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IEEE 802.3bw-2015

$54.17

IEEE Standard for Ethernet Amendment 1: Physical Layer Specifications and Management Parameters for 100 Mb/s Operation over a Single Balanced Twisted Pair Cable (100BASE-T1)

Published By Publication Date Number of Pages
IEEE 2015 88
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Amendment Standard – Superseded. The 100BASE-T1 Physical Layer (PHY) specifications and management parameters for point-to-point full duplex 100 Mb/s operation over single twisted pair balanced cabling is defined in this amendment. This specification provides fully functional and electrical specifications for the type 100BASE-T1 PHY. This specification also specifies the baseband medium used with 100BASE-T1.

PDF Catalog

PDF Pages PDF Title
1 IEEE Std 802.3bwā„¢-2015 Front cover
2 Title page
4 Important Notices and Disclaimers Concerning IEEE Standards Documents
7 Participants
11 Introduction
13 Contents
17 IMPORTANT NOTICE
18 1. Introduction
1.3 Normative references
19 1.4 Definitions
21 1.5 Abbreviations
22 30. Management
30.3 Layer management for DTEs
30.3.2 PHY devicePHY device managed object class
30.3.2.1 PHY device attributes
30.3.2.1.2 aPhyType
30.3.2.1.3 aPhyTypeList
30.5 Layer management for medium attachment units (MAUs)
30.5.1 MAU managed object class
30.5.1.1 MAU attributes
30.5.1.1.2 aMAUType
30.5.1.1.4 aMediaAvailable
23 45. Management Data Input/Output (MDIO) Interface
45.2 MDIO Interface Registers
45.2.1 PMA/PMD registers
45.2.1.6 PMA/PMD control 2 register (Register 1.7)
24 45.2.1.7.4 Transmit fault (1.8.11)
45.2.1.7.5 Receive fault (1.8.10)
45.2.1.10 PMA/PMD extended ability register (Register 1.11)
45.2.1.10.a BASE-T1 extended abilities (1.11.11)
25 45.2.1.14a BASE-T1 PMA/PMD extended ability register (1.18)
45.2.1.131 BASE-T1 PMA/PMD control register (Register 1.2100)
45.2.1.131.1 BASE-T1 MASTER-SLAVE manual config enable (1.2100.15)
26 45.2.1.131.2 BASE-T1 MASTER-SLAVE config value (1.2100.14)
45.2.1.131.3 BASE-T1 type selection (1.2100.3:0)
45.2.1.132 100BASE-T1 PMA/PMD test control register (Register 1.2102)
45.2.1.132.1 100BASE-T1 test mode control (1.2102.15:13)
45.2.3 PCS registers
45.2.3.1 PCS control 1 register (Register 3.0)
45.2.3.1.2 Loopback (3.0.14)
27 45.5 Protocol implementation conformance statement (PICS) proforma for Clause 45, MDIO interface
45.5.3 PICS proforma tables for the Management Data Input Output (MDIO) interface
45.5.3.2 PMA/PMD MMD options
45.5.3.3 PMA/PMD management functions
45.5.3.7 PCS management functions
28 96. Physical Coding Sublayer (PCS), Physical Medium Attachment (PMA) sublayer and baseband medium, type 100BASE-T1
96.1 Overview
29 96.1.1 100BASE-T1 architecture
30 96.1.1.1 Physical Coding Sublayer (PCS)
96.1.1.2 Physical Medium Attachment (PMA) sublayer
96.1.1.3 Signaling
96.1.2 Conventions in this clause
96.1.2.1 State Diagram Notation
96.1.2.2 State Diagram Timer specifications
96.1.2.3 Service specifications
96.2 100BASE-T1 service primitives and interfaces
31 96.2.1 PMA service interface
33 96.2.2 PMA_LINK.indication
96.2.2.1 Semantics of the primitive
96.2.2.2 When generated
96.2.2.3 Effect of receipt
96.2.3 PMA_TXMODE.indication
96.2.3.1 Semantics of the primitive
96.2.3.2 When generated
96.2.3.3 Effect of receipt
34 96.2.4 PMA_UNITDATA.request
96.2.4.1 Semantics of the primitive
96.2.4.2 When generated
96.2.4.3 Effect of receipt
96.2.5 PMA_UNITDATA.indication
96.2.5.1 Semantics of the primitive
96.2.5.2 When generated
35 96.2.5.3 Effect of receipt
96.2.6 PMA_SCRSTATUS.request
96.2.6.1 Semantics of the primitive
96.2.6.2 When generated
96.2.6.3 Effect of receipt
96.2.7 PMA_RXSTATUS.indication
96.2.7.1 Semantics of the primitive
96.2.7.2 When generated
96.2.7.3 Effect of receipt
36 96.2.8 PMA_REMRXSTATUS.request
96.2.8.1 Semantics of the primitive
96.2.8.2 When generated
96.2.8.3 Effect of receipt
96.2.9 PMA_RESET.indication
96.2.9.1 When generated
96.2.9.2 Effect of receipt
96.2.10 PMA_TXEN.request
96.2.10.1 Semantic of the primitive
37 96.2.10.2 When generated
96.2.10.3 Effect of receipt
96.3 100BASE-T1 Physical Coding Sublayer (PCS) functions
38 96.3.1 PCS Reset function
39 96.3.2 PCS data transmission enabling
96.3.2.1 Variables
40 96.3.3 PCS Transmit
96.3.3.1 4B/3B conversion
96.3.3.1.1 Control signals in 4B/3B conversion
96.3.3.1.2 4B/3B conversion for MII data
42 96.3.3.2 PCS Transmit state diagram
43 96.3.3.2.1 Variables
44 96.3.3.2.2 Functions
96.3.3.2.3 Timers
46 96.3.3.2.4 Messages
96.3.3.3 PCS transmit symbol generation
96.3.3.3.1 Side-stream scrambler polynomial
96.3.3.3.2 Generation of Syn[2:0]
47 96.3.3.3.3 Generation of Scn[2:0]
96.3.3.3.4 Generation of scrambled bits Sdn[2:0]
96.3.3.3.5 Generation of ternary pair (TAn, TBn)
96.3.3.3.6 Generation of (TAn, TBn) when tx_mode = SEND_I
96.3.3.3.7 Generation of (TAn, TBn) when tx_mode = SEND_N, tx_enable = 1
96.3.3.3.8 Generation of (TAn, TBn) for idle sequence when tx_mode=SEND_N
48 96.3.3.3.9 Generation of (TAn, TBn) when tx_mode=SEND_Z
49 96.3.3.3.10 Generation of symbol sequence
96.3.4 PCS Receive
96.3.4.1 PCS Receive overview
52 96.3.4.1.1 Variables
53 96.3.4.1.2 Functions
96.3.4.1.3 Timer
54 96.3.4.2 PCS Receive symbol decoding
96.3.4.3 PCS Receive descrambler polynomial
96.3.4.4 PCS Receive automatic polarity detection (Optional)
55 96.3.4.5 PCS Receive MII signal 3B/4B conversion
96.3.5 PCS Loopback
56 96.4 Physical Medium Attachment (PMA) Sublayer
96.4.1 PMA Reset function
57 96.4.2 PMA Transmit function
58 96.4.3 PMA Receive function
59 96.4.4 PHY Control function
96.4.5 Link Monitor function
96.4.6 PMA clock recovery
96.4.7 State variables
96.4.7.1 State diagram variables
62 96.4.7.2 Timers
96.5 PMA electrical specifications
96.5.1 EMC tests
96.5.1.1 Immunityā€”DPI test
63 96.5.1.2 Emissionā€”Conducted emission test
96.5.2 Test modes
64 96.5.3 Test fixtures
65 96.5.4 Transmitter electrical specifications
66 96.5.4.1 Transmitter output droop
96.5.4.2 Transmitter distortion
68 96.5.4.3 Transmitter timing jitter
96.5.4.4 Transmitter power spectral density (PSD)
69 96.5.4.5 Transmit clock frequency
70 96.5.5 Receiver electrical specifications
96.5.5.1 Receiver differential input signals
96.5.5.2 Receiver frequency tolerance
96.5.5.3 Alien crosstalk noise rejection
96.5.6 Transmitter peak differential output
71 96.5.7 PMA Local Loopback
96.6 Management interface
96.6.1 MASTER-SLAVE configuration
96.6.2 PHY-initialization
72 96.6.3 PMA and PCS MDIO function mapping
96.7 Link segment characteristics
96.7.1 Cabling system characteristics
73 96.7.1.1 Characteristic impedance
96.7.1.2 Insertion loss
96.7.1.3 Return loss
96.7.1.4 Mode conversion loss
74 96.7.1.5 Power sum alien near-end crosstalk (PSANEXT)
96.7.1.6 Power sum alien attenuation to crosstalk ratio far-end (PSAACRF)
75 96.7.2 Noise environment
96.8 MDI specification
96.8.1 MDI connectors
96.8.2 MDI electrical specification
96.8.2.1 MDI return loss
96.8.2.2 MDI mode conversion loss
76 96.8.3 MDI fault tolerance
96.9 Environmental specifications
96.9.1 General safety
77 96.9.2 Network safety
96.9.2.1 Environmental safety
96.9.2.2 Electromagnetic compatibility
96.10 Delay constraints
78 96.11 Protocol implementation conformance statement (PICS) proforma for Clause 96, Physical Coding Sublayer (PCS), Physical Medium Attachment (PMA) sublayer and baseband medium, type 100BASE-T1
96.11.1 Introduction
96.11.2 Identification
96.11.2.1 Implementation identification
96.11.2.2 Protocol summary
79 96.11.3 Major capabilities/options
96.11.4 PICS proforma tables for Physical Coding Sublayer (PCS), Physical Medium Attachment (PMA) sublayer and baseband medium, type 100BASE-T1
96.11.4.1 Physical Coding Sublayer (PCS)
80 96.11.4.2 PCS Receive functions
81 96.11.4.3 PCS Loopback
96.11.4.4 Physical Medium Attachment (PMA)
82 96.11.4.5 PMA electrical specifications
84 96.11.4.6 Management interface
85 96.11.4.7 Characteristics of the Link Segment
96.11.4.8 MDI Requirements
87 96.11.4.9 Environmental specifications
96.11.4.10 Delay constraints
88 Back cover
IEEE 802.3bw-2015
$54.17