微波差分结构优化:应用于双平衡SiGe有源下变频器设计

C. Viallon, T. Parra
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引用次数: 2

摘要

本文研究了高性能微波和毫米波平衡电路的设计。重点介绍了微波差分放大器的设计方法,并介绍了一些改进微波差分放大器平衡性的新颖技术。在此基础上,提出了一种新颖的宽带有源平衡器,并将其应用于K波段双平衡下变频器的射频功率分配器和本LO功率分配器。该转换器还包括一个简化的吉尔伯特混合单元,并且已经开发了3D互连,以防止耦合器/混合器接口的任何平衡损坏。将20 GHz射频单端信号转换为1 GHz中频信号的整体功能已在使用0.25 /spl mu/m SiGe BiCMOS工艺的紧凑单芯片上实现。测量结果显示,转换增益为18 dB,双频带噪声系数为12 dB, OP1dB为-1 dBm。此外,由于其高度平衡的配置,该电路具有出色的端口到端口隔离以及无杂散的中频输出频谱。
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Microwave differential structures optimization: application to a double balanced SiGe active down-converter design
This paper deals with the design of high performance microwave and millimeter wave balanced circuits. It focuses on the design methodology and the description of some original techniques which improve the balance of microwave differential amplifiers. Based on these structures, an original broadband active balun is proposed and applied as RF and LO power splitters of a K band double balanced down-converter. This converter moreover involves a simplified Gilbert mixing cell, and 3D interconnections have been developed to prevent any balance damage at the couplers/mixer interfaces. The overall function, which converts a 20 GHz RF single-ended signal into a 1 GHz IF one, has been implemented on a compact single chip using a 0.25 /spl mu/m SiGe BiCMOS process. Measurements show an 18 dB conversion gain, a 12 dB double side band noise figure and a -1 dBm OP1dB. Moreover, as a consequence of its highly balanced configuration, this circuit features outstanding port-to-port isolations as well as a spurious-free IF output spectrum.
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