ZUO Jiawen,WEN Jiguo.Design of 12-26.5 GHz Ultra-Wideband Miniaturized Power Divider[J].Journal of Chengdu University of Information Technology,2024,39(02):138-141.[doi:10.16836/j.cnki.jcuit.2024.02.002]
12~26.5 GHz超宽带小型化功分器设计
- Title:
- Design of 12-26.5 GHz Ultra-Wideband Miniaturized Power Divider
- 文章编号:
- 2096-1618(2024)02-0138-04
- Keywords:
- ultra-wideband; miniaturization; power divider
- 分类号:
- TN626
- 文献标志码:
- A
- 摘要:
- 针对传统功分器尺寸大、带宽窄并且难以用于集成,基于GaAs工艺设计一款超宽带两路等分功分器芯片。芯片采用两节威尔金森结构,用低通Π模型替换四分之一波长微带分支线,实现了功分器宽频带及小型化,芯片尺寸为1.75 mm×0.86 mm,在12~26.5 GHz工作频率范围内,插入损耗小于3.65 dB,回波损耗小于15 dB,隔离度大于17 dB。此外,芯片采用片上通孔金属化工艺保证良好接地,不需要额外接地措施,使用简单方便,背面采用金属化处理,适用于共晶烧结或导电胶粘结工艺。
- Abstract:
- To address the large size, narrow bandwidth, and difficulty in integrating traditional power dividers, an ultra-wideband two-channel equal power divider chip is designed based on the GaAs process. The chip features a two-section Wilkinson structure and utilizes a low-pass Π model to replace the quarter-wavelength microstrip branch line, realizing the broadband and miniaturization of the power divider. The chip size is 1.75 mm×0.86 mm,within the operating frequency range of12-26.5 GHz, the insertion loss is less than 3.65 dB, the return loss is less than 15 dB,and the isolation degree is greater than 17 dB. In addition, the chip adopts an on chip through-hole metallization process to ensure good grounding without the need for additional grounding measures. It is simple and convenient to use, and its back is metalized, making it suitable for eutectic sintering or conductive adhesive bonding processes.
参考文献/References:
[1] 严浩嘉,基于LTCC技术的超宽带巴伦的研究与设[D].南京:南京理工大学,2019.
[2] 赵克玉,徐福永.微波原理与技术[M].北京:高等教育出版社,2006.
[3] 杨华菊.基于LTCC和薄膜技术的小型化宽带功分器设计技术[D].南京:东南大学,2018.
[4] 黄玉兰.ADS射频电路设计基础与典型应用[M].北京:人民邮电出版社,2014.
[5] 韦雪真,白银超,王朋,等.基于GaAs衬底的功分器芯片设计[J].电声技术,2022,46(10):121-123.
[6] 杨晶晶,雒寒冰,张红英,等.一种超宽带功分器的设计[J].软件,2021,42(2):144-146.
[7] 倪大海,陈坤.基于基片集成同轴线的6~18 GHz功分器设计[J].舰船电子对抗,2020,43(6):110-114.
[8] 周歆杰.基于集成无源器件的小型化宽带功分器的设计[D].杭州:杭州电子科技大学,2022.
[9] 杜姗姗,杨青慧,张怀武.1~18 GHz超宽带功分器的设计[J].压电与声光,2017,39(4):498-500.
相似文献/References:
[1]邓 伟,杜国宏,周 芹,等.基于改进型共面波导UHF RFID小型化抗金属标签设计[J].成都信息工程大学学报,2019,(03):219.[doi:10.16836/j.cnki.jcuit.2019.03.001]
DENG Wei,DU Guohong,DAI Xiaojun,et al.Design of Improved Coplanar Waveguide for UHF RFID Miniaturized Maaetal Skin Tag[J].Journal of Chengdu University of Information Technology,2019,(02):219.[doi:10.16836/j.cnki.jcuit.2019.03.001]
备注/Memo
收稿日期:2023-04-23
基金项目:四川省科技厅重点研发资助项目(2022YFS0033)