Information technology — Telecommunications and information exchange between systems — Local and metropolitan area networks — Specific requirements — Part 3: Standard for Ethernet — Amendment 8: Physical layer and management parameters for power over data lines (PoDL) of single balanced twisted-pair ethernet

Technologies de l'information — Télécommunications et échange d'information entre systèmes — Réseaux locaux et métropolitains — Prescriptions spécifiques — Partie 3: Norme pour Ethernet — Amendement 8: Titre manque

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INTERNATIONAL
ISO/IEC/IEEE
STANDARD
8802-3
Second edition
2017-03-01
AMENDMENT 8
2018-10
Information technology —
Telecommunications and information
exchange between systems — Local
and metropolitan area networks —
Specific requirements —
Part 3:
Standard for Ethernet
AMENDMENT 8: Physical layer and
management parameters for power over
data lines (PoDL) of single balanced
twisted-pair ethernet
Technologies de l'information — Télécommunications et échange
d'information entre systèmes — Réseaux locaux et métropolitains —
Prescriptions spécifiques —
Partie 3: Norme pour Ethernet
AMENDEMENT 8: Titre manque
Reference number
ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
©
 IEEE 2017

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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)

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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
Foreword
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ISO/IEC/IEEE 8802‐3:2017/Amd.8 was prepared by the LAN/MAN of the IEEE Computer Society (as
IEEE Std 802.3bu‐2016) and drafted in accordance with its editorial rules. It was adopted, under the “fast-
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iii

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IEEE Std 802.3bu™-2016
(Amendment to
IEEE Std 802.3™-2015
as amended by
IEEE Std 802.3bw™-2015,
IEEE Std 802.3by™-2016,
IEEE Std 802.3bq™-2016,
IEEE Std 802.3bp™-2016,
IEEE Std 802.3br™-2016,
IEEE Std 802.3bn™-2016,
and IEEE Std 802.3bz™-2016)
IEEE Standard for Ethernet
Amendment 8: Physical Layer and Management
Parameters for Power over Data Lines (PoDL) of
Single Balanced Twisted-Pair Ethernet
LAN/MAN Standards Committee
of the
IEEE Computer Society
Approved 7 December 2016
IEEE-SA Standards Board

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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
Abstract: Specifications and management parameters for the provision of power via a single
twisted pair to connected Data Terminal Equipment (DTE) with IEEE 802.3 single balanced twisted-
pair interfaces are added by this amendment to IEEE Std 802.3-2015.
Keywords: 100BASE-T1, 1000BASE-T1, Ethernet, IEEE 802.3™, IEEE 802.3bu™, Power over
Data Lines, PoDL, PoDL PD, PoDL PSE
Acknowledgments: Portions of the material contained herein are reprinted with permission from
Maxim Integrated Products, Inc., DS18B20 “Programmable Resolution 1-Wire Digital
Thermometer” Data Sheet, Rev. 042208, (C) 2008.
The Institute of Electrical and Electronics Engineers, Inc.
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Copyright © 2017 by The Institute of Electrical and Electronics Engineers, Inc.
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Print: ISBN 978-1-5044-3727-1 STD22416
PDF: ISBN 978-1-5044-3728-8 STDPD22416
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
Participants
The following individuals were officers and members of the IEEE 802.3 Working Group at the beginning of
the IEEE P802.3bu Working Group ballot. Individuals may have not voted, voted for approval, disapproval,
or abstained on this amendment.
David J. Law, IEEE 802.3 Working Group Chair
Adam Healey, IEEE 802.3 Working Group Vice-Chair
Pete Anslow, IEEE 802.3 Working Group Secretary
Steven B. Carlson, IEEE 802.3 Working Group Executive Secretary
Valerie Maguire, IEEE 802.3 Working Group Treasurer
Dave Dwelley, IEEE P802.3bu Power over Data Lines Task Force Chair, Phase 1
Dan Dove, IEEE P802.3bu Power over Data Lines Task Force Chair, Phase 2
Andy Gardner, IEEE P802.3bu Power over Data Lines Task Force Editor-in-Chief
Craig Chabot, IEEE P802.3bu Power over Data Lines Task Force PICS Editor
Curtis Donahue
David Abramson Scott Kipp
Shadi Abughazaleh Mike Dudek Michael Klempa
Dale Amason Nick Duer Shigeru Kobayashi
J. Michael Andrewartha Frank Effenberger Keisuke Kojima
Paul Kolesar
Eric Baden Hesham Elbakoury
Tom Kolze
Amrik Bains David Estes
Glen Kramer
Thananya Baldwin John Ewen
Hans Lackner
Denis Beaudoin Ramin Farjad
Jeffrey Lapak
Shahar Feldman
Christian Beia
Mark Laubach
Michael Bennett German Feyh
David Lewis
Vipul Bhatt Alan Flatman
Jon Lewis
William Bliss Matthias Fritsche
William Lo
Brad Booth Richard Frosch
Miklos Lukacs
Martin Bouda Ali Ghiasi
Kent Lusted
Ralf-Peter Braun Joel Goergen
Jeffery Maki
Theodore Brillhart Steven Gorshe
David Malicoat
Paul Brooks James Graba
James Malkemus
Matthew Brown Robert Grow
Yonatan Malkiman
Jairo Bustos Heredia Mark Gustlin
Arthur Marris
Adrian Butter Marek Hajduczenia
Takeo Masuda
Juan-Carlos Calderon Bernie Hammond
Kirsten Matheus
J. Martin Carroll Takehiro Hayashi
Erdem Matoglu
Clark Carty Yasuo Hidaka
Laurence Matola
Geoffrey Chacon Simon Brian Holden
Brett McClellan
Mandeep Chadha Rita Horner
Thomas McDermott
David Chalupsky Bernd Horrmeyer
John McDonough
Jacky Chang Victor Hou
Richard Mei
Xin Chang Yasuhiro Hyakutake
Richard Mellitz
Ahmad Chini Hideki Isono
Bryan Moffitt
Keng Hua Chuang Tom Issenhuth
Ardeshir Mohammadian
Peter Cibula Kenneth Jackson
Leo Montreuil
Christopher R. Cole
Andrew Jimenez
Paul Mooney
Shaoan Dai
Chad Jones
Dale Murray
John D’Ambrosia Peter Jones
Henry Muyshondt
Yair Darshan Manabu Kagami
Edward Nakamoto
Piers Dawe Upen Kareti
Gary Nicholl
Wael Diab Keisuke Kawahara
Paul Nikolich
Eric DiBiaso Yasuaki Kawatsu
Kevin Noll
Daniel Dillow Michael Kelsen
Mark Nowell
Chris Diminico
Yong Kim
David Ofelt
Thuyen Dinh
Jonathan King
Tom Palkert
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
Hui Pan Naoshi Serizawa Albert Tretter
Sesha Panguluri Megha Shanbhag Stephen Trowbridge
Carlos Pardo Stephen Shellhammer Yoshihiro Tsukamoto
Petar Pepeljugoski Ramin Shirani Mike Tu
Gerald Pepper Tom Skaar Sterling A. Vaden
Ruben Perez-Aranda Jeff Slavick Stefano Valle
Michael Peters Scott Sommers Paul Vanderlaan
Rick Pimpinella Tom Souvignier Robert Wagner
William Powell Edward Sprague Roy Wang
Richard Prodan Peter Stassar Xinyuan Wang
Rick Rabinovich Robert Stone Matthias Wendt
Adee Ran Junqing Sun Oded Wertheim
Alon Regev Steve Swanson Martin White
Duane Remein Andre Szczepanek Natalie Wienckowski
Victor Renteria William Szeto Ludwig Winkel
Martin Rossbach Bharat Tailor Peter Wu
Christopher Roth Akio Tajima Yu Xu
Salvatore Rotolo Takayuki Tajima Jun Yi
Satoshi Takahashi Lennart Yseboodt
Vineet Salunke
Sam Sambasivan Kohichi Tamura Ting-Fa Yu
Edward Sayre Alexander Tan Hayato Yuki
Dieter Schicketanz Mehmet Tazebay Andrew Zambell
Fred Schindler Brian Teipen Yan Zhuang
Peter Scruton Geoffrey Thompson George Zimmerman
Hossein Sedarat Pirooz Tooyserkani Helge Zinner
The following members of the individual balloting committee voted on this standard. Balloters may have
voted for approval, disapproval, or abstention.
David Abramson Craig Gunther Satoshi Obara
Shadi Abughazaleh Marco Hernandez
Bansi Patel
Guido Hiertz
Iwan Adhicandra
Arumugam Paventhan
Werner Hoelzl
Thomas Alexander
Ruben Perez-Aranda
Dale Amason Rita Horner
Michael Peters
Pete Anslow Noriyuki Ikeuchi
Rick Pimpinella
Stefan Aust Osamu Ishida
Alon Regev
Amrik Bains Atsushi Ito
Maximilian Riegel
Charles Barest Raj Jain
Robert Robinson
Christian Boiger Piotr Karocki
Benjamin Rolfe
Ralf-Peter Braun Stuart Kerry
Nancy Bravin Yongbum Kim Dan Romascanu
Jairo Bustos Heredia Bruce Kraemer
Frank Schewe
David J. Law
William Byrd
Dieter Schicketanz
Jon Lewis
Steven B. Carlson
Stefan Schneele
Juan Carreon Arthur H. Light
Thomas Starai
Mandeep Chadha William Lumpkins
David Stover
Keith Chow Elvis Maculuba
Walter Struppler
Keng Hua Chuang Jeffery Maki
Mitsutoshi Sugawara
Charles Cook Arthur Marris
Junqing Sun
Rodney Cummings Michael Maytum
Geoffrey Thompson
Daniel Dove Edward McCall
Sourav Dutta Mick McCarthy Mark-Rene Uchida
Richard Edgar Brett McClellan
Sterling Vaden
Thomas Mcdermott
German Feyh
Paul Vanderlaan
Norman Finn Richard Mellitz
George Vlantis
Matthias Fritsche Tremont Miao
Stephen Webb
Yukihiro Fujimoto Jeffrey Moore
Ludwig Winkel
Andy Gardner Charles Moorwood
Dayin Xu
Devon Gayle Rick Murphy
Oren Yuen
James Gilb Michael Newman
Zhen Zhou
Joel Goergen Nick S. A. Nikjoo
Randall Groves Paul Nikolich George Zimmerman
7
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
When the IEEE-SA Standards Board approved this standard on 7 December 2016, it had the following
membership:
Jean-Philippe Faure, Chair
Ted Burse, Vice Chair
John D. Kulick, Past Chair
Konstantinos Karachalios, Secretary
Chuck Adams Ronald W. Hotchkiss Mehmet Ulema
Masayuki Ariyoshi Michael Janezic Yingli Wen
Stephen Dukes Joseph L. Koepfinger* Howard Wolfman
Don Wright
Jianbin Fan Hung Ling
Kevin Lu Yu Yuan
J. Travis Griffith
Annette D. Reilly Daidi Zhong
Gary Hoffman
Gary Robinson
*Member Emeritus
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
Introduction
This introduction is not part of IEEE Std 802.3bu-2016, IEEE Standard for Ethernet—Amendment 8: Physical Layer
and Management Parameters for Power over Data Lines (PoDL) of Single Balanced Twisted-Pair Ethernet.
IEEE Std 802.3™ was first published in 1985. Since the initial publication, many projects have added func-
tionality or provided maintenance updates to the specifications and text included in the standard. Each IEEE
802.3 project/amendment is identified with a suffix (e.g., IEEE Std 802.3ba™-2010).
The half duplex Media Access Control (MAC) protocol specified in IEEE Std 802.3-1985 is Carrier Sense
Multiple Access with Collision Detection (CSMA/CD). This MAC protocol was key to the experimental
Ethernet developed at Xerox Palo Alto Research Center, which had a 2.94 Mb/s data rate. Ethernet at
10 Mb/s was jointly released as a public specification by Digital Equipment Corporation (DEC), Intel and
Xerox in 1980. Ethernet at 10 Mb/s was approved as an IEEE standard by the IEEE Standards Board in 1983
and subsequently published in 1985 as IEEE Std 802.3-1985. Since 1985, new media options, new speeds of
operation, and new capabilities have been added to IEEE Std 802.3. A full duplex MAC protocol was added
in 1997.
Some of the major additions to IEEE Std 802.3 are identified in the marketplace with their project number.
This is most common for projects adding higher speeds of operation or new protocols. For example, IEEE
Std 802.3u™ added 100 Mb/s operation (also called Fast Ethernet), IEEE Std 802.3z added 1000 Mb/s oper-
ation (also called Gigabit Ethernet), IEEE Std 802.3ae added 10 Gb/s operation (also called 10 Gigabit
Ethernet), IEEE Std 802.3ah™ specified access network Ethernet (also called Ethernet in the First Mile) and
IEEE Std 802.3ba added 40 Gb/s operation (also called 40 Gigabit Ethernet) and 100 Gb/s operation (also
called 100 Gigabit Ethernet). These major additions are all now included in and are superseded by
IEEE Std 802.3-2015 and are not maintained as separate documents.
At the date of IEEEStd802.3bu-2016 publication, IEEEStd802.3 is composed of the following
documents:
IEEE Std 802.3-2015
Section One—Includes Clause 1 through Clause 20 and Annex A through Annex H and Annex 4A.
Section One includes the specifications for 10 Mb/s operation and the MAC, frame formats and service
interfaces used for all speeds of operation.
Section Two—Includes Clause 21 through Clause 33 and Annex 22A through Annex 33E. Section
Two includes management attributes for multiple protocols and speed of operation as well as specifica-
tions for providing power over twisted pair cabling for multiple operational speeds. It also includes
general information on 100 Mb/s operation as well as most of the 100 Mb/s Physical Layer specifica-
tions.
Section Three—Includes Clause 34 through Clause 43 and Annex 36A through Annex 43C. Section
Three includes general information on 1000 Mb/s operation as well as most of the 1000 Mb/s Physical
Layer specifications.
Section Four—Includes Clause 44 through Clause 55 and Annex 44A through Annex 55B. Section
Four includes general information on 10 Gb/s operation as well as most of the 10 Gb/s Physical Layer
specifications.
Section Five—Includes Clause 56 through Clause 77 and Annex 57A through Annex 76A. Clause 56
through Clause 67 and Clause 75 through Clause 77, as well as associated annexes, specify subscriber
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ISO/IEC/IEEE 8802-3:2017/Amd.8:2018(E)
access and other Physical Layers and sublayers for operation from 512 kb/s to 10 Gb/s, and defines ser-
vices and protocol elements that enable the exchange of IEEE Std 802.3 format frames between sta-
tions in a subscriber access network. Clause 68 specifies a 10 Gb/s Physical Layer specification.
Clause 69 through Clause 74 and associated annexes specify Ethernet operation over electrical back-
planes at speeds of 1000 Mb/s and 10 Gb/s.
Section Six—Includes Clause 78 through Clause 95 and Annex 83A through Annex 93C. Clause 78
specifies Energy-Efficient Ethernet. Clause 79 specifies IEEE 802.3 Organizationally Specific Link
Layer Discovery Protocol (LLDP) type, length, and value (TLV) information elements. Clause 80
through Clause 95 and associated annexes includes general information on 40 Gb/s and 100 Gb/s oper-
ation as well the 40 Gb/s and 100 Gb/s Physical Layer specifications. Clause 90 specifies Ethernet sup-
port for time synchronization protocols.
IEEE Std 802.3bw-2015
Amendment 1—This amendment includes changes to IEEE Std 802.3-2015 and adds Clause 96. This
amendment adds 100 Mb/s Physical Layer (PHY) specifications and management parameters for oper-
ation on a single balanced twisted-pair copper cable.
IEEE Std 802.3by-2016
Amendment 2—This amendment includes changes to IEEE Std 802.3-2015 and adds Clause 105
through Clause 112, Annex 109A, Annex 109B, Annex 110A, Annex 110B, and Annex 110C. This
amendment adds MAC parameters, Physical Layers, and management parameters for the transfer of
IEEE 802.3 format frames at 25 Gb/s.
IEEE Std 802.3bq-2016
Amendment 3—This amendment includes changes to IEEE Std 802.3-2015 and adds Clause 113 and
Annex 113A. This amendment adds new Physical Layers for 25 Gb/s and 40 Gb/s operation over bal-
anced twisted-pair structured cabling systems.
IEEE Std 802.3bp-2016
Amendment 4—This amendment includes changes to IEEE Std 802.3-2015 and adds Clause 97 and
Clause 98. This amendment adds point-to-point 1 Gb/s Physical Layer (PHY) specifications and man-
agement parameters for operation on a single balanced twisted-pair copper cable in automotive and
other applications not utilizin
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