Packaging of an Amplifier Module for Sub-THz Wireless Transmission Based on Photonics

被引:1
|
作者
Kim, Sooyeon [1 ]
Choi, Chan-Gyu [2 ]
Moon, Sang-Rok [1 ]
Sung, Minkyu [1 ]
Kim, Eon-sang [1 ]
Song, Ho-Jin [2 ]
Jeong, Hyunhak [1 ]
Kim, Seung Hwan [1 ]
Cho, Seung-Hyun [1 ]
机构
[1] Opt Network Res Sect Elect & Telecommun Res Inst, Daejeon, South Korea
[2] Pohang Univ Sci & Technol POSTECH, Grad Sch Elect, Pohang, South Korea
来源
关键词
Amplifier; Packaging; Sub-THz; Waveguide Module; WAVE-GUIDE; TRANSITIONS; CHIP;
D O I
10.26866/jees.2023.6.r.192
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 study, we have developed an amplifier waveguide module suitable for broadband communication in the sub-THz band. To achieve a waveguide module with excellent gain flatness characteristics, the effects of errors during the packaging procedures of the waveguide module and the space occupied by the bondwire were analyzed through an electromagnetic simulation. Furthermore, a photonics-based sub-THz wireless link with a carrier frequency of 288 GHz was established using a packaged amplifier module. The amplifier module was placed at the output of the sub-THz transmitter based on a uni-traveling-carrier photodiode and at the input of the sub-THz receiver. The maximum gain and 3 dB bandwidth of the amplifier module are 17.3 dB and 39 GHz, respectively. With this setup, we successfully transmitted a 100-Gbps 16-QAM modulated signal, employing a carrier frequency of 288 GHz, across a wireless distance of 100 m.
引用
收藏
页码:470 / 481
页数:12
相关论文
共 50 条
  • [41] Sub-THz Antenna for High-Speed Wireless Communication Systems
    Vettikalladi, Hamsakutty
    Sethi, Waleed Tariq
    Bin Abas, Ahmad Fauzi
    Ko, Wonsuk
    Alkanhal, Majeed A.
    Himdi, Mohamed
    INTERNATIONAL JOURNAL OF ANTENNAS AND PROPAGATION, 2019, 2019
  • [42] A Review of Circuits and Systems for Advanced Sub-THz Transceivers in Wireless Communication
    Chen, Runzhou
    Yan, Boxun
    Chang, Mau-Chung Frank
    ELECTRONICS, 2025, 14 (05):
  • [43] 6G Indoor Network Enabled by Photonics- and Electronics-Based sub-THz Technology
    Moon, Sang-Rok
    Kim, Eon-Sang
    Sung, Minkyu
    Rha, Hae Young
    Lee, Eui Su
    Lee, IL-Min
    Park, Kyung Hyun
    Lee, Joon Ki
    Cho, Seung-Hyun
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2022, 40 (02) : 499 - 510
  • [44] Phase Noise Investigation of Multicarrier Sub-THz Wireless Transmission System Based on an Injection-Locked Gain-Switched Laser
    Shao, Tong
    Shams, Haymen
    Anandarajah, Prince M.
    Fice, Martyn J.
    Renaud, Cyril C.
    van Dijk, Frederic
    Seeds, Alwyn J.
    Barry, Liam P.
    IEEE TRANSACTIONS ON TERAHERTZ SCIENCE AND TECHNOLOGY, 2015, 5 (04) : 590 - 597
  • [45] Wiener Interpolation Filter for Phase Noise Estimation in sub-THz Transmission
    Bello, Yaya
    Dore, Jean -Baptiste
    Demmer, David
    2023 IEEE 97TH VEHICULAR TECHNOLOGY CONFERENCE, VTC2023-SPRING, 2023,
  • [46] LSTM-Based Multi-Link Prediction for mmWave and Sub-THz Wireless Systems
    Shah, Syed Hashim Ali
    Sharma, Manali
    Rangan, Sundeep
    ICC 2020 - 2020 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2020,
  • [47] Towards Power Efficient 6G Sub-THz Transmission
    Halbauer, Hardy
    Wild, Thorsten
    2021 JOINT EUROPEAN CONFERENCE ON NETWORKS AND COMMUNICATIONS & 6G SUMMIT (EUCNC/6G SUMMIT), 2021, : 25 - 30
  • [48] Studies on the transmission of sub-THz waves in magnetized inhomogeneous plasma sheath
    Yuan, Kai
    Shen, Linfang
    Yao, Ming
    Deng, Xiaohua
    Chen, Zhou
    Hong, Lujun
    PHYSICS OF PLASMAS, 2018, 25 (01)
  • [49] Miniaturized sub-THz Radiometer Module Design Utilizing Low-Loss Waveguide Packaging and Fully-Integrated Radiometer Chip
    Bi, Xiaojun
    Wang, Zirui
    2018 11TH UK-EUROPE-CHINA WORKSHOP ON MILLIMETER WAVES AND TERAHERTZ TECHNOLOGIES (UCMMT2018), VOL 1, 2018,
  • [50] Flexible Millimeter-Wave Carrier Generation up to the Sub-THz With Silicon Photonics Filters
    Porzi, Claudio
    Falconi, Fabio
    Sorel, Marc
    Ghelfi, Paolo
    Bogoni, Antonella
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2021, 39 (24) : 7689 - 7697