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    • 31. 发明专利
    • POSITIONING DEVICE
    • JPH09134218A
    • 1997-05-20
    • JP31467795
    • 1995-11-08
    • CALSONIC CORPNISSAN MOTOR
    • KINO HIROYUKISATO YOSHINORIMATSUMOTO TAKASHI
    • G05D3/12G05B19/35H02P3/06
    • PROBLEM TO BE SOLVED: To provide a device which is not adversely affected by external noise without the deterioration of stop precision and the occurrence of hunting. SOLUTION: A stop range setting circuit 1 sets a stop range being a control object based on a target position signal (a) and PBR 6 detects the present position of the control object driven by a motor 5. A comparison circuit 2 compares the present position of the control object with the setting stop range. While the control object does not reach in the stop range, a signal beyond range (e) and a rotary direction indication signal (f) are outputted. The signal being stop range is inputted to a driving start judgment circuit 3. When the signal being stop range continues for more than prescribed time, a driving permission signal (g) is outputted to a driving circuit 4. The driving circuit drives the motor in a direction that the driving direction indication signal shows. Thus, an instantaneous ON/OFF signal is not inputted to the driving circuit owing to external noise even if it comes in.
    • 32. 发明专利
    • AUTOMATIC TUNING OF POSITIONING CONTROL CIRCUIT FOR SERVO DEVICE
    • JPH08227317A
    • 1996-09-03
    • JP29590995
    • 1995-10-20
    • ELSAG INT NV
    • ARAN SHII ZOORAATEIINA BURABEKURICHIYAADO EI DOREZARU
    • F15B9/09G05B19/35G05D3/00G05D3/12
    • PROBLEM TO BE SOLVED: To attain tuning without any manual movement of a servo valve, any use of a switch or a potentiometer, or any removal of an inputting and outputting substrate. SOLUTION: A position control circuit 70 is provided with a demodulator 22 having an automatic tuning capability used in an electrohydrallic positoning system used for the positioning of a servo device. A positioning control circuit 70 includes a demodulator 22, analog/digital converter 28 having an input voltage range, and microcontroller 26. The demodulator 22 has a certain gain, and converts a feedback signal from the servo device into a position signal having a lower voltage value when the service device is at a 0% position, and into a position signal having an upper voltage value when the servo device is at a 100% position. The lower voltage value and the upper voltage value are the function of the demodulator gain. At the time of operator activation, a microcontroller 26 automatically calculates the maximum value for the demodulator gain for generating the position signal from the demodulator 22 having the lower voltage value within a lower voltage range and the upper voltage value within an upper voltage range, and the lower voltage range and the upper voltage range are within the input voltage range of the analog/digital converter 28.