stevekr
23-03-2026, 13:40
Modern DACs handle jitter extremely well through buffering, reclocking, and clock isolation techniques—it's largely a solved problem from the 1990s/early 2000s era. You almost certainly shouldn't worry about it with any decent modern DAC (pretty much anything from reputable brands post-~2010, including budget ones like Topping, SMSL, Schiit, or high-end like Benchmark, Chord, etc.). Here's the clear breakdown.What Jitter Actually Is (and Why It Used to Matter)Jitter is tiny timing errors in the digital clock signal that tells the DAC exactly when to convert each sample to analog. These errors create low-level distortion sidebands (like FM modulation) around the audio tones—worse at higher frequencies. In old synchronous designs (e.g., early S/PDIF or early USB), source jitter (from CD players, computers, streamers) could pass straight through and become audible in the output.In measurements, this shows up in the J-test (a special test signal): you see symmetric sidebands around the main tone instead of a clean spike. Here's a classic example of what visible/measurable jitter looks like in a less-optimized setup:nwavguy.blogspot.com
superbestaudiofriends.org
These sidebands can degrade dynamic range or add subtle "grittiness," but only at high levels (tens of nanoseconds or more).How Modern DACs Eliminate (or Massively Reduce) Source JitterVirtually all contemporary DACs use one or more of these methods to isolate the output from input timing errors. The result: incoming jitter is rejected, and the only remaining jitter is from the DAC's own high-quality internal clock (typically picoseconds—ps—range, often <10-50 ps effective).
stereonet.com +1
Data Buffering + Reclocking (FIFO buffer): The DAC stores incoming samples in a buffer, then reads them out using its own precise local crystal oscillator (or TCXO/OCXO). This completely decouples the output timing from the source. Virtually all modern DACs do this internally.
Asynchronous USB (the most common today): The DAC is the clock master—it "pulls" data from the computer/streamer at its own pace. No clock recovery needed from the source. This is why USB DACs are so immune to source jitter.
Asynchronous Sample Rate Conversion (ASRC): Popular in ESS Sabre chips and others (e.g., Benchmark's UltraLock). The incoming signal is resampled to the DAC's internal clock domain. Incoming jitter is filtered out (often >80-100 dB attenuation). Minor downside: it's not bit-perfect, but the math errors are ridiculously low (<-170 dB, far below audibility).
Advanced PLLs / Digital PLLs (for S/PDIF, AES, HDMI, etc.): The receiver locks to the incoming clock but heavily filters jitter (low-pass behavior). High-end ones (Benchmark, some pro gear) attenuate even severe input jitter (e.g., 25 ns down to ~1.4 ps).
goldensound.audio
Here's what happens when you add artificial jitter to a modern setup with good rejection (e.g., via a reclocking device): the spectrum stays clean until you hit extreme levels (~20-30 ns), proving the DAC discards the bad timing:audiosciencereview.com
Is It Audible? Measurements and Tests Say No in Modern GearTypical modern jitter: <0.5 ns** (500 ps) effective, often single-digit ps. This puts distortion **>100 dB below the music—below the CD noise floor.
audioxpress.com
Audibility threshold (controlled tests): Around 10-30 ns or higher for random jitter; periodic jitter is more detectable but rare now. Even 10 ns added to music is inaudible; you need extreme amounts (tens of μs) for "gritty" artifacts.
Real-world: Tests on Topping, Schiit, Benchmark, etc., show negligible or zero audible/measurable difference from jittery sources. External master clocks or reclockers usually do nothing (or can add noise). Pro audio doesn't worry about it either.
Some DACs (e.g., certain Maxim chips) are so tolerant they don't even need complex PLLs and still measure great with noisy clocks.
analog.com
Should You Worry? Almost NeverNo. With a modern DAC:Use async USB or network/Ethernet input for the easiest path (heavy buffering kills packet jitter).
Even S/PDIF/coax is fine on good implementations.
Exceptions (rare): Truly ancient gear, ultra-cheap no-name DACs with bad receivers, or pro multi-device sync setups needing word clock.
The real performance factors today are the analog output stage, overall SINAD/noise, power supply cleanliness, and your speakers/room—not source jitter. Audiophile hype about cables, external clocks, or "jitter-sensitive" DACs is mostly outdated or marketing. Measurements (e.g., Audio Science Review style) confirm this consistently.If you're shopping, just pick a well-reviewed DAC with good measurements for your needs. Jitter is one of the least concerning aspects in 2025/2026 audio. Enjoy the music!
superbestaudiofriends.org
These sidebands can degrade dynamic range or add subtle "grittiness," but only at high levels (tens of nanoseconds or more).How Modern DACs Eliminate (or Massively Reduce) Source JitterVirtually all contemporary DACs use one or more of these methods to isolate the output from input timing errors. The result: incoming jitter is rejected, and the only remaining jitter is from the DAC's own high-quality internal clock (typically picoseconds—ps—range, often <10-50 ps effective).
stereonet.com +1
Data Buffering + Reclocking (FIFO buffer): The DAC stores incoming samples in a buffer, then reads them out using its own precise local crystal oscillator (or TCXO/OCXO). This completely decouples the output timing from the source. Virtually all modern DACs do this internally.
Asynchronous USB (the most common today): The DAC is the clock master—it "pulls" data from the computer/streamer at its own pace. No clock recovery needed from the source. This is why USB DACs are so immune to source jitter.
Asynchronous Sample Rate Conversion (ASRC): Popular in ESS Sabre chips and others (e.g., Benchmark's UltraLock). The incoming signal is resampled to the DAC's internal clock domain. Incoming jitter is filtered out (often >80-100 dB attenuation). Minor downside: it's not bit-perfect, but the math errors are ridiculously low (<-170 dB, far below audibility).
Advanced PLLs / Digital PLLs (for S/PDIF, AES, HDMI, etc.): The receiver locks to the incoming clock but heavily filters jitter (low-pass behavior). High-end ones (Benchmark, some pro gear) attenuate even severe input jitter (e.g., 25 ns down to ~1.4 ps).
goldensound.audio
Here's what happens when you add artificial jitter to a modern setup with good rejection (e.g., via a reclocking device): the spectrum stays clean until you hit extreme levels (~20-30 ns), proving the DAC discards the bad timing:audiosciencereview.com
Is It Audible? Measurements and Tests Say No in Modern GearTypical modern jitter: <0.5 ns** (500 ps) effective, often single-digit ps. This puts distortion **>100 dB below the music—below the CD noise floor.
audioxpress.com
Audibility threshold (controlled tests): Around 10-30 ns or higher for random jitter; periodic jitter is more detectable but rare now. Even 10 ns added to music is inaudible; you need extreme amounts (tens of μs) for "gritty" artifacts.
Real-world: Tests on Topping, Schiit, Benchmark, etc., show negligible or zero audible/measurable difference from jittery sources. External master clocks or reclockers usually do nothing (or can add noise). Pro audio doesn't worry about it either.
Some DACs (e.g., certain Maxim chips) are so tolerant they don't even need complex PLLs and still measure great with noisy clocks.
analog.com
Should You Worry? Almost NeverNo. With a modern DAC:Use async USB or network/Ethernet input for the easiest path (heavy buffering kills packet jitter).
Even S/PDIF/coax is fine on good implementations.
Exceptions (rare): Truly ancient gear, ultra-cheap no-name DACs with bad receivers, or pro multi-device sync setups needing word clock.
The real performance factors today are the analog output stage, overall SINAD/noise, power supply cleanliness, and your speakers/room—not source jitter. Audiophile hype about cables, external clocks, or "jitter-sensitive" DACs is mostly outdated or marketing. Measurements (e.g., Audio Science Review style) confirm this consistently.If you're shopping, just pick a well-reviewed DAC with good measurements for your needs. Jitter is one of the least concerning aspects in 2025/2026 audio. Enjoy the music!