Analysis and design of transformer-based CMOS ultra-wideband millimeter-wave circuits for wireless applications: a review

被引:0
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作者
Yi-ming Yu
Kai Kang
机构
[1] University of Electronic Science and Technology of China,School of Electronic Science and Engineering
关键词
CMOS; Millimeter-wave (mm-Wave); Ultra-wideband; Transformer; Low-noise amplifier; Injection-locked frequency tripler; Injection-locked frequency divider; Mixer; TN92; TN43;
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中图分类号
学科分类号
摘要
With a lot of millimeter-wave (mm-Wave) applications being issued, wideband circuits and systems have attracted much attention because of their strong applicability and versatility. In this paper, four transformer-based ultra-wideband mm-Wave circuits demonstrated in CMOS technologies are reviewed from theoretical analysis, implementation, to performance. First, we introduce a mm-Wave low-noise amplifier with transformer-based Gm-boosting and pole-tuning techniques. It achieves wide operating bandwidth, low noise figure, and good gain performance. Second, we review an injection-current-boosting technique which can significantly increase the locking range of mm-Wave injection-locked frequency triplers. Based on the injection-locked principle, we also discuss an ultra-wideband mm-Wave divider with the transformer-based high-order resonator. Finally, an E-band up-conversion mixer is presented; using the two-path transconductance stage and transformer-based load, it obtains good linearity and a large operating band.
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页码:97 / 115
页数:18
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