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Book contents
- Frontmatter
- Contents
- Preface
- Notation and Acronyms
- 1 Introduction to Wireline Communication
- 2 Electrical Channels
- 3 Decision Circuits
- 4 Equalization
- 5 Electrical-Link Transmitter Circuits
- 6 Electrical-Link Receiver Front-Ends
- 7 Optical Channels and Components
- 8 Optical-Link Transmitter Circuits
- 9 Optical Receivers
- 10 Low-Bandwidth (Equalizer-Based) Optical Receivers
- 11 Advanced Topics in Electrical and Optical Links
- 12 Overview of Synchronization Approaches
- 13 Oscillators
- 14 Phase-Locked Loops and Injection-Locked Oscillators
- 15 Clock and Data Recovery
- Appendix A Frequency Domain Analysis
- Appendix B Noise Analysis
- References
- Index
10 - Low-Bandwidth (Equalizer-Based) Optical Receivers
Published online by Cambridge University Press: 05 December 2024
- Frontmatter
- Contents
- Preface
- Notation and Acronyms
- 1 Introduction to Wireline Communication
- 2 Electrical Channels
- 3 Decision Circuits
- 4 Equalization
- 5 Electrical-Link Transmitter Circuits
- 6 Electrical-Link Receiver Front-Ends
- 7 Optical Channels and Components
- 8 Optical-Link Transmitter Circuits
- 9 Optical Receivers
- 10 Low-Bandwidth (Equalizer-Based) Optical Receivers
- 11 Advanced Topics in Electrical and Optical Links
- 12 Overview of Synchronization Approaches
- 13 Oscillators
- 14 Phase-Locked Loops and Injection-Locked Oscillators
- 15 Clock and Data Recovery
- Appendix A Frequency Domain Analysis
- Appendix B Noise Analysis
- References
- Index
Summary
This chapter presents optical receivers that intentionally limit the bandwidth so as to achieve higher gain and better sensitivity. This has the consequence of introducing that ISI that must be removed by a suitable equalizer. Important aspects of the noise analysis of these receivers are clarified. Various approaches to equalization in these reduced bandwidth receivers are presented by way of recently published examples.
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- Information
- Mixed-Signal CMOS for Wireline CommunicationTransistor-Level and System-Level Design Considerations, pp. 268 - 282Publisher: Cambridge University PressPrint publication year: 2024