[[abstract]]In this paper, a 10-Gb/s inductorless CMOS receiver front end is presented, including a transimpedance amplifier and a limiting amplifier. The transimpedance amplifier incorporates Regulated Cascode (RGC), active-inductor peaking, and intersecting active feedback circuits to achieve a transimpedance gain of 56 dB and a bandwidth of 8.27 GHz with a power dissipation of 35 mW. The limiting amplifier employs interleaving active feedback to achieve a differential voltage gain of 44.5 dB and a bandwidth of 10.3 GHz while consuming 226 mW. Both circuits are realized in 0.18- m CMOS technology with a 1.8-V supply.[[notice]]補正完畢[[incitationindex]]EI[[booktype]]紙
In this dissertation, high-speed and high-frequency millimeter-wave circuit techniques are introduce...
This paper reports design of a CMOS optical receiver front-end using 0.18 μm technology. Design proc...
A high-speed optical interface circuit for 850-nm optical communication is presented. Photodetector,...
In this paper, two versions of a complete RF front-end for a 10 Gbps optical receiver are presented....
In this paper, two versions of a complete RF front-end for a 10 Gbps optical receiver are presented....
In this paper, a 4-channel, 100 Gbps inductorless optical receiver analog front-end fabricated in a ...
The dramatic growth of data transportation volume and speed over Internet in recent years entails th...
The dramatic growth of data transportation volume and speed over Internet in recent years entails th...
The need for high speed optical receivers are being driven by high speed and wide bandwidth optical ...
An optical receiver front-end for SONET OC-96 receivers was analyzed and designed in 0.18 mu m CMOS ...
To mitigate the trade-off between gain and bandwidth of CMOS multistage amplifiers, a receiver front...
Optical receivers have an important role in high data rate wireline data communication systems. Now...
© 2018 IEEE. A transimpedance amplifier for optical communication system is presented in this study....
Optical interconnects have attracted great interest as data rates continue to increase. When compare...
This Paper presents a new Trans-impedance amplifier for optical receiver circuits. The amplifier is ...
In this dissertation, high-speed and high-frequency millimeter-wave circuit techniques are introduce...
This paper reports design of a CMOS optical receiver front-end using 0.18 μm technology. Design proc...
A high-speed optical interface circuit for 850-nm optical communication is presented. Photodetector,...
In this paper, two versions of a complete RF front-end for a 10 Gbps optical receiver are presented....
In this paper, two versions of a complete RF front-end for a 10 Gbps optical receiver are presented....
In this paper, a 4-channel, 100 Gbps inductorless optical receiver analog front-end fabricated in a ...
The dramatic growth of data transportation volume and speed over Internet in recent years entails th...
The dramatic growth of data transportation volume and speed over Internet in recent years entails th...
The need for high speed optical receivers are being driven by high speed and wide bandwidth optical ...
An optical receiver front-end for SONET OC-96 receivers was analyzed and designed in 0.18 mu m CMOS ...
To mitigate the trade-off between gain and bandwidth of CMOS multistage amplifiers, a receiver front...
Optical receivers have an important role in high data rate wireline data communication systems. Now...
© 2018 IEEE. A transimpedance amplifier for optical communication system is presented in this study....
Optical interconnects have attracted great interest as data rates continue to increase. When compare...
This Paper presents a new Trans-impedance amplifier for optical receiver circuits. The amplifier is ...
In this dissertation, high-speed and high-frequency millimeter-wave circuit techniques are introduce...
This paper reports design of a CMOS optical receiver front-end using 0.18 μm technology. Design proc...
A high-speed optical interface circuit for 850-nm optical communication is presented. Photodetector,...