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Testing of thyristor valves for high-voltage direct current (HVDC) transmission - Part 1 : electrical testing.
This standard defines standard specifications of dc interface parameters, switching parameters, and test loading for definition of the SSTV16859 13-bit to 26-bit SSTL_2 registered buffer for stacked DDR DIMM applications.
Definition of the SSTV16859 2.5 V 13-Bit to 26-Bit SSTL_2 Registered Buffer for Stacked DDR DIMM Applications
Symbols are listed in the following order: Roman letters, Greek letters, numerals, and mathematical symbols. Subscripting and punctuation marks are ignored for the purposes of alphabetizing. Uppercase letters precede lowercase letters for symbols that are otherwise identical.
Reference Guide to Letter Symbols for Semiconductor Devices
Thyristor valves for high voltage direct current (HVDC) power transmission - Part 1: Electrical testing
Applies to thyristor valves with metal oxide surge arresters directly connected between the valve terminals, for use in a line commuted commutated converter for high voltage d.c. power transmission or as part of a back-to-back link. Retricted to electric
Thyristor valves for high voltage direct current (HVDC) power transmission - Part 1: Electrical testing
This is Amendment 1 to IEC 60700-1-1998 (Thyristor valves for high voltage direct current (HVDC) power transmission -Part 1: Electrical testing)
Thyristor valves for high voltage direct current (HVDC) power transmission - Part 1: Electrical testing; Amendment 1
This standard is Power electronics for electrical transmission and distribution systems - Testing of thyristor valves for static VAR compensators; Amendment 1.
Power electronics for electrical transmission and distribution systems - Testing of thyristor valves for static VAR compensators; Amendment 1
RELIABILITY ASSURED BI-DIRECTIONAL TRIODE THYRISTORS (HIGH AND MEDIUM CURRENT)
RELIABILITY ASSURED REVERSE BLOCKING TRIODE THYRISTORS (HIGH AND MEDIUM CURRENT)
RELIABILITY ASSURED REVERSE BLOCKING TRIODE THYRISTORS (LOW CURRENT)
RELIABILITY ASSURED BI-DIRECTIONAL TRIODE THYRISTORS (LOW CURRENT)
This method specifies procedures to determine the temperature of a component or its solder joint over time as it is exposed to temperature gradients due to testing or processing. It defines appropriate thermometry sensors, tools, and attachment methods for temperature measurement of semiconductor packages in the applications mentioned in the Foreword..
Beaded Thermocouple Temperature Measurement of Semiconductor Packages
Thyristor valves for high voltage direct current (HVDC) power transmission - Part 1 : electrical testing.
Semiconductor devices discrete devices part 6:thyristors section 2:blank detail specification for bidirectional triode thyristors(triacs),ambient or case-rated,up to 100 a
Semiconductor devices discrete devices part 6:thyristors section 1:blank detail specification for reverse blocking triode thyristors,ambient and case-rated,up to 100 a
To be read in conjunction with IEC 60747-1
Discrete semiconductor devices and integrated circuits - Thyristors
To be read in conjunction with IEC 60747-1
Discrete semiconductor devices and integrated circuits - Thyristors
This part of IEC 60747 provides standards for the following categories of discrete semiconductor devices: - (reverse-blocking) (triode) thyristors, - asymmetrical (reverse-blocking) (triode) thyristors, - reverse-conducting (triode) thyristors, - bidirectional triode thyristors (triacs), - gate turn-off thyristors (GTO thyristors). It does not apply to thyristor surge suppressors nor to diacs.
Semiconductor devices - Part 6: Thyristors
This is Technical Corrigendum 1 to IEC 61954-1999 (Power electronics for electrical transmission and distribution systems - Testing of thyristor valves for static VAR compensators )
Power electronics for electrical transmission and distribution systems - Testing of thyristor valves for static VAR compensators
This International Standard defines type, production and optional tests on thyristor valves used in thyristor controlled reactors (TCR), thyristor switched reactors (TSR) and thyristor switched capacitors (TSC) forming part of static VAR compensators (SVC) for power system applications. The requirements of the standard apply both to single valve units (one phase) and to multiple valve units (several phases). Clauses 4 to 7 detail the type tests, i.e. tests which are carried out to verify that the valve design meets the requirements specified. Clause 8 covers the production tests, i.e. tests which are carried out to verify proper manufacturing. Clauses 9 and 10 detail optional tests, i.e. tests additional to the type and production tests.
Power electronics for electrical transmission and distribution systems - Testing of thyristor valves for static VAR compensators
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