Comparison Pioneer VSX-835D vs Pioneer VSX-935
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|---|---|---|
| Pioneer VSX-835D | Pioneer VSX-935 | |
| Outdated Product | from $539.00 | |
| TOP sellers | ||
Support for voice control. Ability to work with streaming services such as Amazon Music, Spotify, Tidal, Deezer, TuneIn. Support for aptX, aptX HD. | ||
| Device type | AV Receiver | AV Receiver |
CPU | ||
| DAC frequency | 384 kHz | 192 kHz |
| Audio DAC | 32 bit | 32 bit |
| Auto sound calibration | ||
| Surround sound in headphones | ||
| eARC | ||
| Ultra HD | 8K | 8K |
| Upscaling | Ultra HD (8K) | Ultra HD (4K) |
| HDR | HDR10 Plus, Dolby Vision | HDR10 Plus, Dolby Vision |
| 3D | ||
| Multi Zone | ||
Tech specs | ||
| Number of channels | 7.2 | 7.2 |
| Power per channel | 80 W | 160 W |
| Signal to noise ratio | 106 dB | |
| Acceptable acoustic impedance | 4 Ohm | 4 Ohm |
| Frequency range | 20 — 20000 Hz | 10 – 100000 Hz |
| Bi/Tri-amping | ||
Media player and tuner | ||
| Tuner and playback | AM/FM radio USB drive | AM/FM radio USB drive network streaming audio internet radio |
| Streaming services | Spotify Deezer TIDAL | |
Communications (interface) | ||
| Interfaces | Bluetooth | AirPlay 2 Google cast (Chromecast) Wi-Fi Bluetooth LAN DLNA Amazon Alexa / Google Assistant |
Decoder support | ||
| Decoders | Dolby Atmos Dolby Digital Dolby Digital Plus Dolby TrueHD DTS DTS Express DTS 96/24 DTS-HD High Resolution Audio DTS-HD Master Audio DTS ES Matrix 6.1 DTS ES Discrete 6.1 DTS Neural:X DTS X IMAX Enhanced | Dolby Atmos Dolby Digital Dolby TrueHD DTS DTS 96/24 DTS-HD High Resolution Audio DTS-HD Master Audio DTS Neural:X DTS X IMAX Enhanced |
Inputs | ||
| RCA | 3 pairs | 4 pairs |
| Coaxial S/PDIF | 1 pcs | 1 pcs |
| Optical | 1 шт | 1 шт |
| HDMI | 4 шт | 6 шт |
| HDMI version | v 2.1 | v 2.1 |
| Phono | ||
Outputs | ||
| RCA | 1 pairs | 2 pairs |
| HDMI | 1 шт | 2 шт |
| On headphones | 6.35 mm (Jack) | 6.35 mm (Jack) |
| More features | to the subwoofer | |
Front panel | ||
| Headphone output | ||
| USB port | ||
| Linear | ||
General | ||
| Power consumption | 490 W | 460 W |
| Standby consumption | 0.2 W | 0.1 W |
| Smartphone control | ||
| Dimensions (WxDxH) | 435x321x148 mm | 435x371x173 mm |
| Weight | 8.4 kg | 9.6 kg |
| Color | ||
| Added to E-Catalog | august 2024 | july 2022 |
Compare Pioneer VSX-835D and VSX-935
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Glossary
DAC frequency
A digital-to-analogue converter (DAC) is an indispensable element of any system designed to reproduce digital sound. The DAC is an electronic module that translates sound information into pulses that are sent to the speakers. The technical features of such a conversion are such that the higher the sampling frequency, the better the signal at the output of the DAC, the less it is distorted during conversion. The most popular option in receivers today is 192 kHz — it corresponds to a very high sound quality (DVD-Audio) and at the same time avoids unnecessary increase in the cost of devices.
Auto sound calibration
In this case, the function of automatic adjustment of each individual sound channel in terms of level and delay is implied so that all of them together provide surround sound that best matches the intention of the creators of the film or musical composition. The need for such a setting is due to the fact that practically no room (neither residential, nor even specialized) is acoustically perfect: the sound propagation is affected by the wall material, floor covering, furniture (sofas, wardrobes, etc.) and other factors. Therefore, the technically correct arrangement of the speakers alone does not guarantee a full-fledged surround sound.
Typically, automatic tuning uses a microphone placed at the intended listening position. During the calibration process, the device outputs test sound signals through the acoustics and “listens” to the features of the sound through the microphone, if necessary, independently changing the audio parameters.
Such a function can greatly simplify the preparation for work — after all, the device will carry out the main part of the setup on its own. However, keep in mind that even in the most advanced receiver models, automatic calibration algorithms are not perfect. As a result, it is highly likely that the automatically set parameters will not meet the tastes of demanding audiophiles. In addition, the reliability of the calibration is also highly dependent on the characteristics of the microphone used — and options with high...sound quality can be quite expensive.
Typically, automatic tuning uses a microphone placed at the intended listening position. During the calibration process, the device outputs test sound signals through the acoustics and “listens” to the features of the sound through the microphone, if necessary, independently changing the audio parameters.
Such a function can greatly simplify the preparation for work — after all, the device will carry out the main part of the setup on its own. However, keep in mind that even in the most advanced receiver models, automatic calibration algorithms are not perfect. As a result, it is highly likely that the automatically set parameters will not meet the tastes of demanding audiophiles. In addition, the reliability of the calibration is also highly dependent on the characteristics of the microphone used — and options with high...sound quality can be quite expensive.
Surround sound in headphones
Possibility to simulate multi-channel (for example, 5.1) sound in traditional two-channel headphones. For this, a Dolby Headphone decoder is usually used, which processes the sound in such a way that the sound heard in the headphones is perceived as multi-channel — in particular, the intended position of its sources can be determined much more accurately. And considering that modern Hi-Fi class headphones are not inferior in sound quality to acoustics (and are significantly cheaper), this feature may well come in handy even for demanding audiophiles.
Upscaling
The ability to increase the resolution of the video signal processed by the receiver - if the original video resolution is lower. Depending on the capabilities of the receiver, in particular its HDMI ports, upscaling to Ultra HD 4K and upscaling to Ultra HD 8K may occur.
The principle of upscaling is that a relatively low-resolution video is supplemented with the required number of pixels using special algorithms. Due to this, when playing such a video, the quality of the “picture” is noticeably higher than without upscaling (although somewhat lower than that of content originally recorded in UltraHD). It makes sense to specifically look for a receiver with this function if you plan to use it with a 4K or 8K screen.
The principle of upscaling is that a relatively low-resolution video is supplemented with the required number of pixels using special algorithms. Due to this, when playing such a video, the quality of the “picture” is noticeably higher than without upscaling (although somewhat lower than that of content originally recorded in UltraHD). It makes sense to specifically look for a receiver with this function if you plan to use it with a 4K or 8K screen.
3D
The ability of the receiver to output a video signal in 3D format — that is, a "volumetric" image that has three full dimensions (including depth). Since 3D uses the division of the “picture” of the image into two parts (for the left and right eyes), the format of such a signal differs from the usual two-dimensional one, and not every model is able to work with it. Also keep in mind that viewing 3D content requires not only a receiver, but also a TV (or other playback device) with the appropriate screen capabilities.
Multi Zone
The possibility of using the receiver for simultaneous transmission of signals from different sources to screens and speakers located in different places (zones). For example, in a large house, you can simultaneously stream a movie from a Blu-ray player to a screen in a large room, a TV show to a TV in the kitchen, and a radio programme to speakers in a library. Another option for using Multi-Zone is entertainment centers with several rooms of different types (for example, a cinema hall, a roller skating rink and a cafe).
Power per channel
the maximum sound power that can be delivered by the power amplifier (if the receiver has one, see "Type") per speaker channel. It is worth noting here that in this case it is customary to indicate the so-called RMS (Rated Maximum Sinusoidal), or rated power. Rated is considered the highest power that the amplifier is guaranteed to be able to produce without interruption for an hour without any failures or breakdowns. Short-term jumps in the signal level can significantly exceed this value, but the main indicator is still the rated power.
The power of the amplifier largely determines the sound volume of the speaker system connected to the device. In fact, the loudness also depends on the characteristics of the speakers — sensitivity, impedance, etc.; however, other things being equal, the same acoustics on a more powerful amplifier will sound louder. In addition, this parameter also affects the compatibility of the speakers and the amplifier — it is believed that the difference in the nominal powers of these components should not exceed 10-15% (and ideally, the powers should generally match). And since different rooms require speakers of different power, this also affects the choice of amplifier for a particular environment; specific recommendations on the ratio of room characteristics and acoustic power can be found in special sources.
Also note that if the amplifier can operate with a load of different resistance (see..."Permissible acoustic impedance"), then for different options the power per channel will be different — the lower the resistance, the higher the power. In the characteristics, in this case, the maximum value of this parameter is usually indicated — that is, the power at the minimum allowable resistance.
The power of the amplifier largely determines the sound volume of the speaker system connected to the device. In fact, the loudness also depends on the characteristics of the speakers — sensitivity, impedance, etc.; however, other things being equal, the same acoustics on a more powerful amplifier will sound louder. In addition, this parameter also affects the compatibility of the speakers and the amplifier — it is believed that the difference in the nominal powers of these components should not exceed 10-15% (and ideally, the powers should generally match). And since different rooms require speakers of different power, this also affects the choice of amplifier for a particular environment; specific recommendations on the ratio of room characteristics and acoustic power can be found in special sources.
Also note that if the amplifier can operate with a load of different resistance (see..."Permissible acoustic impedance"), then for different options the power per channel will be different — the lower the resistance, the higher the power. In the characteristics, in this case, the maximum value of this parameter is usually indicated — that is, the power at the minimum allowable resistance.
Signal to noise ratio
This indicator determines the amount of extraneous noise that accompanies the sound output by the receiver's amplifier. It is convenient because it takes into account almost all possible significant noise — both created by the device itself and due to external causes. The higher the signal-to-noise ratio, the lower the noise volume compared to the main signal, the cleaner the amplifier will sound. A reading of 70-80 dB is considered normal for most consumer electronics, but in AV receivers, which are usually premium devices, this can only be called satisfactory. In the most advanced models, this figure can significantly exceed 100 dB.
Frequency range
The range of sound frequencies that the receiver is capable of outputting (this parameter can also be specified for models without their own amplifier, see “Number of channels” for more details). The completeness of the transmitted sound depends on this parameter; of course, the sound quality in general is highly dependent on a number of other factors (for example, frequency response), but the wider the frequency range, the less risk that the amplifier will completely “cut off” some part of the sound. On the other hand, it should be taken into account here that the normal hearing range of the human ear is approximately 16 – 20,000 Hz, and deviations from these limits are rather small. And although many modern receivers provide a much wider frequency range, however, this is more of a marketing ploy than a really significant indicator (or some kind of "side defect" in the design of a high-quality amplifier).
It is also worth considering that in order to reproduce the full frequency of the amplifier, you will need speakers with the appropriate characteristics.
It is also worth considering that in order to reproduce the full frequency of the amplifier, you will need speakers with the appropriate characteristics.




























