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IEEE 802.3aq-2006

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IEEE Standard for Information technology — Part 3: Carrier Sense Multiple Access with Collision Detection (CSMA/CD) Access Method and Physical Layer Specifications – Amendment 2: Physical Layer and Management Parameters for 10 Gb/s Operation, Type 10GBASE-LRM

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IEEE 2006
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Amendment Standard – Superseded. Amendment to IEEE Std 802.3-2005 This amendment to IEEE Std 802.3-2005 specifies a new PMD, 10GBASE-LRM, for serial, 10 Gb/s operation over up to 220 m of 62.5 Āµm and 50 Āµm multimode fiber, including installed, FDDI grade multimode fiber

PDF Catalog

PDF Pages PDF Title
1 Amendment 2: Physical Layer and Management
Parameters for 10 Gb/s Operation,
Type 10GBASE-LRM
3 Title page
6 Introduction
7 Notice to users
9 Participants
13 CONTENTS
16 1. Introduction
1.3 Normative references
1.4 Definitions
1.5 Abbreviations
17 30. Management
30.5.1.1.2 aMAUType
44. Introduction to 10 Gb/s baseband network
44.1.1 Scope
44.1.3 Relationship of 10 Gigabit Ethernet to the ISO OSI reference model
44.1.4.4 Physical Layer signaling systems
19 44.3 Delay constraints
44.4 Protocol implementation conformance statement (PICS) proforma
20 44.5 Relation of 10 Gigabit Ethernet to other standards
45. Management Data Input/Output (MDIO) Interface
45.2.1 PMA/PMD registers
45.2.1.6 PMA/PMD control 2 register (Register 1.7)
21 45.2.1.6.1 PMA/PMD type selection (1.7.3:0)
45.2.1.7 10G PMA/PMD status 2 register (Register 1.8)
45.2.1.7.4 Transmit fault (1.8.11)
45.2.1.7.5 Receive fault (1.8.10)
22 45.2.1.8 10G PMD transmit disable register (Register 1.9)
45.2.1.10 PMA/PMD extended ability register (Register 1.11)
23 45.2.1.10.5 10GBASE-LRM ability (1.11.1)
45.2.3.11 10GBASE-R and 10GBASE-T PCS status 1 register (Register 3.32)
24 45.2.3.11.2 PRBS9 pattern testing ability (3.32.3)
45.2.3.12 10GBASE-R and 10GBASE-T PCS status 2 register (Register 3.33)
45.2.3.15 10GBASE-R PCS test-pattern control register (Register 3.42)
25 45.2.3.15.1 PRBS9 transmit test-pattern enable (3.42.6)
45.5.3.6 PCS options
26 45.5.3.7 PCS management functions
49. Physical Coding Sublayer (PCS) for 64B/66B, type 10GBASE-R
49.1.1 Scope
49.1.2 Objectives
27 49.1.4 Summary of 10GBASE-R and 10GBASE-W sublayers
49.1.4.4 Physical Medium Dependent (PMD) sublayer
49.2.2 Functions within the PCS
28 49.2.8 Test-pattern generators
29 49.3.5 Test-pattern modes
30 51. Physical Medium Attachment (PMA) sublayer, type Serial
51.3 Functions within the PMA
51.3.3 Delay Constraints
51.10.4.4 PMA delay constraints
31 Annex A (informative) Bibliography
Annex 30B (normative) GDMO and ASN.1 definitions for management
33 68. Physical medium dependent (PMD) sublayer type 10GBASE-LRM
68.1 Overview
68.1.1 Physical Medium Dependent (PMD) sublayer service interface
68.2 Delay constraints
34 68.3 PMD MDIO function mapping
68.4 PMD functional specifications
68.4.1 PMD block diagram
68.4.2 PMD transmit function
35 68.4.3 PMD receive function
68.4.4 PMD signal detect function
68.4.5 PMD_reset function
68.4.6 PMD_fault function
36 68.4.7 PMD_global_transmit_disable function
68.4.8 PMD_transmit_fault function
68.4.9 PMD_receive_fault function
68.5 PMD to MDI optical specifications
37 68.5.1 Transmitter optical specifications
38 68.5.2 Characteristics of signal within, and at the receiving end of, a compliant 10GBASE- LRM channel (informative)
39 68.5.3 Receiver optical specifications
40 68.5.3.1 Dynamic response
68.6 Definitions of optical parameters and measurement methods
68.6.1 Test patterns and related subclauses for optical parameters
41 68.6.2 Optical modulation amplitude (OMA)
68.6.3 Extinction ratio measurement
68.6.4 Relationship between OMA, extinction ratio and average power (informative)
42 68.6.5 Transmitter optical waveform-transmitter eye mask
43 68.6.5.1 Transmitter eye mask acceptable hit count examples (informative)
44 68.6.6 Transmitter waveform and dispersion penalty (TWDP)
68.6.6.1 TWDP measurement procedure
45 68.6.6.2 TWDP signal processing algorithm
48 68.6.7 Transmitter signal to noise ratio
49 68.6.8 Transmitter uncorrelated jitter
68.6.9 Comprehensive stressed receiver sensitivity and overload
68.6.9.1 Comprehensive stressed receiver sensitivity and overload test block diagram
51 68.6.9.2 Comprehensive stressed receiver test signal characteristics
68.6.9.3 Comprehensive stressed receiver test signal calibration
52 68.6.9.4 Comprehensive stressed receiver test procedure
68.6.10 Simple stressed receiver sensitivity and overload (informative)
55 68.6.11 Receiver jitter tolerance
68.7 Safety, installation, environment, and labeling
68.7.1 Safety
56 68.7.2 Installation
68.7.3 Environment
68.7.4 PMD labeling
68.8 Fiber optic cabling model
68.9 Characteristics of the fiber optic cabling (channel)
68.9.1 Optical fiber and cable
57 68.9.2 Optical fiber connections
68.9.2.1 Connection insertion loss
68.9.2.2 Maximum discrete reflectance
68.9.3 Single-mode fiber offset-launch mode-conditioning patch cord
58 68.10 Protocol implementation conformance statement (PICS) proforma for Clause 68, Physical medium dependent (PMD) sublayer type 10GBASE-LRM
68.10.1 Introduction
68.10.2 Identification
68.10.2.1 Implementation identification
68.10.2.2 Protocol summary
59 68.10.2.3 Major capabilities/options
68.10.3 PICS proforma tables for physical medium dependent (PMD) sublayer type 10GBASE-LRM
68.10.3.1 PMD functional specifications
60 68.10.3.2 Management functions
68.10.3.3 PMD to MDI optical specifications
61 68.10.3.4 Definitions of optical parameters and measurement methods
68.10.3.5 Safety, installation, environment, and labeling
62 68.10.3.6 Characteristics of the fiber optic cabling (channel)
IEEE 802.3aq-2006
$62.83