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SGMUH Sigma II Servo Motors
SGMUH Sigma II Servo Motors

SGMUH Sigma II Servo Motors

SGMUH Sigma II Servo Motors Specification

  • Resolution
  • 2048 pulses/rev (Incremental Encoder)
  • Sensors Specification
  • Built-in Incremental Encoder
  • Usage
  • Industrial automation
  • Components
  • Motor, Encoder, Cables
  • Input
  • Digital/Analog Control Inputs
  • Output
  • Motor Shaft Rotation
  • Features
  • High speed, High accuracy, Compact, Reliable
  • Thermal Conductivity
  • Standard for enclosed motors
  • Operating Temperature
  • 0C to 40C
  • Interface
  • Servo Drive Interface
  • IP Rating
  • IP54
  • Response Time
  • Fast dynamic response
  • Power Supply
  • AC powered
  • Power Source
  • AC Electric
  • Product Type
  • Servo Motor
  • Application
  • Robotics, CNC Machines, Factory Automation
  • Rated Voltage
  • 200V AC
  • Supply Voltage
  • 200V AC Single/Three Phase
  • Size
  • Compact
  • Dimension (L*W*H)
  • Varies by capacity; e.g., 100 x 110 x 160 mm
  • Function
  • Precise servo motion control
  • Color
  • Black with metallic accents
  • Weight
  • Approx. 1.5 to 7 kg (varies by model)
  • Current Rating
  • 0.3 A to 8.1 A (depends on model)
  • Capacity
  • 50 W to 1.5 kW (depending on model)
  • Thickness
  • Standard Housing
  • Frequency
  • 50/60 Hz
 
 

About SGMUH Sigma II Servo Motors

IP RatingIP67
Insulation ClassClass F
Motor TypeAC
Speed6,000 rpm
ModelSGMUH
Winding Voltage400 volt

The SGMUH servomotor series has a high torque-to-inertia ratio for high cycle-rate applications. The SGMUH incorporates the segmented stator design, which dramatically reduces overall size. 400-volt windings are available with maximum speeds of 6,000 rpm. A 131,072 per incremental serial encoder is standard. The SGMUH is rated IP67 (not including the shaft) providing resistance to moisture.

Precise Motion for Advanced Automation

The SGMUH Sigma II Servo Motors deliver fast dynamic response and high positioning accuracy, making them ideal for sophisticated industrial automation tasks. Their advanced design is suitable for robotics, CNC equipment, and general factory automation, supporting efficient and sustained operation under varied industrial demands. With compact sizing and robust construction, these motors fit seamlessly into both new and existing setups.


Flexible Configuration for Custom Applications

Choose from keyed or smooth shafts, incremental or absolute encoders, and optional holding brakes to meet the exact requirements of your motion solution. The motors are compliant with international standards such as CE and RoHS, ensuring safe and environmentally conscious integration in varied operational environments.

FAQs of SGMUH Sigma II Servo Motors:


Q: How do I select the appropriate SGMUH Sigma II Servo Motor model for my application?

A: Selecting the right model depends on your applications power, torque, and speed requirements. Consider the capacity range (50 W to 1.5 kW), feedback type (incremental or absolute encoder), and shaft style. The compact design and optional features allow customization for robotics, CNC machines, or factory automation.

Q: What is the typical process for installing the SGMUH Sigma II Servo Motor?

A: Installation involves flange mounting the motor to your machine, connecting the power (200V AC) and control cables, and integrating it with your servo drive interface. Ensure ambient conditions are within the specified 0C to 40C temperature and 20%80% non-condensing humidity.

Q: Where can the SGMUH Sigma II Servo Motors be used most effectively?

A: These motors excel in industrial automation environments like robotics, CNC machines, and assembly lines. They are designed for applications demanding high accuracy, quick response, and reliable performance under continuous duty cycles.

Q: What benefits does the built-in encoder provide?

A: The built-in incremental or absolute encoder ensures precise motor position feedback, enhancing accuracy and repeatability for complex motion tasks. The standard 2048 pulses/rev resolution enables fine-grained control required for demanding automation applications.

Q: When should I use the optional holding brake feature?

A: The optional holding brake is recommended when you need to hold the load securely during power-off or stationary conditions, especially in vertical axes or safety-critical applications, enhancing the motors operational versatility.

Q: How does natural air cooling affect the motors performance and maintenance?

A: Natural air cooling ensures reliable thermal management without the complexity of forced-air or liquid cooling systems, reducing maintenance needs. This cooling method supports a life expectancy of approximately 20,000 hours under typical conditions.

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