A 4-Bit 5GS/s Flash A/D Converter in 0.18μm CMOS
Samad Sheikhaei, Shahriar Mirabbasi, A. Ivanov
Abstract
Samad Sheikhaei, Shahriar Mirabbasi, A. Ivanov
Abstract
A 4-bit 5 GS/s flash analog-to-digital converter (ADC) is designed and simulated in a 0.18 /spl mu/m CMOS technology. Low-swing operation both in the analog and the digital circuitry results in high-speed low power operation. The ADC dissipates 70 mW power from a 1.8 V supply while operating at 5 GHz. Offset averaging is used to minimize the effect of comparator offsets. Simulation results show that offset voltages with 67 mV standard deviation (i.e., 1 LSB) can be tolerated. Static INL and DNL errors are 0.34 LSB and 0.24 LSB respectively, and the ENOB is 3.65 bits. The simulation results of this non-time-interleaved flash ADC demonstrates a significant improvement in terms of power and area compared to those of previously reported ADCs.
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A 4-bit 5 GS/s flash analog-to-digital converter (ADC) is designed and simulated in a 0.18 /spl mu/m CMOS technology. Low-swing operation both in the analog and the digital circuitry results in high-speed low power operation. The ADC dissipates 70 mW power from a 1.8 V supply while operating at 5 GHz. Offset averaging is used to minimize the effect of comparator offsets. Simulation results show that offset voltages with 67 mV standard deviation (i.e., 1 LSB) can be tolerated. Static INL and DNL errors are 0.34 LSB and 0.24 LSB respectively, and the ENOB is 3.65 bits. The simulation results of this non-time-interleaved flash ADC demonstrates a significant improvement in terms of power and area compared to those of previously reported ADCs.
Key concepts: Flash ADC, Effective number of bits, Comparator, Least significant bit, CMOS, 4-bit, Flash (photography), Digital-to-analog converter