2017
DOI: 10.1142/s0217984917500646
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A temperature characteristic research and compensation design for micro-machined gyroscope

Abstract: The all temperature range stability is the most important technology of MEMS angular velocity sensor according to the principle of capacity detecting. The correlation between driven force and zero-point of sensor is summarized according to the temperature characteristic of the air-damping and resonant frequency of sensor header. A constant trans-conductance high-linearity amplifier is designed to realize the low phase-drift and low amplitude-drift interface circuit at all-temperature range. The chip is fabrica… Show more

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Cited by 16 publications
(14 citation statements)
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“…In AGC loop, the vibration amplitude is intended to be stabilised at the resonant amplitude in (2), while in fact we can only keep the extracted amplitude as a constant A ref , which means the authentic vibration amplitude might be out of control when temperature varies. For TEB method, the actual vibration amplitude after AGC can be given in the following form as (7), and for linear-EAM method as (8)…”
Section: Gyroscope Dynamicsmentioning
confidence: 99%
“…In AGC loop, the vibration amplitude is intended to be stabilised at the resonant amplitude in (2), while in fact we can only keep the extracted amplitude as a constant A ref , which means the authentic vibration amplitude might be out of control when temperature varies. For TEB method, the actual vibration amplitude after AGC can be given in the following form as (7), and for linear-EAM method as (8)…”
Section: Gyroscope Dynamicsmentioning
confidence: 99%
“…For example, the robust structural design of MEMS vibratory gyroscopes is proposed in [3] to compensate for temperature effects drift. In [4], it decreases the effects of the damping coefficient and resonant frequency by designing an effective circuit. Gyroscope researches use a lot of hardware compensation, however, it is expensive and cumbersome to operate.…”
Section: Introductionmentioning
confidence: 99%
“…Cao et al established a new silicon structure equivalent electric model in order to improve the accuracy of performance under higher temperature [14]. Fu et al proposed a simpler and more applicable compensation method which is provided with a new circuit to reduce the influence of damping coefficient and resonating frequency [15]. Yang et al proposed an architecture that utilizes the on-chip temperature sensor of the micro-Gyro to achieve the onchip temperature compensation and used the integrated serpentine microheater to realize the on-chip temperature control of the micro-Gyro [16].…”
Section: Introductionmentioning
confidence: 99%