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Integrated CMOS Circuits for Optical Communications

Integrated CMOS Circuits for Optical Communications
Author: Mark Ingels
Publisher: Springer Science & Business Media
Total Pages: 182
Release: 2013-03-09
Genre: Technology & Engineering
ISBN: 3662079267

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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.


Design of Integrated Circuits for Optical Communications

Design of Integrated Circuits for Optical Communications
Author: Behzad Razavi
Publisher: John Wiley & Sons
Total Pages: 444
Release: 2012-09-14
Genre: Technology & Engineering
ISBN: 1118439457

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The only book on integrated circuits for optical communications that fully covers High-Speed IOs, PLLs, CDRs, and transceiver design including optical communication The increasing demand for high-speed transport of data has revitalized optical communications, leading to extensive work on high-speed device and circuit design. With the proliferation of the Internet and the rise in the speed of microprocessors and memories, the transport of data continues to be the bottleneck, motivating work on faster communication channels. Design of Integrated Circuits for Optical Communications, Second Edition deals with the design of high-speed integrated circuits for optical communication transceivers. Building upon a detailed understanding of optical devices, the book describes the analysis and design of critical building blocks, such as transimpedance and limiting amplifiers, laser drivers, phase-locked loops, oscillators, clock and data recovery circuits, and multiplexers. The Second Edition of this bestselling textbook has been fully updated with: A tutorial treatment of broadband circuits for both students and engineers New and unique information dealing with clock and data recovery circuits and multiplexers A chapter dedicated to burst-mode optical communications A detailed study of new circuit developments for optical transceivers An examination of recent implementations in CMOS technology This text is ideal for senior graduate students and engineers involved in high-speed circuit design for optical communications, as well as the more general field of wireline communications.


Design of Analog CMOS Integrated Circuits

Design of Analog CMOS Integrated Circuits
Author: Behzad Razavi
Publisher:
Total Pages: 684
Release: 2001
Genre: Linear integrated circuits
ISBN: 9780072822588

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Optoelectronic Circuits in Nanometer CMOS Technology

Optoelectronic Circuits in Nanometer CMOS Technology
Author: Mohamed Atef
Publisher: Springer
Total Pages: 253
Release: 2016-03-04
Genre: Technology & Engineering
ISBN: 3319273388

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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.


CMOS Receiver Front-ends for Gigabit Short-Range Optical Communications

CMOS Receiver Front-ends for Gigabit Short-Range Optical Communications
Author: Francisco Aznar
Publisher: Springer Science & Business Media
Total Pages: 204
Release: 2012-08-09
Genre: Technology & Engineering
ISBN: 1461434645

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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.


High-Speed Optical Receivers with Integrated Photodiode in Nanoscale CMOS

High-Speed Optical Receivers with Integrated Photodiode in Nanoscale CMOS
Author: Filip Tavernier
Publisher: Springer Science & Business Media
Total Pages: 231
Release: 2011-06-20
Genre: Technology & Engineering
ISBN: 1441999256

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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.


High-speed Optical Transceivers: Integrated Circuits Designs And Optical Devices Techniques

High-speed Optical Transceivers: Integrated Circuits Designs And Optical Devices Techniques
Author: Yuyu Liu
Publisher: World Scientific
Total Pages: 242
Release: 2006-03-09
Genre: Technology & Engineering
ISBN: 9814478709

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This book explores the unique advantages and large inherent transmission capacity of optical fiber communication systems. The long-term and high-risk research challenges of optical transceivers are analyzed with a view to sustaining the seemingly insatiable demand for bandwidth. A broad coverage of topics relating to the design of high-speed optical devices and integrated circuits, oriented to low power, low cost, and small area, is discussed.Written by specialists with many years of research and engineering experience in the field of optical fiber communication, this book is essential for an audience dedicated to the development of integrated electronic systems for optical communication applications. It can also be used as a supplementary text for graduate courses on optical transceiver IC design.


High Performance CMOS Integrated Circuits for Optical Receivers

High Performance CMOS Integrated Circuits for Optical Receivers
Author: MohammadReza SamadiBoroujeni
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

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Optical communications is expanding into new applications such as infrared wireless communications; therefore, designing high performance circuits has gained considerable importance. In this dissertation a wide dynamic-range variable-gain transimpedance amplifier (TIA) is introduced. It adopts a regulated cascode (RGC) amplifier and an operational transconductance amplifier (OTA) as the feed forward gain element to control gain and improve the overload of the optical receiver. A fully-differential variable-gain TIA in a 0.35[micron] CMOS technology is realized. It provides a bit error rate (BER) less than 10-12 for an input current from 6[mu]A-3mA at 3.3V power supply. For the transimpedance gain variation, from 0.1k[omega] to 3k[omega], -3dB bandwidth is higher than 1.7GHz for a 0.6pF photodiode capacitance. The power dissipations for the highest and the lowest gains are 8.2mW and 24.9mW respectively. A new technique for designing uniform multistage amplifiers (MA) for high frequency applications is introduced. The proposed method uses the multi-peak bandwidth enhancement technique while it employs identical, simple and inductorless stages. It has several advantages, such as tunability of bandwidth and decreased sensitivity of amplifier stages, to process variations. While all stages of the proposed MA topology are identical, the gain-bandwidth product can be extended several times. Two six-stage amplifiers in a TSMC 0.35[micron] CMOS process were designed using the proposed topology. Measurements show that the gain can be varied for the first one between 16dB and 44dB within the 0.7-3.2GHz bandwidth and for the second one between 13dB and 44dB within a 1.9-3.7GHz bandwidth with less than 5.2nV/[square root]Hz noise. Although the second amplifier has a higher gain bandwidth product, it consumes more power and occupies a wider area. A technique for capacitance multiplication is utilized to design a tunable loop filter. Current and voltage mode techniques are combined to increase the multiplication factor (M). At a high input dynamic range, M is adjustable and the capacitance multiplier performs linearly at high frequencies. Drain-source voltages of paired transistors are equalized to improve matching in the current mirrors. Measurement of a prototype loop filter IC in a 0.5[micron] CMOS technology shows 50[mu]A current consumption for M=50. Where 80pF capacitance is employed, the capacitance multiplier realizes an effective capacitance varying from 1.22nF up to 8.5nF.


Silicon Optoelectronic Integrated Circuits

Silicon Optoelectronic Integrated Circuits
Author: Horst Zimmermann
Publisher: Springer
Total Pages: 441
Release: 2019-01-30
Genre: Science
ISBN: 3030058220

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Explains the circuit design of silicon optoelectronic integrated circuits (OEICs), which are central to advances in wireless and wired telecommunications. The essential features of optical absorption are summarized, as is the device physics of photodetectors and their integration in modern bipolar, CMOS, and BiCMOS technologies. This information provides the basis for understanding the underlying mechanisms of the OEICs described in the main part of the book. In order to cover the topic comprehensively, Silicon Optoelectronic Integrated Circuits presents detailed descriptions of many OEICs for a wide variety of applications from various optical sensors, smart sensors, 3D-cameras, and optical storage systems (DVD) to fiber receivers in deep-sub-μm CMOS. Numerous detailed illustrations help to elucidate the material.


Optical Integrated Circuits

Optical Integrated Circuits
Author: Hiroshi Nishihara
Publisher: McGraw Hill Professional
Total Pages: 400
Release: 1989
Genre: Science
ISBN: 9780070460928

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"An ideal text-reference for professionals and students in electrical engineering, electro-optic engineering, and computer chip design..."--back cover.