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Yaskawa YASNAC 133688-1

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133688-1

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The Yaskawa 133688-1 is a robotics MRC controller in the YASNAC series, designed for precise control of robotic systems. It operates within a voltage range of 200 to 240 V AC and can manage up to 12 axes for versatile applications.

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Technical specifications for 133688-1

ManufacturerYaskawa
Product TypeRobotics MRC Controller
Product LineYASNAC
Part Number133688-1
Voltage Range200–240 V AC
Max Controllable AxesUp to 12
Digital I/O Count48 in / 48 out (expandable)
Pose Memory2,200 positions
Instruction Memory1,200 steps
Current Draw12 A
Peak Output Power4.5 kW
Robot CoordinationSingle-unit operation
Pendant Screen12-character LCD
Control LanguageINFORM II

The Yaskawa 133688-1 is a sophisticated robotics MRC controller tailored to enhance automation processes. Designed to function within a voltage bracket of 200 to 240 V AC, this unit boasts the capability to control an impressive maximum of 12 axes simultaneously, making it suitable for complex robotic maneuvers. Its architecture incorporates a digital I/O count of 48 inputs and 48 outputs, allowing for expansion, which is critical for evolving automation requirements.

The controller's pose memory is capable of retaining 2,200 positional data points, offering extensive flexibility in maintaining various robotic positions during operation. Additionally, it holds an instruction memory of up to 1,200 steps, enabling detailed programming and sequencing tasks. This device has a current draw of 12 A, ensuring that it can meet the power demands required for advanced robotics applications. Additionally, the peak output power reaches 4.5 kW, contributing to its high-performance capabilities.

A single-unit operation feature allows for easy coordination of robotic movements, optimizing operational efficiency. The user interface is designed with practicality in mind, featuring a 12-character LCD pendant screen that facilitates interaction and programming. The controller operates using the INFORM II control language, renowned for its user-friendliness in robotic programming and control.