IEEE 61523-4-2023
Part 4: Design and Verification of Low-Power, Energy-Aware Electronic Systems
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About This Item
61523-4-2023 is a technical standard for the design and verification of low-power, energy-aware electronic systems, with a focus on how these systems are evaluated for performance and control. It sits at the intersection of computing and processing, electromagnetic behavior, and power-related engineering, making it relevant where efficiency and dependable operation must be balanced. The standard is useful for teams that need a clear basis for specification, testing, and compliance in energy-sensitive electronic design.
61523-4-2023 overview
This standard addresses the design and verification of low-power electronic systems that must manage energy carefully while still meeting functional requirements. As part 4 of the 61523 series, 61523-4-2023 is best understood as a specialized technical document for assessing how such systems are built, validated, and controlled. Its context suggests practical guidance for engineering decisions involving power use, signal behavior, and verification methods, especially where consistent measurement and repeatable results are important.
Typical use cases
Typical applications include low-power control units, embedded processing platforms, and energy-aware electronic assemblies used in equipment where power budget matters. It may also support design and verification workflows for systems that interact with electromagnetic conditions or operate in power-sensitive environments. Engineers, procurement teams, and test laboratories can use the standard when defining requirements, checking technical conformity, or comparing candidate designs for efficiency and reliability in practical deployments.
Why this standard matters
For organizations working with energy-aware electronics, 61523-4-2023 can help reduce ambiguity during design, testing, and acceptance. A defined standard supports consistent verification approaches, which is important when assessing performance under power constraints or when comparing different implementations. It can also improve procurement decisions by giving buyers a clearer technical reference. In practice, this kind of structure helps limit risk, strengthen documentation, and support more dependable engineering outcomes.
- Low-power system design
- Energy-aware verification
- Performance and compliance checks
- Computing and processing context
- Power-sensitive electronic applications
- Publication Date: 2023
- Standard Status: Active
- Publisher: IEEE
- Subject: Computing and Processing; Fields, Waves and Electromagnetics; Power, Energy and Industry Applications
- Official IEEE: Doi link
- New Version Available: 61523 (2023)
- This Version: 61523 (2023)
- Previous Version: 61523 (2015)
- Previous Version: 61523 (2004)
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