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My current VFD (Dingtuoda DBLS-08-S) does not appear to support speed control over RS485, so I will go to PWM control to get moving.
However, this VFD does support speed feedback via a pulsed feedback pin, and would like to request that one of the db25 input pins be available for reading speed back from a vfd when pwm is used for the tool/spindle.
Speed signal output(PG) The speed pulse output is 0C, (output 30V/10mA max. ). Connect with a pull-up resistance (3K Ω ~10KΩ) between “PG” and power positive (5V-24V, If the user does not own power, it can also be directly connected to the “ +5V” of 8 pin CN2 ) . The formula of the output frequency F(HZ) and the motor speed N(RPM) is as follows: F=N * P / 60, where P is the pole number of the motor, that is, the pulse output per revolution of the motor is the pole number of the motor. DBLS-08-S manual.pdf
The text was updated successfully, but these errors were encountered:
My current VFD (Dingtuoda DBLS-08-S) does not appear to support speed control over RS485, so I will go to PWM control to get moving.
However, this VFD does support speed feedback via a pulsed feedback pin, and would like to request that one of the db25 input pins be available for reading speed back from a vfd when pwm is used for the tool/spindle.
Speed signal output(PG) The speed pulse output is 0C, (output 30V/10mA max. ). Connect with a pull-up resistance (3K Ω ~10KΩ) between “PG” and power positive (5V-24V, If the user does not own power, it can also be directly connected to the “ +5V” of 8 pin CN2 ) . The formula of the output frequency F(HZ) and the motor speed N(RPM) is as follows: F=N * P / 60, where P is the pole number of the motor, that is, the pulse output per revolution of the motor is the pole number of the motor.
DBLS-08-S manual.pdf
The text was updated successfully, but these errors were encountered: