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Aiming at the characteristic of crude oil production in our country, a new type intelligent system for measuring water content based capacitance sensor is proposed. In the system, C/U convert circuit, U/f convert circuit and temperature compensating designing have been put in practice. The experimental results show that the system can display precisely with linearity scale in the full scale.
This paper presents a miniaturized 2.5 GHz frequency source based on compensated BAW resonator with its integrated temperature molybdenum sensor assembled on the differential Colpitts oscillator. The presence of silicon dioxide layer having a positive temperature coefficient compared to other layers is used to reduce the resonator's drift. A demonstration oscillator achieves a frequency drift of 40...
Due to its restricted usage and accuracy in measuring extremely short interval of time, TDC (time to digital converter) embedded measurement devices are relatively expansive. Even if new applications are being developed in daily life as well as in industry, the cost condition of TDC based measurement systems needs to be improved. To reduce the deployment cost on a commercial scale, analogue interpolation...
A temperature compensated 1.5 GHz FBAR-based frequency reference implemented in a 0.35 mum CMOS process is presented. The ultra-small form factor and low power dissipation of a temperature compensated FBAR oscillator presents a promising alternative for replacement of quartz crystal frequency references. The measured frequency post-compensation drift over a 0-100degC temperature range is <20 ppm...
This paper presents an integrated 26-MHz digitally-controlled crystal oscillator (DCXO) with temperature compensation function for multi-standard cellular applications, that achieves a phase noise of -154 and -159 dBc/Hz at 10 kHz and 100 kHz offset, respectively. The frequency instability over temperature is compensated by built-in temperature sensor and compensating capacitor. The frequency instability...
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