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Title |
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - Amendment: Physical Layers and Management Parameters for 100 Gb/s Operation over DWDM (dense wavelength division multiplexing) systems [P2800/D6.0, Mar 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - Amendment: Physical Layers and Management Parameters for 100 Gb/s Operation over DWDM (dense wavelength division multiplexing) systems [P802.3ct/D3.3, Apr 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - Amendment: Physical Layers and Management Parameters for 100 Gb/s Operation over DWDM (dense wavelength division multiplexing) systems [P802.3ct/D3.4, April 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - Corrigendum 1 - Multi-Gigabit Automotive Medium Dependent Interface (MDI) Return Loss
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - YANG Data Model Definitions
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - YANG Data Model Definitions
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet - YANG Data Model Definitions
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IEEE
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Model Standard
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 14: Bidirectional 10 Gb/s, 25 Gb/s, and 50 Gb/s Optical Access PHYs [P802.3cp/D3.2, May 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 2: Physical Layers and management parameters for increased-reach point-to-multipoint Ethernet optical subscriber access (Super-PON) [P802.3cs/D3.3, Apr 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 2: Physical Layers and management parameters for increased-reach point-to-multipoint Ethernet optical subscriber access (Super-PON) [P802.3cs/D3.4, May 20, 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 6: Media Access Control (MAC) Service Interface and Management Parameters to Support Improved Precision Time Protocol (PTP) Timestamping Accuracy [P802.3cx/D3.1, Oct 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 6: Media Access Control (MAC) Service Interface and Management Parameters to Support Improved Precision Time Protocol (PTP) Timestamping Accuracy [P802.3cx/D3.2, Nov 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 6: Media Access Control (MAC) Service Interface and Management Parameters to Support Improved Precision Time Protocol (PTP) Timestamping Accuracy
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment 14: Bidirectional 10 Gb/s, 25 Gb/s, and 50 Gb/s Optical Access PHYs [IEEE P802.3cp/D3.1, Apr 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment: Maintenance #15: Power over Ethernet [P802.3cv-2021/03.1, Feb 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment: Maintenance #17: Power over Data Lines of Single Pair Ethernet [P802.3dd/D3.1, Mar 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Ethernet Amendment: Media Access Control Parameters for 800 Gb/s and Physical Layers and Management Parameters for 400 Gb/s and 800 Gb/s Operation
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Standard for Interworking Framework for Privacy-Preserving Computation
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IEEE
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Model Standard
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE/ASHRAE Draft Guide for the Ventilation and Thermal Management of Batteries for Stationary Applications [P1635/D22 /ASHRAE Guideline 21, Mar 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE/ASHRAE Draft Guide for the Ventilation and Thermal Management of Batteries for Stationary Applications [ - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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IEEE
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Model Standard
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IEEE
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Model Standard
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard - Explosive Atmospheres -- Part 30-1: Electrical resistance trace heating -- General and testing requirements
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard - Explosive Atmospheres -- Part 30-1: Electrical resistance trace heating -- General and testing requirements
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard - Explosive Atmospheres -- Part 30-1: Electrical resistance trace heating -- General and testing requirements
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz to 6 GHz -- Part 2: Specific Requirements for Finite Difference Time Domain (FDTD)
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Explosive atmospheres -- Part 30-2: Electrical resistance trace heating -- Application guide for design, installation and maintenance
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Explosive atmospheres -- Part 30-2: Electrical resistance trace heating -- Application guide for design, installation and maintenance
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Explosive atmospheres -- Part 30-2: Electrical resistance trace heating -- Application guide for design, installation and maintenance
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for High-Voltage Switchgear and Controlgear -- Part 37-013: Alternating-Current Generator Circuit-Breakers [P62271-37-013/FDIS, Jun 2021 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Nuclear Facilities - Electrical Power Systems - Part 387: Diesel Generator Units Applied as Standby Power Sources
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE/IEC Draft International Standard for Subsea Equipment - Power Connectors, Penetrators and Jumper Assemblies with Rated Voltage from 3 kV (Umax = 3.6 kV) to 30 kV (Umax = 36 kV) [P61886-1_FDIS_D3.1, Nov 2020 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft International Standard for Transformers and Inductors for use in Electronic and Telecommunication Equipment - Measuring Methods and Test Procedures
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC Draft Standard - Bushings for DC Application
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE/IEC Draft Standard - Electrical Resistance Trace Heating Systems for Industrial and Commercial Applications - Part 1: General and testing requirements
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IEEE
|
Model Standard
|
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[+] |
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IEEE
|
|
IEEE/IEC Draft Standard for Determining the Peak Spatial Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz to 6 GHz. Part 1: General Requirements for using the Finite Difference Time Domain (FDTD) Method
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IEEE
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Model Standard
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE/IEC International Standard Assessment of power density of human exposure to radio frequency fields from wireless devices in close proximity to the head and body (frequency range of 6 GHz to 300 GHz)--Part 1: Measurement procedure [P63195_CDV/V3, Feb
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IEEE
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Model Standard
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[+] |
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IEEE
|
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IEEE/IEC International Draft Standard - Measurement procedure for the assessment of power density of human exposure to radio frequency fields from wireless devices operating in close proximity to the head and body - Frequency range of 6 GHz to 300 GHz [P6
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE/IEC International Draft Standard - Measurement procedure for the assessment of power density of human exposure to radio frequency fields from wireless devices operating in close proximity to the head and body - Frequency range of 6 GHz to 300 GHz [P6
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IEEE
|
Model Standard
|
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[+] |
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IEEE
|
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IEEE/IEC International Draft Standard for Determining the Peak Spatial Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz to 6 GHz. Part 1: General Requirements for using the Finite Difference Time Domain
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Terms, Definitions, and Classification of Medical Electrical Equipment/Systems Employing Robotic Technology [P2730/D1.3, May 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Standard for Test Method for Energy Loss of Overhead Conductor [IEEE P2772/D7.1, Nov 2020 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance for All-Dielectric Self-Supporting (ADSS) Fiber Optic Cable for Use on Electric Utility Power Lines - Corrigendum 1 to IEEE Standard 1222-2019
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance for Optical Ground Wire (OPGW) for Use on Electric Utility Power Lines [P1138/D7, 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance for Optical Phase Conductor (OPPC) for Use on Electrical Utility Power Lines [P1595/D7, Dec 2021 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance of a Trusted Data Matrix System
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance of a Trusted Data Matrix System
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance of Hardware for Optical Ground Wire (OPGW)
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing and Performance of Hardware for Optical Ground Wire (OPGW)
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing Fire-Resistive, Circuit Integrity Cables and Cable Systems Using a Hydrocarbon Pool Fire Test Protocol
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Testing Fire-Resistive, Circuit Integrity Cables and Cable Systems Using a Hydrocarbon Pool Fire Test Protocol
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE Standard for Testing Specification of Blockchain Systems (Unapproved Draft)
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Deep Learning-Based Assessment of Visual Experience Based on Human Factors [P3333.1.3/D3, Nov 2021 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE Draft Standard for the Design and Performance Requirements of Bushings Applied to Liquid Immersed Distribution Transformers
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design and Performance Requirements of Bushings Applied to Liquid Immersed Distribution Transformers
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design and Performance Requirements of Bushings Applied to Liquid Immersed Distribution Transformers
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design and Performance Requirements of Bushings Applied to Liquid Immersed Distribution Transformers [PC57.19.02/D2.1, Mar 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design and Qualification of Class 1E Control Boards, Panels, and Racks Used in Nuclear Power Generating Stations
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design of Chargers Used in Stationary Battery Applications [P2405/D9.6, Jun 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design of Chargers Used in Stationary Battery Applications [P2405/D9.7, July 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Design of Chargers Used in Stationary Battery Applications [P2405/D9.8, Aug 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
|
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IEEE Draft Standard for the Electrical Protection of Communication Facilities Serving Electric Supply Locations Through the Use of Hybrid Facilities - Amendment 1 [IEEE P487.3a/D5, May 2022 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Electrical Protection of Communication Facilities Serving Electric Supply Locations Through the Use of Hybrid Facilities Amendment 1: Inclusion of a New Copper to Fiber Junction (CFJ) Powering Option [P487.3a/D3, Apr 2021 - UNA
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for the Electrical Protection of Communication Facilities Serving Electric Supply Locations through the Use of Optical Fiber Systems
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Standard for Policy Language for Dynamic Spectrum Access Systems [P1900.5.1/D3.00, Jul 2020 - UNAPPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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IEEE Approved Draft Standard Practices and Requirements for Semiconductor Power Rectifier Transformers [PC57.18.10/D14, Sept 2021 - APPROVED DRAFT]
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IEEE
|
Model Standard
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[+] |
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IEEE
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|
IEEE Draft Standard Profile for Communications with Distributed Energy Resources (DERs) using IEEE Std 1815 [Distributed Network Protocol (DNP3)]
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IEEE
|
Model Standard
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[+] |
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|
IEEE
|
|
IEEE Draft Standard Profile for Use of IEEE 1588 Precision Time Protocol in Power System Applications Amendment 1: Adding a Type-Length-Value (TLV) to indicate the latest International Earth Rotation Service (IERS)-specified Universal Time Coordinated (UT
|
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IEEE
|
Model Standard
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[+] |
|
|
|
IEEE
|
|
IEEE Draft Standard Profile for Use of IEEE 1588 Precision Time Protocol in Power System Applications Amendment 1: Adding a Type-Length-Value (TLV) to indicate the latest International Earth Rotation Service (IERS)-specified Universal Time Coordinated (UT
|
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IEEE
|
Model Standard
|
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[+] |
|
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|
IEEE
|
|
IEEE Draft Standard Profile for Use of IEEE 1588 Precision Time Protocol in Power System Applications Amendment 1: Adding a Type-Length-Value (TLV) to indicate the latest International Earth Rotation Service (IERS)-specified Universal Time Coordinated (UT
|
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IEEE
|
Model Standard
|
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[+] |
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|
IEEE
|
|
IEEE Draft Standard Profile for Use of IEEE 1588 Precision Time Protocol in Power System Applications Amendment 1: Adding a Type-Length-Value (TLV) to indicate the latest International Earth Rotation Service (IERS)-specified Universal Time Coordinated (UT
|
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IEEE
|
Model Standard
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[+] |
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IEEE
|
|
IEEE Draft Standard Requirements for AC High-Voltage Air Switches Rated Above 1,000 V [PC37.30.1/D6, Aug 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for AC High-Voltage Air Switches Rated Above 1,000 V [PC37.30.1/D5, Mar 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Capacitor Switches for AC Systems (1 kV to 38 kV) [PC37.66/D9, Oct 2020 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Direct Current Instrument Shunts
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard for Electrical Control for AC High-Voltage (>1000 V) Circuit Breakers [PC37.11/D2.0, Aug 2022 - UNAPPROVED DRAFT]
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IEEE
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Model Standard
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Overhead, Pad-Mounted, Dry-Vault, and Submersible Automatic Line Sectionalizers for Alternating Current Systems Up to and Including 38 kV
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Overhead, Pad-Mounted, Dry-Vault, and Submersible Automatic Line Sectionalizers for Alternating Current Systems Up to and Including 38 kV
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Overhead, Pad-Mounted, Dry-Vault, and Submersible Automatic Line Sectionalizers for Alternating Current Systems Up to and Including 38 kV
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Overhead, Pad-Mounted, Dry-Vault, and Submersible Automatic Line Sectionalizers for Alternating Current Systems Up to and Including 38 kV
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Pad-Mounted, Compartmental-Type, Self-Cooled, Three-Phase Distribution Transformers, 10 MVA and Smaller; High-Voltage, 34.5 kV Nominal System Voltage and Below; Low-Voltage, 15 kV Nominal System Voltage and Below [PC57
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Pad-Mounted, Compartmental-Type, Self-Cooled, Three-Phase Distribution Transformers, 10 MVA and Smaller; High-Voltage, 34.5 kV Nominal System Voltage and Below; Low-Voltage, 15 kV Nominal System Voltage and Below [PC57
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IEEE
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Model Standard
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[+] |
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IEEE
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IEEE Draft Standard Requirements for Reliability Analysis in the Design and Operation of Safety Systems for Nuclear Power Generating Stations and Other Nuclear Facilities [P577/D6, Mar 2021 - UNAPPROVED DRAFT]
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