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Very high-speed and high-accuracy current-steering CMOS D/A converter using a novel 3-D decoder

机译:使用新型3D解码器的超高速,高精度电流控制CMOS D / A转换器

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In this paper a 10-bit 1.2-GSample/s Nyquist current-steering CMOS digital-to-analog converter (DAC) is presented. Segmentation (90%) has been used to get the best DNL and reduce glitch energy. This segmentation ratio guarantees the monotonicity. Higher performance is achieved using a novel 3-D thermometer decoding method which reduces the area, power consumption, and the number of control signals of the digital section. Simulation results show that the spurious-free-dynamic-range (SFDR) in Nyquist rate is better than 65 dB for sampling frequency up to 1.2-GSample/s. The analog voltage supply is 3.3 V while the digital part of the chip operates at only 2.4 V. Total power consumption in Nyquist rate measurement is 149 mW. The chip has been processed in a standard 0.35 μm CMOS technology. Active area of chip is 1.97 mm2.
机译:本文提出了一种10位1.2GSample / s奈奎斯特电流控制CMOS数模转换器(DAC)。分割(90%)已用于获得最佳DNL并减少毛刺能量。该分割率保证了单调性。使用新颖的3-D温度计解码方法可实现更高的性能,该方法可减少面积,降低功耗并减少数字部分的控制信号数量。仿真结果表明,对于高达1.2-GSample / s的采样频率,奈奎斯特速率的无杂散动态范围(SFDR)优于65 dB。模拟电压电源为3.3 V,而芯片的数字部分仅以2.4 V工作。奈奎斯特速率测量的总功耗为149 mW。该芯片已采用标准的0.35μmCMOS技术进行处理。芯片的有效面积为1.97 mm 2

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