Difference between revisions of "Digital systems/Latency (Q976)"
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(Added qualifier: knowledge content (P58): sample-rate conversion) | (Created claim: context (P66): Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain.) | ||
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+ | Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain. (English) | ||
Property / context: Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain. (English) / rank | |||
+ | Normal rank |
Revision as of 15:04, 26 July 2024
Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain.
Language | Label | Description | Also known as |
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English | Digital systems/Latency | Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain. |
Statements
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causes of latency along the signal chain (English)
sample rate and system latency (English)
packetized transport (e.g. Ethernet) (English)
sample-rate conversion (English)
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optimizing system latency (English)
non-critical signal paths: large-area sound reinforcement, recording (English)
critical singnal paths: musician monitoring (especially in-ear) (English)
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SQQ7 - 8.1.4
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Analog systems work at the speed of light in copper, which is to say, without any perceptible delay. All digital systems however introduce a little bit of latency, and it accumulates along the signal chain. (English)
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