Capacitive Low Temperature Co-Fired Ceramic Fluidic Sensor

被引:1
|
作者
Radosavljevic, Goran [1 ]
Pochia, Mariana Madalina [2 ]
Rosca, Daniela [2 ]
Blaz, Nelu [3 ]
Maric, Andrea [3 ]
机构
[1] Vienna Univ Technol, Inst Sensor & Actuator Syst, A-1040 Vienna, Austria
[2] Univ Craiova, Fac Elect Engn, Craiova, Romania
[3] Univ Novi Sad, Dept Elect, Fac Tech Sci, Novi Sad 2100, Serbia
关键词
Fluidic Sensor; LTCC; Micro-Channels; Capacitive Effect; LTCC-TECHNOLOGY;
D O I
10.1166/sl.2013.2933
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper proposes a fully embedded LTCC (Low Temperature Co-fired Technology) fluidic sensor based on capacitive effect. The proposed capacitive fluidic sensor is built up by ten layers carrying holes and a micro-channel. The micro-channel is placed between capacitor electrodes which are screen printed and embedded inside the substrate. The operating principle of this sensor is based on the measurement of capacitance variations evoked with different permittivity values of induced fluids. By inserting various fluids in the micro-channel, capacitance of the sensor changes according to different permittivity values. Detection of various fluids has been performed. Sensor was modeled and its performances were estimated through analytical calculations prior to its fabrication. Experimentally attained results are compared with electrical characteristics determined by and good agreement is achieved. Beside that sensor dependences on frequency were determined by direct measurements of capacitance in the frequency range of interest, where linearity of the capacitance was observed.
引用
收藏
页码:646 / 649
页数:4
相关论文
共 50 条
  • [31] Diffusivity of silver ions in the low temperature co-fired ceramic (LTCC) substrates
    Hsi, Chi-Shiung
    Chen, Yung-Ren
    Hsiang, Hsing-I
    JOURNAL OF MATERIALS SCIENCE, 2011, 46 (13) : 4695 - 4700
  • [32] Diffusivity of silver ions in the low temperature co-fired ceramic (LTCC) substrates
    Chi-Shiung Hsi
    Yung-Ren Chen
    Hsing-I Hsiang
    Journal of Materials Science, 2011, 46 : 4695 - 4700
  • [33] Development of a low-temperature co-fired ceramic solid propellant microthruster
    Zhang, KL
    Chou, SK
    Ang, SS
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2005, 15 (05) : 944 - 952
  • [34] Microstructure and Phase Development of Buried Resistors in Low Temperature Co-fired Ceramic
    Mark A. Rodriguez
    Pin Yang
    Paul Kotula
    Duane Dimos
    Journal of Electroceramics, 2000, 5 : 217 - 223
  • [35] Fine structuration of low-temperature co-fired ceramic (LTCC) microreactors
    Jiang, Bo
    Haber, Julien
    Renken, Albert
    Muralt, Paul
    Kiwi-Minsker, Lioubov
    Maeder, Thomas
    LAB ON A CHIP, 2015, 15 (02) : 563 - 574
  • [36] High temperature co-fired ceramic (HTCC) packages
    Minehan, William T.
    Brown, Doug
    Adams, Kyle
    Shafer, Tyler
    Advancing Microelectronics, 2016, 43 (06): : 16 - 19
  • [37] Piezoelectric active mirror suspension embedded into Low Temperature Co-fired Ceramic
    Sobocinski, Maciej
    Leinonen, Mikko
    Juuti, Jari
    Jantunen, Heli
    2011 INTERNATIONAL SYMPOSIUM ON APPLICATIONS OF FERROELECTRICS (ISAF/PFM) AND 2011 INTERNATIONAL SYMPOSIUM ON PIEZORESPONSE FORCE MICROSCOPY AND NANOSCALE PHENOMENA IN POLAR MATERIALS, 2011,
  • [38] Fabrication of an Inductively Coupled Plasma Antenna in Low Temperature Co-Fired Ceramic
    Taff, Jesse
    Yates, Mallory
    Lee, Carl
    Shawver, Sonya
    Browning, Jim
    Plumlee, Don
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2013, 10 (02) : 321 - 329
  • [39] Study on the polishing mechanism of low temperature co-fired ceramic for microsystem application
    Zhu, Jijun
    Yuan, Julong
    Ang, Simon S.
    ADVANCES IN MACHINING AND MANUFACTURING TECHNOLOGY IX, 2008, 375-376 : 47 - +
  • [40] Screen printing design of experiments for low temperature co-fired ceramic substrates
    Berry, CW
    Jacobson, RY
    1999 INTERNATIONAL SYMPOSIUM ON MICROELECTRONICS, PROCEEDINGS, 1999, 3906 : 538 - 543