IEC 60205:2016 PDF
Calculation of the effective parameters of magnetic piece parts
Calculation of the effective parameters of magnetic piece parts
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 37
- Дата публикации:
- 18 ноября 2016 г.
- Издание:
- IEC IS 60205 edition 4 version 1
- ICS:
- 29.100.10
IEC 60205:2016 specifies uniform rules for the calculation of the effective parameters of closed circuits of ferromagnetic material. This edition includes the following significant technical changes with respect to the previous edition: a) addition, in 5.1, of the drawing of a core of rectangular cross-section with chamfer; b) addition, in 5.1.3, of the equation of a core of rectangular cross-section with chamfer; c) equations in 5.1.4, 5.6, 5.7, 5.8, 5.9, 5.11, 5.12, 5.14 are amended or replaced; d) drawings RM6-S and RM6-R in 5.7 are amended; e) addition of EC-cores, see 5.15. The contents of the corrigendum of July 2018 have been included in this copy.
Abstract
Overview
IEC 60205:2016 - Calculation of the effective parameters of magnetic piece parts - provides uniform rules and formulae for calculating the effective parameters of closed magnetic circuits made from ferromagnetic material. The standard defines how to derive effective magnetic length (le), effective cross‑sectional area (Ae) and effective volume (Ve) and the related core constants used in magnetics design and specifications. This edition (4.0, 2016) includes technical updates (e.g., new chamfer/rectangular core drawings and amended equations) and the addition of EC‑cores; the July 2018 corrigendum is incorporated.
Key topics and requirements
- Scope and applicability: Calculations apply to component parts of closed magnetic circuits (ring, E, U, RM, PQ, PM, pot, ETD/EER, EFD, EL, EP, E planar and newly added EC cores).
- Standardized parameters: Defines effective parameters via core constants (C1, C2, C3) with the relationships:
- le = C1 / C2
- Ae = C2 / C3
- Ve = C1 / C3
- Units and accuracy:
- All dimensions and results in millimetres (mm).
- Results expressed to three significant figures; intermediate C constants to five significant figures (to ensure consistent repeating calculations).
- Calculation rules:
- Use mean dimensions within tolerance limits from piece‑part drawings.
- Ignore small irregularities (cut‑outs, notches, minor chamfers) unless otherwise specified.
- Special handling for sharp corners (mean circular path between adjacent sections).
- Updated formulae and drawings: Several equations and RM core drawings updated; addition of formulas for rectangular cross‑section with chamfer and for EC‑cores.
Practical applications
- Magnetic component design: Transformer and inductor designers use IEC 60205 to compute core effective length, area and volume for flux density, saturation and loss calculations.
- Component specification and datasheets: Manufacturers apply standardized parameters to ensure consistent datasheet values and cross‑supplier comparisons.
- Simulation and modelling: Provides validated geometric parameter inputs for finite‑element analysis (FEA) and circuit models.
- Test labs and compliance: Test labs use the standard’s defined parameters when verifying performance, saturation limits and magnetic characteristics of closed‑circuit cores.
- Industry users: Relevant to electrical engineers, magnetic materials specialists, magnetics component manufacturers, and standards/quality engineers.
Related standards
- IEC 60205 is intended to harmonize parameter definitions used across related IEC standards for magnetic components and will feed into parameter updates in other IEC documents covering transformers, inductors and ferrite cores.
Keywords: IEC 60205, effective magnetic length, effective cross‑sectional area, core constants, magnetic piece parts, ferromagnetic cores, ring cores, E‑cores, PQ‑cores, EC‑cores.
Технические детали
- Технический комитет
- TC 51 - Magnetic components, ferrite and magnetic powder materials
- SKU
- IEC 60205:2016
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