Method for processing detection signal of vibratory inertial force sensor and vibratory inertial force sensor
View Patent ↗A method for processing a detection signal of a vibratory inertial force sensor is disclosed. This method improves detection accuracy of the vibratory inertial force sensor. A detection circuit of the vibratory inertial force sensor removes harmonic component from signals synchronously wave-detected, and amplifies the resultant signals, and then smoothes the amplified signals. A vibratory inertial force sensor adopting this method is also disclosed.
1. A method for processing a detection signal of vibratory inertial force sensor, which sensor comprises:
a drive arm;
a driver disposed to the drive arm for vibrating the drive arm;
a sensor section for generating a detection signal through deflection produced by inertial force applied to the drive arm;
a monitor for monitoring the vibration of the drive arm;
a drive control circuit for controlling an amount of vibration of the drive arm; and
a detection circuit for processing the detection signal, the method, to be implemented in the detection circuit, comprising the steps of:
differentially amplifying two detection signals detected by the sensor section and having a phase difference of 180 degrees;
synchronously wave-detecting the differentially amplified signals with a monitor signal supplied from the monitor;
removing harmonic component from the signals synchronously wave-detected;
amplifying the signals from which the harmonic component is removed; and then
smoothing the amplified signals.
2. A vibratory inertial force sensor comprising:
a drive arm;
a driver disposed to the drive arm for vibrating the drive arm;
a sensor section for generating a detection signal through deflection produced by inertial force applied to the drive arm;
a monitor for monitoring the vibration of the drive arm;
a drive control circuit for controlling an amount of vibration of the drive arm; and
a detection circuit for processing the detection signal,
wherein, the detection circuit differentially amplifies two detection signals detected by the sensor section and having a phase difference of 180 degrees, and synchronously wave-detects the differentially amplified signals with a monitor signal supplied from the monitor, removes harmonic component from the signals synchronously wave-detected, amplifies the signals from which the harmonic component is removed, and then smoothes the amplified signals.