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SCFL static frequency divider using InAlAs/InGaAs/InP HEMTs

机译:SCFL静态分频器使用Inalas / InGaAs / InP HEMTS

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38.6-GHz operation of an SCFL static binary frequency divider is achieved using 0.1-mum-gate InAlAs/InGaAs/InP HEMTs with an InP-recess-etch stopper. This is the highest operation frequency for static frequency dividers using FETs, as far as we know. In addition, propagation delay time of an SCFL inverter estiamted from a ring oscillator is 6.6 ps/gate. The tranmission delay due to interconnection lines is investigated by taking account of travelling wave effects. Delay time analysis for above circults proves that the transmission delay is much larger than the parasitic charging delay and as much as the intrinsic gate delay in such high speed. A comparative study shows the validity of the transmission delay and LC-line approximation, and reveals the importance of shortening signal path length and matching impedance between driver circuits and interconnection lines in ultra-high-speed operation.
机译:38.6-GHz操作SCFL静态分频器的操作使用0.1毫米栅INALAS / INGAAS / INP HEMTS,具有INP凹陷蚀刻塞。据我们所知,这是静态分频器使用FET的最高操作频率。此外,SCFL逆变器的传播延迟时间来自环形振荡器的SCFL逆变器是6.6 PS /栅极。通过考虑到旅行波效应来研究引起的互连线引起的变速延迟。对上述循环的延迟时间分析证明了传输延迟远大于寄生充电延迟,并且如这种高速的固有栅极延迟远大。比较研究表明了传输延迟和LC线近似的有效性,并揭示了缩短信号路径长度和匹配驱动电路和超高速操作中的互连线之间的阻抗的重要性。

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