AB 1336-L4: Mastering Industrial Motion

2025-06-06

Introduction


The industrial automation landscape, though constantly innovating, still relies on proven workhorses. Among these, the Allen-Bradley 1336-L4 stands out, a testament to enduring reliability. This article explores the significance of the Allen-Bradley 1336-L4 drive, delving into its foundational role in industrial automation and its continued relevance, especially when considering its specific configurations like 42336-200-51.


Unpacking the Allen-Bradley 1336-L4: Core Capabilities


The Allen-Bradley 1336-L4 is a key player in the highly successful 1336 PLUS AC Drive / VFD series, renowned for its robust performance in controlling AC induction motors. The "L4" designation typically indicates a specific power and voltage class, highlighting its capacity for substantial motor control. The Allen-Bradley 1336-L4 provides precise speed and torque control for a wide array of industrial machinery.

Key capabilities of the Allen-Bradley 1336-L4 include:

  • Variable Frequency Drive (VFD) Functionality: As a VFD, the Allen-Bradley 1336-L4 dynamically adjusts motor speed by varying frequency and voltage. This is crucial for optimizing process control, saving energy, and reducing mechanical stress, making it vital for efficient motor control.

  • Vector Control (SVC): Many 1336 PLUS variants, including the Allen-Bradley 1336-L4, offer Sensorless Vector Control. This advanced method ensures excellent speed regulation and torque response, even at low speeds, without external encoders. This enhances performance for demanding industrial automation tasks.

  • Robust Protection: Engineered for harsh industrial automation environments, the Allen-Bradley 1336-L4 includes comprehensive protection against overcurrent, overvoltage, and overtemperature, ensuring reliable operation and safeguarding assets.

Allen-Bradley 1336-L4

The Significance of 42336-200-51: A Configuration Decoded


The identifier "42336-200-51" isn't a standard part number for the Allen-Bradley 1336-L4 drive itself. Instead, it most likely represents a specific parameter set, a firmware revision, or a custom configuration code tied to the Allen-Bradley 1336-L4. In sophisticated industrial automation setups, drives are precisely configured to match specific motor characteristics and application needs.

       Firmware Version: A unique firmware revision on the Allen-Bradley 1336-L4, potentially including bug fixes or performance enhancements relevant to motor control.

  • Application-Specific Parameters: Most commonly, 42336-200-51 defines a collection of calibrated operating parameters. These might include motor voltage, acceleration/deceleration times, min/max frequencies, and overload settings. These parameters are vital for the Allen-Bradley 1336-L4 to operate optimally and safely within its designated industrial automation task.

  • Customization Reference: For large industrial users or OEMs, codes like 42336-200-51 serve as internal references for identical machinery, ensuring consistent deployment and motor control across multiple sites.


Conclusion


TheAllen-Bradley 1336-L4, especially when its functionality is defined by a precise parameter set like42336-200-51, showcases a generation of industrial automation hardware built for durability and performance. Despite the emergence of newer VFD technologies, the Allen-Bradley 1336-L4 series continues to operate reliably in countless facilities worldwide.

Its enduring presence highlights the value of robust engineering and dependable design in industrial automation and motor control. For professionals working with these systems, understanding not just the hardware but also its specific configurations, like 42336-200-51, and the role of features like non-volatile memory backup is essential. This knowledge ensures optimal operation and maintains the "workhorse" performance of these crucial assets in today's demanding industrial landscape.


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