10-Gb/s data transmission over optical fiber is limited in reach due to optical dispersion phenomena that results in inter-symbol interference. Electronic dispersion compensators employing linear and nonlinear equalization techniques are a compact, cost-effective, and adaptive alternative to optical dispersion compensating techniques and devices that are often bulky, expensive, and not adaptive. The decision-feedback equalizer (DFE) is a type of nonlinear equalizer that can effectively compensate for the nonlinear dispersion effects exhibited by fiber channels. However, at multigigabit/second data rates, the implementation of the DFE is challenged by the first feedback-loop latency requirements and process technology speed limitations. This...
Most current multi-gigabit per second digital fiber optic systems use simple modulation and detectio...
We demonstrate by simulation a parallel decision feedback equalization (DFE) technique at multi-GSa/...
ABSTRACT: This paper presents the design of a high-speed transversal equalizer for dispersion compen...
A novel analog decision-feedback equalizer (ADFE) is presented to compensate for modal dispersion in...
Gigabit optical fiber communications channels typically exhibit linear and nonlinear distortion as a...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
The performance limits of optically amplified links using electronic feed-forward equalizers and dec...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
This dissertation develops an unclocked receiver analog decision-feedback equalizer (ADFE) circuit a...
An unclocked analog decision-feedback equalizer (ADFE) is implemented in a 0.18-??m 40 GHz ft CMOS p...
Limitations in data transmission caused by modal dispersion in fiber-optic links can be significantl...
A guideline on how to design and specify a Decision Feedback Equalizer (DFE) for bitrates of 10 Gbps...
The performance limits of 10Gb/s optically amplified single mode fibre links using electronic FFE an...
This paper presents an adaptive blind electronic equalization technique for fiber dispersion compens...
Most current multi-gigabit per second digital fiber optic systems use simple modulation and detectio...
We demonstrate by simulation a parallel decision feedback equalization (DFE) technique at multi-GSa/...
ABSTRACT: This paper presents the design of a high-speed transversal equalizer for dispersion compen...
A novel analog decision-feedback equalizer (ADFE) is presented to compensate for modal dispersion in...
Gigabit optical fiber communications channels typically exhibit linear and nonlinear distortion as a...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
The performance limits of optically amplified links using electronic feed-forward equalizers and dec...
In high-speed optical links, electronic compensation circuits can be utilized to greatly improve the...
This dissertation develops an unclocked receiver analog decision-feedback equalizer (ADFE) circuit a...
An unclocked analog decision-feedback equalizer (ADFE) is implemented in a 0.18-??m 40 GHz ft CMOS p...
Limitations in data transmission caused by modal dispersion in fiber-optic links can be significantl...
A guideline on how to design and specify a Decision Feedback Equalizer (DFE) for bitrates of 10 Gbps...
The performance limits of 10Gb/s optically amplified single mode fibre links using electronic FFE an...
This paper presents an adaptive blind electronic equalization technique for fiber dispersion compens...
Most current multi-gigabit per second digital fiber optic systems use simple modulation and detectio...
We demonstrate by simulation a parallel decision feedback equalization (DFE) technique at multi-GSa/...
ABSTRACT: This paper presents the design of a high-speed transversal equalizer for dispersion compen...