GTSP Series Integrated Stepper Motor

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Description

 

The GTSP Series Integrated Stepper Motors are compact, high-performance servo-stepper hybrid motors that combine a stepper motor, driver, and controller in a single unit. Designed for precision motion control in industrial electric power systems, these motors deliver reliable open-loop or closed-loop operation with simplified wiring, space savings, and low cost.

GTSP integrated motors are ideal for OEMs and system integrators looking to streamline control panel design while achieving accurate positioning, smooth motion, and real-time performance feedback in automation, robotics, and machine building.

 

GTSP Series Integrated Stepper Motor adopts the integrated design of motor and drive, which makes the product structure more compact, lower cost, more convenient wiring and faster debugging. The motor drive is integrated to avoid the difficult matching between the motor and the driver and the complicated setting of the driver current. Its built-in high-precision encoder, position output accuracy can reach 0.011 degrees, to prevent the loss of location information caused by load changes; advanced field-oriented control, to avoid rapid positioning in the shake. GTSP Series Integrated Stepper Motor ensures the stability of products and improves the reliability of equipment through strict testing environment.
GTSP Series Integrated Stepper Motor is suitable for non-standard equipment, simple Scara robot, screw rod electric cylinder and other fields.

 

  • Motor driven integration reduces wiring and wiring time, saves installation space and saves costs.
  • Motor driven integration avoids the user to use the motor and driver matching problems and user to drive current and other cumbersome settings
  • The torque output is two times the traditional servomotor.
  • Advanced magnetic field orientation control to avoid sway in rapid positioning.
  • Built-in high-precision encoder, position output accuracy can reach 0.011 degrees, to prevent the loss of location information caused by load changes
  • Impulse and Canopy communication are supported. Customers can either use traditional PLC for local single point control or use network controllers for remote, high-speed and multi-point control.
  • Suitable for synchronous belt drives.

Parameters

 

Technical Specifications of GTSP Stepper Motors

Parameter Specification
Voltage Range 24V to 48V DC
Holding Torque 0.4 Nm to 12 Nm (depending on model)
Step Angle 1.8° (with microstepping up to 1/256)
Encoder Resolution (optional) 1000 – 2500 PPR
Communication Interface RS485, CANopen, Pulse + Direction
Control Modes Position / Speed / Torque / Homing
I/O Ports 4–8 digital inputs/outputs
Protection Functions Over-voltage, over-temperature, over-current, stall detection
IP Rating IP20 / IP65 (optional housing)
Operating Temperature -10°C to +50°C
Compliance CE, RoHS, ISO 9001

These integrated stepper motors are widely used across industries that demand precise, cost-effective, and easy-to-implement motion solutions.

Common applications:

  • Industrial CNC machines and engraving equipment
  • Textile and embroidery machinery
  • Packaging and labeling lines
  • Semiconductor and inspection systems
  • Conveyor belt motion control
  • Medical automation and laboratory robotics
  • Solar panel tracking and test equipment
  • Electrical panel actuators and automated switchgear

Key Features of GTSP Series Integrated Stepper Motors

Feature Benefits for Industrial Motion Systems
Integrated Driver & Controller Reduces panel wiring, saves space, and simplifies installation
Closed-Loop Control (Optional) Enhances positioning accuracy and prevents step loss
High Torque at Low Speed Excellent performance in holding and start-stop applications
Digital I/O and Communication Ports Supports Modbus RTU, RS485, CANopen, and pulse/direction
Multiple Frame Sizes NEMA 17, 23, 34, and larger options for various load demands
Programmable Motion Profiles Customizable acceleration, velocity, and position settings
Built-in Encoder 1000–2500 PPR for precise motion feedback
Low EMI Design Ensures compatibility in electrically noisy environments

 

Solutions

 

Why Use GTSP Integrated Stepper Motors in Industrial Applications?

1. Simplified Control System Architecture

By integrating the motor, driver, and controller into a single unit, GTSP motors reduce wiring complexity and eliminate the need for external motion controllers—ideal for tight control cabinets.

2. Higher Reliability with Closed-Loop Operation

Closed-loop versions include real-time feedback, eliminating missed steps and ensuring stable torque control, even during load changes or unexpected resistance.

3. Cost-Efficient Precision

Compared to servo motors, GTSP integrated steppers provide excellent performance at a lower cost, making them suitable for medium-precision automation systems.

4. Scalable Across Multiple Axes

GTSP motors support multi-axis communication protocols like RS485 and CANopen, making them perfect for synchronized motion in automated production lines.

GTSP Integrated Stepper Motors vs Traditional Stepper Motor Setups

Aspect GTSP Integrated Motor Traditional Stepper + Driver
Component Count 1 compact unit 2–3 separate devices
Wiring Complexity Minimal High (multiple cables, connectors)
Space Requirement Small footprint Larger due to separate parts
Setup Time Plug-and-play Requires manual tuning and matching
Motion Feedback Optional encoder for closed-loop Typically open-loop without feedback

GTSP motors offer a smarter and more integrated approach to motion control—ideal for modern industrial automation systems.

 

Explore our full range of integrated stepper motor solutions designed for industrial automation, smart manufacturing, and high-precision motion control.

  • Contact our technical team for product recommendations
  • Request a quote or schedule a consultation
  • Custom solutions available for OEM projects