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Even though the PCM1704 PDF declare the PCM1704 support up to 96KHz / 24bit, highest word clock input is 768KHz.
In fact the PCM1704UK can support 192KHz / 24bit at 8X oversampling , the word clock input is 1.536MHz , as high as ESS9018.

SA-1.32
Dedicated Discrete Diamond Difference design  DAC
DSP-1 inside
Built in 4 Pieces  PCM1704UK Support up to 192KHz
32bit / 384K Asynchronous Transfer  USB-32 Module

Price:  USD909    (Exclude shipping cost)
(Default install DIR9001 for SPDIF input support up to 24bit / 96KHz, if customer want support up to 192KHz, while place the order inform free replace by WM8805 . USB input always support up to 32 bit / 192KHz)


    
          

                        


     
Summarize Use Manual Specs Technology Detail Custom Option Shipping Cost


Product Features:

Diamond differential output circuits
            Benefit from two high speed diamond differential output circuits, excellent linearity and low phase distortion, diamond differential circuit is being loved and supported by more and more audio fans. Although the circuit is complex, the sound quality is impressive. We've done a lot of study and experiments on diamond differential current these many years, aiming to get a better solution of circuit design.
                       
             For a DAC, high analyzing ability is the most important requirement. The detailed recurrence of resolution lies in the upward and downward characteristics and the noise level of the output amplifier. Because output amplifier is the bottleneck, if the upward characteristic is not good enough, the signal cannot be followed correctly on time and the amplifier can only catch half or even less of the signal level before it disappears. This leads to a downsizing of the original range of signal output from DAC, which directly causes obscurity or even loss of sound effect and a low analyzing ability. A lot of DACs, therefore, even with a highly analytical D/A converter in the digital section, cannot play most of the details due to its low analog circuit speed. To get a good upward characteristic, the only way is to use a high-speed low-noise transistor amplifier. Even operational amplifier and tube cannot compare with high-speed low-noise transistor amplifier in effectively lowering the TIM distortion which has a big impact on the sound quality and promising a pure and pleasant sound delivery.


Output buffer:       
    
The output buffers are Non-feedback. For low impedance, we applied the dual FET buffer output stage which is quite less colored than most conventional circuits.

DSP-1 processor:
            DAC SA-1.32 has built in DSP-1 processor, which is a Two-channel Digital Interpolation Filter and data in-phase processor for digital audio. This Device offers advanced features for high-performance digital signal processing (DSP) applications up to 250-MHz. Data and Master-clock in-phase processing are without jitters. So DAC SA-1.32 can offer a clear and focused soundstage, apart from accurate and neutral reproduction of the recorded disc/music.

Power supply:
            SA-1.32 applies the excellent 4 pcs PCM1704UK and excellent analog output stages, but these are not the only keys of the best sound. The power supply is most important. Even applying the best DA chip and the best amp, if matched to a normal power supply, the total sound may still be average or sound musical, but can't be neutral and detailed. That is why it is easy to find hi-end grade gears maybe without the best chips or amp stages, but with plenteous dedicated DC supply circuits.
            The SA-1.32 had total 8 PSU groups are applied. Uses 4 groups of high-quality class A parallel connection PSU with dedicated DC supply double-stage PSU, which can offer very clear DC power for the DAC, producing a very black background and neutral sound characteristic. The double-stage PSU is very important for digital parts. Some designs may have very low jitter in theory, but if the power is supplied by a dirty or low-speed power supply, it will increase the jitter and pollute the data, and degrade the sound quality obviously.
             The class A parallel connection PSU has very high input impedance to avoid pulse through the PSU from affecting the DAC and low output impedance with very fast speed and high linearity, so it is a very clean power supply. In my experience, its sound is better than battery power supply, better human sound and neutral.


            Class A  power supply.
                   
             


DSP-1 Device Characteristics
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Devices Characteristics:
Two-channel Digital Interpolation Filter and data in-phase processor for digital audio.
208-pin PQFP package, Manufactured on 300-mm wafers using, 90-nm low-k dielectric process. Devices offer advanced features for high-performance digital signal processing (DSP) applications with up to 250-MHz.
Data and Master-clock in-phase processing just without jitters.

Filter Configuration:
Core power supply voltage: 1.2V.
I/O power supply voltage: 3.3V.
Programmable Functions: hardware control mode.
Two-channel NOS / 2-times / 4-times / 8-times oversampling , supports Bypass mode (NOS mode.).
Three-stage linear-phase ( group delay distortion : Zero)  FIR filter configuration.

Filter Characteristics:
Stopband Attenuation:
¡V50dB / -90DB / -130DB.
Passband: 0¡ã0.4535Fs.
Passband Ripple: within ¡Ó0.00001dB.

 Input/Output:
Input Data Formats: I2S
Input Word Length: 16, 20, 24, or 32 Bits
Output Word Length: 16, 20, 24, or 32 Bits
Output Data Formats: MSB-First, Binary Two
¡¦s Complement
Sampling Frequency: 44.1kHz to 192kHz

 
Master-Clock:
Clock Autodivide Circuit Supports four Master-Clock Frequencies : 256Fs¡B384Fs¡B512Fs¡B768Fs
Built-in two groups high performance PLL , supports low jitter Master-Clock output.



     Transition Characteristics¡]-50dB¡^

     Passband Characteristics¡]-50dB¡^


    Transition Characteristics¡]-90dB¡^


     
Passband Characteristics¡]-90dB¡^

Transition Characteristics¡]-130dB¡^

Passband Characteristics¡]-130dB)


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