Novel wireless temperature meter based on quartz tuning-fork temperature sensor

被引:0
|
作者
Xu, J [1 ]
Li, X [1 ]
Ai, H [1 ]
Li, LW [1 ]
机构
[1] Harbin Univ Sci & Technol, Coll Automat, Harbin 150080, Peoples R China
关键词
D O I
暂无
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Wireless monitoring of temperature is becoming an important requirement for many industries. A novel wireless temperature instrument based on low-power and low-cost quartz tuning fork sensor has been developed for on-site monitoring the temperature. and widely used by temperature-controlled transport to determine time-temperature history during typical processes. This type of wireless temperature meter is composed of three part s: a low power consumption, high reliability, high-precision and full-digital frequency output signal quartz tuning fork sensor, an 8-bit CMOS microcontroller PIC16F877 and a radio frequency (RF) module for sending detected signals to a base station through wireless communication. All the modules are hybrid integrated in a printed circuit board (PCB) and low-power consumption below 15mW has been achieved. Experimentally, the wireless temperature meter for use the temperature from -20 degrees C to 110 degrees C with accuracies of 0.05 degrees C and with a resolution of 0.01 degrees C.
引用
收藏
页码:3749 / 3752
页数:4
相关论文
共 50 条
  • [21] Design, modeling and simulation of quartz crystal tuning fork resonators based micro temperature sensor
    Xu Jun
    Chi Rongqiang
    You Bo
    Li Xin
    Wang Haiying
    Ai Hong
    THIRD INTERNATIONAL SYMPOSIUM ON PRECISION MECHANICAL MEASUREMENTS, PTS 1 AND 2, 2006, 6280
  • [22] Analytical and finite element method design of quartz tuning fork temperature sensor
    Xu, Jun
    Ai, Hong
    Zhong, Weifeng
    You, Bo
    Li, Xin
    DYNAMICS OF CONTINUOUS DISCRETE AND IMPULSIVE SYSTEMS-SERIES B-APPLICATIONS & ALGORITHMS, 2006, 13E : 3492 - 3499
  • [23] Quartz Tuning-Fork Based Carbon Nanotube Transfer into Quantum Device Geometries
    Blien, Stefan
    Steger, Patrick
    Albang, Alexander
    Paradiso, Nicola
    Huettel, Andreas K.
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2018, 255 (12):
  • [24] Measurement of silicone rubber hardness by use of a quartz-crystal tuning-fork tactile sensor
    Itoh, H
    Mihara, K
    Yamada, Y
    Ishikawa, K
    PROCEEDINGS OF THE 2004 IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM AND EXPOSITION, 2005, : 571 - 574
  • [25] A Resonance Temperature-Sensing Structure Based on Quartz Tuning Fork
    Xin, Li
    Jun, Xu
    Hui, Li
    Zhou, Liu
    2016 10TH INTERNATIONAL CONFERENCE ON SENSING TECHNOLOGY (ICST), 2016,
  • [26] Quartz tuning-fork oscillations in He II and drag coefficient
    Gritsenko, I. A.
    Zadorozhko, A. A.
    Neoneta, A. S.
    Chagovets, V. K.
    Sheshin, G. A.
    LOW TEMPERATURE PHYSICS, 2011, 37 (07) : 551 - 556
  • [27] Development of an ultra-small smart temperature sensor with quartz tuning fork resonators
    Xu, Jun
    Hu, Lihua
    Ma, Jing
    Cui, Juan
    You, Bo
    MULTI-FUNCTIONAL MATERIALS AND STRUCTURES, PTS 1 AND 2, 2008, 47-50 : 769 - 772
  • [28] A paper-quality monitor using a quartz-crystal tuning-fork tactile sensor
    Itoh, H
    Nomura, M
    Katakura, N
    1998 IEEE ULTRASONICS SYMPOSIUM - PROCEEDINGS, VOLS 1 AND 2, 1998, : 559 - 562
  • [29] Microfabricated tuning fork temperature and infrared sensor
    Tsow, Francis
    Tao, Nongjian
    APPLIED PHYSICS LETTERS, 2007, 90 (17)
  • [30] Fabrication of a quartz tuning-fork probe with a sharp tip for AFM systems
    Hida, H.
    Shikida, M.
    Fukuzawa, K.
    Murakami, S.
    Sato, Ke.
    Asaumi, K.
    Iriye, Y.
    Sato, Ka.
    SENSORS AND ACTUATORS A-PHYSICAL, 2008, 148 (01) : 311 - 318