Ultra Low-Loss Si Substrate for On-Chip UWB GHz Antennas

被引:11
|
作者
Andre, N. [1 ]
Rack, M. [1 ]
Nyssens, L. [1 ]
Gimeno, C. [1 ]
Oueslati, D. [1 ]
Ben Ali, K. [1 ]
Gilet, S. [1 ]
Craeye, C. [1 ]
Raskin, J-P [1 ]
Flandre, D. [1 ]
机构
[1] Catholic Univ Louvain, ICTEAM Inst, B-1348 Louvain La Neuve, Belgium
关键词
Radiofrequency; semiconductor materials substrate; silicon-on-insulator; device-to-device communication; ultra-wideband antennas; RESISTIVITY;
D O I
10.1109/JEDS.2019.2902636
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, measurements and simulations of miniature monopole antennas for ultrawideband (UWB) GHz intra- and inter-chips communication and biomedical applications are presented. Folded designs on four substrates are studied: 1) standard bulk; 2) high-resistivity bulk; 3) ultra low-loss radiofrequency silicon-on-insulator (RF SOI); and 4) quartz. Among the Si-based substrates, RF SOI with its trap-rich sublayer demonstrates the best performances with the lowest RF power losses and centimetric transmission distance between antennas. Transmitted power between two antennas was measured from 0.01 to 20 GHz. Using substrate characterization of resistivity, permittivity, and loss tangent based on measured coplanar waveguide lines on the same substrates, good agreement is obtained between the return losses of simulated antennas on each substrate and numerical solutions, confirming the impact of the substrate properties. An antenna bandwidth of 680 MHz is demonstrated at 6.0 GHz meeting the criterion for UWB radio communications in the 6-10 GHz band.
引用
收藏
页码:393 / 397
页数:5
相关论文
共 50 条
  • [41] Low-loss metal-insulator-semiconductor waveguide with an air core for on-chip integration
    Xiao, Jing
    Liu, Jiansheng
    Zheng, Zheng
    Bian, Yusheng
    Wang, Guanjun
    Li, Shuna
    OPTICS COMMUNICATIONS, 2012, 285 (17) : 3604 - 3607
  • [42] A 3.1 to 5 GHz Low-Loss Planar Filter for MB-OFDM UWB Applications
    Hong, Young-Pyo
    Myoung, Seong-Sik
    Yook, Jong-Gwan
    IEICE TRANSACTIONS ON COMMUNICATIONS, 2011, E94B (04) : 1098 - 1101
  • [43] Design of Novel On-Chip Antennas with Multi-Band for UWB Applications
    Park, Dong-Hee
    Kwak, Yoon-Sik
    FGCN: PROCEEDINGS OF THE 2008 SECOND INTERNATIONAL CONFERENCE ON FUTURE GENERATION COMMUNICATION AND NETWORKING, VOLS 1 AND 2, 2008, : 599 - +
  • [44] On-Chip Reconfigurable Focusing through Low-Loss Phase Change Materials Based Metasurfaces
    Nisar, Muhammad Shemyal
    Iqbal, Shahid
    Zhou, Linjie
    MICROMACHINES, 2022, 13 (12)
  • [45] Low-loss on-chip transmission lines with micro-patterned artificial dielectric shields
    Ma, Y.
    Rejaei, B.
    Zhuang, Y.
    ELECTRONICS LETTERS, 2008, 44 (15) : 913 - 915
  • [46] Low-Loss mm-Wave Transition from On-Chip Microstrip to Rectangular Waveguide
    Cuenca, Daniel Lopez
    Hesselbarth, Jan
    Alavi, Golzar
    2017 12TH EUROPEAN MICROWAVE INTEGRATED CIRCUITS CONFERENCE (EUMIC), 2017, : 325 - 328
  • [47] Low-Loss mm-Wave Transition from On-Chip Microstrip to Rectangular Waveguide
    Cuenca, Daniel Lopez
    Hesselbarth, Jan
    Alavi, Golzar
    2017 47TH EUROPEAN MICROWAVE CONFERENCE (EUMC), 2017, : 1065 - 1068
  • [48] Irredicting the performance of low-loss on-chip inductors realized using carbon nanotube bundles
    Nieuwoudt, Arthur
    Massoud, Yehia
    IEEE TRANSACTIONS ON ELECTRON DEVICES, 2008, 55 (01) : 298 - 312
  • [49] 18.2 GHz differential low noise amplifier for on-chip ultra wide band transceiver
    Haque, Ariful
    Hossain, Mir Saddam
    Ahmed, Shamsuddin
    Rashid, A. B. M. H.
    TENCON 2006 - 2006 IEEE REGION 10 CONFERENCE, VOLS 1-4, 2006, : 1216 - +
  • [50] Integrated low-loss balun for Vivaldi antennas
    Reid, E. W.
    Ortiz-Balbuena, L.
    Moez, K.
    ELECTRONICS LETTERS, 2009, 45 (09) : 442 - 443