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Low-Loss and Broadband Asymmetric Broadside-Coupled Balun for Mixer Design in 0.18-μm CMOS Technology

机译:适用于0.18μmCMOS技术的混频器设计的低损耗和宽带非对称宽带耦合不平衡巴伦

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This study presents an asymmetric broadside coupled balun with low-loss broadband characteristics for mixer designs. The correlation between balun impedance and a 3-D multilayer CMOS structure are discussed and analyzed. Two asymmetric multilayer meander coupled lines are adopted to implement the baluns. Three balanced mixers that comprise three miniature asymmetric broadside coupled Marchand baluns are implemented to demonstrate the applicability to MOS technology. Both a single and dual balun occupy an area of only 0.06 ${hbox {mm}}^{2}$ . The balun achieves a measured bandwidth of over 120%, an insertion loss of better than 4.1 dB (3 dB for an ideal balun) at the center frequency, an amplitude imbalance of less than 1 dB, and a phase imbalance of less than 5$^{circ}$ from 10 to 60 GHz. The first demonstrated circuit is a $Ku$-band mixer, which is implemented with a miniaturized balun to reduce the chip area by 80%. This 17-GHz mixer yields a conversion loss of better than 6.8 dB with a chip size of 0.24 ${hbox {mm}}^{2}$ . The second circuit is a 15–60-GHz broadband single-balanced mixer, which achieves a conversion loss of better than 15 dB and occupies a chip area of 0.24 ${hbox {mm}}^{2}$ . A three-conductor miniaturized dual balun is then developed for use in the third mixer. This star mixer incorporates two miniature dual baluns to achieve a conversion loss of better than 15 dB from 27 to 54 GHz, and occupies a chip area of 0.34 ${hbox {mm}}^{2}$ .
机译:这项研究提出了一种用于混频器设计的具有低损耗宽带特性的不对称宽边耦合巴伦。讨论并分析了平衡-不平衡变换器阻抗和3-D多层CMOS结构之间的相关性。采用两条不对称的多层曲折耦合线来实现不平衡变压器。实现了包括三个微型非对称宽边耦合Marchand平衡-不平衡变换器的三个平衡混频器,以证明其对MOS技术的适用性。单巴伦和双巴伦都仅占0.06 $ {hbox {mm}} ^ {2} $的面积。平衡-不平衡转换器的测量带宽超过120%,中心频率处的插入损耗优于4.1 dB(理想平衡-不平衡转换器为3 dB),幅度不平衡小于1 dB,相位不平衡小于5 $ ^ {circ} $从10到60 GHz。展示的第一个电路是$ Ku $频带混频器,它采用小型化的巴伦来实现,可将芯片面积减少80%。这款17 GHz混频器的芯片尺寸为0.24 $ {hbox {mm}} ^ {2} $,转换损耗优于6.8 dB。第二个电路是15-60 GHz宽带单平衡混频器,其转换损耗优于15 dB,并且芯片面积为0.24 $ {hbox {mm}} ^ {2} $。然后开发了一种三导体小型双巴伦,用于第三混频器。该星形混频器集成了两个微型双巴伦,在27至54 GHz范围内实现了优于15 dB的转换损耗,并且芯片面积为0.34 $ {hbox {mm}} ^ {2} $。

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