Abstract

The detecting device based on mechanical mechanism is far from the measurement of internal combustion engine cylinder explosion and compression pressure. This pressure detection is under the environment of pulsed gas (over 500 times per one minute) and mechanical impactive vibration. Piezoresistive detection with silicon on insulator (SOI) strain gauges to pressure seems to be a good solution to meet such special applications. In this work, separation by implanted oxygen (SIMOX) wafer was used to fabricate the high temperature pressure sensor chip. For high accuracy and wide temperature range application, this paper also presents a novel pressure sensitivity temperature coefficient (TCS) compensation method, using integrated constant current network. A quantitative compensation formula is introduced in mathematics. During experiments, the absolute value of the compensated TCS is easy to be 10 × 10−6/°C~100 × 10−6/°C by individual adjustment and calibration of each device’s temperature compensation. Therefore, the feasibility and practicability of this technology are tested. Again, the disadvantages are discussed after the research of the experiment data and the improvement methods are also given in the designing period. This technology exhibits the great potential practical value of internal combustion engine cylinder pressure with volume manufacturing.

Highlights

  • Explosion pressure and compression pressure of internalcombustion engine cylinder are two significant technical parameters which affect its work [1, 2]

  • separation by implanted oxygen (SIMOX) technology refers to the technology where large dose oxygen ions are implanted into initial silicon, silicon on insulator (SOI) structure is formed after high temperature annealing

  • Intelligent detector of internal-combustion engine cylinder pressure with sensitivity temperature coefficient compensation-based integrated constant current is demonstrated in this paper

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Summary

Introduction

Explosion pressure and compression pressure of internalcombustion engine cylinder are two significant technical parameters which affect its work [1, 2]. Great swing of the clock pin makes it hard to read the number exactly and its service life is relatively short It is far from meeting the operating requirement of internal-combustion engine cylinder’s explosion pressure and compression pressure at the environment of striking by high temperature and pressure pulsed gas (over 500 times per one minute) and mechanical vibration. The device presented in this paper equipped with amplified circuit and eight characters LCD screen avoids the detection device and utilizes high temperature piezoresistive pressure sensors as detecting units. The sensor makes it convenient to operate and has high testing precision and more scientific results. It possesses several functions of data detection and record

Fabrication of High Temperature Piezoresistive Pressure Sensor
Testing of Dynamic Characteristics
TCS Compensation
Discussion
Conclusion
Full Text
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