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IEEE 43-2000

IEEE 43-2000 IEEE Recommended Practice for Testing Insulation Resistance of Rotating Machinery

standard by IEEE, 03/23/2000

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Scope

This document describes a recommended procedure for measuring insulation resistance of armature andfield windings in rotating machines rated 1 hp, 750 W or greater. It applies to synchronous machines, induction machines, dc machines, and synchronous condensers. It does not apply to fractional-horsepower machines.The document also describes typical insulation resistance characteristics of rotating machine windings and how these characteristics indicate winding condition. It recommends minimum acceptable values of insulation resistance for ac and dc rotating machine windings.Othere IEEE standards that include information on insulation resistance measurement are listed in Clause 2.

Purpose

The purpose of this recommended practice is toa) Define insulation resistance and polarization index testing of the winding of a rotating machine.b) Review the factors that affect or change insulation resistance characteristics.c) Recommend uniform test conditions.d) Recommend uniform methods for measuring insulation resistance with precautions to avoiderroneous results.e) Provide a basis for interpreting insulation resistance test results to estimate winding suitability for service or for an overvoltage test. In particular, this standard describes typical insulation problems detected by the insulation resistance test.f) Present recommended minimum acceptable insulation resistance values and polarization indices forvarious types of rotating machines.

Abstract

Revision Standard - Superseded.This document describes the recommended procedure for measuring insulation resis-tance of armature and field windings in rotating machines rated 1 hp, 750 W or greater. It applies to synchronous machines, induction machines, dc machines, and synchronous condensers. Con-tained within this document is the general theory of insulation resistance (IR) and polarization index (P.I.), as well as factors affecting the results, test procedures, methods of interpretation, test limita-tions, and recommended minimum values.

 
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