Pre-emphasis is often employed at the transmitter side to counteract the inter symbol interface (ISI) in high-speed data communications. Traditional pre-emphasis drivers, implemented in CML, use one pair of CMOS transistors as the output stage. To design a pre-emphasis for different channels or the same channel using different type of equalizer requires a wide range of current for the same tap. The challenge for traditional circuits is how to choose the sizes for these transistors. To meet this challenge, this paper presents a lower 6-tap pre-emphasis with several pairs of transistors at output stage to solve this issue. The simulation shows the eye diagram for the same channel improved vertical 8% and horizontal 5%. The pre-emphasis consum...
Abstract—A transmitter pre-emphasis technique for copper cable equalization is presented that is bas...
This work describes the design of a transmitter for a 10 Gbps serial interface to be used in automot...
At high frequency, currents tend to flow on the surface of a metal wire. The higher the data rate, t...
Pre-emphasis is often employed at the transmitter side to counteract the inter symbol interface (ISI...
Pre-emphasis is often employed at the transmitter side to counteract the inter symbol interface (ISI...
A finite impulse response (FIR) 6-tap pre-emphasis (PEP) filter with programmable coefficients was e...
This paper presents a 2-tap 40-Gb/s 4-PAM transmitter with level selection based pre-emphasis. The p...
A novel approach to equalization of high-speed serial links combines both amplitude pre-emphasis to ...
A novel approach to equalization of high-speed serial links combines both amplitude pre-emphasis to ...
This paper presents a 10-Gb/s backplane transmitter with a finite impulse response (FIR) pre-emphasi...
This paper presents a 65-nm CMOS 40-Gb/s PAM4 transmitter with power-efficient pre-emphasis. Switcha...
A 65 nm CMOS 20 Gb/s transmitter with a low-voltage differential signalling (LVDS) driver is present...
The current mode digital-to-analog converter (iDAC) has been widely used in finite-impulse response ...
A 10Gb/s current mode logic (CML) transmitter with multi-tap finite impulse response (FIR) pre-empha...
Abstract - A 10Gb/s current mode logic (CML) transmitter with multi-tap finite impulse response (FIR...
Abstract—A transmitter pre-emphasis technique for copper cable equalization is presented that is bas...
This work describes the design of a transmitter for a 10 Gbps serial interface to be used in automot...
At high frequency, currents tend to flow on the surface of a metal wire. The higher the data rate, t...
Pre-emphasis is often employed at the transmitter side to counteract the inter symbol interface (ISI...
Pre-emphasis is often employed at the transmitter side to counteract the inter symbol interface (ISI...
A finite impulse response (FIR) 6-tap pre-emphasis (PEP) filter with programmable coefficients was e...
This paper presents a 2-tap 40-Gb/s 4-PAM transmitter with level selection based pre-emphasis. The p...
A novel approach to equalization of high-speed serial links combines both amplitude pre-emphasis to ...
A novel approach to equalization of high-speed serial links combines both amplitude pre-emphasis to ...
This paper presents a 10-Gb/s backplane transmitter with a finite impulse response (FIR) pre-emphasi...
This paper presents a 65-nm CMOS 40-Gb/s PAM4 transmitter with power-efficient pre-emphasis. Switcha...
A 65 nm CMOS 20 Gb/s transmitter with a low-voltage differential signalling (LVDS) driver is present...
The current mode digital-to-analog converter (iDAC) has been widely used in finite-impulse response ...
A 10Gb/s current mode logic (CML) transmitter with multi-tap finite impulse response (FIR) pre-empha...
Abstract - A 10Gb/s current mode logic (CML) transmitter with multi-tap finite impulse response (FIR...
Abstract—A transmitter pre-emphasis technique for copper cable equalization is presented that is bas...
This work describes the design of a transmitter for a 10 Gbps serial interface to be used in automot...
At high frequency, currents tend to flow on the surface of a metal wire. The higher the data rate, t...