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Communication networks and systems in substations - Part 1: Introduction and overview
MS 61850-1:2011
Status : Original
Format : PDF

This Malaysian Standard gives an introduction and overview of communication networks and systems in substations. It refers to and includes text and figures from other parts of the IEC 61850 standard s ....Read more eries. 

The standard is applicable to Substation Automation (SA). It defines the communication between Intelligent Electronic Devices (IEDs) in the substation and the related system requirements.
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Communication networks and systems in substations - Part 2: Glossary (IEC/TS 61850-2:2003, IDT)
MS IEC/TS 61850-2:2011
Status : Original
Format : PDF

This Malaysian Standard applies to Substation Automation Systems (SAS). It defines the communication between intelligent electronic devices (IEDs) in the substation and the related system requirements ....Read more . This standard contains the glossary of specific terminology and definitions used in the context of Substation Automation Systems within the various parts of the standard. Close

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Communication networks and systems for power utility automation - Part 7-4: Basic communication structure - Compatible logical node classes and data object classes (IEC 61850-7-4:2010, MOD)
MS 61850-7-4:2013
Status : Original
Format : PDF

This Malaysian Standard specifies the information model of devices and functions generally related to common use regarding applications in systems for power utility automation. It also contains the in ....Read more formation model of devices and function-related applications in substations. In particular, it specifies the compatible logical node names and data object names for communication between intelligent electronic devices (IED). This includes the relationship between logical nodes and data objects. Close

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Communication networks and systems for power utility automation - Part 7-3: Basic communication structure - Common data classes (IEC 61850-7-3:2010, MOD)
MS 61850-7-3:2013
Status : Original
Format : PDF

This Malaysian Standard specifies the constructed attribute classes and common data classes related to power utility automation applications in power system using IEC 61850 modeling concepts. These co ....Read more mmon data classes in IEC 61850-7-3 are used in IEC 61850-7-4 to define the compatible data object classes for the information modeling of devices and function-related applications in systems for power utility automation. Close

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Solar photovoltaic energy systems - Terms, definitions and symbols
MS 61836:2010 (CONFIRMED:2015)
Status : 1st Confirmation
Format : PDF

This Malaysian Standard deals with the terms and symbols from national and international solar photovoltaic standards and relevant documents used within the field of solar photovoltaic (PV) energy sys ....Read more tems. It includes the terms and symbols compiled from the published IEC technical committee 82 standards, previously published as technical report IEC/TR 61836:1997. 

The focus of this Malaysian Standard is "what do the words mean" and not "under what conditions do the terms apply".
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Photovoltaic (PV) systems - Characteristics of the utility interface (IEC 61727:2004, IDT)
MS IEC 61727:2010 (CONFIRMED:2015)
Status : 1st Confirmation
Format : PDF

This Malaysian Standard applies to utility-interconnected photovoltaic (PV) power systems operating in parallel with the utility and utilizing static (solid-state) non-islanding inverters for the conv ....Read more ersion of DC to AC. This standard describes specific recommendations for systems rated at 10 kVA or less, such as may be utilized on individual residences single or three phase. This standard applies to interconnection with the low-voltage utility distribution system. Close

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Photovoltaic system performance monitoring - Guidelines for measurement, data exchange and analysis (IEC 61724:1998, IDT)
MS IEC 61724:2010 (CONFIRMED:2015)
Status : 1st Confirmation
Format : PDF

This Malaysian Standard recommends procedures for the monitoring of energy-related PV system characteristics such as in-plane irradiance, array output, storage input and output and power conditioner i ....Read more nput and output; and for the exchange and analysis of monitored data. The purpose of these procedures is to assess the overall performance of PV systems configured as stand-alone or utility grid-connected, or as hybridised with non-PV power sources such as engine generators and wind turbines.

This Malaysian Standard may not be applicable to small stand-alone systems due to the relatively high cost of the measurement equipment.
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Medical electrical equipment - Dosimetric instruments used for non-invasive measurement of x-ray tube voltage in diagnostic radiology (IEC 61676:2002, IDT)
MS IEC 61676:2007 (CONFIRMED:2015)
Status : 1st Confirmation
Format : PDF

This Standard specifies the performance requirements of instruments as used in the NON-INVASIVE MEASUREMENT of X-RAY TUBE VOLTAGE up to 150 kV and the relevant compliance tests.

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MEDICAL ELECTRICAL EQUIPMENT – DOSIMETERS WITH IONIZATION CHAMBERS AND/OR SEMI-CONDUCTOR DETECTORS AS USED IN X-RAY DIAGNOSTIC IMAGING (IEC 61674:1997 AND ITS AMENDMENT 1:2002, IDT)
MS IEC 61674:2007
Status : Original
Format : PDF

This Malaysian Standard specifies the performance and some related constructional requirements of diagnostic dosimeters, intended for the measurement of air kerma, air kerma length or air kerma rate, ....Read more in photon radiation field used in radiography, including mamography, radioscopy and computed tomography (CT), for x-rays with generating potentials not greater than 150 kV. Close

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ASSESSMENT OF THE RISK OF DAMAGE DUE TO LIGHTNING (IEC 61662 : 1995, IDT)
MS IEC 61662:2001
Status : Original
Format : PDF

This Malaysian Standard specifies the procedure for evaluation of the risk of damage to a structure caused by direct and indirect lightning flashes, and to permit the bodies concerned to fix an accept ....Read more able value for the frequency of damage to structures. Once an upper limit for the frequency of damage has been fixed, the procedure given allows for the selection of appropriate protective measures for the structure. 

NOTE — Damage to the equipment due to direct magnetic coupling with lightning current which strikes the earth nearby the structure may be usually disregarded. Where sensitive electronic equipment are installed in the structure, this damage should be also taken into account in the assessment of the risk.
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