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Intelligent drives(HACD)
    • Intelligent drives(HACD)
    • Intelligent drives(HACD)
    • Intelligent drives(HACD)
    • Intelligent drives(HACD)
    • Intelligent drives(HACD)
    • Intelligent drives(HACD)
Detailed Description

Intelligent drivers can be used on a variety of stepper motorsOur main productstwo phases stepper motor,Three-phase stepper motor, encoder stepper motor and so on will need to drive the driver

Multiple control modes

Equipped with leading safety features

integration diagnosis

Independent power and logic input

Exception monitoring and handling


Driver main features

vector control    small in size

closed loop       high reliability 

low-grade fever       Motor control parameters are automatically adjusted

Efficient current setting

parameter :

AC input: 17 ~ 100VAC;    

Ac logic input: 17 ~ 100VDC;

phase current : 8 A largest  Valid value (11A peak)

Chopping freq: ultrasonic 33KHz;

Step spacing Angle: 200 subdivision to 25600 subdivision;

protect: Over current, high temperature, phase and phase short

Digital input (optical coupling);

Digital output (optical coupling);

Dimensions and masses: 165x97,5x62,3mm No connector (L x D x H: reference picture);Weight: 900 grams ;

protection classIP20;

humidity : 5% ~ 85%  non-condensate;

Powerful motion module

Pulse direction control mode

Simulate reference speed control mode

speed control pattern

Wide range of positioning control modesZero, relative position, absolute position, target position

cam pattern:programmable mode(C1x90 version

The electronic transmission tracks the position and speed of the external motor in real time

High speed I /o port trigger makes motor start and stop synchronization

Multi-axis motion synchronization

More control over pattern changes

Compare open-loop stepping schemes

Reliable positioning prevents synchronization loss

Maintain a stable position and be able to recover automatically for special reasons such as machine vibration and make full use of motor torque

It is able to run at high speed under current control according to load changes. However, ordinary open-loop control does not take load changes into account, and the same current control is adopted for full speed

Compare brushless servo control

No need to adjust the current (automatically adjust according to the change of load)

It can keep the position stable and unfluctuating after executing the action

Fast positioning is controlled by independent integrated DSP

Short positioning time enables quick and continuous execution of short-range actions

Through the upper computer instruction drive control

Suitable for multi-axis systems (up to 127)

Powerful built-in motion module ensures perfect multi-axis synchronization and reduces overhead load

Atomic processing allows users to access all functions and device resources to perform and synchronize any process

Allows access to powerful motion modules and built-in real-time processing modules for special applications

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