Analog Optical Receiver Front End

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Analog Optical Receiver Front
An Inductor-Less 28-Gb/s NRZ Optical Receiver Analog Front

Abstract - This paper presents an optimized design methodology for an inductor-less 28-Gb/s NRZ optical receiver (ORx) analog front-end (AFE) using the Berkeley Analog Generator (BAG) in 28-nm

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Optimizing the Photodetector/Analog Front-end Interface in

Abstract—This paper addresses the optimization of the in-terface between the photodetector (PD) and the analog front-end (AFE) in high-speed, high-density optical communication receivers.

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Optical Receiver Front-End Integrated Circuit Design

In this chapter, we will introduce the basic concept of a high-speed receiver, the integrated circuit (IC) technique of the front-end. Subsequently, passive peaking techniques for a preamplifier are described.

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Optimized High-speed Receiver Analog Front-end Design Using

The overall design of a high-speed receiver analog front-end (AFE), optimized for signal processing with a cascaded transimpedance amplifier (TIA) and continuous-time linear equalizer (CTLE), focuses on

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4-Channel, 100 Gbps Inductorless Optical Receiver Analog Front-End

Abstract: In this paper, a 4-channel, 100 Gbps inductorless optical receiver analog front-end fabricated in a 55 nm bulk-CMOS technology is presented. Active feedback technique is widely adopted to

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Analog Demultiplexing 128-GBd Optical Receiver

This paper presents an analog demultiplexing optical receiver capable of converting a high-baudrate optical input into two half-rate output signals, facilitatin

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A 10 Gbps Optical Receiver Analog Front-End and MZM Driver in

This paper presents a 10 Gbps optical receiver analog front end and a Mach-Zehnder Modulator (MZM) driver in the 65nm technology. The receiver consists of a Shunt Feedback TIA and

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Design of Front End Optical Receiver using CMOS 180nm

In this paper, authors present a front end optical receiver designed with almost GHz bandwidth range and 98 dB transimpedance gain suitable for 10 Gbps optical receiver applications using 180 nm

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A 25 Gbps inductorless optical receiver analog front-end based the

In this paper, a 25 Gbps inductorless optical receiver analog front-end is presented. The inverter-based modified Cherry-Hooper amplifier is proposed and adopted as main stage of the

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A 0.08 pJ/bit 56 GBaud Monolithic Optical Receiver Front End for

Abstract—We present the design, fabrication, and measurement of a monolithically integrated optical receiver analog front end, where low power operation is a primary consideration

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