ORIENTAL MOTOR
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available
The PKP2 series 2-phase stepper motors are high-quality precision motors for automation and positioning applications.
Available in various Frame sizes and shaft configurations, with or without an Encoder and with an optional Electromagnetic brake.
Please select the required version.
• Standard version with 200 steps per revolution (basic step angle: 1.8˚/step)
• Bipolar (4 lead wires) and unipolar (5 or 6 lead wires) versions are available
• Versions with an Encoder and Electromagnetic brake are available