New Developed High Precision Closed Loop Stepper Driver 2HSS57-Kh with Low Cost and High Quality
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- Model NO.: 2HSS57-KH
- Excitation Mode: HB-Hybrid
- Holding Torque: 0.9nm
- Current: 2.8A
- Microstep Interpolation: Advanced Current Control Technique
- Specification: ce, rohs, iso9001
- HS Code: 8537109090
- Number of Stator: Two-Phase
- Type: Magnetic-Electric
- Step Angle: 1.8 Degree
- Anti-Vibration: Low-Speed Torque Smoothing
- Trademark: JMC
- Origin: Shenzhen
1). Low noise
2). Stable operation
3). High torque
Full closed loop
1, accurate location and speed control to meet the most demanding application requirements
2, high robustness of servo drive control can adapt to a wide range of inertia load and friction load change
3, the motor with standard 1000 line encoder, support vector closed loop control, and to tackle fundamentally the traditional stepping
Motor lose step problem.
Low fever/high efficiency
1, according to the actual load condition real-time adjustment current size, will fever drop to the minimum
2, stationary, current is almost zero, no fever.
3, close to 100% torque output ability, in the most compact space in the play Big energy conversion, the energy saving efficiency.
Based on the feedback encoder space vector current control algorithm and vector smoothing filtering technology, for the problem of traditional stepping motor "low frequency resonance" have very good resist effect. So as to realize the electric Machine in the low speed application still
Can keep the stable and quiet operation. Perfect solution traditional stepping motor low speed vibration noise problem.
1, mixed servo system retained the traditional open loop stepping system some advantages, Position respond to the input and output command signal is almost real time synchronization, so Very suitable for short distance fast start-stop and zero speed stability to stop occasions.
2, in point to point fast fast positioning movement situation, advanced servo control Technology provides the big torque output, the system has a very high dynamic response. Far beyond the traditional step system limit.