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IEEE P1588e/D1.1, Jun 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/D1.1, Jun 2023 is an IEEE draft standard for a precision clock synchronization protocol used in networked measurement and control systems. This amendment focuses on MIB and YANG data models, helping define how synchronization-related information can be represented and managed across connected equipment. It is relevant where accurate timing supports coordinated operation, interoperability, and system visibility in communication, power, robotics, and industrial control environments.

About IEEE P1588e/D1.1, Jun 2023

IEEE P1588e/D1.1, Jun 2023 extends the Precision Clock Synchronization Protocol framework with management models for networked devices. The MIB and YANG data model work is especially important for configuration, monitoring, and integration in environments that rely on consistent timing behavior. As a draft amendment, it supports technical development and evaluation by describing how protocol-related data may be structured for network management and tooling, while staying aligned with the broader P1588 synchronization context.

Where is IEEE P1588e/D1.1, Jun 2023 used?

This document is most relevant in systems where synchronized clocks support measurement, automation, and control over a network. Typical use cases may include industrial controllers, power-system equipment, robotics platforms, and communication infrastructure that need coordinated time references. IEEE P1588e/D1.1, Jun 2023 is also useful for engineering teams building management interfaces, since the MIB and YANG models can help expose synchronization status and configuration in a more consistent way.

Importance in practice

In practice, IEEE P1588e/D1.1, Jun 2023 helps reduce ambiguity around how synchronization data is modeled and managed. That matters for compliance testing, system integration, procurement specifications, and operational troubleshooting, especially when multiple vendors or device types are involved. Clear management models can improve consistency across deployments and make it easier to verify timing behavior, which supports performance control and lowers risk in measurement and control applications.

  • Precision clock synchronization management
  • MIB and YANG data model amendment
  • Networked measurement and control systems
  • Timing visibility and configuration support
  • Industrial, power, and robotics contexts
SKU: c561cde002d3

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