AUDIOPHONICS DIGIRESCUE Reclocker SPDIF Module Optical Coaxial Galvanic Insulation 24bit 192kHz

This Audiophonics DIGIRescue reclocker module has been designed in association with Ian Canada. Using a high-precision local clock and Ian Canada's discrete reclocking technology, it perfectly resynchronizes S/PDIF signals to achieve very low jitter. The result is a sound reproduction of an incredible clarity and precision.

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Shipping date: 25-12-2024.

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2 Years warranty

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Audiophonics DIGIRescue

Reclocker SPDIF Module Optical Coaxial Galvanic Insulation 24bit 192kHz

Audiophonics DIGIRescue Module Reclocker SPDIF Optique Coaxial Isolation Galvanique 24bit 192kHz

This Audiophonics DIGIRescue reclocker module has been designed in association with Ian Canada. Using a high-precision local clock and Ian Canada's discrete reclocking technology, it perfectly resynchronizes S/PDIF signals to achieve very low jitter. The result is a sound reproduction of an incredible clarity and precision. The module features both optical Toslink and coaxial input and output connections, supporting sampling rates up to 192kHz. It also supports Dolby Digital and DTS audio formats. An automatic signal detection function automatically locks the active input, with status LEDs indicating the latter.
Most consumer devices, such as TV sets, set-top boxes or consoles, but also many audio devices such as DACs or CD players, can feature SPDIF outputs. However, these can suffer from poor signal transmission quality due to high jitter. The Audiophonics DIGIRescue, with its high-precision clock and circuitry, resynchronizes the signals to ensure optimum, error-free transmission quality and clear sound reproduction.

The module benefits from a meticulously optimized overall architecture, based on high-end components. With its high-performance power supply filtering networks (organic polymer/MLCC capacitors totaling 1500µF) and ultra-low-noise LDO, the Audiophonics DIGIRescue is capable of delivering a clean, stable electrical signal to all its circuits. Optical and coaxial inputs and outputs benefit from galvanic isolation to protect the signal from unwanted interference.

In short, the Audiophonics DIGIRescue acts as reclocker, galvanic isolator and EMI/RFI filter, performing each of these tasks effectively. 

Key features:

  • Reclocks S/PDIF signals using a local audio clock with very low jitter.
  • Improves S/PDIF signal quality or corrects poor-quality S/PDIF signals while isolating them.
  • Two inputs: Coaxial and Optical Toslink.
  • Two outputs: Coaxial and Optical Toslink.
  • Standard 5VDC power supply via USB-C.
  • Automatic detection and selection of input signals.
  • Supports sampling rates up to 24bit 192kHz.
  • Two bi-color LEDs indicate the selected input signal and the S/PDIF signal lock status.

Using the Audiophonics DIGIRescue module

  1. Connect a 5VDC power supply to the module via its USB-C connector (J4). Status LED D3 lights up green. The Coaxial input is selected by default.
  2. Connect a DAC to either the coaxial output (J3) or the optical output (U6) of the module.
  3. Connect an audio source to either the module's coaxial input (J1) or optical input (U5).

When using the module's coaxial input, when a valid digital audio signal is locked, the color of LED D3 changes to blue. The DAC connected to the module will then receive the audio signal received by the module on its coaxial input.

When using the module's optical input, if a signal is detected, the optical input is automatically selected. LED D2 then lights up. When a valid digital audio signal is latched, the color of LED D2 changes to blue. The DAC connected to the module will then receive the audio signal on its optical input.

Audiophonics DIGIRescue Module Reclocker SPDIF Optique Coaxial Isolation Galvanique 24bit 192kHz
U5Optical Toslink input
J1Coaxial input
U6Optical Toslink output
J4USB-C 5VDC power supply input
J3Coaxial output
D2Optical Toslink input status LED
D3Coaxial input status LED

LED indicators

  1. D3: Coaxial input status LED (J1)
    • Green: Coaxial input is selected as input.
    • Blue: Digital signal locked.
    • Off: Not selected.
  2. D2: Optical Toslink input status LED (U5)
    • Green: Optical input is selected as input.
    • Blue: Digital signal locked.
    • Off: Not selected.

Technical characteristics

Specifications
Product typeReclocker
EMI/RFI filter
Galvanic isolator
Supported sampling ratesPCM up to 24bit 192kHz
Inputs1* Coaxial (RCA)
1* Optical Toslink
Outputs1* Coaxial (RCA)
1* Optical Toslink
Automatic input signal detection
Local clock jitter1ps RMS
SPDIF reclocking jitter20ps RMS
Supported audio formatsPCM 24bit / 192kHz
Dolby Digital
DTS
General
Supply voltage5VDC via USB-C
Total dimensions96.5*48*18.4mm
PCB dimensions68*48mm
Weight38g
PackageDelivered alone
 
Data sheet
InputSPDIF
InputOptical
OutputOptical Toslink
OutputCoaxial SPDIF
Max sampling rate192kHz
Interface chipNC
 
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Average votes
5.0 / 5
2 reviews
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Note :
 5/5
Date :
Addition
This text in the description above: “ The DAC connected to the module will then receive the audio signal on its optical input." this is only true when a optical cable is used between reclocker and DAC. This reclocker can also be used as a optical to coax converter. Both optical as coaxial output sockets of the reclocker give the output signal.
 (1)
 (0)
This review has been posted for AUDIOPHONICS DIGIRESCUE Reclocker SPDIF Module Optical Coaxial Galvanic Insulation 24bit 192kHz
Note :
 5/5
Date :
Superb reclocker
I use optical only, so used only the reclocker of this device (galvanic separation already exists by optical connection). Sound improvement was signifanct and even astonishing when using a regulated power supply with LT3045 in it.

Thanks to Audiophonic for bringing out this product!
 (0)
 (0)
This review has been posted for AUDIOPHONICS DIGIRESCUE Reclocker SPDIF Module Optical Coaxial Galvanic Insulation 24bit 192kHz
 
AUDIOPHONICS DIGIRESCUE Reclocker SPDIF Module Optical Coaxial Galvanic Insulation 24bit 192kHz
This Audiophonics DIGIRescue reclocker module has been designed in association with Ian Canada. Using a high-precision local clock and Ian...

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