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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A self-biased feedback-controlled pull-down emitter follower for high-speed low-power bipolar logic circuits
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A self-biased feedback-controlled pull-down emitter follower for high-speed low-power bipolar logic circuits

机译:用于高速低功耗双极性逻辑电路的自偏置反馈控制下拉发射极跟随器

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摘要

A feedback-controlled active-pull-down emitter follower that is self-biased at a low steady-state current and allows the collector dotting and emitter dotting is proposed for high-speed low-power bipolar/BiCMOS digital logic circuits. The push-pull operation of this emitter follower is precisely controlled by a feedback mechanism and does not require any extra out-of-phase signal other than the emitter-follower input from the logic stage. Simulation results based on a 0.5-/spl mu/m advanced Si-bipolar technology show that the pull-down delay and drive capability of a loaded 1-mW feedback-controlled pull-down ECL gate are improved to the pull-up levels, 2.7 and 10 times better than those of the conventional resistor-pull-down ECL circuit, respectively.
机译:针对高速低功率双极性/ BiCMOS数字逻辑电路,提出了一种反馈控制的有源下拉发射极跟随器,该跟随器在低稳态电流下自偏置,并允许集电极点和发射极点。该发射极跟随器的推挽操作由反馈机制精确控制,除了逻辑级的发射极跟随器输入外,不需要任何额外的异相信号。基于0.5- / spl mu / m的先进Si双极技术的仿真结果表明,负载1mW反馈控制的下拉ECL栅极的下拉延迟和驱动能力已提高到上拉电平,分别是传统电阻下拉ECL电路的2.7和10倍。

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