《Heavy Reading 竞争分析:10-Gbits以太网的组成研究报告(10-Gbits Ethernet Components A Heavy Reading Competitive Analysis)》目录:
I. INTRODUCTION AND KEY FINDINGS
1.1 Key Findings
1.2 Methodology
1.3 Report Structure
II. 10GE MARKET AND TECHNOLOGY TRENDS
2.1 Market Trends
2.2 Leading Applications
2.3 Typical Systems
2.4 10GE Standards
– 10GBase-X
– 10GBase-R
– 10GBase-W
2.5 Optical Transponder Technology
2.6 PHY Silicon
2.7 Electronic Dispersion Compensation (EDC)
2.8 10GE Over Twisted Pair
III. 10GE COMPONENT SUMMARY
3.1 Switching and Backplane
3.2 Line Card
3.3 Stackable Switches
IV. TRANSPONDER ANALYSIS
4.1 Multi-Source Agreements
4.2 300-Pin Transponders
4.3 Xenpak Transponders
4.4 XPAK Transponders
4.5 X2 Transponders
4.6 XFP Transceiver Modules
V. TRANSPONDER VENDORS
5.1 Leading 10GE Transponder Vendors
– Agilent Technologies
– Infineon Technologies
– Intel
– JDS Uniphase
– Network Elements
– Opnext
5.2 Other 10GE Transponder Vendors
– Avanex
– Bookham Technology
– Civcom
– E2O Communications
– Emcore
– Finisar
– Fujitsu Quantum Devices
– Gtran
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– Hitachi
– LuminentOIC
– MergeOptics
– Mitsubishi
– Multiplex
– Oplink Communications
– Optillion
– Optium
– Picolight
– TriQuint Semiconductor
VI. PHY ANALYSIS
6.1 XSBI PHYs
6.2 XSBI Transceivers
6.3 XAUI Transceivers
6.4 XAUI-10G Serial PHYs
6.5 XAUI Retimer and Backplane Muxes
6.6 XGMII-XFI PHYs
6.7 10-Gbit/s Serial Retimers
VII. PHY VENDORS
7.1 Leading 10GE PHY Vendors
– Broadcom
– Intel
– Marvell Technology Group
– PMC-Sierra
– Quake Technologies
– Vitesse Semiconductor
7.2 Other 10GE PHY Vendors
– Accelerant Networks
– Aeluros
– Ample Communications
– AMCC
– BitBlitz Communications
– Gennum
– Infineon
– Motorola
– Mysticom
– Paxonet
– Phyworks
– Scintera Networks
– SolarFlare Communications
– Texas Instruments
– Velio Communications
– Xilinx
APPENDICES
A Transponder Tables
B PHY Tables
C Glossary of Abbreviations
D About the Author
E Legal Disclaimer
LIST OF FIGURES
SECTION I
SECTION II
Figure 2.1 Campus Backbone
Figure 2.2 IEEE 802.3ae PHY Implementations
Figure 2.3 Fiber and Distances for Standard IEEE Ports
Figure 2.4 Source of Optical Technology Used by Transponder Vendors
SECTION III
Figure 3.1 Typical 10GE Line Card
Figure 3.2 Companies With Three or More 10GE LAN Functions
SECTION IV
Figure 4.1 Announced Transponders
Figure 4.2 300-Pin Transponder
Figure 4.3 Low-Power 300-Pin Transponder Modules
Figure 4.4 Xenpak Transponder
Figure 4.5 Xenpak Modules With Parallel Interfaces (LX4, CX4)
Figure 4.6 XPAK Transponder
Figure 4.7 XPAK Transponder Summary
Figure 4.8 X2 Transponder
Figure 4.9 X2 Transponder Heights
Figure 4.10 Summary of X2 10GBase-LR Modules
Figure 4.11 XFP Transceiver Module
Figure 4.12 Lower-Power 10km XFP Transceiver Modules
SECTION V
Figure 5.1 Transponder Vendors by Form Factor
Figure 5.2 Transponder Vendors by Wavelength and IEEE Port
SECTION VI
Figure 6.1 300-Pin Transponder Application
Figure 6.2 XSBI PHY Summary
Figure 6.3 XSBI Transceiver Suppliers Used by 300-Pin Transponder Manufacturers
Figure 6.4 XSBI Transceiver Summary
Figure 6.5 Xenpak, X2, and XPAK Transponder Application
Figure 6.6 Latest XGMII-XAUI Transceivers
Figure 6.7 XAUI-10G PHY Suppliers Used by Xenpak Transponder Vendors
Figure 6.8 Latest XAUI-10G Serial PHYs for 10GBase-LR Modules
Figure 6.9 XAUI Retimer Devices for 10GBase-CX4
Figure 6.10 XGMII-XFI PHY Summary
Figure 6.11 CDR Suppliers Used by XFP Transceiver Module Manufacturers
Figure 6.12 XFP Transceiver Application
Figure 6.13 10-Gbit/s Serial Retimer Summary
SECTION VII
Figure 7.1 PHY Vendor Summary
APPENDIX A
Figure A.1 300-Pin Transponders
Figure A.2 Xenpak Transponders
Figure A.3 XPAK Transponders
Figure A.4 X2 Transponders
Figure A.5 XFP Transponders
APPENDIX B
Figure B.1 XSBI PHYs
Figure B.2 XSBI Transceivers
Figure B.3 XAUI Transceivers
Figure B.4 XAUI-10G Serial PHYs
Figure B.5 XAUI Retimer & Backplane Muxes
Figure B.6 XGMII-XFI PHYs
Figure B.7 10-Gbit/s Serial Retimers
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