Title :
A 6-bit Current-Steering DAC With Compound Current Cells for Both Communication and Rail-to-Rail Voltage-Source Applications
Author :
Ren-Li Chen ; Soon-Jyh Chang
Author_Institution :
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Abstract :
A compound current cell, with n-type, p-type, and bipolar properties, is proposed in this brief and utilized in a current-steering digital-to-analog converter (DAC) to satisfy the application of rail-to-rail voltage sources. In addition, the DAC with cells also has a high-speed fashion. Therefore, this brief presents a 6-bit CMOS current-steering DAC with cells for both communication and rail-to-rail voltage-source applications. Moreover, the effective output voltage step size is improved by appropriately switching these cells and connecting one of the gain control resisters, resulting in an about 6.4-mV step size in a 1.2-V supply. Furthermore, this DAC was implemented in a standard low-power 90-nm 1P9M CMOS technology with the active area of 0.045 mm2. The measured spurious-free dynamic range is more than 36 dB over the Nyquist frequency at 3 GS/s and the DAC consumes 8.32 mW with a near-Nyquist sinusoidal output at the sampling rate of 3 GS/s.
Keywords :
CMOS integrated circuits; digital-analogue conversion; low-power electronics; CMOS current-steering DAC; bipolar property; current-steering DAC; current-steering digital-to-analog converter; gain control resisters; n-type compound current cell; near-Nyquist sinusoidal output; output voltage step size; p-type compound current cell; power 8.32 mW; rail-to-rail voltage sources; size 90 nm; spurious-free dynamic range; standard low-power 1P9M CMOS technology; voltage 6.4 mV; word length 6 bit; CMOS integrated circuits; Compounds; Frequency measurement; IP networks; Resistors; Switches; Voltage measurement; CMOS; current steering; digital-to-analog converter (DAC); rail-to-rail voltage sources;
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2012.2220696