TY - JOUR
T1 - A study on a diode-bridge type differential capacitance detection circuit
AU - Matsuo, Takahiro
AU - Pawłat, Joanna
AU - Liang, Jinxing
AU - Kunitomo, Ken
AU - Ueda, Toshitsugu
PY - 2006/7/31
Y1 - 2006/7/31
N2 - Differential capacitance sensor with movable electrodes is usually applied for accelerometers, pressure gauges, etc. because of its high sensitivity and resolution. Two axis inclination sensor with differential capacitance structure using MEMS (Micro Electro Mechanical Systems) technology has recently been designed for industrial and environmental purposes. The initial capacitance of the sensor should be very low, as few pF, therefore, a C-V converter circuit, which is able to detect very small capacitance variations is required. In this study, the particular principle of a "diode-bridge type differential capacitance detection circuit" has been analyzed. After the mathematical simulations performed by using PSpice simulator, the detection of the capacitance variations in fF order resolution are considered.
AB - Differential capacitance sensor with movable electrodes is usually applied for accelerometers, pressure gauges, etc. because of its high sensitivity and resolution. Two axis inclination sensor with differential capacitance structure using MEMS (Micro Electro Mechanical Systems) technology has recently been designed for industrial and environmental purposes. The initial capacitance of the sensor should be very low, as few pF, therefore, a C-V converter circuit, which is able to detect very small capacitance variations is required. In this study, the particular principle of a "diode-bridge type differential capacitance detection circuit" has been analyzed. After the mathematical simulations performed by using PSpice simulator, the detection of the capacitance variations in fF order resolution are considered.
KW - A Diode-bridge Type C-V Converter
KW - Differential Capacitance
KW - MEMS
KW - Two Axis Inclination Sensor
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M3 - Article
AN - SCOPUS:33746278697
SN - 1203-8407
VL - 9
SP - 156
EP - 159
JO - Journal of Advanced Oxidation Technologies
JF - Journal of Advanced Oxidation Technologies
IS - 2
ER -