2010•Unpublished venueRequires access

A 1.8-V 12-bit 250-MS/s 25-mW self-calibrated DAC

Jen-Hung Chi, S. Chu, Tsung‐Heng Tsai

Open publisher page 21 citations

Abstract

A 12-bit current-steering self-calibrated digital-to-analog converter (DAC) is presented. Mismatches among the current sources are compensated by the calibration scheme, so that the DAC linearity is ensured and the active area is small at the same time. This digital-to-analog data converter was implemented in a 0.18μm CMOS process, and the active area is smaller than 0.8 mm2. After calibration, the measured differential and integral nonlinearity are both within ±0.5 LSB. At 250-MSample/s, the SFDR is better than 71.68 dB when the input signal is 1-MHz. This DAC dissipates 25mW from a 1.8-V supply.

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What this paper is about

A 12-bit current-steering self-calibrated digital-to-analog converter (DAC) is presented. Mismatches among the current sources are compensated by the calibration scheme, so that the DAC linearity is ensured and the active area is small at the same time. This digital-to-analog data converter was implemented in a 0.18μm CMOS process, and the active area is smaller than 0.8 mm2. After calibration, the measured differential and integral nonlinearity are both within ±0.5 LSB. At 250-MSample/s, the SFDR is better than 71.68 dB when the input signal is 1-MHz. This DAC dissipates 25mW from a 1.8-V supply.

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Available abstract

A 12-bit current-steering self-calibrated digital-to-analog converter (DAC) is presented. Mismatches among the current sources are compensated by the calibration scheme, so that the DAC linearity is ensured and the active area is small at the same time. This digital-to-analog data converter was implemented in a 0.18μm CMOS process, and the active area is smaller than 0.8 mm2. After calibration, the measured differential and integral nonlinearity are both within ±0.5 LSB. At 250-MSample/s, the SFDR is better than 71.68 dB when the input signal is 1-MHz. This DAC dissipates 25mW from a 1.8-V supply.

Key concepts: Differential nonlinearity, Spurious-free dynamic range, Integral nonlinearity, Linearity, Calibration, 12-bit, Least significant bit, CMOS

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