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ATIS 0600311 - DC POWER SYSTEMS – TELECOMMUNICATIONS ENVIRONMENT PROTECTION Organization: ATIS
Date: 2017-01-01
Description: Application The dc power system protection standard shall be applied to the engineering, installation, and acceptance of centralized dc power systems owned or operated by exchange and interexchange carriers.
IEC/IEEE 65700-19-03 - BUSHINGS FOR DC APPLICATION - EDITION 1.0 Organization: IEC
Date: 2014-07-01
Description: This International Standard applies to outdoor and indoor bushings of any voltage used on DC systems, of capacitance graded or gas insulated types for use as components of oil-filled converter transformers and smoothing reactors, as well as air-to-air DC bushings.
LUL - S1108 - DC TRACTION FEEDER CABLES - ISSUE A3 Organization: LUL
Date: 2012-02-01
Description: The cables covered by this Standard shall be used outdoors (or both outdoors and indoors in the case of LFH cables) as a power cable forming any part of the DC traction power supply circuit originating within a substation and ending with connection to the traction conductor rail, a connection from the conductor rail to a depot shore supply system or as a connector between two lengths of conductor rail.
IEEE 65700-19-03 - BUSHINGS FOR DC APPLICATION Organization: IEEE
Date: 2014-07-01
Description: This International Standard applies to outdoor and indoor bushings of any voltage used on DC systems, of capacitance graded or gas insulated types for use as components of oil-filled converter transformers and smoothing reactors, as well as air-to-air DC bushings.
IEC TS 60076-23 - POWER TRANSFORMERS - PART 23: DC MAGNETIC BIAS SUPPRESSION DEVICES - EDITION 1.0 Organization: IEC
Date: 2018-01-01
Description: In the case of dedicated metallic return HVDC system, the devices are useful to mitigate DC stray current flowing through power transformers and converter transformers during transient conditions such as DC line fault.
IEC 62855 - NUCLEAR POWER PLANTS - ELECTRICAL POWER SYSTEMS - ELECTRICAL POWER SYSTEMS ANALYSIS - EDITION 1.0 Organization: IEC
Date: 2016-08-01
Description: IEC 62855 provides the electrotechnical engineering guidelines for analysis of AC and DC electrical power systems in nuclear power plants (NPPs) in order to demonstrate that the power sources and the distribution systems have the capability for safe operation and shut down of the NPP, bringing it to a controlled state after an anticipated operational occurrence or accident conditions and finally reaching a safe state.
SAE/TP - 2006-01-3031 - AC-LINK CONVERTER TOPOLOGY FOR POWER-DENSE AC AND DC APPLICATIONS Organization: SAE/TP
Date: 2006-11-07
Description: Author(s): Name: Rudy Limpaecher; Affiliation: Science Applications International Corporation Name: Erik Limpaecher; Affiliation: Princeton Power Systems Meeting Details: Name: Power Systems Conference Location: New Orleans, Louisiana, USA Date: 11-07-2006 
ATIS 0600315 - VOLTAGE LEVELS FOR DC-POWERED EQUIPMENT USED IN THE TELECOMMUNICATIONS ENVIRONMENT Organization: ATIS
Date: 2007-12-01
Description: ., transients and noise) associated with the input voltage of network telecommunications equipment powered from dc power systems in the telecommunications environment.
ATIS 0600315.01 - VOLTAGE LEVELS FOR 380V DC-POWERED EQUIPMENT USED IN THE TELECOMMUNICATIONS ENVIRONMENT Organization: ATIS
Date: 2015-02-01
Description: ., transients) associated with the input voltage of network telecommunications equipment powered from DC power systems in the telecommunications environment.
DLA - SMD-5962-95705 - MICROCIRCUIT, HYBRID, LINEAR, 5 VOLT, DUAL CHANNEL, DC/DC CONVERTER, NONISOLATED Organization: DLA
Date: 1996-06-28
Description: Input voltage range .............................. −0.5 V dc to +50 V dc Power dissipation (PD) ........................... 2.5 W Output power ..................................... 1.56 W Lead temperature soldering, (10 seconds)
DLA - SMD-5962-95707 - MICROCIRCUIT, HYBRID, LINEAR, 15 VOLT, DUAL CHANNEL, DC/DC CONVERTER, NONISOLATED Organization: DLA
Date: 1996-06-28
Description: Input voltage range ............................... −0.5 V dc to +50 V dc Power dissipation (PD) ..................... 4.5 W Output power ...................................... 1.56 W Lead temperature soldering, (10 seconds)
DLA - SMD-5962-95706 - MICROCIRCUIT, HYBRID, LINEAR, 12 VOLT, DUAL CHANNEL, DC/DC CONVERTER, NONISOLATED Organization: DLA
Date: 1996-06-28
Description: Input voltage range............................. −0.5 V dc to +50 V dc Power dissipation (PD).......................... 4.2 W Output power.................................... 1.56 W Lead temperature soldering, (10 seconds)
IEEE 1124 - GUIDE FOR ANALYSIS AND DEFINITION OF DC SIDE HARMONIC PERFORMANCE OF HVDC TRANSMISSION SYSTEMS Organization: IEEE
Date: 2003-03-20
Description: One approach (Patterson and Fletcher [B18]) involves de-coupling the calculation of dc filter characteristics and harmonic current profiles on the dc transmission line (the power system analysis) from the calculation of coupling factors at harmonic frequencies between the dc transmission line and each adjacent wireline communications circuit due to harmonic currents on the dc transmission line (the communications system analysis).
DS/IEC 62930 - ELECTRIC CABLES FOR PHOTOVOLTAIC SYSTEMS WITH A VOLTAGE RATING OF 1,5 KV DC Organization: DS
Date: 2017-12-19
Description: IEC 62930:2017(E) applies to single-core cross-linked insulated power cables with cross-linked sheath. These cables are for use at the direct current (DC) side of photovoltaic systems, with a rated DC voltage up to and including 1,5 kV between conductors and between conductor and earth.
IEC 62930 - ELECTRIC CABLES FOR PHOTOVOLTAIC SYSTEMS WITH A VOLTAGE RATING OF 1,5 KV DC - EDITION 1.0 Organization: IEC
Date: 2017-12-01
Description: This document applies to single-core cross-linked insulated power cables with cross-linked sheath. These cables are for use at the direct current (DC) side of photovoltaic systems, with a rated DC voltage up to 1,5 kV between conductors and between conductor and earth.
NPFC - MIL-PRF-83421 - CAPACITOR, FIXED, METALLIZED PLASTIC FILM DIELECTRIC, (DC, AC, OR DC AND AC), HERMETICALLY SEALED IN METAL CASES OR CERAMIC CASES, ESTABLISHED RELIABILITY, GENERAL SPECIFICATION FOR Organization: NPFC
Date: 2017-05-17
Description: Styles covered by this specification may be used for applications requiring a tight capacitance tolerance, excellent capacitance stability, very high-insulation resistance, and low-loss factors where the ac component of voltage is large with respect to the applied dc voltage. These devices also must be able to operate satisfactorily in high reliability military systems under demanding conditions such as 50 Gs of high frequency vibration and 100 Gs of shock (specified pulse).
IEC 61071 - CAPACITORS FOR POWER ELECTRONICS - EDITION 2.0 Organization: IEC
Date: 2017-08-01
Description: This International Standard applies to capacitors for power electronics applications. The operating frequency of the systems in which these capacitors are used is usually up to 15 kHz, while the pulse frequencies may be up to 5 to 10 times the operating frequency.
IEC 61071 REDLINE - CAPACITORS FOR POWER ELECTRONICS - EDITION 2.0 Organization: IEC
Date: 2017-08-01
Description: This International Standard applies to capacitors for power electronics applications. The operating frequency of the systems in which these capacitors are used is usually up to 15 kHz, while the pulse frequencies may be up to 5 to 10 times the operating frequency.
ATIS T1.TRQ.5 - MAXIMUM VOLTAGE, CURRENT, AND POWER LEVELS IN NETWORK-POWERED TRANSPORT SYSTEMS Organization: ATIS
Date: 2001-03-01
Description: Purpose The purpose of this document is to provide requirements for the maximum limits for dc steadystate voltage, current, and power used to operate transport systems over telecommunications twisted-pair conductors that are consistent with industry-accepted electrical safety standards and criteria.
SAE AIR6139 - WAYS OF DEALING WITH POWER REGENERATION ONTO AN AIRCRAFT ELECTRICAL POWER SYSTEM BUS Organization: SAE
Date: 2014-01-01
Description: This AIR reviews concepts and excludes detailed discussions on power system design. These concepts relate to the More Electric Aircraft, cover both AC and DC systems and can be applied to both normal operating conditions or as fault mitigation.

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