首页> 外文会议>IEEE International Solid- State Circuits Conference >26.2 A 0.08mm2 25.5-to-29.9GHz Multi-Resonant-RLCM-Tank VCO Using a Single-Turn Multi-Tap Inductor and CM-Only Capacitors Achieving 191.6dBc/Hz FoM and 130kHz 1/f3 PN Corner
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26.2 A 0.08mm2 25.5-to-29.9GHz Multi-Resonant-RLCM-Tank VCO Using a Single-Turn Multi-Tap Inductor and CM-Only Capacitors Achieving 191.6dBc/Hz FoM and 130kHz 1/f3 PN Corner

机译:26.2使用单匝多抽头电感器和仅CM电容器的0.08mm2 25.5至29.9GHz多谐振RLCM槽VCO,可实现191.6dBc / Hz FoM和130kHz 1 / f3 PN角

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VCO designs have evolved from single-resonant LC-tank VCOs to the recent multiresonant RLCM (Resistor-Inductor-Capacitor-Mutual-inductance) tank VCOs that allow reshaping of VCO phase-noise (PN) impulse sensitivity function (ISF). Two recent RF VCOs [1,2] exploited the 2nd-harmonic resonance to impede the flicker-noise upconversion, achieving an FoM@1MHz of up to 195.4dBc/Hz (Fig. 26.2.1). Specifically, the RLCM tank in [1] tailors a multi-turn inductor with a positive mutual coupling factor (k>0) to generate an implicit common-mode (CM) resonance at 2× the oscillation frequency (FOSC). Yet, the CM resonance has a quality factor (Q) that is ~50% of its differential-mode (DM) counterpart, due to partial magnetic-flux cancellation within the multi-turn inductor. In [2], the transformer-based RLCM tank offers two intrinsically high-Q resonances at FOSC and 2FOSC that can effectively suppress PN in the 1/f2-to-1/f3 PN regions. Still, when migrating to mm-waves both [1] and [2] face their respective challenges. A large fixed DM capacitor (CDM) for fulfilling the DM-to-CM capacitance ratio of [1] largely limits the tuning range (TR) at mm-wave. For [2], its high-ratio multiturn transformer cannot maintain its Q at mm-waves.
机译:VCO设计已从单谐振LC储罐VCO演变到最近的多谐振RLCM(电阻器-电感器-电容器-互感)储能VCO,从而可以重塑VCO的相位噪声(PN)脉冲灵敏度功能(ISF)。最近有两个RF VCO [1,2]利用了2个 nd 谐共振以阻止闪烁噪声上转换,从而实现FoM @ 1MHz 高达195.4dBc / Hz(图26.2.1)。具体来说,文献[1]中的RLCM储能装置设计了一个具有正互耦合因子(k> 0)的多匝电感器,以2倍于振荡频率(F的频率)产生隐式共模(CM)谐振。 OSC )。然而,由于多匝电感器内的部分磁通抵消,CM谐振的品质因数(Q)约为其差模(DM)的50%。在[2]中,基于变压器的RLCM储能在F处提供两个固有的高Q谐振。 OSC 和2F OSC 可以有效地将PN抑制在1 / f 2 -to-1 / f 3 PN区域。但是,当迁移到毫米波时,[1]和[2]都面临着各自的挑战。大型固定DM电容器(C DM )以实现[1]的DM与CM电容比,在很大程度上限制了毫米波的调谐范围(TR)。对于[2],其高比率多匝变压器无法在毫米波处维持其Q。

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