially, the sound on such records is recorded with distortion of the amplitude-frequency characteristic, namely with an increase in volume from low to high frequencies; this is due to the technical features of the recording process. Accordingly, the phono corrector not only amplifies the signal to a level sufficient for feeding to the power amplifier, but also corrects the amplitude-frequency characteristic, “pulling out” the bass and reducing the volume of the HF. And the built-in phono corrector allows you to connect the player to the power amplifier directly, without using intermediate equipment. True, in terms of characteristics, built-in preamplifiers-correctors are inferior to external ones. Therefore, some models with this function may provide a “bypass” mode, allowing you to pass the signal bypassing the built-in phono corrector to an external, more advanced one. And there are also vinyl players without a phono corrector at all.

Connection

USB B port. A connector designed to connect the player to a computer as a peripheral device. This connection is mainly used for converting vinyl records to a digital audio format such as MP3. At the same time, computer processing allows you to "clean" the recording from clicks and other extraneous interference; the necessary software for this may even be supplied in the kit.

Bluetooth. The presence of a built-in Bluetooth module in the design of the player. This technology is designed for direct wireless communication with other devices at a distance of up to 10 m. The capabilities of such communication may vary, depending on the supported Bluetooth protocols. The most popular use of this feature in players is to broadcast audio to wireless headphones or speakers. Such a connection may be somewhat inferior to a wired one in terms of sound quality, but it does not require fiddling with cables and selecting compatible connectors; and the difference in quality is most often unprincipled, especially considering the characteristics of the sound from vinyl. Other options for using Bluetooth are technically possible — for example, remote control from a smartphone or tablet — but they are extremely rare.

Audio input. The presence of an audio input in the design of the player; usually in this case it means a linear analogue audio input. In different model...s, it can use different types of connectors — for example, 3.5 mm mini-Jack or RCA "tulips". However, regardless of the type of connector, the purpose of such an input is the same everywhere — it is designed to connect an external sound source and process this sound with the player's built-in tools. For example, you can connect a portable player to the audio input and output sound through the built-in turntable amplifier.

Digital audio output. The presence of a digital audio output in the design of the player. Usually, this output is made in the form of an S / P-DIF connector — optical or electronic; the first option is less susceptible to interference, the second does not require special delicacy when handling the cable. This connector can be useful for connecting external audio devices with digital inputs to the player. In some cases, a digital connection is preferable to an analogue one — for example, if there are no line inputs in an external device or they are all occupied. At the same time, the digital interface requires an analogue-to-digital converter in the "turntable", and these are additional electronic circuits and a potential source of interference. Therefore, such outputs are not used in audiophile-class equipment.

Headphone output. The presence of a separate headphone output in the design of the player. Typically, this output uses a 3.5 mm mini-Jack or 6.35 mm Jack. The first variety is found in most modern headphones, the second is more reliable and typical for professional models; both interfaces are compatible through a simple adapter. Anyway, connecting headphones can come in handy in two situations: when it is desirable to keep silence and not disturb others with music, or vice versa, when it is noisy around and the sound from the speakers would be hard to hear. Theoretically, the second use case is popular among DJs — in the overall sound, it is important to hear what exactly the turntable is playing at the moment. However, in fact, DJs prefer to connect their "ears" not to the player itself, but to external equipment. Therefore, its own headphone output is typical mainly for consumer-class models.

ADC sampling rate

The sampling rate of the A/D converter installed in the player. To listen to vinyl in the usual way (cartridge — phono stage — power amplifier — acoustics), it is not necessary to convert the analogue signal coming from the pickup into digital format. This function (and, accordingly, the characteristics of the ADC) is relevant only when recording to a computer or removable media, as well as when using a digital audio output (see "Characteristics").

When digitized, analogue audio is decomposed into separate "pieces" (samples), and the data for each sample is recorded digitally. The sample rate describes how many samples there are for every second of the audio being converted; the higher it is (ceteris paribus), the closer the digital audio signal will be to the original. The most modest converters in modern turntables are capable of operating at a sampling rate of 44 (more precisely, 44.1) kHz — the quality of such a recording corresponds to an Audio CD and can already be indistinguishable from high-end vinyl. And in the most advanced, this figure reaches 48 kHz (DVD and DAT level).

ADC bit depth

The bit depth of the analogue-to-digital converter installed in the player. To listen to vinyl in the usual way (cartridge — phono stage — power amplifier — acoustics), it is not necessary to convert the analogue signal coming from the pickup into digital format. This function (and, accordingly, the characteristics of the ADC) is relevant only when recording to a computer or removable media, as well as when using a digital audio output (see "Characteristics").

When digitizing an analogue signal, it is decomposed into samples (for details, see "ADC Sampling Frequency"), and for each sample, its own signal level value is indicated. The higher the ADC bit depth, the more accurately this value will correspond to the initial signal level and the closer the digital sound will be to the original. To digitize audio as an Audio CD (which is already considered quite “audiophile”), 16 bits is enough, but in modern players this figure can be even higher — up to 24 bits.
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