YKE2405M-2A-IO
YKE2405M-2A-IO
Features:
New-generation 32-bit DSP control technology, high cost performance
A single driver controls two stepper motors of the same model simultaneously, achieving synchronized movement
Triple optocoupler isolated digital signal input with one output, compatible with 5V/24V signals, supporting common cathode and common anode wiring methods
Employing the latest resonance suppression algorithm, it delivers exceptional stability at medium and low speeds.
The current control is smooth, precise, and results in minimal motor heating
It features 8 current levels and 16 speed options
The start-stop control supports two modes
The operating current, speed, and acceleration/deceleration can all be set through the host computer debugging software
The lock motor current can be set via the host computer, with the default being 50% of the set current
It features overvoltage, undervoltage, overcurrent, and phase sequence protection functions
Typical applications:
Mainly used for speed control, loading and unloading machines, connecting stations, logistics transportation, transfer equipment, electronic devices, lithium battery equipment, etc.
Brief Introduction:
YKE2405M-2A-IO is a high-performance one to two stepper drive based on the new generation 32-bit DSP technology. The driving voltage is DC 20-50V, equipped with two motor inputs, which can simultaneously adapt to current continuous output within 4.0A (effective value). The flange is a 42/57mm two-phase open-loop stepper motor, and the drive can set the current and speed by dialing when adapting to different motors. The control mode of this drive is spontaneous pulse speed control, with 4 dials available for 16 speed segments, and can also be set to any speed range through the upper computer; Equipped with three optoelectronic isolated digital inputs and one alarm output; Internally, a servo like control principle, unique circuit design, and superior software algorithm processing are used to ensure smooth low-speed operation of the motor. Precise current control technology greatly reduces motor heating, making it highly effective in devices where users expect low heating, low noise, high stability, and high precision.