This book describes the design of optical receivers that use the most economical integration technology, while enabling performance that is typically only found in very expensive devices. To achieve this, all necessary functionality, from light detection to digital output, is integrated on a single piece of silicon. All building blocks are thoroughly discussed, including photodiodes, transimpedance amplifiers, equalizers and post amplifiers.
This book describes the design of optical receivers that use the most economical integration technology, while enabling performance that is typically only found in very expensive devices. To achieve this, all necessary functionality, from light detection to digital output, is integrated on a single piece of silicon. All building blocks are thoroughly discussed, including photodiodes, transimpedance amplifiers, equalizers and post amplifiers.
Artikelnr. des Verlages: 80036270, 978-1-4419-9924-5
2011
Seitenzahl: 240
Erscheinungstermin: 21. Juni 2011
Englisch
Abmessung: 241mm x 160mm x 17mm
Gewicht: 590g
ISBN-13: 9781441999245
ISBN-10: 1441999248
Artikelnr.: 33212285
Inhaltsangabe
Introduction.- Optical communication - A high-level perspective.- From light to electrical current - The photodiode.- From current to voltage - The transimpedance amplifier.- Increasing the speed - The equalizer.- Towards a rail-to-rail voltage - The post amplifier.- Chip implementations.- Conclusions.
Introduction.- Optical communication – A high-level perspective.- From light to electrical current – The photodiode.- From current to voltage – The transimpedance amplifier.- Increasing the speed – The equalizer.- Towards a rail-to-rail voltage – The post amplifier.- Chip implementations.- Conclusions.
Introduction.- Optical communication - A high-level perspective.- From light to electrical current - The photodiode.- From current to voltage - The transimpedance amplifier.- Increasing the speed - The equalizer.- Towards a rail-to-rail voltage - The post amplifier.- Chip implementations.- Conclusions.
Introduction.- Optical communication – A high-level perspective.- From light to electrical current – The photodiode.- From current to voltage – The transimpedance amplifier.- Increasing the speed – The equalizer.- Towards a rail-to-rail voltage – The post amplifier.- Chip implementations.- Conclusions.
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