SGMPH-02BBE4C Original Yaskawa Waterproof motor SGMPH-02BBE4C
Yaskawa SGMPH-02BBE4C: The Ultimate Waterproof Servo Motor
Introducing the Yaskawa SGMPH-02BBE4C, a premier servo motor engineered for precision and durability in challenging environments. This waterproof motor is designed to excel in applications where reliability and efficiency are paramount. The combination of advanced technology and robust design ensures seamless performance, allowing you to focus on building systems that enhance productivity and innovation.
Product Information & Technical Parameters
Specification | Details |
---|---|
Brand | Yaskawa |
Name | Waterproof Motor |
Model | SGMPH-02BBE4C |
Type | Servo Motor (Speed: 3000 r/min) |
Power | 0.2 kW |
Power Supply Voltage | Single Phase AC 100V |
Serial Encoder | 16 Bit Relative Value |
Design Sequence | Waterproof Standard IP67 |
Shaft End | Straight Shaft with Key |
Optional Parts | DC 24V Brake |
Partial Flat Series | Ideal for Small Space Installations |
Performance & Features
The SGMPH-02BBE4C stands out with its exceptional speed stability and real-time performance monitoring. A remarkable feature is its significantly reduced speed fluctuation, which translates into smoother motor operation. Enhanced flexibility allows users to customize their systems for optimal efficiency and productivity.
Advanced Communication Capabilities
With the integrated Sigma -v series servo unit SGDV, the SGMPH-02BBE4C supports a maximum motor capacity of 0.75 kW, operating at three-phase AC 200V. Its MECHATROLINK-III communication interface facilitates real-time data exchange with an impressive transmission speed of 100 Mbps, allowing control of up to 62 stations simultaneously. This capability not only cuts down on wiring costs but also enhances system efficiency.
Precision Control & Flexibility
High precision motion control is at the heart of the Yaskawa SGMPH-02BBE4C. The motor accommodates torque, position, and speed control, and facilitates high-precision synchronization phase control. This adaptability is further enriched by the ability to switch control modes on-the-fly, ensuring that complex mechanical actions are executed seamlessly.