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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Low-Power Differential Input to Single-Ended Output GaN RF-DAC for RF-Signal Generation
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Low-Power Differential Input to Single-Ended Output GaN RF-DAC for RF-Signal Generation

机译:低功耗差分输入对单端输出GaN RF-DAC进行RF信号生成

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摘要

A low-power differential input to single-ended output digital-to-analog converter (DAC) is presented, which is capable of providing radio frequency (RF)-signals with a data rate of up to 8Gbit/s. A constant direct current (dc) current source is realized as a self-bootstrapping device in the presented 0.25-mu m in-house gallium nitride (GaN) technology. First, measurements with a low-power [1-V peak-peak voltage (V-pp)] differential input signal show the feasibility of switching constant currents with a clock frequency of up to 2 GHz. Furthermore, a 2-b DAC that uses a differential sampling to generate RF-signals is introduced. Measurement results prove the feasibility of synthesizing custom-modulated voltage waveforms with data rates of up to 8 Gbit/s in the sub-6-GHz frequency range.
机译:提出了一个低功耗差分输入到单端输出数模转换器(DAC),其能够提供具有高达8Gbit / s的数据速率的射频(RF)。恒定的直流电流(DC)电流源被实现为呈现的0.25-mu M内镓氮化镓(GaN)技术中的自选式设备。首先,具有低功耗[1-V峰值峰值电压(V-PP)]差分输入信号的测量差分输入信号显示开关恒定电流的可行性,其时钟频率高达2 GHz。此外,引入了使用差分采样以产生RF信号的2-B DAC。测量结果证明了在子6-GHz频率范围内用数据速率合成定制调制电压波形的可行性。

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