A CMOS Single-Chip Transceiver Design for 700/800/900MHz Wireless Sensor Network Applications

被引:0
|
作者
Kim, Eun-Hee [1 ]
Kang, Hoyong [1 ]
Pyo, Cheol Sig [1 ]
Kim, Changwan [2 ]
机构
[1] Elect & Telecommun Res Inst, IoT Convergence Res Grp, Daejeon, South Korea
[2] Dong A Univ, Dept Elect Engn, Busan, South Korea
关键词
CMOS single-chip RFIC; low-power RFIC design; WSN application; Sub-GHz wireless transceiver;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents a low-power CMOS single-chip transceiver for sub-GHz wireless sensor network applications, which complies IEEE 802.15.4-2012 standard. It embodies RF transceiver section based on direct-conversion transmitter and low-IF receiver architecture. To validate its operation, the prototype is fabricated in 0.18um GF standard CMOS process. It shows +5dBm TX output power and -85dBm RX sensitivity. Furthermore, RX dynamic range reaches up to 90dB. The transceiver consumes 26mA and 1 8mA for TX and RX operations under 1.8V supply voltage, respectively. It occupies 10mm(2) active area for the RF transceiver section.
引用
收藏
页码:699 / 700
页数:2
相关论文
共 49 条
  • [21] A single-chip tri-band (2100, 1900, 850/800 MHz) WCDMA/HSDPA cellular transceiver
    Kaczman, DL
    Shah, M
    Godambe, N
    Alam, M
    Guimaraes, H
    Han, LM
    Rachedine, M
    Cashen, DL
    Getka, WE
    Dozier, C
    Shepherd, WP
    Couglar, K
    [J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2006, 41 (05) : 1122 - 1132
  • [22] A single-chip 900 MHz CMOS receiver front-end with a high performance low-IF topology
    Crols, J
    Steyaert, MSJ
    [J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 1995, 30 (12) : 1483 - 1492
  • [23] A 400MHz Single-Chip CMOS Transceiver for Long Range High Definition Video Transmission in UAV Application
    Huang Shuigen
    Lin Min
    Wang Ruoyu
    Chen Zhuojun
    Dong Yemin
    [J]. CHINESE JOURNAL OF ELECTRONICS, 2020, 29 (03) : 554 - 562
  • [24] A 400MHz Single-Chip CMOS Transceiver for Long Range High Definition Video Transmission in UAV Application
    HUANG Shuigen
    LIN Min
    WANG Ruoyu
    CHEN Zhuojun
    DONG Yemin
    [J]. Chinese Journal of Electronics, 2020, 29 (03) : 554 - 562
  • [25] A single-chip dual-band 0.25μm CMOS transceiver for 802.11 a/b/g wireless LAN
    Kuo, Ming-Ching
    Lee, Yi-Bin
    Kao, Shiau-Wen
    Chen, Chih-Hung
    Ko, Chun-Lin
    Yang, Tzu-Yi
    [J]. 2005 IEEE ASIAN SOLID-STATE CIRCUITS CONFERENCE, PROCEEDINGS OF TECHNICAL PAPERS, 2005, : 261 - 264
  • [26] A Low-Power CMOS Transceiver in 130 nm for Wireless Sensor Network Applications
    A. R. Behrouj
    A. R. Ghorbani
    M. B. Ghaznavi-Ghoushchi
    M. Jalali
    [J]. Wireless Personal Communications, 2019, 106 : 1015 - 1039
  • [27] A Single-Chip Tri-Band Low-Noise Amplifier for Cellular Transceiver in the Wireless Applications
    Akhchaf, Ibtissam
    Khoulji, Samira
    Essaaidi, Mohamed
    Kerkeb, Mohamed Larbi
    [J]. PROCEEDINGS OF 2012 INTERNATIONAL CONFERENCE ON COMPLEX SYSTEMS (ICCS12), 2012, : 402 - 406
  • [28] A Fully Integrated Single-Chip 60GHz CMOS Transceiver with Scalable Power Consumption for Proximity Wireless Communication
    Saigusa, Shigehito
    Mitomo, Toshiya
    Okuni, Hidenori
    Hosoya, Masahiro
    Sai, Akihide
    Kawai, Shusuke
    Wang, Tong
    Furuta, Masanori
    Shiraishi, Kei
    Ban, Koichiro
    Horikawa, Seiichiro
    Tandai, Tomoya
    Matsuo, Ryoko
    Tomizawa, Takeshi
    Hoshino, Hiroaki
    Matsuno, Junya
    Tsutsumi, Yukako
    Tachibana, Ryoichi
    Watanabe, Osamu
    Itakura, Tetsuro
    [J]. 2014 IEEE INTERNATIONAL SOLID-STATE CIRCUITS CONFERENCE DIGEST OF TECHNICAL PAPERS (ISSCC), 2014, 57 : 348 - +
  • [29] Design of a single-chip pH sensor using a conventional 0.6-μm CMOS process
    Hammond, PA
    Ali, D
    Cumming, DRS
    [J]. IEEE SENSORS JOURNAL, 2004, 4 (06) : 706 - 712
  • [30] A 2.2-V operation, 2.4-GHz single-chip GaAs MMIC transceiver for wireless applications
    Yamamoto, K
    Moriwaki, T
    Fujii, T
    Otsuji, J
    Miyashita, M
    Miyazaki, Y
    Nishitani, K
    [J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 1999, 34 (04) : 502 - 512