• Microelectronics
  • Vol. 51, Issue 3, 319 (2021)
LIANG Zhanrong1, WEI Baolin1, CUI Peng1, XUAN Yan2, XU Weilin1, WEI Xueming1, YUE Hongwei1, and DUAN Jihai1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.13911/j.cnki.1004-3365.200344 Cite this Article
    LIANG Zhanrong, WEI Baolin, CUI Peng, XUAN Yan, XU Weilin, WEI Xueming, YUE Hongwei, DUAN Jihai. A Low Power Hysteresis Comparator Suitable for Energy Harvesting System[J]. Microelectronics, 2021, 51(3): 319 Copy Citation Text show less
    References

    [1] KJELLBY R A, CENKERAMADDI L R, JOHNSRUD T E, et al. Design and prototype implementation of long-range self-powered wireless IoT devices [C] // IEEE iSES. Hyderabad, India. 2018: 215-218.

    [2] MATSUMOTO K, HIROSE T, ASANO H, et al. An ultra-low power active diode using a hysteresis common gate comparator for low-voltage and low-power energy harvesting systems [C] // IFIP/IEEE VLSI-SoC. Verona, Italy. 2018: 196-200.

    [3] WANG A L, CHEN C X, SHI C J R. Design and analysis of an always-on input-biased pA-current sub-nW mV-threshold hysteretic comparator for near-zero energy sensing [J]. IEEE Trans Circ & Syst I: Regu Pap, 2017, 64(9): 2284-2294.

    [4] GOLL B, ZIMMERMANN H. Comparators in nanometer CMOS technology [M]. Berlin: Springer, 2016: 247-250.

    [5] SAITO T, KOMATSU S. A low-voltage hysteresis comparator for low power applications [C] // 24th IEEE ICECS. Batumi, Georgia. 2017: 427-430.

    [6] AL-QADASI M, ALSHEHRI A, AL-ATTAR T, et al. A self-biased Schmitt trigger for low power applications [C] // 25th IEEE ICECS. Bordeaux, France. 2018: 373-376.

    [7] GREGORIAN R. Introduction to CMOS OP-AMPS and comparators [M]. New York: Wiley-Interscience, 1999: 192-198.

    [8] RAJ A, DIVVELA S Y, SINGH G, et al. Trade-off characteristics of hysteresis comparator used in noisy systems [C] // IEEE DevIC. Kalyani, India. 2019: 413-417.

    [9] NANDA S, PANDA A S, MOGANTI G L K. A novel design of a high speed hysteresis-based comparator in 90-nm CMOS technology [C] // IEEE ICIP. Pune, India. 2015: 388-391.

    [10] JIN S W, LI J J, LI Z N, et al. A hysteresis comparator for level-crossing ADC [C] // 29th CCDC. Chongqing, China. 2017: 7753-7757.

    LIANG Zhanrong, WEI Baolin, CUI Peng, XUAN Yan, XU Weilin, WEI Xueming, YUE Hongwei, DUAN Jihai. A Low Power Hysteresis Comparator Suitable for Energy Harvesting System[J]. Microelectronics, 2021, 51(3): 319
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