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Lynx AES16 / AES16e
Getting Started/Installation
Troubleshooting
Operation
Compatibility


  • Running an ASIO application and bit-depth says 32-bit in Lynx Mixer despite project bit-depth.
  • I’m using the AES16 / AES16e in Dual Wire mode, recording at 192KHz, but the Digital In Sample Rate reported in the Lynx is 96KHz – is this correct?
  • The Lynx Mixer reports a sample rate of 22k when I first boot into Windows. Why?
  • I cannot change the clock source in the Lynx Mixer – it keeps reverting back to the previous setting
  • My computer is not recognizing the Lynx card. What could be wrong?
  • I installed your Version 2/ WDM drivers and now I’m not getting meter activity in my application.
  • I get clicks and pops when I increase my sample rate to 96k. Is there a compatibility problem?
  • When I log into my Windows 2000/XP computer as an Administrator everything works fine. When I log in as a User, I cannot use my AES16. When launching the Lynx Mixer, I get an error message: “No mixer device drivers available.”
  • My audio output is way too loud.
  • After installing OS X driver build 46 or above, I get Kernel Panics when launching or closing my audio software.


My audio output is way too loud.
All OS

Output levels for the card can be managed from the Lynx Output Mixer. You can manipulate pairs of faders by clicking the Shift key while sliding one fader down, or you can control all 16 mixer faders at one time by clicking the Ctrl Key while sliding one fader down (Windows only).

The faders in the Lynx Mixer perform digital attenuation on audio signals in the digital domain. As with any digital signal processing function, the digital attenuation calculations used by the AES16 can introduce arithmetic errors that can add small amounts of noise to signals.

To insure the highest signal quality it is highly recommended that the faders be left in their maximum position during critical recording and playback, and monitor levels be adjusted from the destination device (converter, digital mixer, etc.). In this position, no attenuation calculations are performed.


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