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PCM4L датащи(PDF) 5 Page - Renesas Technology Corp

номер детали PCM4L
подробное описание детали  PTP Clock Manager for Linux
PDF  38 Pages
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производитель  RENESAS [Renesas Technology Corp]
домашняя страница  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

PCM4L датащи(HTML) 5 Page - Renesas Technology Corp

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R31DS0087EU0101 Rev.1.01
Page 5
Sep.28.21
pcm4l Datasheet
1. Principles of Operation
The IEEE 1588-2019 Precision Time Protocol (PTP) can be used to achieve precise synchronization of clocks in
packet-based networked systems. The protocol supports synchronization accuracy and precision in the sub-
microsecond range with minimal network and local computing resources, and allows for customizations by means
of Profiles. With a properly designed network, sub-nanosecond time transfer accuracy can be achieved.
The challenge of any network synchronization mechanism is how to make local clocks that are traceable to a
primary clock source. It is also desirable to implement a clear set of equipment clock recommendations. For
Telecom, these industry agreed architectures come from the ITU-T.
1.1 Simplified Synchronization Model
The basis of PTP is built on the exchange of PTP timing messages, as illustrated in Figure 1. The IEEE 1588
standard defines two types of delay mechanisms: delay request-response and peer delay. Only one of the two is
needed, and all ITU-T Telecom Profiles use the delay request-response. PTP assumes transmission delays
between the master clock to the slave clock and the return path are symmetric.
Figure 1. Basic PTP Timing Message Exchange (from IEEE 1588-2019)
From above, two measurements can be obtained:
1. Offset From Master, or <offsetFromMaster>
◦ = <Time on the Slave Clock> - <Time on the Master Clock>
◦ = <syncEventIngressTimestamp> - <originTimestamp> - <meanDelay> - <correctedSyncCorrectionField>
◦ = t2 - t1 - <meanPathDelay>[1] - <correctedSyncCorrectionField>
1. Using delay request-response mechanism (used by all ITU-T Telecom Profiles).



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