
Product Introduction
The Allen Bradley VPL-B0753E-CK12AA is a Kinetix VP series low-inertia servo motor engineered for high-performance motion control applications. Designed to operate with 400V drive systems, this motor delivers fast dynamic response, precise positioning, and stable torque output in compact automation environments.
As part of the VP low-inertia motor family, this model features a 75 mm frame size, three magnet stacks, and a rated speed of 3500 rpm. Its low-inertia rotor design allows rapid acceleration and deceleration, making it ideal for applications that demand short cycle times and high positioning accuracy. The motor is equipped with an 18-bit absolute single-turn digital encoder using the Hiperface DSL protocol, ensuring reliable and precise feedback for closed-loop control systems.
Product Specifications
| Parameter |
Description |
| Product Name |
Kinetix VP Low Inertia Servo Motor |
| Model Number |
VPL-B0753E-CK12AA |
| Motor Series |
VP – Permanent Magnet Rotary Servo Motors |
| Inertia Class |
Low Inertia |
| Voltage Class |
400 V |
| Frame Size |
75 mm |
| Magnet Stack Length |
3 stacks |
| Rated Speed |
3500 rpm |
| Feedback Type |
18-bit absolute single-turn digital encoder (Hiperface DSL) |
| Shaft Type |
Smooth shaft |
| Connector Type |
Single SpeedTec DIN connector |
| Brake |
No brake |
| Mounting Standard |
IEC metric |
| Dimensions (L × W × H) |
197.9 × 70 × 112.0 mm |
| Weight |
2.59 kg |
Product Applications
The VPL-B0753E-CK12AA servo motor is designed for applications that require fast response, accurate positioning, and compact mechanical integration:
-
High-speed pick-and-place systems
-
Packaging and labeling machinery
-
Automated assembly and inspection equipment
-
Light-duty robotics and Cartesian motion systems
-
Indexing tables and precision conveyors
Its low-inertia characteristics and high-resolution feedback enable smooth motion control and repeatable performance in demanding automation environments.
Product Advantages
• Low Inertia Rotor Design
Supports rapid acceleration and deceleration, reducing cycle times and improving machine throughput.
• High-Resolution Absolute Feedback
18-bit single-turn encoder with Hiperface DSL ensures precise position control and reliable startup behavior.
• Compact Mechanical Size
75 mm frame and lightweight construction allow easy integration into space-constrained machines.
• High-Speed Capability
Rated at 3500 rpm, suitable for fast motion profiles and dynamic positioning tasks.
• Flexible Electrical Connection
Single SpeedTec DIN connector simplifies wiring and improves installation efficiency.
• IEC Metric Mounting
Ensures compatibility with standard industrial mechanical interfaces.
• Maintenance-Free Operation
No brake and permanent magnet design reduce mechanical complexity and maintenance requirements.
FAQ
1. How does the low-inertia design affect motion performance?
Low inertia allows the motor to respond quickly to speed and torque changes, improving positioning accuracy and reducing overshoot during dynamic motion cycles.
2. What advantages does the absolute encoder provide?
The 18-bit absolute single-turn encoder retains position information after power loss, enabling immediate and accurate system startup without homing.
3. Is this motor suitable for high-speed automation tasks?
Yes, the 3500 rpm rated speed and low inertia make it well suited for fast indexing, pick-and-place, and short-cycle applications.
4. How is the motor electrically connected to the drive system?
A single SpeedTec DIN connector provides a compact and secure connection for power and feedback signals.
5. Can this motor be used in precision positioning systems?
Yes, its high-resolution feedback and smooth shaft design support accurate and repeatable positioning.
6. What type of mounting interface does the motor use?
The motor uses an IEC metric mounting flange, allowing straightforward mechanical integration.
7. Does the absence of a brake limit application use?
No, it is well suited for applications where holding torque at standstill is not required or is managed by the drive system.
8. How does the motor contribute to system efficiency?
Low inertia reduces energy consumption during acceleration and deceleration, improving overall system efficiency.
9. Is this motor appropriate for continuous operation?
Yes, it is designed for continuous industrial duty when operated within rated limits.
10. What industries typically use this servo motor?
Packaging, electronics assembly, automation equipment manufacturing, and light robotics commonly use this motor.
Recommended Related Models (Same Series / Related)
| Model |
Description |
| VPL-B0751E-CK12AA |
VP Low Inertia Servo Motor, 1 stack |
| VPL-B0752E-CK12AA |
VP Low Inertia Servo Motor, 2 stacks |
| VPL-B0753E-CK12AA |
VP Low Inertia Servo Motor, 3 stacks |
| VPL-B1003E-CK12AA |
VP Low Inertia Servo Motor, larger frame |
| VPL-B1303E-CK12AA |
VP Low Inertia Servo Motor, higher torque |
| VPL-B1653E-CK12AA |
VP Low Inertia Servo Motor, extended performance |
Popular Allen Bradley Servo Motors (Same Brand)
| Model |
Description |
| VPL-B0632E-CK12AA |
Compact VP Servo Motor |
| VPL-B0753E-CK12AA |
VP Low Inertia Servo Motor, 75 mm |
| VPL-B1003E-CK12AA |
VP Servo Motor, higher output |
| VPL-B1303E-CK12AA |
VP Servo Motor, industrial duty |
| MPL-B330P-MJ72AA |
MPL Series Servo Motor |
| MPL-B4530F-MJ74AA |
MPL Servo Motor, high torque |
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