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High-precision hysteresis sensing of the quartz crystal inductance-to-frequency converter

机译:石英晶体电感 - 频率转换器的高精度磁滞感应

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摘要

A new method for the automated measurement of the hysteresis of the temperature-compensated inductance-to-frequency converter with a single quartz crystal is proposed. The new idea behind this method is a converter with two programmable analog switches enabling the automated measurement of the converter hysteresis, as well as the temperature compensation of the quartz crystal and any other circuit element. Also used is the programmable timing control device that allows the selection of different oscillating frequencies. In the proposed programmable method two different inductances connected in series to the quartz crystal are switched in a short time sequence, compensating the crystal’s natural temperature characteristics (in the temperature range between 0 and 50 °C). The procedure allows for the measurement of the converter hysteresis at various values of capacitance connected in parallel with the quartz crystal for the converter sensitivity setting at selected inductance. It, furthermore, enables the measurement of hysteresis at various values of inductance at selected parallel capacitance (sensitivity) connected to the quartz crystal. The article shows that the proposed hysteresis measurement of the converter, which converts the inductance in the range between 95 and 100 μH to a frequency in the range between 1 and 200 kHz, has only 7 × 10−13 frequency instability (during the temperature change between 0 and 50 °C) with a maximum 1 × 10−11 hysteresis frequency difference.
机译:提出了一种自动测量具有单石英晶体的温度补偿电感-频率转换器的磁滞的新方法。这种方法背后的新思想是一种带有两个可编程模拟开关的转换器,能够自动测量转换器的磁滞以及石英晶体和任何其他电路元件的温度补偿。还使用了可编程定时控制设备,该设备允许选择不同的振荡频率。在建议的可编程方法中,两个不同的电感串联在石英晶体上,在短时间内切换,以补偿晶体的自然温度特性(在0至50°C的温度范围内)。该程序允许在与石英晶体并联连接的各种电容值下测量转换器磁滞,以将转换器灵敏度设置为所选电感。此外,它还可以在连接到石英晶体的选定并联电容(灵敏度)下,以各种电感值测量磁滞。该文章表明,所建议的转换器磁滞测量将95至100μH之间的电感转换为1至200 kHz之间的频率,仅具有7×10-13频率不稳定性(在温度变化期间) (0至50°C之间),最大磁滞频率差为1×10-11。

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