In terms of quantification, jitter, like all time-variance signals, it can be quantified with terms such asroot mean square (RMS), or peak-to-peak displacement, as well as in terms of spectral density. As I mentioned earlier, jitter is an undesirable distortion of the signal. It occu...
Jitter can cause a display monitor to flicker, affect the ability of the processor in a desktop or server to perform as intended, introduce clicks or other undesired effects in audio signals, and lead toloss of transmitted databetween network devices. The amount of allowable jitter is highly de...
There are two main types of jitter: deterministic and random. Deterministic Jitter is created by identifiable interference signals. It is always bounded in amplitude, has specific (not random) causes, and cannot be analyzed statistically. There are four main sources of deterministic jitter: Crosstal...
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JetPLL is designed to clean up incoming clock signals — whether internal or via a network. For more about JetPLL, check out our full article here. While jitter may not be the first thing newcomers to recording will need to worry about, it's something that will become more important as ...
In a processor, an internal interrupt maskregisterselectively enables and disables hardware requests. When the mask bit is set, the interrupt is enabled. When it is clear, the interrupt is disabled. Signals that are affected by the mask are maskable interrupts. ...
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Still, sometimes it is actually desirable to add small amounts of input noise—called jitter—to boost generalization and reduce overfitting in model learning.Augmenting datato mimic different real-world scenarios is typical for computer vision applications where Gaussian and non-Gaussian (e.g., salt...
jitter, black screen, or static frame. Flow recognition enables a device to collect statistics about the upstream traffic — for example, the numbers of packets and bytes — on an interface based on seven key fields of information (source and destination MAC addresses, source and destina...
synchronization with a high precision. It integrates synchronization into the physical layer, eliminating the need for separate cabling or equipment. Since SyncE operates at the physical layer, it’s less susceptible to packet delays and jitter, making i...