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首页> 外文期刊>Circuits, Devices & Systems, IET >Six-bit 2.7-GS/s 5.4-mW Nyquist complementary metal-oxide semiconductor digital-to-analogue converter for ultra-wideband transceivers
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Six-bit 2.7-GS/s 5.4-mW Nyquist complementary metal-oxide semiconductor digital-to-analogue converter for ultra-wideband transceivers

机译:适用于超宽带收发器的六位2.7-GS / s 5.4mW奈奎斯特互补金属氧化物半导体数模转换器

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摘要

This study presents a 6-bit 2.7 GS/s low-power digital-to-analogue converter (DAC) for ultra-wideband transceivers. A 2(thermometer) 4(binary) segmented architecture is chosen to reach a compromise between the current source cell s area and the operating speed of the thermometer decoder. In addition, the proposed pseudo-thermometer structure improves the DAC s dynamic performance. The bipolar current source cell and latch clock delay technique are employed to reduce the power consumption in the analogue and digital parts, respectively. Moreover, the compact de-glitch latch presented in this study simplifies the conventional latch design and layout. This DAC was implemented in a standard 0.13 m 1P8M complementary metal-oxide semiconductor technology with the active area of 0.0585 mm2. The measured differential non-linearity and integral non-linearity are less than 0.09 and 0.11 least significant bit, respectively. The measured spurious-free dynamic range is more than 36 dB over the Nyquist frequency at the sampling frequency of 2.7 GHz. The DAC consumes 5.4 mW with a near-Nyquist sinusoidal output at 2.7 GS/s, resulting in a better figure of merit of 31 fJ/conversion-step than other published arts.
机译:这项研究提出了一种用于超宽带收发器的6位2.7 GS / s低功耗数模转换器(DAC)。选择2(温度计)4(二进制)分段架构以在当前源单元的面积和温度计解码器的工作速度之间达成折衷。此外,拟议的伪温度计结构改善了DAC的动态性能。采用双极电流源单元和锁存时钟延迟技术分别降低了模拟和数字部分的功耗。此外,本研究中介绍的紧凑型去毛刺闩锁简化了传统闩锁的设计和布局。该DAC采用标准的0.13 m 1P8M互补金属氧化物半导体技术实现,有效面积为0.0585 mm 2 。测得的差分非线性和积分非线性分别小于0.09和0.11最低有效位。在2.7 GHz的采样频率下,在奈奎斯特频率上测得的无杂散动态范围大于36 dB。 DAC的功耗为5.4 mW,输出功率为2.7 GS / s,接近奈奎斯特正弦曲线,与其他已发布的技术相比,其品质因数更好,为31 fJ /转换步。

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