首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >An Eight-Element 2-16-GHz Programmable Phased Array Receiver With One, Two, or Four Simultaneous Beams in SiGe BiCMOS
【24h】

An Eight-Element 2-16-GHz Programmable Phased Array Receiver With One, Two, or Four Simultaneous Beams in SiGe BiCMOS

机译:采用SiGe BiCMOS封装的八元件2-16GHz可编程相控阵接收器,具有1、2或4个同步波束

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper presents an eight-element 2-16-GHz programmable phased array (PPA) receiver in a 0.13-mu m SiGe BiCMOS with the reconfigurable number of beams and with the digital beamforming (DBF) capabilities. The eight-element chip can be configured for one, two, or four simultaneous beams or as an element-level DBF receiver. This is achieved using reconfigurable input switching and output combining networks with wideband active switches and combiners. The phased array channel results in a 5-b performance at 3-14 GHz (rms error <5 degrees) and a 4-b performance at 2-16 GHz (rms error <8.5 degrees). Each channel also contains a 3-b variable gain amplifier with 8-dB gain control at 2-16 GHz. The chip results in an 8-12-dB gain at 2-16 GHz (depending on the PPA mode), a noise figure (NF) of 12 dB, and an input (P1 dB) of -20 dBm per channel when all channels are activated. The chip consumes 250 mW per channel, which is competitive knowing its bandwidth and linearity. The DBF function also results in a wideband response with a gain and an NF of 15-16 and 12-13 dB, respectively, and high linearity (input P-1 dB = -16 dBm) at 2-16 GHz. The programmable phased array receiver allows a single chip to be used over S-, C-, X-, and Ku-bands for a variety of applications such as satellite communications and point-to-point links. This results in faster and lower-cost phased array development since the same chip and its field-programmable gate array control can be reused from system to system, but with different antenna and grid spacing. The PPA removes the need to develop a different chip for every application and allows the development of phased arrays at commercial scales.
机译:本文介绍了采用0.13 μm SiGe BiCMOS的8元件2-16 GHz可编程相控阵(PPA)接收器,具有可重构的波束数量和数字波束成形(DBF)功能。八元件芯片可以配置为一个、两个或四个同步波束,或作为元件级 DBF 接收器。这是通过可重新配置的输入开关和输出来实现的,该输入开关和输出将网络与宽带有源开关和合路器相结合。相控阵通道在3-14 GHz(均方根误差<5度)时具有5-b性能,在2-16 GHz(均方根误差<8.5度)时具有4-b性能。每个通道还包含一个 3-b 可变增益放大器,在 2-16 GHz 时具有 8dB 增益控制。当所有通道被激活时,该芯片在 2-16GHz(取决于 PPA 模式)时具有 8-12dB 的增益,噪声系数 (NF) 为 12dB,每通道的输入 (P1dB) 为 -20dBm。该芯片每通道功耗为250 mW,在带宽和线性度方面具有竞争力。DBF功能还可产生宽带响应,增益和NF分别为15-16 dB和12-13 dB,在2-16 GHz时具有高线性度(输入P-1 dB = -16 dBm)。可编程相控阵接收器允许单个芯片在 S、C、X 和 Ku 波段上用于各种应用,例如卫星通信和点对点链路。这导致了更快、更低成本的相控阵开发,因为相同的芯片及其现场可编程门阵列控制可以在系统之间重复使用,但天线和网格间距不同。PPA消除了为每种应用开发不同芯片的需要,并允许在商业规模上开发相控阵。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号