Title :
A High-Performance Monolithic Triaxial High-G Accelerometer
Author :
Dong, Peitao ; Wu, Xuezhong ; Li, Shengyi
Author_Institution :
Nat. Univ. of Defense Technol., Changsha
Abstract :
A high-performance monolithic triaxial piezoresistive accelerometer is developed for 50000-100000g measure range. An axial-stressed tiny-beam scheme is developed for the X and Y axial elements and a three-beam twin-mass structure is developed for Z-axis element. Both of these structures feature high sensitivity and high resonant frequency. The three sensing elements are monolithically integrated by micromachining techniques of double-sided deep etching combined with piezoresistive processes. A dropping-hammer calibration system is used to characterize the accelerometer. The sensitivity of the three elements is measured as 2.17, 2.25 and 2.64muV/g/5V respectively and the resonant frequency is 308, 303 and 164 kHz for each axial element. A novel time-domain separation method using a long and thin aluminum alloy bar is developed for the dropping test of cross-axis sensitivity. With this measurement technique, satisfactory cross-axis sensitivity is experimentally obtained for all the three axial elements, which contributes to the high-performance monolithic triaxial shock accelerometer.
Keywords :
accelerometers; etching; micromachining; piezoresistive devices; time-domain analysis; Z-axis element; aluminum alloy bar; axial-stressed tiny-beam scheme; cross-axis sensitivity; double-sided deep etching; dropping-hammer calibration system; frequency 164 kHz; frequency 303 kHz; frequency 308 kHz; high-performance monolithic triaxial high-accelerometer; high-performance monolithic triaxial shock accelerometer; micromachining techniques; piezoresistive accelerometer; three-beam twin-mass structure; time-domain separation method; Accelerometers; Aluminum alloys; Calibration; Etching; Frequency measurement; Micromachining; Piezoresistance; Resonant frequency; Testing; Time domain analysis;
Conference_Titel :
Sensors, 2007 IEEE
Conference_Location :
Atlanta, GA
Print_ISBN :
978-1-4244-1261-7
Electronic_ISBN :
1930-0395
DOI :
10.1109/ICSENS.2007.4388513