A ±0.15% RH Inaccuracy Humidity Sensing System With ±0.44 °C (3σ) Inaccuracy On-Chip Temperature Sensor

被引:5
|
作者
Jun, Jaehoon [1 ]
Shin, Sangmin [1 ]
Kim, Minsung [1 ]
Ahn, Yongjoon [1 ]
Kim, Suhwan [1 ]
机构
[1] Seoul Natl Univ, Dept Elect & Comp Engn, Seoul 08826, South Korea
关键词
Humidity sensor; capacitive-to-voltage converter (C/V Converter); CMOS smart temperature sensor; incremental ADC; delta-sigma (Delta Sigma); ACCELEROMETER; INTERFACE;
D O I
10.1109/JSEN.2020.3017508
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
This article describes a high accurate humidity sensing system. The humidity sensor and the interface circuit of our system-in-package (SiP) are 3-D stacked to optimize integration density with small foot print. A single reconfigurable ADC is utilized for both 3- D stacked humidity and onchip temperature sensors. An incremental Delta Sigma ADC with a reconfigurable Delta Sigma modulator is employed with dual input stages. With the combination of chopping, correlated double sampling (CDS), dynamic element matching (DEM), and system-level chopping techniques, high accuracy sensing system is achieved. The interface circuit, implemented in a standard CMOS 0.18 mu m CMOS technology, occupies an area of 1.24mm2. The SiP sensing system dissipates only 146.5 mu Aand 25 mu A from3.3 V supply and 1.8 V supply, respectively. Its humidity inaccuracy is 0.15 %RH with a resolution of 0.012 %RH, while a temperature inaccuracy is 0.44 degrees C (3 sigma) with a resolution of 0.015 degrees C.
引用
收藏
页码:2115 / 2123
页数:9
相关论文
共 50 条
  • [41] A 40 nW CMOS-Based Temperature Sensor with Calibration Free Inaccuracy within ±0.6 °C
    Chouhan, Shailesh Singh
    Halonen, Kari
    ELECTRONICS, 2019, 8 (11)
  • [42] Parylene C Autofluorescence for On-chip Highest Processing Temperature Sensing
    Zhang, Lingqian
    Liu, Yaoping
    Yang, Fang
    Wang, Wei
    Zhang, Dacheng
    Li, Zhihong
    2015 IEEE 10TH INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS (NEMS), 2015, : 302 - 305
  • [43] A 0.12mm2 Wien-Bridge Temperature Sensor with 0.1°C (3σ) Inaccuracy from-40°C to 180°C
    Pan, Sining
    Gurleyuk, Cagri
    Pimenta, Matheus F.
    Makinwa, Kofi A. A.
    2019 IEEE INTERNATIONAL SOLID-STATE CIRCUITS CONFERENCE (ISSCC), 2019, 62 : 184 - +
  • [44] Low-Power CMOS Smart Temperature Sensor With a Batch-Calibrated Inaccuracy of ±0.25 °C (±3σ) from -70 °C to 130 °C
    Aita, Andre L.
    Pertijs, Michiel A. P.
    Makinwa, Kofi A. A.
    Huijsing, Johan H.
    Meijer, Gerard C. M.
    IEEE SENSORS JOURNAL, 2013, 13 (05) : 1840 - 1848
  • [45] A PNP-Based Temperature Sensor With Continuous-Time Readout and ±0.1 °C (3σ) Inaccuracy From-55 °C to 125 °C
    Toth, Nandor G.
    Tang, Zhong
    Someya, Teruki
    Pan, Sining
    Makinwa, Kofi A. A.
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2025, 60 (02) : 593 - 602
  • [46] A 0.12 mm2 7.4 μW Micropower Temperature Sensor With an Inaccuracy of ±0.2°C (3σ) From-30°C to 125°C
    Souri, Kamran
    Makinwa, Kofi A. A.
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2011, 46 (07) : 1693 - 1700
  • [47] A CMOS temperature sensor and auto-zeroing circuit with inaccuracy of −1/+0.7 °C between −30 to 150 °C
    Abhishek Pandey
    Vijay Nath
    Microsystem Technologies, 2017, 23 : 4211 - 4219
  • [48] On-chip simultaneous sensing of humidity and temperature with a dual-polarization silicon microring resonator
    Ding, Zuoqin
    Liu, Penghao
    Chen, Jingye
    Dai, Daoxin
    Shi, Yaocheng
    OPTICS EXPRESS, 2019, 27 (20) : 28649 - 28659
  • [49] A BJT/Resistor Hybrid CMOS Temperature Sensor With Low 3σ-Inaccuracy at 0-pt Trim
    Lee, Jiseong
    Kwak, Seung Soo
    Im, Yun Chan
    Lee, Hyunjin
    Kim, Yong Sin
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2025, 74
  • [50] A 0.9V Self-Referenced Resistor-Based Temperature Sensor With-0.62/+0.81°C(3σ) Inaccuracy
    Kim, Junho
    Lee, Sinho
    Lee, Minjae
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2023, 70 (12) : 4319 - 4323