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ISO - ISO 14839-4 - MECHANICAL VIBRATION - VIBRATION OF ROTATING MACHINERY EQUIPPED WITH ACTIVE MAGNETIC BEARINGS - PART 4: TECHNICAL GUIDELINES - FIRST EDITION Organization: ISO
Date: 2012-03-15
Description: This part of ISO 14839: a) indicates a typical architecture of an active magnetic bearing (AMB) system so that users can understand which components are likely to comprise such systems and which functions these components provide; b) identifies the primary similarities and differences between AMB systems and conventional mechanical bearings; NOTE This information helps AMB system users better to understand the selection process and implications of transition to AMB technology.
CENELEC - EN 50527-1 - PROCEDURE FOR THE ASSESSMENT OF THE EXPOSURE TO ELECTROMAGNETIC FIELDS OF WORKERS BEARING ACTIVE IMPLANTABLE MEDICAL DEVICES - PART 1: GENERAL Organization: CENELEC
Date: 2016-12-01
Description: This European Standard provides a procedure to assess the risk to workers bearing one or more active implantable medical devices from exposure to electric, magnetic and electromagnetic fields at a workplace.
DS/IEC/TS 60034-24 - ROTATING ELECTRICAL MACHINES - PART 24: ONLINE DETECTION AND DIAGNOSIS OF POTENTIAL FAILURES AT THE ACTIVE PARTS OF ROTATING ELECTRICAL MACHINES AND OF BEARING CURRENTS - APPLICATION GUIDE Organization: DS
Date: 2009-10-29
Description: The failure analysis includes: - interturn faults - phase-to-phase short-circuits - double earth faults and single earth faults of motors with earth connection of the starpoint - static and dynamic eccentricities - cage imperfection (e.g. broken bars or end-rings) - bearing currents This can be achieved by tools like search coils or other magnetic sensors or partly by the analysis of the terminal voltages and currents.
DSF/IEC 60034-24 TS ED. 1.0 - 2/1537/DTS - ROTATING ELECTRICAL MACHINES - PART 24: ONLINE DETECTION AND DIAGNOSIS OF POTENTIAL FAILURES AT THE ACTIVE PARTS OF ROTATING ELECTRICAL MACHINES AND OF BEARING CURRENTS - APPLICATION GUIDE Organization: DS
Description: The failure analysis includes: - interturn faults - phase-to-phase short-circuits - double earth faults and single earth faults of motors with earth connection of the starpoint - static and dynamic eccentricities - cage imperfection (e.g. broken bars or end-rings) - bearing currents This can be achieved by tools like search coils or other magnetic sensors or partly by the analysis of the terminal voltages and currents.
CENELEC - CLC/TS 60034-24 - ROTATING ELECTRICAL MACHINES - PART 24: ONLINE DETECTION AND DIAGNOSIS OF POTENTIAL FAILURES AT THE ACTIVE PARTS OF ROTATING ELECTRICAL MACHINES AND OF BEARING CURRENTS - APPLICATION GUIDE Organization: CENELEC
Date: 2011-02-01
Description: The failure analysis includes: – interturn faults; – phase-to-phase short-circuits; – double earth faults and single earth faults of motors with earth connection of the star-point; – static and dynamic eccentricities; – cage imperfection or defects (e.g. broken bars or end-rings); – bearing currents. This can be achieved by tools like search coils or other magnetic sensors or partly by the analysis of the terminal voltages and currents.
DIN ISO 25862 - SHIPS AND MARINE TECHNOLOGY - MARINE MAGNETIC COMPASSES, BINNACLES AND AZIMUTH READING DEVICES (ISO 25862:2009) Organization: DIN
Date: 2013-01-01
Description: This International Standard applies to — all ships to which SOLAS applies (ships of gross tonnage W 150 t, engaged on international voyages and ships of gross tonnage W 500 t not engaged on international voyages) fitted with class A magnetic compasses, — all ships to which SOLAS does not apply, fitted with the class A or class B magnetic compasses, and — lifeboats/rescue boats fitted with a class B magnetic compass (as specified in Annex H).
JSA - JIS B 8328 - VACUUM TECHNOLOGY-TURBOMOLECULAR PUMPS-MEASUREMENT OF PERFORMANCE CHARACTERISTICS Organization: JSA
Date: 2009-09-24
Description: a) mechanical bearing (plain bearing/rolling bearing) and magnetic bearing b) with or without drag pump stage NOTE: The International Standard corresponding to this Standard and the symbol of degree of correspondence are as follows.

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