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Allen-Bradley VPL-A1001M-PK12AA

SKU: VPL-A1001M-PK12AA-SOB-USA

Next Day Delivery Available for U.S. Stock

All Parts Come with 12 Month Warranty

New, Surplus, and Refurbished Available

Allen-Bradley VPL-A1001M-PK12AA

SKU: VPL-A1001M-PK12AA-SOB-USA

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Warranty Information

All products (new, surplus, and refurbished) are covered by Chief Automation's 1 Year Warranty. The Manufacturer's Warranty does NOT apply.

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The Kinetix VP Low-inertia Servo Motor with 063…165 mm Frame Size is a product from Rockwell Automation, designed for use in various industrial applications. The motor features a low-inertia design, which enhances its dynamic performance and reliability. It is available in different frame sizes, ranging from 063 to 165 mm, and is equipped with a connector style that integrates power, brake, and feedback signals within a single connector.

Technical Specifications

The motor's dimensions vary depending on the frame size. For example, the VPL-A/B100xx series has a shaft diameter of Ø 15.997…16.008 mm, while the VPL-A/B115xx series has a shaft diameter of Ø 18.996…19.009 mm. The motor's shaft-end threaded hole is designed with a thread of M5 x 0.8-6H for VPL-A/B100xx motors, M6 x 1.0-6H for VPL-A/B115xx motors, and so on.

Alarm/Error Codes

The documentation provided does not include specific information on alarm or error codes for the Kinetix VP Low-inertia Servo Motor. However, it is common for industrial motors to have specific error codes that indicate issues such as overheating, overloading, or communication errors. These codes are typically documented in the user manual or technical specifications of the motor.

User Manuals

The user manual for the Kinetix VP Low-inertia Servo Motor is available in various languages, including English, French, and German. The manual provides detailed information on the motor's installation, operation, and maintenance, as well as troubleshooting procedures and technical specifications.

Troubleshooting

Troubleshooting for the Kinetix VP Low-inertia Servo Motor involves identifying and addressing potential issues that may affect its performance. These issues can include:

  1. Overheating: Check the motor's temperature and ensure proper cooling. Verify that the motor is installed in a well-ventilated area and that the cooling fan is functioning correctly.
  2. Overloading: Check the motor's load rating and ensure it is not exceeded. Verify that the motor is properly sized for the application and that the load is evenly distributed.
  3. Communication errors: Check the communication cables and connections for damage or corrosion. Verify that the motor is properly configured for communication with the control system.

Programming

The Kinetix VP Low-inertia Servo Motor is designed to be used with various control systems, including Rockwell Automation's own control systems. Programming for the motor typically involves configuring the motor's parameters, such as speed, torque, and acceleration, within the control system's software. The motor's programming is typically done using the control system's programming language, such as RSLogix 5000 or ControlLogix.

Installation

The installation of the Kinetix VP Low-inertia Servo Motor involves several steps:

  1. Mounting: Mount the motor securely to the application's frame or structure, ensuring proper alignment and clearance.
  2. Wiring: Connect the motor's power, brake, and feedback signals according to the motor's wiring diagram and the control system's requirements.
  3. Configuration: Configure the motor's parameters within the control system's software, ensuring proper communication and operation.

In summary, the Kinetix VP Low-inertia Servo Motor is a reliable and dynamic motor designed for use in various industrial applications. Its technical specifications, user manual, and troubleshooting procedures are available from Rockwell Automation. The motor's programming and installation involve configuring the motor's parameters within the control system's software and mounting the motor securely to the application's frame or structure.

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