High Speed CMOS Circuits for Optical Receivers

High Speed CMOS Circuits for Optical Receivers
Author: Jafar Savoj,Behzad Razavi
Publsiher: Springer Science & Business Media
Total Pages: 124
Release: 2007-05-08
Genre: Technology & Engineering
ISBN: 9780306475764

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With the exponential growth of the number of Internet nodes, the volume of the data transported on the backbone has increased with the same trend. The load of the global Internet backbone will soon increase to tens of terabits per second. This indicates that the backbone bandwidth requirements will increase by a factor of 50 to 100 every seven years. Transportation of such high volumes of data requires suitable media with low loss and high bandwidth. Among the available transmission media, optical fibers achieve the best performance in terms of loss and bandwidth. High-speed data can be transported over hundreds of kilometers of single-mode fiber without significant loss in signal integrity. These fibers progressively benefit from reduction of cost and improvement of perf- mance. Meanwhile, the electronic interfaces used in an optical network are not capable of exploiting the ultimate bandwidth of the fiber, limiting the throughput of the network. Different solutions at both the system and the circuit levels have been proposed to increase the data rate of the backbone. System-level solutions are based on the utilization of wave-division multiplexing (WDM), using different colors of light to transmit s- eral sequences simultaneously. In parallel with that, a great deal of effort has been put into increasing the operating rate of the electronic transceivers using highly-developed fabrication processes and novel c- cuit techniques.

Integrated CMOS Circuits for Optical Communications

Integrated CMOS Circuits for Optical Communications
Author: Mark Ingels,Michiel Steyaert
Publsiher: Springer Science & Business Media
Total Pages: 182
Release: 2013-03-09
Genre: Technology & Engineering
ISBN: 9783662079263

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This book presents several circuits that are required for the full integration of an optical transmitter in standard CMOS. The main emphasis is placed on high-speed receivers with a bitrate of up to 1 Gb/s. The possibility of including the photodiode in a receiver is investigated and the problems encountered are discussed.

High Speed Optical Receivers with Integrated Photodiode in Nanoscale CMOS

High Speed Optical Receivers with Integrated Photodiode in Nanoscale CMOS
Author: Filip Tavernier,Michiel Steyaert
Publsiher: Springer Science & Business Media
Total Pages: 231
Release: 2011-06-20
Genre: Technology & Engineering
ISBN: 9781441999252

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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.

CMOS Receiver Front ends for Gigabit Short Range Optical Communications

CMOS Receiver Front ends for Gigabit Short Range Optical Communications
Author: Francisco Aznar,Santiago Celma Pueyo,Belén Calvo Lopez
Publsiher: Springer Science & Business Media
Total Pages: 204
Release: 2012-08-09
Genre: Technology & Engineering
ISBN: 9781461434641

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This book describes optical receiver solutions integrated in standard CMOS technology, attaining high-speed short-range transmission within cost-effective constraints. These techniques support short reach applications, such as local area networks, fiber-to-the-home and multimedia systems in cars and homes. The authors show how to implement the optical front-end in the same technology as the subsequent digital circuitry, leading to integration of the entire receiver system in the same chip. The presentation focuses on CMOS receiver design targeting gigabit transmission along a low-cost, standardized plastic optical fiber up to 50m in length. This book includes a detailed study of CMOS optical receiver design – from building blocks to the system level.

Optoelectronic Circuits in Nanometer CMOS Technology

Optoelectronic Circuits in Nanometer CMOS Technology
Author: Mohamed Atef,Horst Zimmermann
Publsiher: Springer
Total Pages: 253
Release: 2016-03-04
Genre: Technology & Engineering
ISBN: 9783319273389

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This book describes the newest implementations of integrated photodiodes fabricated in nanometer standard CMOS technologies. It also includes the required fundamentals, the state-of-the-art, and the design of high-performance laser drivers, transimpedance amplifiers, equalizers, and limiting amplifiers fabricated in nanometer CMOS technologies. This book shows the newest results for the performance of integrated optical receivers, laser drivers, modulator drivers and optical sensors in nanometer standard CMOS technologies. Nanometer CMOS technologies rapidly advanced, enabling the implementation of integrated optical receivers for high data rates of several Giga-bits per second and of high-pixel count optical imagers and sensors. In particular, low cost silicon CMOS optoelectronic integrated circuits became very attractive because they can be extensively applied to short-distance optical communications, such as local area network, chip-to-chip and board-to-board interconnects as well as to imaging and medical sensors.

Broadband Opto Electrical Receivers in Standard CMOS

Broadband Opto Electrical Receivers in Standard CMOS
Author: Carolien Hermans,Michiel Steyaert
Publsiher: Springer Science & Business Media
Total Pages: 190
Release: 2007-06-13
Genre: Technology & Engineering
ISBN: 9781402062223

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This book opens with the basics of the design of opto-electronic interface circuits. The text continues with an in-depth analysis of the photodiode, transimpedance amplifier (TIA) and limiting amplifier (LA). To thoroughly describe light detection mechanisms in silicon, first a one-dimensional and second a two-dimensional model is developed. All material is experimentally verified with several CMOS implementations, with ultimately a fully integrated Gbit/s optical receiver front-end including photodiode, TIA and LA.

Ultra High Speed CMOS Circuits

Ultra High Speed CMOS Circuits
Author: Sam Gharavi,Babak Heydari
Publsiher: Springer Science & Business Media
Total Pages: 111
Release: 2011-09-25
Genre: Technology & Engineering
ISBN: 9781461403050

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The book covers the CMOS-based millimeter wave circuits and devices and presents methods and design techniques to use CMOS technology for circuits operating beyond 100 GHz. Coverage includes a detailed description of both active and passive devices, including modeling techniques and performance optimization. Various mm-wave circuit blocks are discussed, emphasizing their design distinctions from low-frequency design methodologies. This book also covers a device-oriented circuit design technique that is essential for ultra high speed circuits and gives some examples of device/circuit co-design that can be used for mm-wave technology.

High Speed Photodiodes in Standard CMOS Technology

High Speed Photodiodes in Standard CMOS Technology
Author: Sasa Radovanovic,Anne-Johan Annema,Bram Nauta
Publsiher: Springer Science & Business Media
Total Pages: 159
Release: 2006-10-11
Genre: Technology & Engineering
ISBN: 9780387285924

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High-speed Photodiodes in Standard CMOS Technology describes high-speed photodiodes in standard CMOS technology which allow monolithic integration of optical receivers for short-haul communication. For short haul communication the cost aspect is important , and therefore it is desirable that the optical receiver can be integrated in the same CMOS technology as the rest of the system. If this is possible then ultimately a singe-chip system including optical inputs becomes feasible, eliminating EMC and crosstalk problems, while data rate can be extremely high. The problem of photodiodes in standard CMOS technology it that they have very limited bandwidth, allowing data rates up to only 50Mbit per second. High-speed Photodiodes in Standard CMOS Technology first analyzes the photodiode behaviour and compares existing solutions to enhance the speed. After this, the book introduces a new and robust electronic equalizer technique that makes data rates of 3Gb/s possible, without changing the manufacturing technology. The application of this technique can be found in short haul fibre communication, optical printed circuit boards, but also photodiodes for laser disks.