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Model: SU-R1000E-K
Technics

SU-R1000E-K

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Reference Class Amplifier Technics continues to pursue the ideal sound by challenging new sonic dimensions realized by a full digital amplifier.





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DESCRIPTION
DESCRIPTION

Features

JENO Engine

Jitter is a major cause of distortion in digital systems, and is caused by mis-timing in the master clocks used in digital-to-analogue conversion. To eliminate the degradation of sound caused by jitter, Technics has developed an original jitter reduction circuit, comprising a clock generator in the noise-shaping system to reduce jitter in the low-frequency range and a high-precision sample rate converter for suppressing jitter in the high-frequency range. Thus it reduces jitter in an ideal way over the entire frequency range. This works with original high-precision PWM (Pulse Width Modulation) conversion circuit, optimising the noise-shaping speed, the degree and re-quantisation number, and the PWM gradation, in order to convert high-resolution signals to PWM without causing any damage to the dynamic range. These technologies enable Technics digital amplifier designs to reproduce the natural and delicate nuances of music.

ADCT

(Active Distortion Cancelling Technology)

Circuit Diagram of Digital Amplifier Technology

The Active Distortion Cancelling Technology newly developed by Technics accurately extracts and removes distortion in the power output stage which is generated by the speaker’s counter electromotive force and voltage drops. In the Hi-Fi audio market where an unlimited number of audio systems can be configured by combining various products, high-end audio amplifiers need to optimally drive a diversity of speakers. The Active Distortion Cancelling Technology accurately extracts distortion by determining the difference between the speaker terminal output and JENO output and then applies correction to the output digital signal, thus correcting the conventional digital amp system. This provides powerful speaker driving force and acoustic energy while offering the superior benefits of a digital amplifier, such as low noise, precise sound image and expansive sound ambience, regardless of the types of connected speakers.

Advanced Speed Silent Power Supply

Graph of Super High Speed Switching Power Supply Picture of GaN-FET(left) and SiC Diode(right)

The SU-R1000 uses a switching power supply system to ensure a stable supply of voltage and current required by the digital amp. In a conventional switching power supply system, the ON time of the switching operation was controlled in order to stabilise the voltage, and this causes the switching frequency to fluctuate according to the load, resulting in a modulation noise to affect the sound quality. The Advanced Speed Silent Power Supply has eliminated this noise by fixing the switching frequency in the 400kHz band. Furthermore, a Super Low Noise Regulator is provided in the later stage. This prevents the decrease of regulation resulting from the fixed switching frequency and impedes the mixing of noise component into high frequencies. The result is a high-response power supply that results in the best performance from the digital amplifier.

Four Independent Power Supply Units

Picture of Pre Amplifier

In the SU-R1000, every element comprising the power supply has been diligently studied and revised for higher sound quality. What’s more, four independent power supply units are provided for different circuit blocks for further enhancement of sound quality. Since the SU-R1000 is an integrated amplifier, the internal circuits consist of a pre-amp stage and power amp stage in a mix of analogue and digital circuits. The Phono-EQ section which processes minute analogue signals is particularly susceptible to the effect of noise transmitted through the power supply line. The SU-R1000 uses separate power supply units for the analogue circuits and digital circuits in the pre-amp stage. It also uses separate power supply units for the right and left channels in the power amp stage that requires large electrical power. With the four independent power supply units, the SU-R1000 prevents power-line-induced interference among the circuit blocks and realises a high S/N ratio and superb separation.

High-grade Digital/Analog I/O Circuit

Pictures of component parts for High-grade Digital/Analog I/O Circuit

The phono input section and analogue input section feature a full-discrete circuit design. Technics has realised an ideal, symmetrical circuit layout and performed meticulous tuning. The new circuits prevent interference between the right and left channels and achieve excellent channel separation. Furthermore, the phono input section and XLR input section employ completely balanced transmission to ensure high-purity signal transmission with minimum effect of noise. The USB input circuit in the digital input section is equipped with a capacitor of high-quality ruby mica and a power conditioner with nonmagnetic carbon film resistors for blocking electrical noise e.g. from a PC and for minimising the effect of external noise. The A/D converter incorporates a high-performance chip made by Asahi Kasei Microdevices (AKM) for high-precision A/D conversion. Thus, the SU-R1000 reproduces outstanding sound quality from any analogue or digital input sources.

High Rigidity Chassis and Design

Picture of High Rigidity Chassis and Design

The rigidity of the chassis has been enhanced extensively to suppress the enclosure vibration that is also a source of noise. The inner chassis features a double-deck separated structure. Mounted on the upper deck is the power amp section consisting of the amplification circuit and its power supply circuit. Installed on the lower deck is the pre-amp section which is comprised of the analogue input section, including the phono equaliser, and the digital input section as well as the power supply circuits for those circuits. Not only the upper and lower decks but also individual circuit blocks are separated from one another by steel shield plates. These steel shield plates also serve as reinforcing plates for strengthening the rigidity of the entire chassis. On the outside, the front panel is 10-mm thick, while the side panels and top panel are made of 6-mm-thick alumite-treated aluminum plates. They have also improved the rigidity and vibration resistance. The insulators that support the chassis are made of cast iron with excellent signal attenuation characteristics. All in all, the above parts and materials enhance the quality of internal signals and eliminate the effects of external vibrations at highest levels.

 

Input and output terminals made of meticulously selected high-quality parts

- Speaker terminals designed to allow connection of extra-large diameter speaker cables

- Y-lug terminals for ensuring reliable cable connection

- Neutrik-manufactured analogue balance input terminals and PHONO XLR input terminals (exclusively for MC)

- Analogue input terminals with gold-plated, machined brass parts

 

Technics’ refined design

- Attractive front panel embellished with high-quality hairline surface finish and equipped with an iconic, large dual-needle meter

- Volume dial and selector knob made of parts machined from solid aluminum blocks and spin-finished

Crosstalk Canceller - For measurement and improvement of crosstalk characteristic unique to each cartridge

Graphic of Crosstalk Canceler

This function measures the crosstalk characteristic of the installed cartridge by using the crosstalk measuring signal recorded on the Calibration Record bundled with the SU-R1000. It then performs reverse-correction using the built-in DSP to achieve significant improvement of the crosstalk characteristic. This results in a more precise sound image and a wider sound ambience.

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SPECS
Power Output per Channel
Number of Channels
Speaker Impedance
Rated Power Band
Total Harmonic Distortion
Dynamic Headroom
Frequency Response +0,-0.5dB
Frequency Response, +0,-3dB
Sensitivity Phono (Moving Coll)
Sensitivity Phono (Moving Magnet)
Sensitivity High Level (Balanced / Unbalanced)
Sensitivity (Power Amp Input)
Signal To Noise Ratio (Moving Coll)
Signal To Noise Ratio (Moving Magnet)
Signal To Noise Ratio (High Level)
Signal To Noise Ratio (Power Amp Input)
Input Impedance (Balanced / Unbalanced)
Damping Factor
Maximum Output (Balanced / Unbalanced)
Balanced Input
Unbalanced Input
Phone Input Moving Coil
Phone Input Moving Magnet
Upgradeable Digital Audio Module
Digital Coaxial Input
Digital Optical Input
Digital MCT (DIN) Input
Digital USB Input
Balanced Variable Output
Unbalanced Fixed Output
Unbalanced Variable Output
Headphone Output
Subwoofer Output
AM/FM Tuner option
Home Theater PassThru
Unbalanced Analog Connector Type
Speaker Binding Post Type
Service Port
Digital-to-Analog Converter (DAC) Type
Digital Coaxial Input Sample Rate
Digital Optical Input Sample Rate
Digital MCT (DIN) Input Sample Rate
Digital USB Input Sample Rate
Tone Controls
Tone Bypass and Input Assingn
RS232 Control Input
Power Control Output
Rear Panel Data Port
Rear Panel IR Sensor Input
Input Level Match
Vacuum Tube or Soild State
Output Autoformer
Output Meters
Dual Layer Chassis
Chassis Finish
Mcintosh Monogrammed Heatsinks™
Power Requirement
Standby Power Requirement
Dimensions (W x H x D)
Weight
Shipping Weight
IMAGES
IMAGES


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