IEEE P1588e/D1.2, Sept 2023 PDF | Request Standard
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IEEE P1588e/D1.2, Sept 2023

IEEE Draft Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems Amendment: MIB and YANG Data Models

Standard by IEEE, 2023

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About This Item

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IEEE P1588e/D1.2, Sept 2023 is a draft standard amendment for the Precision Clock Synchronization Protocol for Networked Measurement and Control Systems, with an added focus on MIB and YANG data models. It supports engineers working on timing-sensitive power, energy, robotics, and control applications where consistent time coordination across devices is important. This draft is relevant when systems need structured management interfaces alongside precise synchronization behavior.

IEEE P1588e/D1.2, Sept 2023 overview

This draft amendment builds on the IEEE P1588 framework by addressing how synchronization-related information can be represented and managed through MIB and YANG data models. In practical terms, IEEE P1588e/D1.2, Sept 2023 is useful for organizations that need interoperable configuration, monitoring, or telemetry for clock synchronization equipment and related networked measurement systems. The document is especially relevant where time alignment must be described in a consistent, machine-readable way for engineering and operations teams.

Typical use cases

Typical use cases include managed timing infrastructure in industrial automation, electrical power networks, and robotic control systems that depend on synchronized clocks. IEEE P1588e/D1.2, Sept 2023 may support network management tools, device configuration workflows, and monitoring systems that exchange timing parameters or status information. It is also relevant for equipment vendors and integrators that need a common data-model approach when implementing precision synchronization features across different devices and control networks.

Why this standard matters

This standard matters because precise synchronization is often only part of the requirement; the supporting management model must also be clear and consistent. IEEE P1588e/D1.2, Sept 2023 can help reduce integration risk by giving teams a common basis for configuration, compliance checks, and testing of timing-related functions. For procurement and system design, it offers a more reliable reference when comparing devices that must work together in measurement and control environments.

  • MIB and YANG data model amendment
  • Precision clock synchronization context
  • Networked measurement and control systems
  • Relevant to power, energy, and robotics applications
  • Supports managed timing interoperability
SKU: 1d116c269949

  • Publication Date: 2023
  • Standard Status: Inactive
  • Publisher: IEEE
  • Subject: Power, Energy and Industry Applications; Robotics and Control Systems
  • Official IEEE: Doi link
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