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IEEE 802.3ap-2007

$144.63

IEEE Standard for Information technology– Local and metropolitan area networks– Specific requirements– Part 3: CSMA/CD Access Method and Physical Layer Specifications – Amendment: Ethernet Operation Over Electrical Backplanes

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IEEE 2007 203
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Amendment Standard – Superseded. This amendment to IEEE Std 802.3-2005 includes the new Clause 69 through Clause 74. Clause 69 provides an overview of Ethernet operation over electrical backplanes. Clause 70 through Clause 72 define three new PMDs developed for operation over electrical backplanes. 1000BASE-KX specifies 1 Gb/s serial operation, 10GBASE-KX4 specifies 10 Gb/s 4-lane operation, and 10GBASE-KR specifies 10 Gb/s serial operation. Clause 73 specifies an Auto-Negotiation function for use over electrical backplanes. Finally, Clause 74 specifies an optional forward error correction (FEC) sublayer for 10GBASE-R PHYs for improved link performance.

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PDF Pages PDF Title
1 IEEE Amendment to CSMA/CD–Amendment 4: Ethernet Operation over Electrical Backplanes
3 Title page
6 Introduction
7 Notice to users
8 Participants
12 List of special symbols
13 CONTENTS
20 1. Introduction
1.4 Definitions
1.5 Abbreviations
21 30. Management
30.2.5 Capabilities
30.3.2.1.3 aPhyTypeList
30.5.1.1.2 aMAUType
22 30.5.1.1.13 aFECAbility
30.5.1.1.14 aFECmode
30.5.1.1.15 aFECCorrectedBlocks
23 30.5.1.1.16 aFECUncorrectableBlocks
30.6.1.1.3 aAutoNegRemoteSignaling
30.6.1.1.4 aAutoNegAutoConfig
30.6.1.1.5 aAutoNegLocalTechnologyAbility
24 30.6.1.1.6 aAutoNegAdvertisedTechnologyAbility
30.6.1.1.7 aAutoNegReceivedTechnologyAbility
30.6.1.1.8 aAutoNegLocalSelectorAbility
30.6.1.1.9 aAutoNegAdvertisedSelectorAbility
30.6.1.1.10 aAutoNegReceivedSelectorAbility
25 36. Physical Coding Sublayer (PCS) and Physical Medium Attachment (PMA) sublayer, type 1000BASE-X
36.2.5.2.7 Auto-Negotiation process
36.7 Protocol implementation conformance statement (PICS) proforma for Clause 36, Physical Coding Sublayer (PCS) and Physical Medium Attachment (PMA) sublayer, type 1000BASE-X
36.7.4.3 State diagrams
27 45. Management Data Input/Output (MDIO) interface
45.2.1 PMA/PMD registers
45.2.1.1 PMA/PMD control 1 register (Register 1.0)
28 45.2.1.1.1 Speed selection (1.0.13, 1.0.6, 1.0.5:2)
45.2.1.1.2 PMA loopback (1.0.0)
29 45.2.1.7.4 Transmit fault (1.8.11)
45.2.1.7.5 Receive fault (1.8.10)
45.2.1.8 10G PMA/PMD transmit disable register (Register 1.9)
30 45.2.1.10.3 1000BASE-KX ability (1.11.6)
45.2.1.10.5 10GBASE-KR ability (1.11.4)
45.2.1.10.6 10GBASE-KX4 ability (1.11.3)
31 45.2.1.76 10GBASE-KR PMD control register (Register 1.150)
45.2.1.76.1 Restart training (1.150.0)
45.2.1.76.2 Training enable (1.150.1)
45.2.1.77 10GBASE-KR PMD status register (Register 1.151)
32 45.2.1.77.1 Receiver status (1.151.0)
45.2.1.77.2 Frame lock (1.151.1)
45.2.1.77.3 Start-up protocol status (1.151.2)
45.2.1.77.4 Training failure (1.151.3)
45.2.1.78 10GBASE-KR LP coefficient update register (Register 1.152)
45.2.1.78.1 Preset (1.152.13)
45.2.1.78.2 Initialize (1.152.12)
33 45.2.1.78.3 Coefficient (k) update (1.152.5:0)
45.2.1.79 10GBASE-KR LP status report register (Register 1.153)
34 45.2.1.79.1 Receiver ready (1.153.15)
45.2.1.79.2 Coefficient (k) status (1.153.5:0)
45.2.1.80 10GBASE-KR LD coefficient update register (Register 1.154)
45.2.1.80.1 Preset (1.154.13)
45.2.1.80.2 Initialize (1.154.12)
35 45.2.1.80.3 Coefficient (k) update (1.154.5:0)
45.2.1.81 10GBASE-KR LD status report register (Register 1.155)
36 45.2.1.81.1 Receiver ready (1.155.15)
45.2.1.81.2 Coefficient (k) status (1.155.5:0)
37 45.2.1.82 1000BASE-KX control register (Register 1.160)
45.2.1.82.1 PMD transmit disable (1.160.0)
45.2.1.83 1000BASE-KX status register (Register 1.161)
38 45.2.1.83.1 PMD transmit fault ability (1.161.13)
45.2.1.83.2 PMD receive fault ability (1.161.12)
45.2.1.83.3 PMD transmit fault (1.161.11)
45.2.1.83.4 PMD receive fault (1.161.10)
45.2.1.83.5 PMD transmit disable ability (1.161.8)
45.2.1.83.6 1000BASE-KX signal detect (1.161.0)
39 45.2.1.84 10GBASE-R FEC ability register (Register 1.170)
45.2.1.84.1 10GBASE-R FEC ability (1.170.0)
45.2.1.84.2 10GBASE-R FEC error indication ability (1.170.1)
45.2.1.85 10GBASE-R FEC control register (Register 1.171)
40 45.2.1.85.1 FEC enable (1.171.0)
45.2.1.85.2 FEC enable error indication (1.171.1)
45.2.1.86 10GBASE-R FEC corrected blocks counter (Register 1.172, 1.173)
45.2.1.87 10GBASE-R FEC uncorrected blocks counter (Register 1.174, 1.175)
41 45.2.7 Auto-Negotiation registers
42 45.2.7.2 AN status (Register 7.1)
45.2.7.2.1 Parallel detection fault (7.1.9)
45.2.7.2.2 Page received (7.1.6)
43 45.2.7.6 AN advertisement register (7.16, 7.17, 7.18)
44 45.2.7.7 AN LP base page ability register (7.19, 7.20, 7.21)
45.2.7.8 AN XNP transmit register (7.22, 7.23, 7.24)
45 45.2.7.9 AN LP XNP ability register (7.25, 7.26, 7.27)
46 45.2.7.12 Backplane Ethernet status (Register 7.48)
45.2.7.12.1 10GBASE-KR FEC negotiated (7.48.4)
47 45.2.7.12.2 Negotiated Port Type (7.48.1, 7.48.2, 7.48.3)
45.2.7.12.3 Backplane Ethernet AN ability (7.48.0)
48 45.5 Protocol implementation conformance statement (PICS) proforma for Clause 45, MDIO interface
45.5.3 PICS proforma tables for Management Data Input Output (MDIO) interface
45.5.3.2 PMA/PMD MMD options
49 45.5.3.3 PMA/PMD management functions
45.5.3.8 Auto-Negotiation options
50 45.5.3.9 Auto-Negotiation management functions
51 48. Physical Coding Sublayer (PCS) and Physical Medium Attachment (PMA) sublayer, type 10GBASE-X
48.2.7 Auto-Negotiation for Backplane Ethernet
48.7 Protocol implementation conformance statement (PICS) proforma for Physical Coding Sublayer (PCS) and Physical Medium Attachment (PMA) sublayer, type 10GBASE-X
48.7.4.2 PCS functions
52 49. Physical Coding Sublayer (PCS) for 64B/66B, type 10GBASE-R
49.2.16 Auto-Negotiation for Backplane Ethernet
49.3 Protocol implementation conformance statement (PICS) proforma for Clause 49, Physical Coding Sublayer (PCS) type 10GBASE-R
49.3.6.5 Auto-Negotiation for Backplane Ethernet functions
53 Annex A (informative) Bibilography
Annex 30B (normative) GDMO and ASN.1 definitions for management
30B.2 ASN.1 module for CSMA/CD managed objects
55 69. Introduction to Ethernet operation over electrical backplanes
69.1 Overview
69.1.1 Scope
69.1.2 Objectives
56 69.1.3 Relationship of Backplane Ethernet to the ISO/IEC Open System Interconnection (OSI) reference model
57 69.2 Summary of Backplane Ethernet Sublayers
69.2.1 Reconciliation sublayer and media independent interfaces
69.2.2 Management interface
69.2.3 Physical Layer signaling systems
58 69.2.4 Auto-Negotiation
69.2.5 Management
69.3 Delay constraints
59 69.4 State diagrams
69.5 Protocol implementation conformance statement (PICS) proforma
61 70. Physical Medium Dependent Sublayer and Baseband Medium, Type 1000BASE-KX
70.1 Overview
70.2 Physical Medium Dependent (PMD) service interface
70.3 PCS requirements for Auto-Negotiation (AN) service interface
70.4 Delay constraints
62 70.5 PMD MDIO function mapping
70.6 PMD functional specifications
70.6.1 Link block diagram
63 70.6.2 PMD transmit function
70.6.3 PMD receive function
70.6.4 PMD signal detect function
70.6.5 PMD transmit disable function
70.6.6 Loopback mode
64 70.6.7 PMD fault function
70.6.8 PMD transmit fault function
70.6.9 PMD receive fault function
70.7 1000BASE-KX electrical characteristics
70.7.1 Transmitter characteristics
65 70.7.1.1 Test fixtures
70.7.1.2 Test fixture impedance
70.7.1.3 Signaling speed
70.7.1.4 Differential output eye mask
66 70.7.1.5 Output amplitude
70.7.1.6 Differential output return loss
67 70.7.1.7 Transition time
70.7.1.8 Transmit jitter
70.7.1.9 Transmit jitter test requirements
68 70.7.2 Receiver characteristics
70.7.2.1 Receiver interference tolerance
70.7.2.2 Signaling speed range
69 70.7.2.3 AC-coupling
70.7.2.4 Input signal amplitude
70.7.2.5 Differential input return loss
70.8 Interconnect characteristics
70.9 Environmental specifications
70.9.1 General safety
70.9.2 Network safety
70.9.3 Installation and maintenance guidelines
70.9.4 Electromagnetic compatibility
70 70.9.5 Temperature and humidity
71 70.10 Protocol implementation conformance statement (PICS) proforma for Clause 70, Physical Medium Dependent (PMD) sublayer and baseband medium, type 1000BASE-KX
70.10.1 Introduction
70.10.2 Identification
70.10.2.1 Implementation identification
70.10.2.2 Protocol summary
72 70.10.3 Major capabilities/options
70.10.4 PICS proforma tables for Clause 70, Physical Medium Dependent (PMD) sublayer and baseband medium, type 1000BASE-KX.
70.10.4.1 PCS requirements for AN service interface
73 70.10.4.2 PMD functional specifications
74 70.10.4.3 Management functions
70.10.4.4 Transmitter electrical characteristics
75 70.10.4.5 Receiver electrical characteristics
70.10.4.6 Environmental and safety specifications
77 71. Physical Medium Dependent Sublayer and Baseband Medium, Type 10GBASE-KX4
71.1 Overview
71.2 Physical Medium Dependent (PMD) service interface
71.3 PCS requirements for Auto-Negotiation (AN) service interface
71.4 Delay constraints
78 71.5 PMD MDIO function mapping
79 71.6 PMD functional specifications
71.6.1 Link block diagram
71.6.2 PMD Transmit function
71.6.3 PMD Receive function
80 71.6.4 Global PMD signal detect function
71.6.5 PMD lane-by-lane signal detect function
71.6.6 Global PMD transmit disable function
71.6.7 PMD lane-by-lane transmit disable function
71.6.8 Loopback mode
81 71.6.9 PMD fault function
71.6.10 PMD transmit fault function
71.6.11 PMD receive fault function
71.7 Electrical characteristics for 10GBASE-KX4
71.7.1 Transmitter characteristics
82 71.7.1.1 Test fixtures
71.7.1.2 Test fixture impedance
71.7.1.3 Signaling speed
71.7.1.4 Output amplitude
83 71.7.1.5 Output return loss
71.7.1.6 Differential output template
85 71.7.1.7 Transition time
71.7.1.8 Transmit jitter
71.7.1.9 Transmit jitter test requirements
86 71.7.2 Receiver characteristics
71.7.2.1 Receiver interference tolerance
71.7.2.2 Signaling speed
87 71.7.2.3 AC-coupling
71.7.2.4 Input signal amplitude
71.7.2.5 Differential input return loss
71.8 Interconnect characteristics
71.9 Environmental specifications
71.9.1 General safety
71.9.2 Network safety
71.9.3 Installation and maintenance guidelines
71.9.4 Electromagnetic compatibility
88 71.9.5 Temperature and humidity
89 71.10 Protocol implementation conformance statement (PICS) proforma for Clause 71, Physical Medium Dependent (PMD) sublayer and baseband medium, type 10GBASE-KX4
71.10.1 Introduction
71.10.2 Identification
71.10.2.1 Implementation identification
71.10.2.2 Protocol summary
90 71.10.3 Major capabilities/options
71.10.4 PICS proforma tables for Clause 71, Physical Medium Dependent (PMD) sublayer and baseband medium, type 10GBASE-KX4
71.10.4.1 PCS requirements for AN service interface
91 71.10.4.2 PMD functional specifications
92 71.10.4.3 Management functions
93 71.10.4.4 Transmitter electrical characteristics
94 71.10.4.5 Receiver electrical characteristics
71.10.4.6 Environmental and safety specifications
95 72. Physical Medium Dependent Sublayer and Baseband Medium, Type 10GBASE-KR
72.1 Overview
72.2 Physical Medium Dependent (PMD) service interface
72.3 PCS requirements for Auto-Negotiation (AN) service interface
72.4 Delay constraints
96 72.5 PMD MDIO function mapping
72.6 PMD functional specifications
72.6.1 Link block diagram
97 72.6.2 PMD transmit function
72.6.3 PMD receive function
72.6.4 PMD signal detect function
72.6.5 PMD transmit disable function
98 72.6.6 Loopback mode
72.6.7 PMD_fault function
72.6.8 PMD transmit fault function
72.6.9 PMD receive fault function
99 72.6.10 PMD control function
72.6.10.1 Overview
72.6.10.2 Training frame structure
72.6.10.2.1 Frame marker
100 72.6.10.2.2 Control channel encoding
72.6.10.2.3 Coefficient update field
102 72.6.10.2.4 Status report field
103 72.6.10.2.5 Coefficient update process
72.6.10.2.6 Training pattern
72.6.10.3 State variables
72.6.10.3.1 Variables
105 72.6.10.3.2 Timers
106 72.6.10.3.3 Counters
72.6.10.3.4 Functions
107 72.6.10.4 State diagrams
72.6.10.4.1 Frame lock
72.6.10.4.2 Training
72.6.10.4.3 Coefficient update
110 72.7 10GBASE-KR electrical characteristics
72.7.1 Transmitter characteristics
111 72.7.1.1 Test fixture
72.7.1.2 Test fixture impedance
72.7.1.3 Signaling speed
72.7.1.4 Output amplitude
112 72.7.1.5 Differential output return loss
113 72.7.1.6 Common-mode output return loss
114 72.7.1.7 Transition time
72.7.1.8 Transmit jitter
72.7.1.9 Transmit jitter test requirements
115 72.7.1.10 Transmitter output waveform
116 72.7.1.11 Transmitter output waveform requirements
118 72.7.2 Receiver characteristics
72.7.2.1 Receiver interference tolerance
119 72.7.2.2 Signaling speed range
72.7.2.3 AC-coupling
72.7.2.4 Input signal amplitude
72.7.2.5 Differential input return loss
72.8 Interconnect characteristics
72.9 Environmental specifications
72.9.1 General safety
72.9.2 Network safety
72.9.3 Installation and maintenance guidelines
120 72.9.4 Electromagnetic compatibility
72.9.5 Temperature and humidity
121 72.10 Protocol implementation conformance statement (PICS) proforma for Clause 72, Physical Medium Dependent (PMD) sublayer and baseband medium, type 10GBASE-KR
72.10.1 Introduction
72.10.2 Identification
72.10.2.1 Implementation identification
72.10.2.2 Protocol summary
122 72.10.3 Major capabilities/options
72.10.4 PICS proforma tables for Clause 72, Physical Medium Dependent (PMD) sublayer and baseband medium, type 10GBASE-KR
72.10.4.1 PCS requirements for AN service interface
123 72.10.4.2 PMD functional specifications
72.10.4.3 Management functions
72.10.4.4 PMD Control functions
126 72.10.4.5 Transmitter electrical characteristics
128 72.10.4.6 Receiver electrical characteristics
72.10.4.7 Environmental specifications
129 73. Auto-Negotiation for Backplane Ethernet
73.1 Auto-Negotiation introduction
73.2 Relationship to the ISO/IEC Open Systems Interconnection (OSI) reference model
130 73.3 Functional specifications
131 73.4 Transmit function requirements
73.5 DME transmission
73.5.1 DME page encoding
73.5.1.1 DME electrical specifications
73.5.2 DME page encoding
132 73.5.3 DME page timing
133 73.5.4 Manchester violation delimiter
134 73.6 Link Codeword encoding
73.6.1 Selector field
73.6.2 Echoed Nonce field
135 73.6.3 Transmitted Nonce field
73.6.4 Technology Ability field
73.6.5 FEC capability
136 73.6.6 Pause Ability
73.6.7 Remote Fault
73.6.8 Acknowledge
73.6.9 Next Page
137 73.6.10 Transmit Switch function
73.7 Receive function requirements
73.7.1 DME page reception
73.7.2 Receive Switch function
73.7.3 Link Codeword matching
73.7.4 Arbitration function requirements
73.7.4.1 Parallel detection function
138 73.7.5 Renegotiation function
73.7.6 Priority Resolution function
139 73.7.7 Next Page function
73.7.7.1 Next Page encodings
140 73.7.7.1.1 Use of Next Pages
141 73.8 Management register requirements
73.9 Technology-Dependent interface
73.9.1 AN_LINK.indication
142 73.9.1.1 Semantics of the service primitive
73.9.1.2 When generated
73.9.1.3 Effect of receipt
73.10 State diagrams and variable definitions
73.10.1 State diagram variables
148 73.10.2 State diagram timers
150 73.10.3 State diagram counters
151 73.10.4 .State diagrams
154 73.11 Protocol implementation conformance statement (PICS) proforma for Clause 73, Auto-Negotiation for Backplane Ethernet
73.11.1 Introduction
73.11.2 Identification
73.11.2.1 Implementation identification
73.11.2.2 Protocol summary
155 73.11.3 Major capabilities/options
73.11.4 PICS proforma tables for Auto-Negotiation for Backplane Ethernet
73.11.4.1 Functional specifications
156 73.11.4.2 DME Transmission
157 73.11.4.3 Link Codeword Encoding
158 73.11.4.4 Receive function requirements
159 73.11.4.5 Next Page function
73.11.4.6 Management register requirements
160 73.11.4.7 State diagrams and variable definitions
73.11.4.8 Service primitives
161 73.11.4.9 Auto-Negotiation Annexes
163 74. Forward Error Correction (FEC) sublayer for 10GBASE-R PHYs
74.1 Overview
74.2 Objectives
74.3 Relationship to other sublayers
164 74.4 Inter-sublayer interfaces
165 74.4.1 Functional Block Diagram
74.5 FEC service interface
166 74.5.1 FEC_UNITDATA.request
74.5.1.1 Semantics of the service primitive
74.5.1.2 When generated
74.5.1.3 Effect of receipt
74.5.2 FEC_UNITDATA.indication
74.5.2.1 Semantics of the service primitive
74.5.2.2 When generated
167 74.5.2.3 Effect of receipt
74.5.3 FEC_SIGNAL.indication
74.5.3.1 Semantics of the service primitive
74.5.3.2 When generated
74.5.3.3 Effect of receipt
74.6 Delay constraints
74.7 FEC principle of operation
74.7.1 FEC code
168 74.7.2 FEC block format
74.7.3 Composition of the FEC block
169 74.7.4 Functions within FEC sublayer
74.7.4.1 Reverse gearbox function
74.7.4.2 FEC Encoder
170 74.7.4.3 FEC transmission bit ordering
74.7.4.4 FEC (2112, 2080) encoder
171 74.7.4.4.1 PN-2112 pseudo-noise sequence generator
172 74.7.4.5 FEC decoder
74.7.4.5.1 FEC (2112,2080) decoding
174 74.7.4.6 FEC receive bit ordering
74.7.4.7 FEC block synchronization
175 74.8 FEC MDIO function mapping
74.8.1 FEC capability
176 74.8.2 FEC Enable
74.8.3 FEC Enable Error Indication
74.8.3.1 FEC Error Indication ability
74.8.4 FEC Error monitoring capability
74.8.4.1 FEC_corrected_blocks_counter
74.8.4.2 FEC_uncorrected_blocks_counter
177 74.9 10GBASE-R PHY test-pattern mode
74.10 Detailed functions and state diagrams
74.10.1 State diagram conventions
74.10.2 State variables
74.10.2.1 Constants
74.10.2.2 Variables
178 74.10.2.3 Functions
74.10.2.4 Counters
74.10.3 State diagrams
180 74.11 Protocol implementation conformance statement (PICS) proforma for Clause 74, Forward Error Correction (FEC) sublayer for 10GBASE-R PHYs
74.11.1 Introduction
74.11.2 Identification
74.11.2.1 Implementation identification
74.11.2.2 Protocol summary
181 74.11.3 Major capabilities/options
182 74.11.4 Management
183 74.11.5 FEC Requirements
184 74.11.6 FEC Error Monitoring
185 Annex 69A (normative) Interference tolerance testing
189 Annex 69B (informative) Interconnect characteristics
199 Annex 73A (normative) Next Page Message code field definitions
201 Annex 74A (informative) FEC block encoding examples
IEEE 802.3ap-2007
$144.63